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A Novel Crowdsourcing Model for Micro-Mobility Ride-Sharing Systems

机译:微迁移率乘车共享系统的新型众包模型

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摘要

Substantial research is required to ensure that micro-mobility ride sharing provides a better fulfilment of user needs. This study proposes a novel crowdsourcing model for the ride-sharing system where light vehicles such as scooters and bikes are crowdsourced. The proposed model is expected to solve the problem of charging and maintaining a large number of light vehicles where these efforts will be the responsibility of the crowd of suppliers. The proposed model consists of three entities: suppliers, customers, and a management party responsible for receiving, renting, booking, and demand matching with offered resources. It can allow suppliers to define the location of their private e-scooters/e-bikes and the period of time they are available for rent. Using a dataset of over 9 million e-scooter trips in Austin, Texas, we ran an agent-based simulation six times using three maximum battery ranges (i.e., 35, 45, and 60 km) and different numbers of e-scooters (e.g., 50 and 100) at each origin. Computational results show that the proposed model is promising and might be advantageous to shift the charging and maintenance efforts to a crowd of suppliers.
机译:大量的研究需要,以确保微移动拼车提供的用户需求更有效地履行。本研究提出的行列共享系统,其中光车辆如摩托车和自行车是众包的新颖众包模型。该模型有望解决的充电和维护大量的轻型车辆在那里这些努力将是供应商的人群中的责任问题。该模型由三个实体:供应商,客户和管理方负责接收,租赁,预订,与需求的匹配与所提供的资源。它可以让供应商来定义自己的私人电子邮件,摩托车/电动自行车的位置,他们是可供出租的时间段。使用在德克萨斯州奥斯汀超过900万电动摩托车旅行的数据集,我们进行了基于代理的模拟使用三个电池最大范围(即35,45和60公里)和不同数量的电子踏板车的六倍(如在每个原点50和100)。计算结果表明,该模型是有希望的,可能是有利的转变,充电和维护工作,以供应商的人群。

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