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Challenges in Controllability Investigations of Chemical Processes

机译:化学过程可控性调查的挑战

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The controllability investigation of any kind of chemical process is the interactive and challenging part of process design or development. The investigation works on several levels and uses different methods. First, the control targets are defined, the set of controlled variables are determined and the set of possible manipulated variables are selected. The proper pairing of the controlled and manipulated variables, that is the design of the control structure, consists of first, the study of steady state control indices and then dynamic behaviours in the cases of open and closed control loops of the promising control structures. This investigation is presented on the design of energy integrated separation schemes. A new challenging method is offered by the Rough Set Theory (RS), which has been already successfully used in several areas of artificial intelligence and data analysis e.g. for the discovery of patterns and dependencies in data. Its use for controllability investigations is a new area at the revision of control structures of existing plants, retrofit modifications, because it can detect the dependencies among the possible controlled and manipulated variables with the analysis of the measured data and helps to fulfil the requirements of the control target. RS theory indicates also the measure of the dependencies among the variables. The RS theory is used for the improvement of the control structure of a complex chemical process, which is the fluid catalytic cracking unit (FCC). The analysis of the data of existing FCC unit shows that the product quality significantly depends on the temperature in the regenerator unit and its control is necessary. After considering the degrees of freedom, a new control loop is designed for the proper control of the temperature in the regenerator unit, which is accepted by the industry and it will be included in the control structure of the FCC plant.
机译:任何种类的化学过程的可控性调查是工艺设计或开发的互动性和挑战性的部分。调查工作在几个层次上,并使用不同的方法。首先,控制目标被定义,所述一组控制变量被确定并且该组可能的操纵变量被选择。控制和调节变量的正确配对,即控制结构设计,包括第一,稳态控制指标,并在有前途的控制结构的打开和关闭控制回路的情况下,则动态行为的研究。本次调查,提出对能源集成分离方案的设计。一种新的具有挑战性的方法由粗糙集理论(RS),它已经被成功地在人工智能和例如数据分析的几个方面提供使用对于数据中的模式和相关的发现。它的可控性调查中使用的是在现有的工厂,改造修饰的控制结构的修改一个新的领域,因为它可以检测与测量数据的分析,可以控制和操纵变量之间的依赖关系,并有助于满足的要求控制目标。 RS理论也表明了变量之间的相关性的措施。该RS理论被用于复杂的化学过程的控制结构,它是流化催化裂化装置(FCC)的改善。的现有的FCC单元示出了数据的分析,该产品的质量显著取决于再生器单元的温度和它的控制是必要的。考虑自由度后,一个新的控制环路被设计用于在再生器单元,其为业界所接受的温度的适当控制,它将被包括在FCC植物的控制结构。

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