首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Development of an electric oil pump control algorithm for an automatic-transmission-based hybrid electric vehicle considering the gear shift characteristics
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Development of an electric oil pump control algorithm for an automatic-transmission-based hybrid electric vehicle considering the gear shift characteristics

机译:考虑变速特性的基于自动变速器的混合动力电动汽车电动油泵控制算法的开发

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In this paper, an electric oil pump control algorithm for an automatic-transmission-based hybrid electric vehicle was proposed. Dynamic models of the hybrid electric vehicle powertrain and hydraulic control system, including a mechanical oil pump and an electric oil pump, were obtained, and a hybrid electric vehicle performance simulator was developed. Also, a flow consumption model of the hydraulic control system was constructed. To represent the characteristics of the hydraulic control system according to the change in the temperature of the automatic transmission fluid, a viscosity index concept was introduced. Based on the simulation and test results, a viscosity index-line pressure-electric oil pump power map was proposed to describe the power supply requirement according to the viscosity index and the required line pressure. Using the viscosity index-line pressure-electric oil pump power map, an electric oil pump control algorithm was suggested to control the electric oil pump by using multi-stage power for a given viscosity index. The mechanical oil pump speed at which the electric oil pump is turned off was obtained on the basis of the flow consumption model. The electric oil pump control algorithm was evaluated by experiments and simulations. The proposed electric oil pump control algorithm satisfied the target line pressure requirement according to the viscosity index. In addition, an electric oil pump control strategy during an automatic transmission gear shift was suggested for the situation in which the maximum line pressure required for the gear shift cannot be achieved by only the mechanical oil pump. The electric-oil-pump-assisted power was determined from the flow consumption model and the mechanical oil pump speed considering the gear shift. The simulation results confirmed that the electric oil pump control strategy satisfied the maximum line pressure during a gear shift.
机译:提出了一种基于自动变速器的混合动力汽车电动油泵控制算法。获得了包括机械油泵和电动油泵在内的混合动力电动汽车动力总成和液压控制系统的动力学模型,并开发了混合动力电动汽车性能模拟器。此外,构建了液压控制系统的流量消耗模型。为了代表根据自动变速箱油温度变化的液压控制系统的特性,引入了粘度指数概念。基于仿真和测试结果,提出了粘度指数-线压力-电动油泵功率图,根据粘度指数和所需的线压来描述电源需求。通过使用粘度指数线压力-电动油泵功率图,提出了一种电动油泵控制算法,通过在给定的粘度指数下使用多级功率来控制电动油泵。根据流量消耗模型获得关闭电动油泵的机械油泵速度。通过实验和仿真对电动油泵控制算法进行了评估。所提出的电动油泵控制算法根据粘度指数满足目标管路压力要求。另外,提出了在自动变速器换挡期间的电动油泵控制策略,用于仅通过机械式油泵无法实现换挡所需的最大管路压力的情况。从流量消耗模型和机械油泵转速(考虑换档)确定电动油泵辅助功率。仿真结果证实,电动油泵控制策略满足了换档过程中的最大管路压力。

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