PID、PI-PD、LQR和MPC在滑移分离离合器系统中的实现与比较

Berkan Kaçmaz, M. T. Söylemez
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引用次数: 0

摘要

虽然近年来混合动力汽车的使用和投资不断增加,但由于其结构复杂,生产难度很大。本文旨在利用已有的理论控制方法,为混合动力汽车分离离合器合闸过程提供模块化控制算法。该系统采用PID、LQR和MPC三种方法进行控制,采用经典方法和改进方法。然后,从性能和控制成本方面比较了进一步的方法(PI-PD,已知干扰的LQR和Multi-MPC)的结果。Multi-MPC在控制器成本最高的情况下具有最佳的性能,而LQR在已知干扰的情况下则在其他两个控制器之间运行。此外,PI-PD具有最低的控制器成本和最佳的滑移速度性能,但不能控制滑移速度的变化。
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Implementation and Comparison of PID, PI-PD, LQR and MPC on Separation Clutch System in Slip
Although the usage and investment on hybrid vehicles are increased in recent years, the production is demanding solutions due to complex structures. In this paper, it is aimed to provide a modular control algorithm for separation clutch closing process in hybrid vehicles by using well-studied theoretical control methods. The system is controlled by PID, LQR and MPC methods with both classical and further approaches. Then, the results of further approaches (PI-PD, LQR with known disturbances, and Multi-MPC) are compared in terms of performance and control cost. Multi-MPC has the best performance with highest controller cost while LQR with known disturbances has performed between the other two controllers. Moreover, PI-PD has the lowest controller cost and best performance for slip speed but it is not able to control the slip speed change.
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