首页> 外文期刊>Transportation research, Part E. Logistics and transportation review >Integrated charging scheduling and operational control for an electric bus network
【24h】

Integrated charging scheduling and operational control for an electric bus network

机译:电动公交网络的集成充电调度和运营控制

获取原文
获取原文并翻译 | 示例

摘要

? 2024 The Author(s)The last few years have seen the massive deployment of electric buses in many existing transit networks. However, the planning and operation of an electric bus system differ from that of a bus system with conventional vehicles, and some key problems have not yet been studied in the literature. In this work, we address the integrated operational control and charging scheduling problem for a network of electric buses with a limited opportunity charging capacity. Operational control is carried out through speed control of the vehicles and bus holding at the terminal. We propose a hierarchical control framework to solve this integrated problem, where the charging and operational decisions are taken jointly by solving a mixed-integer linear program in the high-level control layer. Since this optimization problem might become very large as more bus lines are considered, we propose to apply Lagrangian relaxation in such a way as to exploit the structure of the problem and enable a decomposition into independent subproblems. A local search heuristic is then deployed in order to generate good feasible solutions to the original problem. This entire Lagrangian heuristic procedure is shown to scale much better on transit networks with an increasing number of bus lines than trying to solve the original problem with an off-the-shelf solver. The proposed procedure is then tested in the high-fidelity microscopic traffic environment Vissim on a bus network constructed from an openly available dataset of the city of Chicago. The results show the benefits of combining the charging scheduling decisions with the real-time operational control of the vehicles as the proposed control framework manages to achieve both a better level of service and lower charging costs over control baselines with predetermined charging schedules.
机译:?2024 作者过去几年,电动公交车在许多现有的交通网络中得到了大规模部署。然而,电动公交系统的规划和运行与传统车辆的公交系统不同,一些关键问题尚未在文献中得到研究。在这项工作中,我们解决了机会充电容量有限的电动公交车网络的综合运营控制和充电调度问题。通过对车辆的速度控制和航站楼的公共汽车停放进行运营控制。我们提出了一个分层控制框架来解决这个集成问题,其中充电和运营决策是通过解决高级控制层中的混合整数线性规划来共同做出的。由于这个优化问题可能会随着考虑更多的公交线路而变得非常大,我们建议应用拉格朗日松弛,以利用问题的结构并能够分解为独立的子问题。然后部署本地搜索启发式方法,以便为原始问题生成良好的可行解决方案。事实证明,与尝试使用现成的求解器解决原始问题相比,整个拉格朗日启发式过程在公交线路数量不断增加的公交网络上的扩展性要好得多。然后在由芝加哥市公开数据集构建的公交网络上的高保真微观交通环境 Vissim 中对所提出的程序进行了测试。结果表明,将充电调度决策与车辆的实时操作控制相结合的好处,因为拟议的控制框架在具有预定充电计划的控制基线上实现了更好的服务水平和更低的充电成本。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号