综合市政基础设施动态修复的优化分阶段规划

Amin Minaei, Soliman Abusamra, M. Hajibabaei, Dragan Savić, Aaron C. Zecchin, Enrico Creaco, R. Sitzenfrei
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引用次数: 0

摘要

市政基础设施的分阶段规划基于多个网络的时间变化状态,这与传统的规划系统活动时考虑单阶段建设和单一状态的方法截然不同。本研究整合并优化了供水、污水处理和道路网络的走廊式干预规划,其中等长阶段数和干预决策是决策变量之一,显示了阶段数优化对相互依存系统中干预成本和协调的影响程度。在进化算法中优化市政基础设施的阶段数是一项具有挑战性的任务,因为不同决策变量长度的众多规划方案之间需要进行进化重组。在加拿大蒙特利尔的一个实际案例研究中,为系统修复开发了一种多阶段设计和施工方法。该研究涉及 20 条走廊,其中一条街段与供水管道和下水管道共用一个位置。采用了元启发式单目标优化引擎,以最小化整个综合系统干预计划成本的总净现值。结果表明,分阶段优化可为修复总体规划和多系统协调干预活动节省 25% 的成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimized phased planning for dynamic rehabilitation of integrated municipal infrastructure
Phased planning for municipal infrastructure is based on the time-dependent status of multiple networks, which is in contrast to the traditional approach, where one-phase construction and a single status are considered for planning system activities. This study integrates and optimizes the corridor-wise intervention planning of water, sewer, and road networks where the number of equally long phases and intervention decisions are among the decision variables showing the extent to which phase number optimization can impact the cost and coordination of the interventions in interdependent systems. Optimizing the phase number for municipal infrastructure optimization within an evolutionary algorithm is a challenging task due to the evolutionary recombination between numerous planning solutions with different decision variable lengths. A multi-phase design and construction approach is developed for the rehabilitation of the system in a real case study in Montreal, Canada. The study involves 20 corridors in which a street section is co-located with water and sewer pipes. A metaheuristic single-objective optimization engine is employed to minimize the total net present value of intervention plan costs for the whole integrated system. The results show that phased optimization could bring about a 25% cost saving for the rehabilitation master plan and coordinated multi-systems intervention activities.
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