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A New Method for Building Low-Density-Parity-Check Codes

机译:一种建立低密度奇偶校验码的新方法

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This paper proposes a new method for building low-density-parity-check codes, exempt of cycle of length 4, based on a circulant permutation matrix, which needs very little memory for storage it in the encoder and a dual diagonal structure is applied to guarantee that parity check bits can be recursively computed with linear calculation complexity. The Bit Error Rate performance of the new low-density-parity-check codes was compared to the uncoded bi-phase-shift-keying over additive-white-gaussian-noise channel. This simulation shows that the proposed codes are very efficient over additive-white-gaussian-noise. The proposed codes ensure a very low encoding complexity and reduce the memory storage required for the parity-check matrix, which can be more easily built than others codes used in channel coding.
机译:本文提出了一种基于循环置换矩阵构建低密度奇偶校验代码的新方法,豁免长度4,这需要在编码器中存储非常小的存储器,并将其应用了双对角线结构保证可以通过线性计算复杂度递归地计算奇偶校验比特。将新的低密度 - 奇偶校验码的误码率性能与附加白色高斯噪声通道的未编码双相移键合进行了比较。该仿真表明,所提出的代码非常有效地过度高度高斯噪声。所提出的代码确保了非常低的编码复杂度,并减少了奇偶校验矩阵所需的存储器存储,这可以比信道编码中使用的其他代码更容易地构建。

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