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Harmonics and interharmonics analysis of electrical arc furnaces based on spectral model optimization with high resolution windowing

机译:基于高分辨率窗口的光谱模型优化的电弧炉谐波和间谐波分析

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In this paper, a spectral model optimization based method for the analysis of harmonics and interharmonics produced by electric arc furnace (EAF) installations is presented. Detecting the changes occurring in the frequency spectrum of the EAF voltages fast and accurately has crucial importance to eliminate the undesired effects of harmonics and interharmonics using advanced technology compensation systems such as active power filters, synchronous static compensators, energy storage systems, and etc. The aim of the research work presented here is to reduce the spectral leakage effects experienced by Fourier analysis based methods by estimating the spectral model parameters using nonlinear least squares. The Fourier spectrum of the signal is used as apriori information; however, the proposed model does not suffer from the spectral leakage problems encountered by the Fourier analysis based methods in case of fundamental frequency variation, which frequently occurs in the existence of EAF plants in an electrical system. Moreover, the proposed model permits frequency detection at a much higher resolution than the Fourier analysis based methods. The proposed method has been tested on both synthetic and field data and it has been shown that it is able to detect frequency components and the corresponding amplitudes and phases of harmonics and interharmonics with high accuracy for EAF plants.
机译:本文提出了一种基于频谱模型优化的方法来分析电弧炉(EAF)装置产生的谐波和间谐波。快速,准确地检测EAF电压频谱中发生的变化对于使用先进的技术补偿系统(例如有源功率滤波器,同步静态补偿器,能量存储系统等)消除谐波和间谐波的不良影响至关重要。这里提出的研究工作的目的是通过使用非线性最小二乘估计光谱模型参数来减少基于傅立叶分析的方法所经历的光谱泄漏效应。信号的傅立叶频谱被用作先验信息。然而,在基本频率变化的情况下,所提出的模型不会遭受基于傅立叶分析的方法所遇到的频谱泄漏问题,这在电气系统中的EAF设备中经常发生。此外,所提出的模型允许以比基于傅立叶分析的方法高得多的分辨率进行频率检测。该方法已经在合成数据和现场数据上进行了测试,结果表明,该方法能够对电炉设备进行高精度的频率分量检测以及谐波和间谐波的相应幅度和相位检测。

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