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Real-time measurement of power quantities in fully distorted systems

机译:在完全失真的系统中实时测量电量

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This paper proposes a time-domain technique in order to meter the power quantities of three-phase systems that are contained in IEEE Standard 1459–2000. The proposed method does not need the spectral analysis which is the base of time-frequency methods. It is based on a recursive implementation of the Park and Clark transformations that are employed to obtain the fundamental components of voltage and currents waveforms to calculate the powers of three-phase systems in every distributed network whether sinusoidal, non-sinusoidal, balanced or unbalanced. The recursive algorithm avoids the low-pass filtering stage that in turn results in uncertainty and delay in calculating the fundamental components of the waveforms in synchronous rotating frame. To investigate the effectiveness of the proposed method, it is compared to the Direct Park-based methods in calculating the quantities. In implementation of this technique, the effects of voltage and current transducers are considered as well. According to the simulation and implementation results, the real-time method can calculate the power quantities with less delay and more accuracy.
机译:本文提出了一种时域技术,以便对IEEE标准1459–2000中包含的三相系统的电量进行计量。所提出的方法不需要频谱分析,而频谱分析是时频方法的基础。它基于Park和Clark变换的递归实现,可用于获得电压和电流波形的基本分量,以计算每个分布式网络中三相系统的功率,无论是正弦波,非正弦波,平衡的还是不平衡的。递归算法避免了低通滤波阶段,进而导致在计算同步旋转帧中的波形基本成分时出现不确定性和延迟。为了研究该方法的有效性,在计算数量时将其与基于直接公园的方法进行了比较。在实施该技术时,还应考虑电压和电流传感器的影响。根据仿真和实现结果,该实时方法可以计算出较少的延迟和更高的精度的电量。

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