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Accurate and Computationally Efficient Implementation of the IEEE 1459-2000 Standard in Three-Phase Three-Wire Power Systems

机译:三相三线电源系统中IEEE 1459-2000标准的准确,高效计算实现

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摘要

The definitions for the measurement of electrical power quantities under sinusoidal, nonsinusoidal, balanced, or unbalanced conditions are established in IEEE Standard 1459-2000. Measured magnitudes, such as apparent powers or effective quantities, are evaluated considering the frequency spectrum of voltage and current signals (fundamental, nonfundamental, and combined magnitudes). Previous papers implement these definitions in the frequency domain (DFT) and in the time domain (Clarke-Park Transformations). In the time domain, low-pass filters (LPFs) must be applied to obtain the fundamental magnitudes but, in this case, the quality of the measurements depends on the LPFs orders and their cutoff frequencies. This paper proposes a time-domain implementation of the standard definitions without LPFs and employs a recursive averaging algorithm which improves the measurements precision and reduces the computational burden. Simulation and experimental tests showing the proposed method performance are included
机译:在IEEE标准1459-2000中建立了在正弦,非正弦,平衡或不平衡条件下测量电功率的定义。考虑电压和电流信号的频谱(基本幅度,非基本幅度和组合幅度),对测量的幅度(例如视在功率或有效量)进行评估。先前的论文在频域(DFT)和时域(Clarke-Park变换)中实现了这些定义。在时域中,必须应用低通滤波器(LPF)以获得基本幅度,但是在这种情况下,测量质量取决于LPF的阶次及其截止频率。本文提出了不使用LPF的标准定义的时域实现,并采用了递归平均算法,该算法提高了测量精度并减少了计算负担。仿真和实验测试表明拟议的方法性能

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