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Impacts of Gaussian Error and Doppler Spread on the Performance of MIMO Systems with Antenna Selection

机译:高斯误差和多普勒扩展对带天线选择的MIMO系统性能的影响

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Recently, the antenna selection (AS) scheme is a hot topic in the region of multiple-input multiple-output (MIMO) systems, due to lower complexity. In the previous research, it is assumed that the channel state information (CSI) is available at the receiver, which, however, is impractical in the wireless transmission environment. During the process of the channel estimation, there exists two-aspect impacts, namely Gaussian errors and Doppler spread, which are caused by Gaussian noise and the speed of mobile, respectively. In this paper, we analyze the performance of AS systems with the imperfect CSI, caused by Gaussian errors and Doppler spread, and derive the exact bit-errorratio (BER) expression of AS systems in Rayleigh fading channel, using space-time coding transmission scheme. The corresponding simulations are carried out to illustrate the impacts of Gaussian errors and Doppler spread on the performance of AS systems and to prove the theoretical analysis. The results show that the length of pilot symbols needs a tradeoff under this environment with Doppler spread and Gaussian errors.
机译:近来,由于较低的复杂度,天线选择(AS)方案在多输入多输出(MIMO)系统的区域中是热门话题。在先前的研究中,假设信道状态信息(CSI)在接收器处可用,但是,这在无线传输环境中是不切实际的。在信道估计过程中,存在两个方面的影响,即高斯误差和多普勒扩展,这分别是由高斯噪声和移动速度引起的。在本文中,我们分析了由高斯误差和多普勒扩展引起的具有不完善CSI的AS系统的性能,并使用空时编码传输方案推导了瑞利衰落信道中AS系统的精确比特误码率(BER)表达。 。进行了相应的仿真,以说明高斯误差和多普勒扩展对AS系统性能的影响,并证明理论分析。结果表明,在具有多普勒扩展和高斯误差的环境下,导频符号的长度需要权衡。

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