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Log-Likelihood Ratio Calculation for Iterative Decoding on Rayleigh Fading Channels Using Padé Approximation

机译:使用Padé近似瑞利衰落通道迭代解码的迭代解码的对数似然比计算

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摘要

Approximate calculation of channel log-likelihood ratio (LLR) for wireless channels using Padé approximation is presented. LLR is used as an input of iterative decoding for powerful error-correcting codes such as low-density parity-check (LDPC) codes or turbo codes. Due to the lack of knowledge of the channel state information of a wireless fading channel, such as uncorrelated fiat Rayleigh fading channels, calculations of exact LLR for these channels are quite complicated for a practical implementation. The previous work, an LLR calculation using the Taylor approximation, quickly becomes inaccurate as the channel output leaves some derivative point. This becomes a big problem when higher order modulation scheme is employed. To overcome this problem, a new LLR approximation using Padé approximation, which expresses the original function by a rational form of two polynomials with the same total number of coefficients of the Taylor series and can accelerate the Taylor approximation, is devised. By applying the proposed approximation to the iterative decoding and the LDPC codes with some modulation schemes, we show the effectiveness of the proposed methods by simulation results and analysis based on the density evolution.
机译:呈现了使用Padé近似的无线信道的信道对数似然比(LLR)的近似计算。 LLR用作强大的错误校正代码的迭代解码的输入,例如低密度奇偶校验(LDPC)代码或Turbo代码。由于无线衰落信道的信道状态信息缺乏知识,例如不相关的菲亚特瑞利衰落通道,对于这些通道的精确LLR的计算对于实际实现非常复杂。以前的工作,使用泰勒近似的LLR计算,随着信道输出离开一些衍生点,随着信道输出留下一些衍生点,快速变得不准确。当采用高阶调制方案时,这成为一个大问题。为了克服这个问题,使用Padé近似的新的LLR近似,其通过具有相同具有泰勒序列的系数总数的两个多项式的合理形式表示原始功能,并且可以加速泰勒近似。通过将提出的近似与一些调制方案应用于迭代解码和LDPC码,我们通过仿真结果和基于密度演进的分析来显示所提出的方法的有效性。

著录项

  • 作者

    Gou Hosoya; Hiroyuki Yashima;

  • 作者单位
  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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