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Improving the performance of protection schemes in three level IGCT-based neutral point clamped converters

机译:改善基于IGCT的三电平中性点钳位转换器中保护方案的性能

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High power IGCT-based converters are currently used in a wide range of drive applications. The protection of such converters against internal faults has been addressed in the technical literature, but the main focus has been on the solutions to disconnect the converter from the mains. In this paper, the short circuit current paths through the power devices in the three level NPC bridge are identified and studied from the perspective of keeping the overall repair cost, after a fault leading to the shoot-through mode, to a minimum. It is shown in this paper that a preferred short-circuit current path that limits the thermal energy in all IGCTs to safe levels exists. Furthermore, it is demonstrated that it is possible to guarantee, through proper busbar geometry and/or device selection, that the short-circuit current stress can always be moved to the power diodes. Simulation results are presented to support all the discussions and conclusions.
机译:当前,基于IGCT的高功率转换器广泛用于各种驱动器应用中。在技​​术文献中已经解决了这种转换器的内部故障保护,但是主要焦点在于将转换器与主电源断开的解决方案。本文从三级NPC桥中通过功率器件的短路电流路径进行了识别和研究,其目的是将导致导通模式的故障后的总体维修成本保持在最低水平。本文表明,存在一条将所有IGCT中的热能限制在安全水平的首选短路电流路径。此外,已经证明,通过适当的母线几何形状和/或装置选择,可以保证短路电流应力总是可以移动到功率二极管上。给出仿真结果以支持所有讨论和结论。

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