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Compensation of current transformer saturation based on improved ESPRIT algorithm

机译:基于改进ESPRIT算法的电流互感器饱和补偿

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Current transformer is prone to get into transient saturated during the fault in the power system. Operation performance of relay protection will be influenced severely due to serious distortion in the secondary side. An improved ESPRIT algorithm that can be applied in relay protection for antisaturation is presented in this paper. The improved ESPRIT can accurately obtain the frequency, magnitude and phase angle of the fault current with unsaturated data segment of CTs' distorted secondary current in a relatively short time window. In order to reduce the calculation amount, singular value decomposition (SVD) is employed to determine the valid order of the signal. Moreover, the improved ESPRIT algorithm could reduce the computational load with little influence on calculative result through the dimension reduction of singular value decomposition. In order to obtain the magnitude and phase angle more accurate, AR model and least square method are employed to improve the robustness of algorithm. Finally, the accuracy of the improved ESPRIT is verified by CT's transient experiment data. The improved SEPRIT algorithm could be applied in the difference protection to avoid the malfunction by CTs' transient saturation and ensure the validity of protection.
机译:在电力系统故障期间,电流互感器易于进入瞬态饱和状态。继电侧的严重失真会严重影响继电保护的运行性能。提出了一种改进的ESPRIT算法,可以应用于继电保护的抗饱和。改进后的ESPRIT可以在相对较短的时间范围内,准确获取故障电流的频率,幅值和相角,以及CT的二次电流失真的不饱和数据段。为了减少计算量,采用奇异值分解(SVD)来确定信号的有效阶数。此外,改进的ESPRIT算法通过奇异值分解的降维,可以减少计算量,而对计算结果的影响很小。为了更准确地获得幅值和相角,采用AR模型和最小二乘法来提高算法的鲁棒性。最后,通过CT的瞬态实验数据验证了改进后的ESPRIT的准确性。改进的SEPRIT算法可以应用于差动保护中,避免了CT的瞬态饱和引起的误动作,并确保了保护的有效性。

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