全波模拟器中反向微带隙波导数值端口的优化

Jinlin Liu, A. Zaman, P. Kildal
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引用次数: 10

摘要

目前,倒置微带隙波导被认为是毫米波无线应用的一种很有前途的技术。理论上,新结构可以被认为是一个两层屏蔽结构,其中底层由一组周期性金属引脚组成,作为人工磁性导体(AMC)。然而,在现有的全波模拟器中,使用传统的波导端口或离散端口来评估新波导的电磁特性和性能是困难的。为了解决这一问题,本文提出了一种有效的方法来确定现有商用全波模拟器中传统波导端口的尺寸,以便在模拟倒立微带隙波导结构时使用。该过程包括分析倒微带隙波导的准tem模式和相应的波导端口尺寸,以及在仿真软件中使用的位置和边界条件。本文提出的数值端口比以前使用的端口要好得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing the numerical port for inverted microstrip gap waveguide in full-wave simulators
Currently the inverted microstrip gap waveguide has been considered as a promising technology for millimeter wave wireless applications. Theoretically, the new structure may be considered as a two layer shielded structure where the bottom layer consists of an array of periodic metallic pins which works as an artificial magnetic conductor (AMC). However, it is difficult to evaluate electromagnetic properties and performance of the new waveguide by using traditional waveguide ports or discrete ports in available full-wave simulator. In order to solve the problem, this paper proposes an effective method to determine dimensions of traditional waveguide ports in existing commercial full wave simulator to be used while simulating the inverted microstrip gap waveguide structures. The procedure includes the analysis of quasi-TEM mode of the inverted microstrip gap waveguide and the corresponding size of the waveguide port, as well as the location and boundary conditions used in the simulation software. The numerical port proposed in this work is much better than the ports used previously.
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