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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Pantograph-to-OHL Arc: Conducted Effects in DC Railway Supply System
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Pantograph-to-OHL Arc: Conducted Effects in DC Railway Supply System

机译:受电弓到OHL弧:直流铁路供电系统中的传导效应

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摘要

The electrical arc occurring in the sliding contact between the supply contact line and the current collector (pantograph) of an electrical locomotive is a fast transient phenomenon able to degrade progressively the line-to-pantograph contact quality and, consequently, the continuity of operation. In order to increase the energy efficiency of the railway system, an inexpensive solution is constituted by the detection of the arc event by the analysis of voltage and current measurements already available on-board train. An essential activity to reach this objective is to set up a reliable electrical model of the railway system in which the arc events originate. To this end, this paper presents a combination of experimental and simulation analysis for the development of an electrical model of a direct current (dc) 3 kV railway system, which is aimed at better understanding the propagation of conducted effects generated by arc events. First, a laboratory experimental activity is carried out to investigate the electrical dynamic characteristics of the arc in a controlled environment. Then, a model of the dc railway system is derived and validated by using the experimental data collected in a measurement campaign on-board train. Finally, a sensitivity analysis of the main model parameters is carried out.
机译:在电力机车的电源接触线和集电器(受电弓)之间的滑动接触中产生的电弧是一种快速的瞬态现象,能够逐渐降低线对受电弓的接触质量,从而降低运行的连续性。为了提高铁路系统的能效,通过对已经存在于火车上的电压和电流测量值的分析来检测电弧事件,从而构成了一种廉价的解决方案。要实现此目标的一项基本活动是建立起电弧事件起源的铁路系统的可靠电气模型。为此,本文提出了实验和仿真分析相结合的方法,用于开发直流3 kV铁路系统的电气模型,其目的是更好地理解电弧事件产生的传导效应的传播。首先,进行实验室实验活动以研究受控环境中电弧的电动力学特性。然后,通过使用在测量战役车载火车上收集的实验数据,导出并验证直流铁路系统的模型。最后,对主要模型参数进行了敏感性分析。

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