Capacity scaling in noncoherent wideband massive SIMO systems

Mainak Chowdhury, Alexandros Manolakos, Felipe Gómez-Cuba, E. Erkip, A. Goldsmith
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引用次数: 6

Abstract

This paper studies noncoherent wideband systems with a single antenna transmitter and a multiple antenna receiver with many elements, under signaling with peak-to-average power ratio constraints. The analysis considers the scaling behavior of capacity and achievable rates by letting both the number of antennas and the bandwidth go to infinity jointly. In contrast to prior work on wideband single input single output (SISO) channels without a-priori channel state information, it is shown that a sufficiently large number of receive antennas can make up for the vanishingly small SNR at each antenna. In particular, it is shown that when bandwidth grows sufficiently slowly with the number of antennas, the capacity scaling with an increasing number of receive antennas is the same as the optimal coherent capacity scaling. If the bandwidth grows faster than a certain threshold, however, the additional bandwidth does not help because a finite transmit power is spread over an excessively large bandwidth.
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非相干宽带大规模SIMO系统的容量缩放
本文研究了在峰均功率比约束下单天线发射和多天线接收的非相干宽带系统。分析考虑了天线数量和带宽同时趋于无穷大时容量和可达速率的尺度行为。与先前在没有先验信道状态信息的宽带单输入单输出(SISO)信道上的工作相比,研究表明,足够多的接收天线可以弥补每个天线上逐渐消失的小信噪比。特别是,当带宽随天线数量的增长足够缓慢时,容量随接收天线数量的增加而增加的比例与最优相干容量比例相同。但是,如果带宽增长快于某个阈值,那么额外的带宽就没有任何帮助,因为有限的发射功率会分散在过大的带宽上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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