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Optimal torque coordinating control strategy applied in downshifting process of a novel seamless automatic transmission

机译:新型无缝自动变速器下杂交过程应用最优扭矩协调控制策略

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A novel seamless automatic transmission with only a single friction clutch, is focused in this paper. The dynamic model of the automatic transmission's downshifting process, is analyzed to establish the coordinating control strategy on the torque of the engine and the friction clutch. In the optimization, the torque gradient of the friction clutch and the power source are treated as the two control variables. Furthermore, the inequality constraints are applied on the control variables and the state variables. By solving the constrained Bolza problem with the numerical methods, the optimal state variables' trajectory is obtained. Besides, the coordinating control strategy is applied on the simulation model on the Matlab/Simulink platform as well as on bench-test, the results indicate that the characteristic of shifting without driving power interrupt during the downshift process is guaranteed and the dynamic performance is improved.
机译:仅具有单个摩擦离合器的新型无缝自动变速器,专注于本文。分析了自动变速器的下档过程的动态模型,以建立发动机扭矩和摩擦离合器的协调控制策略。在优化中,摩擦离合器和电源的扭矩梯度被视为两个控制变量。此外,不等式约束应用于控制变量和状态变量。通过用数值方法求解约束的Bolza问题,获得最佳状态变量的轨迹。此外,协调控制策略应用于Matlab / Simulink平台的仿真模型以及基准测试,结果表明,保证了在低档处理期间在不驱动电源中断的情况下移位的特性,并且动态性能得到改善。

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