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Meeting

Proceedings

Multi-Fidelity Methods for Military Vehicle Design

STO-MP-AVT-354

The AVT-354 Technical Team has arranged a Research Workshop (RWS) on Multi-Fidelity Methods for Military Vehicle Design. The objective was to facilitate the identification and possibly the extension of the current state of the art associated with frameworks, architectures, and methodologies for the full adaptive selection of different sources of information from data/models for design of military vehicles. The Workshop covered a broad range of topics in the multidisciplinary design optimization of military vehicles, with specific emphasis on how the incorporation of multi-fidelity methods in the design process can accelerate design procedures and enable more accurate physical analysis. The focus of the workshop was on design applications for sea, air and space platforms, but contribution regarding generic tools and techniques and best practice from other domains will be welcome. Applications for complex engineering problem such as material design, propulsion systems, autonomous systems and energy systems were of interest.

Published12/8/2022
STOAuthorExternalMultiple
STOPublicationTypeMeeting Proceedings RDP
Publication_ReferenceSTO-MP-AVT-354
DOI10.14339/STO-MP-AVT-354
ISBNISBN 978-92-837-2438-4
STOPublisherSTO
AccessNATO Unclassified
STOKeywords

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$$MP-AVT-254-Cover.pdf
  
Cover Pages2/10/2023Open Access
$$MP-AVT-354-ES.pdf
  
Executive Summary and Synthèse 2/7/2023Open Access
$MP-AVT-354-TER.pdf
  
Technical Evaluation Report2/10/2023Open Access
MP-AVT-354-01.pdf
Checked Out To: PARDO Belen (Mrs)MP-AVT-354-01.pdf
Checked Out To: PARDO Belen (Mrs)
  
Framework for Comparison of Multi-Fidelity Approaches for Military Vehicle Design12/8/2022Open Access
MP-AVT-354-02.pdf
  
Analytical Benchmark Problems for Multifidelity Optimization Methods12/8/2022Open Access
MP-AVT-354-03.pdf
  
Reproducible Industrial Multifidelity Optimization Benchmark Problems for Air, Space, and Sea Vehicles12/8/2022Open Access
MP-AVT-354-04.pdf
  
Recent Improvements in Spatial Regression of Climate Data2/7/2023Open Access
MP-AVT-354-05.pdf
  
Resistance and Seakeeping Optimization of a Naval Destroyer by Multi-Fidelity Methods2/7/2023Open Access
MP-AVT-354-06.pdf
  
Hull-Shape Optimisation Using Adaptive Multi-Fidelity Kriging2/7/2023Open Access
MP-AVT-354-07.pdf
  
Compositional Kernels to Facilitate Multi-Fidelity Design Analysis: Applications for Early-Stage Design2/7/2023Open Access
MP-AVT-354-08.pdf
  
Adaptive Multi-fidelity Surrogate Modelling for High-quality Shape Optimization2/7/2023Open Access
MP-AVT-354-09.pdf
  
Comparison of Multi-Fidelity Optimization Methods Using an Aero-Structural Benchmark Problem2/7/2023Open Access
MP-AVT-354-10.pdf
  
Multi-Fidelity Shape and Mission Optimization Including Transient Thermal Constraints2/7/2023Open Access
MP-AVT-354-11.pdf
  
Evaluation of Two Multi-Fidelity Optimization Frameworks in MDO Results Including Aeroelasticity and Aeroacoustics2/7/2023Open Access
MP-AVT-354-12.pdf
  
Modeling Hypersonic Vehicle Performance and Operations using a Multi-Fidelity Reduced Order Modeling Approach2/7/2023Open Access
MP-AVT-354-13.pdf
  
Conceptual Level Sizing, Evaluation and Design Space Exploration Tool2/7/2023Open Access

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