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Fundamentals of the C-DEEPSO algorithm and its application to the reactive power optimization of wind farms.

, , , , and . CEC, page 1547-1554. IEEE, (2016)

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A successful parallel implementation of NSGA-II on GPU for the energy dispatch problem on hydroelectric power plants., , , , and . CEC, page 4305-4312. IEEE, (2016)Maximum Search Limitations: Boosting Evolutionary Particle Swarm Optimization Exploration., , , and . EPIA (1), volume 11804 of Lecture Notes in Computer Science, page 712-723. Springer, (2019)CE+EPSO: a merged approach to solve SCOPF problem., , , , , and . GECCO (Companion), page 69-70. ACM, (2019)Fundamentals of the C-DEEPSO algorithm and its application to the reactive power optimization of wind farms., , , , and . CEC, page 1547-1554. IEEE, (2016)The STABALID project: Risk analysis of stationary Li-ion batteries for power system applications., , , , , , , , , and . Reliab. Eng. Syst. Saf., (2015)Solving security constrained optimal power flow problems: a hybrid evolutionary approach., , , , , , and . Appl. Intell., 48 (10): 3672-3690 (2018)An unsupervised approach for fault diagnosis of power transformers., , , , , , and . Qual. Reliab. Eng. Int., 37 (6): 2834-2852 (2021)Applying C-DEEPSO to Solve Large Scale Global Optimization Problems., , , , and . CEC, page 1-6. IEEE, (2018)Application of Evolutionary Multiobjective Algorithms for Solving the Problem of Energy Dispatch in Hydroelectric Power Plants., , , , and . EMO (2), volume 9019 of Lecture Notes in Computer Science, page 403-417. Springer, (2015)A combined optimisation and decision-making approach for battery-supported HMGS., , , , , , and . J. Oper. Res. Soc., 71 (5): 762-774 (2020)