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Research on A Multi-port Converter with Nine-switch Cells

机译:具有九个开关单元的多端口转换器的研究

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In order to drive multiple motors in the medium-voltage high-power industrial field and recycle the regenerative energy, a regenerative multi-port converter is presented, which is cascaded with several cells based on nine-switch inverter and PWM rectifier. The inverter in each cell can be extended to the 3N+3 switches. By comparing the existing cascaded technology of three-phase bridge inverter, a cascaded method suitable for nine-switch inverter is proposed. Then, the new converter topology, control strategy and comparison are analyzed. The converter provides a direct transfer path for regenerative energy among multi-port loads, and the number of switches, capacitors, and transformer windings are reduced, which can improve reliability. Moreover, the number of output-port can be extended flexible, so the converter is well-adapted to the multi-loads industrial fields. A 6 kV two output-ports cascade converter with six nine-switch cells is taken as an example, which has been tested in MATLAB/Simulink. The simulation results demonstrate the effectiveness of the proposed converter and control strategies.
机译:为了在中压高功率工业场中驱动多个电动机并回收再生能量,提出了一种再生多端口转换器,其与基于九个开关逆变器和PWM整流器的多个电池级联。每个单元中的逆变器可以扩展到3N + 3个开关。通过比较三相桥式逆变器的现有级联技术,提出了一种适用于九开关逆变器的级联方法。然后,分析了新的转换器拓扑,控制策略和比较。转换器提供用于多端口负载之间的再生能量的直接传输路径,并且减少了开关,电容器和变压器绕组的数量,这可以提高可靠性。此外,可以扩展输出端口的数量,因此转换器适合多负载工业领域。以6 kV两个输出端口级联转换器为例,作为示例,已在Matlab / Simulink中测试。仿真结果表明了所提出的转换器和控制策略的有效性。

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