TY - JOUR
T1 - Control variable parameterisation with penalty approach for hypersonic vehicle reentry optimisation
AU - Liu, Ping
AU - Liu, Xinggao
AU - Wang, Ping
AU - Li, Guodong
AU - Xiao, Long
AU - Yan, Jie
AU - Ren, Zhang
N1 - Publisher Copyright:
© 2018, © 2018 Informa UK Limited, trading as Taylor & Francis Group.
PY - 2019/9/2
Y1 - 2019/9/2
N2 - An efficient trajectory optimisation approach combining the classical control variable parameterisation (CVP) with a novel smooth technology and two penalty strategies is developed to solve the trajectory optimal control problems. Since it is difficult to deal with path constraints in CVP method, the novel smooth technology is firstly employed to transform the complex constraints into one smooth constraint. Then, two penalty strategies are proposed to tackle the converted path and terminal constraints to decrease the computational complexity and improve the constraints satisfaction. Finally, a nonlinear programming problem, which approximates the original trajectory optimisation problem, is obtained. Error analysis shows that the proposed method has good convergence property. A general hypersonic cruise vehicle trajectory optimisation example is employed to test the performance of the proposed method. Numerical results show that the path and terminal conditions are well satisfied and better trajectory profiles are obtained, showing the effectiveness of the proposed method.
AB - An efficient trajectory optimisation approach combining the classical control variable parameterisation (CVP) with a novel smooth technology and two penalty strategies is developed to solve the trajectory optimal control problems. Since it is difficult to deal with path constraints in CVP method, the novel smooth technology is firstly employed to transform the complex constraints into one smooth constraint. Then, two penalty strategies are proposed to tackle the converted path and terminal constraints to decrease the computational complexity and improve the constraints satisfaction. Finally, a nonlinear programming problem, which approximates the original trajectory optimisation problem, is obtained. Error analysis shows that the proposed method has good convergence property. A general hypersonic cruise vehicle trajectory optimisation example is employed to test the performance of the proposed method. Numerical results show that the path and terminal conditions are well satisfied and better trajectory profiles are obtained, showing the effectiveness of the proposed method.
KW - Control variable parameterisation
KW - hypersonic flight vehicle
KW - penalty method
KW - reentry optimisation
KW - smooth technology
UR - http://www.scopus.com/inward/record.url?scp=85041573508&partnerID=8YFLogxK
U2 - 10.1080/00207179.2018.1426882
DO - 10.1080/00207179.2018.1426882
M3 - 文章
AN - SCOPUS:85041573508
SN - 0020-7179
VL - 92
SP - 2015
EP - 2024
JO - International Journal of Control
JF - International Journal of Control
IS - 9
ER -