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Incremental Passivity Control in Multilevel Cascaded H-Bridge Converters

机译:多级级联H-Bridge转换器中的增量控制器

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A low-capacitance static compensator (LC-StatCom) based on a cascaded H-bridge (CHB) multilevel converter can be an efficient and low-cost solution for reactive power compensation in power grids. However, the reduced capacitance, and, therefore, faster capacitor voltage dynamics, makes it challenging to control it. Classical cascade control schemes, in which the bandwidths associated with the inner current loop and the outer capacitor voltage loop need to be separated enough, are the most reported approaches. Nevertheless, for the LC-StatCom case, the voltage loop can be almost as fast as that one of the current loop. For this reason, this article proposes a control approach that does not separate voltage and current dynamics. Concretely, we propose a multi-input linear time-variant control law, based on incremental passivity theory for CHB multilevel converters. The proposed control guarantees stability despite saturation in the control signal. In addition, it provides capacitor voltage balance without the need to use a specific balancing stage. This article, first, reviews the average model of the converter and, then, analyses the steady-state dynamic behavior to determine the desired and coherent reference signals. Then, it applies an incremental passivity control approach to drive the LC-StatCom state variables to the desired references. After introducing the proposed control law, experimental results on a seven-level 1-kVA CHB LC-StatCom are shown to demonstrate its excellent performance in steady state and transients.
机译:基于级联H桥(CHB)多级转换器的低电容静态补偿器(LC-Statcom)可以是电网中无功补偿的有效和低成本的解决方案。然而,降低的电容,因此,电容电压动态更快,使得控制它具有挑战性。经典级联控制方案,其中需要与内部电流回路和外部电容器电压环相关的带宽足够分开,是最多报道的方法。尽管如此,对于LC-Statcom案例,电压环几乎可以像电流回路一样快。因此,本文提出了一种不分离电压和当前动态的控制方法。具体地,我们提出了一种基于CHB多级转换器的增量传输理论的多输入线性时变控制律。尽管控制信号饱和,所提出的控制保证了稳定性。此外,它还提供电容器电压平衡,无需使用特定的平衡级。本文首先审查转换器的平均模型,然后,分析稳态动态行为以确定所需的和相干的参考信号。然后,它应用增量的被动控制方法,以将LC-Statcom状态变量驱动到所需的参考。在介绍拟议的控制法之后,显示七级1-KVA CHB LC-Statcom的实验结果显示在稳态和瞬态方面的出色性能。

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