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Distributed antenna system capacity scaling [Coordinated and Distributed MIMO]

机译:分布式天线系统容量缩放[协调和分布式MIMO]

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摘要

The distributed antenna system concept promises to enhance the capacity and diversity of next-generation wireless communication networks, due to the inherently added micro and macro diversity. In this article we first give an overview of the main benefits of a DAS in relation to a collocated antenna system. Next we study the sum-capacity scaling of a multi-user DAS with the number of jointly processed transmit antennas in the downlink. In a practical system this scaling will have implications on the number of antennas worth jointly processing, since the costs of processing an additional antenna can be higher than the additional benefits obtained. Results show that the most important system property to attain the highest capacity gains is symmetry, and the users that attain the maximum gain are those at cell borders. They also confirm that the main DAS feature that makes possible its gains over the CAS architecture are the additional degrees of freedom/diversity provided by such an architecture, which increase the probability of finding a system state with high symmetry and of each user being near one of the transmit antennas.
机译:由于固有地增加了微分集和宏分集,因此分布式天线系统的概念有望增强下一代无线通信网络的容量和分集。在本文中,我们首先概述与并置天线系统相关的DAS的主要优点。接下来,我们研究具有下行链路中共同处理的发射天线数量的多用户DAS的总容量缩放。在实际系统中,这种缩放比例将影响值得共同处理的天线数量,因为处理额外天线的成本可能高于获得的额外收益。结果表明,获得最大容量增益的最重要的系统属性是对称性,而获得最大增益的用户是位于单元边界的用户。他们还确认,使DAS优于CAS体系结构的主要DAS功能是这种体系结构提供的附加自由度/多样性,这增加了找到具有高对称性且每个用户接近一个用户的系统状态的可能性。发射天线。

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