Abstract

This study derives in the closed-form the probability density function and characteristic function of the ratio of two products of arbitrary number of Nakagami-m random variables. Then, the resulting mathematical framework is applied to analyse and gain insights into the bit error rate performance of the dual-hop channel state information-assisted amplify-and-forward relaying system in the presence of co-channel interference. All analytical results are corroborated by Monte–Carlo simulation results and they are shown to be efficient tools to evaluate system performance.

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