3D frequency selective structure

This project focused on researching about designs of 3D Frequency Selective Structures with frequency filtering responses and in-band absorption performances. The basic concepts and key properties of 2D & 3D Frequency Selective Structures were studied in details for understanding. The simulation...

Full description

Bibliographic Details
Main Author: Wang, Yingxuan
Other Authors: Shen Zhongxiang
Format: Final Year Project (FYP)
Language:English
Published: 2016
Subjects:
Online Access:http://hdl.handle.net/10356/67685
_version_ 1826114040101863424
author Wang, Yingxuan
author2 Shen Zhongxiang
author_facet Shen Zhongxiang
Wang, Yingxuan
author_sort Wang, Yingxuan
collection NTU
description This project focused on researching about designs of 3D Frequency Selective Structures with frequency filtering responses and in-band absorption performances. The basic concepts and key properties of 2D & 3D Frequency Selective Structures were studied in details for understanding. The simulation software was used to design and simulate these models and analyze the performances of different structures. The simulations were followed by analysis, parameter tunings, fabrications and measurements for the final design model. Lastly, future recommendations were discussed for better working performances and further applications. A wideband microwave absorber based on a two-dimensional periodic array of micro-strip lines was simulated via the software. Based on this model and further analysis about how the in-band frequency absorption happened, an innovative 3D dual-polarized microwave absorber was designed and simulated successfully. This innovative frequency selective absorber design model consists of periodic modified unit cells and it truly has the property of in-band frequency absorption encountering electromagnetic waves with both of horizontal polarization and vertical polarization. This 3D dual-polarized frequency selective absorber design has the frequency absorption performance with a working frequency band from 1.65 to 5 GHz. After fabrications, the absorber structure consists of 6 unit cells with the thickness of 20 mm and each unit cell has one front surface with the length of 24 mm and the width of 24 mm. Based on the simulated results, the working fractional bandwidth of this dual-polarized frequency selective absorber structure is around 100%. The measurements were conducted consequently to verify the simulated results. Finally, the absorber design model was proved with successful absorption performances when frequencies of the incident electromagnetic waves were in the working frequency band.
first_indexed 2024-10-01T03:32:41Z
format Final Year Project (FYP)
id ntu-10356/67685
institution Nanyang Technological University
language English
last_indexed 2024-10-01T03:32:41Z
publishDate 2016
record_format dspace
spelling ntu-10356/676852023-07-07T15:58:34Z 3D frequency selective structure Wang, Yingxuan Shen Zhongxiang School of Electrical and Electronic Engineering DRNTU::Engineering This project focused on researching about designs of 3D Frequency Selective Structures with frequency filtering responses and in-band absorption performances. The basic concepts and key properties of 2D & 3D Frequency Selective Structures were studied in details for understanding. The simulation software was used to design and simulate these models and analyze the performances of different structures. The simulations were followed by analysis, parameter tunings, fabrications and measurements for the final design model. Lastly, future recommendations were discussed for better working performances and further applications. A wideband microwave absorber based on a two-dimensional periodic array of micro-strip lines was simulated via the software. Based on this model and further analysis about how the in-band frequency absorption happened, an innovative 3D dual-polarized microwave absorber was designed and simulated successfully. This innovative frequency selective absorber design model consists of periodic modified unit cells and it truly has the property of in-band frequency absorption encountering electromagnetic waves with both of horizontal polarization and vertical polarization. This 3D dual-polarized frequency selective absorber design has the frequency absorption performance with a working frequency band from 1.65 to 5 GHz. After fabrications, the absorber structure consists of 6 unit cells with the thickness of 20 mm and each unit cell has one front surface with the length of 24 mm and the width of 24 mm. Based on the simulated results, the working fractional bandwidth of this dual-polarized frequency selective absorber structure is around 100%. The measurements were conducted consequently to verify the simulated results. Finally, the absorber design model was proved with successful absorption performances when frequencies of the incident electromagnetic waves were in the working frequency band. Bachelor of Engineering 2016-05-19T04:22:18Z 2016-05-19T04:22:18Z 2016 Final Year Project (FYP) http://hdl.handle.net/10356/67685 en Nanyang Technological University 62 p. application/pdf
spellingShingle DRNTU::Engineering
Wang, Yingxuan
3D frequency selective structure
title 3D frequency selective structure
title_full 3D frequency selective structure
title_fullStr 3D frequency selective structure
title_full_unstemmed 3D frequency selective structure
title_short 3D frequency selective structure
title_sort 3d frequency selective structure
topic DRNTU::Engineering
url http://hdl.handle.net/10356/67685
work_keys_str_mv AT wangyingxuan 3dfrequencyselectivestructure