Modulation and control of a single-stage HVDC/AC solid state transformer using modular multilevel converter

A. Sahoo, N. Mohan
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引用次数: 11

Abstract

At high voltage and power levels in utility-scale applications, transformers are needed to step-down grid voltages for integrating renewables and motors. A novel single-stage solid state transformer (SST) interface using modular multilevel converter (MMC) is proposed to interface a low voltage machine with a high voltage DC grid. Due to its modular structure, the high voltage side is easily scalable. This interface has sinusoidal voltages with low dV/dt and sinusoidal currents resulting in low magnetic losses in the high frequency transformer. The machine connected converter is a single-stage matrix converter. At low machine speeds, an advanced control approach is proposed which shifts the control of generating adjustable magnitude voltages at the machine terminals to the MMC on the high voltage side of the transformer. This results in reduced voltage stress across the transformer, matrix converter and the machine and further reduction in losses to boost system efficiency at light load conditions. Simulation and experimental results validate the proposed modulation and control.
基于模块化多电平变换器的单级高压直流/交流固态变压器调制与控制
在公用事业规模的高电压和高功率应用中,变压器需要降低电网电压,以整合可再生能源和电机。提出了一种基于模块化多电平变换器(MMC)的单级固态变压器(SST)接口,将低压电机与高压直流电网连接起来。由于其模块化结构,高压侧易于扩展。该接口具有低dV/dt的正弦电压和正弦电流,导致高频变压器的低磁损耗。机接变换器为单级矩阵变换器。在低转速下,提出了一种先进的控制方法,将机器端产生可调电压的控制转移到变压器高压侧的MMC上。这降低了变压器、矩阵变换器和机器之间的电压应力,并进一步降低了损耗,从而在轻负载条件下提高了系统效率。仿真和实验结果验证了所提出的调制和控制方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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