用焦点区域射线追踪法评估抛物面反射器天线的焦散度

N. Rahman, M. Islam, N. Misran, Yoshihide Yamada, N. Michishita
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引用次数: 2

摘要

在多波束组合设计马来西亚覆盖轮廓波束时,天线波束方向与馈电位置的关系变得非常重要。这种关系被称为波束偏差系数(BDF)。在此之前,从抛物面反射面天线在垂直于天线轴的平面上的馈电位移的孔径相位分布推导出了BDF的方程。因此,该方程给出了一维进给位移的信息。本文对入射平面波在抛物面反射面天线的焦点区域进行了射线跟踪。最佳进料位置由焦散点表示,焦散点是所有射线的集中点。一组焦散点形成一条线,称为焦散轨迹。基于焦散轨迹,用数值方法确定了二维位移中的最佳进给位置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of caustics for parabolic reflector antennas through focal region ray tracings
In the case of designing Malaysia coverage contour beams by combining multiple beams, the relation between antenna beam direction and feed position becomes very important. This relation is known as the Beam Deviation Factor (BDF). Previously, an equation for the BDF was derived from an aperture phase distribution of a parabolic reflector antenna for feed displacements in the perpendicular plane to the antenna axis. Therefore, the equation gave information for one dimensional feed displacement. In this paper, ray tracings are performed in focal region of a parabolic reflector antenna for incident plane waves. The best feed positions are shown by caustics, which are the concentrated points of all rays. A set of caustic points form a line called locus of caustics. Based on the locus of caustics, the best feed positions are numerically clarified in two dimensional displacements.
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