摘要:
Personalized location enabled indicators, such as ring backs or ring tones are described. Such capability can be provided by wireless service providers to offer their customers a host of unique location based ring tones and ring backs of both an audio and video nature. By way of example, a first calling party may be provided with a video ring back indicative of location, such as a picture of the Golden Gate Bridge when a second called party is in San Francisco, or a ring tone may indicate a called party is at work and busy, at home and not busy, or the like, with different ring tones for different classes of callers, such as coworkers, family, friends or specified individuals.
摘要:
Personalized location enabled indicators, such as ring backs or ring tones are described. Such capability can be provided by wireless service providers to offer their customers a host of unique location based ring tones and ring backs of both an audio and video nature. By way of example, a first calling party may be provided with a video ring back indicative of location, such as a picture of the Golden Gate Bridge when a second called party is in San Francisco, or a ring tone may indicate a called party is at work and busy, at home and not busy, or the like, with different ring tones for different classes of callers, such as coworkers, family, friends or specified individuals.
摘要:
Systems and methods are disclosed that monitor the speed that a mobile device is traveling, such as when the user of the mobile device is driving or riding in a vehicle. A speed monitoring system described herein receives a request from a third party to monitor a speed of a mobile device. The system periodically queries a mobile network for a location of the mobile device over a time period, and receives responses from the mobile network indicating locations of the mobile device. The system then determines a speed of the mobile device based on the locations indicated during the time period, and may determine the speed limit the roadway the mobile device is traveling on. The system then sends a notification message to the third party that includes an indication of the speed of the mobile device and possibly the speed limit.
摘要:
A method is provided for transferring content between a first mobile device (10) and a second mobile device (20). The method includes: internally storing the content on the first mobile device (10) using a first data representation for the internally stored content on the first mobile device (10); establishing a common syntax and associated semantics for describing the content; creating a first external manifest (16) on the first mobile device (10) from the internally stored content on the first mobile (10), the first external manifest (16) employing the common syntax and associated semantics to describe the content; transferring the content from the first external manifest (16) to a second external manifest (26) created on the second mobile device (20), the second external manifest (26) also using the common syntax and associated semantic to describe the content; and, internally storing the content on the second mobile device (20) using a second data representation for the internally stored content on the second mobile device (20).
摘要:
IMS networks and methods are disclosed for providing offline charging for a session of an IMS device that is seamlessly handed over between a home IMS network and a visited IMS network that are different operator networks. A roaming charging identifier (RCID) is assigned to the session in the home IMS network that is global to a dialog of the session over the home IMS network and to a dialog of the session over the visited IMS network. Network elements in the home IMS network insert the RCID in offline charging requests that are sent to an offline charging system. The offline charging system generates CDRs for the session that also include the RCID. The offline charging system can then aggregate and correlate the CDRs for the session based on the RCID.
摘要:
An illustrative method provides information to a user on wireless communication coverage along at least one route. A wireless availability server receives a user request for coverage information where the request includes an origination and destination location provided by the user for at least one route. A set of routes connecting the origination and destination locations is determined. A query is made to a database containing wireless coverage data based on the origination and destination locations, and the set of routes. A response to the query contains wireless coverage information along the set of routes. A reply is transmitted to the user responding to the user request where the reply contains the wireless coverage information.
摘要:
A method is provided for transferring content between a first mobile device (10) and a second mobile device (20). The method includes: internally storing the content on the first mobile device (10) using a first data representation for the internally stored content on the first mobile device (10); establishing a common syntax and associated semantics for describing the content; creating a first external manifest (16) on the first mobile device (10) from the internally stored content on the first mobile (10), the first external manifest (16) employing the common syntax and associated semantics to describe the content; transferring the content from the first external manifest (16) to a second external manifest (26) created on the second mobile device (20), the second external manifest (26) also using the common syntax and associated semantic to describe the content; and, internally storing the content on the second mobile device (20) using a second data representation for the internally stored content on the second mobile device (20).
摘要:
Embodiments of the location based vehicle traffic signal alert system, according to the present method and apparatus, may alert drivers as to when vehicles are approaching the traffic signal lights while the signal is yellow or red. In addition, it may also warn drivers when the signal ahead is about to change colors, for example, from green to yellow or from yellow to red. In an alternative embodiment the signal alert system may also send a signal to the engine/brake system of the automobile to perform automatic throttle control or braking when the driver fails to attempt a required stop at the traffic light.
摘要:
In a school bus tracking system, each school bus is provided with a mobile station and an ID. The bus ID's and telephone numbers for the buses' mobile stations are stored in a tracking application/database. At a residence, a parent sends a message to the tracking application that includes the ID of a bus that services the residence, and a radius. The message may be sent using a short message service, i.e., a text message to a particular address utilized by the tracking application. Then, the tracking application causes the locations of the bus mobile station and the parent's mobile station to be periodically polled. When the bus mobile station comes within the radius, the tracking application issues a message to the parent mobile station alerting the parent that the bus is approaching. The system may be used to track other vehicles, objects (e.g., packages), and/or persons.
摘要:
An IMS charging collection function node for processing incoming accounting requests (ACRs) is provided. The node includes an ACR database that stores ACR messages, an Incomplete database that stores any ACR [Interim] or [Stop] received by the charging collection function node when a corresponding ACR [Start] is not stored in the ACR database, or also ACR[Start] when the remaining accounting requests, consisting of ACR [Interim] or [Stop] are not available with the charging collection function, a disk that stores ACRs; a first transformation engine that aggregates CDRs, a CDR aggregation database that stores aggregated CDRs, a second transformation engine that correlates CDRs, a CDR correlation database that stores correlated CDRs, and a third evaluation engine that cyclically evaluates the Incomplete database, wherein the IMS charging collection function node is communicatively and collaboratively coupled with other IMS charging collection function nodes across the IMS network to eliminate or reduce production of incomplete CDRs.