TY - GEN
T1 - Integer programming based optimal side jets ignition combination for advanced missile attitude control
AU - Wang, Zhenchao
AU - Yang, Lingyu
AU - Zhang, Jing
AU - Shen, Gongzhang
PY - 2014
Y1 - 2014
N2 - The ignition logic of Reaction Control System (RCS) is one of the core issues of the precision and blended control combined aerodynamic force and reaction force of the advanced guided weapons. Firstly, a side-jet model based on the American Patriot Advanced Capability-3(PAC-3) missile was established, and a calculation method based on the equivalent forces, which convert the positional deviation of the thrusters to the deviation of the equivalent forces, was proposed. Considering the side-jets constraint, the ignition logic is transformed into a mathematical problem based on 0-1 integer programming. To deal with the high complexity of traditional algorithms for 0-1 integer programming model, restrictions of the thruster efficiency, was introduced to reduce the complexity of the algorithm and the computation time. Finally, simulation results indicate that this algorithm can satisfy the requirement and find out a better solution.
AB - The ignition logic of Reaction Control System (RCS) is one of the core issues of the precision and blended control combined aerodynamic force and reaction force of the advanced guided weapons. Firstly, a side-jet model based on the American Patriot Advanced Capability-3(PAC-3) missile was established, and a calculation method based on the equivalent forces, which convert the positional deviation of the thrusters to the deviation of the equivalent forces, was proposed. Considering the side-jets constraint, the ignition logic is transformed into a mathematical problem based on 0-1 integer programming. To deal with the high complexity of traditional algorithms for 0-1 integer programming model, restrictions of the thruster efficiency, was introduced to reduce the complexity of the algorithm and the computation time. Finally, simulation results indicate that this algorithm can satisfy the requirement and find out a better solution.
KW - Blended Control
KW - Ignition Logic
KW - Integer Programming
KW - Reaction Control System (RCS)
UR - https://www.scopus.com/pages/publications/84905270040
U2 - 10.1109/CCDC.2014.6852833
DO - 10.1109/CCDC.2014.6852833
M3 - 会议稿件
AN - SCOPUS:84905270040
SN - 9781479937066
T3 - 26th Chinese Control and Decision Conference, CCDC 2014
SP - 3755
EP - 3759
BT - 26th Chinese Control and Decision Conference, CCDC 2014
PB - IEEE Computer Society
T2 - 26th Chinese Control and Decision Conference, CCDC 2014
Y2 - 31 May 2014 through 2 June 2014
ER -