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Wireless-Fed Pinching-Antenna Systems with Horn Antennas

Information Theory 2026-02-25 v1 math.IT

Abstract

Pinching-antenna systems have recently emerged as a promising solution for enhancing coverage in high-frequency wireless communications by guiding signals through dielectric waveguides and radiating them via position-adjustable antennas. However, their practical deployment is fundamentally constrained by waveguide attenuation and line-installation requirements, which limit the achievable coverage range. To address this challenge, this paper investigates a wireless-fed pinching-antenna architecture that employs highly directional horn antennas to enable efficient coverage extension. Specifically, a full-duplex amplify-and-forward relay equipped with horn antennas is introduced between the base station and the waveguide input, which significantly improves the link budget in high-frequency bands while effectively eliminating self-interference. On this basis, we formulate a total power minimization problem subject to a quality-of-service constraint at the user equipment, involving the joint optimization of the pinching-antenna position, the relay amplification gain, and the base station transmit power. By exploiting the structure of the end-to-end signal-to-noise ratio, the optimal pinching-antenna position is first obtained in closed form by balancing waveguide attenuation and free-space path loss. Subsequently, closed-form expressions for the optimal relay gain and transmit power are derived. Numerical results demonstrate that the proposed scheme substantially outperforms conventional systems without relaying and relay-assisted transmission with fixed antennas in terms of total power consumption.

Keywords

Cite

@article{arxiv.2602.21167,
  title  = {Wireless-Fed Pinching-Antenna Systems with Horn Antennas},
  author = {Hao Feng and Ming Zeng and Ebrahim Bedeer and Xingwang Li and Octavia A. Dobre and Zhiguo Ding},
  journal= {arXiv preprint arXiv:2602.21167},
  year   = {2026}
}

Comments

4 pages; 1 figure; submitted to IEEE journals