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Energy storage systems to exploit regenerative braking in DC railway systems: Different approaches to improve efficiency of modern high-speed trains

机译:利用直流铁路系统中再生制动的储能系统:提高现代高速列车效率的不同方法

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摘要

The growing attention to environmental sustainability of transport systems made necessary to investigate the possibility of energy optimization even in sectors typically characterised by an already high level of sustainability, as in particular the railway system. One of the most promising opportunity is the optimization of the braking energy recovery, which has been already considered in tramway systems, while it is traditionally overlooked for high-speed railway systems. In this research work, the authors have developed two simulation models able to reproduce the behavior of high-speed trains when entering in a railway node, and to analyze the impact of regenerative braking in DC railway systems, including usage of energy storage systems. These models, developed respectively in the Matlab-Simscape environment and in the open source Modelica language, have been experimentally validated considering an Italian high-speed train. After validation, the authors have performed a feasibility analysis considering the use of stationary and on-board storage systems, also by taking into account capital costs of the investment and annual energy saving, to evaluate cost-effectiveness of the different solutions. The analysis has shown the possibility to improve the efficiency of high-speed railway systems, by improving braking energy recovery through the installation of such storage systems.
机译:对运输系统的环境可持续性的日益关注使得有必要调查能源优化的可能性,即使在通常以可持续性已经很高水平为特征的行业中,尤其是铁路系统。最有希望的机会之一是优化制动能量回收,这已在有轨电车系统中得到了考虑,而传统上它在高速铁路系统中却被忽略。在这项研究工作中,作者开发了两个仿真模型,它们能够重现高速列车进入铁路节点时的行为,并能够分析再生制动在直流铁路系统中的影响,包括储能系统的使用。这些模型分别在Matlab-Simscape环境和开源Modelica语言中开发,已经考虑了意大利高速列车的实验验证。经过验证后,作者考虑了固定和车载存储系统的使用情况,进行了可行性分析,同时还考虑了投资的资本成本和年度节能,以评估不同解决方案的成本效益。分析表明,有可能通过安装这种存储系统来提高制动能量的回收率,从而提高高速铁路系统的效率。

著录项

  • 来源
    《Journal of Energy Storage》 |2018年第4期|269-279|共11页
  • 作者单位

    Department of Energy, Systems, Territory and Constructions Engineering (DESTEC) University of Pisa;

    Department of Energy, Systems, Territory and Constructions Engineering (DESTEC) University of Pisa;

    Department of Industrial Engineering (DIEF), University of Florence;

    Department of Industrial Engineering (DIEF), University of Florence;

    Department of Industrial Engineering (DIEF), University of Florence;

    Italcertifer S.p.A;

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

    Energy recovery; Railway; Storage; Lithium battery; Supercapacitor;

    机译:能量回收;铁路;存储;锂电池;超级电容器;

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