Usage Coordination Utilizing Flexible Contracts in Free-floating Car Sharing

Yuto Iwata, S. Matsubara
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Abstract

We propose a novel distributed user-car matching method based on a contract between users to mitigate the imbalance problem between vehicle distribution and demand in free-floating car sharing. The previous contract-based regulation method assumes that contracts are binding. However, car-sharing systems users are in dynamic environments, and such binding fails to accommodate future events. Therefore, to overcome this drawback, we introduce a leveled-commitment contract into contract-based coordination among drop-off and pick-up users. In our method, an auction is conducted for drop-off users’ intended drop-off locations, and users are allowed to decommit from contracts by paying penalties. The amount of penalty is determined by considering the trade-off between the sunk cost due to movement and social surplus. We thoroughly evaluated the proposed method with a baseline method on a free-floating car-sharing simulator. The results show that it achieved a higher social surplus than the existing method when demand frequently occurred.
基于弹性契约的自由浮动共享汽车使用协调
针对自由浮动汽车共享中车辆分配与需求不平衡的问题,提出了一种基于用户契约的分布式用户-车匹配方法。之前基于合同的监管方法假设合同具有约束力。然而,汽车共享系统的用户处于动态环境中,这种绑定无法适应未来的事件。因此,为了克服这一缺点,我们在接送用户之间的基于契约的协调中引入了一个水平承诺契约。在我们的方法中,对下车用户的预定下车地点进行拍卖,并允许用户通过支付罚款来解除合同。惩罚的数额是通过考虑迁移沉没成本和社会剩余之间的权衡来确定的。我们在一个自由浮动的汽车共享模拟器上用基线方法对所提出的方法进行了全面的评估。结果表明,在需求频繁发生的情况下,该方法比现有方法获得了更高的社会剩余。
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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