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Partial Discharges in Low Voltage Switchgears at Elevated Temperatures

机译:高温下低压开关柜中的部分放电

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Usually, the focus of investigations on low-voltage switchgear lies on contact and switching behaviors. Due to increasing power densities, optimization in design or shared operation in frequency converter application (such as in multi- motor applications), switching devices are submitted to increased thermal and / or electrical stress. For certain conditions, the effect of partial discharges, which is well-known for high-voltage applications and components, already occurs at operating voltages in the low-voltage range. Hence, the focus lies also on polymeric materials for dimensioning switching devices.In order to localize potential sources of field enhancements and partial discharges, the focus lies on numerical field strength calculations by means of the entire conductor path geometry in switching devices. To consider the PD behavior on main contacts during a closing switching operation, analytical field strength calculations are done by means of the Schwaiger factor. Finally, measurement results of three selected low-voltage switchgears are presented to evaluate the PD phenomenon at 1 kV and 150 °C.
机译:通常,对低压开关设备的研究重点在于接触和开关行为。由于功率密度的增加,变频器应用(例如多电机应用)中设计的优化或共享操作的优化,使开关设备承受了更大的热应力和/或电应力。对于某些条件,在低压范围内的工作电压下已经发生了局部放电的影响,这对于高压应用和组件是众所周知的。因此,焦点也集中在用于确定开关装置尺寸的聚合物材料上。为了定位潜在的场增强和局部放电源,焦点在于借助开关装置中整个导体路径的几何形状计算数值场强。为了考虑闭合开关操作期间主触点上的PD行为,借助于Schwaiger因子进行了分析场强计算。最后,给出了三种选择的低压开关柜的测量结果,以评估在1 kV和150°C时的局部放电现象。

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