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A multi-objective integrated model for selecting, scheduling, and budgeting road construction projects

机译:选择,调度和预算道路建设项目的多目标综合模型

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摘要

In this paper, an integrated model for selecting, scheduling, and budgeting urban road construction projects is introduced as a multi-objective time-dependent bi-level network design problem. Three criteria are considered as upper-level objective functions: total travel time, user satisfaction over time, and spatial it equity. Two new measures are developed to assess network design scenarios from the perspectives of user satisfaction over time and spatial equity. Given the great complexity of the intended problem, two multi-objective evolutionary approaches (an interactive and a-posteriori) are proposed to solve the model in a reasonable time. These two approaches are novel combinations of different techniques, such as: Genetic Algorithm (GA), Non-dominated Sorting Genetic Algorithm (NSGA-II), Frank-Wolfe algorithm, Ordered logit model, and knees identification algorithm. Computational results for various test problems Show that proposed approaches have acceptable performance in terms of both solution quality and Solution time. To show applicability of the proposed approach in large-sized networks, it is applied to a real case on Isfahan City in Iran. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文介绍了一种用于选择,调度和预算城市道路建设项目的集成模型作为多目标时间相关的双级网络设计问题。三个标准被视为上级目标职能:总旅行时间,随着时间的推移,用户满意度以及空间IT权益。开发了两项新措施,以评估网络设计方案,从用户满意随时间和空间股权的观点来看。鉴于预期问题的巨大复杂性,建议在合理的时间内解决两个多目标进化方法(交互式和互动和A-Bouthiori)。这两种方法是不同技术的新组合,例如:遗传算法(GA),非统治分类遗传算法(NSGA-II),Frank-Wolfe算法,有序的Logit模型和膝关节识别算法。各种测试问题的计算结果表明,提出的方法在解决方案质量和解决方案时间方面具有可接受的性能。为了在大型网络中显示所提出的方法的适用性,它适用于伊朗伊斯法罕市的实际案例。 (c)2018年elestvier b.v.保留所有权利。

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