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An adaptive DFT algorithm for measuring power system synchrophasors based on rectangular coordinate

机译:基于直角坐标的电力系统同步相量测量的自适应DFT算法

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When the power system frequency shift occurs, using the discrete Fourier transform (DFT) in synchronized phasor measurement will be error due to asynchronous sampling. The error is composed of fixed error and dynamic error. To cut down the dynamic error as much as possible, an adaptive DFT algorithm based on rectangular coordinate was presented. By tracking the frequency of power grid, this algorithm determines the length of the sampling window, which was used to DFT. Based on this, Synthesizing the new phasor by utilizing three sampling window which were away from 1/4 sampling window length to each other, and then compensating the fixed offset. The simulation results show that the proposed algorithm increases the accuracy significantly, and satisfies the requirements of real time applications for smart grid.
机译:当电力系统发生频移时,由于异步采样,在同步相量测量中使用离散傅里叶变换(DFT)将产生错误。错误由固定错误和动态错误组成。为了尽可能减少动态误差,提出了一种基于直角坐标的自适应DFT算法。通过跟踪电网的频率,该算法确定了采样窗口的长度,该长度用于DFT。在此基础上,利用三个采样窗口来合成新的相量,这三个采样窗口彼此之间的距离都不是1/4采样窗口的长度,然后补偿了固定的偏移量。仿真结果表明,该算法大大提高了计算精度,满足了智能电网实时应用的要求。

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