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Iterative detection/decoding of majority-logic decodable nonbinary LDPC codes over partial response channels

机译:在部分响应通道上对多数逻辑可解码的非二进制LDPC码进行迭代检测/解码

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This paper is concerned with the applications of majority-logic decodable nonbinary low-density parity-check (LDPC) codes to partial response (PR) channels. We propose a joint detection/decoding algorithm that works in an iterative manner by exchanging messages between the Viterbi detector and a generalized majority logic decoder (GMLGD). The Viterbi detector is implemented over a sectionalized trellis. The hard-decisions made by the Viterbi detector are then passed to the decoder. The decoder delivers as output estimates of each coded symbols, which will be utilized in next iteration to update the branch metrics of the trellis. Since the proposed algorithm requires only integer operations and finite field operations, it can be implemented with simple combinational logic circuits. Simulation results and complexity analysis show that, when compared with the conventional turbo equalizer implemented with the BCJR algorithm and the Q-ary sum-product algorithm (BCJR-QSPA), the proposed algorithm has a much lower complexity but suffers from a little performance degradation. So the proposed algorithm provides a good candidate for trade-offs between performance and complexity.
机译:本文涉及多数逻辑可解码非二进制低密度奇偶校验(LDPC)码在部分响应(PR)信道中的应用。我们提出一种联合检测/解码算法,该算法通过在维特比检测器和广义多数逻辑解码器(GMLGD)之间交换消息来以迭代方式工作。维特比检测器在分段网格上实现。然后,由维特比检测器做出的硬性决定将传递给解码器。解码器提供每个编码符号的估计输出,这些估计将在下一次迭代中用于更新网格的分支度量。由于所提出的算法仅需要整数运算和有限域运算,因此可以用简单的组合逻辑电路来实现。仿真结果和复杂度分析表明,与使用BCJR算法和Qary和-乘积算法(BCJR-QSPA)实现的传统Turbo均衡器相比,该算法具有较低的复杂度,但性能下降很少。 。因此,所提出的算法为性能和复杂性之间的折衷提供了一个很好的候选者。

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