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Built-up terrain wave propagation by Fourier split-step parabolic wave equation-ray optical techniques

机译:傅里叶分步抛物线方程方程-射线光学技术增强地形波的传播

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摘要

Fourier split-step (FSS) solutions of the parabolic wave equation (PWE) represent wave fields in terms of plane wave decompositions. However, those field solutions are usually only valid in the air space above built-up terrain, whereas field predictions for modern wireless systems often require knowledge of the fields on a street level. Since FSS PWE solutions with large step sizes are not applicable for field computations between irregular scattering obstacles such as buildings, this problem is overcome by a two-step approach combining the FSS solution of the PWE with ray optical techniques to compute the fields at ground level in wooded and urbanized areas. To account for the great variety of propagation effects in a statistical sense, direct rays, reflected rays, diffracted rays and attenuated rays at typical receiver locations are included into the considerations. Comparisons to a wide variety of measured data show that this two-step approach produces better results than state of the art semiempirical field prediction techniques.
机译:抛物线波动方程(PWE)的傅里叶分裂步(FSS)解表示平面波分解方面的波场。但是,这些现场解决方案通常仅在堆积地形上方的空域中有效,而现代无线系统的现场预测通常需要了解街道级别的现场。由于具有大步长的FSS PWE解决方案不适用于不规则散射障碍物(例如建筑物)之间的场计算,因此该问题可以通过将PWE的FSS解决方案与射线光学技术相结合的两步方法来解决,以便在地面上计算场在树木繁茂和城市化地区。为了从统计意义上考虑各种各样的传播效果,考虑了典型接收器位置的直射光线,反射光线,衍射光线和衰减光线。与各种测量数据的比较表明,这种两步方法比最新的半经验场预测技术产生更好的结果。

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