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Accurate Measurement of Reactive Power Based on Fryze's Definition of Time Domain Reactive Power

机译:基于Fryze时域无功功率定义的无功功率精确测量

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In view of the lack of accuracy of reactive power measurement in reactive power measurement under nonsinusoidal unbalanced conditions, this paper proposes a nonsinusoidal unbalanced three-phase method based on the definition of Fryze's time domain reactive power. Three-wire system reactive power measurement theory. According to the definition of Fryze time domain reactive power, three-phase instantaneous current is decomposed into active current component and reactive current component, and three-phase instantaneous voltage and reactive current component are subjected to fast Fourier transform to obtain various harmonic reactive power. Size and direction to achieve accurate metering of reactive energy for non-sinusoidal unbalanced three-phase three-wire systems. This method divides the reactive power into positive reactive power and reverse reactive power, avoiding the situation where the harmonic reactive power and capacitive reactive power generated by the same harmonic source cancel each other out. Finally, this conclusion is verified by Matlab simulation, which provides a theoretical basis for accurate measurement of system reactive power under nonsinusoidal unbalanced conditions.
机译:鉴于非正弦不平衡条件下无功功率测量的准确性不足,本文提出了一种基于弗莱兹时域无功功率定义的非正弦不平衡三相方法。三线制系统无功功率测量理论。根据Fryze时域无功功率的定义,将三相瞬时电流分解为有功电流分量和无功电流分量,并对三相瞬时电压和无功电流分量进行快速傅里叶变换以获得各种谐波无功功率。为非正弦不平衡三相三线系统实现无功电能的精确计量的尺寸和方向。该方法将无功功率分为正无功功率和反向无功功率,避免了同一谐波源产生的谐波无功功率和容性无功功率相互抵消的情况。最后,通过Matlab仿真验证了该结论,为非正弦不平衡条件下系统无功功率的准确测量提供了理论依据。

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