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Concurrent design of energy management and vehicle stability algorithms for a parallel hybrid vehicle using Dynamic Programming

机译:基于动态规划的并行混合动力汽车能量管理和车辆稳定性算法的并行设计

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摘要

In this paper, concurrent design of controllers for a vehicle equipped with a parallel hybrid powertrain is studied. Our work focuses on designing the two control algorithms, the energy management and the vehicle stability, concurrently which are traditionally considered separately. Dynamic Programming (DP) technique is used in order to obtain the optimal response trace for the controllers. In energy management strategy torque split ratio between engine and electric motor is used as a control signal. Additionally, in vehicle dynamics control strategy the torque split factor between front and rear axles is used as a control signal. Minimizing the fuel consumption and wheel slip is used as cost functions in energy management and vehicle dynamics control strategies respectively. Two dynamic problems are solved separately first and compared to the concurrent solution of the problems. Results show promising benefits can be obtained from the concurrent DP solution and rule extraction for designing better hybrid vehicle controllers. © 2012 AACC American Automatic Control Council).
机译:在本文中,研究了配备有并联混合动力总成的车辆控制器的并行设计。我们的工作重点是同时设计两个控制算法,即能量管理和车辆稳定性,这在传统上是分开考虑的。动态编程(DP)技术用于获得控制器的最佳响应轨迹。在能量管理策略中,发动机和电动机之间的扭矩分配比用作控制信号。另外,在车辆动力学控制策略中,前后桥之间的扭矩分配系数用作控制信号。最小化燃料消耗和车轮打滑分别用作能量管理和车辆动力学控制策略中的成本函数。首先分别解决两个动态问题,然后将其与并发解决方案进行比较。结果表明,从并发的DP解决方案和规则提取中可以得到有益的收益,以设计更好的混合动力车辆控制器。 ©2012 AACC美国自动控制委员会)。

著录项

  • 作者

    Dokuyucu H.I.; Cakmakci, M.;

  • 作者单位
  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 English
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