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Optimization of Frequency-Controlled Asynchronous Electric Drive for Ventilatory Loading

Received: 12 April 2017    Accepted: 18 April 2017    Published: 29 September 2017
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Abstract

The analysis of losses of power in the adjustable asynchronous electric drive and optimization of the frequency and adjustable asynchronous electric drive with ventilator loading is carried out, and also it is developed management system of the energy saving electric drive with ventilator loading. The system of the electric drive minimizing losses of engine capacity is experimentally probed.

DOI 10.11648/j.sr.20170504.11
Published in Science Research (Volume 5, Issue 4, August 2017)
Page(s) 50-56
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Adjustable Electric Drive, Ventilator Loading, Optimization, Frequency Converter, Inverter, Energy Saving Electric Drive, Experimental Researches, Minimization of Losses of Power

References
[1] Aripov N. M., Ismatkhodzhayev S. K., Usmonov Sh. Yu. The energy saving frequency and adjustable asynchronous electric drive with ventilator loading//the Uzbek log of the Problem of informatics and power engineering. – Tashkent, 2011. – No. 2. Page 74-76.
[2] Aripov N. M., Usmonov Sh. Yu. Development of the energy saving frequency and adjustable asynchronous electric drive with ventilator loading.//Electrician. 2011. No. 4. – Page 26-28.
[3] Braslavsky I. Ya., Ishmatov Z. Sh., Polyakov V. N. The energy saving asynchronous electric drive / Under the editorship of I. Ya. Braslavsky – M.: Academy, 2004. – 256 with.
[4] Bulgakov A. A. The frequency control of asynchronous electromotors. M.: Energoizdat, 1982. – 216 with.
[5] Geyler L. B. Electric drive bases, – Mn.: Vysheysh. school, 1982. – 237 pages.
[6] Ilinsky N. F., Moskalenko V. V. Elektroprivod. Power and resource-saving. – M.: ACADEMA, 2008. – 208 pages.
[7] Ilyinsky N. F., Rozhankovsky Yu. V., Gornov A. O. Energy saving. in the electric drive. – M.: Vyssh. шк., 1989. – 127c.
[8] Kostenko M. P., Piotrovsky L. M. Electrical machines, M: Energy, 1973. P. 2., 648 pages.
[9] Petrov L. P. Optimum control of the electric drive. – L.: Energy, 1971. 187 pages.
[10] Sandler A. S, Sarbatov R. S. Automatic frequency control of asynchronous engines. - M: Energy, 1974. - 328 pages.
[11] Shreyner R. T., Polyakov V. I. Extremal frequency control of asynchronous engines//Electrical engineering. – 1973. – No. 9. – Page 10 - 13.
[12] Epstein I. I. Automated electric drive of an alternating current. – M.: Energoatomizdat. 1982. –192 pages.
Author Information
  • Fergana Polytechnical Institute, Fergana, Uzbekistan

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  • APA Style

    Usmonov Shukurillo Yulbarsovich. (2017). Optimization of Frequency-Controlled Asynchronous Electric Drive for Ventilatory Loading. Science Research, 5(4), 50-56. https://doi.org/10.11648/j.sr.20170504.11

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    ACS Style

    Usmonov Shukurillo Yulbarsovich. Optimization of Frequency-Controlled Asynchronous Electric Drive for Ventilatory Loading. Sci. Res. 2017, 5(4), 50-56. doi: 10.11648/j.sr.20170504.11

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    AMA Style

    Usmonov Shukurillo Yulbarsovich. Optimization of Frequency-Controlled Asynchronous Electric Drive for Ventilatory Loading. Sci Res. 2017;5(4):50-56. doi: 10.11648/j.sr.20170504.11

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  • @article{10.11648/j.sr.20170504.11,
      author = {Usmonov Shukurillo Yulbarsovich},
      title = {Optimization of Frequency-Controlled Asynchronous Electric Drive for Ventilatory Loading},
      journal = {Science Research},
      volume = {5},
      number = {4},
      pages = {50-56},
      doi = {10.11648/j.sr.20170504.11},
      url = {https://doi.org/10.11648/j.sr.20170504.11},
      eprint = {https://download.sciencepg.com/pdf/10.11648.j.sr.20170504.11},
      abstract = {The analysis of losses of power in the adjustable asynchronous electric drive and optimization of the frequency and adjustable asynchronous electric drive with ventilator loading is carried out, and also it is developed management system of the energy saving electric drive with ventilator loading. The system of the electric drive minimizing losses of engine capacity is experimentally probed.},
     year = {2017}
    }
    

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