Extended NYUSIM-based MmWave Channel Model and Simulator for RIS-Assisted Systems

A. Habib, Israa Khaled, A. Falou, C. Langlais
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引用次数: 1

Abstract

Spectrum scarcity has motivated the exploration of the millimeter-wave (mmWave) band as a key technology to cope with the ever-increasing data traffic. However, in this band, radiofrequency waves are highly susceptible to transmission loss and blockage. Recently, reconfigurable intelligent surfaces (RIS) have been proposed to transform the random nature of the propagation channel into a programmable and controllable radio environment. This innovative technique can improve mmWave coverage. However, most works consider theoretical channel models. In order to fill the gap towards a realistic RIS chan-nel simulator, we extend the 3D statistical channel simulator NYUSIM based on extensive measurements to help model RIS-assisted mm Wave systems. We validate the extended simulator analytically and via simulations. In addition, we study the received power in different configurations. Finally, we highlight the effectiveness of using RIS when the direct link is partially blocked or non-existent.
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基于nyusim的扩展毫米波信道模型和ris辅助系统模拟器
频谱的稀缺促使人们探索毫米波(mmWave)频段作为应对日益增长的数据流量的关键技术。然而,在这一波段,射频波极易受到传输损失和阻塞的影响。近年来,可重构智能表面(RIS)被提出,将传播信道的随机性转化为可编程和可控的无线电环境。这种创新技术可以提高毫米波的覆盖范围。然而,大多数工作考虑理论渠道模型。为了填补现实RIS通道模拟器的空白,我们基于广泛的测量扩展了3D统计通道模拟器NYUSIM,以帮助建模RIS辅助毫米波系统。我们通过分析和仿真验证了扩展的模拟器。此外,我们还研究了不同配置下的接收功率。最后,我们强调了当直接链接部分阻塞或不存在时使用RIS的有效性。
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