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Performance of multichannel reception with transmit antenna selection in arbitrarily distributed Nagakami fading channels

机译:任意分布的长上衰落信道中具有发送天线选择的多信道接收性能

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摘要

We present exact expressions for the average bit error rate (BER) and symbol error rate (SER) of different modulation techniques of a wireless system with multiple transmit and receive antennas. The receive antennas are assumed to use maximal ratio combining (MRC) or post-detection equal gain combining (EGC), whereas the transmit antenna that maximizes the output signal-to-noise ratio (SNR) is selected. Exact expressions of the moment generating function (MGF) of the output SNR and all its derivatives are also derived. We consider a Nakagami-m fading channel where the long-term SNR and fading parameters from the different transmit antennas are arbitrary and may be different from each other. For a given transmit antenna, the fading at the receive antennas is assumed to be independent and identically distributed (i.i.d). For the case when the Nakagami fading parameter m has an integer value in every channel, results are given in closed-form as a finite sum of simple terms. When fading parameters take any real value, our results are given in terms of the multivariate Lauricella hypergeometric function FA (n). Numerical results for the error rates of different modulation techniques are presented.. Our results are validated by Monte Carlo simulation.
机译:我们提供了具有多个发射和接收天线的无线系统的不同调制技术的平均误码率(BER)和符号误码率(SER)的精确表达式。假设接收天线使用最大比率合并(MRC)或检测后等增益合并(EGC),而选择使输出信噪比(SNR)最大化的发射天线。还导出了输出SNR及其所有导数的矩生成函数(MGF)的精确表达式。我们考虑一个Nakagami-m衰落信道,其中来自不同发射天线的长期SNR和衰落参数是任意的,并且可能彼此不同。对于给定的发射天线,假定接收天线处的衰落是独立的,并且分布均匀(i.i.d)。对于中上衰落参数m在每个通道中都有一个整数值的情况,结果以封闭形式给出,作为简单项的有限和。当衰落参数取任何实际值时,我们的结果将以多变量Lauricella超几何函数FA(n)给出。给出了不同调制技术的误码率的数值结果。我们的结果得到了蒙特卡洛仿真的验证。

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