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首页> 外文期刊>Power Systems, IEEE Transactions on >Analyzing Power Oscillating Signals With the O-Splines of the Discrete Taylor–Fourier Transform
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Analyzing Power Oscillating Signals With the O-Splines of the Discrete Taylor–Fourier Transform

机译:使用离散泰勒-傅立叶变换的O样条分析功率振荡信号

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摘要

Power oscillating signals are analyzed with the Discrete Taylor-Fourier Transform (DTFT). This is implemented by modulating the impulse responses of its low-pass differentiators, defined by a family of O-splines. This implementation reduces its computational complexity since in practice only a small subset of filters is applied. The estimated parameters provide richer dynamic information than the traditional methods, in particular, a space representation for each dynamic component, and detection of frequency modulated events. Their estimation performance is assessed through the new proposed Total Phasor Error. To illustrate its application, and its progressive accuracy, this technique is applied to observe the synchrophasor estimates of voltages and to separate the electromechanical modes of an oscillation in a real power system. In conclusion, this multiresolution technique provides a series of increasingly precise solutions for time-frequency separation of oscillations with fluctuating frequency.
机译:使用离散泰勒-傅立叶变换(DTFT)分析功率振荡信号。这是通过调制由O样条族定义的低通微分器的脉冲响应来实现的。该实施方式降低了其计算复杂度,因为在实践中仅应用了滤波器的一小部分。估计的参数提供了比传统方法更丰富的动态信息,尤其是每个动态分量的空间表示以及对调频事件的检测。通过新提议的总相量误差评估它们的估计性能。为了说明其应用及其渐进精度,该技术被应用于观察电压的同步相量估计并分离实际电力系统中的振荡的机电模式。总之,这种多分辨率技术为波动频率的振荡的时频分离提供了一系列日益精确的解决方案。

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