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Loss Comparison between SiC, Hybrid Si/SiC, and Si Devices in Direct AC/AC Converters

机译:直接交流/交流转换器中SIC,Hybrid Si / SiC和SI器件之间的损失比较

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Direct AC/AC topologies for AC-to-AC power conversion benefit from the absence of DC-link capacitors and therefore high reliability as compared to traditional VSI-based topologies. Moreover, it is shown in this paper that the direct AC/AC converters also promise to provide higher efficiency than their voltage source inverter (VSI) based back-to-back (BTB) counterparts due to a dramatic reduction in switching losses. These factors allow the direct AC/AC converter to switch faster, and maintain much smaller size and lower cost relative to their competition. This paper compares the performance of three different device types (SiC, hybrid Si/SiC and Si) for use in a direct AC/AC converter. It is conjectured that traditional datasheets lack the level of detail needed for designing highly efficient direct AC/AC converters. Therefore, comprehensive loss models for all the devices are formed through a rigorous device characterization under varying (V, I, T) operating conditions. Finally, a loss comparison is performed to identify the most suitable device (among those characterized) for a specific 13 kV / 1 MW highly efficient direct AC/AC power flow controller.
机译:直接交流/交流拓扑,用于交流电源转换的缺失,与传统的VSI拓扑相比,没有直流链路电容器,因此高可靠性。此外,在本文中示出了直接AC / AC转换器还承诺由于切换损耗的显着降低,基于其电压源逆变器(VSI)的背对背(BTB)对应物提供更高的效率。这些因素允许直接交流/交流转换器更快地切换,并保持更小的尺寸和相对于竞争的成本更低。本文比较了三种不同的设备类型(SIC,Hybrid Si / SiC和Si)的性能,用于直接交流/交流转换器。据推测,传统的数据表缺乏设计高效直接交流/交流转换器所需的细节水平。因此,通过改变(V,I,T)操作条件下的严格装置表征来形成所有器件的综合损失模型。最后,进行损耗比较以识别特定13kV / 1MW高效直接AC / AC电流控制器的最合适的设备(所表征的那些)。

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