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Gallager B LDPC Decoder with Transient and Permanent Errors

机译:Gallager B LDPC解码器,具有瞬态和永久性错误

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In this paper, the performance of a noisy Gallager B decoder used to decode regular LDPC codes is studied. We assume that the noisy decoder is subject to both transient processor errors and permanent memory errors. Due to the asymmetric nature of permanent errors, we model error propagation in the decoder via a suitable asymmetric channel. We then develop a density evolution type analysis on this asymmetric channel. The recursive expression for the bit error probability is derived as a function of the code parameters (node degrees), codeword weight, transmission error rate and the error rates of the permanent and the transient errors. Based on this analysis, we then derive the residual error of the Gallager B decoder for the regime where the transmission error rate and the processing error rates are small. In this regime, we further observe that the residual error can be well approximated by the sum of suitably combined transient errors and permanent errors, provided that the check node degree is large enough. Based on this insight we then propose and analyze a simple scheme for detecting permanent errors. The scheme exploits the parity check equations of the code itself and reuses the existing hardware to locate permanent errors in memory blocks. With high probability, the detection scheme discovers correct locations of permanent memory errors, while, with low probability, it mislabels the functional memory as being defective.
机译:在本文中,研究了用于解码常规LDPC代码的嘈杂Gallager B解码器的性能。我们假设嘈杂的解码器受到瞬态处理器错误和永久内存错误的影响。由于永久误差的不对称性,我们通过合适的非对称信道模拟解码器中的错误传播。然后,我们在这种不对称频道上开发密度进化类型分析。误差概率的递归表达式作为代码参数(节点度),码字重量,传输错误率和永久误差的误差率和瞬态误差的函数。基于该分析,我们将导出巨头B解码器的残余误差,用于传输错误率和处理误差率小。在这一制度中,我们进一步观察到,通过适当组合的瞬态误差和永久误差的总和,剩余误差可以很好地近似,只要检查节点度足够大。基于这种洞察力,我们提出并分析了一种检测永久性错误的简单方案。该方案利用代码本身的奇偶校验方程,并重用现有硬件以在内存块中定位永久错误。具有高概率,检测方案发现了永久内存误差的正确位置,而具有低概率,则误标定功能内存有缺陷。

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