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Path loss predictions in the presence of buildings on flat terrain: a 3-D vector parabolic equation approach

机译:在平坦地形上存在建筑物时的路径损耗预测:3-D矢量抛物线方程法

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Starting from a parabolic approximation to the Helmholtz equation, a three-dimensional (3-D) vector parabolic equation technique for calculating path loss in an urban environment is presented. The buildings are assumed to be polygonal in cross section with vertical sides and flat rooftops and the terrain is assumed to be flat. Both buildings and ground are allowed to be lossy and present impedance-type boundary condition to the electromagnetic field. Vector fields are represented in terms of the two components of Hertzian potentials and depolarization of the fields is automatically included in the formulation. A split-step algorithm is presented for marching the aperture fields along the range. Boundary conditions on the building surfaces are treated by using a local Fourier representation of the aperture fields. Several test cases are considered to check the boundary treatment used in the technique as well as to validate the overall approach. Comparison is shown with uniform theory of diffraction (UTD), exact solutions, as well as with measurements.
机译:从抛物线近似到Helmholtz方程,提出了一种用于计算城市环境中路径损耗的三维(3-D)矢量抛物线方程技术。假定建筑物的横截面为多边形,具有垂直侧面和平坦的屋顶,并且假定地形平坦。建筑物和地面都允许有损,并对电磁场呈现阻抗型边界条件。向量场用赫兹电势的两个分量表示,并且场的去极化自动包含在公式中。提出了一种分步算法,用于沿该距离行进孔径场。通过使用孔径场的局部傅立叶表示法来处理建筑表面的边界条件。考虑了几个测试用例,以检查该技术中使用的边界处理以及验证整体方法。通过统一的衍射理论(UTD),精确解以及测量结果进行了比较。

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