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Widely Linear Modeling for Frequency Estimation in Unbalanced Three-Phase Power Systems

机译:不平衡三相电力系统中频率估计的广泛线性建模

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摘要

Real-time frequency estimation in three-phase power systems is revisited from the state space point of view, in order to provide a unified framework for frequency tracking in both balanced and unbalanced system conditions. This is achieved by using a novel class of widely linear complex valued Kalman filters, which provide unbiased frequency estimation and are faster converging and more robust to noise and harmonic artifacts than the existing methods. It is shown that the Clarke's transformed three-phase voltage is circular for balanced systems and noncircular for unbalanced ones, making the proposed widely linear estimation perfectly suited both to identify the fault and to provide accurate estimation in unbalanced conditions, critical issues where standard models typically fail. The analysis and simulations show that the proposed model outperforms the recently introduced widely linear stochastic gradient-based frequency estimators, based on the augmented complex least mean square. Comprehensive simulations on synthetic and real-world power system data, in both balanced and unbalanced conditions, support the approach.
机译:从状态空间的角度重新审视了三相电力系统中的实时频率估计,以便为平衡和不平衡系统条件下的频率跟踪提供统一的框架。这是通过使用一类新型的宽线性复值卡尔曼滤波器实现的,该滤波器提供无偏频估计,并且比现有方法收敛更快,并且对噪声和谐波伪像更鲁棒。结果表明,Clarke变换后的三相电压对于平衡系统来说是圆形的,对于不平衡系统来说是非圆形的,这使得所建议的广泛线性估计既适合于识别故障,又可以在不平衡条件下提供准确的估计,这是标准模型通常存在的关键问题失败。分析和仿真表明,基于增强的复数最小均方,提出的模型优于最近引入的基于线性随机梯度的频率估计器。在平衡和不平衡条件下,对综合和实际电力系统数据进行的综合仿真均支持该方法。

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