TY - GEN
T1 - Pressure Control for Vertical Microgravity Simulation System Based on Hybrid Fuzzy Controller
AU - Xu, Cheng
AU - Guo, Jiahua
AU - Li, Li
AU - Jiang, Linghai
AU - Ma, Guangcheng
AU - Xia, Hongwei
N1 - Publisher Copyright:
© 2024 Technical Committee on Control Theory, Chinese Association of Automation.
PY - 2024
Y1 - 2024
N2 - Ground simulation plays a vital role in the development of spacecraft, and vertical microgravity simulation enhances the accuracy and comprehensiveness of ground simulation, holding significant research significance. This paper presents a vertical microgravity simulation system based on gas cushion technology, outlining its basic components and modeling the characteristics of each part. Due to the working conditions and the operational states, the volume of the system's gas chamber rapidly changes during pressure control, significantly affecting the dynamic performance of pressure control. In this paper, based on the model of the control system, considering the impact of volume changes in the gas chamber and the nonlinear flow characteristics of the gas proportional valve, a pressure control strategy based on hybrid fuzzy control is proposed. Simulation analysis validates the strategy's effectiveness in improving control performance. Finally, the control strategy is further verified through physical system experiments.
AB - Ground simulation plays a vital role in the development of spacecraft, and vertical microgravity simulation enhances the accuracy and comprehensiveness of ground simulation, holding significant research significance. This paper presents a vertical microgravity simulation system based on gas cushion technology, outlining its basic components and modeling the characteristics of each part. Due to the working conditions and the operational states, the volume of the system's gas chamber rapidly changes during pressure control, significantly affecting the dynamic performance of pressure control. In this paper, based on the model of the control system, considering the impact of volume changes in the gas chamber and the nonlinear flow characteristics of the gas proportional valve, a pressure control strategy based on hybrid fuzzy control is proposed. Simulation analysis validates the strategy's effectiveness in improving control performance. Finally, the control strategy is further verified through physical system experiments.
KW - full-physics simulation
KW - fuzzy control
KW - gas cushion platform
KW - pressure control
KW - vertical microgravity simulation
UR - https://www.scopus.com/pages/publications/85205512094
U2 - 10.23919/CCC63176.2024.10662477
DO - 10.23919/CCC63176.2024.10662477
M3 - 会议稿件
AN - SCOPUS:85205512094
T3 - Chinese Control Conference, CCC
SP - 291
EP - 296
BT - Proceedings of the 43rd Chinese Control Conference, CCC 2024
A2 - Na, Jing
A2 - Sun, Jian
PB - IEEE Computer Society
T2 - 43rd Chinese Control Conference, CCC 2024
Y2 - 28 July 2024 through 31 July 2024
ER -