Submillimeter wave communication versus millimeter wave communication

This paper studies the performance of a submillimeter wave antenna operating between frequencies 0.1 THz and 10 THz with a 4-cyano-4-pentylbiphenyl [5CB] substrate. Since the size and shape of the antenna impact its gain/directivity, resonant frequency, bandwidth, and efficiency, the two antenna typ...

Full description

Bibliographic Details
Main Authors: Madhuprana Goswami, Hyuck M. Kwon
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2020-02-01
Series:Digital Communications and Networks
Online Access:http://www.sciencedirect.com/science/article/pii/S2352864817302067
_version_ 1819049751197253632
author Madhuprana Goswami
Hyuck M. Kwon
author_facet Madhuprana Goswami
Hyuck M. Kwon
author_sort Madhuprana Goswami
collection DOAJ
description This paper studies the performance of a submillimeter wave antenna operating between frequencies 0.1 THz and 10 THz with a 4-cyano-4-pentylbiphenyl [5CB] substrate. Since the size and shape of the antenna impact its gain/directivity, resonant frequency, bandwidth, and efficiency, the two antenna types considered in this paper are: (a) Rectangular Patch Antenna (RPA), and (b) Cylindrical Dielectric Resonator Antenna (CDRA). Here a submillimeter wave antenna is compared with a millimeter wave (a few GHz to 100 GHz) antenna. These popular mm-wave antennas are chosen for the submillimeter wave antenna in order to understand changes in their performance as the result of changes in their geometrical shape. FEldberechnung bei Korpern mit beliebiger Oberflache (FEKO) software is used for the design and calculation of the Three-Dimensional (3D) ElectroMagnetic (EM) patterns. This paper also concentrates on the design and analysis of a massive submillimeter wave Multiple-Input Multiple-Output (MIMO) (8 by 8) RPA and CDRA. Keywords: Submillimeter wave antenna, Millimeter wave antenna, Rectangular micro-strip patch antenna, Cylindrical dielectric resonator antenna, Massive submillimeter wave MIMO antenna, Applications
first_indexed 2024-12-21T11:37:07Z
format Article
id doaj.art-26b2d361c6574686a9620fea419a613b
institution Directory Open Access Journal
issn 2352-8648
language English
last_indexed 2024-12-21T11:37:07Z
publishDate 2020-02-01
publisher KeAi Communications Co., Ltd.
record_format Article
series Digital Communications and Networks
spelling doaj.art-26b2d361c6574686a9620fea419a613b2022-12-21T19:05:24ZengKeAi Communications Co., Ltd.Digital Communications and Networks2352-86482020-02-01616474Submillimeter wave communication versus millimeter wave communicationMadhuprana Goswami0Hyuck M. Kwon1Corresponding author.; Department of Electrical Engineering and Computer Science, Wichita State University, 1845 N. Fairmount, Wichita, KS, 67260, USADepartment of Electrical Engineering and Computer Science, Wichita State University, 1845 N. Fairmount, Wichita, KS, 67260, USAThis paper studies the performance of a submillimeter wave antenna operating between frequencies 0.1 THz and 10 THz with a 4-cyano-4-pentylbiphenyl [5CB] substrate. Since the size and shape of the antenna impact its gain/directivity, resonant frequency, bandwidth, and efficiency, the two antenna types considered in this paper are: (a) Rectangular Patch Antenna (RPA), and (b) Cylindrical Dielectric Resonator Antenna (CDRA). Here a submillimeter wave antenna is compared with a millimeter wave (a few GHz to 100 GHz) antenna. These popular mm-wave antennas are chosen for the submillimeter wave antenna in order to understand changes in their performance as the result of changes in their geometrical shape. FEldberechnung bei Korpern mit beliebiger Oberflache (FEKO) software is used for the design and calculation of the Three-Dimensional (3D) ElectroMagnetic (EM) patterns. This paper also concentrates on the design and analysis of a massive submillimeter wave Multiple-Input Multiple-Output (MIMO) (8 by 8) RPA and CDRA. Keywords: Submillimeter wave antenna, Millimeter wave antenna, Rectangular micro-strip patch antenna, Cylindrical dielectric resonator antenna, Massive submillimeter wave MIMO antenna, Applicationshttp://www.sciencedirect.com/science/article/pii/S2352864817302067
spellingShingle Madhuprana Goswami
Hyuck M. Kwon
Submillimeter wave communication versus millimeter wave communication
Digital Communications and Networks
title Submillimeter wave communication versus millimeter wave communication
title_full Submillimeter wave communication versus millimeter wave communication
title_fullStr Submillimeter wave communication versus millimeter wave communication
title_full_unstemmed Submillimeter wave communication versus millimeter wave communication
title_short Submillimeter wave communication versus millimeter wave communication
title_sort submillimeter wave communication versus millimeter wave communication
url http://www.sciencedirect.com/science/article/pii/S2352864817302067
work_keys_str_mv AT madhupranagoswami submillimeterwavecommunicationversusmillimeterwavecommunication
AT hyuckmkwon submillimeterwavecommunicationversusmillimeterwavecommunication