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    Academic Journal

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    Academic Journal

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    Academic Journal

    Source: Alternative Energy and Ecology (ISJAEE); № 4-6 (2017); 42-52 ; Альтернативная энергетика и экология (ISJAEE); № 4-6 (2017); 42-52 ; 1608-8298

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    Relation: https://www.isjaee.com/jour/article/view/993/883; Кудря, С.А. Основы конструирования энергоустановок с возобновляемыми источниками энергии: уч. пособие / С.А. Кудря, В.М. Головко. – К.: НТУУ «КПИ», 2011. – 184 с.; Simoes, M.G. Modeling and Analysis with Induction Generators Third Edition / M.G. Simoes, F.A. Farret. – NY.: CRC Press, 2015.; Wang, Li. Dynamic performances of an isolated self-excited induction generator under various loading conditions / Li Wang, Jian-Yi Su // IEEE Trans. on Energy Conversion. – 1999. – Vol. 14. – № 1. – P. 93–100.; Trinada, K. Study of Wind Turbine based SEIG under Balanced & Unbalanced Loads and Excitation / K. Trinada, A. Kumar, K.S. Sandhu // Intr. J. of Electrical and Computer Engineering. – 2012. – Vol. 2. – № 3. – P.353–370.; Trinada, K. Wind Driven Induction Generator Study with Static and Dynamic Loads / K. Trinada, A. Kumar, K.S. Sandhu // Int. J. of Energy Science. – 2011. – Vol. 1. – № 3. – P. 151–161.; Seyoum, D. The Dynamic characteristics of an isolated self-excited induction generator driven by a wind turbine / D. Seyoum, C. Grantham, M.F. Rahman // IEEE Transactions on Industry Applications. – 2003. – Vol. 39. – № 4. – P. 936–944.; Seyoum, D. The Dynamic Analysis and Control of a Self-Excited Induction Generator Driven by a Wind Turbine: Thesis. Ph.D., University of New South Wales., 2003.; Anagreh, Y.N. Teaching the self-excited induction Generator using MATLAB / Y.N. Anagreh, Imadden. M. Al-Refae // International Journal of Electrical Engineering Education. – 2003. – Vol. 40. – P. 55–65.; Kumawat, R.K. Self-excited induction generator “A review” / R.K. Kumawat [et al.] // Internationatl Advanced Research Journal in Science Engineering and Technology, National Conference on Renewable Energy and Environment. – 2015. – Vol. 2. – P. 37–42.; Benlamoudi, A. Autonomous SEIG in a Small Wind Power Plant with Voltage and Frequency Control / A. Benlamoudi, R. Abdessemed // Serbian Journal of Electrical Engineering. – 2012. – Vol. 9. – № 3. – P. 343–359.; Muljadi, E. Investigation of Self-Excited Induction Generators for Wind Turbine Applications / E. Muljadi, J. Sallan, M. Sanz, C.P Butterfield // National Renewable Energy Laboratory. – 2000. – P.1–9.; Seyoum, D. Dynamic Stability Analysis of Induction Generators / D. Seyoum, N. Hosseinzadeh, P. Wolfs / Australasian Universities Power Engineering Conference AUPEC 2004. – 2004. – P. 137.; Senjyu, T. Transient stability analysis of induction generator using torque-time characteristic / T. Senjyu, N. Sueyoshi, K. Uezato, H. Fujita, T. Funabashi // Fifth International Conference on Power Electronics and Drive Systems, PEDS 2003. –2003. – P. 760–765.; Souza, C.L. Power system transient stability analysis including synchronous and induction generators / C.L. Souza, L.M. Neto, G.C. Guimaraes, A.J. Moraes // Proceedings of IEEE Porto Power Tech. – 2001. – P. 6.; Documentation Math work [Электронный ресурс]. – Режим доступа: http://www.mathworks.com/help/physmod/sps/powersys/ref/windturbine.html. – wind Turbine (дата обращения: 10.04.2016).; Wind Energy Handbook / T. Burton et al. – Сhichester.: John Wiley & Sons Ltd, 2001.; Slootweng, J.G. Dynamic modelling of a wind turbine with doubly fed induction generator / J.G. Slootweng, H. Polinder, W.L. Kling // IEEE Power Engineering Society Summer Meeting. – 2001. – P. 644–649.; Araújo, R. E. Induction motors: Modelling and Control / R. E. Araújo. – Rijeka: InTech, 2012; Mohan, N. Advanced Electric Drives: Analysis, Control, and Modelling Using MATLAB- Simulink / N. Mohan. – Hoboken.: John Wiley & Sons Inc, 2014.; Siegfried, H. Grid Integration of Wind Energy Conversion Systems / H. Siegfried. – Kassel.: John Wiley & Sons Ltd, 1998.; Boldea, I. Electric Machines Steady State Transients and Design with Matlab / I. Boldea, L. Tutelea. – Boca Raton.: Taylor & Francis Group, 2010.; Bose, B.K. Modern Power Electronics and AC Drives / B.K. Bose. – NJ.: Prentince hall, 2002.; Ivon, F. Comparative study of different implementations for induction machine model in Matlab- Simulink for wind turbine simulations / F. Ivon, F. Blaabjergg, A.D. Hansen, Z. Chen // IEE Workshop on Computers in Power Electronics. – 2002. – P. 58–63.; Krause, P.C. Analysis of electric machinery and drive systems / P.C. Krause, O. Wasynczuk, S.D. Sudhoff. – New York.: MacGraw-Hill, 2002.; Chee-Mun Ong. Dynamic simulation of electric machinery using MATLAB-Simulink / Chee-Mun Ong. – NJ.: Prentice Hall PTR, 1997.; Documentation Math work [Электронный ресурс]. – Режим доступа: https://www.mathworks.com/help/physmod/sps/powersys/ref/asynchronousmachine.html. – Asynchronous machine (дата обращения: 10.04.2016).; https://www.isjaee.com/jour/article/view/993

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    Academic Journal

    Source: Visnyk of Vinnytsia Politechnical Institute; No. 4 (2016); 41-46 ; Вестник Винницкого политехнического института; № 4 (2016); 41-46 ; Вісник Вінницького політехнічного інституту; № 4 (2016); 41-46 ; 1997-9274 ; 1997-9266

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  6. 6
    Academic Journal

    Source: Elektrotehnìka ta Elektroenergetika, Vol 0, Iss 1, Pp 79-85 (2017)
    Electrical Engineering and Power Engineering; No 1 (2017): Electrical Engineering and Power Engineering; 79-85
    Электротехника и электроэнергетика; No 1 (2017): Электротехника и электроэнергетика; 79-85
    Електротехніка та електроенергетика; No 1 (2017): Електротехніка та електроенергетика; 79-85

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