Full-wave analysis of periodic microstrip lines excited by an aperiodic delta-gap source

R. Rodríguez-Berral, G. Valério, F. Mesa, P. Baccarelli, P. Burghignoli, A. Galli
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引用次数: 2

Abstract

A study is presented of the current excited on a printed periodic structure by a single aperiodic source. In particular, both completely shielded and open microstrip lines periodically loaded with gaps are considered, excited by a delta-gap voltage source. The aperiodicity of the source does not allow for a direct application of the Floquet theorem. The array scanning method (ASM) is then applied, which reduces the aperiodic problem to an integral superposition of suitable Floquet-periodic problems. Efficient numerical implementations of the ASM are developed, for both the shielded and the open cases, based on the method of moments with entire-domain basis functions. Numerical results are presented for dispersion features and Bloch modes supported by the periodic microstrip line and for the current excited by the source in different frequency ranges corresponding to passband and stopband regimes of the fundamental perturbed quasi-TEM mode.
非周期δ隙源激发的周期微带线的全波分析
研究了单非周期源在印刷周期结构上激发的电流。特别地,考虑了完全屏蔽和开放的微带线周期性加载的间隙,由一个δ隙电压源激发。源的非周期性不允许直接应用Floquet定理。采用阵列扫描法,将非周期问题简化为合适的傅里叶周期问题的积分叠加。基于具有全域基函数的矩量方法,开发了屏蔽和开放两种情况下ASM的有效数值实现。给出了周期微带线支持的色散特征和布洛赫模式,以及基态微扰准tem模式通带和阻带不同频率范围内源激发的电流的数值结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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