Integer programming based optimal side jets ignition combination for advanced missile attitude control

Control and Decision Conference(2014)

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Abstract
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.
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Key words
aerodynamics,attitude control,force control,ignition,integer programming,jets,mathematical analysis,missile control,position control,weapons,0-1 integer programming model,american patriot advanced capability-3 missile,pac-3 missile,rcs,advanced guided weapons,advanced missile attitude control,aerodynamic force,blended control,calculation method,equivalent forces deviation,ignition logic,mathematical problem,optimal side jets ignition combination,reaction control system,reaction force,side-jet model,side-jets constraint,thruster efficiency,thrusters positional deviation,reaction control system (rcs)
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