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Position Control of Resonant System with Load Force Suppression Using Wave Observer

机译:波动观测器抑制负载力的谐振系统位置控制

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In industrial applications, reducing the stiffness caused by mechanical constraints, such as using gear, induces a vibration at the tip of a system, which can become a problem. Thus, research is ongoing on vibration control scheme based on a wave equation to suppress all resonances by eliminating reflected waves. However, the conventional method based on the wave equation does not consider robustness against a load force. This paper proposes position control of a resonant system using wave observer to enhance robustness against the load force. In the proposal, the resonant system is modeled as the wave equation containing the load force and control system design is based on the wave equation. Vibration suppression is achieved by a reflected wave rejection, which can suppress all resonances of a resonant system. Moreover, the conventional reflected wave rejection structure is modified to realize robustness against disturbance acting on the motor side. In addition, the wave observer is proposed for eliminating an effect of the load force. Finally, the validity of the proposed method is verified by experiments.
机译:在工业应用中,降低由机械约束(例如使用齿轮)引起的刚度会在系统尖端引起振动,这可能会成为问题。因此,正在进行基于波动方程的振动控制方案的研究,以通过消除反射波来抑制所有共振。然而,基于波动方程的传统方法没有考虑抵抗负载力的鲁棒性。本文提出了一种使用波动观测器的共振系统位置控制,以增强抵抗负载力的鲁棒性。在该建议中,将共振系统建模为包含负载力的波动方程,并且基于波动方程的控制系统设计。通过抑制反射波来实现振动抑制,这可以抑制谐振系统的所有谐振。此外,对常规的反射波抑制结构进行了修改,以实现抵抗作用在电动机侧的干扰的鲁棒性。另外,提出了一种波观测器以消除负载力的影响。最后,通过实验验证了该方法的有效性。

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