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Energy-Efficient Hybrid Duplexing Strategy for Bidirectional Distributed Antenna Systems

机译:双向分布式天线系统节能混合双工策略

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摘要

We propose a bidirectional distributed antenna (DA) system where DAs are capable of working dynamically in hybrid duplex modes: full duplex (FD), half duplex, and sleep, which enables higher degree of freedom and hence much higher energy efficiency (EE) than DA sole-FD systems, with just marginal loss in spectral efficiency (SE). The proposed system also demonstrates significant EE and SE enhancement over FD colocated antenna systems. Compared to the above two benchmark systems, the proposed system also requires much simpler self-interference cancelation design for FD mode due to less cross talks between antennas. A low-complexity EE maximization scheme is proposed for the bidirectional DA system. A channel gain based DA clustering algorithm is first performed to activate/deactivate transmit/receive chains, which highlights the characteristics of DA deployment, and then a distributed hybrid duplexing algorithm is performed to optimize the downlink beamformer and the uplink transmission power. Various practical aspects are taken into account for system design, such as self-interference at DAs in FD mode, cochannel interference from uplink users to downlink users, and multiuser interference in both uplink and downlink. The effectiveness of the proposed system is verified by simulation results.
机译:我们提出了一个双向分布式天线(DA)系统,其中DAS能够以混合双工模式动态工作:全双工(FD),半双工和睡眠,从而实现更高的自由度,从而高于更高的能效(EE) DA唯一FD系统,恰好是光谱效率的边际损失(SE)。所提出的系统还证明了FD Colocated天线系统的显着EE和SE增强。与上述两个基准系统相比,由于天线之间的交叉谈话较少,所提出的系统还需要对FD模式进行更简单的自干扰取消设计。提出了一种低复杂性EE最大化方案,用于双向DA系统。首先执行信道增益基于DA聚类算法以激活/停用发送/接收链,这突出显示DA部署的特性,然后执行分布式混合双工算法以优化下行链路波束形成器和上行链路传输功率。考虑到各种实际方面,以考虑系统设计,例如在FD模式下的DAS自干扰,从上行用户到下行用户的Cochannel干扰,以及上行链路和下行链路中的多用户干扰。通过模拟结果验证了所提出的系统的有效性。

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