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首页> 外文期刊>Journal of Construction Engineering and Management >Multiobjective Framework for Managing Municipal Integrated Infrastructure
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Multiobjective Framework for Managing Municipal Integrated Infrastructure

机译:管理市政综合基础设施的多目标框架

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The massive number of infrastructure intervention activities occurring in cities leads to detrimental social, environmental, and economic impacts on the community. Thus, integrating the asset intervention activities is required to minimize the community disruption and maintain an acceptable level of service throughout the assets' lifecycle. This paper presents an integrated multiobjective asset management system for the road and water infrastructure that enables asset managers to trade off intervention alternatives and compare the outcomes of both conventional and integrated asset management systems. The multiobjective framework considers (1) physical state, (2) lifecycle costs, (3) user costs, and (4) replacement value. It revolves through three core models: (1) a database model that contains detailed asset inventory for the road and water networks; (2) key performance indicator (KPI) computational models for assessing the impact of the intervention plan on the predefined set of KPIs; and (3) an optimization model that relies on a combination of metaheuristics, dynamic programming, and goal optimization to schedule the intervention activities throughout the planning horizon. The system is applied to road and water networks in Kelowna, British Columbia, and the results show 33 and 50% savings in lifecycle costs and user costs, respectively. Moreover, it shows the potential ability to scale the framework to include other infrastructure such as sewer, electricity, gas, and telecom, provided that the information can be shared among these entities. (C) 2017 American Society of Civil Engineers.
机译:城市中发生的大量基础设施干预活动导致对社区的不利的社会,环境和经济影响。因此,需要整合资产干预活动,以最大程度地减少社区干扰,并在整个资产生命周期中维持可接受的服务水平。本文提出了一种用于道路和水利基础设施的集成多目标资产管理系统,该系统使资产管理者能够权衡干预方案,并比较常规资产管理系统和集成资产管理系统的结果。多目标框架考虑(1)物理状态,(2)生命周期成本,(3)用户成本和(4)重置价值。它涉及三个核心模型:(1)一个数据库模型,其中包含道路和供水网络的详细资产清单; (2)关键绩效指标(KPI)计算模型,用于评估干预计划对预定义的KPI集的影响; (3)优化模型,该模型依赖于元启发法,动态规划和目标优化的组合,以在整个计划范围内安排干预活动。该系统应用于不列颠哥伦比亚省基洛纳的道路和供水网络,结果表明,生命周期成本和用户成本分别节省了33%和50%。而且,它显示了扩展框架以包括其他基础设施(如下水道,电力,天然气和电信)的潜在能力,条件是可以在这些实体之间共享信息。 (C)2017年美国土木工程师学会。

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