电动汽车加速踏板和制动踏板定义的电机再生制动力矩协调控制

Gou Jinfang, Wang Lifang, Liao Chenglin, Zhang Junzhi, Yue Xiaowei
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引用次数: 5

摘要

驾驶员可以通过操作加速踏板和制动踏板来控制施加在车辆上的驱动力和制动力。对于电动汽车来说,由于再生制动功能,有可能通过操纵加速踏板来控制制动力。本文基于油门踏板开度及其变化率,采用模糊控制理论计算油门踏板释放时的再生制动力。设计了两种模式来协调由加速踏板和制动踏板定义的制动力。一种是发动机制动模仿模式,另一种是辅助制动模式。仿真结果表明,发动机制动模拟模式能提供与内燃机汽车相似的驾驶感觉。辅助制动方式改变了传统的驾驶习惯,但具有更高的再生效率。辅助制动方式适用于需要频繁制动的城市行驶工况。
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The coordinated control of motor regenerative braking torques defined by accelerator pedal and brake pedal of electric vehicle
Driver can operate accelerator pedal and brake pedal to control the driving force and the braking force exerted on vehicle. For electric vehicles, it is possible that the braking force can be controlled by manipulating the accelerator pedal because of the regenerative braking function. In this paper, fuzzy control theory is employed to calculate regenerative braking force during releasing accelerator pedal based on the accelerator pedal opening and its change rate. Two modes are designed to coordinate the braking forces defined by accelerator pedal and brake pedal. One mode is engine braking imitation mode, and the other is auxiliary braking mode. The simulation results show that engine braking imitation mode can provide the similar driving feel to internal combustion engine vehicle. Auxiliary braking mode changes the traditional driving habit, but it has much higher regenerative efficiency. Auxiliary braking mode is suitable for the city driving condition which has frequent braking requirement.
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