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Integrated Control Strategy in the Power-On Upshift Process of Automatic Transmission Based on Transmission Output Torque

机译:基于传输输出扭矩的自动变速器电源升档过程中的集成控制策略

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Gear-shift process of automatic transmission (AT) can be achieved with hydraulic control system which operates clutches or brakes' engagement or disengagement. According to the state of engagement elements, gear-shift process can be divided into torque phase and inertia phase. This article analyses gear-shift process of automatic transmission with the lever analogy and got the variation of the transmission's output torque. Then, the control principle of clutch to clutch shift is studied. This article takes power on up shift as study example and minimum of transmission output torque fluctuations during shifting as control target. Then this article analysis two control principles including inertia phase engine & transmission integrated control principle and entire shift process engine & transmission integrated control principle. For the factors that affect shifting during different stages and the characteristics of different shift control principles, clutch pressure observer based on input-to-state stability (ISS) is designed and applied to the entire shift process engine & transmission integrated control principle. Finally, the proposed control principle is applied on the vehicle simulation platform, Simulation results are compared to the results of power-on up shift without engine & transmission integrated control and integrated control strategy based on the transmission output torque observer which is designed based on the torque converter model. It is proved that the transmission output torque overshoot peak with inertia phase engine & transmission integrated control strategy is decreased significantly and shifting jerks are reduced. Shift quality is improved significantly.
机译:通过操作离合器或制动器的接合或脱离的液压控制系统可以实现自动变速器(AT)的变速过程。根据接合元件的状态,可以分为扭矩相和惯性阶段的换档过程。本文分析了用杠杆类比自动变速器的变速过程,并获得了变速器的输出扭矩的变化。然后,研究了离合器与离合器移位的控制原理。本文在转换为控制目标期间,该文章作为研究示例和最小传输输出扭矩波动的电源。然后,本文分析了两个控制原则,包括惯性阶段发动机和传输集成控制原理和整个换档过程发动机和传输集成控制原理。对于影响不同阶段的变速的因素和不同换档控制原理的特性,基于输入到状态稳定性(ISS)的离合器压力观测器设计并应用于整个换档过程发动机和传输集成控制原理。最后,所提出的控制原理应用于车辆仿真平台,将仿真结果与基于基于传输输出扭矩观测器的发动机输出扭矩观测器的发动机和传输集成控制和集成控制策略进行了比较。变矩器模型。事实证明,具有惯性相位发动机和传输集成控制策略的传输输出扭矩过冲峰值显着下降,减小了换热。换档质量显着提高。

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