Adaptive bit-reliability mapping for LDPCCoded high-order modulation systems

Citations

SCOPUS

3

초록

In this paper, an adaptive bit-reliability mapping is proposed for the bit-level Chase combining in LDPCcoded high-order modulation systems. Contrary to the previously known bit-reliability mapping that assigns the information (or parity) bits to more (or less) reliable bit positions, the proposed mapping flexibly assigns codeword bits to the bit positions of various reliabilities by considering the characteristics of code and protection levels. Compared with the symbol-level Chase combining and the constellation rearrangement bit mapping, the proposed mapping gives 0.7 - 1.3 dB and 0.1 - 1.0 dB performance gain at FER = 10-3 with no additional complexity, respectively. The adaptive bit-reliability mappings are derived for various environments and the validity of them is confirmed through simulation.

키워드

Adaptive algorithmsBinary codesComputational complexityComputer simulationBit reliability mappingBit-level Chase combiningHigh-order modulation systemsSignal encoding
제목
Adaptive bit-reliability mapping for LDPCCoded high-order modulation systems
저자
Joo, Hyeong GunShin, Dong JoonHong, Song Nam
DOI
10.1109/VETECS.2007.321
발행일
2007-03
유형
Conference Paper
저널명
IEEE Vehicular Technology Conference
페이지
1539 ~ 1543