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DSP-microcontroller implementations of a simplified algorithm for synchrophasor calculation

机译:用于同步相量计算的简化算法的DSP微控制器实现

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Synchrophasor is the acronym of synchronized phasor and it is a phasor measured and calculated by sampling with a standard temporal reference. The utility of a synchrophasor is to measure the angle of phase between two electrical signals placed in remote nodes. In the article is expressed the computational algorithm to calculate the phasor of the fundamental component (60 Hz) of an electrical signal. This algorithm is implemented with the discrete Fourier transform (DFT) and a look up table (LUT) which in junction lets diminish the process time. It is also presented an algorithm which uses the same technique to obtain the inverse trigonometric function that is required to calculate the phase angle. The full algorithm presented in this paper was implemented in a DSP-Microcontroller0 fixed point from C2000 family. The Standard temporal reference is generated with a signal of 1 pulse per second (1PPS) from a Global Positioning System (GPS).
机译:同步相量是同步相量的首字母缩写,它是通过使用标准时间基准进行采样来测量和计算的相量。同步相量的用途是测量放置在远程节点中的两个电信号之间的相位角。在本文中表达了一种计算算法,用于计算电信号基本成分(60 Hz)的相量。该算法通过离散傅里叶变换(DFT)和查找表(LUT)实现,结点查找可以缩短处理时间。还提出了一种算法,该算法使用相同的技术来获得计算相角所需的逆三角函数。本文介绍的完整算法是在C2000系列的DSP-Microcontroller0定点上实现的。使用来自全球定位系统(GPS)的每秒1脉冲(1PPS)的信号生成标准时间参考。

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