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Irregular 8PSK mapping for variable length codes with small blocks in a BICM-ID system

机译:BICM-ID系统中具有小块的可变长度代码的不规则8PSK映射

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Iterative decoding is an effective technique to approach the channel capacity for very large block sizes with enough iterations. However, due to the limitation of bandwidth and delay, small blocks of data are much more commonly applied in practical communications, and low iteration counts are usually preferred for both decoding complexity and delay consideration. In such cases, the design rules of near capacity decoding—which is generally asymptotic with respect to the block size—may cause inferior performance. To overcome this problem for 8-phase shift keying (8PSK) modulated variable length codes (VLCs), an irregular mapping scheme for the transmission system of bit-interleaved coded modulation with iterative decoding (BICM-ID) is studied in this paper. A submapping searching algorithm and an irregular mapping optimization algorithm are proposed aiming at maximizing the extrinsic mutual information after a target number of iterations. Simulation results show that for small data block size with a low iteration count, our scheme has advantages with respect to the existing near capacity systems optimized by the asymptotic tools. Keywords Bit-interleaved coded modulation Irregular codes Variable length codes Iterative source–channel decoding
机译:迭代解码是一种非常有效的技术,可以通过足够的迭代来处理非常大的块大小的信道容量。但是,由于带宽和延迟的限制,在实际通信中更常使用小数据块,并且出于解码复杂性和延迟考虑,通常优选低迭代次数。在这种情况下,近容量解码的设计规则(通常相对于块大小而言是渐近的)可能会导致性能下降。为了克服8相移键控(8PSK)调制可变长码(VLC)的问题,本文研究了带交错解码的比特交织编码调制传输系统(BICM-ID)的不规则映射方案。提出了一种子映射搜索算法和一种不规则映射优化算法,旨在最大化目标迭代次数后的外部互信息。仿真结果表明,对于迭代次数少的小数据块而言,相对于通过渐近工具优化的现有近容量系统,我们的方案具有优势。关键词比特交织编码调制不规则码变长码迭代信源信道解码

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