Skip to content
Preprint

Statistical Channel Model for FSO Systems Assisted by a UAV-Mounted IRS

Aug 2026 · 0 citations · 18 references
Engineering

Abstract

Integrating optical intelligent reflecting surfaces (IRSs) into aerial platforms, such as unmanned aerial vehicles (UAVs), has been proposed to relax the line-of-sight (LoS) constraint, extend coverage, and enhance deployment flexibility of free space optical (FSO) systems. However, misalignment errors induced by the UAV hovering, in both position and orientation, may degrade connectivity and impair the end-to-end channel quality. In this paper, we develop novel expressions for the electric fields incident on and reflected by an optical IRS, based on the Huygens-Fresnel principle. The resulting expressions are applicable for any combination of incident and reflected propagation directions. Building on this framework, we derive a closed-form statistical channel model that captures the geometric and misalignment losses of an FSO link assisted by a UAV-mounted IRS in the presence of random UAV fluctuations. In particular, we develop a statistical model for the beam misalignment at the receiver lens, assuming Gaussian fluctuations in both the UAV position and orientation. The proposed analytical model is validated through Monte Carlo (MC) simulations and is further used to provide practical design guidelines regarding the optimal placement of the UAV-mounted IRS for the minimization of the outage probability.

View source

Similar papers

2026

Channel Modeling for Quasi Static Multistage Optical Intelligent Reflecting Surfaces

Free-space optical (FSO) communication has emerged as a promising technology, but its performance is highly dependent on line-of-sight (LOS) conditions. To address this limitation, we propose a multistage optical intelligent reflecting surface (OIRS)-assisted FSO communication system, which utilizes multiple OIRS nodes...

Shunyuan Shang, Emna Zedini, A. Kammoun et al. · 0 citations
Open access Aug 2026

Comprehensive Channel Modeling of UAV-Assisted FSO Systems under Fog, AoA Fluctuations, and Pointing Errors

This paper investigates the outage performance of unmanned aerial vehicle (UAV)-assisted free-space optical (FSO) communication systems operating in foggy channels. The analysis jointly accounts for atmospheric turbulence, fog-induced attenuation, generalized Beckmann-distributed pointing errors (PE), and angle-of-arri...

Mahdi Ataee, S. M. Sadough, Khadijeh Ali Mahmoodi · 0 citations
Preprint Oct 2026

Communication and Sensing Coverage of UAV Corridor under Beam Misalignment Error

In this paper, a unmanned aerial vehicle (UAV) corridor-assisted network is proposed to study the joint sensing and communication (JCAS) coverage probability (CP) of a terrestrial (BS) equipped with a realistic three-dimensional (3D) 3GPP antenna pattern. By employing the 3D binomial point process (BPP) to model the sp...

Harris K. Armeniakos, Petros S. Bithas, Konstantinos N. Maliatsos et al. · 0 citations
Open access Nov 2025

Analysis of Beam Misalignment Effect in Inter-Satellite FSO Links

Free-space optical (FSO) communication has emerged as a promising technology for inter-satellite links (ISLs) due to its high data rate, low power consumption, and reduced interference. In inter-satellite FSO systems, pointing error is the dominant channel impairment, arising from stochastic jitter and deterministic mi...

Minje Kim, Hongjae Nam, Beomsoo Ko et al. · 1 citation
Open access Sep 2026

Secrecy outage and capacity analysis for UAV-assisted IRS-aided G2G system

The integration of intelligent reflecting surfaces (IRS) with unmanned aerial vehicle (UAV) is rapidly emerging as a groundbreaking approach to enhancing the performance of 5G and beyond (5G+) wireless networks. This paper considers UAV-assisted-IRS-aided ground-to-ground (G2G) communication (UA-IRS-G2G) for improv...

Nikita Goel, Pankaj Kumar, Sandesh Jain et al. · 0 citations
Aug 2026

Performance evaluation of IRS-assisted FSO systems with RSMA: effects of atmospheric turbulence and misalignment errors

This paper investigates the performance of an intelligent reflecting surface (IRS)-assisted free-space optical (FSO) communication system employing rate-splitting multiple access. The FSO channel is modeled using the Gamma–Gamma fading distribution while accounting for pointing errors and supporting both heterodyne det...

Aswini Krishnan, Surendar Maruthu · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.