Abstract:
Methods of creating and displaying video advertisements and systems implementing the methods are disclosed. The method includes creating a user interface wherein an advertiser chooses multi-media assets and their programmatically described rendering behavior, creating a user interface wherein the advertiser chooses a time, program, and audience to display the video advertisement to, transmitting multi-media assets and their programmatically described rendering behavior as a program to be stored on each member of the target audience's viewer devices, and transmitting a signal to each member of the target audience's viewer device to render multi-media assets and corresponding program for advertisement message.
Abstract:
A terminal for communicating with a communication satellite includes a first transceiver for communicating with at least one device in a short range network, and a second transceiver for communicating with a geostationary communication satellite in a network deploying a plurality of forward channels for the communication satellite to transmit data to the terminal and a plurality of return channels for the terminal to transmit data to said communication satellite. The second transceiver is configured to transmit data from the at least one device in one of the plurality of return channels. The at least one device may include a plurality of utility meters and other sensors. A large system including a plurality of the terminals, a communication satellite and a data authority may provide a system for collecting utility meter readings across a geographical region.
Abstract:
A system and associated methods and media are disclosed for delivering to a user of a display device a notification of an incoming message and a series of interactive options such that the user can provide message-handling instructions to a wireless communications network for the incoming message. The notification and interactive options are transferred to a display device across at least a partially wired network. The message can be text-based or voice-based and can be inserted into a video stream that is communicated from the video-providing component to a media-receiving device that is in communication with the display device. The video-providing component receives message-handling instructions from the media-receiving device, as selected by the user, regarding the incoming message and then transmits the message-handling instructions to the wireless communications network.
Abstract:
A method and apparatus for providing broadcast content by an adaptive streaming service and a system using the same are provided, in which a content transmission server configures and transmits a manifest file including a content IDentifier (ID), and a client device receives the manifest file, determines whether the content ID included in the manifest file is identical to an ID of user-requested content for recording, and records a content segment received from a content providing server, if the content ID included in the manifest file is identical to the ID of the user-requested content.
Abstract:
A unified system of programming communication. The system encompasses the prior art (television, radio, broadcast hardcopy, computer communications, etc.) and new user specific mass media. Within the unified system, parallel processing computer systems, each having an input (e.g., 77) controlling a plurality of computers (e.g., 205), generate and output user information at receiver stations. Under broadcast control, local computers (73, 205), combine user information selectively into prior art communications to exhibit personalized mass media programming at video monitors (202), speakers (263), printers (221), etc. At intermediate transmission stations (e.g., cable television stations), signals in network broadcasts and from local inputs (74, 77, 97, 98) cause control processors (71) and computers (73) to selectively automate connection and operation of receivers (53), recorder/players (76), computers (73), generators (82), strippers (81), etc. At receiver stations, signals in received transmissions and from local inputs (225, 218, 22) cause control processors (200) and computers (205) to automate connection and operation of converters (201), tuners (215), decryptors (224), recorder/players (217), computers (205), furnaces (206), etc. Processors (71, 200) meter and monitor availability and usage of programming.
Abstract:
A method of upgrading software through a software download in a Terrestrial Digital Multimedia Broadcasting (T-DMB) terminal includes the steps of announcing when the software is downloaded by receiving a T-DMB signal and analyzing a plurality of fast information groups (FIGs), determining whether the software is downloaded, storing ensemble information and download start time information; matching a current ensemble with the stored ensemble when time according to the download start time information elapses, and confirming a signaling message for informing that the software is downloaded and downloading the software.
Abstract:
An apparatus for controlling fraud in a satellite signal delivery system. An apparatus in accordance with the present invention comprises a receive antenna for receiving at least one satellite signal, and a module, coupled to the receive antenna, for selectively delivering the at least one satellite signal to at least one receiver via an output of the module, wherein the module creates an association between the module and the at least one receiver upon installation of the at least one receiver to the output, such that the module delivers the at least one satellite signal to the at least one receiver only when the association is present.
Abstract:
Methods are provided for predicting uplink interference potential to a mobile satellite system (MSS) generated by ancillary terrestrial components (ATCs) of an ancillary terrestrial network (ATN) and/or ATC radioterminals that are configured to terrestrially use/reuse satellite frequencies that are used and/or authorized for use by a MSS. The methods include measuring power transmitted by and/or received at one or more radioterminals communicating with one or more terrestrial networks and/or transmitted by and/or received at the one or more terrestrial networks communicating with the one or more radioterminals using terrestrial frequencies that are at least partially outside a range of the satellite frequencies. Uplink interference potential to the MSS generated by terrestrial use/reuse of satellite frequencies by the ATN and/or the ATC radioterminals is predicted responsive to the measured power. Related ancillary terrestrial networks are also described.
Abstract:
A unified system of programming communication. The system encompasses the prior art (television, radio, broadcast hardcopy, computer communications, etc.) and new user specific mass media. Within the unified system, parallel processing computer systems, each having an input (e.g., 77) controlling a plurality of computers (e.g., 205), generate and output user information at receiver stations. Under broadcast control, local computers (73, 205), combine user information selectively into prior art communications to exhibit personalized mass media programming at video monitors (202), speakers (263), printers (221), etc. At intermediate transmission stations (e.g., cable television stations), signals in network broadcasts and from local inputs (74, 77, 97, 98) cause control processors (71) and computers (73) to selectively automate connection and operation of receivers (53), recorder/players (76), computers (73), generators (82), strippers (81), etc. At receiver stations, signals in received transmissions and from local inputs (225, 218, 22) cause control processors (200) and computers (205) to automate connection and operation of converters (201), tuners (215), decryptors (224), recorder/players (217), computers (205), furnaces (206), etc. Processors (71, 200) meter and monitor availability and usage of programming.
Abstract:
A response monitoring apparatus using a remote including an electrical circuit including a user activated input, a transmitter, and a receiver, where the electrical circuit is adapted to detect operation of the user activated input and temporarily activate the receiver. After an activation period, the electrical circuit turns off the receiver to conserve battery power. Both signal verification and time monitoring may be used to generate the signal to turn of the receiver. Different transmission and receiving wavelengths are utilized at both the remote and the base unit, and a sensory output is provided on the remote to indicate receipt and acknowledgement of the signal received from the main processor. Different activation codes are sent back to the receiver to generate different sensory outputs. A supplemental teaching method for using the two way teaching apparatus is also provided.