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A Broad Range of Speed Control of a Permanent Magnet Synchronous Motor Driven by a Modular Multilevel TSBC Converter

机译:模块化多电平TSBC转换器驱动的永磁同步电动机的广泛速度控制

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This paper provides a theoretical and experimental discussion on a modular multilevel triple-star bridge-cell converter with focus on mitigating the capacitor-voltage fluctuation contained in each bridge cell. A new control method proposed in this paper is characterized by properly superimposing both common-mode voltage and circulating currents in the whole speed range. Moreover, this paper optimizes the amplitude and frequency of the superimposed common-mode voltage on the basis of theoretical analysis, thus resulting in minimizing the voltage fluctuation. The optimized control method makes both voltage fluctuation and cluster-current amplitude smaller than do the existing methods. Experimental waveforms obtained from a three-phase downscaled system using a 370-V, 15-kW, 75-Hz, six-pole, permanent-magnet synchronous motor verify good start-up performance from a standstill to the rated speed, keeping both capacitor-voltage and cluster current within acceptable levels.
机译:本文提供了有关模块化多电平三星桥式电池转换器的理论和实验讨论,重点是减轻每个桥式电池中包含的电容器电压波动。本文提出的一种新的控制方法的特点是在整个速度范围内适当叠加共模电压和循环电流。此外,本文在理论分析的基础上优化了叠加共模电压的幅度和频率,从而最大程度地减小了电压波动。优化的控制方法使电压波动和簇电流幅度都小于现有方法。使用370V,15kW,75Hz,六极永磁同步电动机从三相按比例缩小系统获得的实验波形证明了从静止到额定速度的良好启动性能,同时保持两个电容器-电压和群集电流在可接受的水平内。

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