In this paper, we have introduced the Mu-Eta fusion to compute wireless communication performance over Weibull fading and correlated interference. In contrast to typical fading models, the Weibull distribution provides with adjustable parameters to represent various NLOS environments. Correlated interference, typical in high-density environments, has a severe influence on system reliability. Transmissions performance analysis are presented in terms of throughput, BER, energy efficiency and secrecy capacity in an exact close form. The robustness of the presented model is confirmed by simulation and SDR results. Results indicate that Mu-Eta can achieve significantly higher throughput than the conventional schemes and the achieved throughput can be substantially superior with up to 36% higher throughput and 35% lower BER under high interference correlation. The framework is especially relevant to urban wireless systems, vehicular networks, and the future 5G/6G generations.
Upadhyay et al. (Wed,) studied this question.
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