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Broadening of Operating Frequency Band of Magnetic-Type Radio Absorbers by FSS Incorporation

机译:通过FSS合并拓宽电磁式吸波器的工作频带

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摘要

Problems of the theory of radio absorbers (RAs) involving frequency selective surfaces (FSSs) are considered. A design procedure for these RAs is described that takes into account the multiparameter character of the problem and allows one to determine the optimal characteristics of an FSS that provide the maximal operating bandwidth. RAs for a range of 1–17 GHz are obtained on the basis of polymer composites filled with carbonyl iron and Co$_{2}$Z ferrite, into which an FSS in the form of a biperiodic array of thin metal rings is embedded. It is shown that the application of such an FSS allows one to increase the operating frequency bandwidth of a magnetic-type RA by a factor of more than 1.5 virtually almost without increasing the thickness of the absorber. Substantially, several types of FSS-based layered magnetodielectric RAs have been produced by compressing molding technique, including a 3-mm-thick RA with an operating bandwidth of 1.05–2.7 GHz, a 2-mm-thick RA with an operating bandwidth of 1.7–4.4 GHz, and a 1.6-mm-thick RA with an operating bandwidth of 6.7–16.1 GHz.
机译:考虑了涉及频率选择表面(FSS)的无线电吸收器(RA)理论的问题。描述了针对这些RA的一种设计过程,该过程考虑了问题的多参数特性,并可以确定提供最大工作带宽的FSS的最佳特性。基于填充了羰基铁和Co $ _ {2} $ Z铁氧体的聚合物复合材料,可以得到1-17 GHz范围的RA,并在其中嵌入了薄金属环的双周期阵列形式的FSS。已经表明,这种FSS的应用实际上使磁性RA的工作频率带宽增加了1.5倍以上,而几乎没有增加吸收体的厚度。基本上,已经通过压缩成型技术生产了几种类型的基于FSS的分层磁电RA,包括工作带宽为1.05-2.7 GHz的3mm厚RA,工作带宽为1.7的2mm厚RA –4.4 GHz和1.6mm厚的RA,工作带宽为6.7–16.1 GHz。

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