Accurate Approximation to Channel Distributions of Cascaded RIS-Aided Systems With Phase Errors Over Nakagami-m Channels


Zhakipov Z. Rabie K.M. Li X. Nauryzbayev G.
1 May 2023Institute of Electrical and Electronics Engineers Inc.

IEEE Wireless Communications Letters
2023#12Issue 5922 - 926 pp.

Reconfigurable intelligent surfaces (RISs) are a promising technology foreseen to drive the development of beyond-fifth-generation (B5G) wireless networks. This letter proposes a novel accurate approximation to the channel distribution of cascaded RIS-aided wireless networks, with a reasonable assumption of phase errors, over Nakagami- m fading channels. Using the approximation, the probability density function (PDF) and outage probability (OP) expressions are derived for the end-to-end cascaded RIS-aided communication. Obtained PDF and OP formulas are valid for any number of cascaded RISs, n , and reflecting elements per individual RIS, N. The approximation accuracy is validated using the Kolmogorov-Smirnov goodness-of-fit test. Analytical results are verified by Monte Carlo simulations under different system parameters. Finally, derived expressions have been used to illustrate the impact of various important system parameters on the outage performance of the proposed system.

Accurate approximation , channel distribution , outage probability (OP) , reconfigurable intelligent surface (RIS)

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Nazarbayev University, School of Engineering and Digital Sciences, Astana, Z05H0K3, Kazakhstan
Manchester Metropolitan University, Department of Engineering, Manchester, M15 6BH, United Kingdom
Henan Polytechnic University, School of Physics and Electronic Information Engineering, Jiaozuo, 454000, China

Nazarbayev University
Manchester Metropolitan University
Henan Polytechnic University

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