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Capacity-approaching bandwidth-efficient coded modulation schemes based on low-density parity-check codes

机译:基于低密度奇偶校验码的接近容量的带宽高效编码调制方案

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We design multilevel coding (MLC) and bit-interleaved coded modulation (BICM) schemes based on low-density parity-check (LDPC) codes. The analysis and optimization of the LDPC component codes for the MLC and BICM schemes are complicated because, in general, the equivalent binary-input component channels are not necessarily symmetric. To overcome this obstacle, we deploy two different approaches: one based on independent and identically distributed (i.i.d.) channel adapters and the other based on coset codes. By incorporating i.i.d. channel adapters, we can force the symmetry of each binary-input component channel. By considering coset codes, we extend the concentration theorem based on previous work by Richardson et al. ( see ibid., vol.47, p.599-618, Feb. 2001) and Kavc/spl caron/ic/spl acute/ et al.(see ibid., vol.49, p.1636-52, July 2003) We also discuss the relation between the systems based on the two approaches and show that they indeed have the same expected decoder behavior. Next, we jointly optimize the code rates and degree distribution pairs of the LDPC component codes for the MLC scheme. The optimized irregular LDPC codes at each level of MLC with multistage decoding (MSD) are able to perform well at signal-to-noise ratios (SNR) very close to the capacity of the additive white Gaussian noise (AWGN) channel. We also show that the optimized BICM scheme can approach the parallel independent decoding (PID) capacity as closely as does the MLC/PID scheme. Simulations with very large codeword length verify the accuracy of the analytical results. Finally, we compare the simulated performance of these coded modulation schemes at finite codeword lengths, and consider the results from the perspective of a random coding exponent analysis.
机译:我们设计基于低密度奇偶校验(LDPC)码的多级编码(MLC)和比特交织编码调制(BICM)方案。对于MLC和BICM方案,LDPC分量代码的分析和优化很复杂,因为通常,等效的二进制输入分量通道不一定是对称的。为了克服这一障碍,我们采用了两种不同的方法:一种基于独立且分布均匀的(i.d.)通道适配器,另一种基于陪集代码。通过合并i.d.通道适配器,我们可以强制每个二进制输入分量通道对称。通过考虑陪集代码,我们根据理查森等人的先前工作扩展了集中定理。 (参见同上,第47卷,第599-618页,2001年2月)和Kavc / spl caron / ic / spl急性/等(参见同上,第49卷,第1636-52页,2003年7月)我们还讨论了基于这两种方法的系统之间的关系,并表明它们确实具有相同的预期解码器行为。接下来,我们针对MLC方案共同优化LDPC分量码的码率和度分布对。使用多级解码(MSD)在MLC的每个级别上优化的不规则LDPC码都能够以非常接近加性高斯白噪声(AWGN)信道容量的信噪比(SNR)很好地执行。我们还表明,优化的BICM方案可以接近并行独立解码(PID)容量,就像MLC / PID方案一样。具有非常大的码字长度的仿真证明了分析结果的准确性。最后,我们比较了这些编码调制方案在有限码字长度下的仿真性能,并从随机编码指数分析的角度考虑了结果。

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