eprintid: 20070 rev_number: 2 eprint_status: archive userid: 1 dir: disk0/00/02/00/70 datestamp: 2024-06-04 14:19:48 lastmod: 2024-06-04 14:19:48 status_changed: 2024-06-04 14:16:32 type: conference_item metadata_visibility: show creators_name: Rahman, M.A. creators_name: Alâ��Bawri, S.S. creators_name: Islam, M.T. creators_name: Singh, M.J. creators_name: Saha, D. creators_name: Haque, M.A. title: A Compact Multiband Microstrip Antenna Design for 5G IOT and Satellite Communication Applications ispublished: pub keywords: 5G mobile communication systems; Directional patterns (antenna); Internet of things; Microstrip antennas; Microwave antennas; Radiation efficiency; Satellite antennas; Satellite communication systems; Satellites; Slot antennas, 5g IOT; Antenna design; C-bands; Communication application; Complete coverages; Ka band; Micro-strip patch antennas; Microstrip-patch antenna; Multi band; Satellite communications, Bandwidth note: cited By 0; Conference of 8th International Conference on Space Science and Communication, IconSpace2023 ; Conference Date: 3 October 2023 Through 4 October 2023; Conference Code:310269 abstract: In this study, a microstrip patch antenna was designed to enable complete coverage of satellite communication. The antenna is capable of covering almost four bands, including S, C, Ka, and Q/V bands. The bandwidth achieved for these bands is relatively large, with the maximum bandwidth of 15.6 GHz achieved at the Q/V band and 11.4 GHz achieved at the Ka band. In the microwave range, the S and C bands have a bandwidth of 2.1 GHz, which is considerable. The antenna achieves a maximum gain of 9.1 dBi at the Q/V band. Moreover, the efficiency of the antenna is remarkably high, with almost 99 efficiency achieved at the Ka band and above 90 efficiency achieved for other bands. The proposed antenna also has a good radiation pattern, and it is considered a suitable contender for the satellite communication system and 5G IOT applications. © The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2024. date: 2024 official_url: https://www.scopus.com/inward/record.uri?eid=2-s2.0-85190238869&doi=10.1007%2f978-981-97-0142-1_13&partnerID=40&md5=8606fb2361ee3fe6fce66c9d74f8a67a id_number: 10.1007/978-981-97-0142-1₁₃ full_text_status: none publication: Springer Proceedings in Physics volume: 303 pagerange: 125-132 refereed: TRUE citation: Rahman, M.A. and Alâ��Bawri, S.S. and Islam, M.T. and Singh, M.J. and Saha, D. and Haque, M.A. (2024) A Compact Multiband Microstrip Antenna Design for 5G IOT and Satellite Communication Applications. In: UNSPECIFIED.