Performance analysis of a RIS-assisted RoFSO communication system over Malaga distribution for smart city applications
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Date
2023
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Publisher
Optica Publishing Group (formerly OSA)
Abstract
Radio over free space optics (RoFSO) is one of the potential technologies that can satisfy the requirements of 5G services in a smart city. However, as RoFSO is line-of-sight (LOS) communication, one of its limitations is the occurrence of a skip zone in the targeted areas. In this work, a reconfigurable intelligent surface (RIS) is proposed as the solution to overcome this connection difficulty, which prevents signal blocking by generating LOS connections. These RIS modules extend the communication channel coverage, making it more intelligent and controllable. The performance analysis based on outage probability, ergodic channel capacity, and bit error rate has been performed using heterodyne detection. Malaga distribution has been used to model atmospheric turbulence. The exact closed-form expressions of the probability density function and cumulative distribution function of the end-to-end signal-to-noise ratio are derived. Exploiting these derived statistics, system performance is investigated through the ergodic channel capacity, outage probability, and average bit error rate for M-ary quadrature amplitude modulation and two binary modulation schemes: non-coherent binary frequency-shift keying and coherent binary phase-shift keying. Numerical results are compared among different turbulence conditions, link lengths, and scattering errors. The results show that the proposed RIS-assisted RoFSO technology has the potential to be effective for 5G smart city applications. © 2023 Optica Publishing Group.
Description
Keywords
5G mobile communication systems, Atmospheric turbulence, Bit error rate, Channel capacity, Error correction, Error statistics, Heterodyne detection, Probability density function, Signal to noise ratio, Smart city, Communications systems, Ergodic channel capacity, Freespace optics, Line of Sight, Line of sight communications, Optic communication, Performances analysis, Potential technologies, Reconfigurable, Signal blocking, Distribution functions, amplitude modulation, article, optics, probability, signal noise ratio
Citation
Applied Optics, 2023, 62, 19, pp. 5325-5333
