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Simulated Annealing Optimization Algorithm for Electric Power Systems Quality Analysis: Harmonics and Voltage Flickers

机译:电力系统质量分析模拟退火优化算法:谐波和电压闪烁

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This paper introduces new applications to Simulated Annealing (SA) optimization algorithm for measuring the voltage flicker magnitude and frequency as well as the harmonics contents of the voltage signal, for power quality analysis Moreover, the power system voltage magnitude, frequency and phase angle of the fundamental component is estimated by the proposed technique. This is a nonlinear optimization problem in continuous variables. An efficient SA algorithm with an adaptive cooling schedule and a new method for variable discretization are implemented. The new algorithm minimizes the sum of the absolute value of the error in the estimated voltage signal, and does need any approximation in modeling the voltage signal. The proposed algorithm is tested on simulated and actual recorded data. Effects of sampling frequency as well as the number of samples on the estimated parameters are discussed. It is shown that the proposed algorithm is able to identify the parameters of the voltage signal.
机译:本文介绍了模拟退火(SA)优化算法的新应用,用于测量电压闪烁幅度和频率以及电压信号的谐波内容,对于电力质量分析,电力系统电压幅度,频率和相位角基本组件估计了该技术。这是连续变量中的非线性优化问题。实现了具有自适应冷却时间表的有效SA算法和可变离散化的新方法。新算法最小化估计电压信号中误差的绝对值的总和,并且在建模电压信号时确实需要任何近似。在模拟和实际记录数据上测试了所提出的算法。讨论了采样频率的影响以及估计参数上的样品数量。结果表明,该算法能够识别电压信号的参数。

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