An indirect optimization method with improved convergence characteristics

dc.contributor.advisorChilds, S. Bart
dc.contributor.committeeMemberDecell, Henry P., Jr.
dc.contributor.committeeMemberLewallen, Jay M.
dc.contributor.committeeMemberNachlinger, R. Ray.
dc.contributor.committeeMemberHedgcoxe, Pat G.
dc.creatorDoiron, Harold Hughes
dc.date.accessioned2022-10-06T16:17:53Z
dc.date.available2022-10-06T16:17:53Z
dc.date.issued1970
dc.description.abstractAn improved numerical procedure is developed for solving the nonlinear two-point boundary value problem which results from the formulation of optimal control problems for solution by an indirect optimization method. Several modifications and extensions to previously known iterative methods are implemented which dramatically improve the convergence characteristics of the indirect optimization approach. The method of particular solutions for solving linear boundary value problems in ordinary differential equations is extended to solve systems of linear differential equations with boundary values specified in the form of nonlinear functions of the dependent and independent variables. This capability is exploited in the development of a new indirect method for solving trajectory optimization problems where the final state and final time are not specified explicitly. Because the method uses a Perturbation approach for linearizing the nonlinear system of differential equations, and because particular solutions are used to construct the general solution of the linearized system, the method is called the Particular Solution Perturbation Method (PSPM). A power series numerical integration method is adapted for use in solving the nonlinear two-point boundary value problem and is found to have several characteristics which make it uniquely suited for this purpose. The convergence characteristics of the PSPM are compared to those of previous indirect optimization methods for a problem which considers the minimum time orbit transfer of continuous, low-thrust rocket. Conclusions and recommendations for further study are included.
dc.description.departmentMechanical Engineering, Department of
dc.format.digitalOriginreformatted digital
dc.format.mimetypeapplication/pdf
dc.identifier.other13842455
dc.identifier.urihttps://hdl.handle.net/10657/12091
dc.language.isoen
dc.rightsThis item is protected by copyright but is made available here under a claim of fair use (17 U.S.C. Section 107) for non-profit research and educational purposes. Users of this work assume the responsibility for determining copyright status prior to reusing, publishing, or reproducing this item for purposes other than what is allowed by fair use or other copyright exemptions. Any reuse of this item in excess of fair use or other copyright exemptions requires express permission of the copyright holder.
dc.titleAn indirect optimization method with improved convergence characteristics
dc.type.dcmiText
dc.type.genreThesis
thesis.degree.collegeCollege of Engineering
thesis.degree.departmentMechanical Engineering, Department of
thesis.degree.disciplineMechanical Engineering
thesis.degree.grantorUniversity of Houston
thesis.degree.levelDoctoral
thesis.degree.nameDoctor of Philosophy

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