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Rate-Compatible Protograph LDPC Codes for Spin-Torque Transfer Magnetic Random Access Memory (STT-MRAM)

机译:自旋扭矩传递磁性随机存取存储器(STT-MRAM)的速率兼容原型LDPC码

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This paper proposes novel rate-compatible protograph LDPC (RCP-LDPC) codes to correct memory cell errors and mitigate the raw bit error rate (BER) diversity for spin-torque transfer magnetic random access memory (STT-MRAM). Since the STT-MRAM channel is asymmetric, we first apply an independent and identically distributed (i.i.d.) channel adapter to force the channel to be symmetric. We then propose to use the protograph extrinsic information transfer (PEXIT) algorithm, the asymptotic weight distribution (AWE) analysis, as well as the actual error rate performance as the combined guideline for designing protograph LDPC codes with short codeword lengths for STT-MRAM. By further applying a code extension approach, we construct novel RCP-LDPC codes that can work with a single encoder/decoder. Simulation results show that our proposed RCP-LDPC codes outperform the well-known rate-compatible AR4JA protograph codes.
机译:本文提出了一种新型的速率兼容原型LDPC(RCP-LDPC)码,以纠正存储单元错误并减轻自旋扭矩传输磁性随机存取存储器(STT-MRAM)的原始误码率(BER)分集。由于STT-MRAM通道是非对称的,因此我们首先应用一个独立且分布均匀的(i.i.d.)通道适配器强制该通道对称。然后,我们建议使用原形外在信息传输(PEXIT)算法,渐近权重分布(AWE)分析以及实际错误率性能作为组合准则,为STT-MRAM设计具有短码字长度的原形LDPC码。通过进一步应用代码扩展方法,我们构造了可以与单个编码器/解码器一起使用的新型RCP-LDPC代码。仿真结果表明,我们提出的RCP-LDPC码优于已知的速率兼容AR4JA原型码。

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