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Bayesian approach for erasure insertion in frequency-hop multiple-access communications with selective fading

机译:用于选择性衰落的跳频多址通信中擦除插入的贝叶斯方法

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摘要

We propose a decision rule for symbol erasure insertion in a dispersive propagation environment based on Bayesian decision theory. The method is applied to frequency-hop communications with Reed-Solomon coding and error-and-erasures decoding. The proposed algorithm is based on decision feedback to eliminate statistical dependence among the envelope detectors' outputs of an M-ary frequency-shift keying noncoherent demodulator. The performance is analyzed for fading channels with different levels of frequency selectivity and synchronous multiple-access interference. It is shown that the use of memoryless decision rules results in complete inefficiency in such channel conditions, whereas the proposed rule provides large coding gains even for severe selectivity. The performance sensitivity with respect to the estimation of the power delay profile denotes high robustness of the proposed approach, provided that the selectivity is somewhat overestimated. Sensitivity results for error propagation due to decision feedback are also given.
机译:我们提出了一种基于贝叶斯决策理论的在色散传播环境中符号删除插入的决策规则。该方法被应用于具有里德-所罗门编码和误码消除解码的跳频通信。所提出的算法基于决策反馈,以消除M元频移键控非相干解调器的包络检波器输出之间的统计依赖性。分析了具有不同频率选择性和同步多址干扰水平的衰落信道的性能。结果表明,在这种信道条件下,无记忆决策规则的使用会导致效率完全低下,而所提出的规则甚至对于严重的选择性也提供了较大的编码增益。关于功率延迟分布的估计的性能敏感性表示所提出方法的高鲁棒性,条件是选择性被高估了。还给出了由于决策反馈而导致的错误传播的敏感性结果。

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