同步发电机经6脉冲二极管整流器供电的直流车载配电系统的暂态短路分析

A. Vicenzutti, E. De Din, G. Sulligoi
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引用次数: 7

摘要

电力电子技术的最新进展使建立大功率直流配电系统成为可能。它们的采用有望在电能质量和能量存储系统和电子驱动器的集成方面带来新的解决方案。对船舶或铁路运输等大功率机载应用的兴趣日益增加,导致电压水平上升,进而导致短路电流增加;因此,必须进行仔细的评估来设计系统保护。此外,在车载电力系统中,与电网的连续连接是不可行的(除非在极少数情况下,如火车),因此发电通常使用整流同步发电机。由于没有恒压无限功率母线,使得短路电流计算变得复杂,因此有必要考虑发电机在短路瞬态时的内部动态。本文提出了两种评估直流短路电流的方法。首先通过与IEC 61660-1标准的比较,然后在恒定电源电压假设下使用电路模型的时域仿真进行了双重验证。然后,考虑同步发电机电源,评估其内部动力学对直流短路电流的影响。提出了适当的案例研究,以显示所提出的方法之间的差异。
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Transient short circuit analysis in DC on-board distribution systems fed by synchronous generators through 6-pulse diode rectifiers
Recent advancements in power electronics are making it feasible to build high power DC distribution systems. Their adoption is expected to bring new solutions in terms of Power Quality and integration of energy storage systems and electronic drives on board. The increasing interest in high-power onboard applications, such as in ships or railway transportation, led to the rise in voltage levels, which in turn caused an increase in short-circuit currents; therefore, a careful assessment has to be done to design system protections. Moreover, in onboard power systems, a continuous connection to the grid is not feasible (except in rare cases, such as trains), so power generation is usually made using rectified synchronous generators. The absence of a constant-voltage infinite-power bus complicates short-circuit currents calculation, making necessary to consider generators internal dynamics during short circuit transients. In this paper two different approaches to evaluate DC short circuit currents are proposed. A dual validation is done, through a first comparison with IEC 61660-1 Standard and then using time-domain simulation of a circuit model, under the constant supply voltage hypothesis. Then, the synchronous generator supply is considered, and its internal dynamics impact on DC short-circuit currents is assessed. Proper case studies are presented, to show the differences between the proposed approaches.
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