4.6 Article

Absolute Stability Condition Derivation for Position Closed-Loop System in Hydraulic Automatic Gauge Control

Journal

PROCESSES
Volume 7, Issue 10, Pages -

Publisher

MDPI
DOI: 10.3390/pr7100766

Keywords

rolling mill; hydraulic automatic gauge control system; position closed-loop system; absolute stability condition; Popov frequency criterion; flow control

Funding

  1. National Natural Science Foundation of China [51805214, 51875498]
  2. China Postdoctoral Science Foundation [2019M651722]
  3. Natural Science Foundation of Hebei Province [E2018203339]
  4. Nature Science Foundation for Excellent Young Scholars of Jiangsu Province [BK20190101]
  5. Open Foundation of National Research Center of Pumps, Jiangsu University [NRCP201604]
  6. Open Foundation of the State Key Laboratory of Fluid Power and Mechatronic Systems [GZKF-201714]

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In the metallurgical industry, hydraulic automatic gauge control (HAGC) is a core mechanism for thickness control of plates used in the rolling process. The stability of the HAGC system's kernel position closed-loop is key to ensuring a process with high precision, speed and reliability. However, the closed-loop position control system is typically nonlinear, and its stability is affected by several factors, making it difficult to analyze instability in the system. This paper describes in detail the functioning of the position closed-loop system. A mathematical model of each component was established using theoretical analysis. An incremental transfer model of the position closed-loop system was also derived by studying the connections between each component. In addition, based on the derived information transfer relationship, a transfer block diagram of disturbance quantity of the system was established. Furthermore, the Popov frequency criterion method was introduced to ascertain its absolute stability. The results indicate that the absolute stability conditions of the position closed-loop system are derived in two situations: when spool displacement is positive or negative. This study lays a theoretical foundation for research on the instability mechanism of an HAGC system.

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