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Power system applications for phasor measurement units

机译:相量测量单元在电力系统中的应用

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摘要

State-of-the-art technology now permits measurement and analysis of power system performance on a scale not previously possible. Synchronized sampling, derived from the GPS (Global Positioning System), and high accuracy sigma-delta analog-to-digital converters form the basis for a system that can measure the state of the power system at a given instant over any area. Samples are acquired 12 times per cycle and are processed by a recursive discrete Fourier transform (DFT) algorithm. This produces the magnitude and angle of the input signal for each sample. The resulting phasors can be combined to produce a positive sequence phasor for a set of three phase inputs. The positive sequence quantities can be used to calculate voltage and current phase and magnitude, real and reactive power, frequency, and impedance. Since the positive sequence parameters are acquired at the same instant (within 1 microsecond), the state of the system at the measured nodes is known at the sample time. Applications to fault recording, disturbance recording, transmission and generation modelling verification, and power system stabiliser testing, are discussed.
机译:现在,最先进的技术允许以前所未有的规模测量和分析电力系统的性能。源自GPS(全球定位系统)的同步采样以及高精度sigma-delta模数转换器构成了该系统的基础,该系统可以在给定时刻在任何区域上测量电力系统的状态。每个周期采样12次,并通过递归离散傅里叶变换(DFT)算法进行处理。这将为每个样本生成输入信号的幅度和角度。可以将得到的相量组合以产生一组三相输入的正序相量。正序量可用于计算电压和电流的相位和大小,有功和无功功率,频率和阻抗。由于正序列参数是在同一时刻(在1微秒内)获取的,因此在采样时已知被测节点的系统状态。讨论了在故障记录,干扰记录,传输和发电建模验证以及电力系统稳定器测试中的应用。

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