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Dynamic Pricing for Autonomous Vehicle E-hailing Services Reliability and Performance Improvement

机译:自动车辆电子商务服务可靠性和性能改进的动态定价

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As Autonomous Vehicles (AVs) become possible for E-hailing services operate, especially when telecom companies start deploying next-generation wireless networks (known as 5G), many new technologies may be applied in these vehicles. Dynamic-route-switching is one of these technologies, which could help vehicles find the best possible route based on real-time traffic information. However, allowing all AVs to choose their own optimal routes is not the best solution for a complex city network, since each vehicle ignores its negative effect on the road system due to the additional congestion it creates. As a result, with this system, some of the links may become over-congested, causing the whole road network system performance to degrade. Meanwhile, the travel time reliability, especially during the peak hours, is an essential factor to improve the customers' ride experience. Unfortunately, these two issues have received relatively less attention. In this paper, we design a link-based dynamic pricing model to improve the road network system and travel time reliability at the same time. In this approach, we assume that all links are eligible with the dynamic pricing, and AVs will be perfect informed with update traffic condition and follow the dynamic road pricing. A heuristic approach is developed to address this computationally difficult problem. The output includes link-based surcharge, new travel demand and traffic condition which would improve the system performance close to the System Optimal (SO) solution and maintain the travel time reliability. Finally, we evaluate the effectiveness and efficiency of the proposed model to the well-known test Sioux Falls network.
机译:作为自主车辆(AVS)成为电子海盗服务的操作,特别是当电信公司开始部署下一代无线网络(称为5G)时,这些车辆可能适用许多新技术。动态路线切换是这些技术之一,可以帮助车辆基于实时交通信息找到最佳路线。然而,允许所有AVS选择自己的最佳路线不是复杂城市网络的最佳解决方案,因为每辆车由于它创造的额外拥塞而忽略了对道路系统的负面影响。结果,通过该系统,一些链接可能会变得过度拥塞,导致整个道路网络系统的性能降低。同时,旅行时间可靠性,特别是在高峰时段,是提高客户乘坐体验的必要因素。不幸的是,这两个问题得到了相对不那么关注。在本文中,我们设计了一种基于链路的动态定价模型,同时改善道路网络系统和行程时间可靠性。在这种方法中,我们假设所有链接都符合动态定价,并且AVS将完善更新流量条件并遵循动态道路定价。开发了一种启发式方法来解决这一计算困难的问题。该输出包括基于链接的附加费,新的旅行需求和流量条件,可以提高系统性能接近系统最佳(SO)解决方案,并保持行程时间可靠性。最后,我们评估所提出的模型对众所周知的测试Sioux瀑布网络的效力和效率。

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