Energy Storage Science and Technology ›› 2025, Vol. 14 ›› Issue (6): 2200-2214.doi: 10.19799/j.cnki.2095-4239.2025.0079
• Energy Storage Materials and Devices • Previous Articles Next Articles
Chunjiang DAI1,2(), Wenye LIN1,2(
), Shuaiqi LI2, Xiang CHEN1,2, Wenji SONG1,2, Ziping FENG1,2, Frédéric KUZNIK3
Received:
2025-01-24
Revised:
2025-02-25
Online:
2025-06-28
Published:
2025-06-27
Contact:
Wenye LIN
E-mail:daicj@mail.ustc.edu.cn;linwy@ms.giec.ac.cn
CLC Number:
Chunjiang DAI, Wenye LIN, Shuaiqi LI, Xiang CHEN, Wenji SONG, Ziping FENG, Frédéric KUZNIK. NSGA-II optimization-assisted model predictive control strategy for electric vehicle thermal management systems[J]. Energy Storage Science and Technology, 2025, 14(6): 2200-2214.
1 | 刘松燕, 王卫良, 彭世亮, 等. 兼顾高/低温环境性能的动力电池热管理系统设计[J]. 储能科学与技术, 2024, 13(7): 2181-2191. DOI: 10.19799/j.cnki.2095-4239.2024.0369. |
LIU S Y, WANG W L, PENG S L, et al. Thermal management system for power battery in high/low-temperature environments[J]. Energy Storage Science and Technology, 2024, 13(7): 2181-2191. DOI: 10.19799/j.cnki.2095-4239.2024.0369. | |
2 | ZHANG N, LU Y J, OUDERJI Z H, et al. Review of heat pump integrated energy systems for future zero-emission vehicles[J]. Energy, 2023, 273: 127101. DOI: 10.1016/j.energy.2023.127101. |
3 | 王莫然, 董彬, 梁坤峰, 等. 纯电动汽车冬季冷启动阶段热管理策略影响续驶里程分析[J]. 制冷学报, 2021, 42(1): 60-66, 73. DOI: 10.3969/j.issn.0253-4339.2021.01.060. |
WANG M R, DONG B, LIANG K F, et al. Influence of thermal management strategy on driving range of pure electric vehicle during cold start in winter[J]. Journal of Refrigeration, 2021, 42(1): 60-66, 73. DOI: 10.3969/j.issn.0253-4339.2021.01.060. | |
4 | 张蕾, 杨洋, 马菁, 等. 液冷动力电池系统热管理控制策略优化探究[J]. 电源学报, 2024, 22(S1): 127-133. DOI: 10.13234/j.issn.2095-2805.2024.S1.127. |
ZHANG L, YANG Y, MA J, et al. Optimization of thermal management control strategy for liquid-cooled power battery system[J]. Journal of Power Supply, 2024, 22(S1): 127-133. DOI: 10.13234/j.issn.2095-2805.2024.S1.127. | |
5 | 宋波, 孙凯, 车志钊, 等. 能量管理策略对燃料电池客车热管理系统性能的影响[J]. 汽车安全与节能学报, 2022, 13(3): 526-534. DOI: 10.3969/j.issn.1674-8484.2022.03.014. |
SONG B, SUN K, CHE Z Z, et al. Influence of the energy management strategy on the thermal management system performance of fuel cell bus[J]. Journal of Automotive Safety and Energy, 2022, 13(3): 526-534. DOI: 10.3969/j.issn.1674-848 4.2022.03.014. | |
6 | 郭冲. 电动汽车热泵空调控制策略研究[D]. 北京: 北京理工大学, 2016. |
GUO C. Research on control strategy of heat pump air-conditioning system for electric vehicles[D]. Beijing: Beijing Institute of Technology, 2016. | |
7 | PAN C F, TAO Y X, WANG L M, et al. Fuzzy energy management strategy for electric vehicle combining driving cycle construction and air-conditioning load identification[J]. Advances in Mechanical Engineering, 2021, 13(2): 1687814021994381. DOI: 10.1177/1687814021994381. |
8 | 杜常清, 孙嘉豪, 李文浩, 等. 纯电动汽车热管理系统集成设计及多级模糊控制策略研究[J]. 汽车技术, 2025(2): 17-25. DOI: 10.19620/j.cnki.1000-3703.20240460. |
DU C Q, SUN J H, LI W H, et al. Integrated design of thermal management system for pure electric vehicles and research on multi-level fuzzy control strategy[J]. Automobile Technology, 2025(2): 17-25. DOI: 10.19620/j.cnki.1000-3703.20240460. | |
9 | LIU Z M G, LIU Z X, LIU J Z, et al. Thermal management with fast temperature convergence based on optimized fuzzy PID algorithm for electric vehicle battery[J]. Applied Energy, 2023, 352: DOI: 10.1016/J.APENERGY.2023.121936. |
10 | MA Y, DING H, LIU Y Q, et al. Battery thermal management of intelligent-connected electric vehicles at low temperature based on NMPC[J]. Energy, 2022, 244: 122571. DOI: 10.1016/j.energy. 2021.122571. |
11 | LIAN Y B, LING H P, ZHU J P, et al. Thermal management optimization strategy of electric vehicle based on dynamic programming[J]. Control Engineering Practice, 2023, 137: DOI: 10.1016/j.conengprac.2023.105562. |
12 | MA J, LIU A H, ZHANG P, et al. Collaborative thermal management of power battery and passenger cabin for energy efficiency optimization[J]. Energy Conversion and Management, 2023, 293: 117514. DOI: 10.1016/j.enconman.2023.117514. |
13 | BAUER S, SUCHANECK A, PUENTE LEÓN F. Thermal and energy battery management optimization in electric vehicles using Pontryagin's maximum principle[J]. Journal of Power Sources, 2014, 246: 808-818. DOI: 10.1016/j.jpowsour.201 3.08.020. |
14 | LIU T, XU C L, GUO Y B, et al. A novel deep reinforcement learning based methodology for short-term HVAC system energy consumption prediction[J]. International Journal of Refrigeration, 2019, 107: 39-51. DOI: 10.1016/j.ijrefrig.2019.07.018. |
15 | 李靖璇, 鲁岩松, 朱翀, 等. 基于预测控制的电动汽车快充模块热管理策略[J]. 电源学报, 2025, 23(2): 240-246. DOI: 10.13234/j.issn.2095-2805.2025.2.240. |
LI J X, LU Y S, ZHU C, et al. Thermal management strategy for electric vehicle fast charging module based on predictive control[J]. Journal of Power Supply, 2025, 23(2): 240-246. DOI: 10.13 234/j.issn.2095-2805.2025.2.240. | |
16 | MA Y, DING H, MOU H Y, et al. Battery thermal management strategy for electric vehicles based on nonlinear model predictive control[J]. Measurement, 2021, 186: 110115. DOI: 10.1016/j.measurement.2021.110115. |
17 | 欧景志. 基于热泵空调的乘员舱和电池热管理仿真及控制策略研究[D]. 重庆: 重庆大学, 2022. DOI: 10.27670/d.cnki.gcqdu.2022.001238. |
OU J Z. Research on thermal management simulation and control strategy of cabin and battery based on heat pump air condition[D]. Chongqing: Chongqing University, 2022. DOI: 10.27670/d.cnki.gcqdu.2022.001238. | |
18 | 范爽. 电动汽车热管理系统建模及冬季电池温度控制策略研究[D]. 广州: 华南理工大学, 2022. DOI: 10.27151/d.cnki.ghnlu.202 2.003418. |
FAN S. Modeling of electric vehicle thermal management system and research on battery temperature control strategy in winter[D]. Guangzhou: South China University of Technology, 2022. DOI: 10.27151/d.cnki.ghnlu.2022.003418. | |
19 | GNIELINSKI V. New equations for heat and mass transfer in turbulent pipe and channel flow[J]. International Chemical Engineering, 1976, 16: 359-368. |
20 | SHAH M M. A general correlation for heat transfer during film condensation inside pipes[J]. International Journal of Heat and Mass Transfer, 1979, 22(4): 547-556. DOI: 10.1016/0017-9310(79)90058-9. |
21 | DITTUS F W, BOELTER L M K. Heat transfer in automobile radiators of the tubular type[J]. International Communications in Heat and Mass Transfer, 1985, 12(1): 3-22. DOI: 10.1016/0735-1933(85)90003-X. |
22 | CHEN J C. Correlation for boiling heat transfer to saturated fluids in convective flow[J]. Industrial & Engineering Chemistry Process Design and Development, 1966, 5(3): 322-329. DOI: 10.1021/i260019a023. |
23 | KIM M H, BULLARD C W. Air-side thermal hydraulic performance of multi-louvered fin aluminum heat exchangers[J]. International Journal of Refrigeration, 2002, 25(3): 390-400. DOI: 10.1016/S0140-7007(01)00025-1. |
24 | BERNARDI D, PAWLIKOWSKI E, NEWMAN J. A general energy balance for battery systems[J]. Journal of the Electrochemical Society, 1985, 132(1): 5-12. DOI: 10.1149/1.2113792. |
25 | 邹慧明, 唐坐航, 杨天阳, 等. 电动汽车热管理技术研究进展[J]. 制冷学报, 2022, 43(3): 15-27, 56. DOI: 10.3969/j.issn.0253-4339.2022.03.015. |
ZOU H M, TANG Z H, YANG T Y, et al. Review of research on thermal management technology for electric vehicles[J]. Journal of Refrigeration, 2022, 43(3): 15-27, 56. DOI: 10.3969/j.issn.0253-4339.2022.03.015. | |
26 | KOLLMEYER P, VIDAL C, NAGUIB M, et al. LG 18650HG2 Li-ion battery data and example deep neural network xEV SOC estimator script[DB]. Mendeley Data, V3, 2020. |
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