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Ordered statistics decoding of linear block codes on frequency nonselective multipath channels

机译:频率非选择性多径信道上线性分组码的有序统计解码

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This paper investigates the performance of ordered statistics decoding (OSD) of linear block codes with binary differential phase-shift-keying (2DPSK) transmission on frequency nonselective multipath channels. First, the wireless channel is modeled as a frequency nonselective, slow fading environment without intersymbol interference. Second, block interleaving is embedded to decorrelate the successive received symbols so that the performance of OSD, designed essentially for memoryless channels, is retained. Third, we derive the log-likelihood ratio of received symbols based on 2DPSK modulation. Fourth, we derive the statistics of received symbols and the statistics of received symbols after ordering. Further, we analyze the system error performance for sufficient degree of interleaving. Specifically, we derive the asymptotic bit error rate (BER) of OSD at high SNRs using the first-order approximation, finally, we conduct experiments at various channel characteristics and interleaving degrees for (128, 61, 22) extended BCH code and (24, 12, 8) extended Golay code. Results show that the error performance improves tremendously with increased interleaving degree.
机译:本文研究在频率非选择性多径信道上使用二进制差分相移键控(2DPSK)传输的线性分组码的有序统计解码(OSD)的性能。首先,将无线信道建模为没有符号间干扰的频率非选择性慢衰落环境。其次,嵌入块交织以对相关的连续接收符号进行解相关,以便保留本质上为无内存通道设计的OSD的性能。第三,我们基于2DPSK调制得出接收符号的对数似然比。第四,我们得出接收符号的统计量和订购后接收符号的统计量。此外,我们分析了足够的交错程度的系统错误性能。具体来说,我们使用一阶逼近推导高SNR时OSD的渐近误码率(BER),最后,我们针对(128、61、22)扩展BCH码和(24)在各种信道特性和交织度下进行实验,12,8)扩展的Golay代码。结果表明,随着交织度的提高,纠错性能大大提高。

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