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Delay-limited capacity and maximum throughput of spatially correlated multiple antenna systems under average and peak-power constraints

机译:在平均和峰值功率限制下,空间相关的多个天线系统的时延限制容量和最大吞吐量

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The delay-limited capacity is defined as the transmission rate that can be guaranteed in all fading states under finite long-term power constraints. For the single-input single-output Rayleigh fading channel it is zero. In contrast it is greater than zero in multiple antenna channels but depends on the properties of the fading channel, e.g. on the spatial correlation. In this work, we prove that the delay-limited capacity is Schur-concave with respect to the spatial correlation. In addition to the average power constraint, we apply a peak-power constraint which limits the kurtosis of the input signal. We derive the delay-limited capacity for this general class of multiple antenna channels with correlation under peak-power and long-term power constraint. Without the stringent delay constraint, the maximum throughput is defined as the transmission rate times successful transmission probability. When the transmitter is uninformed, the maximum throughput is achieved for small SNR by using only one transmit antenna and for high SNR by using all available transmit antennas. When the transmitter has perfect channel knowledge, the optimal power allocation under long-term power constraint is analyzed and the impact of correlation is discussed by numerical simulations.
机译:延迟限制容量定义为在有限的长期功率约束下所有衰落状态下都可以保证的传输速率。对于单输入单输出瑞利衰落信道,它为零。相反,它在多个天线信道中大于零,但取决于衰落信道的特性,例如,在空间上的相关性。在这项工作中,我们证明了相对于空间相关性,时延限制容量是舒尔凹的。除了平均功率约束之外,我们还应用了一个峰值功率约束,它限制了输入信号的峰度。我们推导了这种通用类别的多天线信道的延迟限制容量,并在峰值功率和长期功率约束下具有相关性。没有严格的延迟约束,最大吞吐量定义为传输速率乘以成功传输概率。当发送器不知情时,仅使用一个发射天线即可获得低信噪比(SNR)的最大吞吐量,而使用所有可用发射天线则可获得高信噪比(SNR)的最大吞吐量。当发射机具​​有完善的信道知识时,分析了长期功率约束下的最优功率分配,并通过数值仿真讨论了相关性的影响。

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