$,times,$ 25-kV 50 Hz traction power system was analyzed and modeled in the time domain in order to simulate short-circuit conditi'/> 2<formula formulatype='inline'><tex Notation='TeX'>$,times,$</tex> </formula>25-kV 50 Hz High-Speed Traction Power System: Short-Circuit Modeling
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2$,times,$ 25-kV 50 Hz High-Speed Traction Power System: Short-Circuit Modeling

机译:2 $,times,$ 25-kV 50 Hz高速牵引电力系统:短路建模

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摘要

A 2$,times,$ 25-kV 50 Hz traction power system was analyzed and modeled in the time domain in order to simulate short-circuit conditions and to attain a practical method to identify the short circuit behavior of the traction system. In particular, due to the difficulty in assessing the track-line parameters which mainly depend on changing environmental conditions, the possibility of neglecting the capacitive parameters was analyzed. A complete model of the 2$,times,$ 25-kV 50 Hz traction power system was developed and validated through comparison with the results of referenced models and experimental tests performed on real systems. Simulations, addressed to reduce the short-circuit modeling complexity, demonstrate that neglecting the capacitive effects between conductors and to ground does not affect the calculation accuracy for standard analyses. The obtained results show that the proposed model can be remarkably useful for the traction system design as well as for investigating the effects of short-circuit conditions on other circuits, such as telecom circuits, power-supply equipment, and signaling track circuits.
机译:在时域中对25kV 50 Hz牵引电力系统进行了2 $,times,$ 的建模和分析,以便模拟短路条件并获得一种实用的方法来识别牵引系统的短路行为。特别是,由于难以评估主要取决于变化的环境条件的轨迹线参数,因此分析了忽略电容参数的可能性。开发了2 $,times,$

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