Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO

Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO Christopher Marriage Masters of Applied Science Graduate Department of Aerospace Engineering University of Toronto 2008 Multidisciplinary Design Optimization (MDO) provides optimal solutions to complex, c...

Full description

Bibliographic Details
Main Author: Marriage, Christopher
Other Authors: Martins, Joaquim R. R. A.
Format: Others
Language:en_ca
Published: 2008
Subjects:
Online Access:http://hdl.handle.net/1807/17199
id ndltd-LACETR-oai-collectionscanada.gc.ca-OTU.1807-17199
record_format oai_dc
spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OTU.1807-171992013-11-02T03:43:08ZAutomatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDOMarriage, ChristopherOptimizationAircraft DesignMultidisciplinary Design OptimizationComputing Frameworks0538Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO Christopher Marriage Masters of Applied Science Graduate Department of Aerospace Engineering University of Toronto 2008 Multidisciplinary Design Optimization (MDO) provides optimal solutions to complex, coupled, multidisciplinary problems. MDO seeks to manage the interactions between disciplinary simulations to produce an optimum, and feasible, design with a minimum of computational effort. Many MDO architectures and approaches have been developed, but usually in isolated situations with little chance for comparison. piMDO was developed to provide a unified framework for the solution of coupled op- timization problems and refinement of MDO approaches. The initial implementation of piMDO showed the benefits of a modular, object oriented, approach and laid the groundwork for future development of MDO architectures. This research furthered the development of piMDO by expanding the suite of available problems, incorporat- ing additional MDO architectures, and extending the object oriented approach to all of the required components for MDO. The end result is a modular, flexible software framework which is user friendly and intuitive to the practitioner. It allows complex problems to be quickly implemented and optimized with a variety of powerful numerical tools and MDO architectures. Importantly, it allows any of its components to be reorganized and sets the stage for future researchers to continue the development of MDO methods.Martins, Joaquim R. R. A.2008-112009-02-24T19:08:28ZNO_RESTRICTION2009-02-24T19:08:28Z2009-02-24T19:08:28ZThesis2369635 bytesapplication/pdfhttp://hdl.handle.net/1807/17199en_ca
collection NDLTD
language en_ca
format Others
sources NDLTD
topic Optimization
Aircraft Design
Multidisciplinary Design Optimization
Computing Frameworks
0538
spellingShingle Optimization
Aircraft Design
Multidisciplinary Design Optimization
Computing Frameworks
0538
Marriage, Christopher
Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO
description Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO Christopher Marriage Masters of Applied Science Graduate Department of Aerospace Engineering University of Toronto 2008 Multidisciplinary Design Optimization (MDO) provides optimal solutions to complex, coupled, multidisciplinary problems. MDO seeks to manage the interactions between disciplinary simulations to produce an optimum, and feasible, design with a minimum of computational effort. Many MDO architectures and approaches have been developed, but usually in isolated situations with little chance for comparison. piMDO was developed to provide a unified framework for the solution of coupled op- timization problems and refinement of MDO approaches. The initial implementation of piMDO showed the benefits of a modular, object oriented, approach and laid the groundwork for future development of MDO architectures. This research furthered the development of piMDO by expanding the suite of available problems, incorporat- ing additional MDO architectures, and extending the object oriented approach to all of the required components for MDO. The end result is a modular, flexible software framework which is user friendly and intuitive to the practitioner. It allows complex problems to be quickly implemented and optimized with a variety of powerful numerical tools and MDO architectures. Importantly, it allows any of its components to be reorganized and sets the stage for future researchers to continue the development of MDO methods.
author2 Martins, Joaquim R. R. A.
author_facet Martins, Joaquim R. R. A.
Marriage, Christopher
author Marriage, Christopher
author_sort Marriage, Christopher
title Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO
title_short Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO
title_full Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO
title_fullStr Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO
title_full_unstemmed Automatic Implementation of Multidisciplinary Design Optimization Architectures Using piMDO
title_sort automatic implementation of multidisciplinary design optimization architectures using pimdo
publishDate 2008
url http://hdl.handle.net/1807/17199
work_keys_str_mv AT marriagechristopher automaticimplementationofmultidisciplinarydesignoptimizationarchitecturesusingpimdo
_version_ 1716612271164096512