Reconfigurable intelligent surface-assisted free-space optical communication system under the influence of signal blockage for smart-city applications
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Date
2022
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Publisher
Optica Publishing Group (formerly OSA)
Abstract
Atmospheric turbulence and pointing errors represent substantial hurdles to free-space optical communications (FSOs), impeding their practical design. The reconfigurable intelligent surface (RIS) is an emerging technology that enables reflective radio transmission conditions for next-generation 5G/6G wireless frameworks by intelligently adjusting the beam in the desired direction using low-cost inactive reflecting elements. In this paper, we proposed an RIS-assisted FSO system for mitigating the effects of atmospheric turbulence, pointing errors, and communication system signal blockage. The probability density function and cumulative distribution functions of an FSO system composed of N-RIS elements are evaluated in a free-space environment that contains obstructions. We derived closed-form expressions for the proposed system's bit error rate (BER), outage probability, and channel capacity. The proposed system's performance is analyzed in terms of BER, outage probability, and channel capacity under various weather conditions, pointing errors, and signal blockage. The results are plotted as a function of number of RIS elements and average signal-to-noise ratio. The proposed system will be beneficial in smart-city applications since it will provide reliable connectivity in urban environments with a high population density and high-rise buildings. © 2022 Optica Publishing Group
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Keywords
5G mobile communication systems, Atmospheric thermodynamics, Atmospheric turbulence, Channel capacity, Distribution functions, Errors, Fading (radio), Optical communication, Population statistics, Probability density function, Signal to noise ratio, Tall buildings, Bit-error rate, Channel's capacity, Free Space Optical communication, Free space optical communication systems, Free-space optical communications systems, Outage probability/capacity, Pointing errors, Reconfigurable, Signal blockage, Surface elements, Bit error rate
Citation
Applied Optics, 2022, 61, 20, pp. 5957-5964
