DocumentCode :
3602022
Title :
A New Guidance Law for the Defense Missile of Nonmaneuverable Aircraft
Author :
Harini Venkatesan, Raghav ; Sinha, Nandan Kumar
Author_Institution :
Dept. of Aerosp. Eng., IIT Madras, Chennai, India
Volume :
23
Issue :
6
fYear :
2015
Firstpage :
2424
Lastpage :
2431
Abstract :
In this brief, a new guidance law for the defense missile of nonmaneuverable aircraft is formulated based on dynamic game considerations. First, a simple differential game of protecting a static target in 2-D, involving simple motions for the attacker and defender, is introduced. The analysis is then extended to a moving noncooperative target in 2-D, in view of the fact that a nonmaneuverable aircraft would not be able to cooperate with the defender. A heuristic solution for the game is proposed and tested, and the results of the 2-D analysis are then extended to 3-D to formulate a new guidance law for the defense missile called the command to optimal interception point (COIP) guidance law. The validity of the new guidance law is checked using trajectory and envelope simulations, built with high-fidelity 6-DOF models using the computer-aided design of aerospace concepts in C++ framework. Performance comparisons are shown between the COIP guidance law and the recently proposed airborne command to line-of-sight (A-CLOS) guidance law. The results show that the performances of COIP and A-CLOS guidance laws are almost identical in a coplanar engagement scenario, but the COIP law has the additional advantage of working with only position information, without the knowledge of motion of the players. In addition, in a noncoplanar engagement case studied, the defense missile is shown to achieve intercept using the COIP guidance law, but fails when using the A-CLOS guidance law.
Keywords :
command and control systems; control system CAD; differential games; military aircraft; missile guidance; position control; A-CLOS guidance law; C++ framework; CADAC++; COIP guidance law; airborne command to line-of-sight guidance law; command to optimal interception point guidance law; computer-aided design; defense missile; differential game; dynamic game consideration; heuristic solution; high-fidelity 6-DOF model; noncooperative target; nonmaneuverable aircraft; position information; Aerospace simulation; Aircraft; Games; Mathematical model; Missiles; Trajectory; 6-DOF simulations; computer-aided design of aerospace concepts in C++ (CADAC++); defense missile; differential game; guidance law; nonmaneuverable aircraft; nonmaneuverable aircraft.;
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2015.2411628
Filename :
7095570
Link To Document :
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