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Efficient ray-tracing acceleration techniques for radio propagation modeling

机译:用于无线电传播建模的有效射线追踪加速技术

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摘要

Ray-tracing and uniform theory of diffraction techniques are already widely applied to site-specific radio propagation modeling for wireless applications. Software tools using such techniques may take considerable computation time in the analysis of the propagation conditions in a given environment even for a short mobile terminal route. Efficient acceleration techniques are required to make such analysis tools practical for the design of modern radio systems. To reduce computation time, ray-tracing routines must be applied only to those areas where rays are likely to exist. This is achieved by using ray-path search algorithms prior to performing any actual ray tracing. An efficient ray-path search algorithm is presented. First, a two-dimensional version is described, which is valid for indoor and microcell studies. Then, an extension to the three-dimensional case is explained in detail. Finally, the software tool Radio Tracer using such techniques is briefly described, and some comparisons between experimental results and computed predictions for indoor and outdoor scenarios are shown.
机译:射线追踪和衍射技术的统一理论已经广泛应用于无线应用的特定于站点的无线电传播建模。即使对于短的移动终端路线,使用这种技术的软件工具在给定环境中的传播条件的分析中也可能花费大量的计算时间。需要有效的加速技术来使此类分析工具适用于现代无线电系统的设计。为了减少计算时间,必须将射线跟踪例程仅应用于可能存在射线的区域。这是通过在执行任何实际光线跟踪之前使用光线路径搜索算法来实现的。提出了一种有效的射线路径搜索算法。首先,描述了二维版本,该版本对室内和微蜂窝研究有效。然后,详细说明对三维情况的扩展。最后,简要介绍了使用这种技术的软件工具Radio Tracer,并显示了室内和室外场景的实验结果与计算的预测之间的一些比较。

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