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Highly Polarized, Directive Radiation From a Fabry-Pérot Cavity Leaky-Wave Antenna Based on a Metal Strip Grating

机译:基于金属带状光栅的法布里-珀罗腔空腔漏波天线的高偏振定向辐射

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A metal strip grating (MSG) above a ground plane is studied as a Fabry-Pérot-cavity antenna excited by a horizontal electric dipole through a rigorous moment-method approach. Azimuthally omnidirectional radiation is shown to be produced, in the form of very directive pencil beams pointing at broadside or of conical scanned beams, with excellent polarization purity. An approximate homogenized model of the antenna based on a transverse-equivalent-network representation shows that the particular temporally and spatially dispersive equivalent susceptance of the MSG accounts for the observed peculiar radiation properties. Furthermore, it shows that the wavenumbers of the modes supported by the structure are independent of their direction of propagation, thus providing an explanation of the above-mentioned properties in terms of cylindrical leaky waves propagating omnidirectionally along the structure. We also show that this antenna, despite its high directivity, essentially has the same polarization properties of a dipole in free space.
机译:研究了地平面上方的金属带状光栅(MSG)作为法布里-珀罗腔型天线,通过严格的矩量法将其由水平电偶极子激发。可以显示出定向全向辐射,其指向性很强的笔形光束指向宽边,或者呈锥形扫描束,具有极好的偏振纯度。基于横向等效网络表示法的天线近似均质模型显示,MSG在时间和空间上的特定弥散等效磁化率反映了所观察到的特殊辐射特性。此外,它表明,结构所支持的模的波数与它们的传播方向无关,因此就沿结构全向传播的圆柱形泄漏波提供了上述特性的解释。我们还表明,尽管该天线具有较高的方向性,但它在自由空间中的极化特性基本上与偶极子相同。

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