Evaluation of the Beamforming Performance of a 4-Port Multi-Mode Antenna for Integrated Sensing and Communication Applications

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

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OriginalspracheEnglisch
Titel des SammelwerksEuropean Microwave Week 2024, EuMW 2024 - Conference Proceedings; EuMC 2024
Untertitel54th European Microwave Conference
ISBN (elektronisch)978-2-87487-077-4
PublikationsstatusVeröffentlicht - 24 Sept. 2024
Veranstaltung2024 54th European Microwave Conference, EuMC 2024 - Held as Part of 27th European Microwave Week, EuMW 2024 - Paris, Frankreich
Dauer: 22 Sept. 202427 Sept. 2024
https://www.eumweek.com/

Abstract

A comparison between a multi-mode multi-port antenna (M³PA) and crossed dipole antenna is carried out with special emphasis on beamforming performance in single and multi-beam scenarios for e.g., Integrated Sensing and Communication (ISAC) applications. A M³PA with 4 ports is generated by exploiting degeneracy based on symmetry. The M³PA array is compared to a crossed dipole array at millimeter wave frequencies using a rectangular array topology. Advantages of the M³PA array in wide-angle steering scenarios over crossed dipole arrays are evaluated.

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Evaluation of the Beamforming Performance of a 4-Port Multi-Mode Antenna for Integrated Sensing and Communication Applications. / Hahn, Tim; Manteuffel, Dirk.
European Microwave Week 2024, EuMW 2024 - Conference Proceedings; EuMC 2024: 54th European Microwave Conference. 2024.

Publikation: Beitrag in Buch/Bericht/Sammelwerk/KonferenzbandAufsatz in KonferenzbandForschungPeer-Review

Hahn, T & Manteuffel, D 2024, Evaluation of the Beamforming Performance of a 4-Port Multi-Mode Antenna for Integrated Sensing and Communication Applications. in European Microwave Week 2024, EuMW 2024 - Conference Proceedings; EuMC 2024: 54th European Microwave Conference. 2024 54th European Microwave Conference, EuMC 2024 - Held as Part of 27th European Microwave Week, EuMW 2024, Paris, Frankreich, 22 Sept. 2024. https://doi.org/10.23919/EuMC61614.2024.10732667
Hahn, T., & Manteuffel, D. (2024). Evaluation of the Beamforming Performance of a 4-Port Multi-Mode Antenna for Integrated Sensing and Communication Applications. In European Microwave Week 2024, EuMW 2024 - Conference Proceedings; EuMC 2024: 54th European Microwave Conference https://doi.org/10.23919/EuMC61614.2024.10732667
Hahn T, Manteuffel D. Evaluation of the Beamforming Performance of a 4-Port Multi-Mode Antenna for Integrated Sensing and Communication Applications. in European Microwave Week 2024, EuMW 2024 - Conference Proceedings; EuMC 2024: 54th European Microwave Conference. 2024 doi: 10.23919/EuMC61614.2024.10732667
Hahn, Tim ; Manteuffel, Dirk. / Evaluation of the Beamforming Performance of a 4-Port Multi-Mode Antenna for Integrated Sensing and Communication Applications. European Microwave Week 2024, EuMW 2024 - Conference Proceedings; EuMC 2024: 54th European Microwave Conference. 2024.
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AU - Manteuffel, Dirk

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N2 - A comparison between a multi-mode multi-port antenna (M³PA) and crossed dipole antenna is carried out with special emphasis on beamforming performance in single and multi-beam scenarios for e.g., Integrated Sensing and Communication (ISAC) applications. A M³PA with 4 ports is generated by exploiting degeneracy based on symmetry. The M³PA array is compared to a crossed dipole array at millimeter wave frequencies using a rectangular array topology. Advantages of the M³PA array in wide-angle steering scenarios over crossed dipole arrays are evaluated.

AB - A comparison between a multi-mode multi-port antenna (M³PA) and crossed dipole antenna is carried out with special emphasis on beamforming performance in single and multi-beam scenarios for e.g., Integrated Sensing and Communication (ISAC) applications. A M³PA with 4 ports is generated by exploiting degeneracy based on symmetry. The M³PA array is compared to a crossed dipole array at millimeter wave frequencies using a rectangular array topology. Advantages of the M³PA array in wide-angle steering scenarios over crossed dipole arrays are evaluated.

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