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Semi-Deterministic Radio Channel Modeling Based on Graph Theory and Ray-Tracing

机译:基于图论和射线追踪的半确定性无线电信道建模

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摘要

Graph theory channel modeling is an efficient approach to simulate multipath radio propagation including the reverberation effect of electromagnetic waves. In this contribution, without modifying the modeling framework, we proposed a semi-deterministic channel modeling approach by associating the scatterers with realistic environment objects, and by calculating the coefficients of the propagation paths on the base of a physically sound and proven diffuse scattering theory. The diffuse multipath components are then combined with the specular components (SCs) simulated by ray-tracing (RT) to obtain a complete channel representation. The proposed method is evaluated in two reference scenarios at 3.8 and 60 GHz, respectively, by comparing the simulated channel characteristics with channel measurement data. Results show that the proposed method can accurately predict the channel characteristics in both the delay domain and the angular domain. The proposed approach is appropriate to model multipath propagation in confined indoor or dense-urban environment at millimeter (mm)-wave frequencies and above, where reverberation and rough-surface scattering can be important phenomena.
机译:图论信道建模是一种模拟多径无线电传播(包括电磁波的混响效应)的有效方法。在此贡献中,在不修改建模框架的情况下,我们提出了一种半确定性的通道建模方法,该方法通过将散射体与现实的环境对象相关联,并基于物理上可靠且经过验证的漫散射理论计算传播路径的系数。然后将漫射多径分量与通过光线跟踪(RT)模拟的镜面反射分量(SC)组合在一起,以获得完整的通道表示。通过将仿真的信道特性与信道测量数据进行比较,分别在3.8和60 GHz的两个参考方案中对提出的方法进行了评估。结果表明,该方法可以准确地预测延迟域和角度域的信道特性。所提出的方法适合于在毫米波频率及以上的密闭室内或密集城市环境中对多径传播进行建模,其中混响和粗糙表面散射可能是重要现象。

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