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Finite-SNR outage analysis for MIMO channels with imperfect channel state information

机译:具有不完善信道状态信息的MIMO信道的有限SNR中断分析

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In this paper, a point-to-point multiple-input multiple-output (MIMO) channel with imperfect channel state information (CSI) at the receiver and no CSI at the transmitter is considered. Using Monte Carlo simulations, we compute the optimum number of active antennas required at the transmitter (t_(opt)) to minimize the outage probability. We show that, apart from the number of transmit antennas, t_(opt) depends on the signal to noise ratio (SNR), multiplexing gain, coherence time, and the number of receive antennas. Our results give insights on the behavior of r_(opt) with respect to these parameters. Specifically, we show that as the multiplexing gain increases, the value of r_(opt) increases from one, and as the multiplexing gain reaches its maxima, the value of t_(opt) equals the minimum of the number of transmit and receive antennas. The intermediate behavior of t_(opt) with respect to multiplexing gain depends on the MIMO channel configuration. t_(opt) for the MIMO channel with perfect CSI at the receiver follows a similar pattern as that with imperfect CSIR. For a multiple-input single-output (MISO) channel with imperfect CSIR, we obtain a tight upper bound on the outage probability. Using this analytical upper bound, we can calculate t_(opt) for any fixed channel configuration. For a MISO channel with imperfect CSIR and fixed SNR, t_(opt) reduces as multiplexing gain increases; however, for fixed multiplexing gain and fixed SNR, t_(opt) monotonically increases with increase in coherence time of the channel.
机译:本文考虑了点对点多输入多输出(MIMO)信道,该信道在接收器处具有不完善的信道状态信息(CSI),而在发送器处没有CSI。使用蒙特卡洛模拟,我们计算了发射机所需的最佳有源天线数量(t_(opt)),以最大程度地减少中断概率。我们表明,除了发射天线的数量之外,t_(opt)取决于信噪比(SNR),复用增益,相干时间和接收天线的数量。我们的结果提供了有关这些参数的r_(opt)行为的见解。具体来说,我们显示出随着复用增益的增加,r_(opt)的值从1开始增加,并且随着复用增益达到其最大值,t_(opt)的值等于发射和接收天线数量的最小值。 t_(opt)相对于复用增益的中间行为取决于MIMO信道配置。接收器上具有完美CSI的MIMO信道的t_(opt)遵循与CSIR不完善的模式相似的模式。对于具有不完美CSIR的多输入单输出(MISO)通道,我们获得了停机概率的严格上限。使用此分析上限,我们可以为任何固定通道配置计算t_(opt)。对于CSIR和SNR固定的MISO信道,t_(opt)随着复用增益的增加而减小;然而,对于固定的复用增益和固定的SNR,t_(opt)随着信道相干时间的增加而单调增加。

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