Optical Wireless Communication

Publishing Model:
ISSN:
ISSN: 5 Articles Required
Optical Wireless Communication is a peer-reviewed international journal dedicated to the rapid dissemination of high-quality research on theory, design, implementation, and applications of optical wireless communication systems.
DOI Prefix: 10.62762/OWC

Journal Metrics

-
Impact Factor
-
CiteScore

Recent Articles

Open Access | Research Article | 15 August 2026
Application of Region Growing Algorithm in Hartmann Wavefront Reconstruction
Optical Wireless Communication | Volume 1, Issue 1: 44-59, 2026 | DOI: 10.62762/OWC.2026.960227
Abstract
The Shack-Hartmann wavefront sensor measures wavefront slopes by analyzing the displacement of focal spots formed by a microlens array. Based on these slope measurements, wavefront reconstruction can be achieved by solving the difference equations that relate slope to phase. A wavefront reconstruction algorithm based on the region-growing method is proposed. Numerical simulations are conducted to compare its performance with the Southwell method for reconstructing various simulated wavefronts. The noise resistance of the algorithms was analyzed by introducing additive white Gaussian noise, and experimental results further validated the effectiveness of the proposed method. The findings indic... More >

Graphical Abstract
Application of Region Growing Algorithm in Hartmann Wavefront Reconstruction
Open Access | Research Article | 08 August 2026
A Modified IRS Channel Model for MIMO Optical Wireless Communications with Geometric Constraints and Alignment Errors
Optical Wireless Communication | Volume 1, Issue 1: 30-43, 2026 | DOI: 10.62762/OWC.2026.926601
Abstract
Optical wireless communication (OWC) has emerged as a promising technology for high-speed indoor wireless access. Recently, mirror-based intelligent reflecting surface (IRS) has been introduced to OWC to enhance communication performance. However, traditional radio frequency IRS channel models fail to adapt optical features of OWC, and existing ideal optical models neglect some physical imperfections, leading to inaccurate performance evaluations in real-world deployments. To address this problem, this paper proposes a modified and more realistic IRS channel model. Distinct from ideal IRS channel, the proposed model employs a differential summation method to mathematically incorporate both g... More >

Graphical Abstract
A Modified IRS Channel Model for MIMO Optical Wireless Communications with Geometric Constraints and Alignment Errors
Open Access | Review Article | 02 July 2026
Research Progress on Propagation of Vortex Beams in Atmospheric Turbulence
Optical Wireless Communication | Volume 1, Issue 1: 4-29, 2026 | DOI: 10.62762/OWC.2026.800222
Abstract
Vortex beams carrying orbital angular momentum enable a new multiplexing dimension for optical wireless communications. However, atmospheric turbulence induces beam broadening, intensity scintillation, beam wander, angle-of-arrival fluctuations, and OAM crosstalk, degrading propagation performance. This review summarizes the fundamental theories of vortex beams and atmospheric turbulence, analyzes turbulence-induced effects, and surveys domestic and international research progress, introduces representative research achievements of the team from Xi'an University of Technology, and finally prospects the future development directions of this field. More >

Graphical Abstract
Research Progress on Propagation of Vortex Beams in Atmospheric Turbulence
Open Access | Editorial | 09 May 2026
Inaugural Editorial for the Optical Wireless Communication
Optical Wireless Communication | Volume 1, Issue 1: 1-3, 2026 | DOI: 10.62762/OWC.2026.932497
Abstract
Presents the introductory editorial for the inaugural issue of this title. More >

Journal Statistics

9
Authors
1
Countries / Regions
4
Articles
Scopus: 0
Citations
2026
Published Since
781
Article Views
259
Article Downloads
Optical Wireless Communication
Optical Wireless Communication
eISSN: 5 Articles Required
Crossref
Crossref
Member of Crossref
Visit Crossref →