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Rapid Impedance Estimation Algorithm for Mitigation of Synchronization Instability of Paralleled Converters under Grid Faults

机译:电网故障下并行变换器同步不稳定性的快速阻抗估计算法

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Paralleled grid-connected converters operated as grid-following structures are vulnerable to transient synchronization instability during grid faults. This paper mathematically describes the instability phenomenon of paralleled converters and why it is more pronounced than for single-converter operation. Based on this model, instability can be averted by modifying each converter current reference depending on the external network impedance where asymptotic stability is proven. A rapid impedance estimation algorithm is presented, which can extract the network impedance based on the disturbance of the grid fault. This estimation is used to accurately adjust the converter current references in order to guarantee stability of all paralleled converters for any severity of the grid fault. The proposed control structure is verified in a detailed simulation study and through experimental tests, which demonstrate its potential and robustness.
机译:在电网故障期间,作为并网结构运行的并联式并网变流器容易受到瞬态同步不稳定的影响。本文用数学方法描述了并联转换器的不稳定性现象,以及为什么它比单转换器工作更为明显。基于此模型,可以根据证明渐近稳定性的外部网络阻抗,通过修改每个转换器电流参考来避免不稳定性。提出了一种快速的阻抗估计算法,该算法可以根据电网故障的干扰来提取网络阻抗。该估计用于准确调整转换器电流参考,以保证所有并联转换器在电网故障严重时的稳定性。拟议的控制结构在详细的仿真研究和实验测试中得到了验证,证明了其潜力和鲁棒性。

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