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Prof. Shlomi Arnon

Analysis of the performance of a wireless optical multi-input to multi-output communication system

Denis Bushuev, Shlomi Arnon

We investigate robust optical wireless communication in a highly scattering propagation medium using multielement optical detector arrays. The communication setup consists of synchronized multiple transmitters that send information to a receiver array and an atmospheric propagation channel. The mathematical model that best describes this scenario is multi-input to multi-output communication through stochastic slow changing channels. In this model, signals from m transmitters are received by n receiver-detectors. The channel transfer function matrix is G, and its size is n × m. Gij is the transfer function from transmitter i to detector j, and m ≥ n. We adopt a quasi-stationary approach in which the channel time variation has a negligible effect on communication performance over a burst. The G matrix is calculated on the basis of the optical transfer function of the atmospheric channel (composed of aerosol and turbulence elements) and the receiver's optics. In this work we derive a performance model using environmental data, such as documented turbulence and aerosol models and noise statistics. We also present the results of simulations conducted for the proposed detection algorithm.

Publication language English
Pages 1722-1730
Journal Journal of the Optical Society of America A: Optics and Image Science, and Vision
Volume 23
Issue number 7
Publication status Published - 01.01.2006

ASJC Scopus subject areas

Electronic, Optical and Magnetic Materials
Atomic and Molecular Physics, and Optics
Computer Vision and Pattern Recognition
Access to Document
10.1364/JOSAA.23.001722
Other files and links
Link to publication in Scopus