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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Analysis and Design of Annular Microstrip-Based Planar Periodic Leaky-Wave Antennas
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Analysis and Design of Annular Microstrip-Based Planar Periodic Leaky-Wave Antennas

机译:基于环形微带的平面周期漏波天线的分析与设计

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摘要

A low-cost leaky-wave antenna using cylindrical surface waves propagating on a grounded dielectric slab is proposed. The excited surface waves are then perturbed into a leaky-wave regime, by the addition of annular microstrip-based (“bull-eye”) gratings. Various surface-wave modes may be considered, however, we desire to achieve radiation from the fundamental ${rm TM}_0$ mode due to its zero cutoff frequency and possibility for efficient excitation. A comprehensive design strategy is detailed in the paper. It is based on both an accurate knowledge of the modal spectrum, obtained with the method of moments, and an analysis of the resonant modes supported by the constituent microstrip rings. To further support our methodology, numerical calculations, full-wave simulations, and antenna measurements are reported for the basic structure. Also, additional designs for enhanced gain at broadside, reduced cross-polarization levels, and improved wide-angle frequency beam scanning are presented.
机译:提出了一种低成本的漏电波天线,其使用在接地电介质板上传播的圆柱面波。然后,通过添加基于环形微带的(“牛眼”)光栅,将激发的表面波扰动为泄漏波状态。可以考虑使用各种表面波模式,但是,由于其零截止频率和有效激发的可能性,我们希望从基本$ {rm TM} _0 $模式获得辐射。本文详细介绍了一种全面的设计策略。它基于使用矩量法获得的模态频谱的准确知识,以及对组成微带环所支持的共振模态的分析。为了进一步支持我们的方法,报告了基本结构的数值计算,全波模拟和天线测量。此外,还提出了用于提高宽边增益,降低交叉极化水平以及改善广角频率波束扫描的其他设计。

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