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A novel short-window algorithm of phasor computation for EHV line protection

机译:一种用于超高压线路保护的相量计算的新型短窗算法

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摘要

A novel phasor computation algorithm is presented in this paper. The real and imaginary part filters of this algorithm have identical magnitude frequency characteristic (IMFC) at all the frequencies and orthogonal phase frequency characteristic (PFC) at fundamental frequency. Considering the conditions of the same magnitude frequency characteristic (MFC) and the orthogonal PFC, the two-sample algorithm is derived. Once two-sample orthogonal filters with IMFC are obtained, the algorithm design is just to select proper shapes and lengths of windows, which determine the filtering performance and response-time, respectively. This method could be applied to design filter in any window-length, especially in short-window. Therefore, this class of phasor algorithms is suitable for EHV transmission line protection where a short-window is crucial for fast response and better operation performance. The proposed algorithm has been applied to a series of EHV relay devices by China Xuchang Relay Group.
机译:提出了一种新颖的相量计算算法。该算法的实部和虚部滤波器在所有频率处具有相同的幅度频率特性(IMFC),在基本频率处具有正交相位频率特性(PFC)。考虑相同幅度频率特性(MFC)和正交PFC的条件,推导了两个样本算法。一旦获得了带有IMFC的两个样本的正交滤波器,该算法的设计就是选择合适的窗口形状和长度,分别确定滤波性能和响应时间。该方法可应用于任何窗口长度的设计滤波器,尤其是在短窗口中。因此,此类相量算法适用于特高压输电线路保护,其中短窗口对于快速响应和更好的运行性能至关重要。该算法已被中国许昌继电器集团应用于一系列超高压继电器设备中。

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