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Application of model-free adaptive control in billet flash butt welding

  • Dong Guo*
  • , Yongling Fu
  • , Ning Lu
  • , Weihong Wang
  • *Corresponding author for this work
  • Beihang University
  • Liaoning University of Technology
  • China Railway Group Limited

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

In the process of billet flash butt welding of the ending welding rolling (EWR), the huge upset force served by dual loading hydraulic cylinder must respond with high-speed, and it demands the two cylinders move and load synchronously while the cylinders are sharing the even load. Furthermore, in the upset force loading system, there are nonlinear parts which are difficult to model accurately, time-varying parameters to hydraulic system, and force coupling arising from mechanical structure. Considering abovementioned challenges, we present our force control approach based on Model-Free Adaptive Control (MFAC) and element-based physical modeling. First, the element model of loading system is directly built upon AMESim, thus ensuring our model reflects the nonlinearity characteristics of hydraulic system and the feature of actuator mechanical coupling; second, MFAC is designed and based on it the force servo simulations research are done through joint platform provided byAMESim and Matlab. The results show that the difficulty of modeling the system is successfully solved by introducing of physical modeling tool of AMESim, the upset force servo can achieve sound performance based on MFAC, and hence, the feasibility of our approach is verified.

Original languageEnglish
Title of host publicationProceedings of the 29th Chinese Control Conference, CCC'10
Pages5110-5114
Number of pages5
StatePublished - 2010
Event29th Chinese Control Conference, CCC'10 - Beijing, China
Duration: 29 Jul 201031 Jul 2010

Publication series

NameProceedings of the 29th Chinese Control Conference, CCC'10

Conference

Conference29th Chinese Control Conference, CCC'10
Country/TerritoryChina
CityBeijing
Period29/07/1031/07/10

Keywords

  • AMEsim
  • EWR
  • Force servo
  • MFAC
  • Simulation research

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