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In this paper,we investigate the performance of the two-way Amplify-and-Forward(AF) relaying systems in an interference-limited Rayleigh fading environment.More specifically,assuming the presence of Rayleigh faded multiple interferers at the AF relay and noisy sources,an approximate closed-form expression for the Overall Outage Probability(OOP) and an integral expression for the average Symbol Error Probability(SEP) are derived.The analysis results are verified through com-parison with the Monte Carlo simulation results.
In this paper, we investigate the performance of the two-way Amplify-and-Forward (AF) relaying systems in an interference-limited Rayleigh fading environment. More specifically, assuming the presence of Rayleigh faded multiple interferers at the AF relay and noisy sources , an approximate closed-form expression for the Overall Outage Probability (OOP) and an integral expression for the average Symbol Error Probability (SEP) are derived. The analysis results are verified through com-parison with the Monte Carlo simulation results.