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Interpolated-DFT-Based Fast and Accurate Frequency Estimation for the Control of Power

机译:基于插值DFT的功率控制快速准确频率估计

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摘要

The energy produced by renewable energy systems must fulfill quality requirements as defined in the respective standards and directives. Improvement of the quality could be achieved through a more accurate estimation of the frequency of the grid's signal that is used to control an inverter. This paper presents an overview of a method for spectrum interpolation and frequency estimation, and a generalized method for very accurate frequency grid estimation using the fast Fourier transform procedure coupled with maximum decay sidelobe windows. An important feature of this algorithm is the elimination of the impact associated with the conjugate's component on the estimation's outcome (i.e., the possibility of designating the frequency even if the signal's measurement time is on the order of 2.5 periods), and the implementation of the algorithm is straightforward. The results of the simulation show that the algorithm could be successfully used for a fast and accurate estimation of the grid signal frequency. The systematic frequency estimation error is approximately $5cdot 10^{-11} hbox{Hz}$ for a 5-ms measurement window. The algorithm could be used not only for a single sinusoidal signal, but also for a multifrequency signal. This is assuming that the appropriate spectrum leakage reduction (by a time window) will be performed.
机译:可再生能源系统产生的能量必须满足相应标准和指令中定义的质量要求。通过更准确地估计用于控制逆变器的电网信号的频率,可以提高质量。本文概述了频谱插值和频率估计的方法,以及使用快速傅里叶变换过程结合最大衰减旁瓣窗口进行非常精确的频率网格估计的通用方法。该算法的一个重要特征是消除了与共轭成分有关的对估计结果的影响(即即使信号的测量时间约为2.5个周期,也可以指定频率),并且实现了算法很简单。仿真结果表明,该算法可以成功地用于电网信号频率的快速,准确估计。系统频率估计误差大约为 $ 5cdot 10 ^ {-11} hbox {Hz} $ 5 -ms测量窗口。该算法不仅可以用于单个正弦信号,还可以用于多频信号。假设将执行适当的频谱泄漏减少(按时间窗)。

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