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Toolbox for super-structured and super-structure free multi-disciplinary building spatial design optimisation

机译:用于超结构和无超结构的多学科建筑空间设计优化的工具箱

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Multi-disciplinary optimisation of building spatial designs is characterised by large solution spaces. Here two approaches are introduced, one being super-structured and the other super-structure free. Both are different in nature and perform differently for large solution spaces and each requires its own representation of a building spatial design, which are also presented here. A method to combine the two approaches is proposed, because the two are prospected to supplement each other. Accordingly a toolbox is presented, which can evaluate the structural and thermal performances of a building spatial design to provide a user with the means to define optimisation procedures. A demonstration of the toolbox is given where the toolbox has been used for an elementary implementation of a simulation of co-evolutionary design processes. The optimisation approaches and the toolbox that are presented in this paper will be used in future efforts for research into- and development of optimisation methods for multi-disciplinary building spatial design optimisation.
机译:建筑空间设计的多学科优化具有较大的解决方案空间。这里介绍了两种方法,一种是超结构化的,另一种是无结构的。两者本质上是不同的,并且对于大型解决方案空间的执行方式是不同的,并且每个都需要自己代表建筑空间设计,在此也进行介绍。提出了一种将两种方法相结合的方法,因为这两种方法有望相互补充。因此,提出了一种工具箱,其可以评估建筑物空间设计的结构和热性能,以向用户提供定义优化程序的手段。给出了工具箱的演示,其中该工具箱已用于共同进化设计过程的仿真的基本实现。本文介绍的优化方法和工具箱将在未来的工作中用于研究和开发用于多学科建筑空间设计优化的优化方法。

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