TY - JOUR
T1 - Research on control method of keeping flight formation by using SDRE on the sun-earth libration points
AU - Zhenqi, He
AU - Ke, Zhang
AU - Meibai, Lv
N1 - Publisher Copyright:
© 2017 He Zhenqi et al.
PY - 2017
Y1 - 2017
N2 - Keeping the flying formation of spacecraft is a key problem which needs to be solved in deep space exploration missions. In this paper, the nonlinear dynamic model of formation flying is established and a series of transformations are carried out on this model equation. By using SDRE (State-Dependent Riccati Equation) algorithm, the optimal control of flying formation is realized. Compared with the traditional control method based on the average orbit elements and LQR (Linear Quadratic Regulator) control method, the SDRE control method has higher control precision and is more suitable for the advantages of continuous control in practical engineering. Finally, the parameter values of the sun-earth libration point L2 are substituted in the equation and simulation is performed. The simulation curves of SDRE controller are compared with LQR controller. The results show that the SDRE controllers time cost is less than the LQR controllers and the former's fuel consumption is less than the latter's in the system transition process.
AB - Keeping the flying formation of spacecraft is a key problem which needs to be solved in deep space exploration missions. In this paper, the nonlinear dynamic model of formation flying is established and a series of transformations are carried out on this model equation. By using SDRE (State-Dependent Riccati Equation) algorithm, the optimal control of flying formation is realized. Compared with the traditional control method based on the average orbit elements and LQR (Linear Quadratic Regulator) control method, the SDRE control method has higher control precision and is more suitable for the advantages of continuous control in practical engineering. Finally, the parameter values of the sun-earth libration point L2 are substituted in the equation and simulation is performed. The simulation curves of SDRE controller are compared with LQR controller. The results show that the SDRE controllers time cost is less than the LQR controllers and the former's fuel consumption is less than the latter's in the system transition process.
UR - http://www.scopus.com/inward/record.url?scp=85014387084&partnerID=8YFLogxK
U2 - 10.1155/2017/4162838
DO - 10.1155/2017/4162838
M3 - 文章
AN - SCOPUS:85014387084
SN - 1687-7969
VL - 2017
JO - Advances in Astronomy
JF - Advances in Astronomy
M1 - 4162838
ER -