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A 2-DOF drag-free control ground simulation system based on Stewart platform.

Authors :
Lin, Jueqi
Lian, Junxiang
Zhao, Guoying
Li, Hongyin
Xu, Chi
Source :
ISA Transactions; Mar2024, Vol. 146, p528-540, 13p
Publication Year :
2024

Abstract

Space-based gravitational wave detection missions use multiple satellites to form a very large scale Michelson laser interferometer in space. This requires extremely high precision displacement measurements at the picometer level between test masses even millions of kilometers apart. Drag-free control is a key technology to ensure the ultra-static and ultra-stable space experiment platform for space-based gravitational wave detection. This paper proposes an innovative ground simulation scheme for drag-free control principle based on the Stewart platform. The kinematics and dynamics modeling of the Stewart platform used in the experiment is presented. A drag-free ground simulation experimental equipment is designed and built. A two-degree-of-freedom (2-DOF) drag-free controller is designed based on the H ∞ loop shaping algorithm which outperforms a PID controller in Simulink simulation. A semi-physical simulation experiment is conducted to verify the controller designed using rapid control prototyping technology. The experimental results show that the control performance reaches the limit accuracy of the hardware device, thus verifying the effectiveness of the drag-free control algorithm. • Introduce a novel ground simulation scheme for drag-free control using the Stewart platform. • Design a drag-free controller based on H ∞ loop shaping. • Validate our approach through a two-degree-of-freedom semi-physical simulation experiment. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00190578
Volume :
146
Database :
Supplemental Index
Journal :
ISA Transactions
Publication Type :
Academic Journal
Accession number :
176150813
Full Text :
https://doi.org/10.1016/j.isatra.2024.01.010