Title :
Improved design of bit mapping based on EXIT-chart analysis for DVB-T2 system
Author :
Yan, Keqian ; Cheng, Tao ; Yang, Fang ; Peng, Kewu ; Song, Jian
fDate :
11/1/2011 12:00:00 AM
Abstract :
In this paper, we focus on the design of bit mapping scheme to improve the error-control performance for the second generation digital video broadcasting-terrestrial (DVB-T2) standard. Generally in the case of low-density parity-check (LDPC)-coded modulation system, the nonuniform bit reliabilities inherent to the high-order modulation and irregular LDPC code imply the mismatch between the decoder and the demodulator. Hence, the bit mapping is plugged between the two modules to match the unequal error protections (UEPs) of different coded bits to different modulation levels. This scheme gives a remarkable performance improvement with no added complexity in the bit-interleaved coded modulation (BICM) system. By performing the curve-fitting on the extrinsic information transfer (EXIT) chart, we propose a DEMUX design methodology to improve the bit mapping scheme. Design examples are given for the DVB-T2 system under the AWGN channel as well as the Rayleigh channel. Simulation results indicate that the proposed DEMUX schemes can even surpass the performance of the DEMUX operation specified in the DVB-T2 standard.
Keywords :
AWGN channels; Rayleigh channels; curve fitting; digital video broadcasting; error correction codes; parity check codes; television standards; AWGN channel; DEMUX design methodology; DEMUX operation; DEMUX scheme; DVB-T2 system; EXIT-chart analysis; Rayleigh channel; bit interleaved coded modulation system; bit mapping design; bit mapping scheme; curve fitting; error control performance; extrinsic information transfer chart; high order modulation; irregular LDPC code; low density parity check-coded modulation system; nonuniform bit reliability; second generation digital video broadcasting-terrestrial standard; unequal error protection; Decoding; Digital video broadcasting; Iterative decoding; Modulation; Rayleigh channels; Signal to noise ratio; BICM.; DEMUX; EXIT chart; UEP; bit mapping;
Journal_Title :
Consumer Electronics, IEEE Transactions on
DOI :
10.1109/TCE.2011.6131128