论文标题

无痛苦的增益:从无线电动RIS辅助通信中回收反射能量

Gain without Pain: Recycling Reflected Energy from Wireless Powered RIS-aided Communications

论文作者

Xie, Hao, Gu, Bowen, Li, Dong, Lin, Zhi, Xu, Yongjun

论文摘要

在本文中,我们研究并分析了可重新配置的智能表面(RIS)辅助无线驱动通信网络的能量回收。与仅来自发电站的物联网设备(IoT)设备收获的现有作品相比,物联网设备还可以从其他IoT设备中回收能量。特别是,我们提出了基于时间划分的多个访问权限的小组切换和用户切换协议,以评估能量回收对系统性能的影响。分别提出了两个不同的优化问题,以通过共同优化能量波束成形的向量,发射功率,传输时间,接收波束成形向量,分组因子和相移矩阵,在其中,最小吞吐量的约束,最小收获能量的约束,最大收获能量,最大的传递能力,分组,分组,分组,一定的时间,分组的限制。鉴于上述问题的棘手性,我们分别通过将连续的凸近似方法和基于惩罚的方法结合获得相应的亚最佳解决方案,从而分别开发了两种基于优化的迭代算法。仿真结果验证了基于能量回收的机制可以帮助在能量收集和信息传输方面增强物联网设备的性能。此外,我们还验证了基于组切换的算法可以改善物联网设备的更多总吞吐量,并且基于用户的基于用户的算法可以收获更多的能量。

In this paper, we investigate and analyze energy recycling for a reconfigurable intelligent surface (RIS)-aided wireless-powered communication network. As opposed to the existing works where the energy harvested by Internet of things (IoT) devices only come from the power station, IoT devices are also allowed to recycle energy from other IoT devices. In particular, we propose group switching- and user switching-based protocols with time-division multiple access to evaluate the impact of energy recycling on system performance. Two different optimization problems are respectively formulated for maximizing the sum throughput by jointly optimizing the energy beamforming vectors, the transmit power, the transmission time, the receive beamforming vectors, the grouping factors, and the phase-shift matrices, where the constraints of the minimum throughput, the harvested energy, the maximum transmit power, the phase shift, the grouping, and the time allocation are taken into account. In light of the intractability of the above problems, we respectively develop two alternating optimization-based iterative algorithms by combining the successive convex approximation method and the penalty-based method to obtain corresponding sub-optimal solutions. Simulation results verify that the energy recycling-based mechanism can assist in enhancing the performance of IoT devices in terms of energy harvesting and information transmission. Besides, we also verify that the group switching-based algorithm can improve more sum throughput of IoT devices, and the user switching-based algorithm can harvest more energy.

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