Abstract:
A method for intelligently managing a transportation network is provided. The method may include providing a roadside apparatus 18 to communicate with nodes 14A to 14D associated with vehicles 12A to 12D in a transportation network, the vehicle nodes being in a neighborhood range of the roadside apparatus. The roadside apparatus may dynamically detect the presence of a node 14A associated with a first vehicle 12A, and establish a mobile Internet Protocol (IP) network between the roadside apparatus and the first vehicle's node. The roadside apparatus 18 receives, in real-time, from the first vehicle's node 14A event data of events associated with the first vehicle 12A over the mobile IP network. The roadside apparatus 18 or nodes 14A to 14D may further receive or transmit real-time command data to control subsystems of a vehicle.
Abstract:
A method of facilitating a telephonic response to an electronic message is described. The method includes determining at least one telephone number from a received electronic message, and assigning the determined telephone number dynamically to a button on the telephone to provide a speed dial button on the telephone. Determining the telephone number may include comparing an electronic mail address in an address field of the electronic message with a telephone directory to determine a telephone number associated with the address. If the electronic message is a text or a voice message, determining the telephone number may include parsing a body of the message to determine a telephone number, if present, which has been included into the body of the text message.
Abstract:
In one embodiment, a method includes establishing a call, and continuously monitoring the call from or using a first endpoint associated with the call. Monitoring the call includes identifying when an information element associated with the call has changed. The method also includes determining when the information associated with the call has changed, and storing a representation of the information element in an enhanced directory arrangement associated with the first endpoint when the information associated with the call has changed.
Abstract:
A system for handling service requests received from end-users that include telephone callers and persons who are physically present at a branch or store. The system includes an ACD and a ticket dispenser coupled with the ACD. The ticket dispenser being operable to first dispense a ticket having an identifier to each person who requests service at the branch or store, and then electronically communicate the identifier to the ACD. The ACD includes one or more queues to order calls received from the telephone callers and identifiers. The ACD routes either a call or a person to an available agent in accordance with an algorithm. It is emphasized that this abstract is provided to comply with the rules requiring an abstract that will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure. It is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims. 37 CFR 1.72(b).
Abstract:
Methods and apparatus for allowing a message to be left for an expected user of a network application are disclosed. According to one embodiment, a method includes determining when a first user has requested access to a first application, and determining if there is a message for the first user when it is determined that the first user has requested access to the first application. The method also includes informing the first user of the message if it is determined that there is the message for the first user, as well as providing the first user with access to the first application after informing the first user of the message and after the first user acknowledges that the first user has been informed of the message.
Abstract:
A method includes determining a coverage area for each of a plurality of base stations. The method also includes receiving a first location parameter indicative of a mobile unit's location. The method further includes transitioning a first connection between the mobile unit and a first base station of the plurality of base stations to a second connection between the mobile unit and a second base station of the plurality of base stations. The transition is based on the coverage areas of the first base station and the second base station and the first location parameter.
Abstract:
In one embodiment, a method includes receiving a request message from a requesting endpoint, where the request message requests a communication session corresponding to an area. An area-based group comprising one or more endpoints associated with the area is identified. The area-based group allows the endpoints to communicate with each other in the communication session. The requesting endpoint is added to the area-based group to allow the requesting endpoint to communicate with the one or more endpoints in the communication session.
Abstract:
In one embodiment, customizing a target using an endpoint includes receiving customization parameters through a wireless link, where a customization parameter designating a setting for a feature of a target. The customization parameters are stored at the endpoint. A customization request comprising the customization parameters is generated. The customization request is sent to a customizer of the target to customize the target.
Abstract:
A method for communicating in a wireless communication network includes establishing a first direct communication link with a base transceiver station and communicating data associated with a communication session over the first direct communication link. The method also includes establishing a mesh connection to the base transceiver station. The mesh connection includes at least one mesh communication link with at least one intermediate communication device of a plurality of communication devices in the wireless network, the at least one intermediate communication device communicating with the base transceiver station over a second direct communication link with the base transceiver station. The method further includes switching between communicating data associated with the communication session over the first direct communication link and communicating data associated with the communication session over the mesh connection.
Abstract:
A method for reserving conference resources includes communicating a conference notification to each of a plurality of conference invitees. The conference notification is associated with a multipoint conference. The method includes receiving, from each of a first number of the plurality of conference invitees, a response to the conference notification indicating that the invitee will participate on the multipoint conference. The first number of the plurality of invitees comprises participating invitees. The method includes automatically determining, based on the responses to the conference notifications, a sufficient amount of resources to allow the participating invitees to communicate on the multipoint conference. The method also includes automatically reserving the determined sufficient amount of resources and hosting the multipoint conference between the participating invitees using the reserved resources.