首页> 外文期刊>International Journal of Automotive Technology >OPTIMIZED ENERGY MANAGEMENT CONTROL FOR THE TOYOTA HYBRID SYSTEM USING DYNAMIC PROGRAMMING ON A PREDICTED ROUTE WITH SHORT COMPUTATION TIME
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OPTIMIZED ENERGY MANAGEMENT CONTROL FOR THE TOYOTA HYBRID SYSTEM USING DYNAMIC PROGRAMMING ON A PREDICTED ROUTE WITH SHORT COMPUTATION TIME

机译:预测时间短的路线上动态规划的丰田混合动力系统优化能源管理控制

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Among the general problematic of the HEV power trains, the most critical point is the determination of the power-split ratio between the mechanical and the electrical paths, known as the energy management strategy (EMS). Many EMS are proposed in the literature, and can be grouped in two categories: the local optimization EMS and the global optimization EMS. The local optimization category corresponds to the EMS based on human expertise and the knowledge of the power train components efficiency maps. Thus, the local optimization EMS manages the power train operations by referring to predefined rules. The drawback of such strategies is that it brings an instantaneous fuel consumption optimization, and does not fully optimize the fuel consumption over the whole trip. Therefore, additional fuel savings are still possible. This paper presents an overall optimized predictive EMS for the Toyota Hybrid System (THS-II) power train of the Prius. The proposed EMS is based on Dynamic Programming (DP), where the prior knowledge of the route is required in order to predetermine the power-split ratio and optimize the fuel consumption for the whole predicted route. The DP EMS proposed for the THS-II power train is designed with a very short computation time, intended to be implemented in real-time applications. The potential of this DP-controller in reducing fuel consumption on regulatory cycles are computed and compared to a rule-based controller and to the Prius published fuel consumption results. Finally, the fuel reduction enhancements of the DP-controller are computed for real road tests achieved on a MY06 Prius in Ile-de-France, by comparing to the associated observed consumption measurements.
机译:在混合动力汽车动力总成的普遍问题中,最关键的一点是确定机械路径和电气路径之间的功率分配比,即能量管理策略(EMS)。文献中提出了许多EMS,可以将它们分为两类:局部优化EMS和全局优化EMS。本地优化类别对应于基于人类专业知识和动力总成组件效率图知识的EMS。因此,局部优化EMS通过参考预定义的规则来管理动力传动系的运行。这种策略的缺点在于,它带来了瞬时燃油消耗的优化,并且没有在整个行程中完全优化燃油消耗。因此,仍然可以节省更多的燃料。本文介绍了普锐斯丰田混合动力系统(THS-II)动力总成的整体优化预测EMS。拟议的EMS基于动态规划(DP),在该规划中,需要预先了解路线,以便预先确定功率分配比并优化整个预测路线的燃油消耗。为THS-II动力总成提议的DP EMS设计时具有非常短的计算时间,旨在用于实时应用。计算了该DP控制器在调节周期中减少油耗的潜力,并将其与基于规则的控制器以及Prius发布的油耗结果进行了比较。最后,通过与相关的观察到的消耗量测量值进行比较,针对在法兰西岛上的MY06普锐斯进行的实际路测中,计算了DP控制器的节油效果。

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