Ultralow Profile, Low Passive Intermodulation, and Super-Wideband Ceiling Mount Antennas for Cellular and Public Safety Distributed Antenna Systems

This paper presents an ultralow profile, low passive intermodulation (PIM), and super-wideband in-building ceiling mount antenna that covers both the cellular and public safety ultra high frequency (UHF) band for distributed antenna system (DAS) applications. The proposed antenna design utilizes a m...

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Main Authors: Kok Jiunn Ng, Mohammad Tariqul Islam, Adam M. Alevy, Mohd. Fais Mansor
Format: Article
Language:English
Published: MDPI AG 2020-04-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/9/2456
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spelling doaj-4b91d1350efc4dd6931c91a94fafedaa2020-11-25T02:26:27ZengMDPI AGSensors1424-82202020-04-01202456245610.3390/s20092456Ultralow Profile, Low Passive Intermodulation, and Super-Wideband Ceiling Mount Antennas for Cellular and Public Safety Distributed Antenna SystemsKok Jiunn Ng0Mohammad Tariqul Islam1Adam M. Alevy2Mohd. Fais Mansor3Laird Connectivity, Plot 522, Lorong Perusahaan 3, Prai Industrial Estate, Penang 13600, MalaysiaDepartment of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia (UKM), Selangor 43600, MalaysiaLaird Connectivity, 1 Perimeter Rd #700, Manchester, NH 03103, USADepartment of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia (UKM), Selangor 43600, MalaysiaThis paper presents an ultralow profile, low passive intermodulation (PIM), and super-wideband in-building ceiling mount antenna that covers both the cellular and public safety ultra high frequency (UHF) band for distributed antenna system (DAS) applications. The proposed antenna design utilizes a modified 2-D planar discone design concept that is miniaturized to fit into a small disc-shaped radome. The 2-D planar discone has an elliptical-shaped disc monopole and a bell-shaped ground plane, a stub at the shorting path, with asymmetrical structure and an additional proximity coupling patch to maximize the available electrical path to support the 350 MHz band range. The proposed design maximizes the radome area with a reduction of about 62% compared to similar concept type antennas. Besides, the proposed design exhibits an improved radiation pattern with null reduction compared to a typical dipole/monopole when lies at the horizontal plane. A prototype was manufactured to demonstrate the antenna performance. The VSWR and radiation pattern results agreed with the simulated results. The proposed antenna achieves a band ratio of 28.57:1 while covering a frequency range of 350–10,000 MHz. The measured passive intermodulation levels are better than −150 dBc (2 × 20 Watts) for 350, 700 and 1920 MHz bandshttps://www.mdpi.com/1424-8220/20/9/2456cellular and public safety antennain-building antennalow profile low passive intermodulationsuper wideband
collection DOAJ
language English
format Article
sources DOAJ
author Kok Jiunn Ng
Mohammad Tariqul Islam
Adam M. Alevy
Mohd. Fais Mansor
spellingShingle Kok Jiunn Ng
Mohammad Tariqul Islam
Adam M. Alevy
Mohd. Fais Mansor
Ultralow Profile, Low Passive Intermodulation, and Super-Wideband Ceiling Mount Antennas for Cellular and Public Safety Distributed Antenna Systems
Sensors
cellular and public safety antenna
in-building antenna
low profile low passive intermodulation
super wideband
author_facet Kok Jiunn Ng
Mohammad Tariqul Islam
Adam M. Alevy
Mohd. Fais Mansor
author_sort Kok Jiunn Ng
title Ultralow Profile, Low Passive Intermodulation, and Super-Wideband Ceiling Mount Antennas for Cellular and Public Safety Distributed Antenna Systems
title_short Ultralow Profile, Low Passive Intermodulation, and Super-Wideband Ceiling Mount Antennas for Cellular and Public Safety Distributed Antenna Systems
title_full Ultralow Profile, Low Passive Intermodulation, and Super-Wideband Ceiling Mount Antennas for Cellular and Public Safety Distributed Antenna Systems
title_fullStr Ultralow Profile, Low Passive Intermodulation, and Super-Wideband Ceiling Mount Antennas for Cellular and Public Safety Distributed Antenna Systems
title_full_unstemmed Ultralow Profile, Low Passive Intermodulation, and Super-Wideband Ceiling Mount Antennas for Cellular and Public Safety Distributed Antenna Systems
title_sort ultralow profile, low passive intermodulation, and super-wideband ceiling mount antennas for cellular and public safety distributed antenna systems
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-04-01
description This paper presents an ultralow profile, low passive intermodulation (PIM), and super-wideband in-building ceiling mount antenna that covers both the cellular and public safety ultra high frequency (UHF) band for distributed antenna system (DAS) applications. The proposed antenna design utilizes a modified 2-D planar discone design concept that is miniaturized to fit into a small disc-shaped radome. The 2-D planar discone has an elliptical-shaped disc monopole and a bell-shaped ground plane, a stub at the shorting path, with asymmetrical structure and an additional proximity coupling patch to maximize the available electrical path to support the 350 MHz band range. The proposed design maximizes the radome area with a reduction of about 62% compared to similar concept type antennas. Besides, the proposed design exhibits an improved radiation pattern with null reduction compared to a typical dipole/monopole when lies at the horizontal plane. A prototype was manufactured to demonstrate the antenna performance. The VSWR and radiation pattern results agreed with the simulated results. The proposed antenna achieves a band ratio of 28.57:1 while covering a frequency range of 350–10,000 MHz. The measured passive intermodulation levels are better than −150 dBc (2 × 20 Watts) for 350, 700 and 1920 MHz bands
topic cellular and public safety antenna
in-building antenna
low profile low passive intermodulation
super wideband
url https://www.mdpi.com/1424-8220/20/9/2456
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AT mohammadtariqulislam ultralowprofilelowpassiveintermodulationandsuperwidebandceilingmountantennasforcellularandpublicsafetydistributedantennasystems
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