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Antenna selection for multiple-antenna transmission systems: performance analysis and code construction

机译:多天线传输系统的天线选择:性能分析和代码构建

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This correspondence studies antenna selection for wireless communications systems that employ multiple transmit and receive antennas. We assume that (1) the channel is characterized by quasi-static Rayleigh flat fading, and the subchannels fade independently, (2) the channel state information (CSI) is exactly known at the receiver, (3) the selection is available only at the receiver, and it is based on the instantaneous signal-to-noise ratio (SNR) at each receive antenna, and (4) space-time codes are used at the transmitter. We analyze the performance of such systems by deriving explicit upper bounds on the pairwise error probability (PEP). This performance analysis shows that (1) by selecting the set of antennas that observe the largest instantaneous SNR, one can achieve the same diversity gain as the one obtained by using all the receive antennas, provided that the underlying space-time code has full spatial diversity, and (2) in the case of rank-deficient space-time codes, the diversity gain may be dramatically reduced when antenna selection is used. However, we emphasize that in both cases the coding gain is reduced with antenna selection compared to the full complexity system. Based on the upper bounds derived, we describe code design principles suitable for antenna selection. Specifically, for systems with two transmit antennas, we design space-time codes that perform better than the known ones when antenna selection is employed. Finally, we present numerical examples and simulation results that validate our analysis and code design principles.
机译:该对应关系研究了采用多个发射和接收天线的无线通信系统的天线选择。我们假设(1)信道具有准静态瑞利平坦衰落特征,并且子信道独立衰落;(2)接收器完全了解信道状态信息(CSI);(3)仅在以下位置可用它是基于每个接收天线的瞬时信噪比(SNR),并且(4)时空码在发射器上使用。我们通过得出成对错误概率(PEP)的显式上限来分析此类系统的性能。此性能分析表明:(1)通过选择观察最大瞬时SNR的天线集,只要基础空时码具有完整的空间,就可以获得与使用所有接收天线获得的分集增益相同的分集增益。 (2)在秩不足的时空码的情况下,当使用天线选择时,分集增益可能会大大降低。但是,我们强调在两种情况下,与全复杂度系统相比,天线选择会降低编码增益。基于得出的上限,我们描述适用于天线选择的代码设计原理。具体来说,对于具有两个发射天线的系统,我们设计的时空代码在采用天线选择时的性能要优于已知的时空代码。最后,我们提供了数值示例和仿真结果,验证了我们的分析和代码设计原则。

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