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Phasor estimation with finite impulse response notch filtering and half-cycle discrete fourier transform

机译:具有有限脉冲响应陷波滤波和半周期离散傅立叶变换的相量估计

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Discrete Fourier transform (DFT)-based phasor estimation is widely used in protective relays. During a transmission line fault, half-cycle DFT (HCDFT)-based phasor estimation can achieve faster protection of the power system than full-cycle DFT (FCDFT)-based phasor estimation. However, HCDFT-based phasor estimation is not immune to even harmonics, which gives difficulty to identification of a decaying dc component in a fault current of the power system. This paper proposes a phasor estimation method which uses HCDFT and a finite impulse response (FIR) notch filter for elimination of even harmonics. The FIR notch filter is designed on the basis of the waveform symmetry of even harmonics in the half cycle of the fundamental frequency. The decaying dc component is identified by using three consecutive HCDFT coefficients of the notch filtered output. The proposed method can use far less samples of a fault current in the phasor estimation than FCDFT-based methods. This method is simulated on time constants of the decaying dc component, harmonics, frequency deviation, noise, and a fault transmission line.
机译:基于离散傅里叶变换(DFT)的相量估计被广泛用于保护继电器中。在传输线故障期间,基于半周期DFT(HCDFT)的相量估计比基于全周期DFT(FCDFT)的相量估计可以更快地保护电力系统。但是,基于HCDFT的相量估计不能不受偶次谐波的影响,这给电源系统故障电流中衰减的直流分量的识别带来了困难。本文提出了一种相量估计方法,该方法使用HCDFT和有限脉冲响应(FIR)陷波滤波器来消除偶次谐波。 FIR陷波滤波器是根据基频半个周期中偶次谐波的波形对称性设计的。通过使用陷波滤波输出的三个连续的HCDFT系数来识别衰减的直流分量。与基于FCDFT的方法相比,所提出的方法在相量估计中可以使用更少的故障电流样本。该方法是根据衰减的直流分量的时间常数,谐波,频率偏差,噪声和故障传输线进行仿真的。

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