首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Incorporation of first-order polarization coupling in UHF propagation over gently undulating terrain using a perfect reflecting surface model
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Incorporation of first-order polarization coupling in UHF propagation over gently undulating terrain using a perfect reflecting surface model

机译:使用完美的反射表面模型将一阶偏振耦合纳入UHF在缓和起伏地形上的传播

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摘要

A magnetic field integral equation method for the solution of propagation problems over large smoothly undulating surfaces is discussed. Unlike conventional methods that assume invariance of surface height transverse to the direction of propagation, we incorporate the effects of moderate transverse gradients along a radial profile. In this formulation, vertical and horizontal polarizations are coupled, and a vector integral equation must be solved along a radial path, in a quasi-three-dimensional approach. This provides a first-order correction modeling the depolarizing effects of transverse gradients. Off radial diffraction and multipath effects are neglected in the scheme. Numerical comparison is made with existing two-dimensional integral equation solutions, the uniform theory of diffraction, and measured data.
机译:讨论了求解大型光滑起伏表面上传播问题的磁场积分方程法。与假定表面高度垂直于传播方向不变的传统方法不同,我们将沿径向轮廓的中等横向梯度的影响纳入其中。在此公式中,垂直极化和水平极化是耦合的,并且必须以准三维方法沿径向路径求解矢量积分方程。这提供了对横向梯度的去极化效应建模的一阶校正。该方案中忽略了非径向衍射和多径效应。使用现有的二维积分方程解,均匀衍射理论和测量数据进行数值比较。

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