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首页> 外文期刊>Journal of Computing in Civil Engineering >Maximizing the Computational Efficiency of Temporary Housing Decision Support Following Disasters
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Maximizing the Computational Efficiency of Temporary Housing Decision Support Following Disasters

机译:最大限度地提高灾后临时住房决策支持的计算效率

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Postdisaster temporary housing has long been a challenging problem because of its interlinked socioeconomic, political, and financial dimensions. A significant need for automated decision support was obvious to address this problem. Previous research achieved considerable advancements in developing optimization models that can quantify and optimize the impacts of temporary housing decisions on the socioeconomic welfare of displaced families and total public expenditures on temporary housing as well as other objectives. However, the computational complexity of these models hindered its practical use and adoption by emergency planners. This article analyzes the computational efficiency of the current implementation of the most advanced socioeconomic formulation of the temporary housing problem, which uses integer programming. Moreover, it presents the development of a customized variant of the Hungarian algorithm that has a superior computational performance while maintaining the highest quality of solutions. An application example is presented to demonstrate the unique capabilities of the new algorithm in solving large-scale problems.
机译:由于灾后临时住房的社会经济,政治和财务方面相互联系,长期以来一直是一个具有挑战性的问题。很明显,需要自动决策支持来解决此问题。先前的研究在开发优化模型方面取得了相当大的进步,该模型可以量化和优化临时住房决定对流离失所家庭的社会经济福利以及临时住房的公共总支出以及其他目标的影响。但是,这些模型的计算复杂性阻碍了应急计划人员的实际使用和采用。本文分析了使用整数规划的临时住房问题的最先进的社会经济公式的当前实现的计算效率。此外,它提出了匈牙利算法的定制变体的开发,该变体具有出色的计算性能,同时又保持了最高的解决方案质量。给出了一个应用示例,以演示新算法在解决大规模问题中的独特功能。

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