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An industrial application of APC technique in fluid catalytic cracking process control

机译:APC技术在流化催化裂化过程控制中的工业应用

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A highly non-linear fluid catalytic cracking (FCC) process with multiple constrains and high coupling has been a prime candidate for process control applications. In this paper, the advanced process control (APC) based on MPC algorithm is applied to MIMO system-FCC process by assembling the mass and energy balance on the technical process. The control strategies of main process section-RXRG (reactor/regenerator), which can be decomposed functionally into riser cracking severity control, regenerators coke combustion control, pressure balance control, main fractionator bottoms control and product yield optimization control, are proposed and implemented. The industrial application shows that APC technique is capable of mastering and improving the key process targets.
机译:具有多个约束和高耦合度的高度非线性的流体催化裂化(FCC)工艺已成为过程控制应用的主要候选对象。本文通过将质量和能量平衡整合到技术过程中,将基于MPC算法的高级过程控制(APC)应用于MIMO系统-FCC过程。提出并实施了主工艺段RXRG(反应器/再生器)的控制策略,该功能可以分解为立管裂化强度控制,再生器焦炭燃烧控制,压力平衡控制,主分馏塔底部控制和产品收率优化控制。工业应用表明,APC技术能够掌握和改进关键工艺目标。

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