Algorithm for calculating synchronous end design generators with located at stator ends two magnetic systems for wind turbines

Widespread use of synchronous generators with permanent magnet excitation in modern wind power plants requires development and upgrade of their calculation methods. Consideringthe variety of this generator type structures this is hard to make with one procedure. At the same time for a number of stan...

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Datum:2016
Автори та афіліації:
  • Y. Permynov — Institute of Renewable Energy, NAS of Ukraine
  • V. Kokhanievych — Institute of Renewable Energy, NAS of Ukraine
  • T. Zinchenko — Institute of Renewable Energy, NAS of Ukraine
Ключові слова:keywords
Hauptverfasser: Permynov, Y., Kokhanievych, V., Zinchenko, T.
Format: Artikel
Sprache:Russisch
Veröffentlicht: Institute of Renewable Energy National Academy of Sciences of Ukraine 2016
Schlagworte:
Online Zugang:https://ve.org.ua/index.php/journal/article/view/121
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Назва журналу:Vidnovluvana energetika
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Vidnovluvana energetika
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Zusammenfassung:Widespread use of synchronous generators with permanent magnet excitation in modern wind power plants requires development and upgrade of their calculation methods. Consideringthe variety of this generator type structures this is hard to make with one procedure. At the same time for a number of standard designs with synchronous generators excited by permanent magnets, there have been developed calculation algorithms that take into account the accumulated theoretical research and practical achievements.The paper suggests the calculating algorithm for end design generators with two magnetic systems based on permanent magnets being installed on stator ends; the algorithm got tested on 200 Watt generator.The calculation algorithm includes the following steps: – step 1 – choice of nominal generator parameters;– step 2 – calculation of generator parameters;– step 3 – calculation of magnetic system;– step 4 – calculation of stator parameters;– step 5 – clarifying generator electric parameters;– step 6 – calculation for a 200 Watt generator and its experimental verification.The deviation between experimental data and the developed algorithm for a 200 Watt generator does not exceed 7.5%.