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Effective Rate Evaluation of RIS-Assisted Communications Using the Sums of Cascaded α-μ Random Variates

Long Kong, Yun Ai, Symeon Chatzinotas, Björn Ottersten

2021IEEE Access34 citationsDOIOpen Access PDF

Abstract

This paper begins with the characterization of the sum of M versions of cascaded α-μ (equivalently, N <sub xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">*</sub> (α-μ)) distributed random variates (RVs), and later on, explores the feasibility and applicability of the obtained results in the recent proposed reconfigurable intelligent surface (RIS)-assisted communications. More specifically, the sum of cascaded α-μ distributed RVs is exactly characterized by the probability density function (PDF) expressed in terms of the programmable multivariate Fox's H-function, and approximated with the mixture of Gaussian (MoG) distribution. The approximation accuracy is further validated by the Kolmogorov-Smirnov (KS) goodness of fit test. Based on the obtained statistical results, a promising application, i.e., RIS-assisted communication, is considered and evaluated from the effective rate perspective. The exact, asymptotic, and approximated effective rate are derived with closed-form expressions. Finally, our analytical results are further validated using the Monte-Carlo simulation, their accuracy is confirmed with the analytical error indicator. One can conclude that (i) the exact effective rate expression is complex in the manner of mathematical representation; (ii) the MoG-based effective rate expression is simple and provides a highly tight approximation to the exact expression, besides it indeed acts as a highly tight upper bound for the exact effective rate expression; and (iii) the MoG-based solution outperforms the multivariate Fox's H-function based approach with reducing complexity.

Topics & Concepts

Expression (computer science)Applied mathematicsFunction (biology)Representation (politics)Monte Carlo methodRandom variableComputer scienceGaussianProbability density functionAlgorithmMathematicsClosed-form expressionStatisticsMathematical analysisPhysicsPoliticsBiologyPolitical scienceEvolutionary biologyLawQuantum mechanicsProgramming languageAdvanced Wireless Communication TechnologiesCooperative Communication and Network CodingWireless Communication Security Techniques
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