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Reaction-torque-based reflected wave rejection for vibration suppression of integrated resonant and time-delay system

机译:基于反应转矩的反射波抑制,用于抑制共振和时滞系统的振动

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The vibration suppression on a resonant system, based on the reflected wave rejection, has been recently proposed. In the method, the resonant system is modeled through a wave equation, in order to consider high order vibrations and vibration suppression is achieved by eliminating a reflected wave. However, it is difficult to implement such method when there are input and output time-delays, because it requires the implementation of the inverse of a time delay. Under such background, vibration suppression on the integrated resonant and time-delay system by using a modified reflected wave rejection has been proposed. However, a problem still remains, which is to need to use load-position information. Therefore, this paper proposes a novel vibration suppression method for systems including time delays by using a reaction-torque-based reflected wave rejection, which does not use the load position information. The novel reflected wave rejection can estimate and compensate the reflected wave by using motor position and reaction-torque information which is estimated by a reaction-torque observer. The validity of the proposed method is confirmed by experimental results.
机译:最近已经提出了基于反射波抑制的共振系统上的振动抑制。在该方法中,通过波动方程对共振系统进行建模,以考虑高阶振动,并通过消除反射波来实现振动抑制。然而,当存在输入和输出时延时,难以实现这种方法,因为它需要实现时延的倒数。在这样的背景下,已经提出了通过使用改进的反射波抑制来抑制集成谐振和时滞系统的振动。但是,仍然存在问题,这是需要使用载荷位置信息的问题。因此,本文提出了一种新颖的系统抑制振动方法,该方法通过使用基于反作用转矩的反射波抑制技术来解决包含时间延迟的系统,该方法不使用负载位置信息。新颖的反射波抑制可以通过使用电动机位置和反作用转矩观测器估计的反作用转矩信息来估计和补偿反射波。实验结果证实了该方法的有效性。

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