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Mode transition coordination control for parallel hybrid electric vehicle based on switched system:

机译:基于切换系统的并联混合动力汽车模式转换协调控制:

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Hybrid electric vehicles equipped with several different power sources can change operation mode to deal with different operating conditions to improve fuel economy and reduce exhaust emissions. Due to the significant difference in the characteristics of the power sources and the discontinuity in the dynamics of the clutch, noticeable torque fluctuations occur during mode transition, which may result in system shock and an uncomfortable riding sensation. Based on the idea of a switched system, we proposed a three-stage control strategy to facilitate a smooth transition from electric mode to hybrid driving mode. In this coordination control strategy, a fuzzy-proportional–integral mixed controller was used to manipulate engine speed and an adaptive sliding mode controller was applied to control the electric motor torque for compensating for torque disturbances. Furthermore, the proposed control strategy was validated on hardware-in-the-loop simulation platform. The results demonstrate the effectiveness of t...
机译:配备有几种不同动力源的混合动力电动汽车可以改变运行模式以应对不同的运行条件,从而提高燃油经济性并减少废气排放。由于动力源特性的明显差异和离合器动力学的不连续性,模式转换期间会出现明显的扭矩波动,这可能导致系统震动和不适的乘坐感觉。基于开关系统的思想,我们提出了一种三阶段控制策略,以促进从电动模式到混合动力驾驶模式的平稳过渡。在这种协调控制策略中,模糊比例积分混合控制器用于控制发动机转速,自适应滑模控制器用于控制电动机扭矩以补偿扭矩干扰。此外,在硬件在环仿真平台上对提出的控制策略进行了验证。结果证明了该方法的有效性。

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