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A Planar Leaky-Wave Antenna Offering Well Designed Leakage on the 2D Aperture Using Printed Width Modulated Microstrip Lines

机译:使用印刷宽度调制微带线,在2D孔径上提供精良设计泄漏的平面泄漏波天线

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摘要

A novel planar leaky-wave antenna (LWA) based on quasi-periodic width-modulated printed strips is investigated. Each single strip is obtained by a repetition of several unit cells with different lengths and modulations in order to keep the desired value of the phase constant when changing the attenuation along the line. The overall antenna surface consists of an arrangement of 9 such transversely periodic printed strips. Therefore, the radiated field can be fully controlled geometrically. This results in backward radiation by the n = - 1 spatial harmonic; i.e., the pointing angle θ_p = - 19° in the E_θ(Φ = 0°) plane is realized by a proper design of the periodic sequence of the proposed array of unit cells enabling aperture control. A numerical example with an incident surface-wave excitation demonstrates the validity of the method.
机译:研究了基于准周期性宽度调制的印刷条的新颖的平面漏光天线(LWA)。通过重复具有不同长度和调制的几个单元电池来获得每个条带,以便在改变线路时保持相位常数的所需值。整体天线表面包括9个这样的横向周期性印刷条的布置。因此,可以在几何上完全控制辐射的场。这导致n = - 1空间谐波的后向辐射;即,通过能够实现孔径控制的所提出的单元电池阵列的周期性序列,实现了E_θ(φ= 0°)平面中的指向角θ_p= -19°。具有入射面波激励的数值示例演示了该方法的有效性。

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