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首页> 外文期刊>Microwave and optical technology letters >EFFECT OF INTER-ELEMENT SPACINGS VARIATION ON THE PERFORMANCE OF LINEAR GROUNDED FREQUENCY SELECTIVE SURFACE ARRAYS IN W-BAND
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EFFECT OF INTER-ELEMENT SPACINGS VARIATION ON THE PERFORMANCE OF LINEAR GROUNDED FREQUENCY SELECTIVE SURFACE ARRAYS IN W-BAND

机译:元素间距变化对W波段线性地面频率选择表面阵列性能的影响

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摘要

This article examines the issue of extending the inter-element spacing between slots of equally-spaced linear grounded frequency selective surface (FSS) arrays with spacing beyond half a wavelength in W-band (75-110 GHz). We present the design, processing, and testing of W-band grounded FSS arrays with different inter-element spacings along transverse electric (TE) and transverse magnetic (TM) field directions separately. The comparison of periodicity changing effects along TE and TM field directions has been reported. The inter-element spacing versus phase curves demonstrate that in some extent the inter-element spacing can be a phase optimization parameter for complex array design. We fabricated the corresponding FSS arrays on quartz substrate with photolithographic etching technique, and characterized the vector S-parameters with a free space MVNA.
机译:本文研究了扩展等间距线性接地频率选择表面(FSS)阵列的槽之间的元素间距的问题,该间距超过W波段(75-110 GHz)波长的一半。我们介绍了分别沿横向电场(TE)和横向磁场(TM)方向具有不同元素间间距的W波段接地FSS阵列的设计,处理和测试。已经报道了沿TE和TM场方向的周期性变化效果的比较。元素间距与相位的关系曲线表明,在某种程度上,元素间距可以作为复杂阵列设计的相位优化参数。我们用光刻技术在石英衬底上制造了相应的FSS阵列,并用自由空间MVNA表征了矢量S参数。

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