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Optimal charging scheduling and management for a fast-charging battery electric bus system

机译:快速充电电池电动总线系统的最佳充电调度与管理

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Battery electric buses (BEBs) are rapidly being embraced by public transit agencies because of their environmental and economic benefits. To address the problems of limited driving range and time-consuming charging for BEBs, manufacturers have developed rapid on-route charging technology that utilizes typical layovers at terminals to charge buses in operation using high power. With on-route fast-charging, BEBs are as capable as their diesel counterparts in terms of range and operating time. However, on-route fast-charging makes it more challenging to schedule and manage charging events for a BEB system. First, on-route fast-charging may lead to high electricity power demand charges. Second, it may increase electricity energy charges because of charging that occurs during on-peak hours. Without careful charging scheduling and management, on-route fast-charging may significantly increase fuel costs and reduce the economic attractiveness of BEBs. The present study proposes a network modeling framework to optimize the charging scheduling and management for a fast-charging BEB system, effectively minimizing total charging costs. The charging schedule determines when to charge a BEB, while the charging management strategically controls the actual charging power. Charging costs include both electricity demand charges and energy charges. The charging scheduling and management problem is first formulated as a nonlinear nonconvex program with time-continuous variables. A discretizing method and a linear reformulation technique are then adopted to reformulate the model as a linear program, which can be easily solved using off-the-shelf solvers, even for large-scale problems. Finally, the model is demonstrated with extensive numerical studies based on two real-world bus networks. The results demonstrate that the proposed model can effectively determine the optimal charging scheduling and management for a fast-charging BEB system, which carries the potential for use in large-scale real-world bus networks.
机译:由于环境和经济利益,电池电动巴士(BEB)正在迅速被公共交通机构接受。为了解决BEBS的有限驾驶范围和耗时收费的问题,制造商开发了快速的途中充电技术,该技术利用终端在终端中的典型层滑动,以使用高功率在运行中充电总线。随着路线的快速充电,BEBS在范围和操作时间方面可以作为其柴油对应物。但是,在线快速充电使其更具挑战性,以便为BEB系统进行安排和管理充电事件。首先,在路上的快速充电可能导致高电力需求充电。其次,由于在高峰时段发生时,它可能会增加电力电荷。如果没有仔细充电调度和管理,在线快速充电可能会显着提高燃料成本并降低BEB的经济吸引力。本研究提出了一种网络建模框架,以优化用于快速充电的BEB系统的充电调度和管理,有效地最小化了总收费成本。充电时间表确定何时对BEB充电,而计费管理策略性地控制实际充电电源。充电成本包括电力需求费用和能源费用。首先将充电调度和管理问题作为具有时间连续变量的非线性非耦合程序。然后采用离散方法和线性重构技术来重新设计模型作为线性程序,即使对于大规模问题,也可以容易地解决了现成的求解器。最后,基于两个真实世界总线网络的广泛数值研究证明了该模型。结果表明,所提出的模型可以有效地确定快速充电BEB系统的最佳充电调度和管理,这携带大规模现实世界总线网络的可能性。

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