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首页> 外文期刊>Physical Communication >Massive MIMO under multi-keyhole channels: Does the use-and-then-forget bounding technique work?
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Massive MIMO under multi-keyhole channels: Does the use-and-then-forget bounding technique work?

机译:多键槽通道下的大规模MIMO:使用和然后忘记限制技术是否有效?

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摘要

This paper considers the uplink of a massive MIMO system under the multi-keyhole channels. Two capacity bounding techniques, namely use-and-then-forget (UF) and full-side-information (FSI), are used to obtain the achievable rates. With UF scheme, the base station (BS) utilizes the mean value of the effective channel gain to detect the signal, while with the FSI scheme, the BS exploits the full channel knowledge for signal detection. By using the law of large numbers and the Jensen's inequality, we derive the tight approximations of the rates which can be represented in simple and insightful closed-form expressions. These closed-form expressions enable us to get important insights for future design of massive MIMO. Under keyhole effects, the FSI scheme yields a much higher rate than the UF scheme does, especially when the number of keyholes is small. Therefore, though the UF bounding technique is widely used in massive MIMO literature due to its simple closed-form expressions, the FSI bounding technique should be used if the channels are keyhole channels. (C) 2021 Elsevier B.V. All rights reserved.
机译:本文考虑了多键槽通道下大型MIMO系统的上行链路。两个容量界限技术,即使用和然后忘记(UF)和全面信息(FSI),用于获得可实现的速率。利用UF方案,基站(BS)利用有效信道增益的平均值来检测信号,而在与FSI方案中,BS利用了用于信号检测的完整信道知识。通过使用大量和詹森的不等式法律,我们得出了可以以简单和富有洞察力的闭合表达所代表的速率的紧张近似值。这些封闭形式的表达式使我们能够为未来的大规模MIMO设计获得重要的见解。在锁孔效应下,FSI方案产生比UF方案更高的速率,特别是当keyheles的数量小时。因此,虽然UF边界技术由于其简单的闭合表达而广泛用于大规模的MIMO文献,但如果通道是钥匙孔通道,则应使用FSI边界技术。 (c)2021 elestvier b.v.保留所有权利。

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