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An online tuned novel nonlinear PI controller for stiction compensation in pneumatic control valves

机译:在线调整的新型非线性PI控制器,用于气动控制阀的静摩擦补偿

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摘要

A novel Nonlinear PI Controller (NPIC) has been proposed for effective control of flow process employing a sticky pneumatic control valve. The proposed control scheme has been inherited from a classical PI control structure with a difference that the integral gain has been varied in accordance with the instantaneous error and the rate of change of error. The tuning of controller has been carried out online using Differential Evolution algorithm. To evaluate the effectiveness of the proposed controller, a comparative study with the conventional PI controller has also been carried out for the setpoint tracking, disturbance rejection and robustness to parameter uncertainties on account of operating point change on a laboratory scale nonlinear flow process. Based on these intensive experimental evidences, it has been concluded that the NPIC performed far better than the conventional PI controller for all the case studies and suppressed effectively any stiction induced oscillations. (C) 2015 ISA. Published by Elsevier Ltd. All rights reserved.
机译:已经提出了一种新颖的非线性PI控制器(NPIC),用于使用粘性气动控制阀来有效控制流量过程。所提出的控制方案从经典的PI控制结构继承而来,其区别在于积分增益已根据瞬时误差和误差变化率而变化。控制器的调节已使用差分进化算法在线进行。为了评估所提出的控制器的有效性,还对常规PI控制器进行了比较研究,以在实验室规模的非线性流量过程中根据工作点的变化来进行设定点跟踪,干扰抑制和参数不确定性的鲁棒性。基于这些大量的实验证据,可以得出结论,在所有案例研究中,NPIC的性能都比常规PI控制器好得多,并且可以有效地抑制任何静摩擦引起的振荡。 (C)2015 ISA。由Elsevier Ltd.出版。保留所有权利。

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