DocumentCode
785479
Title
Finite-Precision Analysis of Demappers and Decoders for LDPC-Coded M-QAM Systems
Author
Baldi, Marco ; Chiaraluce, Franco ; Cancellieri, Giovanni
Author_Institution
Dept. of Biomed. Eng., Polytech. Univ. of Marche, Ancona
Volume
55
Issue
2
fYear
2009
fDate
6/1/2009 12:00:00 AM
Firstpage
239
Lastpage
250
Abstract
LDPC codes are state-of-art error correcting codes, included in several standards for broadcast transmissions. Iterative soft-decision decoding algorithms for LDPC codes reach excellent error correction capability; their performance, however, is strongly affected by finite-precision issues in the representation of inner variables. Great attention has been paid, in recent literature, to the topic of quantization for LDPC decoders, but mostly focusing on binary modulations and analysing finite precision effects in a disaggregrated manner, i.e., considering separately each block of the receiver. Modern telecommunication standards, instead, often adopt high order modulation schemes, e.g. M-QAM, with the aim to achieve large spectral efficiency. This puts additional quantization problems, that have been poorly debated in previous literature. This paper discusses the choice of suitable quantization characteristics for both the decoder messages and the received samples in LDPC-coded systems using M-QAM schemes. The analysis involves also the demapper block, that provides initial likelihood values for the decoder, by relating its quantization strategy with that of the decoder. A new demapper version, based on approximate expressions, is also presented, that introduces a slight deviation from the ideal case but yields a low complexity hardware implementation.
Keywords
binary codes; broadcasting; error correction codes; iterative decoding; modulation coding; parity check codes; quadrature amplitude modulation; LDPC-coded M-QAM system; binary modulation; broadcast transmission; demapper; error correcting code; finite-precision analysis; high order modulation scheme; iterative soft-decision decoding algorithm; quantization strategy; telecommunication standards; Code standards; Digital video broadcasting; Error correction codes; HDTV; Iterative decoding; Parity check codes; Quantization; Satellite broadcasting; TV broadcasting; Telecommunication standards; Demodulation; digital communication; error correction codes; fixed point arithmetic; quantization;
fLanguage
English
Journal_Title
Broadcasting, IEEE Transactions on
Publisher
ieee
ISSN
0018-9316
Type
jour
DOI
10.1109/TBC.2009.2016498
Filename
4895676
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