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首页> 外文期刊>IEEE Transactions on Electromagnetic Compatibility >A novel 3-D scattering model of 1.8-GHz radio propagation in microcellular urban environment
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A novel 3-D scattering model of 1.8-GHz radio propagation in microcellular urban environment

机译:在微蜂窝城市环境中1.8 GHz无线电传播的新型3-D散射模型

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摘要

This work presents a novel three-dimensional (3-D) scattering model to predict the path loss of a microcellular radio channel in an urban environment. The analytical scattering model combined with a patched-wall model predicts the median path loss more accurately than the conventional analytical ray-tracing model in the cases studied. Comparing the path loss with the measured one at 1.8 GHz demonstrates the effectiveness of the scattering model. The scattering model includes three major propagation modes: (1) a direct-path wave; (2) a ground-reflected wave; and (3) the scattered field from the walls aligned along a street. The proposed model with a polarization scattering matrix associated with the patched-wall model aptly describes the third mode, which is usually neglected or oversimplified.
机译:这项工作提出了一种新颖的三维(3-D)散射模型,以预测城市环境中微蜂窝无线电信道的路径损耗。在所研究的案例中,与常规的分析射线跟踪模型相比,分析散射模型与修补墙模型相结合可以更准确地预测中值路径损耗。将路径损耗与在1.8 GHz处测得的路径损耗进行比较,证明了散射模型的有效性。散射模型包括三种主要的传播模式:(1)直达波; (2)地面反射波; (3)沿着街道排列的墙壁的散射场。带有极化散射矩阵和修补墙模型的拟议模型恰当地描述了第三种模式,该模式通常被忽略或简化了。

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