A Survey of Pinching-Antenna Systems (PASS)

Fuente: arXiv
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Main Authors: Liu, Yuanwei, Jiang, Hao, Gan, Xu, Xu, Xiaoxia, Guo, Jia, Wang, Zhaolin, Ouyang, Chongjun, Mu, Xidong, Ding, Zhiguo, Nallanathan, Arumugam, Dobre, Octavia A., Karagiannidis, George K., Schober, Robert
Format: Preprint
Published: 2026
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author Liu, Yuanwei
Jiang, Hao
Gan, Xu
Xu, Xiaoxia
Guo, Jia
Wang, Zhaolin
Ouyang, Chongjun
Mu, Xidong
Ding, Zhiguo
Nallanathan, Arumugam
Dobre, Octavia A.
Karagiannidis, George K.
Schober, Robert
author_facet Liu, Yuanwei
Jiang, Hao
Gan, Xu
Xu, Xiaoxia
Guo, Jia
Wang, Zhaolin
Ouyang, Chongjun
Mu, Xidong
Ding, Zhiguo
Nallanathan, Arumugam
Dobre, Octavia A.
Karagiannidis, George K.
Schober, Robert
contents The pinching-antenna system (PASS), recently proposed as a flexible-antenna technology, has been regarded as a promising solution for several challenges in next-generation wireless networks. It provides large-scale antenna reconfiguration, establishes stable line-of-sight links, mitigates signal blockage, and exploits near-field advantages through its distinctive architecture. This article aims to present a comprehensive overview of the state of the art in PASS. The fundamental principles of PASS are first discussed, including its hardware architecture, circuit and physical models, and signal models. Several emerging PASS designs, such as segmented PASS (S-PASS), center-fed PASS (C-PASS), and multi-mode PASS (M-PASS), are subsequently introduced, and their design features are discussed. In addition, the properties and promising applications of PASS for wireless sensing are reviewed. On this basis, recent progress in the performance analysis of PASS for both communications and sensing is surveyed, and the performance gains achieved by PASS are highlighted. Existing research contributions in optimization and machine learning are also summarized, with the practical challenges of beamforming and resource allocation being identified in relation to the unique transmission structure and propagation characteristics of PASS. Finally, several variants of PASS are presented, and key implementation challenges that remain open for future study are discussed.
format Preprint
id arxiv_https___arxiv_org_abs_2601_18927
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A Survey of Pinching-Antenna Systems (PASS)
Liu, Yuanwei
Jiang, Hao
Gan, Xu
Xu, Xiaoxia
Guo, Jia
Wang, Zhaolin
Ouyang, Chongjun
Mu, Xidong
Ding, Zhiguo
Nallanathan, Arumugam
Dobre, Octavia A.
Karagiannidis, George K.
Schober, Robert
Signal Processing
The pinching-antenna system (PASS), recently proposed as a flexible-antenna technology, has been regarded as a promising solution for several challenges in next-generation wireless networks. It provides large-scale antenna reconfiguration, establishes stable line-of-sight links, mitigates signal blockage, and exploits near-field advantages through its distinctive architecture. This article aims to present a comprehensive overview of the state of the art in PASS. The fundamental principles of PASS are first discussed, including its hardware architecture, circuit and physical models, and signal models. Several emerging PASS designs, such as segmented PASS (S-PASS), center-fed PASS (C-PASS), and multi-mode PASS (M-PASS), are subsequently introduced, and their design features are discussed. In addition, the properties and promising applications of PASS for wireless sensing are reviewed. On this basis, recent progress in the performance analysis of PASS for both communications and sensing is surveyed, and the performance gains achieved by PASS are highlighted. Existing research contributions in optimization and machine learning are also summarized, with the practical challenges of beamforming and resource allocation being identified in relation to the unique transmission structure and propagation characteristics of PASS. Finally, several variants of PASS are presented, and key implementation challenges that remain open for future study are discussed.
title A Survey of Pinching-Antenna Systems (PASS)
topic Signal Processing
url https://arxiv.org/abs/2601.18927