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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Power Management Strategy for a Parallel Hybrid Electric Truck
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Power Management Strategy for a Parallel Hybrid Electric Truck

机译:并联混合动力卡车的电源管理策略

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摘要

Hybrid vehicle techniques have been widely studied recently because of their potential to significantly improve the fuel economy and drivability of future ground vehicles. Due to the dual-power-source nature of these vehicles, control strategies based on engineering intuition frequently fail to fully explore the potential of these advanced vehicles. In this paper, we will present a procedure for the design of a near-optimal power management strategy. The design procedure starts by defining a cost function, such as minimizing a combination of fuel consumption and selected emission species over a driving cycle. Dynamic programming (DP) is then utilized to find the optimal control actions including the gear-shifting sequence and the power split between the engine and motor while subject to a battery SOC-sustaining constraint. Through analysis of the behavior of DP control actions, near-optimal rules are extracted, which, unlike DP control signals, are implementable. The performance of this power management control strategy is studied by using the hybrid vehicle model HE-VESIM developed at the Automotive Research Center of the University of Michigan. A tradeoff study between fuel economy and emissions was performed. It was found that significant emission reduction could be achieved at the expense of a small increase in fuel consumption.
机译:混合动力车辆技术由于其显着改善未来地面车辆的燃油经济性和驾驶性能的潜力,最近已得到广泛研究。由于这些车辆的双电源特性,基于工程直觉的控制策略经常无法充分挖掘这些先进车辆的潜力。在本文中,我们将介绍一种设计最佳功率管理策略的过程。设计过程从定义成本函数开始,例如最小化行驶周期内的燃料消耗和所选排放物的组合。然后,利用动态编程(DP)来找到最佳控制动作,其中包括变速顺序以及发动机和电动机之间的功率分配,同时还要遵守电池SOC保持约束。通过分析DP控制动作的行为,提取了接近最佳的规则,与DP控制信号不同,该规则是可以实现的。通过使用由密歇根大学汽车研究中心开发的混合动力汽车模型HE-VESIM,研究了这种电源管理控制策略的性能。在燃油经济性和排放之间进行了权衡研究。已经发现可以以少量增加燃料消耗为代价实现显着的排放减少。

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