Performance Analysis of Wireless-Powered Pinching Antenna Systems

Fuente: arXiv
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Hauptverfasser: Cao, Kunrui, Chen, Jingyu, Diamantoulakis, Panagiotis D., Zhou, Lei, Li, Xingwang, Liu, Yuanwei, Karagiannidis, George K.
Format: Preprint
Veröffentlicht: 2025
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author Cao, Kunrui
Chen, Jingyu
Diamantoulakis, Panagiotis D.
Zhou, Lei
Li, Xingwang
Liu, Yuanwei
Karagiannidis, George K.
author_facet Cao, Kunrui
Chen, Jingyu
Diamantoulakis, Panagiotis D.
Zhou, Lei
Li, Xingwang
Liu, Yuanwei
Karagiannidis, George K.
contents Pinching antenna system (PAS) serves as a groundbreaking paradigm that enhances wireless communications by flexibly adjusting the position of pinching antenna (PA) and establishing a strong line-of-sight (LoS) link, thereby reducing the free-space path loss. This paper introduces the concept of wireless-powered PAS, and investigates the reliability of wireless-powered PAS to explore the advantages of PA in improving the performance of wireless-powered communication (WPC) system. In addition, we derive the closed-form expressions of outage probability and ergodic rate for the practical lossy waveguide case and ideal lossless waveguide case, respectively, and analyze the optimal deployment of waveguides and user to provide valuable insights for guiding their deployments. The results show that an increase in the absorption coefficient and in the dimensions of the user area leads to higher in-waveguide and free-space propagation losses, respectively, which in turn increase the outage probability and reduce the ergodic rate of the wireless-powered PAS. However, the performance of wireless-powered PAS is severely affected by the absorption coefficient and the waveguide length, e.g., under conditions of high absorption coefficient and long waveguide, the outage probability of wireless-powered PAS is even worse than that of traditional WPC system. While the ergodic rate of wireless-powered PAS is better than that of traditional WPC system under conditions of high absorption coefficient and long waveguide. Interestingly, the wireless-powered PAS has the optimal time allocation factor and optimal distance between power station (PS) and access point (AP) to minimize the outage probability or maximize the ergodic rate. Moreover, the system performance of PS and AP separated at the optimal distance between PS and AP is superior to that of PS and AP integrated into a hybrid access point.
format Preprint
id arxiv_https___arxiv_org_abs_2511_03401
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Performance Analysis of Wireless-Powered Pinching Antenna Systems
Cao, Kunrui
Chen, Jingyu
Diamantoulakis, Panagiotis D.
Zhou, Lei
Li, Xingwang
Liu, Yuanwei
Karagiannidis, George K.
Signal Processing
H.1
Pinching antenna system (PAS) serves as a groundbreaking paradigm that enhances wireless communications by flexibly adjusting the position of pinching antenna (PA) and establishing a strong line-of-sight (LoS) link, thereby reducing the free-space path loss. This paper introduces the concept of wireless-powered PAS, and investigates the reliability of wireless-powered PAS to explore the advantages of PA in improving the performance of wireless-powered communication (WPC) system. In addition, we derive the closed-form expressions of outage probability and ergodic rate for the practical lossy waveguide case and ideal lossless waveguide case, respectively, and analyze the optimal deployment of waveguides and user to provide valuable insights for guiding their deployments. The results show that an increase in the absorption coefficient and in the dimensions of the user area leads to higher in-waveguide and free-space propagation losses, respectively, which in turn increase the outage probability and reduce the ergodic rate of the wireless-powered PAS. However, the performance of wireless-powered PAS is severely affected by the absorption coefficient and the waveguide length, e.g., under conditions of high absorption coefficient and long waveguide, the outage probability of wireless-powered PAS is even worse than that of traditional WPC system. While the ergodic rate of wireless-powered PAS is better than that of traditional WPC system under conditions of high absorption coefficient and long waveguide. Interestingly, the wireless-powered PAS has the optimal time allocation factor and optimal distance between power station (PS) and access point (AP) to minimize the outage probability or maximize the ergodic rate. Moreover, the system performance of PS and AP separated at the optimal distance between PS and AP is superior to that of PS and AP integrated into a hybrid access point.
title Performance Analysis of Wireless-Powered Pinching Antenna Systems
topic Signal Processing
H.1
url https://arxiv.org/abs/2511.03401