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通过结合相位校正和基于全息的泄漏实现的基片集成波导H面喇叭天线中的导波操纵

Guided-wave manipulation in SIW H-plane horn antenna by combining phase correction and holographic-based leakage.

作者信息

Araghi Ali, Khalily Mohsen, Yurduseven Okan, Xiao Pei, Tafazolli Rahim

机构信息

Home of 5G & 6G Innovation Centres, Institute for Communication Systems (ICS), University of Surrey, Guildford, GU2 7XH, UK.

School of Electronics, Electrical Engineering and Computer Science, Centre for Wireless Innovation, Queen's University Belfast, Belfast, BT3 9DT, UK.

出版信息

Sci Rep. 2022 Jul 4;12(1):11234. doi: 10.1038/s41598-022-15123-8.

Abstract

A hybrid technique is proposed to manipulate the field distribution in a substrate integrated waveguide (SIW) H-plane horn to enhance its radiation characteristics. The technique comprises two cascaded steps to govern the guided waves in the structure. The first step is to correct the phase of fields and form a quasi-uniform distribution in the flare section so that the gain increases and side-lobe-level (SLL) decreases. This is obtained by loading the structure with a novel modulated metal-via lens. Field expansion on the radiating aperture of the SIW H-plane horn generates backward surface waves on both broad walls which increases the backlobe. In the second step, these backward surface waves are recycled and directed forward with the aid of holography theory. This is achieved by adding a couple of dielectric slabs with holographic-based patterns of metallic strips on both broad walls. With this step, the backlobe is reduced and the endfire gain is further increased. Using the proposed technique, the structure is designed and fabricated to operate at [Formula: see text] GHz which simultaneously improves the measured values of gain to 11.65 dBi, H-plane SLL to [Formula: see text] dB, and front-to-back ratio to 17.02 dB.

摘要

提出了一种混合技术来操纵基片集成波导(SIW)H面喇叭中的场分布,以增强其辐射特性。该技术包括两个级联步骤来控制结构中的导波。第一步是校正场的相位,并在喇叭口段形成准均匀分布,从而使增益增加且旁瓣电平(SLL)降低。这是通过在结构中加载一种新型调制金属通孔透镜来实现的。SIW H面喇叭辐射孔径上的场扩展会在两个宽壁上产生反向表面波,这会增加后瓣。在第二步中,借助全息理论将这些反向表面波回收并向前引导。这是通过在两个宽壁上添加一对带有基于全息图案的金属条的介质板来实现的。通过这一步骤,后瓣减小,端射增益进一步增加。使用所提出的技术,设计并制造了该结构,使其在[公式:见原文]GHz频率下工作,同时将增益的测量值提高到11.65 dBi,H面SLL提高到[公式:见原文]dB,前后比提高到17.02 dB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/92de/9253047/d900375b9596/41598_2022_15123_Fig1_HTML.jpg

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