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A new approach to performance-based building design exploration using linear inverse modeling

机译:基于性能的基于性能的建筑设计探索方法使用线性反转建模

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Despite the development of a large number of building performance simulation tools, designers still need a systematic framework appropriate for energy-oriented decision-making in the early stages of design. While the current workflow follows a "forward" modelling procedure in which simulation tools predict the performance of a design, this study proposes an "inverse" procedure that entails a performance objective that estimates design parameters. Using linear inverse modelling, this approach generates plausible ranges for design parameters given a preferred thermal performance. The paper begins by demonstrating that thermal demand in a particular building operation-and-climate condition can be expressed as a linear regression model and then, in two case-studies, uses the regression model to develop an inverse algorithm. After defining energy performance targets as input, users obtain a probabilistic estimate of design parameters as output that represents a large "menu" of feasible design solutions, provides confidence, and embodies the iterative nature of design.
机译:尽管开发了大量建筑的性能仿真工具,但设计人员仍然需要一个适合于设计的早期阶段的能量导向决策的系统框架。虽然当前的工作流程遵循“前进”建模程序,其中模拟工具预测设计性能,但本研究提出了一种“逆”程序,其需要估计设计参数的性能目标。使用线性逆建模,该方法为优选的热性能产生了设计参数的合理范围。本文首先表明特定建筑物和气候条件中的热需求可以表示为线性回归模型,然后,在两个病例研究中,使用回归模型来开发逆算法。在将能源性能目标定义为输入之后,用户获得了设计参数的概率估计,因为输出代表了可行设计解决方案的大“菜单”,提供了信心,体现了设计的迭代性质。

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