Title :
Bidirectional broadcasting by using multi-edge type LDPC convolutional codes
Author :
Si, Zhongwei ; Thobaben, Ragnar ; Skoglund, Mikael ; Oechtering, Tobias J.
Author_Institution :
Sch. of Electr. Eng., R. Inst. of Technol. (KTH), Stockholm, Sweden
Abstract :
In this paper we propose multi-edge type (MET) LDPC convolutional codes for the bidirectional broadcast channel with common message (BBC-CM). It describes a two-user broadcast channel in which different subsets of the broadcasted messages are a priori known at the receivers. This situation occurs, e.g., in the second transmission phase of a bidirectional relaying protocol. In the proposed scheme, the transmitter broadcasts codewords of an MET LDPC convolutional code. Each user tries then to recover the unknown messages by decoding a two-edge type code which is embedded in the MET code. We prove for each user that the two-edge type LDPC convolutional code has the same properties as a standard LDPC convolutional code, and therefore it is capacity achieving for the binary erasure channel (BEC) and the general binary memoryless symmetric (BMS) channel. Meanwhile, we show that the capacity region of the BBC-CM is achieved. Numerical results with finite node degrees show that the achievable rates approach the channel capacities in both BECs and BI-AWGN channels.
Keywords :
AWGN channels; broadcast channels; broadcasting; channel capacity; convolutional codes; decoding; memoryless systems; protocols; BBC-CM; BEC channel; BI-AWGN channel; BMS channel; MET LDPC convolutional codes; MET code; achievable rates; bidirectional broadcast channel with common message; bidirectional broadcasting; bidirectional relaying protocol; binary erasure channel; broadcasted messages; capacity region; channel capacity; codewords; decoding; finite node degrees; general binary memoryless symmetric channel; multiedge type LDPC convolutional codes; second transmission phase; standard LDPC convolutional code; two-edge type LDPC convolutional code; two-edge type code; unknown messages; Block codes; Convolutional codes; Decoding; Parity check codes; Standards; Transmitters;
Conference_Titel :
Turbo Codes and Iterative Information Processing (ISTC), 2012 7th International Symposium on
Conference_Location :
Gothenburg
Print_ISBN :
978-1-4577-2114-4
Electronic_ISBN :
2165-4700
DOI :
10.1109/ISTC.2012.6325205