Separation characteristics between time domain and frequency domain of wireless power communication signal in wind farm

被引:0
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作者
Jie Wan
Kun Yao
E. Peng
Yong Cao
Yuguang NIU
Jilai Yu
机构
[1] Harbin Institute of Technology,Fundamental Space Science Research Center
[2] Harbin Institute of Technology,Postdoctoral Research Station of Electrical Engineering
[3] The University of Hong Kong,Shenzhen Research Institute
[4] Harbin Institute of Technology,School of Mechanical Engineering and Automation
[5] The State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources (North China Electric Power University),School of Electrical Engineering & Automation
[6] Harbin Institute of Technology,undefined
关键词
Power of wind turbine; FFT; Mallat; Instantaneous power spectrum; Time domain fluctuation; Time-frequency separation; Turbulent energy transport; Turbine energy transform;
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中图分类号
学科分类号
摘要
Understanding the intrinsic characteristics of wind power is important for the safe and efficient parallel function of wind turbines in large-scale wind farms. Current research on the spectrum characteristics of wind power focuses on estimation of power spectral density, particularly the structural characteristics of Kolmogorov’s scaling law. In this study, the wavelet Mallat algorithm, which is different from the conventional Fourier transform, with compactly supported characteristics is used to extract the envelope of the signal and analyze the instantaneous spectral characteristics of wind power signals. Then, the theory for the change in the center frequency of the wind power is obtained. The results showed that within a certain range, the center frequency decreases as the wind power increases by using enough wind farm data. In addition, the center frequency remains unchanged when the wind power is sufficiently large. Together with the time domain characteristics of wind power fluctuation, we put forward the time-frequency separation characteristics of wind power and the corresponding physical parameter expressions, which corresponds to wind speed’s amplitude and frequency modulation characteristics. Lastly, the physical connotation of the time-frequency separation characteristics of wind power from the perspective of atmospheric turbulent energy transport mechanism and wind turbine energy transfer mechanism is established.
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