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COMBINING FORMAL DEFINITION OF A SIMULATION MODEL WITH HEURISTICS TO IMPROVE BUILDING SUSTAINABILITY

机译:模拟模型的正式定义与启发式的结合,以提高建筑的可持续性

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Sustainability is related with environmental, social and economic variables. Each one of these areas is, by itself, complex due to the huge number of factors that one must analyze. Because of the combination of the levels with the factors, and the needed replications, an exponential growth in the number of executions appears. In this paper we describe a methodology that helps us to deal with this complexity applying three key concepts, formal representation of simulation models, optimization algorithms and high-performance computing. We present an infrastructure named NECADA that supports the methodology. This approach can be applied to a building refurbishment or to define optimal parameters in new buildings. The specialists work with the conceptual model, and from it with the system; following the method, they will be able to find optimal scenarios using a selection of build-in heuristics that can be applied for the problem resolution.
机译:可持续性与环境,社会和经济变量有关。由于必须分析的巨大因素,这些区域中的每一个都是复杂的。由于具有因素的水平和所需的复制的组合,因此出现了执行数量的指数增长。在本文中,我们描述了一种帮助我们处理应用三个关键概念,模拟模型的正式表示,优化算法和高性能计算的复杂性的方法。我们展示了一个名为NeCada的基础设施,支持该方法。这种方法可以应用于建筑翻新或在新建筑物中定义最佳参数。专家与概念模型一起工作,并与系统一起使用;在该方法之后,它们将能够使用可以应用于问题解决方案的内置启发式的选择来找到最佳场景。

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