A Twofold Daubechies-Wavelet-Based Module for Fault Detection and Voltage Regulation in SEIGs for Distributed Wind Power Generation

@article{Iyer2013ATD,
  title={A Twofold Daubechies-Wavelet-Based Module for Fault Detection and Voltage Regulation in SEIGs for Distributed Wind Power Generation},
  author={K. Lakshmi Varaha Iyer and Xiaomin Lu and Yasir Usama and Vamsi Ramakrishnan and Narayan C. Kar},
  journal={IEEE Transactions on Industrial Electronics},
  year={2013},
  volume={60},
  pages={1638-1651}
}
As Canada and the world move rapidly toward increased reliance on wind power generation, self-excited induction generators (SEIGs) will play an important role in distributed wind power generation (DWPG). Understanding the significance and prospects of SEIGs in DWPG, first, this paper elucidates the significance of fault detection (FD) and voltage regulation (VR) in the aforementioned application. A comprehensive analysis of VR and faults on niche industrial 7.5-hp copper-rotor SEIG and… CONTINUE READING

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Key Quantitative Results

  • Therefore, these data indicate that the lifetime of motors using copper rotors may be extended by 50% or more, with proper maintenance. The nameplate efficiency of a practical in-service 15-hp 1800 r/min aluminum-rotor induction machine today is about 89.5%, which is below the 1997 Energy Policy Act standard of 91%.

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Data Denoising and Compression for Smart Grid Communication

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