Abstract:
A digital broadcasting system and a method of processing data are disclosed. Herein, additional encoding is performed on mobile service data, which are then transmitted, thereby providing robustness in the processed mobile service data, so that the mobile service data can respond more strongly against fast and frequent channel changes. The method of processing data in a transmitting system includes receiving mobile service data, encapsulating the received mobile service data to a transport stream (TS) packet, and outputting the encapsulated mobile service data as a mobile service data packet, and multiplexing a main service data packet including main service data and the encapsulated mobile service data packet, thereby transmitting the multiplexed data packets to at least one transmitter located in a remote site.
Abstract:
A broadcasting signal receiver and a method for transmitting/receiving a broadcasting signal are disclosed. An identifier of a cell is configured in second program table information or signaling information of the broadcasting signal. If the cell is changed, channel information of the changed cell can be obtained from second program table information in which transmission channel information of each cell for a broadcasting program is configured. Accordingly, the broadcasting signal receiver can continuously output the program although the cell is changed.
Abstract:
A digital broadcasting system and method of processing data are disclosed. Herein, a method of processing data of a transmitting system includes generating a service informative null packet including service-related information of mobile service data, and multiplexing a plurality of main service data packets, a plurality of mobile service data packets, and a plurality of service informative null packets, and transmitting the multiplexed data packets to at least one transmitter located in a remote site. The digital broadcasting system and method of processing data may enhance receiving performance of a receiving system by performing additional encoding on mobile service data and by transmitting the processed data to the receiving system.
Abstract:
A digital broadcasting system and a method of processing data are disclosed. The method of processing data includes grouping a plurality of enhanced data packets, each having information included therein, thereby creating a data group, creating and indicating an identification signal in a predetermined position of at least one enhanced data packet within the data group, the identification signal designating insertion of a field synchronization signal within a data frame, multiplexing the enhanced data packet of the data group and a main data packet, thereby creating a data frame, and inserting a field synchronization signal within the data frame based upon the enhanced data packet having the identification signal indicated therein.
Abstract:
A digital broadcast system is disclosed. Most particularly, by inserting and transmitting predefined known data in a particular position within the data are having enhanced data transmitted therein, and by having a receiving system use the known data for demodulating and equalization processes, the receiving performance may be enhanced in an environment undergoing frequent channel changes and being vulnerable to noise.
Abstract:
A digital broadcasting system and method of processing data are disclosed. And, more particularly, by performing additional error correction encoding on enhanced data having information included therein, and by multiplexing and outputting the error correction encoded enhanced data with main data, the present invention is capable of providing robustness to the transmitted data, thereby enhancing the receiving performance of the present invention in an environment vulnerable to frequent channel changes and noise.
Abstract:
A digital broadcast system is disclosed. In order to group a plurality of enhanced data packets having information, multiplex the group with main data, and transmit them, the system and method stratify the group to form a plurality of regions, and classify types of inserted data, and processing methods, etc., according to characteristics of stratified regions. Especially, the present invention performs pre-process differently according to types of data inserted to the stratified regions in the group and types of inputted enhanced data, receiving performance of a receiving system can be enhanced even in an environment where channel variation is significant and noise is serious.
Abstract:
Disclosed is a foundation container having a discharge pump therein, in which a contents container of stretchable material for storing cosmetic contents is coupled inside a container main body, and is fixed by a middle cap, and the contents container is provided with a rounded curved portion (42) at a lower edge thereof, an annular bent portion (43) at a lower center portion thereof, and spaced protrusions (44) protruding radially on an upper bottom surface, such that the contents container is evenly pressed from the rounded curved portion during the pumping operation of the pump, and even when the contents container is compressed, the gap is secured to discharge minimal contents, whereby the contents are smoothly discharged, and by the branch structure of the distribution plate and the discharge plate, it is possible to minimize the residual contents and improve use efficiency while discharging the cosmetic contents evenly.
Abstract:
A transmitting/receiving system and a method for processing broadcasting data are disclosed. The receiving system includes a demodulator, a pre-signaling decoder, a post-signaling decoder, and a block decoder. The demodulator demodulates mobile service data based upon decoded pre-signaling data, the mobile service data being received through some segments of at least one slot, wherein a transmission frame is configured of multiple sub-frames, and wherein a sub-frame is configured of multiple slots. The pre-signaling decoder decodes pre-signaling data being received through a first slot of each sub-frame. The post-signaling decoder decodes post-signaling data being received after the pre-signaling data. The block decoder turbo-decodes the demodulated mobile service data based upon the decoded post-signaling data.
Abstract:
A receiving system and a method of processing data are disclosed herein. The receiving system includes a receiving unit, an equalizer, a block decoder, and an RS frame decoder. The receiving unit receives and demodulates a broadcast signal. Herein, the broadcast signal includes at least a mobile service data and a data group including a plurality of known data sequences. The equalizer channel-equalizes the data group included in the demodulated broadcast signal by using the plurality of the known data sequences. The block decoder performs turbo-decoding in block units on data of portion allocated to the channel equalized data group. And, the RS frame decoder configures an RS frame by gathering data of the turbo decoded M number of portions, wherein M is an integer greater than 1 (M>1). And, when a number of contiguous CRC errors is equal to (a maximum number of errors that can be corrected by RS erasure decoding)-!- 1, wherein the number of contiguous CRC errors is determined by performing CRC decoding on each row of the RS frame, the RS frame decoder sets up erasure points in all data of the rows including the CRC errors, so as to perform RS erasure decoding on all columns of the RS frame in the column direction.