A Decomposition Based Design Method Coordinated by Disciplinary Subspace Optimization

Jongsoo Lee, Heeseok Jeong
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引用次数: 4

Abstract

The paper describes the development of a decomposition based design (DBD) method using optimal sensitivity information with respect to coupled or interdisciplinary design variables. A multidisciplinary design system considered in the present study is decomposed into a number of subspaces based on their own design objectives and constraints associated with engineering physics. The coupled relations among subspaces are identified by interdisciplinary design variables. Subsystem level optimization is performed in parallel, and the system level coordination is determined by the first order optimal sensitivities of subsystem level objective functions with respect to interdisciplinary design variables. The central of the present work focuses on the formulation of system level coordination strategy and its capability in decomposition based design. A fluid-structure coupled design problem is explored as a test-bed to verify the proposed DBD method.
基于分解的学科子空间优化协同设计方法
本文描述了一种基于分解的设计(DBD)方法的发展,该方法使用关于耦合或跨学科设计变量的最优灵敏度信息。本研究中考虑的多学科设计系统根据其自身的设计目标和与工程物理相关的约束被分解为许多子空间。子空间间的耦合关系由交叉设计变量来确定。子系统级优化并行进行,系统级协调由子系统级目标函数对多学科设计变量的一阶最优灵敏度决定。本文研究的重点是系统级协调策略的制定及其在基于分解的设计中的能力。以一个流固耦合设计问题为实验平台,验证了所提出的DBD方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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