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A high efficiency 5.3kW Current Source Inverter (CSI) prototype using 1.2kV Silicon Carbide (SiC) bi-directional voltage switches in hard switching

机译:使用1.2kV碳化硅(SiC)双向电压开关进行硬开关的高效5.3kW电流源逆变器(CSI)原型

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The market brings Silicon Carbide (SiC) transistors and diodes in the 1.2kV range, which can be implemented in solar switching power converters operating under AC-400V. In the scientific literature, SiC switches have been evaluated for a voltage source inverter operation, but there is a lack of studies that address the implementation of SiC components running in a current source inverter (CSI). Characterizations of a voltage commutation cell against the commutated voltage have been discussed in the last paper presented at PCIM 2015. This article is based in the following of the previous one and treats mainly of the characterization of the serial association of a transistor and a diode required for CSI operation. A test bench is developed at the Department of Solar Technologies (DTS) of the CEA. It allows to characterize SiC power semi-conductor TO-220/247 packaged operating in a current source inverter. Switching energies are measured and presented. Once the characterization results obtained, the loss coefficients are extracted and electro-thermal calculations of efficiencies against the switching frequency are finally given and discussed.
机译:市场上出现了1.2kV范围内的碳化硅(SiC)晶体管和二极管,可以在AC-400V下工作的太阳能开关电源转换器中实现。在科学文献中,已经对SiC开关用于电压源逆变器的操作进行了评估,但是缺乏研究来解决在电流源逆变器(CSI)中运行的SiC组件的实现。在PCIM 2015上发表的最后一篇论文中讨论了电压换向单元相对于换向电压的特性。本文基于前一篇文章的以下内容,主要论述了晶体管和二极管所需的串联关联的特性用于CSI操作。 CEA的太阳能技术部(DTS)开发了一个测试台。它可以表征在电流源逆变器中工作的SiC功率半导体TO-220 / 247封装。测量并显示开关能量。一旦获得了表征结果,就将提取损耗系数,并最终给出并讨论针对开关频率的电热效率计算。

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