Alliance or Independence? Optimal Operation of Commuter Buses by Suburban Employers Based on Cooperative Game Theory

Dongxu Chen, Shuai Tang, Yu Lin, Xudong Li, Zhongzhen Yang
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Abstract

To reduce commuting expenses incurred by suburban employers and their urban employees, this paper proposes the operation of commuter buses by an employer alliance and builds a bi-level programming model to optimize their operation. The upper model determines the composition of the alliance with the objective of minimizing total commuting expenses. The lower model optimizes the commuter bus routes so as to minimize the total commuting expenses of the alliance through a consideration of differences in the value of employees’ time. We fairly allocate total operating costs among alliance members based on cooperative game theory, which reinforces the optimized alliance’s stability. This paper then takes Meishan District in Ningbo as a numerical case study. The analysis shows the following: (1) under the alliance model, the total commuting expenses of three allied employers will be reduced by 8.09% per day; (2) the total commuting time of employees can be reduced by 3.75% per day; moreover, (3) the spatial distribution of the bus stops has a significant impact on employers’ willingness to participate in an alliance as opposed to operating an independent commuter bus service. Specifically, the farther dispersed the bus stops and the fewer the employees at each stop, the greater the likelihood that the employer will participate in an alliance.
联盟还是独立?基于合作博弈论的郊区雇主通勤巴士优化运营
为了减少郊区雇主及其城市员工的通勤费用,本文提出了由雇主联盟运营通勤巴士的方案,并建立了一个优化其运营的双层程序模型。上层模型以通勤总支出最小化为目标确定联盟的组成。下层模型通过考虑员工时间价值的差异,优化通勤公交线路,使联盟的通勤总支出最小化。基于合作博弈论,我们在联盟成员间公平分配总运营成本,从而增强了优化后联盟的稳定性。本文以宁波市梅山区为例进行了数值分析。分析表明(1)在联盟模式下,三家联盟用人单位每天的通勤总支出将减少 8.09%;(2)员工每天的通勤总时间可减少 3.75%;此外,(3)相对于独立运营通勤公交服务,公交站点的空间分布对用人单位参与联盟的意愿有显著影响。具体来说,公交站点越分散,每个站点的员工人数越少,雇主参与联盟的可能性就越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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