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Leaky wave antennas based on spoof SPP along metallic wire with gradient radial grooves

机译:基于欺骗性SPP的漏电天线,沿着带有倾斜径向凹槽的金属线

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In this paper, we propose a kind of leaky-wave antenna based on spoof surface plasmon polaritons (SPP) along the metallic wire with gradient radial grooves. Coaxial wire, supporting traditional guided waves, is used to feed the proposed structure. The conversion between coaxial wire and SPP waveguide is achieved by the flaring outer conductor of the coaxial wire and gradient radially corrugated inner conductor, which can match the momentum and impedance of the two kinds of transmission lines. The fact that any surface wave can be converted to a leaky wave if a periodic perturbation is introduced along the guiding structure is the foothold of this particular design. Thus the periodic gradient radial grooves are introduced to bring periodic perturbation to the propagation of the surface wave. Then the surface wave can be converted to radiating modes, resulting in the leakage of the energy during transmission. The simulated results show that the proposed structure can support leaky-wave modes in a wide frequency band of 3-7 GHz. The total scanning angle can reach 118.3° from backward to forward directions with an average gain of 9.29 dBi. Both endfire and broadside directions of the proposed leaky-wave antenna can be reached by the scanning beam during the operating band. To the best knowledge of the authors, this is the first time to realize such a wide scanning angle by the leaky-wave antenna based on spoof SPP. The wide operation band, wide scanning angle, and simple structure make the proposed antenna promising in the future wireless and satellite communication systems. This work fulfills one of the applications of SPP waveguides.
机译:在本文中,我们提出了一种基于欺骗性表面等离子体激元极化子(SPP)的带有沿径向径向凹槽的金属线的泄漏波天线。支持传统导波的同轴线用于馈送所建议的结构。同轴线和SPP波导之间的转换是通过同轴线的向外张开的导体和倾斜的径向波纹状内导体实现的,它们可以匹配两种传输线的动量和阻抗。如果沿引导结构引入周期性扰动,则任何表面波都可以转换为泄漏波,这一事实是该特定设计的立足点。因此,引入了周期性梯度径向凹槽,以对表面波的传播带来周期性的扰动。然后,表面波可以转换为辐射模式,从而导致传输过程中的能量泄漏。仿真结果表明,所提出的结构可以支持3-7 GHz宽频带的漏波模式。总扫描角度可以从后向前达到118.3°,平均增益为9.29 dBi。所提出的漏波天线的端射方向和宽边方向都可以在工作频带内通过扫描束到达。据作者所知,这是第一次通过基于欺骗性SPP的漏波天线实现如此宽的扫描角度。宽的工作频带,宽的扫描角度和简单的结构使所提出的天线在未来的无线和卫星通信系统中很有前途。这项工作实现了SPP波导的应用之一。

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