Discrete traffic network design model considering risk attitude of decision maker and users

Xinxin Yu, J. Shao, Xiaoxia Yao, Guoyi Tang, Ying Liu, Xiongjun Han, Changzhi Bian, Heling Liu
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Abstract

Traffic network design is one of the core contents of traffic planning. The traditional transportation planning is based on deterministic assumptions and decision-making rules, resulting in unreasonable factors in the planning scheme. This study aims to build uncertain transport network design method with uncertainty theory. This paper assumes that the traffic supply and demand are random variables. Using the expected utility theory to consider the risk attitude of users and the deviation degree to considering the risk attitude of decision maker, a bi-level programming model is established. This paper presents a method with genetic algorithm to solve the problem, and then gives an example. The results of the Nguyen Dupuis network show that the risk attitudes of decision makers and users have an important impact on the decision-making of network design. The proposed method can effectively improve the robustness of network design.
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考虑决策者和用户风险态度的离散交通网络设计模型
交通网络设计是交通规划的核心内容之一。传统的交通规划基于确定性的假设和决策规则,导致规划方案中存在不合理因素。本研究旨在运用不确定性理论建立不确定运输网络设计方法。本文假设交通供给和需求是随机变量。利用期望效用理论考虑用户的风险态度和考虑决策者风险态度的偏差程度,建立了双层规划模型。本文提出了一种用遗传算法求解该问题的方法,并给出了实例。Nguyen Dupuis网络的结果表明,决策者和用户的风险态度对网络设计决策有重要影响。该方法可以有效地提高网络设计的鲁棒性。
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