e平面介质加载波导中场分布的有效测定

IF 1.2 4区 工程技术 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Journal of Electromagnetic Waves and Applications Pub Date : 2023-10-21 DOI:10.1080/09205071.2023.2270477
Ahmet Aydoğan
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引用次数: 0

摘要

摘要本文提出了一种新的、快速有效的确定双端口e平面介质加载均匀矩形波导中电磁场分布的方法。在没有和存在介电障碍的情况下,将分析区域划分为单独的块。该方法利用单峰或多峰激励的块间广义散射矩阵法构造了整个系统的非零电场和磁场分量。将所得的场分布与商业软件获得的结果进行了比较,结果非常接近,但所提出的方法大大减少了计算时间。该方法适用于简单的方式,并已在具有相对复杂几何结构的滤波器装置和具有单元之间模态耦合挑战的不相交系统上进行了测试。通过沿系统计算坡印亭矢量,验证了场分量的精度。此外,该方法还提供了物理端口处的全局散射参数作为副产物。根据所考虑的问题,采用所提出的方法,所提出的方法具有应用于各种双端口网络的潜力。关键词:级联系统、场分布、广义散射矩阵、微波器件、矩形波导公开声明作者未报告潜在利益冲突。
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An efficient determination of field distributions in E-plane dielectric loaded waveguides
ABSTRACTThis paper proposes a new, fast, and efficient method for determining the electromagnetic field distribution in two-port E-plane dielectric-loaded uniform rectangular waveguides. The analysis region is divided into individual blocks in the absence and presence of dielectric obstacles. The non-zero electric and magnetic field components are constructed throughout the system via the proposed method by utilizing the generalized scattering matrix method between blocks for unimodal or multimodal excitation. The resulting field distributions are compared to those obtained from commercial software, with very close agreement achieved, but with a significantly reduced computational time for the proposed method. The method is applicable in a straightforward manner and has been tested on both a filter device with relatively complex geometry and a disjoint system with a modal coupling challenge between its elements. The field components' accuracy is also tested by calculating the Poynting vector along the system. Additionally, this approach provides the global scattering parameters at the physical ports as a co-product. The proposed method has the potential to be applied to various two-port networks by using the proposed method according to the considered problem.KEYWORDS: Cascaded systemsfield distributiongeneralized scattering matrixmicrowave devicesrectangular waveguide Disclosure statementNo potential conflict of interest was reported by the author(s).
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来源期刊
Journal of Electromagnetic Waves and Applications
Journal of Electromagnetic Waves and Applications 物理-工程:电子与电气
CiteScore
3.60
自引率
7.70%
发文量
116
审稿时长
3.3 months
期刊介绍: Journal of Electromagnetic Waves and Applications covers all aspects of electromagnetic wave theory and its applications. It publishes original papers and review articles on new theories, methodologies, and computational techniques, as well as interpretations of both theoretical and experimental results. The scope of this Journal remains broad and includes the following topics: wave propagation theory propagation in random media waves in composites and amorphous materials optical and millimeter wave techniques fiber/waveguide optics optical sensing sub-micron structures nano-optics and sub-wavelength effects photonics and plasmonics atmospherics and ionospheric effects on wave propagation geophysical subsurface probing remote sensing inverse scattering antenna theory and applications fields and network theory transients radar measurements and applications active experiments using space vehicles electromagnetic compatibility and interferometry medical applications and biological effects ferrite devices high power devices and systems numerical methods The aim of this Journal is to report recent advancements and modern developments in the electromagnetic science and new exciting applications covering the aforementioned fields.
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