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Comprehensive parameter identification of feed servo systems with friction based on responses of the worktable

机译:基于工作台响应的带有摩擦的进给伺服系统的综合参数识别

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摘要

A comprehensive identification method for structure and friction parameters of feed servo systems is put forward. A motor direct-connected feed system with Stribeck friction law is investigated. The relation between the critical stick-slip velocity of the worktable and the structure parameters as well as the difference between the static and Coulomb friction coefficient is derived first. Then, according to the data of critical stick-slip velocities at different feed positions, the structural parameters (such as diameter, lead and bearing length of the ball screw) are estimated using the nonlinear least square method. Furthermore, based on the stick-slip displacement response of the worktable, the Stribeck friction parameters are obtained using the direct graphical registration method. The feasibility and validity of the presented identification method is verified by numerical simulation. All the work can provide a theoretical reference for the comprehensive parameters identification of feed systems.
机译:提出了一种进给伺服系统结构和摩擦参数的综合辨识方法。研究了具有斯特里贝克摩擦定律的电机直连式进给系统。首先得出工作台的临界粘滑速度与结构参数之间的关系,以及静摩擦系数和库仑摩擦系数之间的差。然后,根据不同进给位置的临界粘滑速度数据,采用非线性最小二乘法估算结构参数(如滚珠丝杠的直径,导程和轴承长度)。此外,基于工作台的粘滑位移响应,可使用直接图形套准方法获得Stribeck摩擦参数。数值仿真验证了所提识别方法的可行性和有效性。所有工作均可为进料系统的综合参数辨识提供理论参考。

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