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Taking into Account Electrical Connection between Traction Substations in Calculation of Electrified-Railroad Capacity

机译:在计算电气化铁路容量时要考虑到牵引变电站之间的电气连接

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摘要

One of the main parameters determining railway efficiency is capacity. The main volumes of transportation of goods and passengers on the railways of Russia and most other countries are carried out along electrified sections. The traction power-supply system (TPSS) of electrified railways that provides the energy for transportation is at the same time an element limiting train handling through the sections. Thus, there is an urgent task to evaluate the railroad capacity in terms of energy supply, followed by the development of measures improving bottlenecks in the power-supply system. The paper presents the results of a study on improving a capacity calculation model of the electrified railways. An analysis of the "accuracy of calculation-railroad capacity" dependence and the electrical connection between traction substations is carried out. A traction power-supply system model of greater accuracy is developed through a procedure of model-result verification. Diagrams explaining the presence of electrical connection are presented. Electrical connection of both dc and ac adjacent traction substations is provided by means of activated sectional switchers of the overhead system and section switchboxes of the corresponding intersubstation zone. The developed traction power-supply model makes it possible to improve the accuracy of calculating the capacity of electrified railways.
机译:决定铁路效率的主要参数之一是通行能力。俄罗斯和大多数其他国家/地区的铁路上货物和乘客的主要运输量是在电气化部分完成的。电气化铁路的牵引供电系统(TPSS)提供运输能量,同时也是限制列车通过这些路段的要素。因此,迫切需要根据能源供应来评估铁路运力,然后开发出改善电源系统瓶颈的措施。本文提出了改进电气化铁路通行能力计算模型的研究结果。对“计算铁路容量的准确性”依赖性和牵引变电站之间的电气连接进行了分析。通过模型结果验证的过程,开发出了一种精度更高的牵引电源系统模型。给出了解释电连接的示意图。直流和交流相邻牵引式变电站的电气连接通过高架系统的已激活分区开关和相应变电站间区域的分区开关箱提供。开发的牵引电源模型可以提高计算电气化铁路容量的准确性。

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