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Rapid multi-objective optimization with multi-year future weather condition and decision-making support for building retrofit

机译:具有多年未来天气状况的快速多目标优化,并为建筑物翻新提供决策支持

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摘要

A method of fast multi-objective optimization and decision-making support for building retrofit planning is developed, and lifecycle cost analysis method taking into account of future climate condition is used in evaluating the retrofit performance. In order to resolve the optimization problem in a fast manner with recourse to non-dominate sorting differential evolution algorithm, the simplified hourly dynamic simulation modeling tool SimBldPy is used as the simulator for objective function evaluation. Moreover, the generated non-dominated solutions are treated and rendered by a layered scheme using agglomerative hierarchical clustering technique to make it more intuitive and sense making during the decision-making process as well as to be better presented.The suggested optimization method is implemented to the retrofit planning of a campus building in UPenn with various energy conservation measures (ECM) and costs, and more than one thousand Pareto fronts are obtained and being analyzed according to the proposed decision-making framework. Twenty ECM combinations are eventually selected from all generated Pareto fronts. It is manifested that the developed decision-making support scheme shows robustness in dealing with retrofit optimization problem and is able to provide support for brainstorming and enumerating various possibilities during the decision-making process. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提出了一种快速的多目标优化和决策支持的建筑改造规划方法,并将考虑未来气候条件的生命周期成本分析方法用于评估建筑改造性能。为了借助非支配排序差分进化算法快速解决优化问题,简化的每小时动态仿真建模工具SimBldPy被用作目标函数评估的仿真器。此外,生成的非支配解决方案通过使用聚结层次聚类技术的分层方案进行处理和渲染,以使其在决策过程中更加直观和有意义,并且可以更好地呈现出来。通过各种节能措施(ECM)和成本对UPenn校园建筑进行改造规划,并根据拟议的决策框架获得了1000多个Pareto前沿并进行了分析。最终从所有生成的Pareto前沿中选择20个ECM组合。可以看出,开发的决策支持方案在处理改造优化问题上显示出鲁棒性,能够为集体讨论和列举决策过程中的各种可能性提供支持。 (C)2019 Elsevier Ltd.保留所有权利。

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