1990
DOI: 10.1007/bf00939563
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Differential game of optimal approach of two inertial pursuers to a noninertial evader

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Cited by 51 publications
(17 citation statements)
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“…It is shown there that the value function is the program maximin function where the maximum is taken over open-loop controls of the evader and the minimum is taken over open-loop controls of the pursuers. In work [35], two inertial objects chase an inertialless one in the plane. The payoff at some fixed termination instant is the distance between the evader and closest pursuer.…”
Section: Other Pursuit Problems With Many Objectsmentioning
confidence: 99%
“…It is shown there that the value function is the program maximin function where the maximum is taken over open-loop controls of the evader and the minimum is taken over open-loop controls of the pursuers. In work [35], two inertial objects chase an inertialless one in the plane. The payoff at some fixed termination instant is the distance between the evader and closest pursuer.…”
Section: Other Pursuit Problems With Many Objectsmentioning
confidence: 99%
“…In the past, differential game theory has been used as a framework to analyze problems in multi-player pursuit-evasion games. Solutions for particular multi-player games were presented by Pashkov and Terekhov (1987), Levchenkov and Pashkov (1990), Hagedorn and Breakwell (1976), Breakwell and Hagedorn (1979) and Shankaran et al (2008). More general treatments of multi-player differential games were presented by Vaisbord and Zhukovskiy (1988), and Zhukovskiy and Salukvadze (1994), and Stipanović et al (2004Stipanović et al ( , 2009).…”
Section: Introductionmentioning
confidence: 97%
“…Analytic solutions using differential games exist for some particular problems with small numbers of pursuers [9], [10], but more general solutions are limited by the curse of dimensionality. Some approaches simplify † These authors contributed equally to this work.…”
Section: Introductionmentioning
confidence: 99%