Abstract:
A laptop that interacts with a television system. At least one module may be adapted to receive a user input identifying a video selection. The at least one module may also be adapted to display video information corresponding to the video selection. The at least one module may further be adapted to transmit a control signal adapted to cause the display of video information corresponding to the video selection on the television system. The laptop may, for example, be adapted to receive television system setting information and provide for user control of various television system settings. Also for example, the laptop may be adapted to receive media guide information, present such information to a user, provide for user selection of a media element, and transmit a control signal adapted to cause delivery of the selected media element from a multimedia source to the television system.
Abstract:
A device and method for accessing, monitoring, and controlling home appliances in a media exchange network by establishing a communication link between a communication initiation device and at least one home appliance and communicating at least one command from the communication initiation device to the at least one home appliance via the communication link. The at least one home appliance then generates at least one response to the at least one command. The commands may include turning the home appliance(s) on and off, parameter adjustment commands, access commands, monitoring commands, mode change commands, and programming commands. Appliance responses may include powering on, powering off, changing a mode of operation, sending a status to the communication initiation device, adjusting an operational parameter, and changing a programmed operational step.
Abstract:
A mobile communication device may be utilized to establish a localized user network that is accessible by client devices when the client devices are communicatively coupled to the mobile communication device. The mobile communication device is then operable to determine services that may be provided in the user network to the client devices, and to advertise these services within the user network. The services comprise network and/or data accessibility, and bandwidth availability. Mobile communication devices are also operable to provide, directly or via local and/or remote resources, additional services, comprising audio/video processing capability, storage, and/or processing. Offering of services in user networks is incentivized to the mobile communication devices and/or to client devices. Incentives comprise offering pay and/or credit to the mobile communication devices. Providing access to, blocking, limiting and/or modifying available/offered services is managed in U-Spot networks, based on incentives and/or availability of resources.
Abstract:
A system and method for providing a secure user interface in a shared resource environment. Various aspects of the present invention may comprise establishing a first wireless communication link between a first system and a user interface system. A first wireless communication port may, for example, establish such a wireless communication link. A first secure communication pathway may be established between the first system and the user interface system. A first secure communication module may, for example, establish such a secure communication pathway. A second wireless communication link may be established between a second system and the user interface system. A second wireless communication port may, for example, establish such a wireless communication link. A second communication pathway between the second system and the user interface system may be established. A second communication module may, for example, establish such a communication pathway.
Abstract:
A laptop that interacts with a television system. At least one module may be adapted to receive a user input identifying a video selection. The at least one module may also be adapted to display video information corresponding to the video selection. The at least one module may further be adapted to transmit a control signal adapted to cause the display of video information corresponding to the video selection on the television system. The laptop may, for example, be adapted to receive television system setting information and provide for user control of various television system settings. Also for example, the laptop may be adapted to receive media guide information, present such information to a user, provide for user selection of a media element, and transmit a control signal adapted to cause delivery of the selected media element from a multimedia source to the television system.
Abstract:
A wireless access point selects its own transmission power for different types of the transmissions. The access point transmits to client devices at reduced power levels, however, periodic beacons and other selected non-beacon transmissions can be transmitted at a high power level to facilitate association by other client devices
Abstract:
A method and system for simulcasting multimedia information via a broadband access gateway and a wireless wide area network, is disclosed. An access device such as, for example, a mobile multimedia handset engaged in a call served by a wireless wide area network may migrate to within the coverage area of an associated broadband access gateway with a wireless interface. The wireless wide area network may simulcast call content to the broadband access gateway via a broadband network. A user in the proximity of the broadband access gateway may be notified of the simulcasting of the call, and may elect to continue the call via a WLAN/PAN-enabled wireless handset or other access device that is compatible with the wired and/or wireless interfaces of the broadband access gateway.
Abstract:
A network infrastructure operable to support the exchange of communications, such as voice communications, between a first client terminal having a first user identifier and a second (destination) client terminal associated with a second user identifier (handle). This second client terminal may be part of a family of client terminals. The network infrastructure includes a packet-switch network, a shared database and a number of client terminals serviced by one or more service providers. These terminals include a network interface and are identified by their service provider by a network address. The shared database associates user identifiers, metadata and network addresses. This allows a user to access the shared database in order to initiate a call request from the first client terminal to the second client terminal(s). The first client terminal receives the network address or vectoring information on the network address of the destination terminal through the shared database. This shared database may also have metadata used to manage the call. The destination terminal may receive or redirect the call within the family of client terminals based on metadata contained within the shared database or stored locally.
Abstract:
An electronic communication network supports delivery of video program Internet protocol packets and includes a source device, a first recipient device, and a second recipient device. The source device transmits both first and second video program Internet protocol packets. The first recipient device is assigned as positive acknowledgment leader by the source device and the second recipient device that is assigned as negative acknowledgement leader by the source device. The first recipient device is operable to transmit to the source device a positive acknowledgment of receipt of the first video program Internet protocol packet. The second recipient device is operable to transmit to the source device a negative acknowledgment of non-receipt upon not receiving the first video program Internet protocol packet. The source device responds to the negative acknowledgement of non-receipt by the second recipient device by multicast resending the second video program Internet protocol packet to both the first and second recipient devices.
Abstract:
An Internet infrastructure with network devices and end point devices containing service module manager and service modules, that supports packet routing and vectoring based on payload comparison with spatially related templates. The network device that supports packet content analysis on arriving packet, consists of a plurality of packet switched interface circuitries, user interface circuitry, local storage comprising the service module manager software and a plurality of local service modules, and processing circuitry communicatively coupled to each of the packet switched interfaces, local storage and user interface circuit. The processing circuitry executes service module manager and thus analyzes the packet content and applies one or more selected local service module processing using the packet. The service module manager contains, for comparisons, header templates, spatially related payload trigger templates and spatially related payload supplemental templates. The spatially related templates attempt to identify a target data with certainty. The processing circuitry takes one or more actions on the packet of a target data, by applying selected service modules.