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Wireless Powered Intelligent Reflecting Surfaces for Enhancing Wireless Communications

机译:用于增强无线通信的无线动力智能反射曲面

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摘要

Recently, the intelligent reflecting surface (IRS) has become a promising technology for energy-, and spectrum-efficient communications by reconfiguring the radio environment. In this paper, we consider multiple-input single-output (MISO) transmissions from a multi-antenna access point (AP) to a receiver, assisted by a practical IRS with a power budget constraint. The IRS can work in energy harvesting, and signal reflecting phases. It firstly harvests RF energy from the AP's signal beamforming, and then uses it to sustain its operations in the signal reflecting phase. We aim to characterize the maximum capacity by optimizing the AP's transmit beamforming, the IRS's time allocation in two operational phases, and the IRS's passive beamforming to enhance the information rate. To solve the non-convex maximization problem, we exploit its structural properties, and decompose it into two sub-problems in two phases. The IRS's phase shift optimization in the reflecting phase follows a conventional passive beamforming problem to maximize the received signal power. In the energy harvesting phase, the IRS's time allocation, and the AP's transmit beamforming are jointly optimized using monotonic optimization. Simulation results verify the effectiveness of the proposed algorithm.
机译:最近,智能反射表面(IRS)通过重新配置无线电环境,成为能源和频谱有效通信的有希望的技术。在本文中,我们将来自多天线接入点(AP)的多输入单输出(MISO)传输到接收器,由具有电力预算约束的实用IRS辅助。 IRS可以在能量收集中工作,并发信号反射阶段。首先从AP的信号波束成形中收集RF能量,然后使用它来维持其在信号反射阶段的操作。我们的目标是通过优化AP的发射波束成形,IRS在两个操作阶段的时间分配以及IRS的被动波束成形来表征最大容量,以增强信息速率。为了解决非凸显最大化问题,我们利用其结构性属性,并将其分解为两个阶段的两个子问题。反射阶段中的IRS相移优化遵循传统的被动波束形成问题以最大化接收的信号功率。在能量收集阶段,使用单调优化共同优化IRS时间分配和AP的发射波束成形。仿真结果验证了所提出的算法的有效性。

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