A cellular telephone system includes a plurality of cell sites and a mobile telephone switching office. call management, including selection of a cell site most appropriate for a call associated with a mobile unit, are made based on the geographic location of the mobile unit as opposed to the strength of the signal associated with the call. The geographic location of the mobile unit is precisely determined using a NAVSTAR global positioning system, or its equivalent. Each mobile unit includes a GPS receiver that receives information from a geostationary satellite to determine the precise location of the mobile unit. This position information is relayed to the cell site initially managing the mobile unit, and the mobile unit is handed off to a cell site that is most appropriate for the call. Initial selection of an entrance cell site is made based on signal strength, but further call management decisions are made based on location of the mobile unit.
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11. A method of making call management decisions in a cellular telephone system having a plurality of cell sites and an mtso comprising:
A) establishing a geographic location for a mobile unit; B) matching the geographic location of the mobile unit to a cell site location; and C) using the cell site matched to the mobile unit to handle calls associated with the mobile unit. and D) taxing and billing for the mobile unit irrespective of cell site geographic location.
10. A cellular communications system that includes one or more cell sites and an mtso, said system comprising:
A) locating means in a mobile unit in a the cellular communications system for determining the exact geographic location of the mobile unit; and B) management means in the mtso for making management decisions based on the geographic location of the mobile unit, said management means including means for storing the geographic location for each cell site in the cellular communications system and for comparing the exact geographic location of the mobile unit to the geographic location of each cell site and for selecting a chosen cell site for use by the mobile unit based on such comparison and for call routing to provide proper services for the mobile unit.
1. A cellular communications system that includes one or more cell sites and an mtso, said system comprising:
A) locating means in a mobile unit of a cellular communications system for determining the exact geographic location of the mobile unit, said locating means including means using a satellite communication system for establishing an exact geographic location of said mobile unit and for emitting a position signal of said exact geographic location; B) means in the mtso for receiving the position signal transmitted by the mobile unit and using that position signal to establish the exact geographic location of the mobile unit vis e a vis cell sites in the cellular communications network system; and C) data storage and comparison means in the mtso storing cell site location data giving a geographic location for each of the cell sites in the cellular communications network system and effecting a comparison between said position signal and said the cell site location data and selecting a chosen cell site for use by said mobile unit based on said comparison and establishing communication between said mobile unit and said chosen cell site based on the exact geographic location of the mobile unit and using the geographic location of the mobile unit for taxing and billing wherein said taxing and billing is irrespective of cell site geographic location.
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The present invention relates to the general art of cellular mobile radiotelephone (CMR) technology, and to the particular field of managing the calls in a cellular system.
CMR is a rapidly growing telecommunications system. The typical CMR system includes a multiplicity of cells, such as indicated in FIG. 1. A particular geographic area is subdivided into a multiplicity of subareas, with each of the subareas being serviced by a stationary transmitter/receiver setup. The cells are set up to carry signals to and from mobile units M in the range of the cell. If one cell becomes too crowded, it can be divided into smaller cells, by a process known as cell splitting. As can be seen from FIG. 1, any particular geographic area can become quite complicated with cells overlapping each other, and overlapping cells of other neighboring cellular systems. It is noted that the term "cellular" is intended to be a term of convenience, and is not intended to be limiting. The present disclosure is intended to encompass any communication system in which an overall area can be divided into one or more subareas such as shown in FIG. 1.
A typical CMR set up is indicated in FIGS. 2 through 7, and will be described so an understanding of the problem to which this invention is directed can be obtained.
FIGS. 2, 3 and 4 show a typical cellular telephone unit 2 having a unique mobile identification number stored in a suitable location such as an electrically erasable programmable read-only memory (not shown). Telephone units of this kind are known to those skilled in this art, and thus will not be described in detail.
The telephone unit 2 includes a handset 4 having a keypad 5 as well as a speaker 6 and a microphone 7. A transceiver 8, ordinarily built into the telephone unit 2, exchanges signals via an antenna 10 with a mobile telecommunications switching office or MTSO 12 via a cell site 14. A duplexer 15 connects the antenna to the transceiver. The cell site 14 includes an antenna 16 connected to a control terminal 17 via a transceiver 18. The cell 14 is connected to the MTSO via a transmission link 20.
Referring to FIGS. 4, 4A and 5, the operation of the CMR can be understood. The mobile unit M moves about the geographic areas covered by the various cells as indicated in FIG. 1. As that mobile unit moves about, it decodes the overhead message control signals generated by various cell site control channels. The mobile unit locks onto the cell site that is emitting the strongest signal. The mobile unit rescans channels periodically to update its status. If, for example, a fixed-position land-based telephone T is used to call the mobile unit, a signal is sent via landlines L, to the central office CO of a public/switched telephone system (PTSN) 12A. This system then utilizes the switching network SN associated therewith to call the MTSO 12 via a transmission link L1. The MTSO then utilizes its own switching network and generates a page request signal to all cell sites via transmission links, such as the transmission link 20. The cell site which has been notified of the presence of the mobile unit M sends a signal back to the MTSO via the landlines alerting the MTSO of the presence of the mobile unit. The MTSO then orders the mobile unit, via the notifying cell site, to tune to an assigned channel and receive the call. Billing and other business information are recorded in the MTSO at this time.
On the other hand, during call origination, the mobile unit rescans the control channels to determine which is the best server based on signal strength. Upon selecting the best server, the mobile unit transmits call site information on the control channel receive frequency and then receives a voice channel to tune to if the mobile unit is authorized to place a call.
As the mobile unit moves, the signal strength between that mobile unit and the originating cell site changes, and perhaps diminishes. Since signal strength is an inverse function of the square of the distance between the mobile unit and the cell site, signal strength can change rapidly and drastically as the mobile unit moves with respect to the cell site and therefore must be monitored closely. Moreover, signal strength can be strongly affected by terrain, environmental conditions as well as interference from other sources. The MTSO has a signal strength table ST, and signal strength from the mobile unit is constantly compared to acceptable signal strength levels in the table. Such a table can be located in each cell site if desired.
Should signal strength diminish below a preset range, the MTSO generates a "locate request" signal to all cell sites that neighbor the original cell site. Each of such neighboring cell sites receiving a signal from the mobile unit signals the MTSO, and the signal strength from such neighboring cell sites are checked against the signal strength table. The MTSO makes a decision as to which cell site should control the call, and notifies the original cell site to order the mobile unit to retune to a voice channel of the new cell site.
As soon as the mobile unit retunes, the mobile unit completes the call via the new cell site channel. This transfer of control is known as a handoff.
While this method of making switching decisions has worked well in the past, the growth and sophistication of the cellular industry has resulted in severe drawbacks to this method. First, due to uneven terrain, unpredictable environmental conditions, interference and the like, many cellular companies have been required to construct numerous cell sites. These cells often overlap neighboring cell sites and provide redundant coverage. This is extremely expensive, not only from the standpoint of construction costs, but due to monitoring and staffing costs as well. Even at this, conditions can change so rapidly that coverage may still be inconsistent.
Still further, due to idiosyncrasies in terrain and environment, a mobile unit may use a cell that is located far from the mobile unit rather than a cell located immediately adjacent to that mobile unit. Hilly terrain is a common example of this problem. While this may not be a technical problem, it is important because a cellular company cannot assess long distance charges and/or message units to the calls. This deprives the cellular company of income that it could otherwise receive and customers of optimum service. Communities are also deprived of tax income that might be assessed against such calls as well.
Still further, since only signal strength is used to make switching decisions, the location of a caller is not ascertainable. This could be important in keeping track of calls.
Other problems that have been experienced in such cellular systems include the inability to completely control the cell site transmit signal, crosstalk noise interference, dropped calls, overlap and an inability to adequately service areas with undulating terrain without infringing the borders of other cellular territories.
Therefore, there is a need for a cellular system that can provide consistently high quality service, yet can do so with a minimum number of cell sites in a particular geographic area. Still further, there is a need for a cellular system that can accurately assess charges for all CMR services including message units for calls covering a certain distance within the geographic area.
It is a main object of the present invention to provide a cellular system that can provide high quality service using only a minimum number of cell sites within a given geographic area.
It is another object of the present invention to provide a cellular system that can accurately track a mobile unit within the geographic area covered by the cellular system.
It is another object of the present invention to provide a cellular system that can assess charges for calls based on the geographic location of the call.
These, and other, objects are achieved by a cellular system that makes switching and call management decisions based on the location of a mobile unit rather than on the strength of the signal associated with that mobile unit. The exact location of each mobile unit is determined using a Global Positioning System (GPS), LORAN, or other position determining system. The NAVSTAR global positioning system, or GPS, is a system employing ultimately eighteen satellites in twelve hour orbits of 55° inclination. The system is being implemented by the Department of Defense for military use. However, it has a "clear access" (C/A) channel that is available for general civil use. The GPS is a passive navigation system on the part of the user, in that only reception of satellite-transmitted signals is required by the user to compute position. The GPS provides a capability for continuous position determination, and a position can be computed on the order of every second of time, and thus provides a capability of determining the position of a highly mobile vehicle. A full discussion of the GPS is presented in textbooks, such as "Handbook of Modern Electronics and Electrical Engineering," edited by Charles Belove and published in 1986 by Wiley-Interscience (see chapter 54 thereof, the disclosure of which is incorporated herein by reference), and includes a satellite positioned in a geostationary orbit and communicating with ground-based receivers. Based on the signals received from the satellite, the exact position in longitude and latitude, of the ground-based receiver can be determined with an extremely high degree of accuracy and precision.
The exact longitude and latitude of the mobile unit is then communicated to the MTSO, and the cell site that services that particular position is signalled by the MTSO to carry the call associated with the mobile unit. The position of the mobile unit is constantly updated, and call management decisions, such as handoffs, can be made based on the location of the mobile unit rather than the strength of the signal associated with that unit. The MTSO has a look-up table in its data storage facilities that compares positional data from the mobile units to data associated with cell site coverage areas. Based on a look up in this table, the MTSO can select the cell site most appropriate to a call.
Since the position of the mobile unit is known to the MTSO, the assessment of message units, taxes, and other charges can be made. The billing will be more consistent than is possible with present systems. Of course, call routing will be greatly improved in the system of the present invention as compared to prior systems.
Still further, since call management decisions are made based on position of the mobile unit, the number of cell sites can be reduced as communication is not subject to vagaries of weather or the like to the degree that call management decisions based on signal strength are. Even with the reduced number of cell sites, the quality of calls using such a system is improved due to proper handoff. The system is quite flexible, and cell site placement and frequency reuse are extremely efficient since call management is much more precise than in systems that use signal strength to make call management decisions.
The cellular system of the present invention in which call management decisions are made based on position of the mobile unit can reduce or eliminate the provision of cellular service beyond the authorized area, in effect reducing the interference to and from neighboring cellular carriers (reduction of inter-system interference) and more precisely define the inter-system service boundaries and handoff parameters. This system also permits precise definition of service boundaries for individual cell sites thereby allowing for greater system control and the reduction of intra-system interference. Still further, accurate and detailed cell site usage and traffic pattern data can be developed in the present system, thereby enabling accurate and precise control of system growth. The present cellular system can also be real-time tailored based on current cellular use.
FIG. 1 illustrates a geographic area divided into a multiplicity of cells.
FIG. 2 illustrates a typical prior art mobile cellular telephone and its link with a fixed cell site and an MTSO.
FIG. 3 illustrates the mobile unit of the cellular telephone system shown in FIG. 2.
FIG. 4 illustrates a typical prior art cellular system in which a mobile unit can be connected with a fixed-position unit.
FIG. 4A is a block diagram showing systems included in the MTSO shown in FIG. 4.
FIG. 5 is a flow diagram of a call originated by the PTSN (public service telephone network) and a mobile unit using a prior art cellular system.
FIG. 6 is a block diagram of a mobile unit of a cellular telephone system which incorporates a GPS location determining system embodying the present invention.
FIG. 7 illustrates a cellular system incorporating a GPS position locating system for a mobile unit communicating with other units, such as the fixed-position unit shown.
FIG. 7A is a block diagram showing systems included in the MTSO shown in FIG. 7.
FIG. 8 is a block diagram illustrating the cellular system embodying the present invention.
FIG. 9 illustrates a look-up table that is incorporated into the MTSO of the present invention to make call management decisions based on the location of a mobile unit.
FIG. 10 is a block diagram illustrating a landline-to-mobile unit call in which position data are exchanged between the mobile unit and the MTSO.
FIG. 11A and 11B comprise a flow chart illustrating a call sequence between a mobile unit and another unit in which switching decisions are made based on the position of the mobile unit rather than the strength of the signal associated with the mobile unit.
Shown in FIGS. 6, 7 and 7A is a cellular system 20 embodying the present invention. The cellular system 20 uses positional data associated with the mobile unit M' to make call management decisions. To this end, the cellular system 20, while similar in all other respects to the cellular system illustrated in FIGS. 2 and 3, includes means for accurately and precisely determining the exact position of the mobile unit M', and then further includes means for using this positional information to determine which cell site is best suited to handle a call associated with that mobile unit M'.
The means for accurately determining the precise position of the mobile unit includes a Global Positioning System. The GPS includes satellites, such as satellite 22 in geostationary orbit about the earth. Each mobile unit further includes a GPS receiver 24 located between the duplexer and the logic circuitry 25 of the mobile unit. The GPS receiver communicates with the satellite 22 and the exact longitude and latitude of the mobile unit are determined. This information is sent to the MTSO via a cell site, and the MTSO uses a look-up table such as disclosed in FIG. 9, containing the geographic location of each cell site in the cellular system, to determine which cell site is most appropriate for use by the mobile unit. The mobile unit communicates with cell sites using unused bits of the aforediscussed overhead messages to send its positional information to the MTSO when the mobile unit is first activated. This positional information is relayed to the MTSO by the first cell site to communicate with the mobile unit. The MTSO then selects the cell site most appropriate for the mobile unit and hands that mobile unit off to that cell site. The cell sites transmit system service boundaries in their overhead messages that are interpreted by mobile units. The mobile units use the location information supplied by the GPS receiver as opposed to signal strength to determine which system to originate on. Call termination can utilize the paging process as is currently utilized. A response from a mobile unit includes the location information, and the designated control channel instructs the mobile unit to tune to one of its channels. A call in progress utilizes the overhead message of the voice channel to communicate location information. Once a mobile unit that is call processing on a particular site crosses a cell boundary, it is instructed to perform a handoff to the cell that is to service the new location. It is understood that the GPS is used as an example of the preferred source of positional data; however, other sources similar to the GPS can be used without departing from the scope of the present invention. All that is required is that the source of positional data be able to generate precise and accurate locational data on a fixed or a rapidly moving object. It is also helpful, but not absolutely required, that the CMR be only passively involved in the determination of the positional data.
The handoff process is similar to the present handoff processes, except it will be controlled according to position of the mobile unit instead of signal strength. This position information is used to determine call rating and taxing for billing purposes and call routing to make sure that the proper services for that location are provided.
A "locate request" signal is not used, since the exact location of the mobile unit is known to the MTSO. However, as indicated in FIG. 8, a signal strength method can also be used in making call management decisions if suitable. Such a process would be used if the mobile unit moves into a prior art cellular system.
A call using the cellular system of the present invention is illustrated in FIG. 11. Initial communication between a mobile unit and the MTSO is established using the overhead communication network described above. The mobile unit scans marker channels and initially locks onto the cell site that has the strongest signal. This cell site may not be the most appropriate cell site for use by that mobile unit, but it serves as an entrey into the system. Once this initial communication is established, the mobile unit uses the GPS receiver 24 and GPS satellite 22 and to determine its exact longitude and latitude. This information is then relayed to the MTSO using the originating cell site. The MTSO uses this information in conjunction with a look-up table such as shown in FIG. 9 to establish communication between the mobile unit and the cell site most appropriate to that mobile unit. The mobile unit is then handed off to that cell site. A call initiated by that mobile unit is routed through the appropriate cell site.
As indicated in FIG. 11, business information associated with the call, can be recorded at the MTSO. As indicated in FIG. 10, the dotted lines represent data transmission that contains GPS information. It is also noted that since both a position controlled system and a signal strength system are included in the cellular system of the present invention, the MTSO can include a software system in the memory 30 shown in FIG. 8 to use the position controlled system, but to also test signal strength, and to use a signal strength controlled system if a signal still falls below a predetermined value when making call management decisions based on the position of the mobile unit. In this manner, the best of both systems can be obtained.
The system of the present invention can also be used to allow a mobile to place calls only on its home system at the decision of the mobile. The mobile locating features of the system could also be important in other contexts, such as emergencies or the like.
It is understood that while certain forms of the present invention have been illustrated and described herein, it is not to be limited to the specific forms or arrangements of parts described and shown.
Dennison, Everett, Duffy, Timothy J., Jones, Scott L., Nass, Edwin L., Pauley, Gregory T., Shale, Deborah J.
Patent | Priority | Assignee | Title |
10455356, | Sep 24 1999 | DUPRAY, DENNIS | Network services dependent upon geographical constraints |
10641861, | Jun 02 2000 | MOBILE MAVEN LLC | Services and applications for a communications network |
10684350, | Jun 02 2000 | MOBILE MAVEN LLC | Services and applications for a communications network |
10849089, | Aug 23 2010 | FineTrak, LLC | Resource allocation according to geolocation of mobile communication units |
11610241, | Nov 07 2006 | Real estate transaction system | |
11765545, | May 28 2004 | Dennis, Dupray | Network services dependent on geographical constraints |
11971491, | Aug 16 2006 | MOBILE MAVEN LLC | Services and applications for a communications network |
12156165, | Aug 23 2010 | Resource allocation according to geolocation of mobile communication units related applications | |
6141548, | Feb 02 1998 | GENERAL DYNAMICS ADVANCED INFORMATION SYSTEMS, INC; GENERAL DYNAMICS MISSION SYSTEMS, INC | Method and apparatus for location based intercept in a communications system |
6144336, | May 19 1998 | KARMA AUTOMOTIVE, LLC | System and method to communicate time stamped, 3-axis geo-position data within telecommunication networks |
6154172, | Mar 31 1998 | NAGRAVISION S A | System and process for limiting distribution of information on a communication network based on geographic location |
6289297, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Method for reconstructing a video frame received from a video source over a communication channel |
6321092, | Sep 15 1999 | Unwired Planet, LLC | Multiple input data management for wireless location-based applications |
6385454, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Apparatus and method for management of resources in cellular networks |
6393293, | Jan 21 2000 | CDC PROPRIETE INTELLECTUELLE | Method for rectangular parameterization of a geographic area using a geolocation algorithm |
6400943, | Feb 03 1997 | HANGER SOLUTIONS, LLC | Method and apparatus for using advanced positioning systems in cellular communication networks |
6438136, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Method for scheduling time slots in a communications network channel to support on-going video transmissions |
6445701, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Channel access scheme for use in network communications |
6490455, | Oct 20 1998 | Samsung Electronics, Co., Ltd. | Apparatus and method for detecting a mobile phone in idle state |
6493338, | May 19 1997 | KARMA AUTOMOTIVE, LLC | Multichannel in-band signaling for data communications over digital wireless telecommunications networks |
6507587, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Method of specifying the amount of bandwidth to reserve for use in network communications |
6519004, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Method for transmitting video information over a communication channel |
6529823, | Jan 28 1999 | International Business Machines Corporation | Maintaining desired distribution of machines using time multiplexed global positioning system |
6591103, | Jun 30 1999 | International Business Machine Corp. | Wireless telecommunications system and method of operation providing users' carrier selection in overlapping hetergenous networks |
6618363, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Method for adapting video packet generation and transmission rates to available resources in a communications network |
6681121, | May 19 1998 | KARMA AUTOMOTIVE, LLC | Circuitry for activating a modem in a cellular telephone |
6690681, | May 19 1997 | KARMA AUTOMOTIVE, LLC | In-band signaling for data communications over digital wireless telecommunications network |
6714789, | Sep 18 2000 | Sprint Spectrum, L.P. | Method and system for inter-frequency handoff and capacity enhancement in a wireless telecommunications network |
6754266, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Method and apparatus for use in transmitting video information over a communication network |
6952181, | Sep 09 1996 | FineTrak, LLC | Locating a mobile station using a plurality of wireless networks and applications therefor |
7009994, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Channel access scheme for use in network communications |
7020463, | Mar 09 2001 | DIRECTV, LLC | Methodology for mobile user terminals in broadband systems |
7075943, | Oct 09 1998 | Microsoft Technology Licensing, LLC | Channel access scheme for use in network communications |
7092722, | Jul 26 2001 | Sprint Spectrum LLC | Method and system for establishing mobile station active set based on mobile station location |
7133685, | Jul 11 2001 | UNWIRED PLANET IP MANAGER, LLC; Unwired Planet, LLC | Monitoring boundary crossings in a wireless network |
7151768, | May 19 1997 | KARMA AUTOMOTIVE, LLC | In-band signaling for data communications over digital wireless telecommunications networks |
7206305, | May 19 1997 | KARMA AUTOMOTIVE, LLC | Software code for improved in-band signaling for data communications over digital wireless telecommunications networks |
7215965, | Nov 01 2001 | KARMA AUTOMOTIVE, LLC | Facility and method for wireless transmission of location data in a voice channel of a digital wireless telecommunications network |
7221669, | May 19 1997 | KARMA AUTOMOTIVE, LLC | Cellular telephone having improved in-band signaling for data communications over digital wireless telecommunications networks |
7260399, | Aug 30 2004 | Sprint Spectrum LLC | Method and system for asymmetric handoff of wireless communication sessions |
7274332, | Sep 09 1996 | TracBeam, LLC | Multiple evaluators for evaluation of a purality of conditions |
7286522, | May 19 1998 | KARMA AUTOMOTIVE, LLC | Synchronizer for use with improved in-band signaling for data communications over digital wireless telecommunications networks |
7298327, | Sep 09 1996 | TracBeam LLC | Geographic location using multiple location estimators |
7317696, | May 19 1997 | KARMA AUTOMOTIVE, LLC | Method for in-band signaling of data over digital wireless telecommunications networks |
7349705, | Jul 29 1999 | Wireless remote location system and method | |
7366492, | May 03 2002 | Verizon Patent and Licensing Inc | Method and system for mobile location detection using handoff information |
7376584, | Jul 31 2001 | Amazon Technologies, Inc | Systems and methods for fulfilling orders using location-based abbreviated dialing |
7379729, | Jul 29 1999 | HOLLAND, BRYAN | Locator system |
7509134, | Nov 01 2001 | KARMA AUTOMOTIVE, LLC | Remote method for wireless transmission of location data |
7522927, | Nov 03 1998 | Unwired Planet, LLC | Interface for wireless location information |
7525484, | Sep 09 1996 | TracBeam LLC | Gateway and hybrid solutions for wireless location |
7714778, | Oct 21 1997 | MOBILE MAVEN LLC | Wireless location gateway and applications therefor |
7733853, | Jan 31 2005 | KARMA AUTOMOTIVE, LLC | Voice channel control of wireless packet data communications |
7747281, | May 19 1997 | KARMA AUTOMOTIVE, LLC | Method for in-band signaling of data over digital wireless telecommunications networks |
7764231, | Sep 09 1996 | TracBeam, LLC | Wireless location using multiple mobile station location techniques |
7792297, | Mar 30 1999 | NAGRAVISION S A | System and process for limiting distribution of information on a communication network based on geographic location |
7812766, | Sep 09 1996 | FineTrak, LLC | Locating a mobile station and applications therefor |
7848763, | Nov 01 2001 | KARMA AUTOMOTIVE, LLC | Method for pulling geographic location data from a remote wireless telecommunications mobile unit |
7881263, | Jul 31 2007 | Sprint Spectrum LLC | Method for use of azimuth and bearing data to select a serving sector for a mobile station |
7903029, | Jun 02 2000 | MOBILE MAVEN LLC | Wireless location routing applications and architecture therefor |
7924934, | Apr 07 2006 | KARMA AUTOMOTIVE, LLC | Time diversity voice channel data communications |
7944350, | Aug 01 2003 | Spectrum Tracking Systems, Inc. | Method and system for providing tracking services to locate an asset |
7979095, | Oct 20 2007 | KARMA AUTOMOTIVE, LLC | Wireless in-band signaling with in-vehicle systems |
7983310, | Sep 15 2008 | KARMA AUTOMOTIVE, LLC | Methods for in-band signaling through enhanced variable-rate codecs |
8014942, | Jun 15 2005 | KARMA AUTOMOTIVE, LLC | Remote destination programming for vehicle navigation |
8032153, | Sep 09 1996 | TracBeam LLC | Multiple location estimators for wireless location |
8036201, | Jan 31 2005 | KARMA AUTOMOTIVE, LLC | Voice channel control of wireless packet data communications |
8036600, | Apr 27 2009 | KARMA AUTOMOTIVE, LLC | Using a bluetooth capable mobile phone to access a remote network |
8049617, | Aug 01 2003 | Spectrum Tracking Systems, Inc. | Method and system for providing tracking services to locate an asset |
8060109, | Aug 04 1997 | Enovsys LLC | Authorized location reporting mobile communication system |
8068792, | May 19 1998 | KARMA AUTOMOTIVE, LLC | In-band signaling for data communications over digital wireless telecommunications networks |
8073440, | Apr 27 2009 | KARMA AUTOMOTIVE, LLC | Automatic gain control in a personal navigation device |
8082096, | May 22 2001 | MOBILE MAVEN LLC | Wireless location routing applications and architecture therefor |
8135413, | Nov 24 1998 | MOBILE MAVEN LLC | Platform and applications for wireless location and other complex services |
8195093, | Apr 27 2009 | KARMA AUTOMOTIVE, LLC | Using a bluetooth capable mobile phone to access a remote network |
8195188, | Aug 04 1997 | SPRINT SPECTRUM, L P | Location reporting satellite paging system with optional blocking of location reporting |
8195204, | Jul 25 2007 | Sprint Spectrum LLC | Method and apparatus for scanning sectors in order of distance from mobile station |
8238934, | Jul 29 1999 | Wireless remote location system and method | |
8249865, | Nov 23 2009 | KARMA AUTOMOTIVE, LLC | Adaptive data transmission for a digital in-band modem operating over a voice channel |
8258942, | Jan 24 2008 | Cellular Tracking Technologies, LLC; CELLULAR TRACKING TECHNOLOGIES, L L C | Lightweight portable tracking device |
8285247, | Jul 29 1999 | HOLLAND, BRYAN | Locator system |
8346227, | Apr 27 2009 | KARMA AUTOMOTIVE, LLC | Automatic gain control in a navigation device |
8369393, | Oct 20 2007 | KARMA AUTOMOTIVE, LLC | Wireless in-band signaling with in-vehicle systems |
8418039, | Aug 03 2009 | KARMA AUTOMOTIVE, LLC | Efficient error correction scheme for data transmission in a wireless in-band signaling system |
8452247, | Apr 27 2009 | KARMA AUTOMOTIVE, LLC | Automatic gain control |
8478275, | Aug 05 2010 | Sprint Spectrum L.P. | Conditional assignment of connection identifiers to help avoid communication errors |
8543083, | Jul 29 1999 | Bryan, Holland | Locator system |
8559942, | Aug 04 1997 | Enovsys LLC | Updating a mobile device's location |
8594138, | Sep 15 2008 | KARMA AUTOMOTIVE, LLC | Methods for in-band signaling through enhanced variable-rate codecs |
8670425, | Aug 09 2011 | Sprint Spectrum LLC | Use of past duration of stay as trigger to scan for wireless coverage |
8694025, | Sep 24 1999 | Dennis, Dupray | Geographically constrained network services |
8706078, | Aug 04 1997 | MERGENET SOLUTIONS, INC | Location reporting satellite paging system with privacy feature |
8848825, | Sep 22 2011 | KARMA AUTOMOTIVE, LLC | Echo cancellation in wireless inband signaling modem |
8994591, | Sep 09 1996 | FineTrak, LLC | Locating a mobile station and applications therefor |
9060341, | Sep 09 1996 | TracBeam, LLC | System and method for hybriding wireless location techniques |
9078101, | Sep 24 1999 | Dennis, Dupray | Geographically constrained network services |
9134398, | Sep 09 1996 | TracBeam LLC | Wireless location using network centric location estimators |
9237543, | Sep 09 1996 | TracBeam, LLC | Wireless location using signal fingerprinting and other location estimators |
9277525, | Sep 09 1996 | TracBeam, LLC | Wireless location using location estimators |
9538493, | Aug 23 2010 | FineTrak, LLC | Locating a mobile station and applications therefor |
9572074, | Jul 25 2007 | Sprint Spectrum LLC | Method and apparatus for scanning sectors in order of distance from mobile station |
9699609, | Sep 24 1999 | DUPRAY, DENNIS | Network services dependent upon geographical constraints |
9807556, | Jul 29 1999 | Locator system | |
9875492, | May 22 2001 | MOBILE MAVEN LLC | Real estate transaction system |
9924216, | Mar 21 2000 | GEOCOM, LLC | System and process for distribution of information on a communication network |
RE38267, | Jun 22 1994 | VERIZON LABORATORIES, INC | Cellular network-based geographic coverage area reporting method and apparatus |
RE44378, | Jun 22 1994 | Verizon Laboratories Inc. | Cellular network-based location system |
Patent | Priority | Assignee | Title |
4144411, | Sep 22 1976 | Bell Telephone Laboratories, Incorporated | Cellular radiotelephone system structured for flexible use of different cell sizes |
4161734, | Oct 17 1977 | Lockheed Martin Corporation | Position surveillance using one active ranging satellite and time of arrival of a signal from an independent satellite |
4177466, | Nov 16 1977 | BAYBANK NORFOLK | Auto theft detection system |
4229620, | Nov 09 1978 | Bell Telephone Laboratories, Incorporated | Mobile radiotelephone station two-way ranging system |
4232317, | Nov 01 1978 | Quantized hyperbolic and inverse hyperbolic object location system | |
4233473, | Mar 24 1977 | Comprehensive automatic mobile radio telephone system | |
4700374, | Jul 06 1984 | ALCATEL N V , DE LAIRESSESTRAAT 153, 1075 HK AMSTERDAM, THE NETHERLANDS, A CORP OF THE NETHERLANDS | Mobile telephone location system |
4788711, | Nov 25 1985 | CELLULAR COMMUNICATIONS CORPORATION A CORP OF CALIFORNIA | Apparatus and method for a cellular freeway emergency telephone service |
4799062, | Apr 27 1987 | WHITNEY NATIONAL BANK | Radio position determination method and apparatus |
4812852, | Feb 20 1987 | CPC CAPITAL FUND 2000, LLC | Locating system and method |
4818998, | Mar 31 1986 | LoJack Operating Company, LP | Method of and system and apparatus for locating and/or tracking stolen or missing vehicles and the like |
4888593, | Dec 15 1987 | ED0 RECONNAISSANCE & SURVEILLANCE SYSTEMS | Time difference of arrival geolocation method, etc. |
4908629, | Mar 31 1986 | LoJack Operating Company, LP | Apparatus for locating and/or tracking stolen or missing vehicles and the like |
4914651, | Sep 20 1988 | Transtech International Corporation | Cellular data system |
4939522, | May 15 1989 | BECHTEL GROUP, INC , A DE CORP | Method and system for monitoring vehicle location |
4972456, | Feb 10 1989 | GTE Mobilnet Incorporated | Rural radiotelephone system |
4977399, | Aug 09 1988 | Seiko Instruments Inc | Mobile radio paging test system |
5043736, | Jul 27 1990 | INTRINSYC SOFTWARE INTERNATIONAL, INC | Cellular position locating system |
5054110, | Dec 29 1989 | Motorola, Inc. | Multi-site dispatching system cell registration |
5056109, | Nov 07 1989 | Qualcomm, INC | Method and apparatus for controlling transmission power in a CDMA cellular mobile telephone system |
5081667, | May 01 1989 | DEI HEADQUATERS, INC; DEI HEADQUARTERS, INC | System for integrating a cellular telephone with a vehicle security system |
5081703, | Jun 27 1990 | CELLCO PARTNERSHIP, INC ; Cellco Partnership | Satellite mobile communication system for rural service areas |
5086452, | Jun 13 1988 | KABUSHIKI KAISHA TOSHIBA, 72, HORIKAWA-CHO, | Radio telephone system and its control method |
5093925, | Apr 25 1990 | Motorola, Inc. | Three dimensional cellular communication system with coordinate offset and frequency reuse |
5155689, | Jan 17 1991 | IRON OAKS TECHNOLOGIES, LLC | Vehicle locating and communicating method and apparatus |
5170490, | Sep 28 1990 | Motorola, Inc. | Radio functions due to voice compression |
5187805, | Oct 02 1989 | TORSAL TECHNOLOGY GROUP LTD LLC | Telemetry, tracking and control for satellite cellular communication systems |
5214789, | Nov 17 1989 | Uniden America Corporation | Radio channel allocation based on location of mobile users |
5218716, | Nov 05 1990 | Motorola, Inc. | Method for locating a communication unit within a multi mode communication system |
5222249, | Nov 08 1990 | Motorola, Inc. | Dynamic RF communication resource access by roving mobile units |
5223844, | Apr 17 1992 | PJC LOGISTICS LLC | Vehicle tracking and security system |
5227802, | Dec 23 1991 | CDC PROPRIETE INTELLECTUELLE | Satellite system cell management |
5260968, | Jun 23 1992 | REGENTS OF THE UNIVERSITY OF CALIFORNIA, A CORPORATION OF CA, THE | Method and apparatus for multiplexing communications signals through blind adaptive spatial filtering |
5278892, | Jul 09 1991 | THE CHASE MANHATTAN BANK, AS COLLATERAL AGENT | Mobile telephone system call processing arrangement |
5299132, | Jan 17 1991 | IRON OAKS TECHNOLOGIES, LLC | Vehicle locating and communicating method and apparatus using cellular telephone network |
5309474, | Jun 25 1990 | Qualcomm Incorporated | System and method for generating signal waveforms in a CDMA cellular telephone system |
5311197, | Feb 01 1993 | Trimble Navigation Limited | Event-activated reporting of vehicle location |
5315636, | Jun 28 1991 | NETWORK ACCESS CORPORATION, A CORP OF TEXAS | Personal telecommunications system |
5317323, | Mar 05 1993 | Allen Telecom LLC | Passive high accuracy geolocation system and method |
5319374, | Feb 02 1993 | Trimble Navigation Limited | Precise universal time for vehicles |
5321514, | May 14 1986 | Radio Telecom & Technology, Inc. | Interactive television and data transmission system |
5327144, | May 07 1993 | Qualcomm Incorporated | Cellular telephone location system |
5334974, | Feb 06 1992 | SIMMS SECURITY CORPORATION | Personal security system |
5343393, | Jun 04 1990 | NIPPONDENSO CO , LTD , | Steering angle detecting apparatus for motor vehicles based on the phase difference between a steering angle detection signal and steering angle estimated signal |
5343512, | Mar 27 1992 | CDC PROPRIETE INTELLECTUELLE | Call setup method for use with a network having mobile end users |
5361399, | Jun 02 1992 | Motorola Mobility, Inc | Adaptive communication system for transmitting between base stations and portable transceivers via different data rate communication links |
5365450, | Dec 17 1992 | Exelis Inc | Hybrid GPS/data line unit for rapid, precise, and robust position determination |
5365451, | Dec 09 1991 | CDC PROPRIETE INTELLECTUELLE | Mobile unit tracking system |
5365516, | Aug 16 1991 | Pinpoint Communications, Inc. | Communication system and method for determining the location of a transponder unit |
5375140, | Nov 24 1992 | ALCATEL LUCENT FKA ALCATEL ; Alcatel | Wireless direct sequence spread spectrum digital cellular telephone system |
5382958, | Dec 17 1992 | Voice Signals LLC | Time transfer position location method and apparatus |
5390124, | Dec 01 1992 | Caterpillar Inc. | Method and apparatus for improving the accuracy of position estimates in a satellite based navigation system |
5390125, | Feb 05 1990 | Caterpillar Inc. | Vehicle position determination system and method |
5390339, | Oct 23 1991 | Motorola Mobility, Inc | Method and apparatus for selecting a serving transceiver |
5392287, | Mar 05 1992 | Qualcomm Incorporated | Apparatus and method for reducing power consumption in a mobile communications receiver |
5396540, | Jul 23 1992 | MIX TELEMATICS NORTH AMERICA, INC | Remote vehicle communications system and method |
5398190, | Jan 17 1991 | IRON OAKS TECHNOLOGIES, LLC | Vehicle locating and communicating method and apparatus |
5410728, | Oct 28 1988 | CDC PROPRIETE INTELLECTUELLE | Satellite cellular telephone and data communication system |
5418537, | Nov 18 1992 | Trimble Navigation, Ltd. | Location of missing vehicles |
5430656, | Sep 08 1992 | RAV BARIACH SECURITY PRODUCTS LTD | Mobile communications system |
5452211, | Aug 10 1992 | Caterpillar Inc. | Method and system for determining vehicle position |
5546445, | Dec 26 1991 | EMSAT ADVANCED GEO-LOCATION TECHNOLOGY, LLC | Cellular telephone system that uses position of a mobile unit to make call management decisions |
EP199266, | |||
FR398773, | |||
GB292182, | |||
JP2210923, | |||
WO9202105, |
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