Abstract:
Technologies are generally described for dynamically distributing a processing load. In some examples, a method performed under control of a server may include receiving information regarding load distribution from an end device and dynamically distributing a processing load between the server and the end device based at least in part on the information regarding load distribution.
Abstract:
A digital broadcasting system and a method for transmitting and receiving digital broadcast signal are disclosed. The method of processing a digital broadcast signal comprises encoding signaling information for mobile data, forming data groups including mobile data, a plurality of long known data sequences, a plurality of segmented known data sequences and the encoded signaling information, interleaving data in the data groups, transmitting the digital broadcast signal including the data groups having the interleaved data, and wherein the signaling information includes concatenation information indicating whether the segmented known data sequences are concatenated between the data groups included in the digital broadcast signal.
Abstract:
A method of transmitting a broadcast signal includes encoding mobile service data to build a Reed-Solomon (RS) frame according to an RS frame mode, wherein the mobile service data is either a mobile service data of a base layer or a mobile service data of the base layer and at least one enhancement layer, wherein each layer is specified by a layer identifier, wherein a layer identifier value of the base layer is set to 0 and a layer identifier value of the at least one enhancement layer starts from 1; and encoding signaling data, wherein the signaling data includes fast information channel (FIC) data and transmission parameter channel (TPC) data, and the FIC data includes information for rapid mobile service acquisition.
Abstract:
Technologies are generally described for a network selection scheme for an electronic device. In some examples, a method performed under control of an electronic device may include searching one or more communication networks available for the electronic device; determining types of the searched communication networks; determining a type of data traffic to be transmitted over at least one of the searched communication networks; and determining at least one of the communication networks to be used for the data traffic based at least in part on the determined types of the communication networks and the determined type of the data traffic.
Abstract:
Technologies are generally described for a push management scheme for a mobile operating server. In some examples, a method performed under control of a mobile operating server may include receiving from a mobile device a request for generating one or more keep-alive messages, the request including information on a destination push server, generating the keep-alive messages, and transmitting the keep-alive messages to the destination push server.
Abstract:
A method of transmitting a broadcast signal includes performing Reed-Solomon (RS) frame encoding and Cyclic Redundancy Check (CRC) encoding on first mobile service data to form a primary RS frame and on second mobile service data to form a secondary RS frame; encoding on at least the first mobile service data or the second mobile service data, in serial concatenated convolution code (SCCC) block units; encoding signaling information including transmission parameters, the transmission parameters including SCCC encoding information and RS frame encoding information; formatting a data group including the encoded first mobile service data and second mobile service data, wherein the first mobile service data are included in a first region within the data group and the second mobile service data are included in a second region within the data group, the second region being different from the first region; and transmitting the broadcast signal including the formatted data group.
Abstract:
The disclosed method of processing a digital broadcast signal comprises generating one RS frame or two RS frames according to the RS frame mode, forming the data group including the mobile service data and signaling data, forming and outputting a plurality of data packets including the mobile service data in the data group, wherein the 118 data packets and K data packets are outputted for the data group, the K being scalable between 0 and 38, interleaving the mobile service data included in the plurality of data packets, wherein the data group includes a scalable data region including data included in the K data packets, wherein the scalable data region carries data included in the first RS frame when the RS frame mode is the single frame mode, or carries data included in the third RS frame when the RS frame mode is the dual frame mode.
Abstract:
A digital television (DTV) transmitting/receiving system and a method of processing digital broadcast data in the DTV transmitting/receiving system are disclosed. The DTV transmitting system includes a randomizer for randomizing enhanced data, an encoder for encoding each bit of the randomized enhanced data at a coding rate of ½ in order to output data symbols, a symbol to byte converter for converting the data symbols to data bytes, a deinterleaver for deinterleaving the data bytes, a Reed-Solomon (RS) encoder for RS-coding enhanced data packets including the deinterleaved data bytes to add RS parity data, a data interleaver for interleaving data of the RS-coded enhanced data packets, a trellis encoder for trellis coding the interleaved data at a coding rate of ⅔, and a transmitting unit for transmitting a digital broadcast signal including the trellis-encoded data.
Abstract:
A method of processing broadcast data in a broadcast transmitter includes performing Reed-Solomon (RS) encoding and Cyclic Redundancy Check (CRC) encoding on mobile service data to build at least one RS frame including the mobile service data and dividing the at least one RS frame into a plurality of portions; dividing each of the plurality of portions into several Serial Concatenated Convolutional Code (SCCC) blocks according to SCCC block mode information, encoding data in the SCCC blocks, and mapping the SCCC blocks including the encoded data to data blocks according to the SCCC block mode information; encoding signaling data including fast information channel (FIC) data and transmission parameter channel (TPC) data; and modulating a broadcast signal including data in the data blocks and the encoded signaling data.
Abstract:
A transmitting system and a method of transmitting digital broadcast signal are disclosed. The method of transmitting digital broadcasting signal in a transmitter includes multiplexing mobile data and main data, transmitting a transmission frame including the multiplexed mobile and main data, wherein a parade of data group is transmitted during slots, wherein each slot includes specified number of mobile data packets, a first scalable number of mobile data packets, and a second scalable number of main data packets, wherein the data group including a plurality of regions and the fifth region of the plurality of regions includes the first scalable number of mobile data packets, wherein the data group is assigned to one of the slots in such a manner that slots of consecutive slot number carry data groups of inconsecutive group number.