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首页> 外文期刊>IEEE Transactions on Communications >Variable-Weight Block Dual-Diagonal Structure for Low-Rate QC LDPC Codes With Low Error Floors
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Variable-Weight Block Dual-Diagonal Structure for Low-Rate QC LDPC Codes With Low Error Floors

机译:用于低速率QC LDPC码的可变权重块双对角线结构,具有低逆地板

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摘要

Irregular quasi-cyclic (QC) low-density parity-check (LDPC) codes with the block dual-diagonal (BDD) parity structure are widely adopted in many communication standards because the BDD structure supports an efficient encoding and many degree-2 variable nodes inside are adequate for the construction of mid- to high-rate codes. However, we observe that low-rate irregular QC LDPC codes with the BDD parity structure inherently contain too many degree-2 variable nodes and suffer from error floors in high signal-to-noise ratio (SNR) region. In this paper, a generalized BDD structure including double-weight circulants as well as circulant permutation matrices is proposed for low-rate irregular QC LDPC codes with low error floors which is achieved with a little bit giving up error performance in the waterfall region. When constructing the parity part of a code with the generalized BDD structure, the portion of double-weight circulants is variable so that the resulting LDPC code can achieve a desired degree distribution including degrees 2 and 3 while supporting the efficient encoding. We show that low-rate QC LDPC codes constructed with the proposed BDD structure have better theoretical properties and lower error floor than those with the conventional BDD structure.
机译:具有块双对角线(BDD)奇偶校验结构的不规则准循环(QC)低密度奇偶校验(LDPC)代码在许多通信标准中被广泛采用,因为BDD结构支持有效的编码和许多程度-2变量节点内部足以建造中期到高速码。然而,我们观察到具有BDD奇偶校验结构的低速不规则QC LDPC码固有地包含太多程度-2可变节点,并且在高信噪比(SNR)区域中遭受误差地板。在本文中,提出了一种包括双重循环剂的广义BDD结构以及循环置换矩阵,用于低误差地板的低速不规则QC LDPC码,其在瀑布区域中的一点放弃误差性能实现。当用广义的BDD结构构造代码的奇偶校验部分时,双重循环的部分是可变的,使得所得到的LDPC码可以实现包括度数2和3的期望度分布,同时支持有效的编码。我们表明,使用所提出的BDD结构构建的低速QC LDPC码具有更好的理论特性和比具有传统BDD结构的理论特性和更低的误差。

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