Fast dynamic control for a boost DC/DC converter in hybrid-electric powertrain with PEM fuel cell and battery pack
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[1] P. Bauer,et al. Inductive Power Transfer Based on Variable Compensation Capacitance to Achieve an EV Charging Profile With Constant Optimum Load , 2023, IEEE Journal of Emerging and Selected Topics in Power Electronics.
[2] S. Ganguly,et al. An energy management optimization approach for proton exchange membrane fuel cell-battery hybrid energy system for railway applications , 2022, Electrical Engineering.
[3] C. Rossi,et al. Design and Comparison Between PSFB and LLC 400/48V DC/DC Stage for On-Board Battery Charger During Total and Partial CC-CV Charging Cycles , 2022, 2022 IEEE 21st Mediterranean Electrotechnical Conference (MELECON).
[4] A. Mariscotti,et al. Center-Fed Resonator Array for Increased Misalignment Tolerance in Automotive Wireless Power Transfer , 2022, 2022 IEEE 21st Mediterranean Electrotechnical Conference (MELECON).
[5] G. Grandi,et al. Variable Switching Frequency PWM for Three-Phase Four-Wire Split-Capacitor Inverter Performance Enhancement , 2021, IEEE Transactions on Power Electronics.
[6] Pu Zhao,et al. Power management in hybrid electric vehicles using deep recurrent reinforcement learning , 2021, Electrical Engineering.
[7] M. Dhimish,et al. Investigating the stability and degradation of hydrogen PEM fuel cell , 2021, International Journal of Hydrogen Energy.
[8] P. Senecal,et al. A review of current and future powertrain technologies and trends in 2020 , 2021 .
[9] C. Rossi,et al. Single Stage Wireless Power Transfer Battery Charger for Electric Vehicles , 2021, 2021 IEEE 15th International Conference on Compatibility, Power Electronics and Power Engineering (CPE-POWERENG).
[10] Mehrdad Ehsani,et al. State of the Art and Trends in Electric and Hybrid Electric Vehicles , 2021, Proceedings of the IEEE.
[11] Muhammad Asghar Majeed,et al. Fuzzy logic-based voltage regulation of hybrid energy storage system in hybrid electric vehicles , 2021, Electrical Engineering.
[12] Caizhi Zhang,et al. Systematic study of short circuit activation on the performance of PEM fuel cell , 2020 .
[13] G. Grandi,et al. Evaluation of AC Current Ripple in case of SplitCapacitor Three-Phase Four Wires Inverters , 2020, 2020 6th IEEE International Energy Conference (ENERGYCon).
[14] C. Gowri Shankar,et al. High-performance single-input three-output DC–DC high gain converter for fuel cell-based electric vehicles , 2020 .
[15] P. Senecal,et al. Diversity in transportation: Why a mix of propulsion technologies is the way forward for the future fleet , 2019, Results in Engineering.
[16] N. Genç,et al. Design and application of PEM fuel cell-based cascade boost converter , 2019, Electrical Engineering.
[17] Gang Li,et al. A predictive energy management system for hybrid energy storage systems in electric vehicles , 2019, Electrical Engineering.
[18] Erik Schaltz,et al. An Electrical Equivalent Circuit Model of a Lithium Titanate Oxide Battery , 2019, Batteries.
[19] Alireza Khaligh,et al. Global Trends in High-Power On-Board Chargers for Electric Vehicles , 2019, IEEE Transactions on Vehicular Technology.
[20] Nibedita Swain,et al. Comparative Study of Model Reference Adaptive Control and H-infinity control to Non-Isolated Boost Converter , 2018, 2018 5th IEEE Uttar Pradesh Section International Conference on Electrical, Electronics and Computer Engineering (UPCON).
[21] Abhijeet Sharma,et al. Review of Model Reference Adaptive Control , 2018, 2018 International Conference on Information , Communication, Engineering and Technology (ICICET).
[22] Jiawei Cheng,et al. Impact of Silicon Carbide Devices on the Powertrain Systems in Electric Vehicles , 2017 .
[23] Xuan Zhou,et al. A novel method for identification of lithium-ion battery equivalent circuit model parameters considering electrochemical properties , 2017 .
[24] Slami Saadi,et al. Type-2 fuzzy logic PID controller and different uncertainties design for boost DC–DC converters , 2017 .
[25] Joao P. Trovao,et al. Gallium Nitride Semiconductors in Power Electronics for Electric Vehicles: Advantages and Challenges , 2015, 2015 IEEE Vehicle Power and Propulsion Conference (VPPC).
[26] M. Chadli,et al. Modelling and model predictive control of a DC-DC Boost converter , 2014, 2014 15th International Conference on Sciences and Techniques of Automatic Control and Computer Engineering (STA).
[27] John McPhee,et al. A survey of mathematics-based equivalent-circuit and electrochemical battery models for hybrid and electric vehicle simulation , 2014 .
[28] Jenn-Jong Shieh,et al. A new control strategy for hybrid fuel cell-battery power systems with improved efficiency , 2012 .
[29] Andreas Nyman,et al. Analysis of the Polarization in a Li-Ion Battery Cell by Numerical Simulations , 2010 .
[30] Raymond A. DeCarlo,et al. MPC of Switching in a Boost Converter Using a Hybrid State Model With a Sliding Mode Observer , 2009, IEEE Transactions on Industrial Electronics.
[31] Diego Feroldi,et al. Energy management strategies based on efficiency map for fuel cell hybrid vehicles , 2009 .
[32] Paolo Rocco,et al. Modeling, identification, and compensation of pulsating torque in permanent magnet AC motors , 1998, IEEE Trans. Ind. Electron..
[33] Ching Chuen Chan,et al. An overview of power electronics in electric vehicles , 1997, IEEE Trans. Ind. Electron..
[34] Hari Om Bansal,et al. Green transportation: need, technology and challenges , 2014 .