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Control validation of a five-degree-of-freedom motion platform

  • Shanyan Ping
  • , Yuanqing Xia*
  • , Chu Zhang
  • , Ruihan Li
  • , Bing Cui
  • , Li Duan
  • *Corresponding author for this work
  • Beijing Institute of Technology
  • CAS - Institute of Mechanics
  • Northeastern University China

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

Abstract

To meet the in-orbit testing requirements for spacecraft hardware and software while enhancing the reliability of ground-based five-degree-of-freedom motion platform, a novel ground-based five-degree-of-freedom motion platform was developed for testing various spacecraft subsystems. Based on the platform's dynamic characteristics, a PID controller designed to prevent differential kick was developed. This controller effectively mitigates the effects of differential kick on the system during the initial operation phase. Experiments conducted on the five-degree-of-freedom motion platform validated the platform's position and attitude degrees of freedom functionality. Results demonstrate that the system accurately achieves tracking capabilities, with controller outputs free of differential chatter. This ensures system stability, providing a reliable platform and control solution for spacecraft ground simulation.

Original languageEnglish
Title of host publicationFifth International Conference on Computer Technology, Information Engineering, and Electron Materials, CTIEEM 2025
EditorsMing Diao, Mas Rina Mustaffa
PublisherSPIE
ISBN (Electronic)9798902322405
DOIs
Publication statusPublished - 8 Apr 2026
Externally publishedYes
Event5th International Conference on Computer Technology, Information Engineering, and Electron Materials, CTIEEM 2025 - Harbin, China
Duration: 12 Dec 202514 Dec 2025

Publication series

NameProceedings of SPIE - The International Society for Optical Engineering
Volume14139
ISSN (Print)0277-786X
ISSN (Electronic)1996-756X

Conference

Conference5th International Conference on Computer Technology, Information Engineering, and Electron Materials, CTIEEM 2025
Country/TerritoryChina
CityHarbin
Period12/12/2514/12/25

Keywords

  • Differential kick
  • Five-degree-of-freedom motion platform
  • PID control

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