A Quasi-Uniform Transversely Slotted SIW Leaky-Wave Structure with Enhanced Beam-Scanning Rate for Millimeter-Wave Applications

Dongze Zheng, Yue-Long Lyu, K. Wu
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引用次数: 8

Abstract

A quasi-uniform transversely slotted substrate integrated waveguide (SIW) leaky-wave structure with enhanced beam-scanning rate has been proposed and studied in this paper for millimeter-wave applications. By adopting a long inductive transverse slot in each unit cell while keeping a small period length, the sensitivity of effective phase constant (i.e. the slope of effective phase constant versus frequency) of the unit cell can be increased significantly, thereby resulting in a quasi-uniform leaky-wave antenna with a fast beam-scanning property. The working principle is elaborated with an equivalent circuit model of the unit cell, and both of circuit-based and full-wave simulations are conducted to verify the design concept. To do the demonstration, a limited frequency band from 34 to 36 GHz (5.7%) has been designated specifically to implement the proposed leaky-wave antenna. Furthermore, a taper design with -25 dB Taylor distribution is carried out for the antenna to achieve a low sidelobe radiation. A prototype is then fabricated and tested. Experimental results show that the beam can be scanned from 17o to 58o with low sidelobe levels over such a narrow bandwidth. The simulated and measured results are in a good agreement.
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一种准均匀横缝SIW漏波结构与增强毫米波波束扫描速率
本文提出并研究了一种具有增强波束扫描速率的准均匀横缝基板集成波导漏波结构。通过在每个单元格中采用较长的感应横向缝隙,同时保持较小的周期长度,可以显著提高单元格的有效相位常数(即有效相位常数对频率的斜率)的灵敏度,从而得到具有快速波束扫描特性的准均匀漏波天线。利用单元胞等效电路模型阐述了其工作原理,并进行了基于电路的仿真和全波仿真来验证设计理念。为了进行演示,已经专门指定了34至36 GHz(5.7%)的有限频段来实现所提出的漏波天线。此外,天线采用-25 dB泰勒分布的锥形设计,以实现低旁瓣辐射。然后制作一个原型并进行测试。实验结果表明,在如此窄的带宽范围内,波束可以以较低的副瓣电平扫描到17o ~ 58o。仿真结果与实测结果吻合较好。
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