右梯形凹槽 TE 散射的简单而高效的解决方案

IF 1.1 4区 计算机科学 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Mehdi Bozorgi
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引用次数: 0

摘要

本文针对完美电导体(PEC)表面上的二维直角梯形凹槽的横向电(TE)散射问题提出了一个简单而有效的解决方案。利用平面波的叠加并在凹槽壁上应用 Neumann 边界条件,横向磁场被表示为无穷系列波导模式之和。考虑到孔径上的等效磁流,可提取具有对数奇异内核的弗雷德霍尔姆积分方程,然后通过基于分片常数近似值的配位法进行离散化。提取的线性方程组可以通过矩阵法轻松求解未知系数。本文列举了大量实例来验证结果,并展示了所提方法的能力。最后,该方法被用于研究凹槽参数和入射角对散射特征的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A simple yet efficient solution for TE scattering from a right trapezoidal groove

A simple yet efficient solution for TE scattering from a right trapezoidal groove

A simple yet efficient solution for TE scattering from a right trapezoidal groove

A simple yet efficient solution to the problem of transverse electric (TE) scattering by a two-dimensional right trapezoidal groove placed in a perfect electric conductor (PEC) surface is presented. Using superposition of plane waves and applying the Neumann boundary condition at the groove walls, the transverse magnetic field is expressed as the sums of infinite series of waveguide modes. Considering the equivalent magnetic current on the aperture, a Fredlholm's integral equation with logarithmic singular kernel is extracted and then discretised by a collocation method based on a piecewise constant approximant. The extracted linear system of equations can be easily solved by the matrix methods for the unknown coefficients. Numerous examples are presented to verify the results and show the ability of the proposed method. Finally, this method is employed to examine the effect of the groove parameters and incidence angle on the scattering signatures.

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来源期刊
Iet Microwaves Antennas & Propagation
Iet Microwaves Antennas & Propagation 工程技术-电信学
CiteScore
4.30
自引率
5.90%
发文量
109
审稿时长
7 months
期刊介绍: Topics include, but are not limited to: Microwave circuits including RF, microwave and millimetre-wave amplifiers, oscillators, switches, mixers and other components implemented in monolithic, hybrid, multi-chip module and other technologies. Papers on passive components may describe transmission-line and waveguide components, including filters, multiplexers, resonators, ferrite and garnet devices. For applications, papers can describe microwave sub-systems for use in communications, radar, aerospace, instrumentation, industrial and medical applications. Microwave linear and non-linear measurement techniques. Antenna topics including designed and prototyped antennas for operation at all frequencies; multiband antennas, antenna measurement techniques and systems, antenna analysis and design, aperture antenna arrays, adaptive antennas, printed and wire antennas, microstrip, reconfigurable, conformal and integrated antennas. Computational electromagnetics and synthesis of antenna structures including phased arrays and antenna design algorithms. Radiowave propagation at all frequencies and environments. Current Special Issue. Call for papers: Metrology for 5G Technologies - https://digital-library.theiet.org/files/IET_MAP_CFP_M5GT_SI2.pdf
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