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Identification and frequency shaping control of a vibration isolation system

机译:隔振系统的辨识和频率整形控制

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摘要

In the present paper, a vibration isolation control problem is considered for the case in which forced vibration disturbances that have a narrow-band frequency component are applied to a system. Such a control problem appears in the vibration isolation control of a rotating machine. Velocity feedback control including notch-filters attenuates the effects of such narrow-band frequency disturbances, but parameter tuning of a controller is difficult because the vibration isolation performance changes dramatically according to slight discrepancies in the controller parameters. In such cases, a direct frequency shaping method such as the H_∞ control is suitable for the controller design. In the present paper, a vibration isolation control problem for a mechanical experimental system, which simulates the characteristics of a rotating machine in space, is considered. A system model was created by performing system identification experiments, and a controller was designed by a frequency shaping method based on the H_∞ control. Control experiments were carried out successfully, and the controller was verified to provide the expected performance.
机译:在本文中,对于将具有窄带频率分量的强制振动干扰应用于系统的情况,考虑了隔振控制问题。这种控制问题出现在旋转机械的振动隔离控制中。包括陷波滤波器的速度反馈控制可减弱这种窄带频率干扰的影响,但是由于振动隔离性能会根据控制器参数中的微小差异而急剧变化,因此控制器的参数调整非常困难。在这种情况下,直接频率整形方法(例如H_∞控制)适用于控制器设计。在本文中,考虑了模拟机械在空间中的旋转机械特性的机械实验系统的隔振控制问题。通过进行系统辨识实验,建立了系统模型,并采用基于H_∞控制的频率整形方法设计了控制器。成功进行了控制实验,并验证了控制器可提供预期的性能。

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