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Dynamic and interactive re-formulation of multi-objective optimization problems for conceptual architectural design exploration

机译:概念架构设计探索多目标优化问题的动态与交互式重新制定

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摘要

Simulation-Based Multi-Objective Optimization (SBMOO) methods are being increasingly used in conceptual architectural design. They mostly focus on the solving, rather than the re-formulation, of a Multi-Objective Optimization (MOO) problem. However, Optimization Problem Re-Formulation (Re-OPF) is necessary for treating ill-defined conceptual architectural design as an iterative exploration process. The paper proposes an innovative SBMOO method which builds in a dynamic and interactive Re-OPF phase. This Re-OPF phase, as the main novelty of the proposed method, aims at achieving a realistic MOO model (i.e., a parametric geometry-simulation model which includes important objectives, constraints, and design variables). The proposed method is applied to the conceptual design of a top-daylighting system, focusing on divergent concept generation. The integration of software tools Grasshopper and modeFRONTIER is adopted to support this application. The main finding from this application is that the proposed method can help to achieve quantitatively better and quali-tatively more diverse Pareto solutions.
机译:基于仿真的多目标优化(SBMOO)方法越来越多地用于概念建筑设计。它们主要专注于多目标优化(MOO)问题的解决,而不是重新制定。然而,优化问题重新制定(RE-OPF)对于将不明定义的概念架构设计视为迭代探索过程是必要的。本文提出了一种创新的SBMoo方法,可在动态和交互式的重新opf阶段构建。作为所提出的方法的主要新颖性,该重新opf阶段旨在实现现实的Moo模型(即,参数几何模拟模型,包括重要目标,约束和设计变量)。该方法应用于顶部日光系统的概念设计,专注于发散的概念。采用软件工具蚱蜢和ModeFrontier的集成来支持此应用。本申请的主要发现是,该方法可以有助于定量更好地实现更好,有质量的帕累托解决方案。

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