Sum-rate Maximization for RIS-assisted IoT

Zicheng Xing, Yunhui Yi, Xiandeng He, Junwei Chai, Yuanxinyu Luo, Xingcai Zhang
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Abstract

Abstract—With the development of smart devices, Internet of Things(IoT) has requirements for high coverage, high reliability, and low power consumption for wireless communication systems. The emergence of reconfigurable intelligent surfaces(RIS) provides an achievable solution for further development of IoT. RIS consists of passive low-cost components, which can reshaping the wireless channel. Thus it can improve multi-stream transmission gain, enhance edge coverage and realize large-scale Device-to-Device communication. In this paper, we consider RIS-assisted multiple-input single-output(MISO) communication systems, and our goal is to maximize the sum-rate of all IoT receiving devices by jointly designing the beamforming of access points(AP) and the phase shift of RIS elements. For the non-convex problem form, we propose the Improved Elite Genetic Algorithm(IEGA) to obtain a smooth solution of the problem. Numerical results demonstrate the effectiveness of RIS and the proposed joint algorithm for the performance improvement of IoT wireless communication systems.We analyzed the impact of the deployment of RIS and the number of RIS elements on the sum-rate at the receiving devices, which facilitates the balance between the cost and benefit of increasing RIS elements in practical deployments.
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ris辅助物联网的和速率最大化
摘要随着智能设备的发展,物联网对无线通信系统提出了高覆盖、高可靠性和低功耗的要求。可重构智能表面(RIS)的出现为物联网的进一步发展提供了一个可实现的解决方案。RIS由低成本无源元件组成,可以重塑无线信道。从而提高了多流传输增益,增强了边缘覆盖,实现了大规模的设备间通信。在本文中,我们考虑RIS辅助的多输入单输出(MISO)通信系统,我们的目标是通过联合设计接入点(AP)的波束形成和RIS元素的相移来最大化所有物联网接收设备的总和速率。对于非凸问题形式,我们提出了改进的精英遗传算法(IEGA)来获得问题的光滑解。数值结果证明了RIS及其联合算法在提高物联网无线通信系统性能方面的有效性。我们分析了RIS的部署和RIS元素的数量对接收设备求和速率的影响,这有助于在实际部署中增加RIS元素的成本和收益之间取得平衡。
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