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Predictive functional control (PFC) and its application in chlorinated polyethylene process.

Hong-Liang Li1, Hong-Ye Su, Jun Liu

  • 1National Key Laboratory of Industrial Control Technology, Institute of Advanced Process Control, Zhejiang University, Hangzhou 310027, China. hlli@iipc.zju.edu.cn

Journal of Zhejiang University. Science
|May 27, 2003
PubMed
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This study introduces Predictive Functional Control (PFC) and its design software, APC-PFC. Applying a cascade PFC system to chlorinated polyethylene (CPE) production significantly enhanced control performance.

Area of Science:

  • Chemical Engineering
  • Control Systems Engineering

Background:

  • Predictive Functional Control (PFC) offers advanced process automation capabilities.
  • Optimizing chemical processes like chlorinated polyethylene (CPE) production is crucial for efficiency.

Purpose of the Study:

  • To present the principles and characteristics of Predictive Functional Control (PFC).
  • To introduce the APC-PFC control system design software.
  • To demonstrate the application of PFC in a CPE process for performance improvement.

Main Methods:

  • Detailed explanation of the Predictive Functional Control (PFC) strategy.
  • Introduction of the APC-PFC software for control system design.
  • Development of a cascade predictive functional control system scheme for CPE production.

Related Experiment Videos

Main Results:

  • The core principles and features of PFC were elucidated.
  • The APC-PFC software was presented as a design aid.
  • A cascade PFC system was successfully designed and implemented for a CPE process.
  • Significant improvements in control performance were observed in the CPE process.

Conclusions:

  • Predictive Functional Control (PFC) is an effective strategy for process control.
  • The APC-PFC software facilitates the design of PFC systems.
  • Cascade PFC systems can substantially enhance control performance in industrial applications like CPE production.