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A Dynamic Pricing Method for Carpooling Service Based on Coalitional Game Analysis

机译:基于联合游戏分析的拼装服务动态定价方法

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In recent years, carpooling service provided by corporations like Uber (UberPool), Didi (DidiPool) and Lyft (Lift Link) have become more and more popular. It helps alleviating the urban traffic congestion, by decreasing the empty seats rate. To balance the supply and demand of the taxi service, a dynamic pricing method is needed. More specifically, passengers taking a same vehicle may be charged differently, even thought they shared a most part of a trip. It often challenges the current dynamic pricing policy that how to balance the service and the pricing among different passengers who shared a certain route in their personal trip. In view of this challenge, we propose a new dynamic pricing method and divide the payoff according to the contribution of each passenger. Concretely, we deploy the framework of coalitional game to analyze spatial temporal constraints that guarantee individual benefits from the carpooling coalition. Then, we explore the Nash Product to maximize the utility of passengers as a whole and reduce our problem into a geometry-programming problem. At last we use Shapley value method to measure the specific contribution of each passenger. We conduct a simulated experiment and the results show effectiveness of our method.
机译:近年来,由优步(Uberpool),Didi(Didipool)和Lyft(电梯链接)等公司提供的拼车服务已变得越来越受欢迎。它通过降低空座位率来帮助减轻城市交通拥堵。为了平衡出租车服务的供需,需要一种动态定价方法。更具体地说,拍摄同一车辆的乘客可能会被充电,甚至认为他们在旅途中分享了大部分时间。它经常挑战当前的动态定价政策,如何平衡服务和在个人旅行中分享某路线的不同乘客之间的定价。鉴于这一挑战,我们提出了一种新的动态定价方法,并根据每个乘客的贡献除以支付。具体地说,我们部署了合并游戏框架,分析了空间颞限制,以保证拼车联盟的个别受益。然后,我们探讨了纳什产品,以最大化乘客的整体利用,并将问题减少到几何编程问题中。最后,我们使用福利价值法测量每个乘客的具体贡献。我们进行模拟实验,结果表明了我们方法的有效性。

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