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contributor authorDocimo, Donald J.
contributor authorKang, Ziliang
contributor authorJames, Kai A.
contributor authorAlleyne, Andrew G.
date accessioned2022-02-04T14:21:57Z
date available2022-02-04T14:21:57Z
date copyright2020/03/06/
date issued2020
identifier issn1050-0472
identifier othermd_142_9_091701.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4273511
description abstractThis article presents a novel design framework for topology and component sizing optimization of multi-domain dynamic systems described by conservation laws. Multidisciplinary design optimization (MDO) is a powerful tool for minimizing metrics such as inefficiency and cost for these systems-of-systems (SoS). However, quality of the designs identified from the optimization procedure depends on model accuracy and ability to capture inter-system interactions. This work utilizes a conservation-based, graphical modeling approach to capture physical system dynamics and interactions, and expands it to be used in MDO techniques. This yields three contributions to the literature. First, an augmented graph-based model is provided, expressing continuous and discrete design variable values as changes to vertex size, edge size, and edge connections of the dynamic system graph. Second, a sizing and topology optimization framework is developed using the augmented graph-based model as a basis. Third, analytical and numerical sensitivity functions are derived for a cooling system design problem, stemming from application of the design framework. The design framework is applied to two case studies for cooling subsystem design and electric vehicle (EV) powertrain design, with the goal of optimizing thermal and electrical component sizes, as well as discrete choices in the topology of the system being designed. These case studies provide examples for how the design framework enables analysis of alternatives (AoA) during early design stages.
publisherThe American Society of Mechanical Engineers (ASME)
titleA Novel Framework for Simultaneous Topology and Sizing Optimization of Complex, Multi-Domain Systems-of-Systems
typeJournal Paper
journal volume142
journal issue9
journal titleJournal of Mechanical Design
identifier doi10.1115/1.4046066
page91701
treeJournal of Mechanical Design:;2020:;volume( 142 ):;issue: 009
contenttypeFulltext


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