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Application of Pre-Computed Acceleration Event Control to Improve Fuel Economy in Hybrid Electric Vehicles

机译:预计算机加速度控制在混合动力电动汽车中提高燃油经济性的应用

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Application of predictive optimal energy management strategies to improve fuel economy in hybrid electric vehicles is an active subject of research. Acceleration events during a drive cycle provide particularly attractive opportunities for predictive optimal energy management because of their high energy cost and limited variability, which enables optimal control trajectories to be computed in advance. In this research, dynamic-programming derived optimal control matrices are implemented during a drive cycle on a validated model of a 2010 Toyota Prius to simulate application of pre-computed control to improve fuel economy over a baseline model. This article begins by describing the development of the vehicle model and the formulation of optimal control, both of which are simulated over the New York City drive cycle to establish baseline and upper-limit fuel economies. Then, optimal control strategies are computed for acceleration events in the drive cycle. The model is first simulated with optimal control during acceleration events, then with optimal control matrices applied to different acceleration events than originally derived, so as to represent mis-prediction and mis-application of optimal control. The results show that drive cycle fuel economy can be robustly improved by applying pre-computed control matrices to acceleration events. Overall, this article demonstrates that fuel economy improvements with predictive optimal energy management are achievable without precise prediction capabilities or real-time, on-vehicle computation of optimal control.
机译:预测最优能源管理策略在混合动力电动汽车中提高燃油经济性的应用是一个有效的研究主题。由于高能量成本和有限的可变性,驱动周期期间的加速事件为预测最佳能量管理提供特别有吸引力的机会,这使得能够预先计算最佳控制轨迹。在该研究中,动态编程导出的最佳控制矩阵在2010年丰田普锐斯的验证模型上的驱动周期期间实现了用于模拟应用预先计算的控制来改善基线模型的燃料经济性。本文首先描述了车辆模型的发展和最佳控制的制定,这两者都在纽约市驱动周期内模拟,以建立基线和上限燃料经济体。然后,计算驱动周期中的加速度事件的最佳控制策略。首先在加速度事件期间使用最佳控制来模拟模型,然后利用比最初导出的不同加速度事件的最佳控制矩阵,以表示MIS预测和最佳控制的错误应用。结果表明,通过将预计算机控制矩阵应用于加速事件,可以强大地改善驱动周期燃料经济性。总体而言,本文展示了具有预测最佳能量管理的燃油经济性改进,无需精确预测能力或实时,车辆的最佳控制。

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