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Wind Power Prediction Considering Nonlinear Atmospheric Disturbances

机译:考虑非线性大气扰动的风电功率预测

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This paper considers the effect of nonlinear atmospheric disturbances on wind power prediction. A Lorenz system is introduced as an atmospheric disturbance model. Three new improved wind forecasting models combined with a Lorenz comprehensive disturbance are put forward in this study. Firstly, we define the form of the Lorenz disturbance variable and the wind speed perturbation formula. Then, different artificial neural network models are used to verify the new idea and obtain better wind speed predictions. Finally we separately use the original and improved wind speed series to predict the related wind power. This proves that the corrected wind speed provides higher precision wind power predictions. This research presents a totally new direction in the wind prediction field and has profound theoretical research value and practical guiding significance.
机译:本文考虑了非线性大气干扰对风能预测的影响。引入了Lorenz系统作为大气干扰模型。提出了三种结合洛伦兹综合扰动的改进风预报模型。首先,我们定义了洛伦兹扰动变量的形式和风速摄动公式。然后,使用不同的人工神经网络模型来验证新想法并获得更好的风速预测。最后,我们分别使用原始和改进的风速序列来预测相关的风力。这证明了校正后的风速可以提供更高精度的风能预测。该研究为风能预测领域提出了一个全新的方向,具有深远的理论研究价值和实践指导意义。

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