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Simulation study of eliminating disturbance force of the electrohydraulic load simulator

  • Zhengmao Ye*
  • , Yejian Zhang
  • , Hongren Li
  • *Corresponding author for this work
  • Harbin Institute of Technology

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

Abstract

How to eliminate the disturbance force of a loading system is one of the key problems to design an electrohydraulic load simulator. On the basis of analyzing the compensation network scheme of the traditional constant structure principle, this paper proposes a new compensation network scheme in order to overcome the defect that the frequency response of the servovalve is neglected during the process of designing the compensation network. The frequency response of the servovalve is considered to design the new compensation network which possesses a couple of zero points to offset the poles of the servovalve transfer function, so the influence of the frequency response of the servovalve on the compensation network is decreased. In order to analyze the electrohydraulic load simulator, the bond graph modeling and simulation method is applied. The simulation results show that the new compensation network can effectively eliminate the disturbance force.

Original languageEnglish
Title of host publicationProceedings of the 3rd International Symposium on Fluid Power Transmission and Control (ISFP'99)
EditorsW. Zuwen, H. Junwei, L. Songjing, X. Yaoming, Z. Manlin, W. Zuwen, H. Junwei, L. Songjing, X. Yaoming, Z. Manlin
Pages389-393
Number of pages5
StatePublished - 1999
EventProceedings of the 3rd International Symposium on Fluid Power Transmission and Control (ISFP'99) - Harbin, China
Duration: 7 Sep 19999 Sep 1999

Publication series

NameProceedings of the 3rd International Symposium on Fluid Power Transmission and Control (ISFP'99)

Conference

ConferenceProceedings of the 3rd International Symposium on Fluid Power Transmission and Control (ISFP'99)
Country/TerritoryChina
CityHarbin
Period7/09/999/09/99

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