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A Modular Multilevel Converter With Ripple-Power Decoupling Channels for Three-Phase MV Adjustable-Speed Drives

机译:具有纹波功率去耦通道的模块化多电平转换器,用于三相MV可调速度驱动器

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摘要

This paper presents a drive system based on a modular multilevel converter (MMC) with high-frequency magnetic channels between adjacent-arm submodules (SMs), suitable for medium-voltage, high-power three-phase variable-speed machines. The configuration employs chains of dual half-bridge (DHB) modules linking adjacent SMs of three-phase symmetrical arms. The DHBmodules are operating as power channels enabling energy exchange to restore the power imbalance among the SM capacitors. This allows arms' ripple-powers to be entirely decoupled through bidirectional power transfer between adjacent-arm SMs, resulting in a near ripple-free SM capacitor voltage profile. Therefore, the MMC common problem of wide voltage fluctuation across SM capacitors is comprehensively solved, independent of the operating frequency. Additionally, a significant reduction in the sizing requirement of SM capacitance is achieved. The configuration is able to drive multimegawatt machines from standstill to the rated speed at the rated torque operating condition. The operating principle of the proposed MMC configuration is explained and necessary mathematical analysis is derived. Features and viability of the proposed drive system are verified through simulation and experimentation.
机译:本文介绍了一种基于模块化多电平转换器(MMC)的驱动系统,具有相邻的ARM子模块(SMS)之间的高频磁通道,适用于中电压,高功率三相变速机。该配置采用连接相邻SMS的三相对称臂的双半桥(DHB)模块链。 DHBModules作为电源通道运行,使能能量交换恢复SM电容器之间的功率不平衡。这允许臂的纹波功率通过相邻臂SMS之间的双向动力传递完全分离,从而导致近纹波的SM电容器电压曲线。因此,全面解决了SM电容器上的宽电压波动的MMC常见问题,与工作频率无关。另外,实现了SM电容的大小尺寸的显着降低。该配置能够在额定扭矩运行条件下驱动从静止到额定速度的多重浏览机器。解释了所提出的MMC配置的操作原理,并导出了必要的数学分析。通过仿真和实验验证所提出的驱动系统的特征和可存度。

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