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Self-adaptive optimal control of dry dual clutch transmission (DCT) during starting process

机译:起动过程中干式双离合变速器(DCT)的自适应最佳控制

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摘要

An optimal control based on the minimum principle is proposed to solve the problems with the starting process of the self-developed five-speed dry dual clutch transmission (DCT). For the slipping phase, the minimum principle and improved engine constant speed control are adopted to obtain the optimal clutch and engine torques and their rotating speeds, with the minimum jerk intensity and friction work as optimization indices. For the stable running phase, the engine torque is converted to the driver's level of demand. The Matlab/Simulink software platform was used to simulate the DCT vehicle in the starting stage. The simulation and related analysis were conducted for different engine speeds and intentions of the driver. The results showed that the proposed clutch starting control strategy not only reduces the level of jerk and the frictional energy loss but also follows the different starting intentions of the driver. The optimum clutch engagement principle was transformed into the clutch position principle, and a test was carried out on the test bench to validate the effectiveness of the optimum clutch position curve.
机译:提出了基于最小原理的最优控制,以解决自主研发的五速干式双离合变速器(DCT)启动过程中的问题。对于打滑阶段,采用最小原理和改进的发动机恒速控制来获得最佳的离合器和发动机扭矩及其转速,以最小的急动强度和摩擦功作为优化指标。对于稳定的运行阶段,发动机扭矩将转换为驾驶员的需求水平。在开始阶段,使用Matlab / Simulink软件平台来模拟DCT车辆。针对不同的发动机转速和驾驶员的意图进行了仿真和相关分析。结果表明,所提出的离合器启动控制策略不仅减少了急动程度和摩擦能量损失,而且遵循了驾驶员的不同启动意图。将最佳离合器接合原理转换为离合器位置原理,并在测试台上进行了测试,以验证最佳离合器位置曲线的有效性。

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