Reduced complexity analysis of microstrip patch arrays, conformally mounted to a cylindrical conducting surface

H. Anastassiu, A. Kostaridis, C. Biniaris, D. Kaklamani
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引用次数: 3

Abstract

Standard integral equation techniques, such as the moment method (MoM) face difficulties for very large antenna sizes, since the memory and CPU time they require may increase beyond computational limits. The method of auxiliary sources (MAS) demands substantially lower CPU time than MoM, retaining, nevertheless, the MoM accuracy. Unfortunately, its capabilities are depleted when applied to thin or open structures, due to the mandatory proximity of source and collocation points occurring in such geometries. The modified method of auxiliary sources (MMAS) has been developed to circumvent this difficulty, and has been successfully applied to the analysis of microstrip patch antennas, even when the dielectric substrate is thin enough to render conventional MAS inapplicable. In this paper, the MMAS is applied to the analysis of microstrip patch arrays, conformal to cylindrical surfaces, a model that simulates a communication antenna mounted to an aircraft fuselage. Several unpublished features of MMAS are discussed, whereas extensive, recently produced numerical results are presented and compared to reference solutions, validating the reliability and versatility of the method.
降低复杂性分析微带贴片阵列,共形安装在圆柱形导电表面
标准的积分方程技术,如矩量法(MoM)在非常大的天线尺寸下面临困难,因为它们所需的内存和CPU时间可能会超出计算极限。辅助源(MAS)方法所需的CPU时间比MoM方法少得多,但保留了MoM的精度。不幸的是,当应用于薄结构或开放结构时,由于此类几何形状中源和搭配点的强制性接近,其功能就会耗尽。改进的辅助源方法(MMAS)已被开发以克服这一困难,并已成功地应用于微带贴片天线的分析,即使当介电衬底足够薄,使传统的MAS不适用。本文将MMAS应用于微带贴片阵列的分析,该贴片阵列与圆柱表面共形,是一个模拟安装在飞机机身上的通信天线模型。讨论了MMAS的几个未发表的特征,同时提出了广泛的,最近产生的数值结果,并与参考解决方案进行了比较,验证了该方法的可靠性和通用性。
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