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3D Dual-Polarized Frequency Selective Rasorber Using Magnetic Material and Meander-Line

机译:3D双偏振频率选择性Rasober使用磁性材料和曲折线

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A 3D dual-polarized frequency selective rasorber (FSR) using magnetic material and meander-line is presented in this paper, which consist of the absorption and transmission channels. The wide absorption band is produced by the absorption channel consisting of the short-ended parallel-plate waveguide (PPW) loading the magnetic material and the meander-line, while the transmission band is produced by the open-ended lossless PPWs. The magnetic material is lossless in the transmission band resulting in the low-loss in transmission window, therefore the incoming EM waves cannot be absorbed by the absorption channel. An absorption band from 5.02 GHz to 9.60 GHz and a transmission band from 13.6 GHz to 16.4 GHz are obtained in the FSR presented, with the fractional bandwidth of 62.65% and 18.67% respectively. The thickness is 0.18λa at 5.02 GHz. The experimental results shows that the presented FSR exhibits the advantages of dual-polarization and wide absorption. And no lumped components required reduced the fabrication cost greatly.
机译:本文提出了一种使用磁性材料和曲折线的3D双极化频率选择性Rasober(FSR),其包括吸收和传输通道。宽吸收带由由加载磁性材料和曲折线的短端平行板波导(PPW)组成的吸收通道产生,而传输带由开放式无损PPW产生。磁性材料在透射频带中无损导致透射窗口中的低损耗,因此进入的EM波不能被吸收通道吸收。在呈现的FSR中获得5.02GHz至9.60 GHz的吸收带和13.6 GHz至16.4 GHz的传输频段,分别分别为62.65%和18.67%。厚度为0.18λ a 在5.02 GHz。实验结果表明,所呈现的FSR表现出双极化和宽吸收的优点。并且没有绝大的部件需要大大降低制造成本。

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