Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna

The ultra-wideband (UWB) antenna is developed to cover a broad bandwidth. ‎The UWB radio systems are interfered ‎by the ‎same ‎spectrum ‎that shared with the local bands. In this paper, two F-shaped slots on a hexagonal patch UWB antenna are demonstrated ‎‎ to realize a high band rejection. The symm...

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Main Authors: Abdulhasan, Raed Abdulkareem, Ramli, Khairun Nidzam, Alias, Rozlan, Hamzah, Shipun Anuar, Audah, Lukman, Salh, Adeeb, O. Mumin, Abdulrashid, Jawhar, Yasir Amer
Format: Article
Language:English
Published: Praise Worthy Prize 2017
Subjects:
Online Access:http://eprints.uthm.edu.my/2409/1/AJ%202019%20%2817%29.pdf
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author Abdulhasan, Raed Abdulkareem
Ramli, Khairun Nidzam
Alias, Rozlan
Hamzah, Shipun Anuar
Audah, Lukman
Salh, Adeeb
O. Mumin, Abdulrashid
Jawhar, Yasir Amer
author_facet Abdulhasan, Raed Abdulkareem
Ramli, Khairun Nidzam
Alias, Rozlan
Hamzah, Shipun Anuar
Audah, Lukman
Salh, Adeeb
O. Mumin, Abdulrashid
Jawhar, Yasir Amer
author_sort Abdulhasan, Raed Abdulkareem
collection UTHM
description The ultra-wideband (UWB) antenna is developed to cover a broad bandwidth. ‎The UWB radio systems are interfered ‎by the ‎same ‎spectrum ‎that shared with the local bands. In this paper, two F-shaped slots on a hexagonal patch UWB antenna are demonstrated ‎‎ to realize a high band rejection. The symmetrical couple F-slots is ‎notched on the hexagonal UWB ‎ ‎patch antenna to avoid the interference ‎and ‎‎enhance the notching results at C-band. The demonstrated ‎antenna employs a coplanar waveguide ‎(CPW) technique to meet a fractional bandwidth of 126%. The proposed method validates ‎several ‎‎reconfigurations of the F-slot location on the demonstrated design. Six steps ‎parametric study are considered to test the slots location. The results of the proposed antenna with slots are introduced based on analytical, simulation, and ‎measurement. The total design size ‎‎28 mm × 43 mm × 1.6 ‎mm is simulated by ‎using CST Microwave Studio. The two F-slots are achieved the antenna gain of -6 dB, ‎return loss of -1.2 ‎dB, and ‎VSWR of 15.2 at the rejected band of 4 GHz. The ‎measurement results are compared with the simulation results between the three ‎prototypes. The current ‎distribution on the design is discussed at 2.88 GHz and 4 GHz frequencies. The radiation patterns illustrate ‎omnidirectional of H-plane and bidirectional of E-plane. This paper validates the slots locations to enhance the notches performance and reduce the interference.
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spelling uthm.eprints-24092021-10-20T02:53:18Z http://eprints.uthm.edu.my/2409/ Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna Abdulhasan, Raed Abdulkareem Ramli, Khairun Nidzam Alias, Rozlan Hamzah, Shipun Anuar Audah, Lukman Salh, Adeeb O. Mumin, Abdulrashid Jawhar, Yasir Amer TK5101-6720 Telecommunication. Including telegraphy, telephone, radio, radar, television The ultra-wideband (UWB) antenna is developed to cover a broad bandwidth. ‎The UWB radio systems are interfered ‎by the ‎same ‎spectrum ‎that shared with the local bands. In this paper, two F-shaped slots on a hexagonal patch UWB antenna are demonstrated ‎‎ to realize a high band rejection. The symmetrical couple F-slots is ‎notched on the hexagonal UWB ‎ ‎patch antenna to avoid the interference ‎and ‎‎enhance the notching results at C-band. The demonstrated ‎antenna employs a coplanar waveguide ‎(CPW) technique to meet a fractional bandwidth of 126%. The proposed method validates ‎several ‎‎reconfigurations of the F-slot location on the demonstrated design. Six steps ‎parametric study are considered to test the slots location. The results of the proposed antenna with slots are introduced based on analytical, simulation, and ‎measurement. The total design size ‎‎28 mm × 43 mm × 1.6 ‎mm is simulated by ‎using CST Microwave Studio. The two F-slots are achieved the antenna gain of -6 dB, ‎return loss of -1.2 ‎dB, and ‎VSWR of 15.2 at the rejected band of 4 GHz. The ‎measurement results are compared with the simulation results between the three ‎prototypes. The current ‎distribution on the design is discussed at 2.88 GHz and 4 GHz frequencies. The radiation patterns illustrate ‎omnidirectional of H-plane and bidirectional of E-plane. This paper validates the slots locations to enhance the notches performance and reduce the interference. Praise Worthy Prize 2017 Article PeerReviewed text en http://eprints.uthm.edu.my/2409/1/AJ%202019%20%2817%29.pdf Abdulhasan, Raed Abdulkareem and Ramli, Khairun Nidzam and Alias, Rozlan and Hamzah, Shipun Anuar and Audah, Lukman and Salh, Adeeb and O. Mumin, Abdulrashid and Jawhar, Yasir Amer (2017) Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna. International Journal on Communications Antenna and Propagation (IRECAP), 7 (7). pp. 619-625. ISSN 2039 – 5086 https://doi.org/10.15866/irecap.v7i7.12537
spellingShingle TK5101-6720 Telecommunication. Including telegraphy, telephone, radio, radar, television
Abdulhasan, Raed Abdulkareem
Ramli, Khairun Nidzam
Alias, Rozlan
Hamzah, Shipun Anuar
Audah, Lukman
Salh, Adeeb
O. Mumin, Abdulrashid
Jawhar, Yasir Amer
Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna
title Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna
title_full Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna
title_fullStr Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna
title_full_unstemmed Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna
title_short Symmetrical couple f-shaped notches with high rejection c-band of uwb patch antenna
title_sort symmetrical couple f shaped notches with high rejection c band of uwb patch antenna
topic TK5101-6720 Telecommunication. Including telegraphy, telephone, radio, radar, television
url http://eprints.uthm.edu.my/2409/1/AJ%202019%20%2817%29.pdf
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