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Two-stage multivariable IMC Antiwindup (TMIA) control of a Quadruple Tank process using a PLC

机译:使用PLC对四缸储罐过程进行两阶段多变量IMC抗卷绕(TMIA)控制

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Actuator saturation is a common phenomenon in the control of multivariable systems which causes two major problems for control engineers, namely windup and direction­ality. This paper focuses on a Two-stage Multivariable IMC Antiwindup (TMIA) structure for open-loop stable plants. This IMC-based control structure is of interest because it tackles the aforementioned problems in an intuitive and easy to tune way. The highlight of this structure is the solution of two low-order quadratic programs to control both steady-state and transient behaviours of the plant. The controller is tested by application to a multivariable Quadruple Tank process controlled by a PLC. The TMIA structure is found to outperform its IMC counterparts in handling windup and directionality. Results obtained demonstrate the realizability of the advanced control technique on an off-the-shelf industrial PLC. Thus the TMIA structure is presented as a competitive alternative in terms of tuning transparency and reduced computations to other advanced control techniques such as MPC which are limited by the low computational power offered by standard PLCs.
机译:致动器饱和是多变量系统控制中的常见现象,它对控制工程师造成两个主要问题,即饱和度和方向性。本文针对开环稳定工厂,重点研究了两阶段多变量IMC抗闭环(TMIA)结构。这种基于IMC的控制结构是令人感兴趣的,因为它以直观且易于调整的方式解决了上述问题。该结构的亮点是两个低阶二次程序的解决方案,以控制设备的稳态和瞬态行为。该控制器通过应用于由PLC控制的多变量四联箱过程进行测试。发现TMIA结构在处理缠绕和方向性方面优于其IMC同类产品。获得的结果证明了先进控制技术在现成的工业PLC上的可实现性。因此,就调节透明性和减少对其他先进控制技术(例如MPC)的竞争性而言,TMIA结构作为一种竞争性替代方案受到了其他限制,而MPC等常规控制技术受到标准PLC提供的低计算能力的限制。

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