TY - GEN
T1 - Sliding mode predictive control method for attitude control of networked launch vehicle
AU - Chen, Yu
AU - Li, Guang
AU - Dong, Chaoyang
AU - Wang, Qing
PY - 2011
Y1 - 2011
N2 - A novel adaptive fuzzy sliding mode predictive control (AFSMPC) method for solving the networked launch vehicle attitude control system with network-induced delay, uncertain parameters and outer disturbances is proposed in this paper for the attitude stabilization of the networked launch vehicle control system. The proposed sliding mode surface includes a predictor to compensate for the network-induced delay of the NCS. Then, for the networked Launch vehicle attitude control system with uncertain parameters and outer disturbances, a total sliding-mode control system is proposed, which is designed without the reaching phase of a conventional sliding-mode control. In order to attenuate the chattering phenomena brought by the proposed control, a fuzzy logic system is designed to mimic the good behavior of a total sliding-mode predictive control system. Finally, Simulation results show that the proposed control scheme is effective.
AB - A novel adaptive fuzzy sliding mode predictive control (AFSMPC) method for solving the networked launch vehicle attitude control system with network-induced delay, uncertain parameters and outer disturbances is proposed in this paper for the attitude stabilization of the networked launch vehicle control system. The proposed sliding mode surface includes a predictor to compensate for the network-induced delay of the NCS. Then, for the networked Launch vehicle attitude control system with uncertain parameters and outer disturbances, a total sliding-mode control system is proposed, which is designed without the reaching phase of a conventional sliding-mode control. In order to attenuate the chattering phenomena brought by the proposed control, a fuzzy logic system is designed to mimic the good behavior of a total sliding-mode predictive control system. Finally, Simulation results show that the proposed control scheme is effective.
KW - Attitude control
KW - Fault-tolerant control
KW - Fuzzy control
KW - Global sliding mode control
UR - https://www.scopus.com/pages/publications/79952547558
U2 - 10.4028/www.scientific.net/KEM.467-469.962
DO - 10.4028/www.scientific.net/KEM.467-469.962
M3 - 会议稿件
AN - SCOPUS:79952547558
SN - 9783037850176
T3 - Key Engineering Materials
SP - 962
EP - 967
BT - Materials, Mechatronics and Automation
PB - Trans Tech Publications Ltd
ER -