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Design and Analysis of Full-Duplex Massive Antenna Array Systems Based on Wireless Power Transfer

机译:基于无线电力传输的全双工大型天线阵列系统的设计与分析

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In this paper, we consider a wireless communication system, where a full-duplex hybrid access point (HAP) transmits to a set of cellular users (CUs) in the downlink channel, while receiving data from a set of energy-constrained communication devices like user equipments (UEs) in the uplink channel. The HAP has a massive antenna array, while all CUs and UEs nodes are equipped with single antenna each. Time switching protocol is adopted, where channel estimation, wireless power transfer, and information transfer between UEs, CUs and full-duplex HAP are performed in two phases. By adopting maximum ratio combining/maximum ratio transmission (MRC/MRT) and zero-forcing (ZF) processing at the HAP, the uplink and downlink achievable rate expressions in the large-antenna limit and approximate results that hold for any finite number of antennas are derived. Moreover, the optimum energy beamformer and time-split parameter at the HAP are found to maximize the downlink sum-rate under a constraint on uplink sum-rate. Our findings reveal that our proposed energy beamforming with ZF and MRC/MRT processing for information transfer achieves up to 47% and 14% average sum rate gains as compared with the suboptimum energy beamformer, respectively.
机译:在本文中,我们考虑一种无线通信系统,其中全双工混合接入点(HAP)在下行链路信道中发送到一组蜂窝用户(CU),同时从一组能量受限通信设备接收数据上行链路通道中的用户设备(UE)。 HAP具有巨大的天线阵列,而所有CU和UES节点都配备有单个天线。采用时间切换协议,其中在两个阶段执行通道估计,无线电力传输和UE,CU和全双工HAP之间的信息传输。通过采用最大比率/最大比率传输(MRC / MRT)和零强制(ZF)处理在HAP,上行链路和下行链路在大天线限制中实现的速率表达和保持任何有限数量的天线的近似结果派生。此外,发现HAP处的最佳能量波束形成器和时间分割参数在上行链路和速率的约束下最大化下行链路和速率。我们的调查结果表明,与ZF和MRC / MRT加工的建议能量波束成形分别与次间能量波束形成器相比,达到了高达47%和14%的平均总和率增益。

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