Orbital angular momentum for wireless communications: key performance indicators and performance comparison
Orbital angular momentum for wireless communications: key performance indicators and performance comparison
Orbital angular momentum (OAM) is an intrinsic property of electromagnetic (EM) waves that has opened new possibilities for enhancing the capacity of wireless communications. Consequently, it has garnered significant attention in recent years. For wireless communications, antenna arrays are the most effective and widely studied approaches for OAM-wave generation. Various types of antenna arrays have been explored in research and development; however, a comprehensive comparison of these arrays remains lacking. This paper addresses this gap by first reviewing the various types of phased arrays that have been considered for OAM generation in the literature. Subsequently, it addresses the key performance indicators (KPIs) of the antenna arrays forOAM-wave generation. These KPIs include directivity, the largest producible OAM-mode (LPM), OAM-mode multiplexing capability, divergence angle, and mode purity. Based on the KPIs, a comparative analysis is conducted across several types of antenna arrays, including uniform square arrays (USA), uniform circular arrays (UCA), three-dimensional (3D) helical circular arrays (HCA), 3D helical circular sub-arrays (HCSA), and concentric UCAs (CUCA), under various settings. The study highlights the advantages and limitations of each antenna array type and examines how different parameters inuence their performance.
6G communications, antenna array, directivity, divergence angle, key performance indicators, OAM-mode, orbital angular momentum (OAM), phased array, purity, Wireless communications
80889-80913
Wang, Zihao
f05f74e3-c8ad-4821-befc-e2a5093f057e
El-Hajjar, Mohammed
3a829028-a427-4123-b885-2bab81a44b6f
Yang, Lie-Liang
ae425648-d9a3-4b7d-8abd-b3cfea375bc7
7 May 2025
Wang, Zihao
f05f74e3-c8ad-4821-befc-e2a5093f057e
El-Hajjar, Mohammed
3a829028-a427-4123-b885-2bab81a44b6f
Yang, Lie-Liang
ae425648-d9a3-4b7d-8abd-b3cfea375bc7
Wang, Zihao, El-Hajjar, Mohammed and Yang, Lie-Liang
(2025)
Orbital angular momentum for wireless communications: key performance indicators and performance comparison.
IEEE Access, 13, .
(doi:10.1109/ACCESS.2025.3567732).
Abstract
Orbital angular momentum (OAM) is an intrinsic property of electromagnetic (EM) waves that has opened new possibilities for enhancing the capacity of wireless communications. Consequently, it has garnered significant attention in recent years. For wireless communications, antenna arrays are the most effective and widely studied approaches for OAM-wave generation. Various types of antenna arrays have been explored in research and development; however, a comprehensive comparison of these arrays remains lacking. This paper addresses this gap by first reviewing the various types of phased arrays that have been considered for OAM generation in the literature. Subsequently, it addresses the key performance indicators (KPIs) of the antenna arrays forOAM-wave generation. These KPIs include directivity, the largest producible OAM-mode (LPM), OAM-mode multiplexing capability, divergence angle, and mode purity. Based on the KPIs, a comparative analysis is conducted across several types of antenna arrays, including uniform square arrays (USA), uniform circular arrays (UCA), three-dimensional (3D) helical circular arrays (HCA), 3D helical circular sub-arrays (HCSA), and concentric UCAs (CUCA), under various settings. The study highlights the advantages and limitations of each antenna array type and examines how different parameters inuence their performance.
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FINAL Article
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Orbital_Angular_Momentum_for_Wireless_Communications_Key_Performance_Indicators_and_Performance_Comparison
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Accepted/In Press date: 4 May 2025
Published date: 7 May 2025
Keywords:
6G communications, antenna array, directivity, divergence angle, key performance indicators, OAM-mode, orbital angular momentum (OAM), phased array, purity, Wireless communications
Identifiers
Local EPrints ID: 501928
URI: http://eprints.soton.ac.uk/id/eprint/501928
ISSN: 2169-3536
PURE UUID: 546eca64-4024-4b16-8867-ee144b953ccf
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Date deposited: 12 Jun 2025 16:35
Last modified: 04 Sep 2025 02:13
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Author:
Zihao Wang
Author:
Mohammed El-Hajjar
Author:
Lie-Liang Yang
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