为协调混合动力汽车(HEV)中各个子系统部件更好地工作,进一步提高智能控制水平,以并联式HEV为原型,在对输入信号识别、工作模式选择、与其他智能体协作这3个方面建立电动机智能体,创建不同行驶工况下能自主判断及自适应的控制策略,探究最优输出结果。研究电动机智能体与发动机智能体及蓄电池智能体之间的协作关系,在仿真软件ADVISOR中,对改进后的电机控制策略进行验证。结果表明,电机智能体的控制策略正确可行,可以完成与发动机之间的相互协作,能够改善整车的性能。
In order to collaborate every component in a hybrid vehicle, to farther improve the level of intelligent control, the parallel hybrid electric vehicle as the prototype, the motor agent is established in recognition of the input signal, the selection of mode, and cooperation with other agents and the control strategy can be created with adaptive and independent judgment at different driving conditions, exploring how to output the optimal results. Researching the relationship among the motor intelligence, engine agent and battery agent is described in the paper. The control strategy of motor optimized is verified using ADVISOR. Simulation results show that the control strategy of intelligent motor body is correct and feasible, can achieve mutual cooperation with the engine and the vehicle performance can be improved.