论文标题

IRS辅助的RF驱动的物联网网络:系统建模和性能分析

IRS-Assisted RF-powered IoT Networks:System Modeling and Performance Analysis

论文作者

Sun, Hongguang, Zhao, Zelun, Cheng, Hu, Lyu, Jiangbin, Wang, Xijun, Zhang, Yan, Quek, Tony Q. S.

论文摘要

成为未来无线通信系统的有前途的解决方案,智能反射表面(IRS)能够通过调整大量反射元素的相移来重新配置无线传播环境。 To quantify the gain achieved by IRSs in the radio frequency (RF) powered Internet of Things (IoT) networks, in this work, we consider an IRS-assisted cellular-based RFpowered IoT network, where the cellular base stations (BSs) broadcast energy signal to IoT devices for energy harvesting (EH) in the charging stage, which is utilized to support the uplink (UL) transmissions in the subsequent UL stage.使用随机几何形状的工具,我们首先得出了平均信号功率和干扰功率的分布,然后将其用于获得能量覆盖概率,UL覆盖率概率,整体覆盖率,空间吞吐量和功率效率。有了提出的分析框架,我们最终评估了关键系统参数网络性能的影响,例如IRS密度,IRS反映元素数,充电阶段比率等。与常规的RF驱动的IoT网络相比,IRS无源光束成形可在能量覆盖和UL覆盖范围内提高相同的增强水平,从而在不变的阶段中启动量不变。

Emerged as a promising solution for future wireless communication systems, intelligent reflecting surface (IRS) is capable of reconfiguring the wireless propagation environment by adjusting the phase-shift of a large number of reflecting elements. To quantify the gain achieved by IRSs in the radio frequency (RF) powered Internet of Things (IoT) networks, in this work, we consider an IRS-assisted cellular-based RFpowered IoT network, where the cellular base stations (BSs) broadcast energy signal to IoT devices for energy harvesting (EH) in the charging stage, which is utilized to support the uplink (UL) transmissions in the subsequent UL stage. With tools from stochastic geometry, we first derive the distributions of the average signal power and interference power which are then used to obtain the energy coverage probability, UL coverage probability, overall coverage probability, spatial throughput and power efficiency, respectively. With the proposed analytical framework, we finally evaluate the effect on network performance of key system parameters, such as IRS density, IRS reflecting element number, charging stage ratio, etc. Compared with the conventional RF-powered IoT network, IRS passive beamforming brings the same level of enhancement in both energy coverage and UL coverage, leading to the unchanged optimal charging stage ratio when maximizing spatial throughput.

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