Abstract:
A small cell includes a transceiver configured to receive and access request from a wireless- enabled device. The small cell also includes a processor configured to selectively provide the wireless-enabled device with private access to an enterprise network and public access to one or more core networks of mobile network operators based on an identifier included in the access request. The wireless-enabled device includes a transceiver configured to receive, from the small cell, broadcast information including an identifier of the enterprise network or the one or more core networks. The wireless-enabled device also includes a processor configured to compare the broadcast information to configuration information stored in the wireless-enabled device. The configuration information includes identifiers of the enterprise network or the core networks. The processor is configured to selectively provide the access request to the small cell based on the comparison.
Abstract:
Synchronous FHSS networks operating within mesh networks typically require a certain amount of network traffic to maintain time as well as for executing other functions, such as registration and neighbor discovery. The concepts presented in this disclosure provide a mesh network with enhanced communication capabilities without adding significant hardware or firmware costs to nodes within the network. The disclosed concept of using acquisition channels (frequencies) integrated within FHSS pseudo-random sequences speeds network responses to conditions like outage and restoration. Assignment of unique hop sequences by hop level or at time of manufacture can guarantee minimal network contention while minimizing system network traffic.
Abstract:
Techniques for optimized HARQ recombining are provided. In one exemplary embodiment, a method for wireless communication comprises receiving a broadcast message to determine a timing of a transmission window, receiving at least one transmission within the transmission window, and determining whether the at least one transmission is successfully decoded. The method further comprises instructing a lower protocol layer to ignore remaining transmissions within the transmission window upon a determination that the at least one transmission is successfully decoded, wherein the remaining transmissions and the at least one transmission comprise duplicate copies of a message segment.
Abstract:
A digital broadcast network is disclosed that can provide information at different frequency repetition rates in order to mitigate delay of information at a receiving device. A data stream can be divided into sets of data and depending on how each set of data will be consumed by a user, respective weights or priorities can be assigned to each set. Based on the weight or priority, at least one set of data can repeat more frequently within the data stream than other sets of data. Thus, upon receiving the data stream, the set of data repeated more frequently can be rendered on a user device at substantially the same time as the information is requested. Assigning a more frequent repetition rate of certain sets of data allows the receiving device to quickly obtain and render more important data.
Abstract:
Method and system for providing a contents broadcasting service using a wireless communication is provided. A transmission control station spreads and broadcasts plural contents data using contents identifying codes. A mobile station reversely spreads the broadcasted contents signal using a contents identifying code of contents selected by a user to output and extract corresponding contents data. If it is completely output, the mobile station transmits a mobile station identifying code and a contents identifying code to the transmission control station. The transmission control station spreads and broadcasts advertisement data using an advertisement identifying code together with contents. Then, the mobile station reversely spreads a broadcasted advertisement signal using a previously registered advertisement identifying code to extract and regenerate corresponding advertisement data. An advertisement regenerating frequency is accumulatively stored in the mobile station, and contents may be used freely if the advertisement regenerating frequency reaches a certain level.
Abstract:
The invention relates to a device (7) for receiving and transmitting of information for a user by means of communication networks, the device (7) at least comprising the modules: a central processing unit (3) with a CPU and working memory controlling the other modules; a T-DAB Band-III receiver (1A), a T-DAB L-band receiver (1B), a storage means (4) and a GPRS mobile telephone module (2).
Abstract:
A method and device for storing an interactive television program for playback at a later point in time, wherein said interactive television program comprises at least one interactive television application. The applications are transmitted inside modules (11, 12) through a data carousel (2) within a transport stream (20). The method comprises receiving the transport stream, parsing the stream for application modules and storing them as a storage stream on a storage medium (31). The storage stream is stored separate from said transport stream (20). The data or object carousel is recorded outside the Transport Stream and recorded like a stream, preferably as a single file. This file is a sequence of modules with some header information preceding the modules making playback faster as the information needed to obtain the objects from a module is located directly in the header of that module. Furthermore, the solution according to the invention solution is platform independent.