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Fast Measurement of Dielectric Loss Angle With Time-Domain Quasi-Synchronous Algorithm

机译:时域准同步算法快速测量介电损耗角

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摘要

Fast Fourier transform (FFT) algorithm inevitably suffers from spectral leakage and picket-fence effect under asynchronous sampling and nonintegral period truncation. So the FFT-based dielectric loss angle (DLA) measurement needs window functions and spectral lines interpolation algorithm, which requires massive sampled data and high computational cost. Therefore, this paper proposes a DLA measurement method on the basis of time-domain quasi-synchronous sampling technique to achieve fast measurement and high accuracy. First, the fundamental frequencies of the original voltage and current sampled signals were estimated accurately with the time-domain Newton interpolation algorithm. Then, the quasi-synchronous sampled sequences (QSSA) of the original asynchronous sampled signals were reconstructed using cubic spline interpolation algorithm. Finally, the DLA was calculated according to the equivalent circuit model and frequency-domain analysis of voltage and current QSSA based on FFT. The proposed method in this paper can perfectly restrain spectral leakage and picket-fence effect without window functions and spectral lines interpolation algorithm. The results of simulation and the implementation on the embedded system have confirmed the effectiveness of the proposed algorithm in this paper with less sampled data and lower computational cost.
机译:在异步采样和非整数周期截断的情况下,快速傅立叶变换(FFT)算法不可避免地会遭受频谱泄漏和纠察效应。因此,基于FFT的介电损耗角(DLA)测量需要窗口函数和谱线插值算法,这需要大量的采样数据和较高的计算成本。因此,本文提出了一种基于时域准同步采样技术的DLA测量方法,以实现快速测量和高精度。首先,使用时域牛顿插值算法精确估算原始电压和电流采样信号的基频。然后,使用三次样条插值算法重建原始异步采样信号的准同步采样序列(QSSA)。最后,根据等效电路模型,基于FFT对电压和电流QSSA进行频域分析,计算出DLA。该文提出的方法无需窗口函数和谱线插值算法,就可以很好地抑制谱泄漏和栅栏效应。仿真结果和在嵌入式系统上的实现已经证实了本文提出的算法的有效性,其采样数据更少,计算成本更低。

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