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Thermal Performance Analysis of 10kV IGCT Based Three Level ANPC Converter in 7MW PMSG MV Wind Turbines

机译:基于10kV IGCT的三电平ANPC变换器在7MW PMSG中压风机中的热性能分析。

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The choice of power converter is driven by many parameters most commonly by higher efficiency. Over the years several topologies have been developed and made available commercially. The three level(3L) neutral point clamped (NPC) topology is widely accepted as a high-power wind energy grid interface due to its improved switching losses, harmonic distortion and common mode voltage/current. However, to address one of the major shortfalls of the NPC topology - the uneven junction temperature distribution - the active neutral point clamped (ANPC) topology, where the clamping diodes are replaced by bidirectional switches, was derived from the NPC topology. With the use of the correct switching model, the thermal distribution amongst the semiconductor devices can be modified and adjusted in the ANPC topology. In this paper comparative analysis of different switching strategies is conducted to understand their effect on the thermal performance of the recently developed 10 kV IGCT in a 3L ANPC converter under the given operating conditions of 7 MW-class PMSG wind turbines. The analysis is confirmed through PLECS simulations.
机译:功率转换器的选择受许多参数的驱动,最常见的是效率更高。多年以来,已经开发了几种拓扑,并已在商业上提供。三电平(3L)中性点钳位(NPC)拓扑由于其改善的开关损耗,谐波失真和共模电压/电流而被公认为是高功率风能网格接口。但是,为解决NPC拓扑的主要缺陷之一-结温分布不均匀-从NPC拓扑派生了有源中性点钳位(ANPC)拓扑,其中钳位二极管被双向开关替代。通过使用正确的开关模型,可以在ANPC拓扑中修改和调整半导体器件之间的热分布。在本文中,对不同的切换策略进行了比较分析,以了解它们在给定的7 MW级PMSG风力发电机运行条件下,对3L ANPC转换器中最新开发的10 kV IGCT的热性能的影响。该分析通过PLECS仿真得到证实。

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