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Monitoring a DC Train Supplied by a Reversible Substation

机译:监控可逆变电站提供的直流列车

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European energy policy has been supporting a gradual shift towards an efficient energy management in order to reduce the railway transport emissions by 50% within 2030. One of the most promising solutions to reduce emissions is the recovery of braking energy: it is possible to convert kinetic energy back to the electrical form and reinject it back to the grid. Currently, because of the unidirectional nature of the substation, the receptivity of the supply network is limited and only a small part of the traction energy is sent back to the catenary. The remaining part is usually wasted on the train braking rheostats. In this scenario, new installations of reversible substations in DC railway systems, can improve energy savings. In this paper, in order to evaluate the impact of this innovative technology, a preliminary analysis of the data acquired during a measurement campaign conducted jointly with Metro de Madrid (train and substation owner) and HitachiRail (train manufacturer) is presented. Energy exchanged between train and supply line and real-time power quality events survey can be valuable tools to make an estimation of the impact of the reversible substation.
机译:欧洲能源政策一直在支持高效的能源管理逐步转变,以便在2030年内减少50%的铁路运输排放。最有希望的减少排放解决方案是制动能量的回收:可以转换动力学能量回到电气形状并将其重新加热回电网。目前,由于变电站的单向性质,供应网络的接受是有限的,并且仅将牵引能量的一小部分送回衔接。剩下的部分通常浪费在火车制动变压镜上。在这种情况下,DC铁路系统中可逆变电站的新安装,可以提高节能。在本文中,为了评估这种创新技术的影响,提出了与Metro de Madrid(火车和变电站所有者)和Hitachirail(火车制造商)共同进行的测量活动中获得的数据的初步分析。在火车和供应线之间交换的能量和实时功率质量事件调查可能是有价值的工具,以估计可逆变电站的影响。

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