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Optimal Control of the Gearshift Command for Hybrid Electric Vehicles

机译:混合动力汽车变速指令的最优控制

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This paper proposes a design method for the energy management strategy to explore the potential fuel saving of a hybrid electric vehicle (HEV) equipped with an automated manual transmission. The control algorithm is developed based on the combination of dynamic programming (DP) and Pontryagin's minimum principle (PMP) to optimally control the discrete gearshift command, in addition to the continuous power split between the internal combustion engine and the electric machine. The proposed method outperforms DP in terms of computational efficiency, being 171 times faster, without loss of accuracy. Simulation results for a middle-sized HEV on the New European Drive Cycle show that, to further optimize the gearshift strategy, an additional fuel saving of 20.3% can be reached. Furthermore, with the start–stop functionality available, it is shown that the two-point boundary-value problem following from PMP cannot be solved with sufficient accuracy without loss of optimality. This means that the finding of a constant value for the Lagrange multiplier while satisfying the battery state-of-energy (SOE) at the terminal time is not always guaranteed. Therefore, an alternative approach of SOE feedback control to adapt the Lagrange multiplier is adopted. The obtained results are very close to the globally optimal solution from DP. Simulation results, including the start–stop functionality, show that the relative fuel saving can be up to 26.8% compared with the case of a standard gearshift strategy.
机译:本文提出了一种能源管理策略的设计方法,以探索配备自动手动变速箱的混合动力汽车(HEV)的潜在节油方式。该控制算法是基于动态编程(DP)和Pontryagin最小原理(PMP)的组合而开发的,以优化控制离散变速命令,以及内燃机和电机之间的连续功率分配。所提出的方法在计算效率方面优于DP,速度提高了171倍,而没有损失准确性。中型混合动力汽车在“新欧洲行驶周期”上的仿真结果表明,为进一步优化换档策略,可以节省20.3%的燃油。此外,利用可用的起停功能,可以证明从PMP得到的两点边值问题不能在没有丧失最优性的情况下以足够的精度解决。这就是说,在终端时间不满足电池能量状态(SOE)的情况下,始终无法确保找到Lagrange乘数的恒定值。因此,采用了SOE反馈控制的另一种方法来适应Lagrange乘数。获得的结果非常接近DP的全局最优解。包括起停功能的仿真结果表明,与标准换挡策略相比,相对燃油节省高达26.8%。

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