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Estimating the PDF of the SIC-MMSE equalizer output and its applications in designing LDPC codes with turbo equalization

机译:估算SIC-MMSE均衡器输出的PDF及其在采用Turbo均衡设计LDPC码中的应用

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We consider the analysis and design of low-density parity check (LDPC) codes for intersymbol interference (ISI) channels when used with soft interference cancellation plus linear minimum mean-square error filtering (SIC-MMSE) turbo equalization. We discuss techniques to compute the probability density function (pdf) of the extrinsic information at the output of the SIC-MMSE equalizer as a function of pdf of the input extrinsic information, channel impulse response, and the signal-to-noise ratio. For static ISI channels, we show that the output pdf can be modeled as symmetric Gaussian, and show that the mean can be evaluated without simulating the equalizer. For channels with long memory, we propose to use the unscented transform technique to compute the mean, which significantly reduces the computation required. Finally, for fading channels, we model the pdf by a mixture of symmetric Gaussian densities. Using these techniques, we are able to fairly accurately compute the thresholds for LDPC codes and design good irregular LDPC codes. Simulation results are in good agreement with the computed thresholds and the designed irregular LDPC codes outperform regular ones significantly.
机译:当与软干扰消除以及线性最小均方误差滤波(SIC-MMSE)Turbo均衡一起使用时,我们考虑符号间干扰(ISI)信道的低密度奇偶校验(LDPC)码的分析和设计。我们讨论了用于计算SIC-MMSE均衡器输出处外部信息的概率密度函数(pdf)的技术,该概率密度函数是输入外部信息pdf,信道脉冲响应和信噪比的函数。对于静态ISI通道,我们表明可以将输出pdf建模为对称高斯模型,并表明可以在不模拟均衡器的情况下评估均值。对于具有长存储空间的通道,我们建议使用无味变换技术来计算平均值,这将大大减少所需的计算量。最后,对于衰落通道,我们通过混合对称高斯密度对pdf进行建模。使用这些技术,我们能够相当准确地计算LDPC码的阈值,并设计出良好的不规则LDPC码。仿真结果与计算的阈值非常吻合,设计的不规则LDPC码明显优于常规的LDPC码。

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