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Wideband and Wide-Angle FSS Using Loop Slotted Hybrid Quarter-Mode Substrate Integrated Cavity With Two Independently Controllable Poles

机译:宽带和广角FSS使用环路开槽混合四分之一模式基板集成腔,具有两个可独立可控的磁极

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摘要

A wideband and wide-angle frequency selective surface (FSS) is proposed in this communication. The periodic element consists of a quarter-mode substrate integrated waveguide (QMSIW) cavity surrounded by two identical loop slots located on the top and bottom layers of the cavity. Two transmission poles and one transmission zero are caused by the fundamental mode in the QMSIW cavity, the slot mode, and the coupling between them, respectively. By precisely tuning the dual-mode configuration, the proposed FSS shows a wide passband with a good transmission efficiency and a rapid roll-off at the high side of the operation band due to the transmission zero. With the QMSIW-based miniaturized elements, the FSS is also insensitive to a large angle of incidence. Thanks to the novel structure, several higher order modes close to the target band are suppressed, making the parasitic passband far away from both sides of the designed band. To verify the advantages, a prototype operated at 10 GHz is fabricated and tested. The measured results show a wide passband performance with the 1/3 dB relative bandwidths of 34%/49% for normal incidence, which agree well with the simulated results. Besides, the 3 dB bandwidth still remains 23% for the incident angle of 60°.
机译:在该通信中提出了一种宽带和广角频率选择表面(FSS)。周期元件由四分之一模板集成波导(QMSIW)腔组成,其由位于腔的顶部和底层上的两个相同的环形槽包围。两个传输极和一个变速器零是由QMSIW腔,插槽模式和它们之间的耦合的基本模式引起的。通过精确调谐双模配置,所提出的FSS在操作带的高侧处具有良好的传输效率和快速滚动,由于变速器零,在操作带的高侧。利用基于QMSIW的小型化元素,FSS也对大的入射角不敏感。由于新颖的结构,抑制了靠近目标带的几种高阶模式,使得寄生通带远离设计频带的两侧。为了验证优势,在10GHz下运行的原型是制造和测试的。测量结果显示出广泛的通带性能,具有34%/ 49%的1/3 dB相对带宽对于正常入射,这与模拟结果很好。此外,入射角为60°的3 dB带宽仍然保持23%。

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