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Theoretical analysis and performance limits of noncoherent sequence detection of coded PSK

机译:编码PSK非相干序列检测的理论分析和性能极限

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摘要

A theoretical performance analysis of noncoherent sequence detection schemes previously proposed by the authors for combined detection and decoding of coded M-ary phase-shift keying (M-PSK) is presented. A method for the numerical evaluation of the pairwise error probability-for which no closed-form expressions exist-is described, the classical union bound is computed, and results are compared with computer simulations. An upper bound on this pairwise error probability is also presented. This upper bound may be effectively used for the definition of an equivalent distance, which may be useful in exhaustive searches for optimal codes. Using this bound, it is proven that, in the general coded case, the considered noncoherent decoding schemes perform as close as desired to an optimal coherent receiver when a phase memory parameter is sufficiently large. In the case of differentially encoded M-PSK, a simple expression of the asymptotic bit-error probability is derived, which is in agreement with simulations for high as well as low signal-to-noise ratio (SNR).
机译:提出了作者先前提出的用于编码的M进制相移键控(M-PSK)的组合检测和解码的非相干序列检测方案的理论性能分析。描述了一种成对错误概率的数值评估方法,该方法不存在闭合形式的表达式,计算经典联合界,并将结果与​​计算机仿真进行比较。还给出了该成对错误概率的上限。该上限可以有效地用于定义等效距离,这在穷举搜索最佳代码时可能有用。使用该界限,证明了在一般编码情况下,当相位存储器参数足够大时,所考虑的非相干解码方案表现出与最佳相干接收机所期望的接近。在采用差分编码的M-PSK的情况下,可以得出渐近误码率概率的简单表达式,这与高信噪比(SNR)和低信噪比(SNR)的仿真一致。

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