Ergodic Capacity of M-1-1 AF Relaying Systems over Rayleigh Fading Channels

Hyunkee Min, Sungeun Lee, Kyungchul Kwak, Hyungjong Kim, D. Hong
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引用次数: 1

Abstract

The amplify-and-forward relaying system considered here consists of a base station (BS) with M transmit antennas, K relay stations (RSs) with a single antenna each, and a mobile station (MS) with a single antenna. Upper bounds of ergodic capacities are derived for some specific values of M and general values of K where the best relay selection (BRS) is used, and the maximum-ratio-transmission (MRT) is applied for the BS-RS transmission. Numerical results show that increasing M enhances the ergodic capacity due to the reduction of noise propagation, and increasing K also enhances the ergodic capacity due to the K-th order diversity gain from the BRS. In addition, the effect of increasing K on capacity enhancement is much significant compared to that of increasing M. On the other hand, the capacity enhancement from increasing M is limited, whereas the capacity enhancement from increasing K is unlimited. In addition, the capacity enhancement from M and that from K are independent.
M-1-1 AF中继系统在瑞利衰落信道上的遍历容量
这里考虑的放大转发中继系统由一个带有M个发射天线的基站(BS)、K个带有单个天线的中继站(RSs)和一个带有单个天线的移动站(MS)组成。对于某些特定的M值和一般的K值,推导了遍历容量的上界,其中使用了最佳中继选择(BRS),并对BS-RS传输采用了最大比传输(MRT)。数值结果表明,增大M可以减小噪声传播,从而提高遍历容量;增大K也可以提高遍历容量,这是由于BRS的K阶分集增益。另外,与增加M相比,增加K对容量增强的影响要显著得多。另一方面,增加M对容量增强的影响是有限的,而增加K对容量增强的影响是无限的。另外,M的容量增强与K的容量增强是相互独立的。
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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