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Theoretical and Experimental Comparison Results of Dual-Channel 3D Quasi-Optical Network System between Frequency Selective Surface and Wire Grid Polarizer

机译:频率选择表面与线栅偏振器之间双通道3D准光学网络系统的理论和实验比较结果

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A dual-channel 3D quasi-optical network (QON) system is analyzed and compared by theoretical and experimental results. It is divided into dual-channel signals by frequency selective surface (FSS) or wire grid polarizer (WGP) for transmitting the 324 GHz signal on the top layer while diverting the 183 GHz signal to the bottom layer. The system structure based on the beam radius is traced by the complex beam parameter and system transfer matrix for deciding the positions of cascade mirrors. The design principles and test results of FSS with perforated hexagonal array and WGP printed on the dielectric substrate are discussed together. In order to evaluate channel performance, the output planar near-fields of QON system are simulated and tested by the four reflections and three transmission results, respectively, where both scalar and vector conversion efficiencies are used to evaluate the quality of output beams. For the distortion phenomenon and energy loss in planar field, the aperture modes of corrugated horn feeds are analyzed by spherical wave expansion (SWE) to explain the asymmetrical pattern characteristic. The cut section of the far-field pattern is also directly measured in the compact antenna test range (CATR), comparing with the far-field patterns that are indirectly obtained based on the principle of near-to-far-field transformation and ideal aperture field integral of quiet zone (QZ). The differences between the near- and far-field test in QON have been compared, and discussion that the corresponding experimental results verify the WGP has better work performance in the good pattern symmetry, high cross-polarization isolation, low energy loss, and side-lobe level.
机译:通过理论和实验结果对双通道3D准光网络(QON)系统进行了分析和比较。它通过频率选择表面(FSS)或线栅偏振器(WGP)分为双通道信号,用于在顶层传输324 GHz信号,同时将183 GHz信号转移到底层。基于光束半径的系统结构由复光束参数和系统传递矩阵来确定级联反射镜的位置。一起讨论了带孔六边形阵列的FSS的设计原理和测试结果,以及在电介质基板上印刷的WGP。为了评估信道性能,分别通过四个反射和三个传输结果对QON系统的输出平面近场进行了仿真和测试,其中标量和矢量转换效率均用于评估输出光束的质量。针对平面场中的畸变现象和能量损失,通过球面波扩展(SWE)分析了波纹喇叭进料的孔径模式,以解释其不对称图案特征。远场方向图的切割部分也可以在紧凑型天线测试范围(CATR)中直接测量,与基于近远场变换和理想孔径原理间接获得的远场方向图进行比较静区的场积分(QZ)。比较了QON中近场测试与远场测试之间的差异,并讨论了相应的实验结果证明WGP在良好的图案对称性,高交叉极化隔离,低能量损耗和侧面干扰方面具有更好的工作性能。瓣水平。

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