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Robust Transportation Network Design Under Demand Uncertainty

机译:需求不确定下的鲁棒交通网络设计

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This article addresses the problem of a traffic network design problem (NDP) under demand uncertainty. The origin-destination trip matrices are taken as random variables with known probability distributions. Instead of finding optimal network design solutions for a given future scenario, we are concerned with solutions that are in some sense "good" for a variety of demand realizations. We introduce a definition of robustness accounting for the planner's required degree of robustness. We propose a formulation of the robust network design problem (RNDP) and develop a methodology based on genetic algorithm (GA) to solve the RNDP. The proposed model generates globally near-optimal network design solutions, f based on the planner's input for robustness. The study makes two important contributions to the network design literature. First, robust network design solutions are significantly different from the deterministic NDPs and not accounting for them could potentially underestimate the network-wide impacts. Second, systematic evaluation of the performance of the model and solution algorithm is conducted on different test networks and budget levels to explore the efficacy of this approach. The results highlight the importance of accounting for robustness in transportation planning and the proposed approach is capable of producing high-quality solutions.
机译:本文解决了需求不确定性下的交通网络设计问题(NDP)。起点-目的地旅行矩阵被视为具有已知概率分布的随机变量。我们关注的是在某种意义上对于各种需求实现都“良好”的解决方案,而不是针对给定的未来方案找到最佳的网络设计解决方案。我们介绍了针对计划者所需的鲁棒性程度的鲁棒性定义。我们提出了鲁棒网络设计问题(RNDP)的公式,并提出了一种基于遗传算法(GA)的方法来解决RNDP。拟议的模型基于规划者的鲁棒性输入,生成全局近似最优的网络设计解决方案f。该研究为网络设计文献做出了两个重要贡献。首先,健壮的网络设计解决方案与确定性NDP明显不同,如果不考虑它们,可能会低估整个网络的影响。其次,在不同的测试网络和预算水平上对模型和求解算法的性能进行系统评估,以探索这种方法的有效性。结果强调了在运输计划中考虑稳健性的重要性,并且所提出的方法能够产生高质量的解决方案。

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