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Radiation Properties of a 2-D Periodic Leaky-Wave Antenna

机译:二维周期漏波天线的辐射特性

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A study of the radiation characteristics of a 2-D periodic leaky-wave antenna (LWA) [i.e., one that radiates from higher order space harmonics (Floquet waves) instead of the fundamental one] is presented here for the first time, and an optimization to produce maximum radiation at broadside is discussed. The structure consists of a 2-D periodic arrangement of narrow rectangular patches on a grounded dielectric substrate, excited by a simple source such as a slot in the ground plane. A 2-D periodic LWA can be designed to radiate a narrow pencil beam pattern at broadside by adjusting its geometric parameters. The main beam at broadside is narrower in the E-plane than in the H-plane, and there are also grating lobes introduced due to the periodicity. The structure has been analyzed theoretically using the periodic spectral-domain immittance (periodic SDI) method. The proposed antenna has also been simulated using both FEM and method of moments methods and a fabricated design has been measured. A good correlation is observed between the theoretical, simulated, and measured radiation patterns.
机译:首次对二维周期性漏波天线(LWA)的辐射特性进行了研究[即,它是从高阶空间谐波(Floquet波)而不是基本谐波中辐射出来的]。讨论了在侧面产生最大辐射的优化方法。该结构由在接地的电介质基板上的窄矩形贴片的二维周期性排列组成,并由简单的源(例如接地平面中的缝隙)激发。可以将2-D周期性LWA设计为通过调整其几何参数在宽边辐射窄的铅笔束模式。 E平面中的宽边主光束比H平面中的窄,并且由于周期性,还引入了光栅波瓣。从理论上已经使用周期性光谱域阻抗(周期性SDI)方法对结构进行了分析。还使用有限元法和矩量法对拟议的天线进行了仿真,并测量了预制设计。在理论,模拟和测量辐射图之间观察到良好的相关性。

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