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Acceleration decoupling control of 6 degrees of freedom electro-hydraulic shaking table

机译:加速去耦控制6度自由式电动液压摇台

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Electro-hydraulic shaking tables are widely used for vibration testing where high force and displacement amplitudes are required. In particular, they are a vital tool in seismic testing, enabling the development of buildings and other structures which are earthquake resistant. Three-variable-control (TVC) is commonly used for the control of multi-degrees of freedom (DOFs) electro-hydraulic shaking tables. However, the coupling between the DOFs is often significant and is not compensated by TVC. In this paper, an acceleration decoupling control (ADC) method is presented for a 6 DOFs electro-hydraulic shaking table system to improve the acceleration tracking performance and decouple the motion in task space. The gravitational, Coriolis, and centripetal forces are compensated for in joint space based on a dynamic model of the shaking table. Modal control is used to transform the coupled dynamics into six independent systems. Inverse dynamics models are used to cancel the differences in actuator dynamics. The proportional gains in modal space are tuned heuristically to give sufficient stability margins to provide robustness in the presence of modeling errors. The input filter and feedforward controller in TVC are added to improve the acceleration tracking performance of each independent system. Experimental acceleration frequency responses are used to demonstrate the effectiveness of ADC, and in particular these show a consistent reduction in cross-axis coupling compared to TVC. Moreover, only four parameters need to be tuned, as opposed to 36 for TVC, and the method provides a viable route to improving the accuracy of seismic testing in the future.
机译:电动液压摇动表广泛用于振动测试,其中需要高力和位移幅度。特别是,它们是地震检测中的重要工具,使建筑物的发展和其他是抗震的结构的发展。三种可变控制(TVC)通常用于控制多程度的自由度(DOFS)电液摇动表。然而,DOF之间的耦合通常是显着的,并且没有通过TVC补偿。本文提出了一种加速去耦控制(ADC)方法,用于6 DOFS电动液压振动台系统,以改善加速跟踪性能并将运动中的运动分离在任务空间中。基于振动台的动态模型,在关节空间中补偿重力,科里奥利和离心机。模态控件用于将耦合动力学转换为六个独立系统。逆动力学模型用于取消执行器动态的差异。模态空间中的比例增益在启动地上调谐,以提供足够的稳定性边缘,以在模拟错误存在下提供鲁棒性。添加了TVC中的输入滤波器和前馈控制器以提高每个独立系统的加速跟踪性能。实验加速度频率响应用于证明ADC的有效性,特别是它们与TVC相比,这些横轴耦合显示了一致的减少。此外,只需要调整四个参数,而不是36用于TVC,而该方法提供了可行的可行途径,以提高未来地震检测的准确性。

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