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Frequency-Selective Rasorber Based on Square-Loop and Cross-Dipole Arrays

机译:基于方环和交叉偶极子阵列的选频吸收器

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摘要

A novel design of a transmission window within the absorption band of a circuit analog absorber, named as frequency-selective rasorber (FSR), is presented. Based on an equivalent circuit model, the conditions are formulated to produce a passband with small insertion loss and to reduce the reflection at frequencies below and above the passband in the meanwhile. Simple design guidelines of our proposed FSR are then developed. With loaded lumped elements, the arrays of square-loop and cross-dipole are combined to realize its implementation. It is shown through measurements that an insertion loss of 0.68 dB can be obtained at 4.42 GHz and the fractional bandwidth for at least 10 dB reflection reduction within the lower and upper frequency bands is 92.3% under the normal incidence. A good agreement between simulated and measured results validates our design.
机译:提出了一种在电路模拟吸收器的吸收带内的传输窗口的新颖设计,称为频率选择吸收器(FSR)。在等效电路模型的基础上,制定条件以产生具有较小插入损耗的通带,并同时降低在通带以下和以上的频率下的反射。然后制定我们建议的FSR的简单设计准则。在负载集总元件的情况下,将正方形回路和交叉偶极子阵列组合在一起以实现其实现。通过测量显示,在4.42 GHz频率下可获得0.68 dB的插入损耗,并且在法向入射下,低频带和高频带内至少10 dB反射减小的分数带宽为92.3%。模拟结果和测量结果之间的良好一致性验证了我们的设计。

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