TY - GEN
T1 - Multidisciplinary design optimization of small canister-launched space launch vehicle using genetic algorithm
AU - Villanueva, Fredy M.
AU - Linshu, He
AU - Dajun, Xu
PY - 2013
Y1 - 2013
N2 - A multidisciplinary design optimization approach of a three stage solid propellant canister-launched launch vehicle is considered. A genetic algorithm (GA) optimization method has been used. The optimized launch vehicle (LV) is capable of delivering a microsatellite of 60 kg. to a low earth orbit (LEO) of 600 km. altitude. The LV design variables and the trajectory profile variables were optimized simultaneously, while a depleted shutdown condition was considered for every stage, avoiding the necessity of a thrust termination device, resulting in reduced gross launch mass of the LV. The results show that the proposed optimization approach was able to find the convergence of the optimal solution with highly acceptable value for conceptual design phase.
AB - A multidisciplinary design optimization approach of a three stage solid propellant canister-launched launch vehicle is considered. A genetic algorithm (GA) optimization method has been used. The optimized launch vehicle (LV) is capable of delivering a microsatellite of 60 kg. to a low earth orbit (LEO) of 600 km. altitude. The LV design variables and the trajectory profile variables were optimized simultaneously, while a depleted shutdown condition was considered for every stage, avoiding the necessity of a thrust termination device, resulting in reduced gross launch mass of the LV. The results show that the proposed optimization approach was able to find the convergence of the optimal solution with highly acceptable value for conceptual design phase.
KW - Genetic algorithm
KW - Launch vehicle
KW - Multidisciplinary design optimization
UR - https://www.scopus.com/pages/publications/84874865974
U2 - 10.4028/www.scientific.net/AMM.302.583
DO - 10.4028/www.scientific.net/AMM.302.583
M3 - 会议稿件
AN - SCOPUS:84874865974
SN - 9783037856468
T3 - Applied Mechanics and Materials
SP - 583
EP - 588
BT - Advanced Engineering and Materials
T2 - 2013 International Conference on Mechanical Engineering and Materials, ICMEM 2013
Y2 - 27 January 2013 through 28 January 2013
ER -