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Bandwidth-Efficient Modulation Codes Based on Nonbinary Irregular Repeat–Accumulate Codes

机译:基于非二进制不规则重复累积码的带宽有效调制码

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摘要

Using nonbinary low-density parity-check (LDPC) codes with random-coset mapping, Bennatan and Burshtein constructed bandwidth-efficient modulation codes with remarkable performance under belief propagation (BP) decoding. However, due to the random nature of LDPC codes, most of the good LDPC codes found in the literature do not have a simple encoding structure. Thus, the encoding complexity of those LDPC codes can be as high as O(N 2), where N is the codeword length. To reduce the encoding complexity, in this paper, nonbinary irregular repeat-accumulate (IRA) codes with time-varying characteristic and random-coset mapping are proposed for bandwidth-efficient modulation schemes. The time-varying characteristic and random-coset mapping result in both permutation-invariance and symmetry properties, respectively, in the densities of decoder messages. The permutation-invariance and symmetry properties of the proposed codes enable the approximations of densities of decoder messages using Gaussian distributions. Under the Gaussian approximation, extrinsic information transfer (EXIT) charts for nonbinary IRA codes are developed and several codes of different spectral efficiencies are designed based on EXIT charts. In addition, by proper selection of nonuniform signal constellations, the constructed codes are inherently capable of obtaining shaping gains, even without separate shaping codes. Simulation results indicate that the proposed codes not only have simple encoding schemes, but also have remarkable performance that is even better than that constructed using nonbinary LDPC codes.
机译:Bennatan和Burshtein使用具有随机陪集映射的非二进制低密度奇偶校验(LDPC)码,构造了带宽有效的调制码,在置信传播(BP)解码下具有出色的性能。然而,由于LDPC码的随机性,所以文献中发现的大多数好的LDPC码都没有简单的编码结构。因此,那些LDPC码的编码复杂度可以高达O(N 2),其中N是码字长度。为了降低编码复杂度,针对带宽有效的调制方案,提出了具有时变特性的非二进制不规则重复累积(IRA)码和随机陪集映射。时变特性和随机陪集映射分别在解码器消息的密度中导致置换不变性和对称性。所提出的代码的排列不变性和对称性使得能够使用高斯分布来近似解码器消息的密度。在高斯近似下,开发了非二进制IRA码的外在信息传输(EXIT)图,并基于EXIT图设计了几种具有不同光谱效率的码。另外,通过适当地选择不均匀的信号星座,即使没有单独的整形码,所构造的码也固有地能够获得整形增益。仿真结果表明,所提出的编码不仅具有简单的编码方案,而且具有显着的性能,甚至优于使用非二进制LDPC码构建的编码。

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