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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Effective Surface Impedance of a Printed-Circuit Tensor Impedance Surface (PCTIS)
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Effective Surface Impedance of a Printed-Circuit Tensor Impedance Surface (PCTIS)

机译:印刷电路张量阻抗表面(PCTIS)的有效表面阻抗

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摘要

The surface impedance and dispersion equation of a printed-circuit tensor impedance surface (PCTIS) are derived using a modified transverse resonance technique. A PCTIS consists of a subwavelength-patterned metallic cladding over a grounded dielectric substrate. The metallic cladding is analytically modeled as a tensor impedance sheet. An explicit expression is derived for the effective surface impedance of the PCTIS using a transmission-line approach. First, the surface-impedance expression is found for a printed-circuit scalar impedance surface using the transverse resonance technique. Next, a modified transverse resonance technique is applied to an idealized tensor impedance boundary condition (TIBC) to find its dispersion equation. Finally, the analysis of the printed-circuit scalar impedance is combined with that of the idealized TIBC to find the tensor surface impedance and dispersion equation of a PCTIS. A discussion of the principal axes and the propagation of TM and TE waves is provided. The special case of electrically thin PCTISs is also analyzed and discussed.
机译:使用改进的横向共振技术推导了印刷电路张量阻抗表面(PCTIS)的表面阻抗和色散方程。 PCTIS由接地电介质基板上的亚波长图案金属覆层组成。将金属包层解析为张量阻抗表。使用传输线方法得出了PCTIS的有效表面阻抗的明确表达式。首先,使用横向共振技术找到印刷电路标量阻抗表面的表面阻抗表达式。接下来,将改进的横向共振技术应用于理想的张量阻抗边界条件(TIBC),以找到其色散方程。最后,将印刷电路标量阻抗的分析与理想化TIBC的分析相结合,以得出PCTIS的张量表面阻抗和色散方程。提供了主轴和TM和TE波传播的讨论。还对电薄PCTIS的特殊情况进行了分析和讨论。

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