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A Proactive and Survivability-Constrained Operation Strategy for Enhancing Resilience of Microgrids Using Energy Storage System., , and . IEEE Access, (2018)Reinforcement Learning-Based Integrated Control to Improve the Efficiency of DC Microgrids., , , and . IEEE Trans. Smart Grid, 15 (1): 149-159 (January 2024)Demand Response for Enhancing Survivability of Microgrids During Islanded Operation., , and . TENCON, page 1572-1577. IEEE, (2018)Optimal Design Parameters for Hybrid DC Circuit Breakers Using a Multi-Objective Genetic Algorithm., , , , and . Algorithms, 15 (9): 298 (2022)Diffusion Strategy-Based Distributed Optimization for Operation of Multi-Microgrid System., , and . TENCON, page 1578-1583. IEEE, (2018)Resilience-Oriented Optimal Operation of Networked Hybrid Microgrids., , and . IEEE Trans. Smart Grid, 10 (1): 204-215 (2019)A Resilient and Privacy-Preserving Energy Management Strategy for Networked Microgrids., , and . IEEE Trans. Smart Grid, 9 (3): 2127-2139 (2018)Deep Reinforcement Learning-Based Optimal Parameter Design of Power Converters., , , , , , , , and . ICNC, page 25-29. IEEE, (2023)Impact Quantification of Demand Response Uncertainty on Unit Commitment of Microgrids., , and . FIT, page 274-279. IEEE Computer Society, (2016)