Daniel Fodorean
Orcid: 0000-0002-5652-209X
According to our database1,
Daniel Fodorean
authored at least 14 papers
between 2010 and 2023.
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Bibliography
2023
Purely Electromagnetic Propulsion System With Two Transmission Levels - Design, Numerical, and Experimental Results.
IEEE Trans. Ind. Electron., 2023
2021
Novel Differential Evolutionary Optimization Approach for an Integrated Motor-Magnetic Gear Used for Propulsion Systems.
IEEE Access, 2021
Electromagnetic and Structural Analysis of an Induction Motor with Copper Rotor Bars used in Automotive Applications.
Proceedings of the 6th IEEE International Forum on Research and Technology for Society and Industry, 2021
2019
An Eigenvector-Enhanced Parallel Adaptive Differential Evolution for Electric Motor Design.
Proceedings of the 31st IEEE International Conference on Tools with Artificial Intelligence, 2019
Hybrid parameter adaptation strategy for differential evolution to solve real-world problems.
Proceedings of the IEEE Congress on Evolutionary Computation, 2019
2018
Proceedings of the Computational Science - ICCS 2018, 2018
Proceedings of the 2018 IEEE Congress on Evolutionary Computation, 2018
2017
Hybrid Differential Evolution Algorithm Employed for the Optimum Design of a High-Speed PMSM Used for EV Propulsion.
IEEE Trans. Ind. Electron., 2017
2016
Motor-drive solution for light electric vehicles based on a switched reluctance machine.
Proceedings of the IEEE International Conference on Automation, 2016
2013
Motorization for an Electric Scooter by Using Permanent-Magnet Machines Optimized Based on a Hybrid Metaheuristic Algorithm.
IEEE Trans. Veh. Technol., 2013
Hybrid Imperialist Competitive Algorithm with Simplex Approach: Application to Electric Motor Design.
Proceedings of the IEEE International Conference on Systems, 2013
Design, analysis and torque control of low voltage high current SRM for small automotive applications.
Proceedings of Eurocon 2013, 2013
Proceedings of Eurocon 2013, 2013
2010
Design and Optimization of a Switched Reluctance Motor Driving a Compressor for a PEM Fuel-Cell System for Automotive Applications.
IEEE Trans. Ind. Electron., 2010