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Study of PO analytic methods for serrated CATR quiet zone simulation

机译:锯齿状CATR安静区仿真的PO分析方法研究

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A detailed study of several analytic methods for the simulation of a compact antenna test range (CATR) quiet zone field is presented. The focus of the present paper is to develop a fast simulation model suited for an optimization process of the CATR geometry in order to minimize the desired quiet zone parameters, such as amplitude taper and ripple, phase variation and crosspolar level, for a wide range of frequencies. The algorithms introduced are based on Physical Optics (PO) that provides accurate results at high frequencies, when the reflector size is very large in wavelengths. Unlike conventional PO algorithms, where the surface current integration is performed with a finite integral, here the problem is addressed by modeling the reflector surface as a set of equivalent radiating planar triangles. Comparisons between the developed method and the direct integration approach are given to justify the computational savings. A Fast Physical Optics algorithm is implemented for evaluating the quiet zone field to further reduce computational times.
机译:提出了对仿真仿真仿真的若干分析方法(CATR)静音区领域的详细研究。本文的焦点是开发一个适用于CATR几何优化过程的快速仿真模型,以最小化所需的安静区域参数,例如幅度锥度和纹波,相变和交叉极限,用于广泛频率。引入的算法基于物理光学(PO),其在波长的反射器尺寸非常大时提供高频的准确结果。与传统的PO算法不同,其中通过有限积分执行表面电流积分,这里通过将反射器表面作为一组等效辐射平面三角形来建立问题来解决问题。发达的方法与直接集成方法之间的比较是为了证明计算储蓄。实现快速物理光学算法用于评估安静区域字段以进一步减少计算时间。

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