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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Novel synthesis formulas to design square patch frequency selective surface absorber based on equivalent circuit model
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Novel synthesis formulas to design square patch frequency selective surface absorber based on equivalent circuit model

机译:基于等效电路模型设计方形贴片频率选择表面吸收器的新型合成公式

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A new procedure is presented to design electromagnetic absorbers based on resistive square patch frequency selective surface (FSS) over grounded dielectric. The periodicity (p) and the distance between two adjacent squares in the lattice (w) are two unknowns to be solved, given the thickness and permittivity of the substrate, surface impedance of the square patches and the desired reflectivity in some specified frequency. Equivalent circuit model and transmission line method are employed here. Previously reported analysis formulas to calculate the square patch FSS admittance are exploited and novel synthesis formulas are extracted based of them. The final synthesis equations to calculate p and w are presented in term of polynomials. Usually an absorber is supposed to have a maximum reflectivity r in a frequency band [f(1), f(2)]. The (p, w) pairs for reflectivity less than r in f(1), define an area in p-w plane. The intersection of the so-called area with the similar one defined by f(2) specifies all possible (p, w) pairs. Finally the results are tested and verified by the commercial full wave simulator Ansys-HFSS as well as some experimental design. There is a good agreement between the expected results with the full wave analysis and practical test.
机译:提出了一种基于接地电介质的电阻方形贴片频率选择表面(FSS)的电磁吸收剂来设计新的步骤。定期(P)和晶格(W)中的两个相邻正方形之间的距离是待解决的两个未知值,鉴于基板的厚度和介电常数,方形贴片的表面阻抗和某些特定频率的所需反射率。在此采用等效电路模型和传输线方法。先前报道的分析公式用于计算方形贴片FSS导纳,并基于它们提取新的合成公式。在多项式期间呈现用于计算P和W的最终合成方程。通常,吸收器应该在频带[F(1),F(2)]中具有最大反射率R。用于反射率的(P,W)对在F(1)中的R少于R,在P-W平面中定义一个区域。由f(2)定义的类似型区域的所谓区域指定所有可能的(p,w)对。最后,通过商业全波模拟器ANSYS-HFS以及一些实验设计来测试和验证结果。预期结果与完全波分析和实际测试之间存在良好的一致性。

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