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An Integrated Common-Mode Fast-Balancing Mechanism for Three-Phase Three-Level Converter With LCL Filter

机译:具有<斜斜体> LCL 滤波器的三相三级转换器的集成共模快速平衡机制

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摘要

A three-phase three-level converter with an LCL filter has been used in the industry because of its low switching harmonics. However, it inevitably suffers from dc neutral-point imbalance, which may unnecessarily stress semiconductors and deteriorate power quality. The imbalance will, nevertheless, naturally rebalance, but it usually takes a long time. A common rectification is, thus, to add an active or a passive booster to speed up the balancing. An active booster requires sensitive sensors and control modification, which will increase the system cost and complexity. A passive booster is, therefore, preferred owing to its exemption of monitoring and control efforts. The existing three-phase passive booster, however, contains several extra separate LC components, which are normally not functioning during the balanced conditions. They should, hence, be reduced. One approach is to dual use the existing LCL (or other high-order) filter for both harmonic filtering and dc-link balancing. Topologically, it requires only the addition of one extra capacitor along the return common-mode path. Using newly formulated criterions related to sizing, harmonic, and modulation selections, the balancing performance of the resulting capacitive balancer has been evaluated comprehensively. Finally, an experimental prototype is built for testing the balancing mechanism under different operating conditions.
机译:由于其低开关谐波,该行业已使用具有LCL过滤器的三相三级转换器。然而,它不可避免地遭受DC中性点不平衡,这可能是不必要的压力半导体和劣化的功率质量。然而,不平衡将自然重新平衡,但通常需要很长时间。因此,共同的整改是添加有源或无源助推器以加速平衡。主动助推器需要敏感传感器和控制修改,这将提高系统成本和复杂性。因此,由于其免除监测和控制努力,因此是一种被动助推器。然而,现有的三相无源助推器包含几种额外的单独LC组件,其通常在平衡条件下不起作用。因此,他们应该减少。一种方法是双重使用现有的LCL(或其他高阶)过滤器,用于谐波滤波和直流链路平衡。拓扑上,它只需要沿返回共模路径添加一个额外电容器。使用与尺寸,谐波和调制选择相关的新配方标准,全面评估所得电容式平衡器的平衡性能。最后,建立了一个实验原型,用于在不同的操作条件下测试平衡机制。

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