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Dynamic Characteristics Analysis and Test of Dual-Driving Feed System Driven by Center of Gravity

机译:重心驱动的双驱动进给系统动力学特性分析与测试

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摘要

Dual-driving feed system (DDFS) driven by center of gravity (DCG) has been widely used in advanced manufacturing machine for its high rigidity and precision. However, the DCG technology requires that the joint force coincides with the center of gravity of the sliding stage. The dual-driving synchronization and tracking performance will be affected by the change of center of gravity of the sliding stage. Therefore, this paper proposes dynamic characteristics modeling, identification, and control scheme for DDFS driven by center of gravity (DCG). Firstly, a redundancy dynamic model including rotation and pitch vibration caused by the change of the position of center of gravity is presented for DDFS DCG based on the Lagrange method. The model parameters are identified by system identification experiment, and the predictive natural frequencies and vibration modes by the proposed dynamic model are compared by modal experiment. Moreover, the dynamic model-based cross-coupled sliding mode control (CCSMC) is proposed for DDFS DCG. Then, the proposed dynamic model-based CCSMC has been compared with normal cross-coupled sliding mode control (NCCSMC). Both the simulation and experimental results show that the proposed dynamic characteristics analysis and test scheme of DDFS DCG are validated effectively by comparisons.
机译:重心驱动(DCG)驱动的双驱动进给系统(DDFS)具有高刚性和高精度,已广泛用于先进的制造机械中。但是,DCG技术要求关节力与滑动台的重心一致。双驱动同步和跟踪性能将受滑台重心变化的影响。因此,本文提出了由重心(DCG)驱动的DDFS的动态特性建模,识别和控制方案。首先,基于拉格朗日方法,提出了一种基于重心位置变化而引起的旋转和俯仰振动的冗余动力学模型。通过系统辨识实验确定了模型参数,并通过模态实验比较了所提出的动力学模型的预测固有频率和振动模式。此外,针对DDFS DCG,提出了基于动态模型的交叉耦合滑模控制(CCSMC)。然后,将所提出的基于动态模型的CCSMC与常规的交叉耦合滑模控制(NCCSMC)进行了比较。仿真和实验结果均表明,通过比较,所提出的DDFS DCG动态特性分析和测试方案得到了有效验证。

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  • 来源
    《Mathematical Problems in Engineering》 |2018年第2期|9490826.1-9490826.16|共16页
  • 作者单位

    Wuhan Univ Technol, Sch Mech & Elect Engn, Wuhan, Hubei, Peoples R China;

    Wuhan Univ Technol, Sch Mech & Elect Engn, Wuhan, Hubei, Peoples R China;

    Huazhong Univ Sci & Technol, Sch Mech Sci & Engn, Wuhan, Hubei, Peoples R China;

    Wuhan Univ Technol, Sch Mech & Elect Engn, Wuhan, Hubei, Peoples R China;

    Southeast Missouri State Univ, Sch Ind & Engn Technol, Cape Girardeau, MO 63701 USA;

    Wuhan Univ Technol, Sch Mech & Elect Engn, Wuhan, Hubei, Peoples R China;

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