LoRa Microstrip Patch Antenna: A comprehensive review

This review offers an extensive examination of the evolving landscape of Long Range (LoRa) Microstrip Patch Antennas (MPAs), highlighting their crucial role in optimizing LoRa systems within the Internet of Things (IoT). As the demand for energy-efficient standards like LoRa grows with the expanding...

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Main Authors: S. Yahya, Muhammad, Soeung, Socheatra, Abdul Rahim, Sharul K, Musa, Umar, Ba Hashwan, Saeed S, Yunusa, Zainab, Hamzah, Shipun A
Format: Article
Language:English
Published: Elsevier 2024
Subjects:
Online Access:http://eprints.uthm.edu.my/12448/1/J17934_f23ea4ec8e50926f90e08fda0ed628f3.pdf
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author S. Yahya, Muhammad
Soeung, Socheatra
Abdul Rahim, Sharul K
Musa, Umar
Ba Hashwan, Saeed S
Yunusa, Zainab
Hamzah, Shipun A
author_facet S. Yahya, Muhammad
Soeung, Socheatra
Abdul Rahim, Sharul K
Musa, Umar
Ba Hashwan, Saeed S
Yunusa, Zainab
Hamzah, Shipun A
author_sort S. Yahya, Muhammad
collection UTHM
description This review offers an extensive examination of the evolving landscape of Long Range (LoRa) Microstrip Patch Antennas (MPAs), highlighting their crucial role in optimizing LoRa systems within the Internet of Things (IoT). As the demand for energy-efficient standards like LoRa grows with the expanding IoT market, this research becomes increasingly relevant. This comprehensive review, the first of its kind, serves as a foundational resource for researchers seeking to optimize LoRa systems within the IoT. The study has categorized these LoRa MPAs – including monopole, Planar Inverted F Antenna (PIFA), dipole, yagi-uda, and array – into single band, dual-band, multiband, and wearable antennas, thus providing substantial viewpoints on their diverse design architectures and performance characteristics. Through systematic tabulation, the review facilitates a thorough comparison of antenna advancements. Notably, the review addresses inherent challenges in LoRa MPAs, emphasizing critical aspects that necessitate attention, including the need for miniaturization and integration, advancements in substrate materials and fabrication techniques, and the imperative for reconfigurable and adaptive antennas. Various approaches to enhance antenna performance are explored, including the metamaterial incorporation, slot-based enhancements, Electromagnetic Band Gap (EBG), dielectric resonator antennas (DRAs), substrate material considerations, and corrugation techniques. Looking ahead, the paper explores the future trends and subtle considerations that are poised to shape the trajectory of LoRa MPAs. To the best of our knowledge, this paper represents the first comprehensive review on the multifaceted topic of LoRa MPAs, serving as a foundational resource for researchers in the field.
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spelling uthm.eprints-124482025-01-31T03:41:18Z http://eprints.uthm.edu.my/12448/ LoRa Microstrip Patch Antenna: A comprehensive review S. Yahya, Muhammad Soeung, Socheatra Abdul Rahim, Sharul K Musa, Umar Ba Hashwan, Saeed S Yunusa, Zainab Hamzah, Shipun A TK Electrical engineering. Electronics Nuclear engineering This review offers an extensive examination of the evolving landscape of Long Range (LoRa) Microstrip Patch Antennas (MPAs), highlighting their crucial role in optimizing LoRa systems within the Internet of Things (IoT). As the demand for energy-efficient standards like LoRa grows with the expanding IoT market, this research becomes increasingly relevant. This comprehensive review, the first of its kind, serves as a foundational resource for researchers seeking to optimize LoRa systems within the IoT. The study has categorized these LoRa MPAs – including monopole, Planar Inverted F Antenna (PIFA), dipole, yagi-uda, and array – into single band, dual-band, multiband, and wearable antennas, thus providing substantial viewpoints on their diverse design architectures and performance characteristics. Through systematic tabulation, the review facilitates a thorough comparison of antenna advancements. Notably, the review addresses inherent challenges in LoRa MPAs, emphasizing critical aspects that necessitate attention, including the need for miniaturization and integration, advancements in substrate materials and fabrication techniques, and the imperative for reconfigurable and adaptive antennas. Various approaches to enhance antenna performance are explored, including the metamaterial incorporation, slot-based enhancements, Electromagnetic Band Gap (EBG), dielectric resonator antennas (DRAs), substrate material considerations, and corrugation techniques. Looking ahead, the paper explores the future trends and subtle considerations that are poised to shape the trajectory of LoRa MPAs. To the best of our knowledge, this paper represents the first comprehensive review on the multifaceted topic of LoRa MPAs, serving as a foundational resource for researchers in the field. Elsevier 2024 Article PeerReviewed text en http://eprints.uthm.edu.my/12448/1/J17934_f23ea4ec8e50926f90e08fda0ed628f3.pdf S. Yahya, Muhammad and Soeung, Socheatra and Abdul Rahim, Sharul K and Musa, Umar and Ba Hashwan, Saeed S and Yunusa, Zainab and Hamzah, Shipun A (2024) LoRa Microstrip Patch Antenna: A comprehensive review. Alexandria Engineering Journal, 103. pp. 197-221.
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
S. Yahya, Muhammad
Soeung, Socheatra
Abdul Rahim, Sharul K
Musa, Umar
Ba Hashwan, Saeed S
Yunusa, Zainab
Hamzah, Shipun A
LoRa Microstrip Patch Antenna: A comprehensive review
title LoRa Microstrip Patch Antenna: A comprehensive review
title_full LoRa Microstrip Patch Antenna: A comprehensive review
title_fullStr LoRa Microstrip Patch Antenna: A comprehensive review
title_full_unstemmed LoRa Microstrip Patch Antenna: A comprehensive review
title_short LoRa Microstrip Patch Antenna: A comprehensive review
title_sort lora microstrip patch antenna a comprehensive review
topic TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.uthm.edu.my/12448/1/J17934_f23ea4ec8e50926f90e08fda0ed628f3.pdf
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