USRE42807E1 - Non real time traffic system for a navigator - Google Patents

Non real time traffic system for a navigator Download PDF

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USRE42807E1
USRE42807E1 US12/727,492 US72749210A USRE42807E US RE42807 E1 USRE42807 E1 US RE42807E1 US 72749210 A US72749210 A US 72749210A US RE42807 E USRE42807 E US RE42807E
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/26Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
    • G01C21/34Route searching; Route guidance
    • G01C21/36Input/output arrangements for on-board computers
    • GPHYSICS
    • G08SIGNALLING
    • G08GTRAFFIC CONTROL SYSTEMS
    • G08G1/00Traffic control systems for road vehicles
    • G08G1/09Arrangements for giving variable traffic instructions
    • G08G1/0962Arrangements for giving variable traffic instructions having an indicator mounted inside the vehicle, e.g. giving voice messages
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C21/00Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00
    • G01C21/26Navigation; Navigational instruments not provided for in groups G01C1/00 - G01C19/00 specially adapted for navigation in a road network
    • G01C21/34Route searching; Route guidance
    • G01C21/3453Special cost functions, i.e. other than distance or default speed limit of road segments
    • G01C21/3492Special cost functions, i.e. other than distance or default speed limit of road segments employing speed data or traffic data, e.g. real-time or historical
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01SRADIO DIRECTION-FINDING; RADIO NAVIGATION; DETERMINING DISTANCE OR VELOCITY BY USE OF RADIO WAVES; LOCATING OR PRESENCE-DETECTING BY USE OF THE REFLECTION OR RERADIATION OF RADIO WAVES; ANALOGOUS ARRANGEMENTS USING OTHER WAVES
    • G01S19/00Satellite radio beacon positioning systems; Determining position, velocity or attitude using signals transmitted by such systems
    • G01S19/01Satellite radio beacon positioning systems transmitting time-stamped messages, e.g. GPS [Global Positioning System], GLONASS [Global Orbiting Navigation Satellite System] or GALILEO
    • G01S19/13Receivers

Definitions

  • Various systems including but not limited to the Magellan 750 (“NeverLost(TM)”) device automatically track the user's whereabouts and instructs the user on the best way to get from point A to point B. For example, systems such as this may find the user's current position using satellite positioning systems such as the GPS constellation array. The user may enter a desired location.
  • the program includes map data which includes a time that it will take, on average, to traverse a given stretch of roadway. This data may be acquired by simply dividing the speed limit by the length of the roadway.
  • the system carries out a program to determine a most efficient way for the user to get to his desired location.
  • This system may operate admirably, and almost always results in the user getting to their desired location.
  • the selection of routes does not take into account the real situation. For example, the user who knows an area will often select a better route than the computer will select.
  • the present application teaches an improvement to existing navigator systems which enables improvements and new techniques in selection of routes.
  • the present application teaches use of statistical data in selecting the proper route.
  • the system may use real-time information.
  • Another aspect teaches a way in which the route may be calculated to allow the user to start in the proper direction.
  • Yet another aspect teaches a way of using the system to determine a location in for the user to obtain some desired product or service.
  • FIG. 1 shows a block diagram of the system
  • FIG. 2 shows a flowchart of finding traffic information
  • FIG. 3 shows a flowchart of route finding operations
  • FIG. 4 shows a flowchart of finding points of interest.
  • a block diagram of the system is shown in FIG. 1 .
  • a GPS receiver 100 is shown connected to an appropriate GPS antenna 102 to track the location of the installed device 99 . This location may be in a vehicle, for example.
  • a processor 110 is connected to the GPS receiver and may control the operation of the GPS receiver and also receive incoming information therefrom.
  • the processor is connected to a memory 130 which is shown herein as a static memory. In current technology, this may be a hard drive, but could alternatively be flash memory or another kind of read/write memory.
  • the memory is connected to an update module 140 . As shown, the update module may have a connection to a network line 150 which may be a telephone, an thernet connection, or any other kind of connection to any source of information.
  • the update module may also include a connector 152 allowing connection of a portable memory shown as 153 .
  • the portable memory for example, may be camera type memory, such as flash memory, S.D. memory, or a memory stick.
  • the memory is used for updating information, as described herein.
  • a user interface 120 is connected to the processor, and provides information to a user, as well as accepting input from a user.
  • the input may be provided from the user in a conventional way, such as on a miniaturized keyboard or trackwheel.
  • An alternative data information is via a PDA interface assembly shown as 122 . This may enable a user to enter information about their desired route or destination into PDA 123 . Downloading of such desired routes are already available on certain Web sites such as HTTP: ⁇ www.MapQuest.com.
  • the PDA often stores addresses indicating the addresses of the user's contacts.
  • the address from the PDA may be also transferred to the PDA interface device 122 .
  • the PDA interface device may be for example an infrared port, for those PDAs which have infrared capability.
  • the user of the PDA can select the option to “beam address”.
  • the Palm unit will then beam the address to the interface device 122 which receives and decode to the beamed address, and uses that as the desired location.
  • the interface device may be a connection to the serial, parallel or USB port on the PDA.
  • the user interface also includes a keyboard as described above and a display. Additional functions may be provided.
  • One such function is the indicator 124 , which may indicate, for example, the likelihood that the device is actually tracking the proper location of the installed device 99 . Many times, the GPS receiver has not adequately acquired sufficient data to be sure that it knows its proper location. When that happens, the GPS receiver may return its best guess information, but might not be very sure or of that information. Accordingly, the indicator 124 may be a bicolor LED which may be green to indicate that the GPS receiver is highly confident in its current location. It may be red to indicate that the confidence level in the current location is low.
  • Another indicator at 126 is a speed limit warning.
  • the map data stored in the static memory 130 often includes the road's speed limits. As part of the synchronization via the GPS receiver, the system automatically acquires the speed of the vehicle.
  • the indicator 126 may be a settable indicator that indicates when the user, for example, is going 10 mph above the speed limit.
  • the static memory 130 stores information about maps and routes within those maps. In order to make a decision about the best route to take, the static memory often needs information about how long it will take to get from one point in the map to another.
  • the routines of FIG. 2 may be used according to this embodiment to get this information.
  • Certain existing satellite systems such as the etak system, provide traffic reports that indicate to user the current status of current traffic. The main problem with this system, however, is that the traffic report is current as of the time it is given, not when the user actually arrives there. Many users lose confidence in such traffic reports because by the time they arrive at the scene, the traffic may be changed. In addition, the infrastructure necessary to provide such real-time information may be extremely costly.
  • the present application teaches a system which may improve the ability to find the best route, but does so using a statistical technique.
  • information about real progress through certain roots is accumulated. This data is accumulated as a function of time of day.
  • the information is used to form statistical data.
  • the statistical data may include, for example, the percent of anomalies.
  • anomalies caused by special events. Roadways which pass close to situses of events may often have high traffic at the time of the event. By noting the number of times that anomalies occur, the “expected value” of the time of a trip may be lowered.
  • a route may be selected based on different parameters. For example, the route may be selected for the one which is most consistently clear. Anomalies may be taken into account when calculating the route, but the user may choose to take a chance that any route will still be the best. All of this is at the user's discretion, but allows the system to have more accurate data based on statistical analysis.
  • the date acquisition routine is shown in FIG. 2 .
  • the heart of the data acquisition routine is 200 which acquires real data from real movements. This may be carried out via monitoring satellite photos, for example, to find different movements of different vehicles. Since satellite photos are often taken at separated times, these movements may be used to find the average time to traverse a given stretch of roadway. Another technique, which is disclosed herein, is made possible by the fact that the unit 110 actually tracks users movements. Accordingly, the second alternative is to monitor movements within the installed vehicle 99 , and later obtain information from many different users as part of the update routine.
  • the real-time data is used to find the various information about the different roadways. As a function of time of day, this system may find the fastest time, slowest time, average time, as well as higher order statistics about these times. These higher order statistics may include mean and standard deviation. Another parameter which may be used includes likelihood of anomalies: indicating a percentage of the time that the actual time to traverse is significantly different then the average time to traverse. All of this information is accumulated into a form associated with the stretch of roadway and will be stored in the static memory 130 . The storage of the data is shown occurring at 220 .
  • This information may change over time, and therefore frequent updates may make the system more accurate.
  • These updates may also include additional map information.
  • the updates may be provided in any desired form via the update module 140 .
  • the manufacturer or map issuer may charge for those updates as described above.
  • the actual operation of the system uses the flowchart shown in FIG. 3 .
  • the user is allowed to select between a number of different operations, including requesting a mapping to a location at 305 .
  • An alternative allows the user to look for “points of interest” which is described in the flowchart of FIG. 4 .
  • the user After requesting a current location, the user is presented with a number of options at 310 . These may include conventional options such as shortest time, shortest distance, and least use of freeways. In addition, some enhanced options are shown as being provided.
  • a new option includes fastest usual, which will set the route based on the fastest route which would be usual over all times.
  • Another new option is time of day fastest, which selects the fastest route for the current time of day. This may divide the time of day generally into morning rush, evening rush, afternoon, and non Roche. Alternatively, the slices may be the sliced thinner, e.g. in one hour increments.
  • Another new option is most reliable fastest, meaning the route that is most reliable to get one to the destination in the shortest time.
  • the system After selecting the option at 310 , the system initially, at 315 , selects a swath 316 around the current location 312 and the destination 314 .
  • This area 316 may be the area within which the route will be selected.
  • the system first routes a first portion of the route, which begins at 312 , and moves the user in the proper direction towards the destination. Users often do not want to wait while the system calculates the entire route from their current location to their destination. Such calculation may take minutes, and users will often not wait those minutes. This system therefore selects a relatively small part of the route e.g. the route for the next five minutes.
  • This portion is initially calculated at 320 , following by the system beginning the process of directing the user at 325 . This may point the user in the right direction, while the remainder of the route is calculated at 330 . After 330 , the system continues the tracking and monitoring operation. This is generically shown as 335 .
  • FIG. 4 shows the points of interest setting.
  • the points of interest setting enables the user to find items close to them such as parks, restaurants, service stations. If the user is in an unfamiliar location, this may be very helpful.
  • the device provides no information about which of many places to select other than name and distance/time to travel.
  • a new setting is provided indicating the point of interest within a specified type that is “most popular”. This may indicate a point of interest that is most popular within a five-minute drive or the like. Again, this is based on monitoring other users movements, and may be used as part of an update routine.
  • an option may provide coupons from certain points of interest.
  • a coupon code may be provided by the processor based on information obtained during an update.
  • the coupon may be a six digit alphanumeric code that meets a specified checksum and provides a specified amount of discount at the specified location.
  • the coupon information obtained during the update may have an expiration date, and may have a number of times that the coupon can be used.

Abstract

A system for improving the operation of a GPS based navigator. Statistical and/or time of day information is used to select the best route between a current location and a desired location. The statistical information may take into account anomalies, and a user can select the amount of risk they which take. The system can be updated with more updated information. In addition, the selection of the desired location can be carried out by downloading information from a PDA.

Description

CROSS RELATED APPLICATIONS
This application is a continuation of U.S. application Ser. No. 10/455,866, filed Jun. 6, 2003, now U.S. Pat. No. 6,892,136 issued May 10, 2005, which is a continuation of U.S. application Ser. No. 09/682,200 filed Aug. 3, 2001 now U.S. Pat. No. 6,604,047 issued Aug. 5, 2003.
BACKGROUND
Various systems, including but not limited to the Magellan 750 (“NeverLost(™)”) device automatically track the user's whereabouts and instructs the user on the best way to get from point A to point B. For example, systems such as this may find the user's current position using satellite positioning systems such as the GPS constellation array. The user may enter a desired location. The program includes map data which includes a time that it will take, on average, to traverse a given stretch of roadway. This data may be acquired by simply dividing the speed limit by the length of the roadway. The system carries out a program to determine a most efficient way for the user to get to his desired location.
This system may operate admirably, and almost always results in the user getting to their desired location. However, the selection of routes does not take into account the real situation. For example, the user who knows an area will often select a better route than the computer will select.
SUMMARY
The present application teaches an improvement to existing navigator systems which enables improvements and new techniques in selection of routes.
In one aspect, the present application teaches use of statistical data in selecting the proper route.
In another aspect, the system may use real-time information.
An interface with the information stored in a PDA is disclosed.
Another aspect teaches a way in which the route may be calculated to allow the user to start in the proper direction.
Yet another aspect teaches a way of using the system to determine a location in for the user to obtain some desired product or service.
BRIEF DESCRIPTION OF THE DRAWINGS
These and other aspects will now be described in detail with reference to the accompanying drawings, wherein:
FIG. 1 shows a block diagram of the system;
FIG. 2 shows a flowchart of finding traffic information;
FIG. 3 shows a flowchart of route finding operations; and.
FIG. 4 shows a flowchart of finding points of interest.
DETAILED DESCRIPTION
A block diagram of the system is shown in FIG. 1. A GPS receiver 100 is shown connected to an appropriate GPS antenna 102 to track the location of the installed device 99. This location may be in a vehicle, for example. A processor 110 is connected to the GPS receiver and may control the operation of the GPS receiver and also receive incoming information therefrom. The processor is connected to a memory 130 which is shown herein as a static memory. In current technology, this may be a hard drive, but could alternatively be flash memory or another kind of read/write memory. The memory is connected to an update module 140. As shown, the update module may have a connection to a network line 150 which may be a telephone, an thernet connection, or any other kind of connection to any source of information. The update module may also include a connector 152 allowing connection of a portable memory shown as 153. The portable memory, for example, may be camera type memory, such as flash memory, S.D. memory, or a memory stick. The memory is used for updating information, as described herein.
A user interface 120 is connected to the processor, and provides information to a user, as well as accepting input from a user. The input may be provided from the user in a conventional way, such as on a miniaturized keyboard or trackwheel. An alternative data information is via a PDA interface assembly shown as 122. This may enable a user to enter information about their desired route or destination into PDA 123. Downloading of such desired routes are already available on certain Web sites such as HTTP:\\www.MapQuest.com.
Alternatively, the PDA often stores addresses indicating the addresses of the user's contacts. The address from the PDA may be also transferred to the PDA interface device 122. The PDA interface device may be for example an infrared port, for those PDAs which have infrared capability. For example, on Palm operating system devices, the user of the PDA can select the option to “beam address”. The Palm unit will then beam the address to the interface device 122 which receives and decode to the beamed address, and uses that as the desired location. Alternatively, the interface device may be a connection to the serial, parallel or USB port on the PDA.
The user interface also includes a keyboard as described above and a display. Additional functions may be provided. One such function is the indicator 124, which may indicate, for example, the likelihood that the device is actually tracking the proper location of the installed device 99. Many times, the GPS receiver has not adequately acquired sufficient data to be sure that it knows its proper location. When that happens, the GPS receiver may return its best guess information, but might not be very sure or of that information. Accordingly, the indicator 124 may be a bicolor LED which may be green to indicate that the GPS receiver is highly confident in its current location. It may be red to indicate that the confidence level in the current location is low. Another indicator at 126 is a speed limit warning. The map data stored in the static memory 130 often includes the road's speed limits. As part of the synchronization via the GPS receiver, the system automatically acquires the speed of the vehicle. The indicator 126 may be a settable indicator that indicates when the user, for example, is going 10 mph above the speed limit.
The static memory 130 stores information about maps and routes within those maps. In order to make a decision about the best route to take, the static memory often needs information about how long it will take to get from one point in the map to another. The routines of FIG. 2 may be used according to this embodiment to get this information. Certain existing satellite systems, such as the etak system, provide traffic reports that indicate to user the current status of current traffic. The main problem with this system, however, is that the traffic report is current as of the time it is given, not when the user actually arrives there. Many users lose confidence in such traffic reports because by the time they arrive at the scene, the traffic may be changed. In addition, the infrastructure necessary to provide such real-time information may be extremely costly.
The present application teaches a system which may improve the ability to find the best route, but does so using a statistical technique. According to the present system, information about real progress through certain roots is accumulated. This data is accumulated as a function of time of day. The information is used to form statistical data. The statistical data may include, for example, the percent of anomalies. One example is anomalies caused by special events. Roadways which pass close to situses of events may often have high traffic at the time of the event. By noting the number of times that anomalies occur, the “expected value” of the time of a trip may be lowered.
A route may be selected based on different parameters. For example, the route may be selected for the one which is most consistently clear. Anomalies may be taken into account when calculating the route, but the user may choose to take a chance that any route will still be the best. All of this is at the user's discretion, but allows the system to have more accurate data based on statistical analysis.
The date acquisition routine is shown in FIG. 2. The heart of the data acquisition routine is 200 which acquires real data from real movements. This may be carried out via monitoring satellite photos, for example, to find different movements of different vehicles. Since satellite photos are often taken at separated times, these movements may be used to find the average time to traverse a given stretch of roadway. Another technique, which is disclosed herein, is made possible by the fact that the unit 110 actually tracks users movements. Accordingly, the second alternative is to monitor movements within the installed vehicle 99, and later obtain information from many different users as part of the update routine.
In this contemplated that certain users will not want their movements to be monitored, for example based on privacy concerns. This system will therefore provide the user with the capability of making their movements private. However, a certain advantage may be offered to those users who allow data about to their movements to be uploaded as part of the update routine. Note that the data can be anonymous data, i.e. it can be uploaded without any indication of its origin. As an example of the advantage provided to those users who allow the data to be uploaded,a user may receive a discount on updates if they allow their data to be uploaded as part of the process.
At 210, the real-time data is used to find the various information about the different roadways. As a function of time of day, this system may find the fastest time, slowest time, average time, as well as higher order statistics about these times. These higher order statistics may include mean and standard deviation. Another parameter which may be used includes likelihood of anomalies: indicating a percentage of the time that the actual time to traverse is significantly different then the average time to traverse. All of this information is accumulated into a form associated with the stretch of roadway and will be stored in the static memory 130. The storage of the data is shown occurring at 220.
This information may change over time, and therefore frequent updates may make the system more accurate. These updates may also include additional map information. The updates may be provided in any desired form via the update module 140. The manufacturer or map issuer may charge for those updates as described above. The actual operation of the system uses the flowchart shown in FIG. 3. At 300, the user is allowed to select between a number of different operations, including requesting a mapping to a location at 305. An alternative allows the user to look for “points of interest” which is described in the flowchart of FIG. 4.
After requesting a current location, the user is presented with a number of options at 310. These may include conventional options such as shortest time, shortest distance, and least use of freeways. In addition, some enhanced options are shown as being provided. A new option includes fastest usual, which will set the route based on the fastest route which would be usual over all times. Another new option is time of day fastest, which selects the fastest route for the current time of day. This may divide the time of day generally into morning rush, evening rush, afternoon, and non Roche. Alternatively, the slices may be the sliced thinner, e.g. in one hour increments. Another new option is most reliable fastest, meaning the route that is most reliable to get one to the destination in the shortest time.
After selecting the option at 310, the system initially, at 315, selects a swath 316 around the current location 312 and the destination 314. This area 316 may be the area within which the route will be selected. At 320, the system first routes a first portion of the route, which begins at 312, and moves the user in the proper direction towards the destination. Users often do not want to wait while the system calculates the entire route from their current location to their destination. Such calculation may take minutes, and users will often not wait those minutes. This system therefore selects a relatively small part of the route e.g. the route for the next five minutes. This portion is initially calculated at 320, following by the system beginning the process of directing the user at 325. This may point the user in the right direction, while the remainder of the route is calculated at 330. After 330, the system continues the tracking and monitoring operation. This is generically shown as 335.
FIG. 4 shows the points of interest setting. In conventional GPS units, the points of interest setting enables the user to find items close to them such as parks, restaurants, service stations. If the user is in an unfamiliar location, this may be very helpful. However, the device provides no information about which of many places to select other than name and distance/time to travel.
The present application recognizes that more frequent access usually indicates that the point of interest may be interesting. Accordingly, at 400, a new setting is provided indicating the point of interest within a specified type that is “most popular”. This may indicate a point of interest that is most popular within a five-minute drive or the like. Again, this is based on monitoring other users movements, and may be used as part of an update routine.
Another aspect recognizes that many people are driven by specials such as coupons. In this embodiment, an option may provide coupons from certain points of interest. A coupon code may be provided by the processor based on information obtained during an update. For example, the coupon may be a six digit alphanumeric code that meets a specified checksum and provides a specified amount of discount at the specified location. The coupon information obtained during the update may have an expiration date, and may have a number of times that the coupon can be used.
Although only a few embodiments have been disclosed in detail above, other modifications are possible. All such modifications are intended to be encompassed within the following claims.

Claims (20)

1. A system, comprising:
a memory, storing map information, and storing information indicative of updated actual times that were previously measured to travel different sections of roadway as of a time of an update;
a user interface, allowing entry of a destination for navigation; and
a processor, computing a path to said destination based on said actual times stored in said memory.
2. A system as in claim 1, further comprising an update part which wirelessly provides said information indicative of actual times to said memory.
3. A system as in claim 1, wherein said actual times are based on measuring times taken by other users to travel said different sections of roadway.
4. The system as in claim 3, wherein said information is based on actual movements of other users at a times near a current time.
5. A system as in claim 3, wherein said movements are based on statistical movement of other users based on statistical analysis.
6. A system as in claim 3, wherein said actual data is obtained from satellite information.
7. A system as in claim 1, further comprising a remote first unit, which is separate from, but communicable with, said processor, and which allows first, entering a destination into the first unit, after said entering said destination, wirelessly transferring information from said first unit to a second unit that includes said processor, and navigating using said second unit based on information from said first unit.
8. A method, comprising:
storing map information;
storing information indicative of updated actual times that were previously measured to travel different sections of roadway as of a current time and based on an update of said updated actual times;
entering a destination for navigation; and
computing a path to said destination based on said actual times stored in said memory.
9. A method as in claim 8, wherein said information includes actual times that are based on measuring travel times for said sections of roadway by of other users.
10. The method as in claim 8, further comprising obtaining said information by monitoring actual movements of other users at times close to a current time.
11. A method as in claim 8, further comprising obtaining said actual data from satellite information.
12. A method as in claim 8, wherein said entering a destination comprises entering the destination into a remote first unit, which is separate from, but communicable with, a second unit that carries out said computing, and after said entering said destination, wirelessly transferring information from said first unit to said second unit and navigating using said second unit based on information from said first unit.
13. A method as in claim 8, further comprising producing a special display when the navigation system has not obtained enough information to determine its current position.
14. A method, comprising:
obtaining current information about travel conditions in an area, said information including current information about multiple different travel routes;
determining a route between a starting area and an ending area using said current information about multiple travel route, thereby mapping based on actual travel route conditions, wherein said mapping determines a fastest time between said starting area and said ending area, based on actual times that other users have taken to go between points on routes.
15. A method as in claim 14, further comprising updating said actual time to obtain real time data.
16. A method, comprising:
first, entering a destination into a first unit;
after said entering said destination, transferring information from said first unit to a second unit that is capable of navigation operations; and
navigating using said second unit based on information from said first unit;
wherein said first unit and said second unit are completely separate units which communicate wirelessly with one another.
17. A method as in claim 16, wherein said wireless connection is an infrared connection.
18. A method as in claim 16, wherein said first unit is a PDA, and said second unit is a GPS navigator.
19. A method, comprising:
using a navigation system which wirelessly obtains information indicative of its position; and
producing a special display when the system has not obtained enough information to determine its current position.
20. A device as in claim 19 wherein said producing comprises producing a first color to indicate confidence in said information, and a color to indicate lack of confidence in said information.
US12/727,492 2001-08-03 2010-03-19 Non real time traffic system for a navigator Expired - Fee Related USRE42807E1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US12/727,492 USRE42807E1 (en) 2001-08-03 2010-03-19 Non real time traffic system for a navigator

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
US09/682,200 US6604047B1 (en) 2001-08-03 2001-08-03 Non real time traffic system for a navigator
US10/455,866 US6892136B1 (en) 2001-08-03 2003-06-06 Non real time traffic system for a navigator
US11/115,843 US7490005B2 (en) 2001-08-03 2005-04-26 Non real time traffic system for a navigator
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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100131200A1 (en) * 2007-04-24 2010-05-27 Tracker Oy Guiding positioning method, positioning device and computer program product
US20130131980A1 (en) * 2007-09-07 2013-05-23 On Time Systems, Inc. Resolving gps ambiguity in electronic maps
US9043138B2 (en) 2007-09-07 2015-05-26 Green Driver, Inc. System and method for automated updating of map information
US10083607B2 (en) 2007-09-07 2018-09-25 Green Driver, Inc. Driver safety enhancement using intelligent traffic signals and GPS
US10198942B2 (en) 2009-08-11 2019-02-05 Connected Signals, Inc. Traffic routing display system with multiple signal lookahead
US10311724B2 (en) 2007-09-07 2019-06-04 Connected Signals, Inc. Network security system with application for driver safety system

Families Citing this family (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6604047B1 (en) * 2001-08-03 2003-08-05 Scott C. Harris Non real time traffic system for a navigator
DE10200758A1 (en) * 2002-01-10 2003-11-13 Daimler Chrysler Ag Method and system for the guidance of vehicles
TW535959U (en) * 2002-02-27 2003-06-01 C One Technology Corp GPS electronic peripheral card capable of dynamically inserting/removing navigation information
US20070235639A1 (en) * 2003-06-23 2007-10-11 Advanced Optical Technologies, Llc Integrating chamber LED lighting with modulation to set color and/or intensity of output
KR20050015912A (en) * 2003-08-14 2005-02-21 삼성전자주식회사 Navigation system using paging network and tethod for providing traffic information thereof
JP2010515895A (en) * 2007-01-10 2010-05-13 トムトム インターナショナル ベスローテン フエンノートシャップ Navigation device and method of operating navigation device using emergency service access
US20080281516A1 (en) * 2007-05-02 2008-11-13 Ian Cummings Advertising management in a wireless client-server navigation system
US20150160023A1 (en) * 2008-10-21 2015-06-11 Google Inc. Personalized Traffic Alerts
JP5465253B2 (en) 2008-10-22 2014-04-09 トムトム インターナショナル ベスローテン フエンノートシャップ Navigation system, operation method of navigation device, and computer program
US20110119068A1 (en) * 2009-11-16 2011-05-19 International Business Machines Corporation Zone aware task management utilizing user generated presence history
TWI442353B (en) * 2010-12-06 2014-06-21 Mitac Int Corp Method for providing a navigation route according to point of interest on the navigation route and device thereof
GB201113122D0 (en) 2011-02-03 2011-09-14 Tom Tom Dev Germany Gmbh Generating segment data
US9437107B2 (en) * 2013-03-15 2016-09-06 Inrix, Inc. Event-based traffic routing
KR102441068B1 (en) * 2017-10-13 2022-09-06 현대자동차주식회사 System for path guiding based on use pattern of driving assistant service and method thereof
US10488212B2 (en) * 2017-10-18 2019-11-26 Taipei Anjet Corporation Method for tracking and navigating a group

Citations (72)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3980041A (en) 1974-10-22 1976-09-14 Robert Burns Evans Speedometer with speed warning indicator and method of providing the same
US4229727A (en) 1979-04-23 1980-10-21 Robert Gilhooley Vehicle speed alarm
US4608551A (en) 1983-07-05 1986-08-26 Nippondenso Co., Ltd. Speed alarm system for automotive vehicle
US4731613A (en) 1984-12-07 1988-03-15 Nissan Motor Company, Limited Positioning system for a vehicle
US4882689A (en) 1987-02-10 1989-11-21 Yazaki Corporation Navigation system using angular rate sensor
US4964052A (en) 1987-10-30 1990-10-16 Nec Home Electronics Ltd. Navigation device for use in a vehicle
US5087919A (en) 1989-09-05 1992-02-11 Pioneer Electronic Corporation On-board navigation apparatus
US5146219A (en) 1987-01-10 1992-09-08 Robert Bosch Gmbh Device for the output of safety-related road information in locating and navigating systems of land vehicles
US5179519A (en) 1990-02-01 1993-01-12 Pioneer Electronic Corporation Navigation system for vehicle
US5202829A (en) 1991-06-10 1993-04-13 Trimble Navigation Limited Exploration system and method for high-accuracy and high-confidence level relative position and velocity determinations
US5265468A (en) 1991-03-02 1993-11-30 Wabco Standard Gmbh Error detection and display system
US5293318A (en) 1991-07-10 1994-03-08 Pioneer Electronic Corporation Navigation system
US5311173A (en) 1988-09-16 1994-05-10 Hitachi, Ltd. Navigation system and method using map data
US5367306A (en) 1993-06-04 1994-11-22 Hollon Blake D GPS integrated ELT system
US5416712A (en) 1993-05-28 1995-05-16 Trimble Navigation Limited Position and velocity estimation system for adaptive weighting of GPS and dead-reckoning information
JPH07280931A (en) 1994-04-12 1995-10-27 Oki Electric Ind Co Ltd Apparatus for displaying target position
US5483456A (en) 1992-11-04 1996-01-09 Pioneer Electronic Corporation Navigation system and a method of calculating GPS measuring deviation
US5485381A (en) 1992-02-27 1996-01-16 Robert Bosch Gmbh Navigation system for land vehicles
US5485161A (en) 1994-11-21 1996-01-16 Trimble Navigation Limited Vehicle speed control based on GPS/MAP matching of posted speeds
JPH0868642A (en) 1994-08-31 1996-03-12 Matsushita Electric Works Ltd Gps navigation system
US5523765A (en) 1993-06-10 1996-06-04 Alpine Electronics, Inc. Method and apparatus for detecting vehicle location for a vehicle navigation system
US5554970A (en) 1995-07-24 1996-09-10 Mottahedeh; Haghnazar Speed alarm system for an automobile
JPH08304091A (en) 1995-05-11 1996-11-22 Fujitsu Ten Ltd Gps navigation system
US5596500A (en) 1993-10-25 1997-01-21 Trimble Navigation Limited Map reading system for indicating a user's position on a published map with a global position system receiver and a database
US5623414A (en) 1995-01-24 1997-04-22 Massachusetts Inst Technology Clock-aided satellite navigation receiver system for enhanced position estimation and integrity monitoring
US5659920A (en) 1995-03-11 1997-08-26 Black & Decker Inc. Blower vacuum device of improved design
US5752219A (en) 1990-03-06 1998-05-12 Pioneer Electronic Corporation Navigation apparatus for vehicles
US5774828A (en) * 1995-04-07 1998-06-30 Delco Electronics Corporation Mapless GPS navigation system with user modifiable data base
US5790974A (en) * 1996-04-29 1998-08-04 Sun Microsystems, Inc. Portable calendaring device having perceptual agent managing calendar entries
US5808565A (en) 1996-02-20 1998-09-15 E-Systems, Inc. GPS triggered automatic annunciator for vehicles
US5862511A (en) 1995-12-28 1999-01-19 Magellan Dis, Inc. Vehicle navigation system and method
US5890092A (en) 1994-09-01 1999-03-30 Aisin Aw Co., Ltd. Navigation system for vehicles including present position calculating means
US5902351A (en) 1995-08-24 1999-05-11 The Penn State Research Foundation Apparatus and method for tracking a vehicle
US5909440A (en) * 1996-12-16 1999-06-01 Juniper Networks High speed variable length best match look-up in a switching device
US5910789A (en) 1994-12-20 1999-06-08 Geco A.S. Method for integrity monitoring in position determination
US5938719A (en) 1992-02-18 1999-08-17 Pioneer Electronic Corporation Navigation apparatus with enhanced positional display function
US5941934A (en) 1995-06-09 1999-08-24 Xanavi Informatics Corporation Current position calculating device
US5948043A (en) 1996-11-08 1999-09-07 Etak, Inc. Navigation system using GPS data
US5952941A (en) 1998-02-20 1999-09-14 I0 Limited Partnership, L.L.P. Satellite traffic control and ticketing system
US5977884A (en) 1998-07-01 1999-11-02 Ultradata Systems, Inc. Radar detector responsive to vehicle speed
US5999892A (en) * 1997-05-05 1999-12-07 Fan; Rodric C. Method for providing an instant distance measurement on a map
US5999126A (en) 1996-08-06 1999-12-07 Sony Corporation Position measuring apparatus, position measuring method, navigation apparatus, navigation method, information service method, automotive vehicle, and audio information transmitting and receiving method
US6037862A (en) 1998-07-21 2000-03-14 Ying; Gary Ka-Chein Automobile overspeed warning system
US6037861A (en) 1998-07-21 2000-03-14 Ying; Gary Ka-Chein Automobile overspeed warning system
US6043777A (en) 1997-06-10 2000-03-28 Raytheon Aircraft Company Method and apparatus for global positioning system based cooperative location system
US6073062A (en) 1995-05-31 2000-06-06 Fujitsu Limited Mobile terminal and moving body operation management system
US6144338A (en) 1998-03-17 2000-11-07 Prc Public Sector. Inc. Predictive drop and load algorithm for an object-based geographical information system
US6175806B1 (en) 1993-07-16 2001-01-16 Caterpillar Inc. Method and apparatus for detecting cycle slips in navigation signals received at a receiver from a satellite-based navigation system
US6199009B1 (en) * 1996-12-16 2001-03-06 Mannesmann Sachs Ag Computer-controlled navigation process for a vehicle equipped with a terminal, terminal and traffic information center
US6208934B1 (en) * 1999-01-19 2001-03-27 Navigation Technologies Corp. Method and system for providing walking instructions with route guidance in a navigation program
GB2355877A (en) 1999-08-24 2001-05-02 Nec Corp GPS terminal with map display
US6246948B1 (en) 1998-12-10 2001-06-12 Ericsson Inc. Wireless intelligent vehicle speed control or monitoring system and method
US6265989B1 (en) 2000-06-17 2001-07-24 Richard Taylor GPS enabled speeding detector
US6282464B1 (en) * 1997-01-28 2001-08-28 American Calcar Inc. Technique for effectively providing audio information in a vehicle
US6310544B1 (en) 1999-10-07 2001-10-30 Marc S. Cohen Self-contained add-on accessory for an analog metering device such as a speedometer or tachometer
US6317689B1 (en) 2000-02-09 2001-11-13 Garmin Corporation Method and device for displaying animated navigation information
US6321158B1 (en) 1994-06-24 2001-11-20 Delorme Publishing Company Integrated routing/mapping information
US6326613B1 (en) 1998-01-07 2001-12-04 Donnelly Corporation Vehicle interior mirror assembly adapted for containing a rain sensor
US6336072B1 (en) * 1998-11-20 2002-01-01 Fujitsu Limited Apparatus and method for presenting navigation information based on instructions described in a script
US6366856B1 (en) 2000-11-21 2002-04-02 Qualcomm Incorporated Method and apparatus for orienting a map display in a mobile or portable device
US6366242B1 (en) 1997-01-21 2002-04-02 Wherenet Corporation Computer workstation tool for displaying performance estimate of tagged object geo-location system for proposed geometry layout of tag transmission readers
US6381540B1 (en) 1999-11-01 2002-04-30 Garmin Corporation GPS device with compass and altimeter and method for displaying navigation information
US6430505B1 (en) 2000-07-12 2002-08-06 Trimble Navigation Limited Automatic charting of obstructions for mission planning
US6429808B1 (en) 1999-11-12 2002-08-06 Motorola, Inc. Method and apparatus for assisted GPS integrity maintenance
US6462675B1 (en) 2000-10-13 2002-10-08 International Business Machines Corporation Method, system, and program for auditing driver compliance to a current speed limit
US6466846B2 (en) 2000-07-10 2002-10-15 United Parcel Service Of America, Inc. Method, apparatus, system, and computer software program product for determining position integrity in a system having a global navigation satellite system (GNSS) component
US6496709B2 (en) 2001-03-02 2002-12-17 Motorola, Inc. Apparatus and method for speed sensitive operation in a wireless communication device
US6515596B2 (en) 2001-03-08 2003-02-04 International Business Machines Corporation Speed limit display in a vehicle
US6526336B2 (en) 2001-02-01 2003-02-25 Invacare Corp. System and method for steering a multi-wheel drive vehicle
US6556905B1 (en) 2000-08-31 2003-04-29 Lisa M. Mittelsteadt Vehicle supervision and monitoring
US6604047B1 (en) * 2001-08-03 2003-08-05 Scott C. Harris Non real time traffic system for a navigator
US6633811B1 (en) 1999-10-19 2003-10-14 Robert Bosch Gmbh Method of automatically adjusting a vehicle speed display according to vehicle location

Family Cites Families (29)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP3133770B2 (en) * 1991-01-18 2001-02-13 マツダ株式会社 Car driving system
US5543789A (en) * 1994-06-24 1996-08-06 Shields Enterprises, Inc. Computerized navigation system
US5610821A (en) * 1994-11-18 1997-03-11 Ibm Corporation Optimal and stable route planning system
GB2298539A (en) * 1995-02-27 1996-09-04 Richard Deehan Portable guidance device
US5659290A (en) 1995-04-20 1997-08-19 Haeri; Sy Speed minder
JPH0973600A (en) 1995-09-07 1997-03-18 Suzuki Motor Corp On-vehicle limit speed monitoring device and navigation system
US5699255A (en) * 1995-10-18 1997-12-16 Trimble Navigation Limited Map transmission for in-vehicle navigation system with dynamic scale/detail adjustment
US5933100A (en) * 1995-12-27 1999-08-03 Mitsubishi Electric Information Technology Center America, Inc. Automobile navigation system with dynamic traffic data
US5951620A (en) * 1996-01-26 1999-09-14 Navigation Technologies Corporation System and method for distributing information for storage media
ATE188059T1 (en) * 1996-02-08 2000-01-15 Mannesmann Ag METHOD AND DEVICE FOR COLLECTING DATA ON THE TRAFFIC SITUATION
US5819200A (en) * 1996-02-14 1998-10-06 Zexel Corporation Method and apparatus for selecting a destination in a vehicle navigation system
JP3370526B2 (en) * 1996-04-24 2003-01-27 富士通株式会社 Mobile communication system and mobile terminal and information center used in the mobile communication system
US5901214A (en) * 1996-06-10 1999-05-04 Murex Securities, Ltd. One number intelligent call processing system
JP3537285B2 (en) * 1997-02-25 2004-06-14 アルパイン株式会社 Navigation device
JPH10300485A (en) * 1997-04-25 1998-11-13 Sony Corp Navigation device
US6185208B1 (en) * 1998-04-30 2001-02-06 Phone.Com, Inc. Method and apparatus for fragmenting messages for a wireless network using group sharing of reference numbers
US6138158A (en) * 1998-04-30 2000-10-24 Phone.Com, Inc. Method and system for pushing and pulling data using wideband and narrowband transport systems
US6204808B1 (en) * 1998-08-13 2001-03-20 Ericsson Inc. Method and system for aiding GPS receivers via a cellular or PCS network
AU1707600A (en) * 1998-10-21 2000-05-08 American Calcar, Inc. Positional camera and gps data interchange device
US6522875B1 (en) * 1998-11-17 2003-02-18 Eric Morgan Dowling Geographical web browser, methods, apparatus and systems
EP1081035B1 (en) * 1999-09-06 2007-07-25 Honda Giken Kogyo Kabushiki Kaisha Motorcycle with navigation system carried thereon
JP3589124B2 (en) * 1999-11-18 2004-11-17 トヨタ自動車株式会社 Navigation device
US6415226B1 (en) * 1999-12-20 2002-07-02 Navigation Technologies Corp. Method and system for providing safe routes using a navigation system
JP3719640B2 (en) * 1999-12-21 2005-11-24 松下電器産業株式会社 Route selection method and system, and recording medium
US6526335B1 (en) 2000-01-24 2003-02-25 G. Victor Treyz Automobile personal computer systems
JP2001280992A (en) * 2000-03-29 2001-10-10 Hitachi Ltd Geographical information output system
US6850209B2 (en) * 2000-12-29 2005-02-01 Vert, Inc. Apparatuses, methods, and computer programs for displaying information on vehicles
US6317686B1 (en) * 2000-07-21 2001-11-13 Bin Ran Method of providing travel time
US7069315B1 (en) * 2001-03-05 2006-06-27 Harris Scott C Off-line web surfing via an automatically created super preference file

Patent Citations (76)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3980041A (en) 1974-10-22 1976-09-14 Robert Burns Evans Speedometer with speed warning indicator and method of providing the same
US4229727A (en) 1979-04-23 1980-10-21 Robert Gilhooley Vehicle speed alarm
US4608551A (en) 1983-07-05 1986-08-26 Nippondenso Co., Ltd. Speed alarm system for automotive vehicle
US4731613A (en) 1984-12-07 1988-03-15 Nissan Motor Company, Limited Positioning system for a vehicle
US5146219A (en) 1987-01-10 1992-09-08 Robert Bosch Gmbh Device for the output of safety-related road information in locating and navigating systems of land vehicles
US4882689A (en) 1987-02-10 1989-11-21 Yazaki Corporation Navigation system using angular rate sensor
US4964052A (en) 1987-10-30 1990-10-16 Nec Home Electronics Ltd. Navigation device for use in a vehicle
US5311173A (en) 1988-09-16 1994-05-10 Hitachi, Ltd. Navigation system and method using map data
US5087919A (en) 1989-09-05 1992-02-11 Pioneer Electronic Corporation On-board navigation apparatus
US5179519A (en) 1990-02-01 1993-01-12 Pioneer Electronic Corporation Navigation system for vehicle
US5752219A (en) 1990-03-06 1998-05-12 Pioneer Electronic Corporation Navigation apparatus for vehicles
US5265468A (en) 1991-03-02 1993-11-30 Wabco Standard Gmbh Error detection and display system
US5202829A (en) 1991-06-10 1993-04-13 Trimble Navigation Limited Exploration system and method for high-accuracy and high-confidence level relative position and velocity determinations
US5293318A (en) 1991-07-10 1994-03-08 Pioneer Electronic Corporation Navigation system
EP0522860B1 (en) 1991-07-10 1996-06-12 Pioneer Electronic Corporation GPS navigation system using PDOP accuracy evaluation
US5938719A (en) 1992-02-18 1999-08-17 Pioneer Electronic Corporation Navigation apparatus with enhanced positional display function
US5485381A (en) 1992-02-27 1996-01-16 Robert Bosch Gmbh Navigation system for land vehicles
US5483456A (en) 1992-11-04 1996-01-09 Pioneer Electronic Corporation Navigation system and a method of calculating GPS measuring deviation
US5416712A (en) 1993-05-28 1995-05-16 Trimble Navigation Limited Position and velocity estimation system for adaptive weighting of GPS and dead-reckoning information
US5367306A (en) 1993-06-04 1994-11-22 Hollon Blake D GPS integrated ELT system
US5523765A (en) 1993-06-10 1996-06-04 Alpine Electronics, Inc. Method and apparatus for detecting vehicle location for a vehicle navigation system
US6175806B1 (en) 1993-07-16 2001-01-16 Caterpillar Inc. Method and apparatus for detecting cycle slips in navigation signals received at a receiver from a satellite-based navigation system
US5596500A (en) 1993-10-25 1997-01-21 Trimble Navigation Limited Map reading system for indicating a user's position on a published map with a global position system receiver and a database
JPH07280931A (en) 1994-04-12 1995-10-27 Oki Electric Ind Co Ltd Apparatus for displaying target position
US6321158B1 (en) 1994-06-24 2001-11-20 Delorme Publishing Company Integrated routing/mapping information
JPH0868642A (en) 1994-08-31 1996-03-12 Matsushita Electric Works Ltd Gps navigation system
US5890092A (en) 1994-09-01 1999-03-30 Aisin Aw Co., Ltd. Navigation system for vehicles including present position calculating means
US5485161A (en) 1994-11-21 1996-01-16 Trimble Navigation Limited Vehicle speed control based on GPS/MAP matching of posted speeds
US5910789A (en) 1994-12-20 1999-06-08 Geco A.S. Method for integrity monitoring in position determination
US5623414A (en) 1995-01-24 1997-04-22 Massachusetts Inst Technology Clock-aided satellite navigation receiver system for enhanced position estimation and integrity monitoring
US5659920A (en) 1995-03-11 1997-08-26 Black & Decker Inc. Blower vacuum device of improved design
US5774828A (en) * 1995-04-07 1998-06-30 Delco Electronics Corporation Mapless GPS navigation system with user modifiable data base
JPH08304091A (en) 1995-05-11 1996-11-22 Fujitsu Ten Ltd Gps navigation system
US6073062A (en) 1995-05-31 2000-06-06 Fujitsu Limited Mobile terminal and moving body operation management system
US5941934A (en) 1995-06-09 1999-08-24 Xanavi Informatics Corporation Current position calculating device
US5554970A (en) 1995-07-24 1996-09-10 Mottahedeh; Haghnazar Speed alarm system for an automobile
US5902351A (en) 1995-08-24 1999-05-11 The Penn State Research Foundation Apparatus and method for tracking a vehicle
US5862511A (en) 1995-12-28 1999-01-19 Magellan Dis, Inc. Vehicle navigation system and method
US5808565A (en) 1996-02-20 1998-09-15 E-Systems, Inc. GPS triggered automatic annunciator for vehicles
US5790974A (en) * 1996-04-29 1998-08-04 Sun Microsystems, Inc. Portable calendaring device having perceptual agent managing calendar entries
US5999126A (en) 1996-08-06 1999-12-07 Sony Corporation Position measuring apparatus, position measuring method, navigation apparatus, navigation method, information service method, automotive vehicle, and audio information transmitting and receiving method
US5948043A (en) 1996-11-08 1999-09-07 Etak, Inc. Navigation system using GPS data
US6199009B1 (en) * 1996-12-16 2001-03-06 Mannesmann Sachs Ag Computer-controlled navigation process for a vehicle equipped with a terminal, terminal and traffic information center
US5909440A (en) * 1996-12-16 1999-06-01 Juniper Networks High speed variable length best match look-up in a switching device
US6366242B1 (en) 1997-01-21 2002-04-02 Wherenet Corporation Computer workstation tool for displaying performance estimate of tagged object geo-location system for proposed geometry layout of tag transmission readers
US6282464B1 (en) * 1997-01-28 2001-08-28 American Calcar Inc. Technique for effectively providing audio information in a vehicle
US5999892A (en) * 1997-05-05 1999-12-07 Fan; Rodric C. Method for providing an instant distance measurement on a map
US6043777A (en) 1997-06-10 2000-03-28 Raytheon Aircraft Company Method and apparatus for global positioning system based cooperative location system
US6326613B1 (en) 1998-01-07 2001-12-04 Donnelly Corporation Vehicle interior mirror assembly adapted for containing a rain sensor
US5952941A (en) 1998-02-20 1999-09-14 I0 Limited Partnership, L.L.P. Satellite traffic control and ticketing system
US6144338A (en) 1998-03-17 2000-11-07 Prc Public Sector. Inc. Predictive drop and load algorithm for an object-based geographical information system
US5977884A (en) 1998-07-01 1999-11-02 Ultradata Systems, Inc. Radar detector responsive to vehicle speed
US6037861A (en) 1998-07-21 2000-03-14 Ying; Gary Ka-Chein Automobile overspeed warning system
US6037862A (en) 1998-07-21 2000-03-14 Ying; Gary Ka-Chein Automobile overspeed warning system
US6336072B1 (en) * 1998-11-20 2002-01-01 Fujitsu Limited Apparatus and method for presenting navigation information based on instructions described in a script
US6246948B1 (en) 1998-12-10 2001-06-12 Ericsson Inc. Wireless intelligent vehicle speed control or monitoring system and method
US6208934B1 (en) * 1999-01-19 2001-03-27 Navigation Technologies Corp. Method and system for providing walking instructions with route guidance in a navigation program
US6334090B1 (en) 1999-08-24 2001-12-25 Nec Corporation GPS terminal, position measuring system, and map display method using the same
GB2355877A (en) 1999-08-24 2001-05-02 Nec Corp GPS terminal with map display
US6310544B1 (en) 1999-10-07 2001-10-30 Marc S. Cohen Self-contained add-on accessory for an analog metering device such as a speedometer or tachometer
US6633811B1 (en) 1999-10-19 2003-10-14 Robert Bosch Gmbh Method of automatically adjusting a vehicle speed display according to vehicle location
US6381540B1 (en) 1999-11-01 2002-04-30 Garmin Corporation GPS device with compass and altimeter and method for displaying navigation information
US6529827B1 (en) 1999-11-01 2003-03-04 Garmin Corporation GPS device with compass and altimeter and method for displaying navigation information
US6429808B1 (en) 1999-11-12 2002-08-06 Motorola, Inc. Method and apparatus for assisted GPS integrity maintenance
US6317689B1 (en) 2000-02-09 2001-11-13 Garmin Corporation Method and device for displaying animated navigation information
WO2001098794A2 (en) 2000-06-17 2001-12-27 Richard Taylor Gps enabled speeding detector
US6265989B1 (en) 2000-06-17 2001-07-24 Richard Taylor GPS enabled speeding detector
US6466846B2 (en) 2000-07-10 2002-10-15 United Parcel Service Of America, Inc. Method, apparatus, system, and computer software program product for determining position integrity in a system having a global navigation satellite system (GNSS) component
US6430505B1 (en) 2000-07-12 2002-08-06 Trimble Navigation Limited Automatic charting of obstructions for mission planning
US6556905B1 (en) 2000-08-31 2003-04-29 Lisa M. Mittelsteadt Vehicle supervision and monitoring
US6462675B1 (en) 2000-10-13 2002-10-08 International Business Machines Corporation Method, system, and program for auditing driver compliance to a current speed limit
US6366856B1 (en) 2000-11-21 2002-04-02 Qualcomm Incorporated Method and apparatus for orienting a map display in a mobile or portable device
US6526336B2 (en) 2001-02-01 2003-02-25 Invacare Corp. System and method for steering a multi-wheel drive vehicle
US6496709B2 (en) 2001-03-02 2002-12-17 Motorola, Inc. Apparatus and method for speed sensitive operation in a wireless communication device
US6515596B2 (en) 2001-03-08 2003-02-04 International Business Machines Corporation Speed limit display in a vehicle
US6604047B1 (en) * 2001-08-03 2003-08-05 Scott C. Harris Non real time traffic system for a navigator

Non-Patent Citations (236)

* Cited by examiner, † Cited by third party
Title
"Speed alarm" Car TalkTalk Discussion Thread, http://action.publicbroadcasting.net/cartalk/posts/list/951412.page Ending Apr. 9, 2008.
1999 Acura TL Navigation System Manual, Honda Motor Company, Ltd., Acura TL Navigation System (1998).
1999 Acura TL, 1999 Acura TL Navigation System, Honda Motor Company, Ltd., Aug. 4, 1998.
2000 I30/Q45 Infiniti User Manual, Nissan Motor Co. Ltd., 2000 I30/Q45 Infiniti Navigation System User Manual (2000).
2000 I30/Q45 Infiniti, 2000 I30/Q45 Infiniti Navigation System, Nissan Motor Co. Ltd., 2000.
Apollo 360 GPS Receiver Quick Reference Guide, Part No. 561-0161-00 Rev. A, © 1996.
Apollo 360 GPS STC SA00146SE, Part No. 560-0916-00 Rev. a, Jun. 15, 1995.
Apollo 360 Map Display Quick Reference Guide, Part No. 561-0163-00, © 1996.
Apollo 360 Map Display User's Guide, Part No. 561-1119-00, © 1996.
Apollo 360 User's Guide, II Morrow, Inc., Apollo 360 GPS Receiver User's Guide (1994-1997).
Apollo 360, Apollo 360 GPS Receiver, II Morrow, Inc., 1994.
Apollo 600 Operating Handbook, II Morrow, Inc., Apollo 618 With Airspace Alert Pilot's Operating Handbook (1991).
Apollo 600 Series, Apollo 600 Series, II Morrow, Inc., 1988-1991.
Apollo 604 Quick Reference Guide Version 2.0, Part No. 561-0061B Rev. 4, © 1989.
Apollo 800 Flybuddy Quick Reference Guide, Part No. 561-0060A.
Apollo 800 Operating Manual, II Morrow, Inc., Apollo 800 Flybuddy Pilot's Operating Manual (1990-1991).
Apollo 800, Apollo 800 Flybuddy, II Morrow, Inc., 1990.
Apollo 820 Flybuddy GPS Pilot's Operating Manual, Part No. 560-0067 Rev. 0, © 1991.
Apollo 820 Flybuddy GPS Quick Reference Guide, Part No. 561-0070.
Apollo 900 User's Guide, II Morrow, Inc., Handheld GPS Receiver User's Guide 560-0101-04 (1993-1994).
Apollo 900, Apollo 900 Handheld GPS Receiver, II Morrow, Inc., 1993.
Apollo 920 GPS Quick Start Guide, © 1994.
Apollo AL50 GPS Receiver and SL60 GPS Receiver/VHF Comm User's Guide, Part No. 560-0955-01 Rev. C © 2003.
Apollo GX User's Guide Models 50, 55, 60, 65, Part No. 560-0961-03b, © 2003.
Apollo GX50 Dealer/Customer Training Package, © 1998.
Apollo GX50 Quick Reference Guide, Part No. 561-0238-02, © 2001.
Apollo I Loran C Navigation Receiver Model 602, Part No. 561-0012.
Apollo II Model 612B Pilot's Operating Handbook, Part No. 560-0061D Rev. 4, 1987.
Apollo II Models 612, 614P, 614R Quick Reference Guide, Part No. 561-0017B, 1986.
Apollo Loran C Receiver Model 604 Pilot's Operating Handbook, Part No. 560-0038D Rev. 4, 1989.
Apollo Loran C Receiver Operation Manual, Part No. 560-0010, © 1983.
Apollo NMC 2001/2101 Approach Checklist, Part No. 561-1039-00, Apr. 1996.
Apollo NMC Operating Manual, II Morrow, Inc. / UPS Aviation Technologies, Inc., Apollo NMC Navigation Management Computer Operating Manual (1999).
Apollo NMC, Apollo Navigation Management Computer, II Morrow, Inc. / UPS Aviation Technologies, Inc., 1999.
Apollo NMS 2001/2101 Quick Reference Guide, Part No. 561-0228-00, © 1996.
Apollo Precedus Quick Reference Guide, Part No. 560-0115-01, © 1995.
Apollo Precedus User's Guide, II Morrow, Inc., Apollo Precedus User's Guide (1997).
Apollo Precedus, Apollo Precedus, II Morrow, Inc., 1997.
Apollo SL10 Audio Selector Panel User's Guide UPS Aviation Technologies, Part No. 560-0973-00a, © 2001.
Apollo SL15 Series Audio Selector Panel Operation Manual UPS Aviation Technologies, Part No. 560-0975-03 © 2001.
Clarke, John "A Speed Alarm for Cars", http://www.siliconchip.com.au/cms/A-103208/article.html, Nov. 10, 1999.
Clarke, John "A Speed Alarm for Cars", http://www.siliconchip.com.au/cms/A—103208/article.html, Nov. 10, 1999.
Court Papers from case No. 08CV-05061 .
Datus PNA Owner's Manual, Datus, Inc., Datus PNA Owner's Manual (2000).
Datus PNA, Datus PNA, Datus, Inc., 1999.
Gamin Nuvi 885 with MSN Direct Quick Start Manual, Part No. 190-01047-02 Rev. A, © 2008.
Garmin AT, Inc. 14 CFR Part 26 FCAS List, Document No. PD1669 Rev. 1, Nov. 3, 2008.
Garmin Declaration of Conformity for Electro Magnetic Conformity, Nov. 10, 2003.
Garmin DGPS 53 Integrated GPS/DGPS Receiver Owner's Manual and Reference Guide, Part No. 190-00194-00 Rev. A, © 2000.
Garmin Edge 605/705 GPS-Enabled Bike Computer Owner's Manual, Part No. 190-00813-00 Rev. C © 2008.
Garmin Edge 605/705 GPS-Enabled Bike Computer Owner's Manual, Part No. 190-00813-00 Rev. D, © 2009.
Garmin Edge 605/705 GPS-Enabled Bike Computer Quick Reference Guide, Part No. 190-00813-01 Rev. D © 2009.
Garmin eMap eMap, Garmin Corporation, 1999.
Garmin eMap Owner's Manual, Garmin Corporation, Gamin eMap Electronic Map Owner's Manual and Reference Guide (1999-2001).
Garmin eTrex Summit Personal Navigator Owner's Manual and Reference Guide, Part No. 190-00193-00 Rev. D © 2001.
Garmin eTrex Venture Personal Navigator Owner's Manual and Reference Guide, Part No. 190-00203-00 Rev. D © 2002.
Garmin Fishfinder 100 Blue Owner's Manual, Part No. 190-00198-00 Rev. A, © 2001.
Garmin Fishfinder 100 Owner's Manual, Part No. 190-00173-00 Rev. A, © 1999.
Garmin Fishfinder 160 Blue Owner's Manual, Part No. 190-00199-00 Rev. B, 0 2001.
Garmin Fishfinder 160 Owner's Manual, Part No. 190-00154-10 Rev. A, © 1999.
Garmin Fishfinder 240 Owner's Manual, Part No. 190-00155-10 Rev. A, © 2000.
Garmin Flush Mount Template, Part No. 190-00183-01 Rev. A.
Garmin GA 26C Remote GPS Antenna Installation Instructions, Part No. 190-00082-00 Rev. C, © 2000.
Garmin GBR 23 Beacon Receiver Owner's Manual and Reference Guide, Part No. 190-00195-00 Rev. A © 2000.
Garmin GMA 340 Audio Panel Pilot's Guide, Part No. 190-00149-10 Rev. C, © 2001.
Garmin GNC 250 Pilot's Guide, Garmin Corporation, GNC 250 Pilot's Guide (1995).
Garmin GNC 250 Pilot's Quick Reference Guide, Part No. 190-00067-51 Rev. A, © 1995.
Garmin GNC 250 XL Pilot's Guide, Garmin Corporation, GNC 250 XL Pilot's Guide and Reference (1997).
Garmin GNC 250 XL, GNC 250 XL, Garmin Corporation, 1997.
Garmin GNC 250, GNC 250, Garmin Corporation, 1995.
Garmin GNC 300 Installation Manual, Part No. 190-00067-02 Rev. J, © 1998.
Garmin GNC 300 Pilot's Guide, Garmin Corporation, GNC 300 Pilot's Guide and Reference Manual (1996).
Garmin GNC 300 XL Pilot's Guide, Garmin Corporation, GNC 300 XL Pilot's Guide and Reference (1999).
Garmin GNC 300 XL, GNC 300 XL, Garmin Corporation, 1999.
Garmin GNC 300, GNC 300, Garmin Corporation, 1996.
Garmin GPS 100 Aviation Kit Installation Manual, Part No. 190-00004-00 Rev. G, © 1992.
Garmin GPS 100 Personal Navigator Owner's Manual, Part No. 190-00001-00 Rev. A, © 1992.
Garmin GPS 100, GPS 100 Personal Navigator, Garmin International, Inc., 1992.
Garmin GPS 100AVD Owner's Manual, Garmin International, Inc., GPS 100AVD Personal Navigator Owner's Manual (1992).
Garmin GPS 12 Map Owner's Manual, Garmin Corporation, GPS 12 Map Owner's Manual and Reference Guide (1999-2000).
Garmin GPS 12 Map, GPS 12 Map, Garmin Corporation, 1999.
Garmin GPS 12 Personal Navigator Owner's Manual and Reference, Part No. 190-00143-10 Rev. B, © 1999.
Garmin GPS 12, 12XL, 48, 80 Addendum, Part No. 190-00239-00 Rev. A, © 2001.
Garmin GPS 120 User's Guide Owner's Manual and Reference, Part No. 190-00100-00 Rev. A, © 1995.
Garmin GPS 120XL Marine Navigator Owner's Manual and Reference, Part No. 190-00136-00 Rev. B, © 1997.
Garmin GPS 125 Sounder Marine Navigator Owner's Manual and Reference, Part No. 190-00111-00 Rev. B © 1997.
Garmin GPS 126/126 Marine Navigator Owner's Manual and Reference, Part No. 190-00151-00 Rev. A © 1997.
Garmin GPS 12CX Personal Navigator Owner's Manual and Reference, Part No. 190-00160-00 Rev. B, © 1999.
Garmin GPS 12XL Personal Navigator Owner's Manual and Reference, Part No. 190-00134-00 Rev. C, © 1997.
Garmin GPS 12XL Personal Navigator Owner's Manual and Reference, Part No. 190-00134-10 Rev. A, © 1998.
Garmin GPS 150 Installation Manual, Part No. 190-00026-00 Rev. Q, © 1998.
Garmin GPS 150 Pilot's Guide, Garmin Corporation, GPS 150 Pilot's Guide Owner's Manual and Reference (1997).
Garmin GPS 150 XL Pilot's Guide, Garmin Corporation, GPS 150 XL Pilot's Guide Owner's Manual and Reference (1997).
Garmin GPS 150 XL, GPS 150 XL, Garmin Corporation, 1997.
Garmin GPS 150, GPS 150, Garmin Corporation, 1997.
Garmin GPS 155/165 Pilot's Guide Addendum, Part No. 190-00065-10 Rev. B, © 1998.
Garmin GPS 155TSO Pilot's Guide, Garmin Corporation, GPS 155TSO Pilot's Guide Owner's Manual and Reference (1995).
Garmin GPS 155TSO, GPS 155TSO, Garmin Corporation, 1995.
Garmin GPS 155XL Pilot's Guide, Garmin Corporation, GPS 155XL Pilot's Guide and Reference (1999).
Garmin GPS 155XL, GPS 155XL, Garmin Corporation, 1999.
Garmin GPS 16 GPS Receiver/Antenna Quick Start Guide, Part No. 190-00228-11 Rev. B, © 2001.
Garmin GPS 165TSO Pilot's Guide, Garmin Corporation, GPS 165TSO Pilot's Guide and Reference (1995).
Garmin GPS 165TSO, GPS 165TSO, Garmin Corporation, 1995.
Garmin GPS 25 LP Series GPS Sensor Boards GPS25-LVC, GPS25-LVS, GPS25-HVS Technical Specification Part No. 190-00125-00 Rev. G, © 2000.
Garmin GPS 31/31 SL TracPak Technical Information, Part No. 190-00103-00 Rev. C, © 1996.
Garmin GPS 35 LP TracPak GPS Smart Antenna Technical Specification Models: GPS35-LVC, GPS35-LVS, GPS35-HVS, Part No. 190-00148-00 Rev. E, © 2000.
Garmin GPS 35 PC Quick Start Guide, Part No. 190-00115-00 Rev. B, © 1999.
Garmin GPS 35 USB Installation and Quick Start Guide, Part No. 190-00245-00 Rev. A, © 2001.
Garmin GPS 35/36 TracPak GPS Smart Antenna Technical Specification, Part No. 190-00104-00 Rev. D © 1999.
Garmin GPS 38 Personal Navigator Owner's Manual and Reference, Part No. 190-00112-00 Rev. B © 1997.
Garmin GPS 40 Personal Navigator Owner's Manual and Reference, Part No. 190-00063-00 Rev. B © 1994.
Garmin GPS 45 Personal Navigator Owner's Manual and Reference, Part No. 190-00070-00 Rev. B © 1994.
Garmin GPS 45XL Personal Navigator Owner's Manual and Reference, Part No. 190-00123-00 Rev. C © 1996.
Garmin GPS 48 Personal Navigator Owner's Manual and Reference, Part No. 190-00141-00 Rev. B © 1999.
Garmin GPS 50 Personal Navigator Owner's Manual, Part No. 190-00015-01 Rev. B, © 1992.
Garmin GPS 55AVD Owner's Manual, Garmin International, Inc., GPS 55AVD Personal Navigator Owner's Manual (1992).
Garmin GPS 55AVD, GPS 55AVD, Garmin International, Inc., 1992.
Garmin GPS 65 Personal Navigator Owner's Manual, Part No. 190-00038-00 Rev. G, © 1993.
Garmin GPS 75 Personal Navigator Owner's Manual, Part No. 190-00046-00 Rev. D, © 1993.
Garmin GPS 76 Owner's Manual and Reference Guide, Part No. 190-00229-00 Rev. B, © 2001.
Garmin GPS 89 Owner's Manual, Garmin International, Inc., GPS 89 Personal Navigator Owner's Manual and Reference (1996).
Garmin GPS 89, GPS 89, Gamin International, Inc., 1996.
Garmin GPS 90 Owner's Manual, Garmin International, Inc., GPS 90 Personal Navigator Owner's Manual and Reference (1995).
Garmin GPS 90, GPS 90, Garmin International, Inc., 1995.
Garmin GPS 92 Owner's Manual, Garmin Corporation, GPS 92 Owner's Manual and Reference (1998).
Garmin GPS 92, GPS 92, Garmin Corporation, 1998.
Garmin GPS 95 STD Owner's Manual, Garmin International, Inc., GPS 95 STD Personal Navigator Owner's Manual (1993).
Garmin GPS 95 STD, GPS 95 STD, Garmin International, Inc., 1993.
Garmin GPS 95 XL Owner's Manual, Garmin International, Inc., GPS 95 XL Personal Navigator Owner's Manual (1994).
Garmin GPS 95 XL, GPS 95 XL, Garmin International, Inc., 1994.
Garmin GPS 95AVD Owner's Manual, Garmin International, Inc., GPS 95AVD Personal Navigator Owner's Manual (1993).
Garmin GPS 95AVD, GPS 95AVD, Garmin International, Inc., 1993.
Garmin GPS II Owner's Manual and Reference, Part No. 190-00118-00 Rev. A, © 1996.
Garmin GPS II Plus Owner's Manual and Reference, Part No. 190-00130-00 Rev. A,© 1997.
Garmin GPS II Plus Owner's Manual and Reference, Part No. 190-00130-10 Rev. A,© 1998.
Garmin GPS II Plus Quick Reference Guide, Part No. 190-00130-01 Rev. A, © 1998.
Garmin GPS III Owner's Manual, Garmin Corporation, GPS III Pilot Owner's Manual and Reference (1999).
Garmin GPS III Pilot, GPS III Pilot, Garmin Corporation, 1997.
Garmin GPS III Plus Features Addendum, Part No. 190-00162-02 Rev. A, © 1999.
Garmin GPS III Plus Owner's Manual, Garmin Corporation, GPS III Plus Owner's Manual and Reference (1997).
Garmin GPS III Plus, GPS III Plus, Garmin Corporation, 1997.
Garmin GPS III, GPS III Garmin Corporation, 1997.
Garmin GPS V Personal Navigator Owner's Manual and Reference Guide, Part No. 190-00204-10 Rev. C © 2003.
Garmin GPSCOM 170 Owner's Manual and Reference, Part No. 190-00093-00 Rev. D, © 1997.
Garmin GPSCOM 190 Owner's Manual, Garmin Corporation, GPSCOM 190 Owner's Manual and Reference (1996).
Garmin GPSCOM 190, GSPCOM 190, Garmin Corporation, 1996.
Garmin GPSMap 130 Owners Manual and Reference, Part No. 190-00106-00 Rev. B, © 1996.
Garmin GPSMap 135 Sounder Owner's Manual and Reference, Part No. 190-00107-00 Rev. C, © 1997.
Garmin GPSMap 162 Chartplotting Receiver Owner's Manual and Reference Guide, Part No. 190-00169-00 Rev. C, © 2001.
Garmin GPSMap 175 Owner's Manual and Reference, Part No. 190-00096-00 Rev. A, © 1996.
Garmin GPSMap 185 Sounder Owner's Manual and Reference, Part No. 190-00158-10 Rev. A, © 1999.
Garmin GPSMAP 195 Pilot's Guide, Garmin Corporation, GPSMAP 195 Pilot's Guide and Reference (1996-1999).
Garmin GPSMAP 195, GPSMAP 195, Garmin Corporation, 1996.
Garmin GPSMap 200 Integrated GPS Navigator Users Manual, Part No. 190-00052-00 Rev. D, © 1993.
Garmin GPSMap 205/210/220 Owners Manual and Reference, Part No. 190-00061-00 Rev. B, © 1994.
Garmin GPSMap 215/225 Owner's Manual and Reference, Part No. 190-00061-20 Rev. B, © 2000.
Garmin GPSMap 235 Sounder Owner's Manual and Reference, Part No. 190-00138-10 Rev. B, © 1999.
Garmin GPSMap 295 Pilot's Guide and Reference, Part No. 190-00174-00 Rev. C, © 2002.
Garmin GPSMap 295 Quick Start Guide, Part No. 190-00174-01 Rev. B, © 2000.
Garmin GTX 320 Transponder Pilot's Guide, Part No. 190-00133-00 Rev. A, © 1997.
Garmin GTX 320A Mode A/C Transponder Pilot's Guide, Part No. 190-00133-09 Rev. A, © 2000.
Garmin Introduction to Geocaching, Part No. 190-00252-00 Rev. A, © 2001.
Garmin Loran TD Position Format Handbook, Part No. 190-00190-00 Rev. A, © 1999.
Garmin NavTalk Owner's Manual, Garmin Corporation, Garmin NavTalk Cellular Phone / GPS Receiver Owner's Manual and Reference Guide (1999).
Garmin NavTalk Pilot Pilot's Guide, Garmin Corporation, NavTalk Pilot Pilot's Guide and Reference (2000).
Garmin NavTalk Pilot, NavTalk Pilot, Garmin Corporation, 2000.
Garmin NavTalk, NavTalk, Garmin Corporation, 1999.
Garmin Nuvi 800 Series Personal Travel Assistant Owner's Manual, Part No. 190-00847-00 Rev. B, © 2008.
Garmin Nuvi 800 Series Personal Travel Assistant Quick Start Manual, Part No. 190-00847-01 Rev. C, © 2008.
Garmin Nuvi 805 Series Owner's Manual, Part No. 190-01047-00 Rev. A, © 2008.
Garmin Nuvi 805 Series Quick Start Manual, Part No. 190-01047-01 Rev. A, © 2008.
Garmin Nuvi 880 Personal Travel Assistant with MSN Direct Quick Start Manual, Part No. 190-00847-02 Rev. C © 2008.
Garmin PCX5/PCX5AVD/PC150 PC Software Kit Owner's Manual, Part No. 190-00045-00 Rev. D, © 1999.
Garmin StreetPilot Atlantic ColorMap Owner's Manual, Garmin Corporation, StreetPilot Atlantic ColorMap Owner's Manual and Reference Guide (1999).
Garmin StreetPilot Atlantic ColorMap, StreetPilot Atlantic ColorMap, Garmin Corporation, 1999.
Garmin StreetPilot GPS ColorMap Owner's Manual, Garmin Corporation, StreetPilot GPS ColorMap Owner's Manual and Reference Guide (1999-2000).
Garmin StreetPilot GPS ColorMap, StreetPilot GPS ColorMap, Garmin Corporation, 1999.
Garmin VHF 720 Marine Radio Owner's Manual and Reference Guide, Part No. 190-00150-00 Rev. B. © 1999.
Garmin VHF 725 Submersible Marine Radio Owner's Manual and Reference Guide, Part No. 190-00179-00 Rev. A. © 1999.
Garmin VHF 725e Submersible Marine Radio Owner's Manual and Reference Guide, Part No. 190-00163-00 Rev. A, © 1999.
Hogan, Thom "Hertz Neverlost Navigation System", http://www.bythom.com/neverlost.htm, 2001.
II Morrow Model 618, 618C, 618R Quick Reference Guide, Part No. 561-0086A Rev. 1, © 1989.
II Morrow Waypoint Manager for Windows Version 4 User's Guide, Part No. 560-0138-02 Rev. 2, © 1998.
Jensen, C.S. et al. "The INFATI Data" A TimeCenter Technical Report TR-79, Jul. 28, 2004.
Magellan DataSend User's Guide for use with the GPS 315/320, Part No. 630333 Rev. A, © 1999.
Magellan GPS 2000 User Guide, Magellan Navigation, Inc., Magellan GPS 2000 User Guide (1995).
Magellan GPS 2000 XL User Manual, Magellan Navigation, Inc., Magellan GPS 2000 XL User Manual (1996).
Magellan GPS 2000 XL, Magellan GPS 2000 XL, Magellan Navigation, Inc., 1996.
Magellan GPS 2000; Magellan GPS 2000, Magellan Navigation, Inc., 1995.
Magellan GPS 300 User Manual, Magellan Corporation, Magellan GPS 300 User Manual (1999).
Magellan GPS 300, Magellan GPS 300, Magellan Corporation, 1999.
Magellan GPS 3000 User Guide, Magellan Navigation, Inc., Magellan GPS 3000 Satellite Navigator User Manual (1995).
Magellan GPS 3000 XL User Guide, Magellan Navigation, Inc., Magellan GPS 3000 XL Satellite Navigator User Manual (1996).
Magellan GPS 3000 XL, Magellan GPS 3000 XL, Magellan Navigation, Inc., 1996.
Magellan GPS 3000, Magellan GPS 3000, Magellan Navigation, Inc., 1995.
Magellan GPS 315, Magellan GPS 315, Magellan Corporation, 2000.
Magellan GPS 315/320 Questions and Solutions.
Magellan GPS 315/320 User Manual, Magellan Corporation, Magellan GPS 315/320 User Manual (2000).
Magellan GPS 320, Magellan GPS 320, Magellan Corporation, 2000.
Magellan GPS 4000 User Guide, Magellan Navigation, Inc., Magellan GPS 4000 Satellite Navigator User Manual (1996).
Magellan GPS 4000 XL User Guide, Magellan Navigation, Inc., Magellan GPS 4000 XL Satellite Navigator User Manual (1996).
Magellan GPS 4000 XL, Magellan GPS 4000 XL, Magellan Navigation, Inc., 1996.
Magellan GPS 4000, Magellan GPS 4000, Magellan Navigation, Inc., 1996.
Magellan GPS Blazer12 User Manual; Magellan Systems Corporation, Magellan GPS Blazer12 User Manual (1999).
Magellan GPS Blazer12, Magellan GPS Blazer12, Magellan Systems Corporation, 1999.
Magellan GPS CoIorTRAK User Manual, Magellan Systems Corporation, Magellan GPS CoIorTRAK Satellite Navigator User Manual (1998).
Magellan GPS ColorTRAK, Magellan GPS ColorTRAK, Magellan Systems Corporation, 1998.
Magellan GPS Companion Guide, Magellan Corporation, GPS Companion (2000).
Magellan GPS Companion, Magellan GPS Companion / Map Companion CD, Magellan Corporation, 2000.
Magellan GPS Satellite Navigator Meridian XL and NAV 1200XL Reference Guide, Part No. 22-10211-000 © 1995.
Magellan GPS SkyNav 5000 User Guide, Part No. 22-40002-030, © 1994.
Magellan Map 330 Series User Manual, Magellan Corporation, Magellan Map 330 Series User Manual (2000).
Magellan Map 330 Series, Magellan Map 330 Series, Magellan Corporation, 2000.
Magellan Map 410 User Manual, Magellan Corporation, Magellan Map 410 User Manual (1999).
Magellan Map 410, Magellan Map 410, Magellan Corporation, 1999.
Magellan Meridian XL User Manual, Magellan Navigation, Inc., Meridian XL User Manual (1996).
Magellan Meridian XL, Meridian XL, Magellan Navigation, Inc., 1996.
Magellan NAV 5000DLX User Guide, Magellan Navigation, Inc., NAV 5000DLX User Guide (1994).
Magellan NAV 6500/NAV 6510 User Manual, Part No. 630323, © 1998.
Magellan NAV DLX-10 User Manual, Magellan Navigation, Inc., NAV DLX10 User Manual (1995).
Magellan NAV DLX-10, NAV DLX10, Magellan Navigation, Inc., 1995.
Magellan TrailBlazer XL Reference Guide, Magellan Navigation, Inc., TrailBlazer XL Reference Guide (1995).
Magellan TrailBlazer XL, TrailBlazer XL , Magellan Navigation, Inc., 1995.
Magnavox MX100 Operating Instructions, Magnavox Government and Industrial Electronics Company, MX100 GPS Navigator Operating Instructions (1991). (See NAVICO002320-NAVICO002363).
Magnavox MX100, MX100 GPS Navigator, Magnavox Government and Industrial Electronics Company, 1991.
Mehaffey, Joe and Jack Yeazel "Magellan Model 315 GPS Receiver", http://gpsinformation.net/main/mag-315.htm Aug. 31, 1999.
Mehaffey, Joe and Jack Yeazel "The Magellan Map 330(X) Mapping GPS Receiver", http://gpsinformation.net/main/mag-330.htm, Dec. 4, 2002.
Mehaffey, Joe and Jack Yeazel, The ETAK SkyMap GPS/Moving Map Display System, ETAK SkyMap Review (1998) (reviewing ETAK SkyMap GPS/Moving Map Display System).
Paine, Michael "Speed Control Devices for Cars" Roads and Traffic Authority Road Safety and Traffic Management Research Report RR 5/96, ISBN 0 7310 5304 4, Jul. 1996.
Solus Pro/Topo USA, Solus Pro/Topo USA, DeLorme Publishing Company (1998).
Tomtom Mobile User Guide Manual and Tutorials, © 2004.
Tomtom Navigator HP Edition Manual, © 2004.
Tomtom Navigator Quick Start Guide User Guide Installation Poster Manual and Tutorials, © 2004.
Tomtom Navigator Quick Start Guide User Guide Installation Poster Manual and Tutorials, v4.10 © 2004.
Tomtom Navigator Traffic Plug-In Introduction, © 2004.
Zhao, Yilin "Mobile Phone Location Determination and Its Impact on Intelligent Transportation Systems", IEEE Transactions on Intelligent Transportation Systems, vol. 1, No. 1, Mar. 2000.

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20100131200A1 (en) * 2007-04-24 2010-05-27 Tracker Oy Guiding positioning method, positioning device and computer program product
US20130131980A1 (en) * 2007-09-07 2013-05-23 On Time Systems, Inc. Resolving gps ambiguity in electronic maps
US9043138B2 (en) 2007-09-07 2015-05-26 Green Driver, Inc. System and method for automated updating of map information
US10083607B2 (en) 2007-09-07 2018-09-25 Green Driver, Inc. Driver safety enhancement using intelligent traffic signals and GPS
US10311724B2 (en) 2007-09-07 2019-06-04 Connected Signals, Inc. Network security system with application for driver safety system
US10198942B2 (en) 2009-08-11 2019-02-05 Connected Signals, Inc. Traffic routing display system with multiple signal lookahead

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US6604047B1 (en) 2003-08-05
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USRE43620E1 (en) 2012-08-28
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US7490005B2 (en) 2009-02-10
US20050216183A1 (en) 2005-09-29

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