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纯电动汽车制动能量回收策略优化研究 被引量:5

Research on Optimization of Braking Energy Recovery Strategy for Pure Electric Vehicles
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摘要 为了提高纯电动汽车续航里程及能源转化率,以某纯电动汽车为研究对象,提出基于ECE法规曲线、I曲线和f曲线的汽车前后轴制动力分配策略。同时又考虑到存在电机和电池最大充电功率约束,在完善电机再生力矩、限制再生制动最大值后,采用模糊控制方法,根据不同制动强度确定机械制动力和再生制动力比例由此制定能量回收控制策略。在MATLAB/Simulink里建立起再生制动控制策略模型并将其与AVL-Cruise进行联合仿真分析本策略的优化效果。仿真结果表明所提出的控制策略能够在满足制动安全性基础上充分利用电机制动转矩,使得制动能量回收率与系统自带策略相比有显著提高,在一定程度上有效缓解了纯电动汽车续航问题。 In order to improve the cruising range and energy conversion rate of pure electric vehicles, a pure electric vehicle was taken as the research object, and a braking force distribution strategy based on the Economic Commission of Europe regulation curve, I curve and f curve was proposed. At the same time, taking into account the constraints of the maximum charging power of the motor and the battery, and after perfecting the regenerative torque of the motor and limiting the maximum value of regenerative braking, the fuzzy control method is adopted to determine the ratio of mechanical braking force and regenerative braking force according to different braking strengths, thereby formulating energy recovery control strategy. The regenerative braking control strategy model was established in MATLAB/Simulink and co-simulated with AVL-Cruise to analyze the optimization effect of this strategy. The simulation results show that the proposed control strategy can make full use of the motor braking torque on the basis of satisfying braking safety, so that the braking energy recovery rate is significantly improved compared with the system’s own strategy, and to a certain extent, the battery life of the pure electric vehicles is prolonged.
作者 王永鼎 裴开雅 WANG Yongding;PEI Kaiya(College of Engineering,Shanghai Ocean University,Shanghai 201306,China)
出处 《机械科学与技术》 CSCD 北大核心 2022年第9期1436-1441,共6页 Mechanical Science and Technology for Aerospace Engineering
基金 上海海洋大学科研项目(K-9001-00-0006)。
关键词 纯电动汽车 再生制动 模糊控制 联合仿真 pure electric vehicle regenerative braking fuzzy control co-simulation
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