首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >System dynamic modelling and adaptive optimal control for automatic clutch engagement of vehicles
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System dynamic modelling and adaptive optimal control for automatic clutch engagement of vehicles

机译:车辆自动离合器接合的系统动力学建模和自适应最优控制

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摘要

A non-linear multi-rigid-body system dynamic modelling is developed for the automated clutch system in power transmission during clutch engagements, especially at sharp vehicle start-up, sudden engine flame-out, low driving speed and clutch plate overwearing. In order to guarantee an ideal dynamic performance of the clutch engagement, an adaptive optimal controller is designed by considering throttle angle, engine speed, gear ratio, vehicle acceleration and road condition. A nonlinear model reference adaptive controller is utilized to prevent the engine from flame-out or fly-off effectively and the minimum value principle is also introduced to achieve an optimal dynamic performance of the non-linear system compromised in friction plate wear and vehicle drive quality. The optimal trajectory of the clutch engagement can be described in the form of explicit and analytical expressions and characterized by a deterministic and accurate control strategy instead of indeterministic and soft control techniques which need thousands of experiments. For validation of the controller. test work is carried out for the automated clutch engagements in a commercial car with a traditional mechanical transmission, a hydraulic actuator, a group of sensors and a portable computer system. It is shown through experiments that dynamic behaviours of the clutch engagement operated by the adaptive optimal control are more effective and efficient than those by a fuzzy PID control.
机译:针对自动离合器系统在离合器接合过程中的动力传递开发了非线性多刚体系统动力学模型,特别是在车辆急速启动,发动机突然熄火,行驶速度低和离合器片磨损严重的情况下。为了保证离合器接合的理想动态性能,通过考虑节气门角度,发动机转速,传动比,车辆加速度和路况来设计自适应最优控制器。利用非线性模型参考自适应控制器来有效地防止发动机熄火或飞出,并且还引入了最小值原理,以实现非线性系统的最佳动态性能,该非线性系统在摩擦盘磨损和车辆驱动质量方面受到损害。离合器接合的最佳轨迹可以以明确和分析性的形式描述,其特征在于确定性和精确的控制策略,而不是不确定性和软性控制技术,后者需要数千次实验。用于验证控制器。对商用车中具有传统机械变速器,液压执行器,一组传感器和便携式计算机系统的自动离合器接合进行了测试工作。通过实验表明,由自适应最优控制操作的离合器接合的动态行为比由模糊PID控制的离合器的动态行为更有效。

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