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Research on the Discrete Network Design Problem under Construction Cost Uncertainties with A Chance Constraint Model

机译:建设成本不确定性下的离散网络设计问题与机会约束模型研究

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The discrete network design problem under uncertain construction costs deals with the selection of links to be added to the existing network, so as to minimize the total travel costs in the network. It is assumed that the value of the demand between each pair of origin and destination is a constant and the construction costs of each potential link addition follow a certain stochastic distribution. In this paper, a bi-level and stochastic programming model for the discrete network design problem is proposed. The construction costs of potential links are assumed as random variables and mutually independent with each other in this model. The upper-level model is a chance constrain model with the objective function of minimizing the total travel costs in the network, and the lower-level model is a user equilibrium model. The stochastic model is then transformed into a deterministic one. A branch-and-bound solution algorithm is designed to solve the deterministic model in an efficient way. At last, a computational experiment is conducted to illustrate the effectiveness and efficiency of the approach proposed in this paper. The results show that the stochastic model is more flexible and practical compared with the deterministic one.
机译:不确定的建筑成本下的离散网络设计问题涉及要添加到现有网络的链接的选择,以最大限度地减少网络中的总旅行成本。假设每对原点和目的地之间的需求的值是常数,并且每个潜在的链路添加的构造成本遵循一定的随机分布。在本文中,提出了一种用于离散网络设计问题的双层和随机编程模型。潜在链接的施工成本被认为是随机变量,在该模型中彼此相互独立。上层模型是一个机会,利用最小化网络中的总旅行成本的目标函数来限制模型,而较低级模型是用户均衡模型。然后将随机模型转换为确定性的模型。分支和绑定的解决方案算法旨在以有效的方式解决确定性模型。最后,进行了计算实验,以说明本文提出的方法的有效性和效率。结果表明,与确定性的相比,随机模型更加灵活实用。

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