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A simple modulation approach for interfacing three-level Neutral-Point-Clamped converters to the grid

机译:一种简单的调制方法,用于将三级中性点夹紧转换器连接到电网

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摘要

Multilevel converters are nowadays an enabling key in the integration of electric power into the grid as they introduce less distortion and, thus, they are more compliant with the grid standards, among other benefits. A well-known topology is the three-level Neutral-Point-Clamped whose control requires to deal with the capacitors voltage unbalance. This paper presents a modulation approach where the injection of a common component in the modulated voltage is studied in order to achieve such voltage balance. An optimization problem that, apart from the voltage balance, aims the lowest number of commutations and can be solved very efficiently with up to five computations of the cost function is formulated. The main advantages of the proposed modulation strategy are its simplicity and its flexibility, since it is also valid for unbalanced grid conditions and, with little added complexity, for low (and even zero) power factor conditions. Simulation results under unbalanced grid conditions are provided in order to show its validity under this scenario. The strategy is evaluated and compared with a space-vector-based approach in an experimental setup, yielding similar total harmonic current distortion, a 30% reduction in the number of commutations, and better voltage balance performance for lower power factor conditions.
机译:如今,多级转换器如今是一个能够在电力集成到网格中的键,因此它们更加符合网格标准,以及其他益处。众所周知的拓扑是三级中性点钳位,其控制需要处理电容器电压不平衡。本文提出了一种调制方法,其中研究了调制电压中的公共部件的调制方法,以实现这种电压平衡。除了电压平衡外,优化问题旨在实现最低的换向数,并且可以在最多有效地进行高效地解决成本函数的计算。所提出的调制策略的主要优点是其简单性及其灵活性,因为它对不平衡的网格条件也有效,并且对于低(甚至零)功率因数条件,具有很少的复杂性。提供了在不平衡网格条件下的仿真结果,以便在这种情况下显示其有效性。在实验设置中评估并将该策略与基于空间 - 向量的方法进行比较,产生类似的总谐波电流失真,换向数量的30%,以及更好的电压平衡性能,用于较低功率因数条件。

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