Deep reinforcement learning-based energy management strategy for fuel cell buses integrating future road information and cabin comfort control
Author:
Funder
The Hong Kong Polytechnic University
Publisher
Elsevier BV
Reference33 articles.
1. A real-time energy management approach with fuel cell and battery competition-synergy control for the fuel cell vehicle;Zou;Appl Energy,2023
2. Deep reinforcement learning based energy management strategy for range extend fuel cell hybrid electric vehicle;Huang;Energy Convers Manage,2023
3. Pereira DF, Lopes FdC, Watanabe EH. Nonlinear model predictive control for the energy management of fuel cell hybrid electric vehicles in real time. IEEE Trans Ind Electron. 2021;68:3213-23.
4. Learning-based model predictive energy management for fuel cell hybrid electric bus with health-aware control;Jia;Appl Energy,2024
5. Genetic algorithm-based fuzzy optimization of energy management strategy for fuel cell vehicles considering driving cycles recognition;Wang;Energy,2023
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