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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Directional Spreads of Dense Multipath Components in Indoor Environments: Experimental Validation of a Ray-Tracing Approach
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Directional Spreads of Dense Multipath Components in Indoor Environments: Experimental Validation of a Ray-Tracing Approach

机译:室内环境中密集多径分量的定向传播:射线追踪方法的实验验证

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摘要

This paper investigates the prediction capabilities of a Ray-Tracing tool with advanced features, i.e., diffuse scattering and penetration, in terms of the angular spreads and spectra of the directional propagation channel. In particular, it highlights the angular behavior of dense multipaths, which may represent a non-negligible part of the received power, by comparing Ray-Tracing simulations with experimental data (office and laboratory environments). Results show that a Ray-Tracing approach including diffuse scattering is able to reproduce the dense multipath angular spreads, with errors around 4 to 20 degrees, and that scattering from ceiling is significant to predict the elevation spread. The assumption that diffuse scattering is clustered and strongly related to the most significant specular components is also successfully validated.
机译:本文针对定向传播通道的角展度和频谱,研究了具有高级功能(即漫散射和穿透)的Ray-Tracing工具的预测能力。特别是,它通过比较Ray-Tracing模拟与实验数据(办公室和实验室环境),突出显示了密集多径的角行为,这可能表示接收功率的不可忽略的一部分。结果表明,包括散射在内的射线追踪方法能够再现密集的多径角展度,误差在4至20度左右,并且从天花板散射对于预测高程展度非常重要。漫散射被聚类并且与最重要的镜面反射分量强烈相关的假设也得到了成功验证。

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