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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A three-dimensional parabolic equation applied to VHF/UHFpropagation over irregular terrain
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A three-dimensional parabolic equation applied to VHF/UHFpropagation over irregular terrain

机译:三维抛物线方程应用于不规则地形上的VHF / UHF传播

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摘要

The two-dimensional (2-D) parabolic equation (PE) is widely used for making radiowave propagation predictions in the troposphere. The effects of transverse terrain gradients, propagation around the sides of obstacles, and scattering from large obstacles to the side of the great circle path are not modeled, leading to prediction errors in many situations. In this paper, these errors are addressed by extending the 2-D PE to three dimensions. This changes the matrix form of the PE making it difficult to solve. A novel iterative solver technique, which is highly efficient and guaranteed to converge, is presented. In order to confine the domain of computation, a three-dimensional (3-D) rectangular box is placed around the region of interest. A new second-order nonreflecting boundary condition is imposed on the surface of this box and its angular validity is established. The boundary condition is shown to keep unwanted fictitious reflections to an acceptable level in the domain of interest. The terrain boundary conditions for this 3-D PE method are developed and an original technique for incorporating them into the matrix form of the iterative solver is described. This is done using the concept of virtual field points below the ground. The prediction accuracy of the 3-D PE in comparison to the 2-D PE is tested both against indoor scaled frequency measurements and very high frequency (VHF) field trials
机译:二维(2-D)抛物线方程(PE)被广泛用于对流层中的无线电波传播预测。横向建模坡度,障碍物周围的传播以及从大型障碍物到大圆路径的侧面的散射的影响未建模,因此在许多情况下会导致预测误差。在本文中,通过将二维PE扩展到三个维度来解决这些错误。这改变了PE的矩阵形式,使其难以解决。提出了一种新颖的迭代求解器技术,该技术高效且可保证收敛。为了限制计算范围,将三维(3-D)矩形框放置在感兴趣的区域周围。在此盒子的表面上强加了新的二阶非反射边界条件,并确定了其角度有效性。边界条件显示出可以将不想要的虚拟反射保持在目标域中的可接受水平。开发了这种3-D PE方法的地形边界条件,并描述了将其合并到迭代求解器矩阵形式中的原始技术。这是使用地下虚拟场点的概念完成的。与室内二维频率测量和甚高频(VHF)现场试验相比,测试了3-D PE与2-D PE相比的预测精度

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