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Optimum Design of Traveling-Wave SIW Slot Array Antennas

机译:行波SIW缝隙阵列天线的优化设计

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摘要

This paper presents an optimum design method based on the Method of Least Squares (MLS) for the traveling-wave substrate integrated waveguide (SIW) slot array antenna. Elliot's design formulas for dielectric filled waveguide including external and internal mutual coupling are used for the design by means of the equivalent waveguide. In order to achieve an efficient antenna, design formulas are extended to nonuniformly spaced slots. An error function consisting of four terms is formulated and then minimized with respect to the design parameters namely lengths, offsets, spacings and excitations of slots using combination of genetic algorithm and conjugate gradient method (GA-CG). A linear slot array at $X$ -band is designed, simulated and fabricated for verification. Results of the proposed method, simulation software and measurement are in good agreement.
机译:本文提出了一种基于最小二乘法(MLS)的行波基片集成波导(SIW)缝隙阵列天线的优化设计方法。通过等效波导将Elliot的包含内部和内部相互耦合的介质填充波导的设计公式用于设计。为了获得有效的天线,将设计公式扩展到不均匀间隔的缝隙。制定了由四个项组成的误差函数,然后使用遗传算法和共轭梯度法(GA-CG)相结合,将设计参数(即长度,偏移,间距和缝隙的激励)最小化。设计,模拟和制造了位于 $ X $ 带的线性槽阵列,以进行验证。所提方法,仿真软件与测量结果吻合良好。

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