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Sensitivity compensating nonlinear control: Exact model based approach

机译:灵敏度补偿非线性控制:基于精确模型的方法

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摘要

A novel sensitivity compensating nonlinear control (SCNC) approach is proposed within generic model control (GMC) framework for processes exhibiting input sensitivity. The proposed approach consists of defining a new process, control law and set point such that the determined control action drives the original process to its desired set point. External reset feedback (ERF), used to compensate for input saturation, is extended to higher relative degree systems as extended ERF (EERF), and is incorporated in the context of SCNC approach. The proposed control algorithms are evaluated by application to an open-loop unstable CSTR control problem and a multi-product semi-batch polymerization reactor temperature control problem. The present study illustrates the versatility of the proposed SCGMC schemes compared to the basic GMC schemes in terms of output tracking and smoother input profiles. SCNC can be extended to other nonlinear model based controllers where the control law can be expressed analytically.
机译:在通用模型控制(GMC)框架内,针对显示输入灵敏度的过程,提出了一种新颖的灵敏度补偿非线性控制(SCNC)方法。所提出的方法包括定义新的过程,控制律和设定点,以使确定的控制动作将原始过程驱动到其所需的设定点。用于补偿输入饱和的外部复位反馈(ERF)作为扩展的ERF(EERF)扩展到了较高相对度的系统,并被纳入SCNC方法的上下文中。将所提出的控制算法应用于开环不稳定CSTR控制问题和多产品半间歇式聚合反应器温度控制问题。本研究说明了与基本GMC方案相比,提出的SCGMC方案在输出跟踪和更平滑的输入轮廓方面的多功能性。 SCNC可以扩展到其他基于非线性模型的控制器,在该控制器中可以解析地表达控制律。

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