DocumentCode :
1495365
Title :
Defending an Asset: A Linear Quadratic Game Approach
Author :
Li, Dongxu ; Cruz, Jose B., Jr.
Author_Institution :
R&D, Gen. Motors Co., Warren, MI, USA
Volume :
47
Issue :
2
fYear :
2011
fDate :
4/1/2011 12:00:00 AM
Firstpage :
1026
Lastpage :
1044
Abstract :
Techniques based on pursuit-evasion (PE) games are often applied in military operations of autonomous vehicles (AV) in the presence of mobile targets. Recently with increasing use of AVs, new scenarios emerge such as surveillance and persistent area denial. Compared with PE games, the actual roles of the pursuer and the evader have changed. In these emerging scenarios the evader acts as an intruder striking at some asset; at the same time the pursuer tries to destroy the intruder to protect the asset. Due to the presence of an asset, the PE game model with two sets of players (pursuers and evaders) is no longer adequate. We call this new problem a game of defending an asset(s) (DA). In this paper we study DA games under the framework of a linear quadratic (LQ) formulation. Three different DA games are addressed: 1) defending a stationary asset, 2) defending a moving asset with an arbitrary trajectory, and 3) defending an escaping asset. Equilibrium game strategies of the players are derived for each case. A repetitive scheme is proposed for implementation of the LQ strategies, and we demonstrate with simulations that the LQ strategies based on the repetitive implementation can provide good control guidance laws for DA games.
Keywords :
game theory; linear quadratic control; military vehicles; mobile robots; autonomous vehicles; linear quadratic game approach; military operations; mobile targets; pursuit-evasion game based technique; Aerodynamics; Game theory; Games; Optimal control; RNA; Riccati equations; Trajectory;
fLanguage :
English
Journal_Title :
Aerospace and Electronic Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9251
Type :
jour
DOI :
10.1109/TAES.2011.5751240
Filename :
5751240
Link To Document :
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