Geometry-based modeling of wideband industrial indoor radio propagation channels

Y. Ai, B. O. Hogstad, M. Cheffena, M. Pätzold
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引用次数: 4

Abstract

In this paper, we present a geometrical scattering model for a typical class of industrial indoor environments. The proposed industrial reference model takes into account scattering components arising from metallic structures and the surrounding walls of the investigated environment. Starting from the geometrical scattering model, we derive the analytical expressions of the probability density function (PDF) of the angle of arrival (AoA), PDF of the time of arrival (ToA), and the autocorrelation function (ACF) in the frequency domain. The obtained results reveal a large difference between industrial channels and other home and office environments. The theoretical results of the reference model are validated by simulation results of a channel simulator designed by employing the sum-of-cisoids (SOC) principle. The proposed channel model is useful for the design and performance evaluation of wireless communication systems operating in industrial environments.
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宽带工业室内无线电传播信道的几何建模
本文提出了一类典型工业室内环境的几何散射模型。所提出的工业参考模型考虑了金属结构和所研究环境的周围墙壁产生的散射分量。从几何散射模型出发,导出了到达角(AoA)的概率密度函数(PDF)、到达时间(ToA)的概率密度函数(PDF)和自相关函数(ACF)在频域的解析表达式。所得结果揭示了工业渠道与其他家庭和办公环境之间的巨大差异。采用顺线和原理设计的信道模拟器的仿真结果验证了参考模型的理论结果。该信道模型可用于工业环境下无线通信系统的设计和性能评估。
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