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Singularly Perturbation Method Applied To Multivariable PID Controller Design

机译:奇异摄动法在多变量pID控制器设计中的应用

摘要

Proportional integral derivative (PID) controllers are commonly used in process industries due to their simple structure and high reliability. Efficient tuning is one of the relevant issues of PID controller type. The tuning process always becomes a challenging matter especially for multivariable system and to obtain the best control tuning for different time scales system. This motivates the use of singularly perturbation method into the multivariable PID (MPID) controller designs. In this work, wastewater treatment plant and Newell and Lee evaporator were considered as system case studies. Four MPID control strategies, Davison, Penttinen-Koivo, Maciejowski, and Combined methods, were applied into the systems. The singularly perturbation method based on Naidu and Jian Niu algorithms was applied into MPID control design. It was found that the singularly perturbed system obtained by Naidu method was able to maintain the system characteristic and hence was applied into the design of MPID controllers. The closed loop performance and process interactions were analyzed. It is observed that less computation time is required for singularly perturbed MPID controller compared to the conventional MPID controller. The closed loop performance shows good transient responses, low steady state error, and less process interaction when using singularly perturbed MPID controller.
机译:比例积分微分(PID)控制器由于其结构简单和可靠性高而常用于过程工业。有效的调节是PID控制器类型的相关问题之一。尤其对于多变量系统,以及对于不同时标系统获得最佳控制调整,调整过程始终成为具有挑战性的问题。这激发了在多变量PID(MPID)控制器设计中使用奇摄动方法。在这项工作中,废水处理厂以及Newell和Lee蒸发器被视为系统案例研究。四个MPID控制策略(Davison,Penttinen-Koivo,Maciejowski和组合方法)被应用到系统中。将基于Naidu和Jian Niu算法的奇异摄动方法应用于MPID控制设计。发现通过Naidu方法获得的奇摄动系统能够保持系统特性,因此被应用于MPID控制器的设计中。分析了闭环性能和过程相互作用。可以看出,与传统的MPID控制器相比,奇摄动的MPID控制器所需的计算时间更少。使用奇摄动的MPID控制器时,闭环性能显示出良好的瞬态响应,较低的稳态误差以及较少的过程交互。

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