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A new DFT-based current phasor estimation for numerical protective relaying

机译:基于新的基于DFT的电流相位估计数值保护性接收

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A new algorithm has been developed for phasor estimation of the current signal within numerical protective relays which effectively filters out harmonics, noise, and decaying dc offset. Analytical analysis is presented to show the effect of decaying dc on discrete Fourier transform (DFT)-based phasor estimation. Based on the presented theory, a new method is proposed to first estimate the decaying dc characteristic of the current signal and second to compensate the unwanted effect of decaying dc on current phasor in the phasor domain. The proposed technique adds few basic mathematical operations to conventional DFT by employing the proposed two interim variables to characterize the decaying dc component. The proposed algorithm has been comprehensively evaluated in Matlab and compared with the conventional methods used in modern commercial relays for a wide variety of signals including different levels of decaying dc magnitude and time constants, offnominal frequency operation, signal distortion due to current transformer saturation, and transmission-line series compensation in the presence of harmonics and noise. Standard performance indices including rise time, settling time, and overshoot are considered for evaluation and comparison study.
机译:已经开发了一种用于数值保护继电器内电流信号的相位估计的新算法,其有效地滤除了谐波,噪声和衰减的DC偏移。提出了分析分析以显示衰减DC对离散傅里叶变换(DFT)的相分数估计的影响。基于所提出的理论,提出了一种新方法首先估计电流信号的衰减直流特性,并补偿衰减DC对量码域中电流相位的不希望的效果。该技术通过采用所提出的两个临时变量来表征衰减的DC分量来对传统DFT增加一些基本数学操作。在MATLAB中全面评估了该算法,并与现代商业继电器中使用的传统方法进行了比较,用于各种信号,包括不同水平的衰减的DC幅度和时间常数,由于电流互感器饱和导致的截止频率操作,信号失真,以及在谐波和噪声存在下的传输线系列补偿。标准性能指数包括上升时间,稳定时间和过冲,考虑评估和比较研究。

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