Multi-Elliptical Geometry of Scatterers in Modeling Propagation Effect at Receiver

J. Kelner, C. Ziółkowski
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引用次数: 10

Abstract

In the proposed chapter, the authors present a geometric-statistical propagation model that defines three groups of received signal components, i.e., direct path, delayed scattering, and local scattering components. The multi-elliptical propagation model, which rep- resents the geometry of scatterer locations, is the basis for determining the delayed components. For the generation of the local components, a statistical distribution is used. The basis for this model is a power angular spectrum (PAS) of the received signal, which is closely related to a type of propagation environment and transmitter-receiver spatial positions. Therefore, we have an opportunity to evaluate the influence of the environment type and an object motion direction on the basic characteristics such as envelope distribu- tion, PAS, autocorrelation function, and spectral power density. The multi-elliptical model considers the propagation phenomena occurring in the azimuth plane. In the chapter, we will also show the 3D extension of modeling effects of propagation phenomena.
接收机传播效应建模中散射体的多椭圆几何
在本章中,作者提出了一个几何统计传播模型,该模型定义了三组接收信号分量,即直接路径、延迟散射和局部散射分量。多椭圆传播模型代表了散射体位置的几何形状,是确定延迟分量的基础。对于局部分量的生成,使用统计分布。该模型的基础是接收信号的功率角谱(PAS),它与一种传播环境和收发空间位置密切相关。因此,我们有机会评估环境类型和物体运动方向对包络分布、PAS、自相关函数和谱功率密度等基本特征的影响。多椭圆模型考虑了发生在方位面上的传播现象。在本章中,我们还将展示传播现象建模效果的3D扩展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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