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Reduced-order observer-based robust synchronisation control of cold rolling mills with measurement delay

机译:测量延迟冷轧机的减少观测器的鲁棒同步控制

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摘要

To improve the quality of strip thickness, synchronisation control is investigated for cold rolling mills driven by dual-cylinder electro-hydraulic servo systems. Realising synchronised control in hydraulic automatic gauge control (HAGC) systems of cold rolling mills has challenges with not only the inherent nonlinearities of hydraulic servo systems and uncertainties of load variation but also measurement delay of strip thickness. Since all states are not measurable in practice, output feedback robust synchronisation control problem should be addressed for uncertain nonlinear systems with output delay. Thus, a reduced-order observer-based robust synchronous controller is presented by employing Lyapunov functional stability theory. The controller designed by incorporating the integral of the position synchronisation error of two pistons into state variables successfully guarantees asymptotic convergence to zero of both tracking errors and synchronisation error simultaneously regardless of the nonlinearities and uncertainties as well as the measurement delay. Simulation results in a model obtained from a real cold strip rolling mill demonstrate the effectiveness of the approach.
机译:为了提高条带厚度的质量,研究了由双缸电液伺服系统驱动的冷轧机的同步控制。冷轧机的液压自动量表控制(HAGC)系统中实现同步控制,不仅具有液压伺服系统的固有非线性以及负载变化的不确定性,而且还具有挑战,而且还具有负载变化的不确定性,而且还具有诸如条带厚度的测量延迟。由于所有状态在实践中不可测量,因此应对输出延迟的不确定非线性系统解决输出反馈稳健的同步控制问题。因此,通过采用Lyapunov功能稳定性理论来提出了一种基于阶的观察者的鲁棒同步控制器。通过将两个活塞的位置同步误差的积分结合到状态变量的整体设计的控制器成功地保证了渐近收敛到跟踪误差和同步误差的零,而不管非线性和不确定性以及测量延迟。仿真结果在真正的冷轧带材轧机获得的模型中,证明了该方法的有效性。

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