School of Electronics Engineering, Kyungpook National University, 80 Daehak-ro, Buk-gu, Daegu 41566, Korea.
Sensors (Basel). 2018 Sep 13;18(9):3079. doi: 10.3390/s18093079.
A design method of large-sized square-loop and circular-loop frequency selective surface (FSS) filters for protection of mm-wave imagining receivers is presented. Due to fine cell structure requirements, the performance of the FSS structures at mm-wave frequencies can be significantly affected by fabrication tolerances, especially involved with large-size panel fabrication. Through a comprehensive parametric variation study on the performance of square-loop and circular-loop FSS structures, it is found that the circular-loop FSS structure performs much less sensitively to the fabrication tolerances, thereby producing better and consistent performances with given design values. As a design example, square-loop and circular-loop notch filters resonating at 105 GHz were designed and the performances were evaluated with multiple prototypes. The resonant frequencies of the implemented circular-loop FSS filters deviated by only about 0.5 GHz from the accurate designed value, which can be easily adjusted in the design process. The implemented square-loop and circular loop FSS filters provided low-loss in the pass-band and high rejection of 23 dB at the resonant frequency with good oblique angle performance.
提出了一种用于保护毫米波成像接收机的大型方环和圆环形频率选择表面(FSS)滤波器的设计方法。由于细网格结构的要求,FSS 结构在毫米波频率下的性能会受到制造公差的显著影响,尤其是在涉及到大尺寸面板制造时。通过对方环和圆环形 FSS 结构性能的全面参数变化研究,发现圆环形 FSS 结构对制造公差的敏感性要小得多,从而在给定的设计值下产生更好和更一致的性能。作为一个设计示例,设计了在 105GHz 处谐振的方环和圆环形陷波滤波器,并通过多个原型对其性能进行了评估。所实现的圆环形 FSS 滤波器的谐振频率仅偏离精确设计值约 0.5GHz,在设计过程中可以轻松进行调整。所实现的方环和圆环形 FSS 滤波器在通带内具有低损耗,在谐振频率处具有 23dB 的高抑制,并且具有良好的斜角性能。