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Optimal Robust Tracking Control of Injection Velocity in an Injection Molding Machine

  • Guoshen Wu
  • , Zhigang Ren
  • , Jiajun Li
  • , Zongze Wu
  • Guangdong University of Technology
  • Key Lab of the Ministry of Education for Process Control and Efficiency Egineering
  • Shenzhen University

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Injection molding is a critical component of modern industrial operations, and achieving fast and stable control of injection molding machines (IMMs) is essential for producing high-quality plastic products. This paper focuses on solving an optimal tracking control problem of the injection velocity that arises in a typical nonlinear IMM. To this end, an efficient optimal robust controller is proposed and designed. The nonlinear injection velocity servo system is first approximately linearized at iteration points using the first-order Taylor expansion approach. Then, at each time node in the optimization process, the relevant algebraic Riccati equation is introduced, and the solution is used to construct an optimal robust feedback controller. Furthermore, a rigorous Lyapunov theorem analysis is employed to demonstrate the global stability properties of the proposed feedback controller. The results from numerical simulations show that the proposed optimal robust control strategy can successfully and rapidly achieve the best tracking of the intended injection velocity trajectory within a given time.

Original languageEnglish
Article number2619
JournalMathematics
Volume11
Issue number12
DOIs
StatePublished - Jun 2023
Externally publishedYes

Keywords

  • discrete manufacturing process
  • feedback control
  • injection molding
  • model-based control
  • optimal control

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