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Model-Based Split-Range Algorithm for the Temperature Control of a Batch Reactor

机译:间歇式反应器温度控制的基于模型的裂域算法

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摘要

In the manufacturing processes of high value-added products in the pharmaceutical, fine chemical polymer and food industry, insufficient control might produce off-grade products. This can cause significant financial losses, or in the pharmaceutical industry, it can result in an unusable batch. In these industries, batch reactors are commonly used, the control of which is essentially a problem of temperature control. In the industry, an increasing number of heating-cooling systems utilising three different temperature levels can be found, which are advantageous from an economic point of view. However, it makes the control more complicated. This paper presents a split-range designing technique using the model of the controlled system with the aim to design a split-range algorithm more specific to the actual sys- tem. The algorithm described provides high control performance when using it with classical PID-based cascade temperature control of jacketed batch reactors; however, it can be used with or as part of other types of controllers, for ex- ample, model-based temperature controllers. The algorithm can be used in the case of systems where only two as well as where three temperature levels are used for temperature control. Besides the switching between the modes of opera- tion and calculating the value of the manipulated variable, one of the most important functions of the split-range algo- rithm is to keep the sign of the gain of the controlled system unchanged. However, with a more system-specific split-range solution, not only can the sign of the gain be kept unchanged, but the gain can also be constant or less de- pendent on the state of the system. Using this solution, the design of the PID controller becomes simpler and can be implemented in existing systems without serious changes.
机译:在制药,精细化工聚合物和食品工业中高附加值产品的制造过程中,控制不足可能会产生劣质产品。这可能会导致重大的财务损失,或者在制药行业中,可能会导致无法使用的批次。在这些工业中,通常使用间歇反应器,其控制本质上是温度控制的问题。在工业上,可以发现越来越多的利用三种不同温度水平的加热-冷却系统,从经济的角度来看这是有利的。但是,这使控制更加复杂。本文介绍了一种采用受控系统模型的分段范围设计技术,旨在设计一种更针对实际系统的分段范围算法。当与带夹套间歇反应器的经典基于PID的级联温度控制一起使用时,所描述的算法可提供较高的控制性能。但是,它可以与其他类型的控制器一起使用或作为其一部分使用,例如基于模型的温度控制器。该算法可用于仅使用两个以及三个温度级别进行温度控制的系统。除了在操作模式之间进行切换以及计算调节变量的值外,分割范围算法的最重要功能之一就是保持受控系统增益的符号不变。但是,采用更具系统特定性的分段范围解决方案,不仅可以使增益的符号保持不变,而且增益也可以是恒定的,或者取决于系统的状态。使用该解决方案,PID控制器的设计将变得更加简单,并且可以在现有系统中实现而无需进行重大更改。

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