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Analysis and Compensation of Oscillations Induced by Control Valve Stiction

机译:控制阀静摩擦引起的振荡的分析和补偿

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摘要

A time-domain approach (TDA) is formulated to analyze oscillations that are induced by control valve stiction in feedback control loops. Analytical relationships are established between the proportional-integral controller parameters, and the oscillation amplitude and period of the process output. Based on the relationships and the robustness to model uncertainties, a new compensation method by tuning controller parameters is proposed to reduce the oscillation amplitude to a desired value. Compared with the describing function approach, the TDA achieves a significant improvement in accuracy in calculating the oscillation amplitude and period. By contrast to the counterparts in the literature, the proposed compensation method is quantitative and avoids tuning the controller parameters in a trial-and-error manner to compensate oscillations. Experimental examples illustrate the effectiveness of the obtained results.
机译:制定了时域方法(TDA),以分析由反馈控制回路中的控制阀静摩擦引起的振荡。在比例积分控制器参数与过程输出的振荡幅度和周期之间建立了分析关系。基于这种关系和不确定性建模的鲁棒性,提出了一种通过调节控制器参数的新补偿方法来将振荡幅度减小至所需值。与描述函数方法相比,TDA在计算振荡幅度和周期方面的准确性有了显着提高。与文献中的相反,所提出的补偿方法是定量的,并且避免以反复试验的方式调整控制器参数以补偿振荡。实验实例说明了所得结果的有效性。

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