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Model for Ray-Based UTD Simulations of the Human Body Shadowing Effect in 5G Wireless Systems

机译:基于射线的5G无线系统中人体阴影效应的UTD仿真模型

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Shadowing effects caused by the obstructing presence of a human body can result in increased path loss in indoor wireless systems. This paper proposes a simplified model of a human body for use in ray-tracing simulations of indoor wireless communication systems based on the uniform theory of diffraction (UTD). The human body shadowing effect was first investigated using measurements and computer simulations employing the finite-difference time-domain method (FDTD). Based on the results, a human body model was elaborated for use in ray-based Remcom XGtd software. The model was developed for the 3.6 GHz band, which has been allocated for 5G wireless systems in many countries.
机译:由人体的障碍物引起的阴影效应会导致室内无线系统中路径损耗的增加。本文基于统一的衍射理论(UTD),提出了一种用于室内无线通信系统的光线跟踪仿真的简化人体模型。首先使用有限差分时域方法(FDTD)通过测量和计算机模拟研究了人体阴影效应。根据结果​​,精心设计了人体模型,用于基于光线的Remcom XGtd软件。该模型是针对3.6 GHz频段开发的,该频段已在许多国家/地区分配给5G无线系统。

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