首页> 外文会议>IEEE International Conference on Dielectrics >End Winding Protections Improvements Helping To Downsize dV/dt Filter For Medium Voltage Machine Fed By NPP Multi-Levels VSI Drive
【24h】

End Winding Protections Improvements Helping To Downsize dV/dt Filter For Medium Voltage Machine Fed By NPP Multi-Levels VSI Drive

机译:结束绕组保护有助于减少NPP多级VSI驱动器供给的中压机器的DV / DT滤波器

获取原文
获取外文期刊封面目录资料

摘要

In recent years, a growth trend is evident in power electronics from Load Commutated Inverter to Voltage Source Inverter drives based on Neutral Point Piloted 5-levels topology up to 15kV using fast switching devices for better efficiency and compactness. However, a dV/dt filter is required to avoid fast insulation degradation of the motor when exposed to rapid rise repetitive impulses voltage from the Drive. Especially in the ending winding region where preeminent electrical stress is localized toward the slot exit with fast rise time of pulsed voltage. For dV/dt above 3kV/us, traditional corona protection method using conventional stress grading tape is no longer sufficient to prevent the surface discharge and excessive heating at the slot exit. Numerical simulation established in multi-physics finite element analysis indicates that electrical stress distribution and power dissipation at the end winding is closely related to the rise time of drive pulses and stress grading materials properties. New corona protection method is developed based on modeling results and validated on real stator bars under fast pulses. This paper will describe the typical dV/dt patterns generated by those multilevels drives impacting the dV/dt filter and the system of insulation of medium voltage machine. It will also discuss the effectiveness of end winding surface discharge prevention by proper stress grading design and materials selection under high stresses of dV/dt.
机译:近年来,从负荷通电逆变器到电压源极逆变器的电力电子器件,基于中性点的电压源电压驱动器,使用快速开关装置可实现更好的效率和紧凑性,电压逆变器逆变器驱动器的增长趋势是最大的5级拓扑。然而,需要DV / DT过滤器以避免在从驱动器中暴露于快速上升重复脉冲电压时电机的快速绝缘劣化。特别是在结束绕组区域中,其中突出的电应力朝向槽出口局部地朝向脉冲电压的快速上升时间朝向槽出口。对于高于3KV / US的DV / DT,使用传统应力分级带的传统电晕保护方法不再足以防止在槽出口处的表面放电和过度加热。在多物理有限元分析中建立的数值模拟表明,端绕组的电应力分布和功率耗散与驱动脉冲和应力分级材料的上升时间密切相关。新的电晕保护方法是基于建模结果开发的,并在快速脉冲下的实际定子条上验证。本文将描述影响DV / DT滤波器的多级驱动器产生的典型DV / DT模式,以及中压机器绝缘系统。它还将通过适当的应力分级设计和材料选择在DV / DT的高应力下讨论端绕组表面放电预防的有效性。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号