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Increase of energy efficiency of electric power distribution networks by adjustment of reactive energy consumption in a traction network

机译:通过调节牵引网络中的无功能耗来提高配电网络的能源效率

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In the past few years, there has been a trend towards an increase in the volume of transportation by railway. At the same time, the load on the railway infrastructure increases, in particular, on the traction power supply system. It is necessary to solve the problem of increasing the energy efficiency of the external electric power supply system in the conditions of growing freight turnover and taking into account the uncertainty of the initial data. The paper considers one of the methods of strengthening the traction power supply system. Based on the results of the study, an algorithm was developed for selecting the installation sites and power of compensating devices in a traction network in the conditions of increasing freight turnover and under the condition of increasing the energy efficiency of the external power supply system of traction substations due to unloading of supply lines by reactive power and leveling the load in phases. This methodology includes predicting power consumption, determining the installation sites and power of compensating devices in the traction network under condition of uncertainty of the initial data, and then assessing the energy efficiency of the decision made. A calculation was carried out for the proposed algorithm for a section of the Far Eastern Railway which includes nine traction substations.
机译:在过去的几年中,存在铁路运输量增加的趋势。同时,铁路基础设施上的负荷特别是牵引供电系统上的负荷增加。有必要在货运周转量增加的情况下并考虑初始数据的不确定性来解决增加外部供电系统的能源效率的问题。本文考虑了一种加强牵引供电系统的方法。根据研究结果,开发了一种算法,用于在增加货运周转率和提高外部牵引电源系统能效的条件下,选择牵引网络中补偿装置的安装地点和功率。变电站,这是由于无功功率使供电线路卸载并分阶段均衡负载所致。该方法包括预测功耗,在初始数据不确定的情况下确定牵引网络中补偿装置的安装地点和功率,然后评估决策的能源效率。针对包括9个牵引变电所的远东铁路段的建议算法进行了计算。

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