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A comparative study of DFT and Moving Window Averaging technique of current differential protection on Transmission line

机译:输电线路电流差动保护的DFT与动窗平均技术比较研究

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This paper is based on the study of current differential protection scheme on transmission line by using Moving Window Averaging technique and Discrete Fourier Transform. From the beginning of the history of power system, researchers have tried to increase the speed and sensitivity of transmission line protection in the power system protection field without compromising the security. Current differential protection scheme always provides sensitive protection with sharp discrimination of the disturbance area from the protection zone. Current differential protection scheme is immune to power swings and load encroachment. In the first method DFT, we can easily measure the phasors of the two ends of the transmission line which is very much essential for power system. With the help of moving window averaging technique extraction of the dc component of the current of transmission line is possible from both the sending and receiving ends. It is shown that under steady state condition, the differential current is zero while an internal line fault leads to non-zero differential current. The transmission line model is simulated with the help of PSCAD software.
机译:本文基于移动窗口平均技术和离散傅里叶变换对输电线路电流差动保护方案的研究。从电力系统的历史开始,研究人员就尝试在电力系统保护领域中提高传输线保护的速度和灵敏度,而又不损害安全性。电流差动保护方案始终可以提供灵敏的保护,并能从保护区中清晰地区分干扰区域。当前的差动保护方案不受功率波动和负载侵害的影响。在第一种方法DFT中,我们可以轻松地测量传输线两端的相量,这对于电力系统非常重要。借助于移动窗口平均技术,可以从发送端和接收端提取传输线电流的直流分量。结果表明,在稳态条件下,差动电流为零,而内部线路故障导致差动电流为非零。借助PSCAD软件对传输线模型进行仿真。

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