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Receiver structures and performance for unresolved Ricean/Rayleigh multipath fading channels

机译:未解析的Ricean / Rayleigh多径衰落信道的接收机结构和性能

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This paper considers receiver structures and performance for unresolved mixed mode Ricean/Rayleigh multipath channels. A fading channel is said to be mixed mode if the first path gain is Ricean distributed and the other path gains are Rayleigh. The optimal receiver for this case consists of a decorrelation stage combined with a quadratic form, as well as a nonlinear term related to the Ricean specular component. Replacing the nonlinear term by a quadratic form, yields a novel family of quadratic sub-optimal receivers, quadratic decorrelation receivers (QDR), that could be more easily implemented. These receivers exploit the decorrelation performed on the signal samples similar to the optimal receiver. Single pulse performance of the QDR and other sub-optimal structures is studied for binary FSK and DPSK. It is shown that SNR gains can be obtained by the use of receivers that exploit the knowledge of the specular component. Furthermore, we demonstrate the importance of the decorrelation operation in eliminating the error floors when the multipath is unresolved.
机译:本文考虑了未解析混合模莱斯/瑞利多径信道的接收机结构和性能。如果第一路径增益是莱斯分配的,而其他路径增益是瑞利的,则衰落信道被称为混合模式。在这种情况下,最佳接收器包括一个解相关级和一个二次形式,以及一个与Ricean镜面反射分量有关的非线性项。用二次形式代替非线性项,产生了一个新的二次次优接收器系列,二次去相关接收器(QDR),可以更容易地实现。这些接收器利用类似于最佳接收器的信号样本上执行的去相关。对于二进制FSK和DPSK,研究了QDR和其他次优结构的单脉冲性能。结果表明,可以通过利用利用镜面反射分量的知识的接收器来获得SNR增益。此外,我们证明了当多路径无法解析时,去相关操作在消除错误基底方面的重要性。

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