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Time Delay Compensation Using Equivalent Elastic Force Feedback

机译:使用等效弹性力反馈的时间延迟补偿

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This paper proposes a novel time-delay compensation based on the feedback of an elastic force from a wave system. In the previous research, the authors derived wave representation of a time-delay system and showed that there is equivalence between a resonant system, which is expressed by the wave equation, and a time-delay system: both systems consist of a position-input system and a wave-transmission system. Considering the above equivalence, we can infer that the cause of vibrations in the time-delay system is the robustness of the position-input system against the wave-transmission system, as in the case of the resonant system. To reduce the robustness, the feedback of an equivalent elastic force, which is derived from the wave representation, is introduced according to the concept of a resonant ratio control, which is one of vibration control method on a two-mass resonant system. Because the feedback of the elastic force can reduce the equivalent mass of the position-input system, the vibrations due to the time delay are suppressed. The disturbance-suppression performance of the proposed method is superior to that of a Smith predictor and a communication disturbance observer because the proposed method can maintain the feedback characteristic. The validity of the proposed method is confirmed by simulation and experimental results.
机译:本文提出了一种基于波浪系统弹力反馈的新型时滞补偿方法。在先前的研究中,作者推导了一个时滞系统的波动表示,并表明在一个以波动方程表示的共振系统和一个时滞系统之间是等效的:两个系统都由一个位置输入组成。系统和波传输系统。考虑到上述等价关系,我们可以推断出,与共振系统一样,时滞系统中的振动原因是位置输入系统对波传输系统的鲁棒性。为了降低鲁棒性,根据共振比控制的概念,引入了一种等效弹性力的反馈,该等效弹性力是从波动表示中得出的,该比率是两质量共振系统上的一种振动控制方法。因为弹力的反馈可以减小位置输入系统的等效质量,所以可以抑制由于时间延迟引起的振动。该方法的干扰抑制性能优于史密斯预测器和通信干扰观测器,因为该方法可以保持反馈特性。仿真和实验结果验证了该方法的有效性。

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