DocumentCode
2498886
Title
A Differential Binary Message-Passing LDPC Decoder
Author
Mobini, Nastaran ; Banihashemi, Amir H. ; Hemati, Saied
Author_Institution
Carleton Univ., Ottawa
fYear
2007
fDate
26-30 Nov. 2007
Firstpage
1561
Lastpage
1565
Abstract
In this paper, we propose a binary message-passing algorithm for decoding low-density parity-check (LDPC) codes. The algorithm substantially improves the performance of purely hard-decision iterative algorithms with a small increase in the memory requirements and the computational complexity. We associate a reliability value to each nonzero element of the code´s parity-check matrix, and differentially modify this value in each iteration based on the sum of the extrinsic binary messages from the check nodes. For the tested random and finite-geometry LDPC codes, the proposed algorithm can achieve performance as close as 1.3 dB and 0.7 dB to that of belief propagation (BP) at the error rates of interest, respectively. This is while, unlike BP, the algorithm does not require the estimation of channel signal to noise ratio. Low memory and computational requirements and binary message-passing make the proposed algorithm attractive for high-speed low-power applications.
Keywords
binary codes; computational complexity; geometric codes; iterative decoding; matrix algebra; message passing; parity check codes; random codes; computational complexity; decoding; differential binary message-passing LDPC decoder; finite-geometry LDPC codes; hard-decision iterative algorithm; low-density parity-check codes; parity-check matrix; random codes; Belief propagation; Computational complexity; Drives; Energy consumption; Iterative algorithms; Iterative decoding; Parity check codes; Systems engineering and theory; Testing; Wires;
fLanguage
English
Publisher
ieee
Conference_Titel
Global Telecommunications Conference, 2007. GLOBECOM '07. IEEE
Conference_Location
Washington, DC
Print_ISBN
978-1-4244-1042-2
Electronic_ISBN
978-1-4244-1043-9
Type
conf
DOI
10.1109/GLOCOM.2007.300
Filename
4411210
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