Electrification Israel Railroads: Network Frequency Instability and Challenges of Distribution Voltage Control

I. Goldshtein, M. Averbukh
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引用次数: 1

Abstract

Electrification of Israel railroads is a successful project being realized during present time. Among the well-known advantages of electric train exploitation are high energetic efficiency, regenerative breaking, diminished pollution, flexibility of traffic control and improved transportation dynamics. However, the use of electric train is accompanied with some specific hurdles caused by significantly stochastic power flows. While in transit between stations an electric train has different phases of movement, during some consuming energy, but from time to time throughout braking processes they become generators transmitting energy back into the electric grid. This circumstance may produce voltage instability in distribution lines, which should be kept inside permissible limits to allow normal operation of electric equipment. Tap-changers on distribution transformers considered for a voltage regulation have sluggish response of ~7-8 sec. Therefore, fast changes of power stream can cause significant voltage deviations. If the voltage overcome explicit allowable level a trigger of a protection system is engendered disconnecting vehicles from a grid. The last causes extremely dangerous detriments and should be maximally prevented.Rapid and considerable changes in train power consumption, in addition may cause network frequency instability which in turn can violate electricity supply.Present article provides an original examination of the future stability of network frequency and distribution voltage which may be assumed when 420 km of Israel railroads will be electrified in the following 5–10 years. For such study special algorithm based on simulation approach was developed and applied. Predicting scenarios for frequency and distribution lines voltage control are represented below in the following text.
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以色列铁路电气化:网络频率的不稳定性和配电电压控制的挑战
以色列铁路电气化是目前正在实现的一个成功项目。众所周知,电动列车开发的优点是高能量效率、再生制动、减少污染、交通控制的灵活性和改善运输动力学。然而,电力列车的使用伴随着一些特殊的障碍,这些障碍是由显著的随机潮流引起的。在车站之间的运输中,电动火车有不同的运动阶段,在一些消耗能量的过程中,但在整个制动过程中,它们不时地成为发电机,将能量传回电网。这种情况可能导致配电线路电压不稳定,应将其控制在允许的范围内,以保证电气设备的正常运行。用于电压调节的配电变压器分接开关响应缓慢,约为7-8秒。因此,潮流的快速变化会导致显著的电压偏差。如果电压超过明确的允许电平,则产生保护系统的触发器,断开车辆与电网的连接。最后一种会造成极其危险的危害,应该最大限度地加以防止。列车用电量的迅速而巨大的变化,还可能引起电网频率的不稳定,进而影响电力供应。本文对未来电网频率和配电电压的稳定性进行了初步研究,这可能是在未来5-10年内以色列420公里铁路将电气化的假设。为此,开发并应用了基于仿真方法的特殊算法。频率和配电线路电压控制的预测方案如下文所示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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