1. 武汉科技大学 机构 信息科学与工程学院,武汉,430081
2. 武汉容芯能动电气有限公司,武汉,430200
[ "徐钦禹,硕士研究生," ]
[ "伍世虔,教授,博士生导师,博士," ]
纸质出版:2025
移动端阅览
徐钦禹, 伍世虔, 李世龙, 等. 复合电源混合动力汽车层次能量管理策略[J]. 机械科学与技术, 2025,44(5):878-886.
徐钦禹, 伍世虔, 李世龙, et al. Hierarchical Energy Management Strategy for Hybrid Electric Vehicles with Multi-energy-source[J]. Mechanical Science and Technology for Aerospace Engineering, 2025, 44(5): 878-886.
徐钦禹, 伍世虔, 李世龙, 等. 复合电源混合动力汽车层次能量管理策略[J]. 机械科学与技术, 2025,44(5):878-886. DOI: 10.13433/j.cnki.1003-8728.20230231.
徐钦禹, 伍世虔, 李世龙, et al. Hierarchical Energy Management Strategy for Hybrid Electric Vehicles with Multi-energy-source[J]. Mechanical Science and Technology for Aerospace Engineering, 2025, 44(5): 878-886. DOI: 10.13433/j.cnki.1003-8728.20230231.
以锂电池和超级电容组成的复合电源系统可有效降低混合动力汽车(Hybrid electric vehicles
HEV)行驶油耗和锂电池寿命衰减。为了进一步提高上述性能,该文提出一种基于行驶工况和驾驶员风格识别的层次能量管理策略。该策略分为上层发动机和下层复合电源能量管理策略。在发动机能量管理策略中引入工况识别技术,并根据所识别工况选择发动机运行策略,合理分配发动机功率Pe和复合电源需求功率Pm,以使发动机运行在最佳工作点。在复合电源能量管理策略中引入驾驶员风格和复合电源信息对低通滤波器滤波系数在线调整,通过低通滤波器将复合电源功率分解为锂电池低频和超级电容高频功率,以减少对锂电池的冲击和寿命衰减。将策略模型嵌入到ADVISOR仿真软件中,仿真结果表明,相对于采用传统模糊策略的复合电源HEV,该文提出的层次能量管理策略在综合循环工况下油耗降低5.82%、锂电池寿命里程提高9.65%,有效提高车辆综合性能。
A hybrid supply system consisting of supercapacitors and lithium batteries can effectively reduce the fuel consumption of hybrid electric vehicles (HEV) and the life decay of lithium battery. To further improve the above performance
a hierarchical energy management strategy by identifying driving conditions recognition and driver styles recognition is proposed by this paper. The overall strategy is divided into upper engine and lower composite power energy management strategy. The working condition recognition technology is introduced into the engine energy management strategy
and the engine operation strategy is selected according to the identified working conditions
and the engine power Pe {P_{\text{e}}} and composite power Pm {P_{\text{m}}} are reasonably allocated to make the engine run at the best working point. The driver style and composite power information are introduced into the energy management strategy of the composite power supply to adjust the filter coefficient of the low-pass filter online. The low-pass filter decomposes the power of the composite power supply into the low-frequency power of the lithium battery and the high-frequency power of the supercapacitor
so as to reduce the impact on the lithium battery and the life decay. The control strategy model is embedded in the ADVISOR software for simulation
and the results show that compared with the traditional composite power supply strategy using fuzzy control
the hierarchical energy management strategy proposed in this paper can reduce fuel consumption by 5.82% and increase the life mileage of lithium battery by 9.65% under comprehensive cycle conditions
and effectively improve the comprehensive performance of HEV.
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