TY - GEN
T1 - Anti-Windup Trajectory Optimization for High-Mass Mars Entry Vehicles
AU - Gu, Hena
AU - Dai, Shicong
AU - Liang, Zixuan
N1 - Publisher Copyright:
© 2023 Technical Committee on Control Theory, Chinese Association of Automation.
PY - 2023
Y1 - 2023
N2 - A trajectory optimization method under complex disturbance is proposed for the future high-mass Mars entry vehicles. First, the dynamic model for the high-mass Mars entry vehicle with a supersonic inflatable aerodynamic decelerator (SIAD) is established. Then, an orthogonal array of three levels with four variables is used to consider the hybrid disturbances of the aerodynamic parameters, and a sensitivity formula is designed to quantify the sensitivity of the bank angle to the hybrid disturbances. With an anti-windup index based on the sensitivity formula and a terminal constraint index together, a comprehensive index is obtained to solve the anti-windup trajectory optimization problem. Finally, the anti-windup trajectory optimization method is simulated and compared with the traditional method. The results show that the proposed method can reduce the sensitivity of aerodynamic disturbance and improve the tracking performance of drag acceleration.
AB - A trajectory optimization method under complex disturbance is proposed for the future high-mass Mars entry vehicles. First, the dynamic model for the high-mass Mars entry vehicle with a supersonic inflatable aerodynamic decelerator (SIAD) is established. Then, an orthogonal array of three levels with four variables is used to consider the hybrid disturbances of the aerodynamic parameters, and a sensitivity formula is designed to quantify the sensitivity of the bank angle to the hybrid disturbances. With an anti-windup index based on the sensitivity formula and a terminal constraint index together, a comprehensive index is obtained to solve the anti-windup trajectory optimization problem. Finally, the anti-windup trajectory optimization method is simulated and compared with the traditional method. The results show that the proposed method can reduce the sensitivity of aerodynamic disturbance and improve the tracking performance of drag acceleration.
KW - Anti-windup
KW - Mars entry
KW - Supersonic inflatable aerodynamic decelerator
KW - Trajectory optimization
UR - http://www.scopus.com/inward/record.url?scp=85175527706&partnerID=8YFLogxK
U2 - 10.23919/CCC58697.2023.10241136
DO - 10.23919/CCC58697.2023.10241136
M3 - Conference contribution
AN - SCOPUS:85175527706
T3 - Chinese Control Conference, CCC
SP - 3638
EP - 3643
BT - 2023 42nd Chinese Control Conference, CCC 2023
PB - IEEE Computer Society
T2 - 42nd Chinese Control Conference, CCC 2023
Y2 - 24 July 2023 through 26 July 2023
ER -