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首页> 外文期刊>International journal of sustainable transportation >Battery-swapping facility planning for electric buses with local charging systems
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Battery-swapping facility planning for electric buses with local charging systems

机译:电池交换设施,用于当地充电系统的电动公交车

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摘要

This paper designs a refueling system for battery electric buses (BEBs) by applying battery-swapping technologies together with a local charging system. The service capability of battery-swapping stations (BSSs) is restricted by the number of installed swapping robots. Depleted batteries are charged at BSSs which is equipped with a local charging system having a number of standby batteries and chargers in various types. This study intends to answer four fundamental questions: How many BSSs should be installed? Where should they be? How to assign the depleted electric buses to BSSs? What is the service capability of the BSS? An integer linear program is first formulated to represent the problem with deterministic demand. A two-stage stochastic programing model is then formulated to handle the demand uncertainties, which is then solved by a customized gradient algorithm. The test on a real network of the southeast region of Melbourne in Australia verifies the feasibility of the proposed model and draws managerial insights for the location and configuration of BSSs.
机译:本文通过将电池交换技术与本地充电系统一起使用电池交换技术设计了电池电动总线(BEB)的加油系统。电池交换站(BSSS)的服务能力受安装交换机器人的数量限制。在BSSS上充电的电池充电,配备有许多备用电池和各种类型的备用电池和充电器的本地充电系统。本研究打算回答四个基本问题:应该安装多少个BSSS?他们应该在哪里?如何将耗尽的电动总线分配给BSSS? BSS的服务能力是多少?首先配制整数线性程序以表示确定性需求的问题。然后配制两阶段随机编程模型以处理需求不确定性,然后通过定制梯度算法解决。澳大利亚墨尔本东南部地区真正网络的测试验证了拟议的模型的可行性,并为BSSS的位置和配置提出了管理见解。

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