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Design and implementation of an industrial generalized predictive controller on multivariable processes via programmable logic controllers

机译:通过可编程逻辑控制器在多变量过程中设计工业通用预测控制器

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This paper addresses design and implementation of an Industrial Generalized Predictive Controller with the aid of artificial neural networks (ANNs) for multivariable processes via industrial Programmable Logic Controllers (PLCs). Nowadays, Although PLCs are the widely accepted computer-based industrial controllers due to their remarkable advantages, implementation of advanced control techniques is not easily possible on available PLCs. Therefore, searching ways of implementing these control techniques via PLCs even with low computational power can promote the product quality in process industries. The key novelty of this paper is, implementing an Industrial Generalized Predictive Control via PLC, in which the controller parameters are approximated by using artificial neural network (ANN). Furthermore, a fast programming technique based on simplified algorithms using IEC 61131-3 standard is investigated. In addition, laboratory experiments are carried out for a two-input two-output semi-industrial level and temperature process in the PLC Laboratory of Shiraz University. Implementation of traditional PID controllers on the same PLC is also investigated for comparative purpose. Experimental results reveal the superiority of the proposed approach over the traditional PID controllers in both set point tracking and control action. Besides, the results show that such advanced techniques can be implemented on PLCs with normal computational power without bearing the high cost of upgrading the PLCs.
机译:本文借助人工神经网络(ANN)通过工业可编程逻辑控制器(PLC)解决多变量过程的工业通用预测控制器的设计和实现。如今,尽管PLC由于其显着的优势而成为基于计算机的工业控制器,但是在现有的PLC上实现先进的控制技术并不容易。因此,寻找即使在计算能力较低的情况下也可以通过PLC实现这些控制技术的方法,可以提高过程工业中的产品质量。本文的关键新颖之处在于,通过PLC实现工业通用预测控制,其中控制器参数通过使用人工神经网络(ANN)进行近似。此外,研究了基于简化算法并使用IEC 61131-3标准的快速编程技术。此外,在设拉子大学的PLC实验室进行了两输入两输出半工业级和温度过程的实验室实验。为了进行比较,还研究了传统PID控制器在同一PLC上的实现。实验结果表明,该方法在设定值跟踪和控制作用方面均优于传统的PID控制器。此外,结果表明,这种先进的技术可以在具有正常计算能力的PLC上实现,而无需承担PLC升级的高昂费用。

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