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Studies on asymmetrical short circuit currents in shipboard medium voltage direct current distribution systems fed by AC generators

机译:交流发电机送料船板中电压直流分配系统的非对称短路电流研究

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DC distribution is a promising technology for addressing incoming issues in AC conventional distribution. In marine power systems, given the high power requirements of electric propelled vessels, Medium Voltage DC (MVDC) distribution is on study. Among all the relevant issues of DC distribution, short circuit currents definition and interruption is the most problematic now. Rail-to-rail faults are commonly studied, and models and methods to address their calculation are present in literature. Conversely, rail-to-ground faults are more complex to assess. Indeed, their fault loop include also AC generation systems, so their grounding configuration must be considered. Moreover, rail-to-ground faults produce currents that can be non-symmetrical and non-sinusoidal on AC side, depending on DC side grounding configuration, rendering unsuitable common system models and methods to assess fault currents. In this paper, a study on fault currents in a shipboard power system with different DC side grounding configurations has been done, highlighting when the resulting currents are symmetrical or not. Considerations about practical applicability of proposed configurations has been also done, pointing out pros and cons and defining the most recommendable practices.
机译:直流分布是一个有希望的技术,用于解决交流常规分布中的传入问题。在海洋电力系统中,考虑到电动推进血管的高功率要求,中压DC(MVDC)分布正在研究。在DC分布的所有相关问题中,短路电流定义和中断现在是最有问题的。轨到轨故障通常研究,以及解决其计算的模型和方法存在于文献中。相反,轨道接地故障更复杂。实际上,它们的故障循环也包括交流发电系统,因此必须考虑其接地配置。此外,轨道接地故障产生可以在AC侧的非对称和非正弦的电流,这取决于直流侧接地配置,渲染不合适的共同系统模型和方法来评估故障电流。在本文中,已经完成了具有不同DC侧配置的船上电力系统中的故障电流研究,当所得的电流对称时突出显示。关于建议配置的实际适用性的介绍也已经完成,指出利弊并定义最重要的实践。

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