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Highly Precise Prediction of 28 GHz Indoor Radio Wave Propagation Characteristics in an Office Environment for Design of 5G Wireless Networks

机译:28 GHz室内无线电波传播特性的高精度预测,用于设计5G无线网络的设计

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The commercial service of fifth generation mobile communication system started in the spring of 2020 in Japan. This paper discusses a highly precise prediction of 28 GHz millimeter wave indoor propagation characteristics in an office environment by using a large-scale electro-magnetic field simulation based on the finite difference time domain technique. The computer simulations are carried out using the high-performance computer system operated in Information Initiative Center, Hokkaido University. They give us a detail of electromagnetic field distributions in an FDTD problem space including targets at once although they require a lot of computer resources and a long running time in general. The paper compares calculated path loss model parameters such as path loss exponents, shadow factors and cross-polarization discriminations in the LOS environment with the measured ones demonstrated by the other research groups to confirm the effectiveness of numerical results and the accurate prediction of path loss model parameters.
机译:第五代移动通信系统的商业服务始于2020年日本的春天。本文通过使用基于有限差分时域技术的大规模电磁场模拟,讨论了办公环境中28GHz毫米波室内传播特性的高精度预测。计算机仿真使用于北海道大学信息倡议中心运营的高性能计算机系统进行。他们在包括目标的FDTD问题空间中给我们一个电磁场分布的细节,尽管它们需要大量的计算机资源和一般运行时间。本文比较了计算出的路径损耗模型参数,例如LOS环境中的路径损耗指数,阴影因子和交叉偏振鉴别,其其他研究组证明了测量组,以确认数值结果的有效性以及路径损耗模型的准确预测参数。

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