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A Performance Comparison of PLL Implementations in Low-Inertia Power Systems Using an Observer-Based Framework

机译:基于观察者框架的低惯性电力系统PLL实现的性能比较

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Phase-locked loop (PLL) implementations are critical components for the control and operation of grid-connected converters. Hence, they have to exhibit a highly reliable behavior under a wide range of operating conditions. Available implementations and performance analyses mainly focus on the impact of unbalances and harmonics. However, in converter-dominated low-inertia power systems an additional important type of perturbation will arise from fast variations in the grid frequency. Motivated by this, we show that the structure of several popular PLL implementations is closely related to that of high-gain observers and,byusing this framework, provide a tuning criterion for the PLL gains that mitigates the impact of the rate of change of the frequency (RoCoF) on the estimation performance. This criterion is then used to conduct a numerical comparison of four popular PLL implementations under three distorted conditions: unbalances, harmonics and frequency variations.
机译:锁相环路(PLL)实现是用于控制和操作的链路连接的转换器的关键组件。因此,它们必须在各种操作条件下表现出高度可靠的行为。可用的实施和性能分析主要关注不平衡和谐波的影响。然而,在转换器主导的低惯性电力系统中,来自网格频率的快速变化,将出现另外一个重要类型的扰动。由此开发,我们表明,几个流行的PLL实现的结构与高增益观察者的结构密切相关,并通过批避本框架,为PLL增益提供调整标准,这些标准降低了频率变化率的影响(Rocof)估计绩效。然后,该标准用于在三个扭曲的条件下进行四种流行的PLL实现的数值比较:不平衡,谐波和频率变化。

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