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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Radiowave Propagation Analysis With a Bidirectional 3-D Vector Parabolic Equation Method
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Radiowave Propagation Analysis With a Bidirectional 3-D Vector Parabolic Equation Method

机译:双向3-D矢量抛物线方程法的无线电波传播分析

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摘要

A 3-D bidirectional solution to the parabolic approximation of the wave equation is investigated by using a vector field representation. The backward propagating wave is integrated to the classical parabolic equation approach, which represents the forward propagating wave. Propagation over flat terrain in the presence of knife-edges is considered as well as over irregular terrain consisting of hills modeled by the succession of knife-edges. At each knife-edge, appropriate boundary conditions are enforced, and the wave is partly reflected in the backward direction. The wave is marched in both directions by using the split-step algorithm. Different tests are conducted in order to analyze and validate the results obtained by the proposed algorithm. Comparisons with results from both, 2-D parabolic equation-based algorithm, and 3-D finite-difference time domain-based algorithm, are presented in this paper.
机译:通过使用矢量场表示,研究了波动方程的抛物线近似的3-D双向解。后向传播波被集成到经典的抛物线方程方法中,代表了前向传播波。在存在刀刃的平坦地形上以及在由连续的刀刃建模的丘陵组成的不规则地形上的传播均被考虑。在每个刀口处,都将施加适当的边界条件,并且该波将部分向后反射。通过使用分步算法,波在两个方向上均行进。为了分析和验证所提出算法获得的结果,进行了不同的测试。本文介绍了与基于2-D抛物线方程的算法和基于3-D时域有限差分算法的结果的比较。

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