Design of a patch antenna with an absorptive ground

An antenna is a device used to transmit or receive radio waves.The antennas are used in radio and radio communications, radar and space discovery systems.There are many parameters that may affect the performance of the antenna, which is adjustable in the design, such as impedance, gain, or radiation...

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Main Author: Du, Yaoting
Other Authors: Shen Zhongxiang
Format: Final Year Project
Language:English
Published: Nanyang Technological University 2020
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Online Access:https://hdl.handle.net/10356/136579
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1365792023-07-07T18:02:46Z Design of a patch antenna with an absorptive ground Du, Yaoting Shen Zhongxiang School of Electrical and Electronic Engineering EZXShen@ntu.edu.sg Engineering::Electrical and electronic engineering An antenna is a device used to transmit or receive radio waves.The antennas are used in radio and radio communications, radar and space discovery systems.There are many parameters that may affect the performance of the antenna, which is adjustable in the design, such as impedance, gain, or radiation pattern,polarization, efficiency and bandwidth. Radar Crossed Section (RCS) is a parameter that aimed to be minimized so that the object will not be easily detected.To enhance radar communication quality, antennas are mounted on specially designed substrate to achieve low-RCS while maintaining its performance. This report will provide an solution on the designing of a low-RCS patch antenna over a ground plate consists of multiple Absorptive Frequency Selective Reflector (AFSR) units to optimize the ability of the antenna. ANSYS HFSS® is a 3D Electromagnetic Field Simulator for Radio Frequency and Wireless Design. In this project, it is used to design and simulate the patch antenna with an absorptive ground. Bachelor of Engineering (Electrical and Electronic Engineering) 2020-01-02T06:11:23Z 2020-01-02T06:11:23Z 2020 Final Year Project (FYP) https://hdl.handle.net/10356/136579 en application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Engineering::Electrical and electronic engineering
spellingShingle Engineering::Electrical and electronic engineering
Du, Yaoting
Design of a patch antenna with an absorptive ground
description An antenna is a device used to transmit or receive radio waves.The antennas are used in radio and radio communications, radar and space discovery systems.There are many parameters that may affect the performance of the antenna, which is adjustable in the design, such as impedance, gain, or radiation pattern,polarization, efficiency and bandwidth. Radar Crossed Section (RCS) is a parameter that aimed to be minimized so that the object will not be easily detected.To enhance radar communication quality, antennas are mounted on specially designed substrate to achieve low-RCS while maintaining its performance. This report will provide an solution on the designing of a low-RCS patch antenna over a ground plate consists of multiple Absorptive Frequency Selective Reflector (AFSR) units to optimize the ability of the antenna. ANSYS HFSS® is a 3D Electromagnetic Field Simulator for Radio Frequency and Wireless Design. In this project, it is used to design and simulate the patch antenna with an absorptive ground.
author2 Shen Zhongxiang
author_facet Shen Zhongxiang
Du, Yaoting
format Final Year Project
author Du, Yaoting
author_sort Du, Yaoting
title Design of a patch antenna with an absorptive ground
title_short Design of a patch antenna with an absorptive ground
title_full Design of a patch antenna with an absorptive ground
title_fullStr Design of a patch antenna with an absorptive ground
title_full_unstemmed Design of a patch antenna with an absorptive ground
title_sort design of a patch antenna with an absorptive ground
publisher Nanyang Technological University
publishDate 2020
url https://hdl.handle.net/10356/136579
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