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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >A fast shadowing test algorithm in physical optics based on spherical partition of target
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A fast shadowing test algorithm in physical optics based on spherical partition of target

机译:基于目标球面分区的物理光学系统快速遮蔽试验算法

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摘要

Facets shadowing test is time-consuming and inefficient in calculation of radar cross section utilizing physical optics (PO). A novel method is proposed in this paper by covering the target by overlapped spheres which divide the facets to several consistent groups. In order to ensure that every facet is included by at least one sphere, the adjacent spheres must have a common area and some facets may be included by more than one sphere. Spheres' shadowing tests are conducted before the facets' tests. If one sphere does not shadow the facet under testing, then the facet cannot be shadowed by any facet within the sphere. Otherwise, every facet within the sphere should be judged whether to shadow the facet. Numerical simulation is conducted to validate the efficiency and accuracy of the algorithm. The spheres' size on performance of the algorithm is also discussed in this paper and an optional choice of the parameter is achieved resulting 89% time saving. (C) 2017 Elsevier GmbH. All rights reserved.
机译:平面遮蔽试验是利用物理光学(PO)计算雷达横截面的耗时且效率低下。本文提出了一种新方法,通过将靶通过重叠的球体覆盖靶来提出,该球体将刻面分为几个一致的基团。为了确保至少一个球体包括每个方面,相邻的球体必须具有公共区域,并且一些面部可以包括多于一个球体。球体的阴影测试是在刻面的测试之前进行的。如果一个球体在测试下没有阴影方面,那么小方块不能被球体内的任何方面遮蔽。否则,球体内的每个方面都应判断是否遮挡方框。进行数值模拟以验证算法的效率和准确性。在本文中还讨论了对算法性能的球体的大小,并且可以实现参数的可选选择,从而导致89%的节省时间。 (c)2017年Elsevier GmbH。版权所有。

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