3D artificial material characterization using rectangular waveguide

Danang Primaadi Wibowo, A. Munir
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引用次数: 3

Abstract

Since the artificial materials recently have been widely applied for various applications, such as resonators, filters, transmission lines, and antennas, it is necessary to explore how to extract the properties of materials, i.e. permittivity and permeability. Information about the materials properties is very important for the user before materials utilization. In this paper, a rectangular waveguide-based characterization to extract the property of three-dimension (3D) artificial material is numerically investigated. The proposed 3D artificial material is constructed from conventional materials with some additional treatment to obtain unusual characteristics. The material properties which are focused on relative permittivity is extracted from scattering parameters. The rectangular waveguide is used as a tool to obtain scattering parameter of proposed material. From the results, it shows that the relative permittivity of proposed 3D artificial material is strongly influenced by the variation of unit cell and proportionally rises up to the number and dimension of unit cell. Moreover, the relative permittivity also increases if the orientation of unit cell is parallel to the electric field of incoming wave.
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基于矩形波导的三维人工材料表征
近年来,人工材料已广泛应用于谐振器、滤波器、传输线、天线等领域,因此有必要探索如何提取材料的介电常数和磁导率等特性。在材料使用之前,材料的性能信息对用户来说是非常重要的。本文对一种基于矩形波导的表征方法提取三维人工材料的特性进行了数值研究。所提出的三维人工材料是由传统材料经一些额外处理而形成的,以获得不同寻常的特性。从散射参数中提取出以相对介电常数为中心的材料特性。利用矩形波导作为工具,获得了所提出材料的散射参数。结果表明,三维人工材料的相对介电常数受单元胞数的影响较大,随单元胞数和尺寸的增大而成比例增大。当晶胞的取向与入射波的电场平行时,相对介电常数也增加。
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