UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique

A novel planar bandpass filter structure is proposed with quasi-elliptic response for ultra-wideband (UWB) applications, that enables incorporation of triple notch bands within its passband response. The filter design is based on wave cancellation technique which is implemented by first splitting an...

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Main Authors: Gholipoor, Mahsa, Honarvar, M. Amin, Virdee, Bal Singh
Format: Article
Language:English
Published: Wiley Periodicals, Inc. 2016
Subjects:
Online Access:https://repository.londonmet.ac.uk/1003/1/10.1002-mop.29932.pdf
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author Gholipoor, Mahsa
Honarvar, M. Amin
Virdee, Bal Singh
author_facet Gholipoor, Mahsa
Honarvar, M. Amin
Virdee, Bal Singh
author_sort Gholipoor, Mahsa
collection LMU
description A novel planar bandpass filter structure is proposed with quasi-elliptic response for ultra-wideband (UWB) applications, that enables incorporation of triple notch bands within its passband response. The filter design is based on wave cancellation technique which is implemented by first splitting and then combining the signal. The split signals are processed through filtering structures that generate triple notch bands within the passband of the UWB filter response, as well as transmission zeros at the lower and upper cutoff frequencies to enhance the filter’s selectivity. The UWB filter designed and fabricated has trinotch bands centered at 5.4, 5.8, and 8.2 GHz. The proposed filter is highly compact and miniature with dimensions of 20.7x9.8 mm2.
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spelling oai:repository.londonmet.ac.uk:10032018-10-22T13:31:28Z https://repository.londonmet.ac.uk/1003/ UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique Gholipoor, Mahsa Honarvar, M. Amin Virdee, Bal Singh 620 Engineering & allied operations A novel planar bandpass filter structure is proposed with quasi-elliptic response for ultra-wideband (UWB) applications, that enables incorporation of triple notch bands within its passband response. The filter design is based on wave cancellation technique which is implemented by first splitting and then combining the signal. The split signals are processed through filtering structures that generate triple notch bands within the passband of the UWB filter response, as well as transmission zeros at the lower and upper cutoff frequencies to enhance the filter’s selectivity. The UWB filter designed and fabricated has trinotch bands centered at 5.4, 5.8, and 8.2 GHz. The proposed filter is highly compact and miniature with dimensions of 20.7x9.8 mm2. Wiley Periodicals, Inc. 2016-08-01 Article PeerReviewed text en cc_by_nc_nd https://repository.londonmet.ac.uk/1003/1/10.1002-mop.29932.pdf Gholipoor, Mahsa, Honarvar, M. Amin and Virdee, Bal Singh (2016) UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique. Microwave and Optical Technology Letters, 58 (8). pp. 1875-1879. ISSN 1098-2760 http://onlinelibrary.wiley.com/journal/10.1002/(ISSN)1098-2760 10.1002/mop.29932 10.1002/mop.29932
spellingShingle 620 Engineering & allied operations
Gholipoor, Mahsa
Honarvar, M. Amin
Virdee, Bal Singh
UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique
title UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique
title_full UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique
title_fullStr UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique
title_full_unstemmed UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique
title_short UWB Bandpass Filters with Triple Notched Band Characteristics Implemented using Wave Cancellation Technique
title_sort uwb bandpass filters with triple notched band characteristics implemented using wave cancellation technique
topic 620 Engineering & allied operations
url https://repository.londonmet.ac.uk/1003/1/10.1002-mop.29932.pdf
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