Wireless network tour guide

Abstract
Location based wireless services in a service provider's network are intertwined with a message database (text and/or audio) to automatically provide location information regarding the subscriber to the message database, without requiring the wireless device itself to provide the location information. A location management system is provided to perform the location management functions of determining subscriber location (e.g., by call/sector ID, angle of arrival (AOA), time difference of arrival (TDOA), time of arrival (TOA)), and of mapping the location to the desired text and/or audio. Speed information may also be determined by the location management system, or the subscriber may be prompted to input a particular mode of transportation, or generally indicate their speed. Of course, the slower the speed of the subscriber, the fewer location updates will be required, lessening the burden on the tour guide system in the wireless network.
Description
BACKGROUND OF THE INVENTION

1. Field of the Invention


This invention relates generally to the field of wireless telecommunications. More particularly, it relates to a system and method for implementing a tour guide system in a wireless phone network.


2. Background of Related Art


Conventional wireless tour guide systems are typically local systems, e.g., walkie-talkies. For instance, currently existing solutions use a specialized walkie-talkie device and an in-house information database to retrieve information for users based on keypad input then transmit analog voice bites using short range walkie-talkie technologies. The walkie-talkies are typically rented and returned at each tourist location of interest.


Such walkie-talkie type systems typically require manual input from the user, e.g., via keypad entry, which is sent to the content end, which then determines which sound bite to retrieve, download in return and play.


Other tour guide systems require location information to be input by a user, or determined by equipment such as a global positioning satellite (GPS) receiver in the mobile unit, using a dial-up connection through the public switched telephone network (PSTN) for selecting and downloading analog voice information. For instance, U.S. Pat. No. 6,199,045 to Giniger et al. (“Giniger”) teaches the provision of position-related information by mobile devices uploaded to a central cite server. The central cite server uses the received position information sent by the mobile device, retrieves corresponding response information from a table, and plays the retrieved response information over a telephone line back to the mobile unit. (See, e.g., Giniger Abstract and FIG. 5).


Just as in the conventional walkie-talkie systems, systems such as Giniger require location information to be determined and/or provided directly by the mobile device to a central server over the PSTN. For instance, as Giniger explains, a global positioning satellite (GPS) in the mobile device itself determines a location of the subscriber, which is uploaded to the central cite server over the PSTN for direction as to the desired sound bite to be retrieved and downloaded back to the mobile device via the PSTN.


While these tour guide systems are useful, they require either costly specialized components (e.g., a GPS receiver), or manual input from the user, requiring the user to look away from their tourist attraction. These disadvantages either increase costs of the tourist held devices and/or generally distract the user from the overall tour guide experience.


There is a need for a tour guide system which does not require costly specialized components, and/or importantly which does not require location information to be uploaded directly by the mobile device itself.


SUMMARY OF THE INVENTION

A method of providing tour guide information in a wireless network in accordance with the principles of the present invention comprises the usage of an existing location determination service, and identifying a short message relating to the location or identifying a voice interaction via an Interactive Voice Response Unit (IVRU). The identified short message is transmitted to the subscriber substantially while the subscriber remains at the determined location. Depending on the change of location of the subscriber, which in turn depends on the speed of the mode of transportation, location update information can be obtained.





BRIEF DESCRIPTION OF THE DRAWINGS

Features and advantages of the present invention will become apparent to those skilled in the art from the following description with reference to the drawings, in which:



FIG. 1 shows a wireless network tour guide application resident in an SCP of a carrier's wireless intelligent network, in accordance with the principles of the present invention.



FIG. 2 depicts various embodiments of a location determiner shown in FIG. 1.



FIG. 3 shows an exemplary message flow between a wireless network tour guide system and a relevant wireless device, in accordance with the principles of the present invention.



FIG. 4 shows an exemplary message flow showing the use of a Short Message by a wireless network tour guide system, in accordance with the principles of the present invention.





DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS

In accordance with the principles of the present invention, location based wireless services in a service provider's network are commissioned and intertwined with a message database (text and/or audio) to automatically provide location information regarding the subscriber to the message database, without requiring the wireless device itself to provide the location information.


The present invention utilizes location based wireless technology in a wireless network to automate a tour guide process with respect to a wireless device.



FIG. 1 shows a wireless network tour guide application resident in an SCP of a carrier's wireless intelligent network, in accordance with the principles of the present invention.


In particular, as shown in FIG. 1, an SCP 170 of a carrier's wireless intelligent network 120 is adapted to include a wireless network tour guide manager application 100. The tour guide manager via the “Interactive Voice Response Unit (IVRU)” 100 periodically requests location information relating to a predefined “point of interest”, e.g., relating to a place of historical or geographical importance, with respect to a particular subscriber requesting tour guide information. Using the location information obtained automatically within a wireless network 120, the tour guide manager 100 obtains tour guide information related to that location.


In particular, the tour guide manager 100 communicates with a location management system 160, a location determiner 130, and a speed determiner 140, all in the wireless carrier's network. The wireless network 120 of the disclosed embodiment further includes a Short Message Service Center (SMSC) 150, Message Servicing Center (MSC) with Visitors Location Register (VLR) 190 and Home Location Register (HLR) 180.


The wireless network tour guide 100 in accordance with the principles of the present invention utilizes location information determined by a location determiner 130 to determine a proximate location of a wireless user, and then uses that location information to retrieve text and/or voice information from a tour guide information database 105.



FIG. 2 depicts various embodiments of a location determiner 130 shown in FIG. 1.


In particular, as shown in FIG. 2, the location determiner 130 and location management system 160 perform the location management functions of determining subscriber location. Exemplary techniques implemented in the location determiner 130 are call/sector ID 131, angle of arrival (AOA) 132, time difference of arrival (TDOA) 130, time of arrival (TOA) 134, all of which are otherwise known in the art.


Returning to FIG. 1, location information is determined by the location determiner 130 at the wireless network (not in the wireless device) and provided to the wireless network tour guide 100, which in turn maps the location information to desired text and/or audio information, e.g., via a short message. While the desired tour guide text and/or audio information is provided to the wireless device 125 via a short message in the disclosed embodiment, the present invention relates equally to the provision of text and/or audio information outside a short messaging system.


Speed information may optionally be determined by the location management system of the wireless network 120, to augment the tour guide experience. For instance, the slower the speed of the subscriber, the fewer location updates will be required, lessening the burden on the tour guide manager 100 in the wireless network.


The speed determiner may determine speed of a wireless device (e.g., walking tour, driving tour, flying tour, etc.) inferentially. For instance, a location and time history may be maintained by the location management system 160 with respect to particular subscribers utilizing the wireless network tour guide 100. A generalized determination of speed may be sufficient for many applications, e.g., whether the wireless device acts as if it is consistent with a walking subscriber, driving subscriber, biking subscriber, flying subscriber, etc.


The subscriber utilizing the wireless network tour guide 100 may alternatively be prompted by the wireless network tour guide 100 to manually (or audibly) input a particular mode of transportation, generally indicate whether their speed is less than or greater than a given speed, e.g., less than 5 miles/hour (e.g., walking) or more than 5 miles/hour (e.g., biking, driving, etc.) As a result, if the speed of the wireless device is less than 5 miles/hour, the interval between location update requests by the location management system 160 and wireless network tour guide 100 can be enlarged.


Voice recognition may be implemented in the carrier's wireless network 120 (e.g., accessible to the SCP 170) to simplify a user's input of relevant information, e.g., in navigating through the IVR menu. For instance, a user can speak the name or other identifying feature of the point of interest to obtain faster information.



FIG. 3 shows an exemplary message flow between a wireless network tour guide system and a relevant wireless device, in accordance with the principles of the present invention, to provide voice based information.


In particular, when the particular subscriber is ready to make a call, the option for the tour guide service may be provided as shown in the call flow diagram of FIG. 3.


The messages shown in the call flow diagram of FIG. 3 are specific to GSM CAMEL Phase 2. But any protocol (e.g. ANSI-41, WIN standards) can be used to provide the same functionality.


In FIG. 3, messages are passed between a Service Switching Function (SSF)/Service Resource Function (SRF) 310, a VLR 320, an HLR 330, a Service Control Function (SCF) 340, and a Location Management Function (LMF) 350.


The SSF/SRF 310 refers to a wireless network including a wireless network tour guide manager 100 and related location/tour guide functionality, e.g., as shown and described with respect to FIG. 1.


The LMF 350 refers to the location management system 160, which provides tour guidance information, and to the wireless network tour guide manager 100, which maps the location of the wireless device provided by the SCF 340. The location information determined by the wireless network 120 can be as approximate or accurate as possible, based upon the particular application and needs. Of course, the particular location determination technique 131-134 implemented in the location determiner 130 will largely dictate the accuracy of the location of the touring subscriber.


As shown in message 1 of FIG. 3, an InitialDP message is sent by the SSF/SRF 310 to the wireless network tour guide manager 100, to indicate the desirability of a particular subscriber to activate tour guidance. The dialed digits preferably relate to a particular activation code for tour guidance.


In message 2, a connection to the wireless network tour guide manager 100 is established by the relevant wireless device 125.


In message 3, an announcement may be played to the subscriber 125, e.g., welcoming them to the tour guide mode.


In message 4, user information is collected by the wireless network tour guide manager 100 (e.g., authorization to receive tour guidance, etc.)


In message 5, the subscriber is prompted for a “Yes” indication, indicating their desire to receive tour guidance information.


In message 6, an AnyTimeInterrogation message is transmitted between the SCF 340 and the HLR 330.


In message 7, a ProvideSubscriberInformation signal is transmitted by the HLR 330 to the VLR 320 (for roaming subscribers).


In message 8, a ProvideSubscriberInformationAck signal is returned by the VLR 320 to the HLR 330 (for roaming subscribers).


In message 9, location information relating to the relevant touring subscriber is passed by the HLR 330 to the SCF 340.


In message 10, the subscriber's location is provided by the SCF 340 to the LMF 350.


Message(s) 11 map the subscriber's location and determine the desired text and/or audio tour guide information.


In message 12, the result is returned by the LMF 350 to the SCF 340 with an acknowledgement.


In message 13, the tour guidance is transmitted from the SCF 340 to the wireless device and displayed and/or played.


The present invention provides many advantages to both the wireless network service provider as well as their subscribers. For instance, the implementation of a tour guide manager 100 within a wireless network saves consumers money, as they need not hire a personal tour guide when moving about a new city. Moreover, the subscriber's can tour at their own pace, with the location management system 160 automatically determining the pace of movement of the subscriber (without the need for manual input from the touring subscriber). The wireless manager tour guide 100 has the ability to integrate tour guidance with wireless devices which already are in the possession of many people, and thus historical knowledge can be made a part of our everyday lives.


From the perspective of the service provider, use of a wireless device for tour guidance has the ability to increase minutes of use by their subscribers, and thus can lead directly to increased revenues.


With respect to a roaming subscriber, the roaming subscriber preferably receives tour guide information from the Carrier providing service.


Use of location-based services, rather than a location determining technique or apparatus at the wireless device itself, saves costs in the wireless devices (e.g., no GPS receiver required), and/or as compared to conventional walkie-talkie type tour guide systems, provides automated determination of the location of the subscriber without bother to the user them self.


A pause and update button may be implemented in the wireless device, or a particular key sequence on the standard keypad of a mobile phone, may be used to pause active provision of the tour guide information so as to save battery power by suspension of position updates and provide general convenience to the user, which would be applicable to a voice based application. A pause feature could also be applicable to an SMS based application.



FIG. 4 shows an exemplary message flow showing the use of a Short Message by a wireless network tour guide system, in accordance with the principles of the present invention.


In particular, as shown in FIG. 4, a call originated by the a mobile subscriber is used to start the SMS service (the dialed digits relate to a activation code for tour guidance). An InitialDP message is sent by the SSF to the wireless network tour guide manager, to indicate the desirability of a particular subscriber to activate tour guidance.


Location information relating to the relevant touring subscriber is passed by the HLR to the SCF or can be obtained from the InitialDP message (or Origination Request(ORREQ) message in case of an ANSI network).


The tour guidance is transmitted from the SCF to the wireless device via a short message and displayed. Steps 10 to 17 can be repeated until all information is delivered. While the present invention has been described with respect to audio guidance, the principles of the present invention relate equally to tour guidance given over a wireless phone using short messaging a short text message of, e.g., no more than 255 characters at each point of guidance. The short messaging may be combined with audio passages based on the particular application.


While the invention has been described with reference to the exemplary embodiments thereof, those skilled in the art will be able to make various modifications to the described embodiments of the invention without departing from the true spirit and scope of the invention.

Claims
  • 1. A method of providing location based information in a wireless network, comprising: obtaining a location of a mobile wireless device;identifying a text message payload relating to said location;altering a length of text in said text message payload based on a speed of said mobile wireless device; andtransmitting through a wireless network said identified altered length text message payload to said mobile wireless device.
  • 2. The method of providing location based information in a wireless network according to claim 1, further comprising: determining, with said wireless network tour guide system, a speed of said mobile wireless device.
  • 3. The method of providing location based information in a wireless network according to claim 1, wherein: said identified altered length text message payload is transmitted via a short messaging system.
  • 4. The method of providing location based information in a wireless network according to claim 1, wherein: said location of said mobile wireless device is determined using an angle of arrival of a wireless signal from said mobile wireless device.
  • 5. The method of providing location based information in a wireless network according to claim 1, wherein: said location of said mobile wireless device is determined using a time difference of arrival of wireless signals from said mobile wireless device.
  • 6. The method of providing location based information in a wireless network according to claim 1, wherein: said location of said mobile wireless device is determined using time of arrival of a wireless signal from said mobile wireless device.
  • 7. The method of providing location based information in a wireless network according to claim 1, wherein: said location of said mobile wireless device is determined using a known location of a cell/sector servicing said mobile wireless device.
  • 8. The method of providing location based information in a wireless network according to claim 1, further comprising: maintaining said identified altered length text message payload in a short messaging system.
  • 9. A system for providing location based information in a wireless network, comprising: a location determiner to obtain a location of a mobile wireless device;a wireless network tour guide system to identify a text message payload relating to said location and to alter a length of text in said text message payload based on a speed of said mobile wireless device; anda transmitter to transmit said identified altered length text message to said mobile wireless device.
  • 10. The system for providing location based information in a wireless network according to claim 9, further comprising: a speed determiner to determine a speed of said mobile wireless device.
  • 11. The system for providing location based information in a wireless network according to claim 9, further comprising: a short messaging system to maintain said identified altered length text message payload.
  • 12. The system for providing location based information in a wireless network according to claim 9, wherein: said location of said mobile wireless device is determined using an angle of arrival of a wireless signal from said mobile wireless device.
  • 13. The system for providing location based information in a wireless network according to claim 9, wherein: said location of said mobile wireless device is determined using a time difference of arrival of wireless signals from said mobile wireless device.
  • 14. The system for providing location based information in a wireless network according to claim 9, wherein: said location of said mobile wireless device is determined using time of arrival of a wireless signal from said mobile wireless device.
  • 15. The system for providing location based information in a wireless network according to claim 9, wherein: said location of said mobile wireless device is determined using a known location of a cell/sector servicing said mobile wireless device.
  • 16. The system for providing location based information in a wireless network according to claim 9, further comprising: a short messaging system to maintain said identified altered length text message payload.
Parent Case Info

The present application is a continuation of U.S. application Ser. No. 10/023,704, entitled “WIRELESS NETWORK TOUR GUIDE”, filed Dec. 21, 2001, now U.S. Pat. No. 7,853,272 the entirety of which is expressly incorporated herein by reference.

US Referenced Citations (218)
Number Name Date Kind
3400222 Nightingale et al. Sep 1968 A
3920908 Kraus Nov 1975 A
4310726 Asmuth Jan 1982 A
4399330 Kuenzel Aug 1983 A
4680785 Akiyama et al. Jul 1987 A
4725719 Oncken et al. Feb 1988 A
4756020 Fodale Jul 1988 A
4776000 Parienti Oct 1988 A
4776003 Harris Oct 1988 A
4776033 Scheinert Oct 1988 A
4831647 D'Avello et al. May 1989 A
4845740 Tokuyama et al. Jul 1989 A
4852149 Zwick Jul 1989 A
4852155 Barraud Jul 1989 A
4860341 D'Avello et al. Aug 1989 A
4901340 Parker et al. Feb 1990 A
4935956 Hellworth et al. Jun 1990 A
4951308 Bishop et al. Aug 1990 A
5003585 Richer Mar 1991 A
5046088 Margulies Sep 1991 A
5063588 Patsiokas et al. Nov 1991 A
5068891 Marshall Nov 1991 A
5103449 Jolissaint Apr 1992 A
5127040 D'Avello et al. Jun 1992 A
5128938 Borras Jul 1992 A
5138648 Palomeque et al. Aug 1992 A
5138650 Stahl et al. Aug 1992 A
5144649 Zicker et al. Sep 1992 A
5159625 Zicker Oct 1992 A
5187710 Chou et al. Feb 1993 A
5216703 Roy Jun 1993 A
5220593 Zicker Jun 1993 A
5233642 Renton Aug 1993 A
5265155 Castro Nov 1993 A
5274802 Altine Dec 1993 A
5276444 McNair Jan 1994 A
5291543 Freese et al. Mar 1994 A
5293642 Lo Mar 1994 A
5297189 Chabernaud Mar 1994 A
5301223 Amadon et al. Apr 1994 A
5301234 Mazziotto et al. Apr 1994 A
5309501 Kozik et al. May 1994 A
5311572 Friedes et al. May 1994 A
5321735 Breeden Jun 1994 A
5325418 McGregor et al. Jun 1994 A
5327144 Stilp et al. Jul 1994 A
5329578 Brennan et al. Jul 1994 A
5339352 Armstrong et al. Aug 1994 A
5341414 Popke Aug 1994 A
5351235 Lahtinen Sep 1994 A
5353335 D'Urso Oct 1994 A
5359182 Schilling Oct 1994 A
5359642 Castro Oct 1994 A
5359643 Gammino Oct 1994 A
5369699 Page et al. Nov 1994 A
5384825 Dillard et al. Jan 1995 A
5396545 Nair et al. Mar 1995 A
5396558 Ishiguro et al. Mar 1995 A
5404580 Simpson et al. Apr 1995 A
5408513 Busch et al. Apr 1995 A
5408519 Pierce et al. Apr 1995 A
5408682 Ranner et al. Apr 1995 A
5412726 Nevoux et al. May 1995 A
5438615 Moen Aug 1995 A
5440621 Castro Aug 1995 A
5457737 Wen Oct 1995 A
5465289 Kennedy Nov 1995 A
5469497 Pierce et al. Nov 1995 A
5485505 Norman et al. Jan 1996 A
5502761 Duncan et al. Mar 1996 A
5506893 Buscher et al. Apr 1996 A
5508931 Snider Apr 1996 A
5509056 Ericsson et al. Apr 1996 A
5513243 Kage Apr 1996 A
5517555 Amadon et al. May 1996 A
5517559 Hayashi et al. May 1996 A
5550897 Seiderman Aug 1996 A
5570416 Kroll Oct 1996 A
5577100 McGregor et al. Nov 1996 A
5579376 Kennedy, III et al. Nov 1996 A
5583918 Nakagawa Dec 1996 A
5586175 Hogan et al. Dec 1996 A
5588009 Will Dec 1996 A
5592535 Klotz Jan 1997 A
5610972 Emery et al. Mar 1997 A
5625669 McGregor et al. Apr 1997 A
5628051 Salin May 1997 A
5640447 Fonseca Jun 1997 A
5682600 Salin Oct 1997 A
5719918 Serbetciouglu et al. Feb 1998 A
5722067 Fougnies et al. Feb 1998 A
5732346 Lazaridis Mar 1998 A
5768509 Gunluk et al. Jun 1998 A
5778313 Fougnies Jul 1998 A
5787357 Salin Jul 1998 A
5790636 Marshall Aug 1998 A
5793859 Matthews Aug 1998 A
5794142 Vanttila et al. Aug 1998 A
5797094 Houde et al. Aug 1998 A
5797096 Lupien et al. Aug 1998 A
5806000 Vo et al. Sep 1998 A
5815816 Isumi Sep 1998 A
5822700 Hult et al. Oct 1998 A
5826185 Wise et al. Oct 1998 A
5850599 Seiderman Dec 1998 A
5854975 Fougnies et al. Dec 1998 A
5889473 Wicks Mar 1999 A
5905736 Ronen et al. May 1999 A
5920820 Qureshi Jul 1999 A
5930701 Skog Jul 1999 A
5940755 Scott Aug 1999 A
5946630 Willars et al. Aug 1999 A
5974133 Fleischer Oct 1999 A
5983091 Rodriguez Nov 1999 A
5987323 Huotari Nov 1999 A
6026292 Coppinger Feb 2000 A
6029062 Hanson Feb 2000 A
6035025 Hanson Mar 2000 A
6038444 Schipper et al. Mar 2000 A
6049710 Nilsson Apr 2000 A
6064875 Morgan May 2000 A
6070067 Nguyen May 2000 A
6073004 Balachandran Jun 2000 A
6073015 Berggren et al. Jun 2000 A
6075982 Donovan Jun 2000 A
6101378 Barabash et al. Aug 2000 A
6115458 Taskett Sep 2000 A
6119014 Alperovich et al. Sep 2000 A
6149353 Nilsson Nov 2000 A
6157823 Fougnies et al. Dec 2000 A
6188752 Lesley Feb 2001 B1
6195543 Granberg Feb 2001 B1
6208870 Lorello et al. Mar 2001 B1
6219669 Haff Apr 2001 B1
6266614 Alumbaugh Jul 2001 B1
6317594 Gossman et al. Nov 2001 B1
6335968 Malik Jan 2002 B1
6353621 Boland Mar 2002 B1
6356630 Cai et al. Mar 2002 B1
6370242 Speers Apr 2002 B1
6370373 Gerth Apr 2002 B1
6373930 McConnel et al. Apr 2002 B1
6381316 Joyce et al. Apr 2002 B2
6393269 Hartmaier et al. May 2002 B1
6396913 Perkins, III May 2002 B1
6397054 Hoirup May 2002 B1
6397055 McHenry et al. May 2002 B1
6397064 Bridges May 2002 B1
6421707 Miller et al. Jul 2002 B1
6442257 Gundlach Aug 2002 B1
6456852 Bar et al. Sep 2002 B2
6473622 Meuronen Oct 2002 B1
6480710 Laybourn Nov 2002 B1
6483907 Wong et al. Nov 2002 B1
6487180 Borgstahl et al. Nov 2002 B1
6487602 Thakker Nov 2002 B1
6490450 Batni et al. Dec 2002 B1
6496690 Cobo et al. Dec 2002 B1
6505046 Baker Jan 2003 B1
6512930 Sandegren Jan 2003 B2
6526351 Whitham Feb 2003 B2
6529593 Nelson Mar 2003 B2
6529732 Vainiomaki et al. Mar 2003 B1
6587688 Chambers et al. Jul 2003 B1
6609004 Morse et al. Aug 2003 B1
6621810 Leung Sep 2003 B1
6731943 McCormick May 2004 B1
6879835 Greene et al. Apr 2005 B2
6985742 Giniger et al. Jan 2006 B1
6993325 Waesterlid Jan 2006 B1
7072665 Blumberg et al. Jul 2006 B1
7088683 Sawada et al. Aug 2006 B2
7110773 Wallace Sep 2006 B1
7120418 Herajarvi Oct 2006 B2
7240108 Smith et al. Jul 2007 B2
7386588 Mousseau Jun 2008 B2
8300529 Strub Oct 2012 B2
20010034224 McDowell et al. Oct 2001 A1
20010040949 Blonder Nov 2001 A1
20020013153 Wilcock et al. Jan 2002 A1
20020068546 Plush et al. Jun 2002 A1
20020093435 Baron Jul 2002 A1
20020103762 Lopez Aug 2002 A1
20020168986 Lau et al. Nov 2002 A1
20020183072 Steinbach et al. Dec 2002 A1
20030008661 Joyce et al. Jan 2003 A1
20030022664 Goldstein Jan 2003 A1
20030058096 Shteyn Mar 2003 A1
20030060212 Thomas Mar 2003 A1
20030086422 Klinker et al. May 2003 A1
20030155413 Kovesdi et al. Aug 2003 A1
20030187803 Pitt Oct 2003 A1
20030210656 Biacs Nov 2003 A1
20040176104 Arcens Sep 2004 A1
20050048948 Holland et al. Mar 2005 A1
20050239480 Kim et al. Oct 2005 A1
20050250516 Shim Nov 2005 A1
20050265536 Smith Dec 2005 A1
20060030337 Nowak Feb 2006 A1
20060036680 Shim Feb 2006 A1
20060058042 Shim Mar 2006 A1
20060063536 Kim Mar 2006 A1
20060079249 Shim Apr 2006 A1
20060225090 Shim Oct 2006 A1
20060274696 Krishnamurthi Dec 2006 A1
20070037585 Shim Feb 2007 A1
20070037586 Kim Feb 2007 A1
20070072624 Niemaenmaa Mar 2007 A1
20070082681 Kim Apr 2007 A1
20070082682 Kim Apr 2007 A1
20070110076 Brouwer May 2007 A1
20070167177 Kraufvelin Jul 2007 A1
20070182547 Wachter Aug 2007 A1
20070243885 Shim Oct 2007 A1
20080081646 Morin Apr 2008 A1
20080109650 Shim May 2008 A1
20110009086 Poremba Jan 2011 A1
20110064205 Boni Mar 2011 A1
Non-Patent Literature Citations (5)
Entry
Open Mobile Alliance, User Plane Location Protocol Candidate Version 1.0, OMA-TS-ULP-V1—0-20060127-C, Jan. 27, 2006, pp. 1-66.
Open Mobile Alliance, Secure User Plane Location Architecture Candidate Version 1.0, OMA-AD-SUPL-V1 0-20060127-C, Jan. 27, 2006, pp. 1-80.
“Technology Rides Control Network to Support Short Package Applications”; Advanced Intelligent Network New. Washington, DC: Mar. 19, 1997. vol. 7, Iss. 6; p. 1.
Cellular Mobile Pricing Structures and Trends; Dr. Sam Paltridge of the OECD's Directorate for Science, Technology and Industry; Dist.: May 19, 2000 (Nov. 1999).
International Search Report received in PCT/US2012/062204 dated Jan. 9, 2013.
Related Publications (1)
Number Date Country
20110065455 A1 Mar 2011 US
Continuations (1)
Number Date Country
Parent 10023704 Dec 2001 US
Child 12926156 US