中上衰落下衰落严重程度和接收天线相关性对TAS/MRC的影响

J. P. Peña-Martín, C. Tellez-Labao, J. M. Romero-Jerez
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引用次数: 5

摘要

众所周知,发射天线选择(TAS)可以在保持MIMO系统的分集顺序的同时降低信号处理的复杂性。假设Nakagami衰落,我们在这项工作中表明,如果在发射端使用TAS,则最大比组合(MRC)接收机中的天线相关性以及严重衰落对遍历容量有有益的影响。这与考虑单个发射天线时的MRC接收形成鲜明对比。我们还推导了不同M-ary调制下TAS/MRC的平均符号误码率(ASER)的新颖封闭表达式,通过考虑接收天线相关,其中接收相关矩阵的特征值具有任意多重性,从而推广了先前的工作。通过蒙特卡罗模拟验证了分析结果。我们的研究结果表明,与遍历容量的行为相反,天线相关和严重衰落总是对感兴趣的平均信噪比值的ASER产生不利影响,因为在这些情况下,ASER由分集增益主导。
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Impact of fading severity and receive antenna correlation on TAS/MRC under Nakagami fading
Transmit antenna selection (TAS) is well-known to allow a reduced signal processing complexity while maintaining the diversity order of a MIMO system. Assuming Nakagami fading, we show in this work that antenna correlation in a maximal ratio combining (MRC) receiver, as well as severe fading, have a beneficial impact on ergodic capacity if TAS is used at the transmit end. This is in sharp contrast to MRC reception when a single transmit antenna is considered. We also derive novel closed-form expressions for the average symbol error rate (ASER) of TAS/MRC for different M-ary modulations, generalizing previous works by considering receive antenna correlation where the eigenvalues of the receive correlation matrix have an arbitrary multiplicity. Monte Carlo simulations are performed to validate the analysis. Our results show that, contrary to the behavior of ergodic capacity, antenna correlation and severe fading always have a detrimental impact on ASER for the average SNR values of interest, as in those cases the ASER is dominated by the diversity gain.
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