Mathematical Modeling of a Linear-Induction Motor Based on Detailed Equivalent Circuits

Результат исследований: Вклад в журналСтатьяНаучно-исследовательскаярецензирование

6 Цитирования (Scopus)
Язык оригиналаАнглийский
Страницы (с-по)270-274
Число страниц5
ЖурналRussian Electrical Engineering
Том89
Номер выпуска4
DOI
СостояниеОпубликовано - 1 апр 2018

Отпечаток

Linear motors
Equivalent circuits
Induction motors
Magnetic circuits
Traction motors
Electric drives
Derivatives
Networks (circuits)
Electric potential
Magnetic flux
Braking
Poles
Multilayers
Finite element method
Industry

Ключевые слова

    Предметные области ASJC Scopus

    • Electrical and Electronic Engineering

    ГРНТИ

    • 45.00.00 ЭЛЕКТРОТЕХНИКА

    Уровень публикации

    • Перечень ВАК

    Цитировать

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    title = "Mathematical Modeling of a Linear-Induction Motor Based on Detailed Equivalent Circuits",
    keywords = "accuracy evaluation, detailed equivalent circuits, finite-element method, linear-induction machine, magnetic field",
    author = "Sarapulov, {F. N.} and Frizen, {V. E.} and Shvydkiy, {E. L.} and Smol’yanov, {I. A.}",
    year = "2018",
    month = "4",
    day = "1",
    doi = "10.3103/S1068371218040119",
    language = "English",
    volume = "89",
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    journal = "Russian Electrical Engineering",
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    publisher = "Allerton Press Inc.",
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    }

    Mathematical Modeling of a Linear-Induction Motor Based on Detailed Equivalent Circuits. / Sarapulov, F. N.; Frizen, V. E.; Shvydkiy, E. L.; Smol’yanov, I. A.

    В: Russian Electrical Engineering, Том 89, № 4, 01.04.2018, стр. 270-274.

    Результат исследований: Вклад в журналСтатьяНаучно-исследовательскаярецензирование

    TY - JOUR

    T1 - Mathematical Modeling of a Linear-Induction Motor Based on Detailed Equivalent Circuits

    AU - Sarapulov, F. N.

    AU - Frizen, V. E.

    AU - Shvydkiy, E. L.

    AU - Smol’yanov, I. A.

    PY - 2018/4/1

    Y1 - 2018/4/1

    KW - accuracy evaluation

    KW - detailed equivalent circuits

    KW - finite-element method

    KW - linear-induction machine

    KW - magnetic field

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    U2 - 10.3103/S1068371218040119

    DO - 10.3103/S1068371218040119

    M3 - Article

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    JO - Russian Electrical Engineering

    JF - Russian Electrical Engineering

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