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Electrical insulation of high voltage inductor with co-axial electrode at floating voltage

机译:带有同轴电极的高压电感器在浮动电压下的电绝缘

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摘要

Inductive fault current limiters (FCLs) have several advantages, such as significant current limitation, immediate triggering and relatively low losses. Despite these advantages, saturated core FCLs have not been commercialized due to its large size and associated high costs. A major remaining challenge is to reduce the footprint of the device. In this paper, a solution to reduce the overall footprint is proposed and discussed. In arrangements of windings on a core in reactors such as FCLs, the core is conventionally grounded. The electrical insulation distance between high voltage winding and core can be reduced if the core is left at floating potential. This paper shows the results of the investigation carried out on the insulation of such a coil-core assembly. Two experiments were conducted. In the first, the behavior of the apparatus under high voltage conditions was assessed by performing power frequency and lightning impulse tests. In the second experiment, a low voltage test was conducted during which voltages of different frequencies and pulses with varying rise times were applied. A finite element simulation was also carried out for comparison and further investigation.
机译:电感式故障电流限制器(FCL)具有多个优点,例如,明显的电流限制,立即触发和相对较低的损耗。尽管具有这些优点,但是由于其大尺寸和相关的高成本,饱和的芯FCL尚未商业化。剩下的主要挑战是减少设备的占地面积。在本文中,提出并讨论了一种减少总占地面积的解决方案。在诸如FCL之类的电抗器中的铁芯上的绕组布置中,铁芯通常接地。如果磁芯处于浮动电位,则可以减小高压绕组与磁芯之间的电气绝缘距离。本文显示了对这种线圈芯组件的绝缘进行调查的结果。进行了两个实验。首先,通过执行电源频率和雷电冲击测试来评估设备在高压条件下的性能。在第二个实验中,进行了低压测试,在此期间施加了不同频率的电压和具有不同上升时间的脉冲。还进行了有限元模拟,以进行比较和进一步研究。

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