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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Subreflector shaping for antenna distortion compensation: an efficient Fourier-Jacobi expansion with GO/PO analysis
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Subreflector shaping for antenna distortion compensation: an efficient Fourier-Jacobi expansion with GO/PO analysis

机译:用于天线失真补偿的子反射器整形:具有GO / PO分析的高效傅里叶-雅各比扩展

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摘要

Technological demands have brought a renewed interest in the application of large reflector antennas with steadily increasing operating frequencies and antenna dimensions. The high surface accuracy of the main reflector required by these antennas can often not be achieved with available manufacturing technologies. The utilization of a shaped subreflector for main reflector-distortion compensation is considered an effective measure to enhance the overall radiation performance of an antenna system. In the process of evaluating the suitability of the subreflector shaping, however, it is crucial to accurately assess the most suitable subreflector shape within a reasonable amount of computational time. This is especially true for electrically large reflectors, where simple analysis of the radiation characteristics already creates a serious computational burden, moreover, since reflector shaping is a synthesis process that necessitates repeated computation of the radiation characteristics. In this paper, the development of an efficient computational tool for subreflector shaping is presented. The subreflector shaping is performed through a combination of geometrical optics (GO) and physical optics (PO) on the subreflector and the main reflector, respectively. To significantly limit the number of parameters subject to optimization, the subreflector surface is parameterized by the coefficients of a global, orthogonal Fourier-Jacobi set (related to Zernike polynomials), which allows us to accurately represent a surface with only a small number of coefficients. The incorporation of this surface expansion into a GO/PO synthesis technique is detailed, representative results are given for a computationally challenging reflector configuration, and the tolerances for the shaped subreflector surface are studied.
机译:技术要求在稳定增加工作频率和天线尺寸的大型反射器天线的应用中引起了新的兴趣。这些天线所需的主反射器的高表面精度通常无法通过可用的制造技术来实现。将成形的副反射器用于主反射器失真补偿被认为是增强天线系统整体辐射性能的有效措施。但是,在评估子反射器形状的适用性的过程中,至关重要的是在合理的计算时间内准确评估最合适的子反射器形状。此外,对于电大的反射器而言尤其如此,因为对辐射特性的简单分析已经产生了严重的计算负担,因为反射器成形是需要重复计算辐射特性的合成过程。在本文中,提出了一种用于次反射器整形的有效计算工具的开发。通过分别在副反射器和主反射器上组合几何光学(GO)和物理光学(PO)来执行副反射器成形。为了显着限制要优化的参数的数量,子反射器表面由全局正交傅里叶-雅各比集(与Zernike多项式有关)的系数进行参数化,这使我们能够准确地表示仅包含少量系数的表面。详细介绍了将这种表面扩展并入GO / PO合成技术的过程,给出了具有计算挑战性的反射器配置的代表性结果,并研究了成形子反射器表面的公差。

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