ADVANCED UNCERTAINTY QUANTIFICATION AND MULTI-OBJECTIVE OPTIMIZATION FRAMEWORKS FOR ENHANCING RESILIENCE AND EFFICIENCY IN INTEGRATED RENEWABLE ENERGY SYSTEMS
Résumé fourni par la source
The increased interdependency among the renewable energy source, energy storage systems, and computer-based control systems has transformed the power grid of today into a high-tech, adaptive network, but now increasingly susceptible to stochastic fluctuation and cascading uncertainties. This paper presents a next-generation Uncertainty Quantification and MultiObjective Optimization (UQ-MOO) approach to improving Integrated Renewable Energy Systems' resilience, adaptability, and efficiency. The study provides an answer to a relevant question: How can uncertainty, instead of being an obstacle, be utilized intentionally to enhance the adaptive intelligence and resilience of renewable power grids? The envisioned framework combines state-of-the-art probabilistic analysis, such as Bayesian inference, Monte Carlo simulation, and Polynomial Chaos Expansion, with multi-objective evolutionary optimization and reinforcement learning-based decision intelligence to support real-time, data-driven operation management. When brought to hybrid solar–wind–hydrogen microgrid systems, the approach registered a 36% system reliability improvement, 29% gain in energy efficiency, and 41% loss reduction in volatility-tolerant performance over traditional optimization algorithms. Aside from computational gain, the result sets a new standard in renewable energy research: uncertainty is no longer addressed as a constraint but as a dynamic facilitator of resilience and intelligent adaptation. Finally, this book is leading the way in smart, self-adjusting energy systems, with uncertainty science, optimization theory, and green system engineering coming together to create an unbreakable net-zero energy future.
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Contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- ADVANCED UNCERTAINTY QUANTIFICATION AND MULTI-OBJECTIVE OPTIMIZATION FRAMEWORKS FOR ENHANCING RESILIENCE AND EFFICIENCY IN INTEGRATED RENEWABLE ENERGY SYSTEMS
- Date Crossref
- 07/09/2026
- Éditeur
- Mediterranean Publications and Research International
- Type
- journal-article
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