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首页> 外文期刊>IEEE Transactions on Power Electronics >Characterization of Low-Inductance SiC Module With Integrated Capacitors for Aircraft Applications Requiring Low Losses and Low EMI Issues
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Characterization of Low-Inductance SiC Module With Integrated Capacitors for Aircraft Applications Requiring Low Losses and Low EMI Issues

机译:具有低损失和低EMI问题的飞机应用集成电容器的低电感SIC模块的特征

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摘要

Future aircrafts will be composed of high number of power converters having always higher power density and efficiency. In order to increase performance of such converters, a good option is the use of silicon carbide (SiC) transistors. Although these components reduce losses when compared to their silicon-based counterpart, they increase switching speed and overshoot during commutation, which can cause serious electromagnetic interference issues and overvoltages on loads connected to these converters. For that reason, power modules containing SiC transistors must have the lowest possible parasitic inductance. This article presents a multilevel low-inductance SiC power module designed to optimize a three-phase 540 V/15 kVA inverter for modern aircrafts. Precise dynamic characterization is performed in order to accurately determine switching energies and to show improvement of loss performance of this power module when compared to discrete components and also to power modules from the market. Inverter input and output common mode current reduction due to integrated common mode capacitors in the power module is experimentally shown.
机译:未来的飞机将由具有较高功率密度和效率的功率转换器的大量功率转换器组成。为了提高这种转换器的性能,良好的选择是使用碳化硅(SiC)晶体管。尽管与基于硅的对应物相比,这些组件会减少损耗,但它们在换向期间增加开关速度和过冲,这可能会导致与这些转换器连接的负载上的严重电磁干扰问题和过电压。因此,包含SiC晶体管的功率模块必须具有尽可能低的寄生电感。本文介绍了多级低电感SIC电源模块,旨在优化三相540 V / 15 KVA逆变器,用于现代飞机。执行精确的动态表征,以便准确地确定切换能量,并在与离散的组件相比和来自市场的电源模块的电源模块时,提高该功率模块的损耗性能。通过实验显示电源模块中集成的公共电容器引起的逆变器输入和输出共模电流降低。

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