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Bit-error probability analysis of compact antenna arrays with maximal-ratio combining in correlated Nakagami fading

机译:相关Nakagami衰落下最大比合并的紧凑型天线阵列的误码概率分析

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This paper presents the bit-error probability performance of a compact space diversity receiver for the reception of binary non-coherent and coherent phase-shift-keying (PSK) and frequency shift keying (FSK) signals through a correlated Nakagami (1960) fading channel. Analytical expressions for the average bit-error-rate (BER) are derived as a function of the covariance matrix of the multipath component signals at the antenna elements. Closed-form expressions for the spatial cross-correlation are obtained under a Gaussian angular power profile assumption. This analysis provides a direct means of computing the average BER as a function of the array characteristics and the operating environment for a wide range of multipath fading conditions. The effects of the antenna array spacing, mutual coupling, and the operating environment (the angular spread and mean angle-of-arrival) on the BER performance are illustrated.
机译:本文介绍了紧凑型空间分集接收机通过相关Nakagami(1960)衰落信道接收二进制非相干和相干相移键控(PSK)和频移键控(FSK)信号时的误码概率性能。根据天线元件处的多径分量信号的协方差矩阵,得出平均误码率(BER)的解析表达式。在高斯角功率分布假设下获得了空间互相关的闭式表达式。这种分析提供了一种直接手段,可以针对多种多径衰落条件,根据阵列特性和工作环境来计算平均BER。说明了天线阵列间距,相互耦合以及工作环境(角度扩展和平均到达角)对BER性能的影响。

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