TY - GEN
T1 - Modeling for Real-Time Simulation of UAV Electric Propulsion Systems
AU - He, Tiantian
AU - Ma, Ruiqing
AU - Wang, Zhan
AU - Bai, Hao
AU - Yao, Zhen
N1 - Publisher Copyright:
© 2025 IEEE.
PY - 2025
Y1 - 2025
N2 - Hydrogen fuel cell unmanned aerial vehicles (UAV) have become a research hotspot at home and abroad due to their features of zero emission, high energy density, high energy conversion efficiency and long fly range. Multi-physical domain coupling exists among the subsystems of hydrogen fuel cell UAV, which requires multi-disciplinary collaborative design and optimization in the development process of hydrogen fuel cell UAV, and reduces the R&D efficiency. Simulation has become an indispensable method for the R&D of various complex systems. Using computer to realize the simulation of the system is not only convenient and flexible, but also can bring huge social and economic benefits. Therefore, in this paper, a high-accuracy model implemented in Simulink is developed, which contains detailed subsystem modeling and numerical solution methods. Then using Simulink to iteratively calculate and simulate the designed system model by numerical method. The establishment of the model is of great significance to improve the R&D efficiency and shorten the R&D cycle.
AB - Hydrogen fuel cell unmanned aerial vehicles (UAV) have become a research hotspot at home and abroad due to their features of zero emission, high energy density, high energy conversion efficiency and long fly range. Multi-physical domain coupling exists among the subsystems of hydrogen fuel cell UAV, which requires multi-disciplinary collaborative design and optimization in the development process of hydrogen fuel cell UAV, and reduces the R&D efficiency. Simulation has become an indispensable method for the R&D of various complex systems. Using computer to realize the simulation of the system is not only convenient and flexible, but also can bring huge social and economic benefits. Therefore, in this paper, a high-accuracy model implemented in Simulink is developed, which contains detailed subsystem modeling and numerical solution methods. Then using Simulink to iteratively calculate and simulate the designed system model by numerical method. The establishment of the model is of great significance to improve the R&D efficiency and shorten the R&D cycle.
KW - model
KW - numerical solution
KW - simulation
UR - https://www.scopus.com/pages/publications/105034474669
U2 - 10.1109/ICIPS67876.2025.11331670
DO - 10.1109/ICIPS67876.2025.11331670
M3 - 会议稿件
AN - SCOPUS:105034474669
T3 - 2025 5th International Conference on Intelligent Power and Systems, ICIPS 2025
SP - 572
EP - 577
BT - 2025 5th International Conference on Intelligent Power and Systems, ICIPS 2025
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - 2025 5th International Conference on Intelligent Power and Systems, ICIPS 2025
Y2 - 24 October 2025 through 26 October 2025
ER -