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首页> 外文期刊>Journal of Computing in Civil Engineering >Approximation Techniques for Transportation Network Design Problem under Demand Uncertainty
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Approximation Techniques for Transportation Network Design Problem under Demand Uncertainty

机译:需求不确定性下交通网络设计问题的近似技术

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摘要

Conventional transportation network design problems treat origin-destination (OD) demand as fixed, which may not be true in reality. Some recent studies model fluctuations in OD demand by considering the first and the second moment of the system travel time, resulting in stochastic and robust network design models, respectively. Both of these models need to solve the traffic equilibrium problem for a large number of demand samples and are therefore computationally intensive. In this paper, three efficient solution-approximation approaches are identified for addressing demand uncertainty by solving for a small sample size, reducing the computational effort without much compromise on the solution quality. The application and the performance of these alternative approaches are reported. The results from this study will help in deciding suitable approximation techniques for network design under demand uncertainty.
机译:常规的运输网络设计问题将始发地(OD)需求视为固定需求,这在现实中可能并非如此。最近的一些研究通过考虑系统行程时间的第一时刻和第二时刻来对OD需求的波动进行建模,从而分别得出了随机和鲁棒的网络设计模型。这两个模型都需要解决大量需求样本的流量均衡问题,因此计算量大。在本文中,确定了三种有效的解决方案逼近方法,以解决较小的样本量来解决需求不确定性的问题,从而减少了计算工作量,而对解决方案的质量没有太大的影响。报告了这些替代方法的应用和性能。这项研究的结果将有助于确定在需求不确定性下适合网络设计的近似技术。

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