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A bi-level school bus routing problem with bus stops selection and possibility of demand outsourcing

机译:巴士站的双级校车路由问题选择和需求外包的可能性

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This paper develops a bi-level mathematical model for the school bus routing problem aiming at designing an efficient transportation system considering the possibility of predicting the students' response. In the real world, the demand for using private cars depends on how well public transportation systems are operating especially in metropolitan cities. An inefficient public transportation will lead to an increase in the demand for using private cars. This issue will result in problems such as increased traffics and urban pollutions. To address this issue, an efficient public transportation system is designed by developing a new bi-level mathematical model. In the proposed model, the designer of the public transportation system, as the upper-level decision-maker, will locate appropriate bus stops and identify bus navigation routes. Subsequently, the decision regarding the allocation of students to transportation systems or outsourcing them will be made at the lower level which is considered as an operational-level decision-making. To solve this problem, two hybrid metaheuristic approaches named GA-EX-TS and SA-EX-TS have been proposed based on location-allocation-routing (LAR) strategy. The performance of these proposed methods is compared with exact solutions achieved from an explicit enumeration approach followed in the small-scale instances. Finally, the proposed approaches are used to solve 50 random instance problems. Comparing the results of the two tuned hybrid algorithms and conducting the sensitivity analysis of the model provide evidence for the good performance of the proposed approach. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文开发了校车路由问题的双级数学模型,旨在设计高效的交通系统,考虑到预测学生的反应。在现实世界中,利用私家车的需求取决于公共交通系统如何在大都市城市运营。效率低下的公共交通将导致利用私家车的需求增加。这个问题将导致流量和城市污染增加等问题。为了解决这个问题,通过开发新的双级数学模型来设计一个有效的公共交通系统。在拟议的模型中,公共交通系统的设计者作为上层决策者将找到适当的总线站点并识别总线导航路线。随后,将在将学生分配到运输系统或外包它们的决定,将在较低的水平上进行,被认为是运营级别决策。为了解决这个问题,已经基于位置分配路由(LAR)策略提出了两个名为GA-EX-TS和SA-EX-TS的混合杂交成分方法。这些提出方法的性能与从明确的枚举方法遵循的精确解决方案进行了比较。最后,建议的方法用于解决50个随机实例问题。比较两个调谐混合算法的结果和进行模型的灵敏度分析,提供了良好的良好性能的证据。 (c)2017 Elsevier B.v.保留所有权利。

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