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Design and Experimental Verification of Wire Grid Polarizer on Dielectric Substrate for Quasi-optical Network System

机译:准光网络系统电介质基板丝网偏振器的设计与实验验证

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摘要

The quasi-optical network (QON) system generally requires that it has a feature of multi-frequency and multi-polarization for transmitting or receiving more channels in a small space to reduce the satellite load. The wire grid polarizer (WGP) can be mainly used into separating double different signals with horizontal polarization or vertical polarization. Due to its frequency irrelevant attribute, the most obvious advantage of WGP is that has much greater working bandwidth comparing with the frequency selective surface (FSS) during the millimeter wave (MMW) and sub-millimeter wave (sub-MMW) frequency. A novel WGP with a wide working band from 1MHz to 500GHz is presented and meanwhile measured from 75GHz to 325GHz in the BUPT, which is printed on the dielectric substrate. Its design principle and the analysis process of experimental data by the Time Domain Analysis technology are given simultaneously. The multipath and stray transmission components are analyzed and filtered to obtain the polarization isolation during the whole working bandwidth. What's more, the WGP is adopted into a dual-channel 3D quasi-optical network system (QON) to separate 183GHz and 324GHz. The experimental near-field planar results in the output position have also been obtained, which further demonstrates the validity of system design.
机译:准光网络(QON)系统通常要求它具有多频率和多极化的特征,用于在小空间中发送或接收更多信道以减少卫星负载。电线栅极偏振器(WGP)可以主要用于分离具有水平极化或垂直极化的双不同信号。由于其频率不相关的属性,WGP的最明显优点是与毫米波(MMW)和子毫米波(子MMW)频率期间的频率选择表面(FSS)相比具有更大的工作带宽。具有从1MHz至500GHz的宽工作带的新型WGP呈现,同时从BUPT中的75GHz到325GHz测量,该电介质基板印刷。其设计原理和时域分析技术的实验数据分析过程同时给出。分析多径和杂散传输组件并过滤以在整个工作带宽期间获得偏振隔离。更重要的是,WGP被采用到双通道3D准光网络系统(QON)中,以分离183GHz和324GHz。还获得了输出位置的实验近场平面,进一步展示了系统设计的有效性。

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