This letter introduces a novel wireless powered communication system, referred to as a wireless powered pinching-antenna network (WPPAN), utilizing a single waveguide with pinching antennas to address the double near-far problem inherent in wireless powered networks. In the proposed WPPAN, users harvest energy from spatially distributed pinching antennas in the downlink and use the collected power to transmit messages in the uplink. Furthermore, to manage the combinatorial complexity associated with activating the pinching antennas, we propose three approaches of varying complexity to simplify the original resource allocation problem and then solve it efficiently using convex optimization methods. Simulation results confirm that the proposed WPPAN system effectively mitigates the double near-far problem by providing antenna resources closer to the users, thereby enhancing both downlink energy harvesting and uplink data transmission.
@article{arxiv.2505.12403,
title = {Resolving the Double Near-Far Problem via Wireless Powered Pinching-Antenna Networks},
author = {Vasilis K. Papanikolaou and Gui Zhou and Brikena Kaziu and Ata Khalili and Panagiotis D. Diamantoulakis and George K. Karagiannidis and Robert Schober},
journal= {arXiv preprint arXiv:2505.12403},
year = {2025}
}