使用可重构智能表面的增强物联网无电池D2D通信

Shakil Ahmed, Mohamed Y. Selim, A. Kamal
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引用次数: 0

摘要

最近对可重构智能表面(RIS)的研究表明,包含无源元件的RIS面板通过将传输的信号反射到接收节点来增强物联网(IoT)系统的信道性能。本文研究了RIS面板辅助无线网络以能量收集的形式为无电池物联网传感器激发最小基站(BS)发射功率,以在重要的多路径环境(如城市地区)中最大化比特传输。无电池物联网传感器通过RIS面板从外部来源收集能量,例如在给定时间范围内的第一个最佳时间范围内从附近的BS射频(RF)信号中获取能量。物联网传感器之间的比特传输,以及设备对设备(D2D)通信协议,在最终的最佳时间框架内利用收集的能量实现了最大化。比特传输至少等于物联网传感器采样的比特数。我们制定了一个非凸混合整数非线性问题,以最大化受BS射频信号能量收集,RIS面板能量消耗和所需时间影响的通信位的数量。我们提出了一个迭代算法的鲁棒解。我们基于3GPP城市微信模型进行了大量的仿真结果来验证我们的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced IoT Batteryless D2D Communications Using Reconfigurable Intelligent Surfaces
Recent research on reconfigurable intelligent surfaces (RIS) suggests that the RIS panel, containing passive elements, enhances channel performance for the internet of things (IoT) systems by reflecting transmitted signals to the receiving nodes. This paper investigates RIS panel assisted-wireless network to instigate minimal base station (BS) transmit power in the form of energy harvesting for batteryless IoT sensors to maximize bits transmission in the significant multi-path environment, such as urban areas. Batteryless IoT sensors harvest energy through the RIS panel from external sources, such as from nearby BS radio frequency (RF) signal in the first optimal time frame, for a given time frame. The bits transmission among IoT sensors, followed by a device-to-device (D2D) communications protocol, is maximized using harvested energy in the final optimal time frame. The bits transmission is at least equal to the number of bits sampled by the IoT sensor. We formulate a non-convex mixed-integer non-linear problem to maximize the number of communicating bits subject to energy harvesting from BS RF signals, RIS panel energy consumption, and required time. We propose a robust solution by presenting an iterative algorithm. We perform extensive simulation results based on the 3GPP Urban Micro channel model to validate our model.
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