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Bidirectional Three-Level Stacked Neutral-Point-Clamped Converter for Electric Vehicle Charging Stations

机译:用于电动车辆充电站的双向三级堆叠中性点夹紧转换器

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Electric vehicles (EVs) powered by batteries and other energy storage devices (ESDs), e.g., ultracapacitors, are expected to play an important role in the development of a more sustainable future. In this context, charging stations (CSs) are supposed to become the main sources of energy for charging the batteries, being strongly dependent on power electronic converters. This paper analyzes a bidirectional single-phase, three-level stacked neutral-point-clamped (3L-SNPC) converter for CS applications, which may behave as a rectifier or an inverter depending on the power flow direction. Besides, the derived analysis can be easily extended to the development of a three-phase version. Considering that the CS is capable of integrating the utility grid and renewable energy sources, it is possible to absorb or inject energy into the ac grid with high power factor and reduced harmonic content of the current. The main advantages of the bidirectional topology are the existence of a three-level voltage waveform across each leg and the neutral point, while filtering requirements are reduced when compared with typical two-level structures used in EV CSs; the voltage stresses on all semiconductors are equal to half of the total dc-link voltage; power factor is nearly unity in any operation mode; and the voltages across the dc-link capacitors are balanced. The thorough design of the power and control stages is presented, as well as experimental results from a laboratory prototype are discussed in detail.
机译:预计由电池和其他能量存储装置(ESDS)提供电池和其他能量存储装置(ESDS),例如超级超容器,在更加可持续的未来发挥重要作用。在这种情况下,充电站(CSS)应该成为用于对电池充电的主要能量来源,强烈依赖于电力电子转换器。本文分析了用于CS应用的双向单相,三级堆叠中性点钳位(3L-SNPC)转换器,其可以根据功率流动方向作为整流器或逆变器。此外,衍生的分析可以很容易地扩展到三相版本的开发。考虑到CS能够集成公用电网和可再生能源,可以使用高功率因数和降低电流的谐波含量来吸收或注入AC网格。双向拓扑的主要优点是每个腿部和中性点的三级电压波形的存在,而滤波要求与EV CSS中使用的典型两级结构相比;所有半导体上的电压应力等于总直流链路电压的一半;在任何操作模式下,功率因数几乎是统一;并且DC链路电容器上的电压是平衡的。提出了电力和控制阶段的彻底设计,以及实验室原型的实验结果详细讨论。

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