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Dynamic Modeling, Simulation and Multivariable Control Strategy Applied to Catalytic Cracking Unit

机译:催化裂化装置的动力学建模,仿真和多变量控制策略

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Abstract - The control problem of fluid catalytic cracking (FCC) units is a challenging task due to its model complexity, on linear dynamics, constrained variables and cross coupling interaction between inputs and outputs. Mathematical Control of FCC is challenging and there is a strong incentive to use multivariable control schemes. In this paper, first principle Model of FCCU is developed after analysis of dynamic behavior of this complex process which was sufficiently complex to capture the major dynamic effects that occur in an actual system. Difficulties caused by the interactions are always encountered in the design of multi-loop control systems for MIMO processes like FCCU.The investigated control approach is the multivariable PID which uses BLT tuning. In this detuning method, each controller in the system is designed based on the corresponding diagonal element and ignore the interactions from other loops. The controllers are then detuned to take into accounts the interactions until some prescribed limit (e.g. the biggest log-modulus) is attained.
机译:摘要-由于流催化裂化(FCC)单元的模型复杂性,线性动力学,约束变量以及输入和输出之间的交叉耦合相互作用,因此控制问题是一项具有挑战性的任务。 FCC的数学控制具有挑战性,并且强烈鼓励使用多变量控制方案。在本文中,FCCU的第一原理模型是在分析了此复杂过程的动态行为后开发的,该过程足够复杂以捕获实际系统中发生的主要动态影响。在诸如FCCU的MIMO过程的多回路控制系统的设计中,总是会遇到由相互作用引起的困难。研究的控制方法是使用BLT调整的多变量PID。在这种失谐方法中,系统中的每个控制器都是基于相应的对角线元素设计的,而忽略了其他回路的相互作用。然后使控制器失谐以考虑相互作用,直到达到某个规定的极限(例如最大对数模量)。

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