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:
Methods are disclosed for indirectly monitoring and controlling at least one media peripheral device in a media exchange network by accessing a media management system (MMS) via a first media peripheral (MP) device (e.g., a TV screen) using a user control device (e.g., a remote control). An operation corresponding to a second media peripheral (MP) device (e.g., a digital camera) may be selected via the MMS using the first MP device and the user control device. The operation is then carried out (i.e., performed) by the second MP device. A status of the second MP device may be selected via the MMS using the first MP device and the user control device. The selected status is then displayed on the first MP device.
Abstract:
A private access point may be utilized to establish a local network that is accessible by client devices when the client devices are communicatively coupled to the private access point. The private access point is then operable to determine services that may be provided in its local network to the client devices, and to advertise these services within its local network. The services comprise network and/or data accessibility, and bandwidth availability. Private access points are also operable to utilize local and/or remote resources to provide additional services, comprising audio/video processing capability, storage, and/or processing. Offering of services in private access point networks is incentivized to the private access points and/or to client devices. Incentives comprise offering pay and/or credit to the private access points. Providing access to, blocking, limiting and/or modifying available/offered services is managed in private access point networks, based on incentives and/or availability of resources.
Abstract:
Internal or external pathway adapters are utilized to enable playing personal media streams via STBs. The personal media streams are forwarded from local and/or remote sources. The personal media sources communicate directly and/or indirectly with the pathway adapters. The pathway adapters support a plurality of wireless and/or wired interfaces. The pathway adapters channelize the received personal media streams to simulate TV channels in TV broadcasts receivable via the STBs. The channelized personal media streams are feed directly and separately into the STB and/or combined with TV broadcast feeds. Management server functionality in the pathway adapters enables interactions with the pathway adapter, to request pathway services and/or to establish routing paths for personal media streams to the pathway adapter, wherein these interactions, are based on webpage-based interfaces and/or dedicated APIs.
Abstract:
From a laptop and a client server interface, a subscriber securely initiates tracking and/or disabling of a communication device by a server. The subscriber receives location and/or usage reports for the communication device. The subscriber is provided with the capability to modify a profile, device status and/or transfer ownership of the device via a client server interface. Based on the profile, detection of a particular event triggers tracking and/or disabling of the device by the server. The communication device registers with the server utilizing its unique device ID and/or the subscriber identity information when accessing the internet. The server is enabled to communicate a status and/or a request for tracking information, to the communication device. The server is also enabled to receive tracking and/or location information and communicates it to the subscriber's laptop.
Abstract:
A media player is utilized to determine presence of defects in storage devices, and to retrieve replacement data from media management servers. The retrieval of the replacement data is performed during playback and/or use of the storage devices. The replacement data is only utilized during real time playback of the storage devices. The replacement data can also be stored within the data storage player, into the storage devices, and/or into external storage devices accessible during playback operations. Addressing information is created and/or modified to enable use of stored replacement data. A new copy of the data can be created in the same or in new storage device. The media management server performs access authentication operations during replacement data retrieval. The media management server is accessed via user-based webpage-like interfaces and/or dedicated APIs.
Abstract:
A wireless terminal having processing resources, a user interface including a user input device and a display, and a wireless interface causes a file to be printed to a destination printer that is unsupported by the wireless terminal. The processing resources communicatively couple to the wireless interface and to the user interface and are operable to receive a file via a servicing wireless network and the wireless interface, receive a request via the user interface to print the file, identify a destination printer, determine that the wireless terminal does not support printing of the file at the destination printer, identify a servicing device for processing of the file for printing at the destination printer, and transmit the file to the servicing device via the wireless interface and the servicing wireless network.
Abstract:
A solar power generation system containing a plurality of roofing tiles, each of which containing a housing that encloses photovoltaic panels, solar panel control systems and light sources (light source). The housing and solar panel control system, in addition, may also contain modules and assemblies such as solar panel processing circuitry, communication and power interfaces, heater assembly, electrical rotational assembly, self cleaning assembly, and so forth. For optimal functioning, it is essential that all these modules incorporated within the housing function properly. The light sources are communicatively coupled to the solar panel processing circuitry and a central control unit; and are operable to produce a visible output. The light sources identify a solar panel among plurality of solar panels of the solar power generation system, and display a visible light that indicates operating condition of that solar panel. The visible light may indicate, for instance, problems related to the maintenance, cleaning, solar panel positional adjustment, and heater assembly. The visible light may also indicate operational conditions of a plurality of solar panels, within a block of roofing tiles; where rest of the roofing tiles are incorporated with minimum number of light sources, to minimize the cost. In addition, the visible output may display colorful holiday lighting and advertisements, especially at the roofing edges.
Abstract:
A power delivery system wirelessly deliver electric power and a communication signal to a target device. The power delivery system includes a power transmitting unit having a power source operable to source alternating current power and a sending resonant coupling component operable to couple the alternating current power to a coil for wireless power transmission by a non-radiated magnetic field at a target resonant frequency. The power transmitting unit is capable of dynamically tuning the wireless power transmission to the target resonant frequency wherein the target resonant frequency is specified dynamically. A communication module couples to the power transmitting unit and is operable to couple the communication signal to the non-radiated magnetic field. Operations may include target device authentication, target resonant frequency information communication, billing, and device management.
Abstract:
An Internet program infrastructure communicates a plurality of Internet protocol video program packets from a source end to recipient end device in an optimized and adaptive manner. Optimization functionalities are distributed through the Internet program infrastructure within a source end, a recipient end, and/or nodes of a servicing communication pathway. Selectively, one or more of decoding, adaptive and optimized compression, transcoding, video quality adaptation, missing frame generation, time shifting and tone adaptation, re-encoding and multiplexing functionalities may be employed at the source end, recipient end device and/or nodes of the communication pathway. All of these optimizing functionalities are based upon feedback from the communication pathway nodes or recipient end device that may include traffic density and traffic handling capabilities and recipient end device configuration specific information such as buffering and processing capabilities, screen aspect ration and size, and audio reproduction capabilities.