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Comparative Analysis of Silicon Carbide and Silicon Switching Devices for Multilevel Cascaded H-Bridge Inverter Application with Battery Energy storage

机译:储能多级串接H桥逆变器中碳化硅和硅开关器件的比较分析

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This paper investigates the use of power semiconductor devices in a nine - level cascaded B-bridge (CHB) multilevel inverter topology with an integrated battery energy storage system (BESS) for a 13.8kV medium voltage distribution system. In this topology, the bulky conventional step-up 60 Hz transformer is not used. The purpose of this study is to analyze the use of SiC MOSFET and Si IGBT devices in the inverter system to evaluate their respective performances. SiC MOSFET and Si IGBT switching devices are modeled and characterized using Saber® modeling software. The switching losses, thermal performance, and efficiency of the inverter system are investigated, and measurements are obtained from the simulation. Saber® provides a good capability for characterizing semiconductor models in the real world, with great features of computation. A three-phase SiC power MOSFET-based multilevel CHB inverter prototype is presented for experimental verification. In the investigation, better performances of SiC MOSFET devices are recorded. SiC devices demonstrate promising performance at different switching frequency and temperature ranges.
机译:本文研究了功率半导体器件在具有13.8kV中压配电系统的集成电池储能系统(BESS)的九级级联B桥(CHB)多级逆变器拓扑中的使用。在这种拓扑中,不使用笨重的常规升压60 Hz变压器。本研究的目的是分析逆变器系统中SiC MOSFET和Si IGBT器件的使用,以评估它们各自的性能。使用Saber®建模软件对SiC MOSFET和Si IGBT开关器件进行了建模和表征。研究了逆变器系统的开关损耗,热性能和效率,并通过仿真获得了测量结果。 Saber®具有强大的计算功能,可以在现实世界中表征半导体模型。提出了一种基于三相SiC功率MOSFET的多电平CHB逆变器原型,用于实验验证。在调查中,记录了SiC MOSFET器件的更好性能。 SiC器件在不同的开关频率和温度范围内表现出令人鼓舞的性能。

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