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Linear programming algorithm applied to power system measurement for frequency relaying

机译:线性规划算法在电力系统频率继电测量中的应用

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A new application for linear programming (LP) algorithm to power system measurements for frequency relaying is presented. The technique is based on the minimization of the sum of the absolute value of the error of the digitized bus voltage at the relay location. The proposed technique is superior to the well known least error squares (LS) technique, when the digitized voltage samples are contaminated with gross errors. It has the ability, in most cases, to reject these bad measurements in contrast to the LS which is adversely affected by the presence of bad data. Two models are used to estimate the frequency of a power system from the digitized bus voltage at the relay location. The first, is the constant-frequency model (CFM), which is used to estimate the steady state frequency deviation, while the second is the variable frequency model (VFM) which is used to estimate the transient frequency and the rate of change of frequency. Effects of sampling rate, data window size, and time-reference-location on the behaviors of the algorithm are examined. Numerical results are reported in this paper, where we compare the proposed LP algorithm, and the LS algorithm. The proposed technique can easily be applied to a microprocessor based algorithm for digital frequency relaying.
机译:提出了线性规划(LP)算法在电力系统频率中继测量中的新应用。该技术基于最小化继电器位置的数字化总线电压误差的绝对值之和。当数字化电压样本被严重误差污染时,所提出的技术优于众所周知的最小误差平方(LS)技术。与LS相比,它有能力拒绝这些错误的测量结果,而LS受到错误数据的存在的不利影响。有两种模型可用于根据继电器位置的数字化总线电压估算电源系统的频率。第一个是恒定频率模型(CFM),用于估计稳态频率偏差,第二个是可变频率模型(VFM),用于估计瞬态频率和频率变化率。研究了采样率,数据窗口大小和时间参考位置对算法行为的影响。本文报道了数值结果,我们在此比较了所提出的LP算法和LS算法。所提出的技术可以容易地应用于基于微处理器的数字频率中继算法。

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