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Secure, Resilient, and Safety Critical Architecture of Charging Stations for Unsupervised Autonomous Vehicles

机译:无监督自动车辆充电站的安全,弹性和安全临界架构

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The anticipated wide-spread deployment of unsupervised Autonomous Vehicles (AVs) across the globe will reshape the existing vehicle-related services (e.g., refueling/charging, parking, car washing, etc.) into new forms. Especially, a new paradigm of the refueling/charging mechanism can offer new economies and service opportunities. It has the potential to make a great impact on the current gasoline station industry given its enormous market size (e.g., annual sales more than $418 billion in 2016), as the AVs become mainstream modes of transportation. We propose a resilient and secure layered architecture of completely automated charging/refueling stations for unsupervised AVs. To demonstrate the feasibility of the architecture, we develop an analytical framework using a bottom-up approach. Then, we demonstrate the operation of a charging station as an essential component of the proposed architecture. The main goal of charging station's operation is to optimize scheduling of electric vehicles for their charging service. A divide-and-conquer strategy is employed for such scheduling optimization at the operational level real-time decision-making. In this optimization, the objective function is to minimize the sum of charging completion times of all vehicles in the queue. A mixed-integer linear programming model is considered to solve this online optimal scheduling procedure. An illustrative example of the scheduling solution that is obtained by a Matlab code combined with the Gurobi optimization solver is presented.
机译:全球无监督的自治车辆(AVS)的预期广泛部署将重塑现有的车辆相关服务(例如,加油/充电,停车,汽车洗涤等)。特别是,加油/充电机制的新范式可以提供新的经济和服务机会。由于AVS成为主流运输方式,它有可能对目前的汽油站行业产生重大影响。(例如,2016年的年销售额超过41.180亿美元)。我们为无人监督的AVS提出了一种完全自动化的充电/加油站的弹性和安全的分层体系结构。为了展示架构的可行性,我们使用自下而上的方法开发分析框架。然后,我们展示充电站作为所提出的体系结构的基本组件的操作。充电站操作的主要目标是优化电动汽车的调度,以便为其充电服务。划分和征服策略用于在运营级实时决策中进行此类调度优化。在这种优化中,目标函数是最小化队列中所有车辆的充电完成时间的总和。混合整数线性编程模型被认为是解决此在线最佳调度程序。呈现由MATLAB代码获得的调度解决方案的说明性示例与Gurobi优化求解器组合。

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