Demultiplexer design for multi-edge type LDPC coded modulation

J. Lei, Wen Gao, P. Spasojevic, R. Yates
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引用次数: 13

Abstract

Generally, the capacity-achieving signaling design for a specific channel should consider the joint optimization of channel coding and modulation. Nevertheless, coding theorists and practitioners have recognized that a well-designed LDPC code can achieve capacity-approaching performance universally across a range of data transmission and storage channels. A pronounced example is the forward error correction scheme adopted recently by the second generation standards for digital video broadcasting (DVB), wherein the same LDPC codes are expected to be reused over satellite, terrestrial and cable channels. However, to accommodate the spectral efficiency of different channel type, the coded bits should be mapped to the modulator judiciously. The well-known BICM strategy employs a large random bit interleaver, which typically yields good performance for an arbitrary choice of constellation mapper. However, it is problematic for high-speed coding and modulation due to the large amount of memory and circuits routing required. This motivates us to impose structural simplicity on the bit interleaver configuration so that the coded bits are de-multiplexed systematically into parallel groups to feed the constellation mapper. In this paper, we focus on the design of bit demultiplexers for multi-level modulations by applying the framework of multi-edge type (MET) LDPC. Since the channel-dependence of a given code ensemble is dominated by the mutual information between the input and output of the effective channel, we propose to simplify the analysis of the decoding behavior by using a set of surrogate binary erasure channels (BEC). Simulation results indicate that the proposed bit demultiplexer surpasses the performance of the heuristic interleaving strategy specified in second generation DVB standard for terrestrial channels (DVB-T2).
多边型LDPC编码调制的解复用器设计
一般来说,针对特定信道的容量实现信令设计应考虑信道编码和调制的联合优化。然而,编码理论家和实践者已经认识到,设计良好的LDPC码可以在一系列数据传输和存储通道中普遍实现接近容量的性能。一个明显的例子是数字视频广播(DVB)第二代标准最近采用的前向纠错方案,其中相同的LDPC码预计将在卫星、地面和有线频道上重复使用。然而,为了适应不同信道类型的频谱效率,编码位应该明智地映射到调制器。众所周知的BICM策略采用大随机位交织器,对于任意选择的星座映射器通常产生良好的性能。然而,由于需要大量的存储器和电路路由,它在高速编码和调制方面存在问题。这促使我们在位交织器配置上施加结构的简单性,以便编码位被系统地解复用成并行组,以馈送星座映射器。在本文中,我们重点研究了应用多边缘型LDPC框架设计用于多电平调制的位解复用器。由于给定码集的信道依赖性主要由有效信道输入和输出之间的互信息决定,因此我们建议使用一组代理二进制擦除信道(BEC)来简化解码行为的分析。仿真结果表明,所提出的位解复用器优于第二代地面信道DVB标准(DVB- t2)中启发式交错策略的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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