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A design optimisation tool for maximising the power density of 3-phase DC-AC converters using silicon carbide (SiC) devices

机译:一种设计优化工具,用于使用碳化硅(SiC)器件最大化三相DC-AC转换器的功率密度

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摘要

The emergence of wide-bandgap devices, e.g. silicon carbide (SiC), has the potential to enable very high-density power converter design with high-switching frequency operation capability. A comprehensive design tool with a holistic design approach is critical to maximise the overall system power density, e.g by identifying the optimal switching frequency. This paper presents a system level design tool that optimises the power density (volume or mass) of a 3-phase, 2-level DC-AC converter. The design tool optimises the selection of the devices, heatsink and passive components (including the design of the line, EMI and DC-link filters) to maximise the power density. The structure of the optimisation algorithm has been organised to reduce the number of potential design combinations by over 99%, and thus produces fast simulation times. The design tool predicts that when SiC devices are used instead of Si ones, the power density is increased by 159.4%. A 5 kW, 600 V DC-link, 3-phase, 2- level DC-AC converter was experimentally evaluated in order to confirm the accuracy of the design tool.
机译:宽带隙设备的出现,例如碳化硅(SiC)具有实现具有高开关频率工作能力的超高密度功率转换器设计的潜力。具有整体设计方法的综合设计工具对于例如通过确定最佳开关频率来最大化整体系统功率密度至关重要。本文提出了一种系统级设计工具,该工具可以优化三相2级DC-AC转换器的功率密度(体积或质量)。该设计工具优化了设备,散热器和无源组件的选择(包括线路,EMI和DC链路滤波器的设计),以最大化功率密度。优化算法的结构经过组织,可将潜在设计组合的数量减少99%以上,从而产生了快速的仿真时间。该设计工具预测,当使用SiC器件代替Si器件时,功率密度将增加159.4%。为了确定设计工具的准确性,对5 kW,600 V直流母线,三相,两级DC-AC转换器进行了实验评估。

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