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Use of Clustering and Interpolation Techniques for the Time-Efficient Simulation of Complex Models within Optimization Tasks

机译:在优化任务中使用聚类和插值技术对复杂模型进行时效仿真

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摘要

Several widely used model optimization techniques such as, for instance, genetic algorithms, exploit on intelligent test of different input variables configurations. Such variables are fed to an arbitrary model and their effect is evaluated in terms of the output variables, in order to identify their optimal values according to some predetermined criteria. Unfortunately some models concern real world phenomena which involve a high number of input and output variables, whose interactions are complex. Consequently the simulations can be so time consuming that their use within an optimization procedure is unaffordable. In order to overcome this criticality, reducing the simulation time required for running the model within the optimization task, a novel method based on the combination of clustering and interpolation techniques is proposed. This technique is based on the use of a set of pre-run simulations of the original model, which are firstly used to cluster the input space and to assign to each cluster a suitable output value within the output space. Subsequently, in the simulation phase, an ad-hoc interpolation is performed in order to provide the final simulation results. The proposed method has been tested on a complex model of a blast furnace within an optimization problem and has obtained good results in terms of accuracy and time-efficiency of the simulation.
机译:几种广泛使用的模型优化技术(例如遗传算法)利用智能测试不同的输入变量配置。将这些变量输入任意模型,并根据输出变量评估其效果,以便根据一些预定标准确定其最佳值。不幸的是,一些模型涉及现实世界中的现象,这些现象涉及大量的输入和输出变量,它们之间的相互作用是复杂的。因此,仿真可能非常耗时,以至于无法在优化过程中使用它们。为了克服这一关键性,减少优化任务中运行模型所需的仿真时间,提出了一种基于聚类和插值技术相结合的新方法。该技术基于对原始模型的一组运行前仿真的使用,这些仿真首先用于对输入空间进行聚类,并为每个聚类分配输出空间内的合适输出值。随后,在仿真阶段,执行临时插值以提供最终的仿真结果。在优化问题内,对高炉的复杂模型进行了测试,并在仿真的准确性和时间效率方面获得了良好的结果。

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