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首页> 外文期刊>Journal of advanced transportation >Optimal Fleet Deployment Strategy: Model the Effect of Shared E-Bikes on Bike-Sharing System
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Optimal Fleet Deployment Strategy: Model the Effect of Shared E-Bikes on Bike-Sharing System

机译:最佳舰队部署策略:模型共享电子自行车对自行车共享系统的影响

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Following the bike-sharing system, the shared e-bike becomes increasingly popular due to the advantage in speed, trip distance, and so forth. However, limited research has investigated the impact of the introduction of shared e-bikes on the existing bike-sharing systems. This paper aims to study the effect of shared e-bikes on the traditional bike-sharing system and determine the optimal fleet deployment strategy under a bimodal transportation system. A stochastic multiperiod optimisation model is formulated to capture the demand uncertainty of travelers. The branch-and-bound algorithm is applied to solve problem. A 15-station numerical example is applied to examine the validity of the model and the effectiveness of the solution algorithm. The performance of integrated e-bike and bike-sharing system has been compared with the traditional bike-sharing system. The impacts of the charging efficiency, fleet size, and pricing strategy of e-bike-sharing system on the traditional bike-sharing system have been examined.
机译:在自行车共享系统之后,由于速度,跳闸距离等优势,共享的电子自行车变得越来越受欢迎。然而,有限的研究已经调查了引入共享电子自行车对现有自行车分享系统的影响。本文旨在研究共享电子自行车对传统自行车共享系统的影响,并确定双模运输系统下的最佳舰队部署策略。配制了随机多层次优化模型,以捕获旅行者的需求不确定性。分支和绑定算法应用于解决问题。应用了15站数值示例以检查模型的有效性和解决方案算法的有效性。与传统的自行车共享系统进行了比较了集成的电子自行车和自行车共享系统的性能。已经研究过对传统自行车共享系统的充电效率,舰队规模和定价策略的影响。

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