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System of Traction AC Power Supply with Catenary Supports Not Connected with a Railway Track

机译:悬链线不与铁轨相连的牵引式交流电源系统

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摘要

A system of traction ac power supply is suggested. It is revealed that grounding the supports of group grounding cables is the most promising way of providing reliable operation of existing types of distance protective systems. The probabilistic characteristics of the voltages at the catenary supports are determined taking into account the random character of parameters determining the voltage levels at the supports upon short circuits in the traction network. The mathematical expectation of the number of dangerous situations over a 100-km piece of line is calculated when using a railway track to ground supports and when using the proposed system of grounding catenary supports. It is revealed that the number of dangerous situations when grounding of the catenary supports is not done does not exceed the corresponding value over electrified piece of lines where a railway track is used to ground the supports. It was established that, when the value of resistance of the group-grounding-cable–support system is less than 7.5 Ω, the operation of traction power supply during thunderstorms is no worse than with a traction network when a railway track is used to support grounding.
机译:建议使用牵引交流电源系统。结果表明,将组接地电缆的支架接地是提供可靠的现有距离保护系统类型的最有希望的方法。考虑到牵引网络中的短路时确定支撑件上的电压水平的参数的随机特性,确定悬链支撑件上的电压的概率特性。当使用铁路轨道到地面支撑物以及使用建议的接地悬链线支撑系统时,可以计算出在100公里线路上危险情况数量的数学期望。结果表明,未将接触网支架接地的危险情况的数量不超过使用铁轨将支架接地的电气化线路的相应值。可以确定的是,当组接地电缆支撑系统的电阻值小于7.5Ω时,在雷暴天气中,牵引电源的运行不会比使用铁路轨道支撑时的牵引网络更差。接地。

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