Dual-band microwave bandpass filters for advanced wireless communication

Microwave filters are widely used in the modern wireless communication systems. Thus in this project, the aim is to design a Compact Dual-Band Microwave Bandpass Filter for advanced wireless communication. The filter is designed to operate at 1.8GHz and 5.8GHz without external impedance-matching blo...

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Bibliographic Details
Main Author: Meng, Fanzeng.
Other Authors: Zhu Lei
Format: Final Year Project (FYP)
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10356/54366
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author Meng, Fanzeng.
author2 Zhu Lei
author_facet Zhu Lei
Meng, Fanzeng.
author_sort Meng, Fanzeng.
collection NTU
description Microwave filters are widely used in the modern wireless communication systems. Thus in this project, the aim is to design a Compact Dual-Band Microwave Bandpass Filter for advanced wireless communication. The filter is designed to operate at 1.8GHz and 5.8GHz without external impedance-matching block and simulated using Advanced Design System (ADS) software. The modified quarter-wavelength stepped-impedance resonator is constructed to excite the dual resonances at the two specified frequencies. The external parallel-coupled microstrip line is designed to minimize the return losses within both bands. To achieve the good filtering performances, the return losses for the two bands should be higher than 20 dB. With the improvements and enhancements of each trial design, a Compact Dual-Band Microwave Bandpass Filter is successful designed to operate at 1.8GHz and 5.8GHz in this project.
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spelling ntu-10356/543662023-07-07T16:26:13Z Dual-band microwave bandpass filters for advanced wireless communication Meng, Fanzeng. Zhu Lei School of Electrical and Electronic Engineering DRNTU::Engineering Microwave filters are widely used in the modern wireless communication systems. Thus in this project, the aim is to design a Compact Dual-Band Microwave Bandpass Filter for advanced wireless communication. The filter is designed to operate at 1.8GHz and 5.8GHz without external impedance-matching block and simulated using Advanced Design System (ADS) software. The modified quarter-wavelength stepped-impedance resonator is constructed to excite the dual resonances at the two specified frequencies. The external parallel-coupled microstrip line is designed to minimize the return losses within both bands. To achieve the good filtering performances, the return losses for the two bands should be higher than 20 dB. With the improvements and enhancements of each trial design, a Compact Dual-Band Microwave Bandpass Filter is successful designed to operate at 1.8GHz and 5.8GHz in this project. Bachelor of Engineering 2013-06-19T07:20:14Z 2013-06-19T07:20:14Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/54366 en Nanyang Technological University 52 p. application/pdf
spellingShingle DRNTU::Engineering
Meng, Fanzeng.
Dual-band microwave bandpass filters for advanced wireless communication
title Dual-band microwave bandpass filters for advanced wireless communication
title_full Dual-band microwave bandpass filters for advanced wireless communication
title_fullStr Dual-band microwave bandpass filters for advanced wireless communication
title_full_unstemmed Dual-band microwave bandpass filters for advanced wireless communication
title_short Dual-band microwave bandpass filters for advanced wireless communication
title_sort dual band microwave bandpass filters for advanced wireless communication
topic DRNTU::Engineering
url http://hdl.handle.net/10356/54366
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