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Shaped Beam Synthesis of Real Antenna Arrays via Finite-Element Method, Floquet Modal Analysis, and Convex Programming

机译:有限元法,Floquet模态分析和凸规划法合成真实天线阵列的成形波束

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摘要

A shaped beam synthesis methodology for planar arrays with control of the ripple amplitude in the shaped region, and constraints on the sidelobe and cross-polar levels, is proposed in this paper. A previously developed synthesis formulation for designing finite impulse response (FIR) filters by transforming a nonconvex synthesis problem to a convex optimization scheme enforcing conjugate symmetric excitation weights, is extended to real and coupled radiating elements of complex geometry, taking into account mutual coupling effects. The optimization procedure is integrated with a finite array approach simulating different array environments. This approach is based on the infinite array model through a Floquet modal- and general scattering matrix (GSM)-based analysis, where the periodic radiating element is characterized from a hybrid and full-wave analysis procedure combining the FEM, modal analysis, and domain decomposition technique. Numerical results of different synthesized beam patterns are presented for arrays of open-ended apertures and microstrip antennas.
机译:本文提出了一种用于平面阵列的成形波束合成方法,该方法可以控制成形区域中的纹波幅度,并限制旁瓣和交叉极化电平。以前开发的用于通过将非凸合成问题转换为执行共轭对称激励权重的凸优化方案来设计有限冲激响应(FIR)滤波器的合成公式,并考虑到了相互耦合的影响,将其扩展到复杂几何形状的真实和耦合辐射元素。该优化过程与模拟不同阵列环境的有限阵列方法集成在一起。此方法基于通过基于Floquet模态和通用散射矩阵(GSM)的分析的无限阵列模型,其中,通过结合FEM,模态分析和域的混合和全波分析过程来表征周期性辐射元素分解技术。提出了针对开放式孔径和微带天线阵列的不同合成波束方向图的数值结果。

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