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Exploring the Use of Design of Experiments in Industrial Processes Operating Under Closed-Loop Control:Experimentation in closed-loop systems

机译:探讨在闭环控制下工业过程中实验设计的应用:闭环系统中的实验

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摘要

Industrial manufacturing processes often operate under closed-loop control, where automation aims to keep important process variables at their set-points. In process industries such as pulp, paper, chemical and steel plants, it is often hard to find production processes operating in open loop. Instead, closed-loop control systems will actively attempt to minimize the impact of process disturbances. However, we argue that an implicit assumption in most experimental investigations is that the studied system is open loop, allowing the experimental factors to freely affect the important system responses. This scenario is typically not found in process industries. The purpose of this article is therefore to explore issues of experimental design and analysis in processes operating under closed-loop control and to illustrate how Design of Experiments can help in improving and optimizing such processes. The Tennessee Eastman challenge process simulator is used as a test-bed to highlight two experimental scenarios. The first scenario explores the impact of experimental factors that may be considered as disturbances in the closed-loop system. The second scenario exemplifies a screening design using the set-points of controllers as experimental factors. We provide examples of how to analyze the two scenarios.
机译:工业制造过程通常在闭环控制下运行,其中自动化旨在将重要的过程变量保持在设定点。在制浆,造纸,化工厂和钢铁厂等过程工业中,通常很难找到开环运行的生产过程。相反,闭环控制系统将积极尝试使过程干扰的影响最小化。但是,我们认为大多数实验研究中的一个隐含假设是所研究的系统是开环的,允许实验因素自由地影响重要的系统响应。在流程行业中通常找不到这种情况。因此,本文的目的是探讨在闭环控制下运行的过程中的实验设计和分析问题,并说明“实验设计”如何帮助改进和优化此类过程。田纳西州伊士曼挑战赛过程模拟器用作测试台,以突出两种实验方案。第一种情况探讨了实验因素的影响,这些因素可能被视为闭环系统中的干扰。第二种情况举例说明了使用控制器设定点作为实验因素的筛选设计。我们提供了有关如何分析这两种情况的示例。

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