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Enhancement of digital equivalent voltage flicker measurement via continuous wavelet transform

机译:通过连续小波变换增强数字等效电压闪变测量

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摘要

In this paper, a continuous wavelet transform-based approach is proposed to assist the measurement of voltage flicker. With the time-frequency localization characteristics embedded in wavelets, the time and frequency information of a waveform is seen integrally presented, thereby enhancing the monitoring capability of voltage flicker signals at different time intervals. By embodying the Gaussian wavelet function, this proposed wavelet-direct demodulation method was also compared with the frequency-domain direct demodulation and indirect demodulation approaches based on the evaluation of flicker-frequency response and the amount of system frequency deviation. Comparison results indicated that the proposed method owns the higher reliability and better visualization. Signal components at any frequency-of-interest can be also more easily supervised. The approach has been applied to investigate various simulated voltage flicker-generated signals, and inspect the data recorded from the actual arc furnace operation. Test results support the proposed method in good agreement.
机译:本文提出了一种基于连续小波变换的方法来辅助电压闪变的测量。通过嵌入小波中的时频定位特性,可以整体呈现波形的时间和频率信息,从而提高了在不同时间间隔对电压闪烁信号的监视能力。通过体现高斯小波函数,在评估闪变频率响应和系统频率偏差量的基础上,将该提议的小波直接解调方法与频域直接解调和间接解调方法进行了比较。比较结果表明,该方法具有较高的可靠性和较好的可视化效果。任何感兴趣频率的信号分量也可以更容易地得到监控。该方法已应用于调查各种模拟的电压闪变产生的信号,并检查从实际电弧炉操作中记录的数据。测试结果很好地支持了所提出的方法。

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