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新型摩擦模型的参数辨识及补偿实验研究 被引量:6
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作者 王中华 王兴松 +1 位作者 王群 徐卫良 《制造业自动化》 2001年第6期30-32,42,共4页
针对影响运动控制性能的非线性摩擦因素,对一种新型摩擦模型的参数 辨识及其基于摩擦模型的补偿进行了实验研究,详细地给出了摩擦模型参数的 辨识步骤及补偿算法。实验结果表明,此辨识方案及补偿算法可以应用于工业 的高精度运动控... 针对影响运动控制性能的非线性摩擦因素,对一种新型摩擦模型的参数 辨识及其基于摩擦模型的补偿进行了实验研究,详细地给出了摩擦模型参数的 辨识步骤及补偿算法。实验结果表明,此辨识方案及补偿算法可以应用于工业 的高精度运动控制中。 展开更多
关键词 擦模型 参数辨识 摩控补偿 运动
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Experimental Comparison Between PID Control and Friction Compensation Control for a Class of Nonlinear System with Friction
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作者 彭熙伟 张三同 《Journal of Beijing Institute of Technology》 EI CAS 2001年第4期389-394,共6页
A point to? point positioning control of systems with highly nonlinear frictions is studied. In view of variable frictions caused by the changes of load torque, an experimental comparison was made between the valve?... A point to? point positioning control of systems with highly nonlinear frictions is studied. In view of variable frictions caused by the changes of load torque, an experimental comparison was made between the valve? controlled hydraulic motor servo system with PID control and that with friction compensation control. Experimental results show that the gross steady errors are caused by frictions when the system is controlled by the conventional proportional control algorithm. Although the errors can be reduced by introducing the integral control, the limit cycle oscillation and the long setting time are caused. The positioning error for a constant load torque can be eliminated by using fixed friction compensation, but poor positioning accuracy is caused by the same fixed friction compensation when the load torques varies greatly. The dynamic friction compensation based on the error and change in error measurements can significantly improve the position precision in a broad range of the changes of load torque. 展开更多
关键词 PID control friction compensation point-to-point control load torque
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Pressure-tracking control of a novel electro-hydraulic braking system considering friction compensation 被引量:11
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作者 雍加望 高峰 +1 位作者 丁能根 HE Yu-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第8期1909-1921,共13页
This work presents an integrated pressure-tracking controller for a novel electro-hydraulic brake(EHB) system considering friction and hydraulic disturbances. To this end, a mathematical model of an EHB system, consis... This work presents an integrated pressure-tracking controller for a novel electro-hydraulic brake(EHB) system considering friction and hydraulic disturbances. To this end, a mathematical model of an EHB system, consisting of actuator and hydraulic sub-systems, is derived for describing the fundamental dynamics of the system and designing the controller. Due to sensor inaccuracy and measurement noise, a Kalman filter is constructed to estimate push rod stroke for generating desired master cylinder pressure. To improve pressure-tracking accuracy, a linear friction model is generated by linearizing the nonlinear Tustin friction model, and the unmodeled friction disturbances are assumed unknown but bounded. A sliding mode controller is designed for compensating friction disturbances, and the stability of the controller is investigated using the Lyapunov method. The performance of the proposed integrated controller is evaluated with a hardware-in-the-loop(HIL) test platform equipped with the EHB prototype. The test results demonstrate that the EHB system with the proposed integrated controller not only achieves good pressure-tracking performance, but also maintains robustness to friction disturbances. 展开更多
关键词 electro-hydraulic brake brake-by-wire Kalman filter sliding mode control pressure-tracking friction compensation
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