首页> 外文期刊>IEEE Transactions on Power Electronics >Commutation Behavior Analysis of a Dual 3L-ANPC-VSC Phase-Leg PEBB Using 4.5-kV and 1.5-kA HV-IGBT Modules
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Commutation Behavior Analysis of a Dual 3L-ANPC-VSC Phase-Leg PEBB Using 4.5-kV and 1.5-kA HV-IGBT Modules

机译:使用4.5kV和1.5kA HV-IGBT模块的双3L-ANPC-VSC相腿PEBB的换相行为分析

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Three-level neutral-point clamped voltage source converter (3L-NPC-VSC) is widely used in high-power and medium-voltage (MV) applications and the most used multilevel VSC topology. 3L-Active-NPC-VSC (3L-ANPC-VSC) was introduced to overcome the unequal losses distribution as main structural drawback of the 3L-NPC-VSC. During the switching event of semiconductor devices, the stray inductance takes a special role in the commutation path of the switching current. Mutual coupling inductance between the components participating in the commutation path has to be considered for a theoretical assessment of the total stray inductance of each commutation path. Besides, the measurement of the commutation path stray inductance has to be carried out during the turn-onof the semiconductor device, instead of during the turn-off, to consider the reverse blocking voltage of the opposite switching semiconductor device. This paper shows how a dual 3L-ANPC-VSC phase-leg has been carefully designed and assembled to build a ±10 MVAr five-level VSC for MV-static synchronous compensator applications. The minimization of the stray inductance, the equalization of the total switching power losses for all commutation paths and power density maximization with snubberless operation are within the main technical design requisites. On the basis of the theoretical analysis, the stray inductance of all the commutation paths has been extracted, considering mutual coupling effect, by means of three-dimensional finite-element-analysis simulations. Once the design concept is theoretically validated, the estimated values have been compared with the experimental results obtained from the performance of double-pulse tests for each commutation path. This paper presents, for the first time, all the analysis details of the 3L-ANPC-VSC commutation behavior using 4.5-kV and 1.5-kA trench high-voltage insulated-gate bipolar transistor modules.
机译:三电平中性点钳位电压源转换器(3L-NPC-VSC)广泛用于高功率和中压(MV)应用以及最常用的多电平VSC拓扑。引入了3L-Active-NPC-VSC(3L-ANPC-VSC),以克服作为3L-NPC-VSC的主要结构缺陷的不均等的损耗分布。在半导体器件发生开关事件期间,杂散电感在开关电流的换向路径中起特殊作用。为了对每个换向路径的总杂散电感进行理论评估,必须考虑参与换向路径的组件之间的互耦电感。此外,换向路径杂散电感的测量必须在转弯期间执行。 n 位于半导体设备的 n上,而不是在转弯时 n 关闭 n,以考虑相反的开关半导体器件。本文展示了如何精心设计和组装双3L-ANPC-VSC相脚,以构建用于MV静态同步补偿器应用的±10 MVAr五级VSC。杂散电感的最小化,所有换向路径的总开关功率损耗的均等化以及无缓冲工作的功率密度最大化均在主要技术设计要求之内。在理论分析的基础上,考虑了互耦效应,通过三维有限元分析仿真,提取了所有换向路径的杂散电感。设计概念在理论上得到验证之后,将估计值与从每个换向路径的双脉冲测试性能获得的实验结果进行比较。本文首次介绍了使用4.5kV和1.5kA沟槽高压绝缘栅双极晶体管模块的3L-ANPC-VSC换向行为的所有分析细节。

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