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Optimal Charging Scheduling for Catenary-Free Trams in Public Transportation Systems

机译:公共交通系统中无接链电车的最优充电调度

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摘要

Catenary-free tram with supercapacitor for short-distance travel is an emerging and energy-efficient way of urban transportation. However, a large number of decentralized and high-power charging loads from Catenary-free trams bring new challenges to the power system. In addition, frequent and high-voltage charging may result in a shorter lifetime of the supercapacitor. Thus, how to coordinate the charging processes of Catenary-free trams considering the power system constraint and the operation costs of the transportation system is an important open issue, especially as the charging requirements are time-varying. In this paper, we design a charging scheduling system to manage the charging processes of Catenary-free trams. Then, based on the historical and estimated operation data of Catenary-free trams, we propose a day-ahead optimal charging scheduling scheme to arrange their charging processes and report to the power system on the upper bound of the charging loads. Thereafter, we propose a real-time optimal charging scheduling scheme according to the real-time operation information to update the real-time charging loads of Catenary-free trams, such that a trade-off among the electricity cost, operation reliability, and battery lifetime is made to minimize the total operation costs. Finally, simulations have been conducted to evaluate the performance of the proposed charging scheduling schemes and show that the proposed algorithms can reduce the total operation cost by about 28%.
机译:带有超级电容器的无接触线电车可用于短途旅行,是一种新兴且节能的城市交通方式。但是,来自无链的电车的大量分散式和大功率充电负载给电力系统带来了新的挑战。另外,频繁的高压充电可能导致超级电容器的寿命缩短。因此,考虑到电力系统的约束和运输系统的运营成本,如何协调无接触网电车的充电过程是一个重要的未决问题,尤其是在充电要求随时间变化的情况下。在本文中,我们设计了一种充电调度系统来管理无悬链电车的充电过程。然后,基于无链电车的历史和估计运行数据,我们提出了提前一天的最佳充电调度方案,以安排其充电过程并在充电负荷的上限向电力系统报告。此后,我们根据实时运行信息提出了一种实时最优充电调度方案,以更新无接触线电车的实时充电负荷,从而在电费,运行可靠性和电池之间进行权衡使用寿命可以最大程度地降低总运营成本。最后,进行了仿真以评估所提出的充电调度方案的性能,并表明所提出的算法可以将总运营成本降低约28%。

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  • 来源
    《Smart Grid, IEEE Transactions on》 |2019年第1期|227-237|共11页
  • 作者单位

    State Key Laboratory of Industrial Control Technology and Innovation Joint Research Center for Industrial Cyber Physical Systems, Zhejiang University, Hangzhou, Canada;

    Department of Electrical and Computer Engineering, University of Victoria, Victoria, BC, Canada;

    Department of Computer Science, University of Victoria, Victoria, BC, Canada;

    Department of Electrical and Computer Engineering, University of Victoria, Victoria, BC, Canada;

    Department of Computer Science, University of Victoria, Victoria, BC, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Supercapacitors; Real-time systems; Upper bound; Scheduling; Reliability; Power system reliability;

    机译:超级电容器;实时系统;上限;调度;可靠性;电力系统可靠性;

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