首页> 外文会议>Proceedings of the ASME dynamic systems and control conference 2009 >ADAPTIVE CALIBRATION AND CONTROL OF CASCADE PROCESSES WITH UNKNOWN MEASUREMENT MODEL AND ACTUATOR DYNAMICS AND ITS APPLICATION TO PAPER MANUFACTURING
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ADAPTIVE CALIBRATION AND CONTROL OF CASCADE PROCESSES WITH UNKNOWN MEASUREMENT MODEL AND ACTUATOR DYNAMICS AND ITS APPLICATION TO PAPER MANUFACTURING

机译:未知过程模型和执行机构动力学的级联过程自适应标定与控制及其在造纸中的应用

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摘要

Many industrial processes are in cascade configuration in which the material being processed goes through a sequence of processing units. The output of an upstream processing unit is fed into the input of the unit downstream. In many cases, the variables of interests are only available via related uncertain surrogate measurements in the all the upstream stages , and directly measured at the output of the last stage. The problem of controlling such systems by adaptively calibrating the surrogate measurement model and the use of a pre-emptive control strategy was studied in [9]. In this paper, the unknown actuator dynamics is taken into account in the adaptive calibration and pre-emptive control as well. A Lyapunov based nonlinear control algorithm is derived. The proposed control algorithm is applied to a vacuum dewatering process in paper manufacturing industry. Simulation results show that the proposed control strategy can regulate the exiting moisture content of each unit at the desired value.
机译:许多工业过程都是级联配置,其中要处理的材料经过一系列处理单元。上游处理单元的输出被馈送到下游单元的输入。在许多情况下,仅通过所有上游阶段中相关的不确定的替代指标测量才能获得关注变量,并直接在最后阶段的输出中进行测量。在文献[9]中研究了通过自适应地校准替代测量模型来控制此类系统的问题,以及采用了先发制人的控制策略。在本文中,未知的执行器动力学也被考虑在自适应校准和先发制人控制中。推导了基于李雅普诺夫的非线性控制算法。所提出的控制算法被应用于造纸工业的真空脱水过程中。仿真结果表明,所提出的控制策略可以将每个单元的现有水分含量调节到期望值。

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