Optimal Output Quantization of Binary Input AWGN Channel for Belief-Propagation Decoding of LDPC Codes

Junho Cho, Jonghong Kim, Wonyong Sung
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引用次数: 7

Abstract

Optimal quantizers for channel output are especially necessary for very high speed and memory-cell sensing applications where high-precision analog-to-digital converters are not available. This paper investigates a method to find optimal output quantizers for a binary input (BI) additive white Gaussian noise (AWGN) channel when regular low-density parity-check (LDPC) codes are used with belief-propagation (BP) decoding. The optimal quantizers are found by uni-parametric and multi-parametric optimization methods based on the discretized density evolution (DE). The capacity of various LDPC code ensembles are also provided with the BI-AWGN channel outputs quantized using these optimal quantizers. It is demonstrated that only 3 bits of quantization precision performs almost within 0.1 dB of the infinite precision channel output. The effect of the code rate and the degree distribution of LDPC codes on the optimal quantization boundaries is analyzed.
LDPC码信念传播译码中二值输入AWGN信道最优输出量化
通道输出的最佳量化器对于高速和存储单元传感应用尤其必要,其中高精度模数转换器不可用。研究了正则低密度奇偶校验码(LDPC)与信念传播(BP)译码时,二元输入加性高斯白噪声(AWGN)信道的最优输出量化方法。采用基于离散密度演化(DE)的单参数和多参数优化方法找到最优量化器。使用这些最优量化器量化的BI-AWGN信道输出也提供了各种LDPC码集成的容量。结果表明,在无限精度通道输出的0.1 dB范围内,只有3比特的量化精度。分析了LDPC码的码率和码度分布对最优量化边界的影响。
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