Title:
Pursuit-evasion and differential games under uncertainties

dc.contributor.advisor Tsiotras, Panagiotis
dc.contributor.author Sun, Wei
dc.contributor.committeeMember Theodorou, Evangelos A.
dc.contributor.committeeMember Feron, Eric
dc.contributor.committeeMember Johnson, Eric N.
dc.contributor.committeeMember Yezzi, Anthony J.
dc.contributor.department Aerospace Engineering
dc.date.accessioned 2017-08-17T18:59:18Z
dc.date.available 2017-08-17T18:59:18Z
dc.date.created 2017-08
dc.date.issued 2017-05-19
dc.date.submitted August 2017
dc.date.updated 2017-08-17T18:59:18Z
dc.description.abstract Differential games involves multi-person decision making under conflicts in the context of dynamical systems. It has found its application on a large range of areas, including aeronautics, biology, ecology, economics, engineering, management science, operations research, etc. The decisions made by the players that join the differential game are susceptible to uncertainties that are pervasive in realistic differential game scenarios. The uncertainties that enters the system can be divided into three main categories, namely, exogenous/environmental uncertainties, endogenous/dynamical uncertainties and observation uncertainties. In this research, we provide methods to deal with environmental and dynamical uncertainties. In particular, we solve pursuit-evasion games under external flow fields to demonstrate how to cope with differential games under environmental uncertainties. We first recast the multiplayer pursuit-evasion problem into a relay pursuer-target assignment problem and utilize generalized Voronoi diagrams to guide the assignment. Then we present an analytical approach to solve a pursuit-evasion game in a linear flow field and a numerical approach that is based on reachability sets and the level set method to deal with pursuit-evasion games in general flow fields. Extension of our numerical approach towards 3-dimensional space and stochastic environmental disturbance are also discussed. Finally, we present an efficient algorithm to solve general differential game problems and extend to cases subject to stochastic dynamics to handle dynamical uncertainties.
dc.description.degree Ph.D.
dc.format.mimetype application/pdf
dc.identifier.uri http://hdl.handle.net/1853/58664
dc.publisher Georgia Institute of Technology
dc.subject Optimal control
dc.subject Differential game
dc.subject Pursuit-evasion
dc.subject Multiplayer
dc.subject Flow field
dc.subject Differential dynamic programming
dc.subject Stochastic system
dc.title Pursuit-evasion and differential games under uncertainties
dc.type Text
dc.type.genre Dissertation
dspace.entity.type Publication
local.contributor.advisor Tsiotras, Panagiotis
local.contributor.corporatename College of Engineering
local.contributor.corporatename Daniel Guggenheim School of Aerospace Engineering
local.relation.ispartofseries Doctor of Philosophy with a Major in Aerospace Engineering
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relation.isOrgUnitOfPublication 7c022d60-21d5-497c-b552-95e489a06569
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relation.isSeriesOfPublication f6a932db-1cde-43b5-bcab-bf573da55ed6
thesis.degree.level Doctoral
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