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首页> 外文期刊>Signal Processing Magazine, IEEE >Adaptive Frequency Estimation in Smart Grid Applications: Exploiting Noncircularity and Widely Linear Adaptive Estimators
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Adaptive Frequency Estimation in Smart Grid Applications: Exploiting Noncircularity and Widely Linear Adaptive Estimators

机译:智能电网应用中的自适应频率估计:利用非圆度和宽线性自适应估计器

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Accurate estimation of system frequency in real time is a prerequisite for the future smart grid, where the generation, loading, and topology will all be dynamically updated. In this article, we introduce a unified framework for the estimation of instantaneous frequency in both balanced and unbalanced conditions in a three-phase system, thus consolidating the existing approaches and providing next-generation solutions capable of joint adaptive frequency estimation and system fault identification. This is achieved by employing recent developments in the statistics of complex variables (augmented statistics) and the associated widely linear models, allowing us to benefit from a rigorous account of varying degrees of noncircularity corresponding to different sources of frequency variations. The advantages of such an approach are illustrated for both balanced and unbalanced conditions, including voltage sags, harmonics and supply-demand mismatch, all major obstacles for accurate frequency estimation in the smart grid.
机译:实时准确估计系统频率是未来智能电网的先决条件,未来的智能电网将动态更新发电,负荷和拓扑。在本文中,我们介绍了一个用于在三相系统中平衡和不平衡条件下估算瞬时频率的统一框架,从而巩固了现有方法,并提供了能够联合自适应频率估算和系统故障识别的下一代解决方案。这是通过采用复杂变量统计(增强统计)和相关的广泛线性模型的最新发展而实现的,从而使我们能够从严谨的非圆度变化程度的严格计算中受益,该变化程度对应于频率变化的不同来源。说明了这种方法在平衡和不平衡条件下的优势,包括电压骤降,谐波和供需不匹配,这是智能电网中精确频率估计的所有主要障碍。

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