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Hybrid Two/Three Level Converter using SiC MOSFETs and Si IGBTs with Topology Reconfiguration for Improved Full Load Range Efficiency

机译:混合动力两个/三级转换器使用SiC MOSFET和SI IGBT具有拓扑重新配置,以提高全负载范围效率

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This paper explores the use of a hybrid level-matching converter (HLMC) for improved full range efficiency in high power MW applications. It is shown that a parallel hybrid converter comprised of a parallel connected SiC based three-level Neutral Point Clamped (NPC) topology using 1.7 kV devices and a Si based two-level Half Bridge (HB) topology using 3.3 kV devices can be used to minimize losses across a wide operating range. This is achieved by means of a model predictive control algorithm which selects switching states to exploit the lowest available conduction loss paths and switching loss transitions. Full load range efficiency of the HLMC is compared to those of three phase HB and NPC converters to verify the efficiency improvement of the HLMC in the application of grid side energy conversion.
机译:本文探讨了混合水平匹配转换器(HLMC)的使用,以提高高功率MW应用中的全系列效率。结果表明,使用基于1.7kV器件的并联连接的SiC的三级中性点钳位(NPC)拓扑和使用3.3kV器件的基于Si的两级半桥(HB)拓扑,可以使用并行混合动力转换器。最大限度地减少宽操作范围的损失。这是通过模型预测控制算法实现的,该模型预测控制算法选择切换状态以利用最低可用的传导损耗路径和开关损耗转换。将HLMC的全负载范围效率与三相HB和NPC转换器相比,以验证HLMC在应用网格侧能量转换时的效率提高。

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