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Dynamic analysis of nonlinear behaviour in inertial actuators

机译:惯性执行器中非线性行为的动态分析

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Inertial actuators are devices typically used to generate the control force on a vibrating structure. Generally, an inertial actuator comprises a proof-mass suspended in a magnetic field. The inertial force due to the moving mass is used to produce the secondary force needed to control the vibration of the primary structure. Inertial actuators can show nonlinear behaviour, such as stroke saturation when driven at high input voltages. If the input voltage is beyond their limit, they can hit the end stop of the actuator casing and saturate. In this paper, the force generated by an inertial actuator is measured experimentally and numerical simulations of a linear piecewise stiffness model are carried out and compared with the results of analytical methods. First, a numerical model for a symmetric bilinear stiffness is derived and a parametric study is carried out to investigate the change of the end stop stiffness. In addition, the variation of the amplitude of the excitation is considered and a comparison is made with the analytical solution using the harmonic balance method. Finally, experimental measurements are carried out and the results are compared with simulated data to establish the accuracy of the model.
机译:惯性致动器是通常用于在振动结构上产生控制力的装置。通常,惯性致动器包括悬挂在磁场中的焊接质量。由于移动质量引起的惯性力用于产生控制初级结构振动所需的次要力。惯性致动器可以在高输入电压驱动时显示非线性行为,例如冲程饱和。如果输入电压超出其限制,则它们可以击中致动器壳体的端部停止并饱和。在本文中,通过实验测量由惯性致动器产生的力,并进行线性分段刚度模型的数值模拟,并与分析方法的结果进行比较。首先,推导出对称双线性刚度的数值模型,并进行参数研究以研究端部止动刚度的变化。另外,考虑激发幅度的变化,并使用谐波平衡法使用分析解决方案进行比较。最后,执行实验测量,并将结果与​​模拟数据进行比较,以确定模型的准确性。

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