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Continuous Beam Steering Through Broadside Using Asymmetrically Modulated Goubau Line Leaky-Wave Antennas

机译:使用不对称调制的Goubau线泄漏波天线通过宽边连续波束控制

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摘要

Goubau line is a single-conductor transmission line, featuring easy integration and low-loss transmission properties. Here, we propose a periodic leaky-wave antenna (LWA) based on planar Goubau transmission line on a thin dielectric substrate. The leaky-wave radiations are generated by introducing periodic modulations along the Goubau line. In this way, the surface wave, which is slow-wave mode supported by the Goubau line, achieves an additional momentum and hence enters the fast-wave region for radiations. By employing the periodic modulations, the proposed Goubau line LWAs are able to continuously steer the main beam from backward to forward within the operational frequency range. However, the LWAs usually suffer from a low radiation efficiency at the broadside direction. To overcome this drawback, we explore both transversally and longitudinally asymmetrical modulations to the Goubau line. Theoretical analysis, numerical simulations and experimental results are given in comparison with the symmetrical LWAs. It is demonstrated that the asymmetrical modulations significantly improve the radiation efficiency of LWAs at the broadside. Furthermore, the measurement results agree well with the numerical ones, which experimentally validates the proposed LWA structures. These novel Goubau line LWAs, experimentally demonstrated and validated at microwave frequencies, show also great potential for millimeter-wave and terahertz systems.
机译:古堡线是单导体传输线,具有易于集成和低损耗的传输特性。在这里,我们提出了一种在薄介电基片上基于平面Goubau传输线的周期性漏波天线(LWA)。漏波辐射是通过沿Goubau线引入周期性调制而产生的。以这种方式,由Goubau线支持的慢波模式的表面波获得了额外的动量,因此进入了辐射的快波区域。通过采用周期性调制,提出的Goubau线LWA能够在工作频率范围内连续地将主光束从后向转向。然而,LWA通常在宽边方向上具有较低的辐射效率。为克服此缺点,我们探索了对Goubau线的横向和纵向非对称调制。与对称的LWA相比,给出了理论分析,数值模拟和实验结果。事实证明,非对称调制可显着提高宽边LWA的辐射效率。此外,测量结果与数值结果非常吻合,这在实验上验证了所提出的LWA结构。这些新颖的Goubau线LWA在微波频率上进行了实验验证和验证,对于毫米波和太赫兹系统也显示出巨大的潜力。

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