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Fast adaptive schemes for tracking voltage phasor and local frequency in power transmission and distribution systems

机译:用于跟踪电压相量和电力传输系统中的局部频率的快速自适应方案

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Real-time measurements of voltage phasor and local frequency deviation find applications in computer-based relaying, static state estimation, disturbance monitoring and control. Two learning schemes for fast estimation of these basic quantities are proposed. The problem was approached from a system identification perspective, in opposition to the well-established extended Kalman filtering (EKF) technique. It is shown that, from a simple nonlinear model of the system voltage which involves only two parameters, the recursive least squares (RLS) and the least mean squares (LMS) algorithms can each provide dynamic estimates of the voltage phasor. The finite derivative of the phase deviation, followed by a moving-average filter, then leads to the local frequency deviation. A constant forgetting factor included in these algorithms provides both fast adaptation in time-varying situations and good smoothing of the estimates when necessary.
机译:电压量相和局部频率偏差的实时测量在基于计算机的中继,静态估计,干扰监测和控制中找到应用。提出了两个用于快速估计这些基本量的学习方案。从系统识别角度接近了问题,反对建立了良好的扩展卡尔曼滤波(EKF)技术。结果表明,从系统电压的简单非线性模型,涉及两个参数的系统电压,递归最小二乘(RLS)和最小平均正方形(LMS)算法各可以提供电压量相的动态估计。相位偏差的有限衍生,其次是移动平均滤波器,然后导致局部频率偏差。这些算法中包括的常量遗忘因子提供了在时变种的快速调整,并且在必要时对估计的良好平滑。

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