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A quantitative and systematic methodology to investigate energy consumption issues in multimodal intercity transportation systems

机译:一种定量和系统的方法来研究多式联运城市间交通系统中的能耗问题

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Energy issues in transportation systems have garnered increasing attention recently. This study proposes a systematic methodology for policy-makers to minimize energy consumption in multimodal intercity transportation systems considering suppliers' operational constraints and travelers' mobility requirements. A bi-level optimization model is developed for this purpose and considers the air, rail, private auto, and transit modes. The upper-level model is a mixed integer nonlinear program aiming to minimize energy consumption subject to transportation suppliers' operational constraints and traffic demand distribution to paths resulting from the lower-level model. The lower-level model is a linear program seeking to maximize the trip utilities of travelers. The interactions between the multimodal transportation suppliers and intercity traffic demand are considered under the goal of minimizing system energy consumption. The proposed bi-level mixed integer model is relaxed and transformed into a mathematical program with complementarity constraints, and solved using a customized branch-and-bound algorithm. Numerical experiments, conducted using multimodal travel options between Lafayette, Indiana and Washington, D.C. reiterate that shifting traffic demand from private cars to the transit and rail modes significantly reduce energy consumption. Moreover, the proposed methodology provides tools to quantitatively analyze system energy consumption and traffic demand distribution among transportation modes under specific policy instruments. The results illustrate the need to systematically incorporate the interactions among traveler preferences, network structure, and supplier operational schemes to provide policy-makers insights for developing traffic demand shift mechanisms to minimize system energy consumption. Hence, the proposed methodology provide policy-makers the capability to analyze energy consumption in the transportation sector by a holistic approach.
机译:最近,运输系统中的能源问题已引起越来越多的关注。这项研究为决策者提出了一种系统化的方法,以考虑供应商的运营约束和旅行者的出行需求,将多式联运城市间交通系统的能耗降至最低。为此,开发了一个双层优化模型,该模型考虑了空中,铁路,私家车和公交方式。上级模型是一个混合整数非线性程序,旨在最大程度地降低能耗,这取决于运输供应商的运营限制以及交通需求分配给下级模型产生的路径。下层模型是一个线性程序,旨在最大化旅行者的出行效用。以使系统能耗最小化为目标,考虑了多式联运供应商与城市间交通需求之间的相互作用。将提出的双层混合整数模型放宽并转换为具有互补约束的数学程序,并使用定制的分支定界算法进行求解。在印第安纳州拉斐特和华盛顿特区之间使用多式联运选项进行的数值实验重申,将交通需求从私家车转向公交和铁路模式,可显着降低能耗。此外,所提出的方法提供了工具,可以在特定的政策手段下定量分析交通方式之间的系统能耗和交通需求分配。结果表明,需要系统地整合旅行者偏好,网络结构和供应商运营方案之间的相互作用,以为决策者提供见解,以发展交通需求转移机制,以最大程度地降低系统能耗。因此,所提出的方法为决策者提供了通过整体方法分析运输部门能源消耗的能力。

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