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Energy Storage Requirement Reduction Using Negative-Voltage States of a Full-Bridge Modular Multilevel Converter

机译:使用全桥模块化多电平转换器的负电压状态降低储能需求

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Utilization of negative-voltage states substantially reduces the energy storage requirements of a full-bridge submodule-based modular multilevel converter (FB-MMC). This study provides a detailed analysis of the capacitor voltage ripple and energy storage requirement reduction effects of the FB-MMC by utilizing negative-voltage states. The analytical expressions of capacitor voltage ripple following the change in negative-voltage state factor (NVSF) are derived. Results show that the capacitor voltage ripple reduction effects using negative-voltage states are strongly correlated with the operated power factor angle. In addition, the second-order ripple component must be considered to increase the accuracy in evaluating the voltage ripple reduction effects. This study defines the energy storage reduction factor (ESRF) to indicate the level at which the energy storage requirement can be minimized by selecting an appropriate NVSF for a given permitted operating range of the power factor angle. The curve of the ESRF following the change in the permitted operating range of the power factor angle was calculated. The analytical method and the evaluation results for the capacitor voltage and energy storage reduction effects of the FB-MMC using negative-voltage states are verified on the basis of the simulation and experimental results.
机译:负电压状态的使用大大降低了基于全桥子模块的模块化多电平转换器(FB-MMC)的能量存储需求。这项研究通过利用负电压状态,对FB-MMC的电容器电压纹波和降低储能需求的效果进行了详细分析。推导了随着负电压状态因子(NVSF)变化而引起的电容器电压纹波的解析表达式。结果表明,使用负电压状态降低电容器电压纹波的效果与工作功率因数角密切相关。此外,必须考虑使用二阶纹波分量来提高评估电压纹波减小效果的准确性。这项研究定义了储能减少因数(ESRF),以指示通过针对给定的功率因数角的允许工作范围选择合适的NVSF可以最小化储能需求的水平。计算了功率因数角的允许工作范围变化后的ESRF曲线。在仿真和实验结果的基础上,验证了FB-MMC在负电压状态下电容器电压和储能降低效果的分析方法和评估结果。

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