首页> 外文会议>Joint Rail Conference >EVALUATING A CONSTANT-CURRENT LOAD MODEL THROUGH COMPARATIVE TRANSIENT STABILITY CASE-STUDIES OF A SYNCHRONOUS-SYNCHRONOUS ROTARY FREQUENCY CONVERTER-FED RAILWAY
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EVALUATING A CONSTANT-CURRENT LOAD MODEL THROUGH COMPARATIVE TRANSIENT STABILITY CASE-STUDIES OF A SYNCHRONOUS-SYNCHRONOUS ROTARY FREQUENCY CONVERTER-FED RAILWAY

机译:通过对比较瞬态稳定性速度研究评估恒流负荷模型 - 同步旋转变频转换器馈电线

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This paper continues the pursuit of getting a deeper understanding regarding the transient stability of low-frequency AC railway power systems operated at 16% Hz synchronously to the public grid. The focus is set on the impact of different load models. A simple constant-current load model is proposed and compared to a previously proposed and studied load model in which the train's active power is regulated. The study and comparison is made on exactly the same cases as and grid as with the already proposed and more advanced load model. The railway grid is equipped with a low-frequency AC high-voltage transmission line which is subjected to a fault. The study is limited to railways being fed by different distributions of RFC (Rotary Frequency Converter) types. Both AT (auto transformer) and BT (booster transformer) catenaries are considered. The RFC dynamic models are essentially Anderson-Fouad models of two synchronous machines coupled mechanically by their rotors being connected to the same shaft. The differences in load behaviour between the proposed constant-current load model and the previously proposed and studied voltage-dependent active power load model are analyzed and described in the paper.
机译:本文继续追求在与公共网格上同步以16%Hz运行的低频交流铁路电力系统的瞬态稳定性更深入的了解。焦点是在不同负载模型的影响下。提出了一种简单的恒流负载模型,并与先前提出和研究的负载模型进行了比较,其中列车的有效功率受到调节。研究和比较与已经提出的和更先进的负载模型完全相同和网格。铁路网格配备了低频AC高压传输线,遭受故障。该研究仅限于通过RFC(旋转变频器)类型的不同分布供给的铁路。考虑(自动变压器)和BT(助推器变压器)CAT信扩体。 RFC动态模型基本上是Anderson-Fouad型号的两种同步机的型号通过其转子连接到同一轴。在纸张中分析和描述了所提出的恒流负荷模型与先前提出的和研究的电压相关电力负荷模型的负载行为的差异。

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