首页> 外文期刊>Antennas and Wireless Propagation Letters, IEEE >Design of Three-Dimensional Frequency Selective Structure With Replaceable Unit Structures Using a 3-D Printing Technique
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Design of Three-Dimensional Frequency Selective Structure With Replaceable Unit Structures Using a 3-D Printing Technique

机译:利用3-D打印技术设计具有可替换单元结构的三维频率选择结构

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摘要

In this study, we designed a three-dimensional (3-D) frequency selective surface (FSS) that can be assembled with replaceable unit cells using a 3-D printing technique. The designed 3-D FSS structure consists of an array of cross-dipole structures with a conductive pattern on a square pyramid, and it exhibits frequency blocking at an operating frequency of 6.45 GHz. To verify the performance of the proposed 3-D FSS, a square pyramid-shaped dielectric substrate is manufactured using a 3-D printing technique, and a conductive pattern is implemented using a 3-D printed dispenser method. From the simulated and measurement results, the proposed structure has stable characteristics up to an incident angle of 45° in the polarized TE and TM modes. Using the proposed 3-D FSS structure, unit structures are manufactured in various patterns; thus, they can be assembled easily. Furthermore, by exploiting these characteristics, the reconfiguration characteristics can be realized through structural modifications.
机译:在这项研究中,我们设计了三维(3-D)频率选择表面(FSS),可以使用3-D打印技术将其与可更换的单元电池组装在一起。设计的3-D FSS结构由在平面金字塔上具有导电图案的交叉偶极结构阵列组成,并且在6.45 GHz的工作频率下表现出频率阻塞。为了验证所提出的3-D FSS的性能,使用3-D打印技术来制造方形金字塔形介电基板,并使用3-D打印分配器方法来实现导电图案。从模拟和测量结果来看,该结构在极化TE和TM模式下具有高达45°入射角的稳定特性。使用所提出的3-D FSS结构,可以以各种样式制造单元结构。因此,它们可以容易地组装。此外,通过利用这些特性,可以通过结构修改来实现重构特性。

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