首页> 外文会议>2019 IEEE International Conference on Environment and Electrical Engineering and 2019 IEEE Industrial and Commercial Power Systems Europe >Dynamic characteristics of Interpolated-DFT-based frequency estimation method with Generalized Maximum Sidelobes Decay Windows
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Dynamic characteristics of Interpolated-DFT-based frequency estimation method with Generalized Maximum Sidelobes Decay Windows

机译:广义最大旁瓣衰减窗口的基于插值DFT的频率估计方法的动态特性

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This paper investigates dynamic properties of the novel frequency estimation method in terms of potential use in real-time system for frequency grid estimation where only short data records of the signal are available for a measurement. Presented algorithm is a three-point interpolated discrete Fourier transform method that uses the generalized maximum sidelobes decay windows derived from the I-class Rife Vincent windows family and is formulated with direct analytic formula. Impact of the conjugate component of the input real sine-wave is taken into consideration to eliminate additional distortion. The method is evaluated with computer simulations where the measure window duration is in the order of tens of milliseconds and the measured signal changes rapidly from 50 to 55 Hz. Simulation results are analyzed in terms of response time and accuracy to determine dynamic characteristics of the method.
机译:本文就可能仅在信号的短数据记录用于测量的实时系统中进行频率网格估计的潜在用途而言,研究了这种新型频率估计方法的动态特性。提出的算法是一种三点插值离散傅里叶变换方法,该方法使用从I类Rife Vincent窗族派生的广义最大旁瓣衰减窗,并采用直接解析公式来表示。考虑了输入正弦波共轭分量的影响,以消除其他失真。该方法通过计算机仿真进行评估,其中测量窗口持续时间约为数十毫秒,并且测量信号从50 Hz迅速变化为55 Hz。仿真结果根据响应时间和准确性进行分析,以确定该方法的动态特性。

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