TY - JOUR
T1 - A shape-based design approach to interplanetary low-thrust transfer trajectory
AU - Shang, Hai Bin
AU - Cui, Ping Yuan
AU - Qiao, Dong
PY - 2010/6
Y1 - 2010/6
N2 - Primary design is a challengeable task in research of interplanetary low-thrust transfer trajectory. In this paper, a robust design approach to interplanetary low-thrust transfer trajectory is presented by modifying a traditional inverse polynomial theory in the paper. Firstly, by analyzing the dynamics characteristics of the inverse polynomial-based trajectory, the feasible searching bound for key coefficients is derived. Secondly, through dealing with the acceleration constraint, a simple design model is established based the modified inverse polynomial theory. Finally, in order to obtain the optimal design parameters effectively and reliably, a differential evolution algorithm is used to optimize the design model. The proposed approach has a few design parameters and could avoid the disadvantage of missing the feasible trajectory. Furthermore, it could provide a reliable initial guess for accurate design. The validity of the algorithm has been validated by numerical simulation.
AB - Primary design is a challengeable task in research of interplanetary low-thrust transfer trajectory. In this paper, a robust design approach to interplanetary low-thrust transfer trajectory is presented by modifying a traditional inverse polynomial theory in the paper. Firstly, by analyzing the dynamics characteristics of the inverse polynomial-based trajectory, the feasible searching bound for key coefficients is derived. Secondly, through dealing with the acceleration constraint, a simple design model is established based the modified inverse polynomial theory. Finally, in order to obtain the optimal design parameters effectively and reliably, a differential evolution algorithm is used to optimize the design model. The proposed approach has a few design parameters and could avoid the disadvantage of missing the feasible trajectory. Furthermore, it could provide a reliable initial guess for accurate design. The validity of the algorithm has been validated by numerical simulation.
KW - Differential evolution
KW - Inverse polynomial theory
KW - Low-thrust
KW - Primary Design
KW - Transfer trajectory
UR - http://www.scopus.com/inward/record.url?scp=77956005016&partnerID=8YFLogxK
U2 - 10.3873/j.issn.1000-1328.2010.06.010
DO - 10.3873/j.issn.1000-1328.2010.06.010
M3 - Article
AN - SCOPUS:77956005016
SN - 1000-1328
VL - 31
SP - 1569
EP - 1574
JO - Yuhang Xuebao/Journal of Astronautics
JF - Yuhang Xuebao/Journal of Astronautics
IS - 6
ER -