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Hardware-in-the-loop simulator for testing wind turbine generators

Data publikacji: 16.12.2015

Czasopismo Techniczne, 2015, Elektrotechnika Zeszyt 1-E (8) 2015, s. 229-239

https://doi.org/10.4467/2353737XCT.15.044.3844

Autorzy

,
Sebastian Szkolny
Department of Power Systems and Electrical Drives, Faculty of Electrical Engineering, West Pomeranian University of Technology, Szczecin
Wszystkie publikacje autora →
Olgierd Małyszko
Department of Power Systems and Electrical Drives, Faculty of Electrical Engineering, West Pomeranian University of Technology, Szczecin
Wszystkie publikacje autora →

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Tytuły

Hardware-in-the-loop simulator for testing wind turbine generators

Abstrakt

This paper presents research issues of electric generators using systems of the Hardware-in-the-Loop (HIL) type. Using the HIL system, it is possible to reproduce the actual operating conditions of wind turbines working with different types of generators in a laboratory environment.m This approach easily and economically allows analyzing the hardware and software controlling the operation of the generator. This system has been implemented on the sbRIO National Instruments controller cooperating with regenerative frequency converter with DTC control of ABB. The paper presents all the components of this system and discusses their operation.

Bibliografia

[1] Pałka R., Szkolny S., Stanowisko do badania napędów elektrycznych z komputerowym systemem pomiarowym, Zeszyty Problemowe – Maszyny Elektryczne, 2013, nr 100k, cz. I, pp. 83–88.

[2] Małyszko O., Zeńczak M., Balance of reactive power in wind power farms, Przegląd Elektrotechniczny, 2012, R. 88, nr 10a, pp. 19–21.

[3] Małyszko O., Szkolny S., Zeńczak M., Elektroenergetyczna automatyka zabezpieczeniowa w systemie elektroenergetycznym z farmami wiatrowymi, Wiadomości Elektrotechniczne, 2010, t. 78, nr 4, pp. 16–19.

[4] Małyszko O., Szkolny S., Zeńczak M., Zastosowanie przewodów wysokotemperaturowych przy podłączaniu farm wiatrowych, Wiadomości Elektrotechniczne, 2010, t. 78, nr 4, pp. 28–29.

[5] Lubośny Z., Elektrownie wiatrowe w systemie elektroenergetycznym, WNT, Warszawa 2007.

[6] Potter C.W., Gil H., McCaa J., Wind power data for grid integration studies, IEEE PES general meeting 2007.

[7] Song Y.D., Zhang Z.Y., Peng Li, Wang W.L., Qin M., Robust adaptive variable speed control of wind power systems without wind speed measurement, Journal of Renewable and Sustainable Energy, 2013, No. 5.

[8] Vlad C., Bratcu A.I., Munteanu I., Epure S., Real-time replication of a stand-alone wind energy conversion system: Error analysis, International Journal of Electrical Power & Energy Systems, February 2014, Vol. 55, pp. 562–571.

[9] Martinez F., Herrero L.C., Santiago P., Open loop wind turbine emulator, Renewable Energy, March 2014, Vol. 63, pp. 212–221.

[10] Ruihong Yu, Yanqin Li, Jianxian Cai, Maximum Power Point Tracking from a Wind Turbine Emulator Using a DC-DC Converter Controlled, International Journal of Control and Automation, 2014, Vol. 7, No. 1, pp. 117–128.

[11] Lee J.K., Park J.Y., Oh K.Y., Park J.S., Development of Wind Turbine Simulator for Generator Torque Control, World Academy of Science, Engineering and Technology, 2011, Vol. 58, pp. 162–165.

[12] Rahelo B., Hofmann W., Gluck M., Emulation of the Static and Dynamic Behaviour of a Wind-turbine with a DC-Machine Drive, 35th Annual IEEE Power Electronics Specialists Conference Aachen, Germany, 2004, pp. 2107–2112.

[13] Song S.H., Byoung-Chang J., Lee H.I., Kim J.J., Oh J.H., Venkataramanan G., Emulation of output characteristics of rotor blades using a hardware-in-loop wind turbine simulator, Twentieth Annual IEEE Applied Power Electronics Conference and Exposition, APEC 2005, 6–10 March 2005, Vol. 3, pp. 1791–1796.

[14] Lopes L., Lhuilier J., Mukherjee A., Khokhar M., A Wind Turbine Emulator that Represents the Dynamics of the Wind Turbine Rotor and Drive Train, IEEE 36th Power Electronics Specialists Conference, PESC ‘05, 16–16 June 2005, Recife, pp. 2092–2097.

[15] Schoder K., Langston J., Steurer M., Commissioning of MW-Scale Power Hardware-in-the-Loop Interfaces for Experiments with AC/DC Converters, 39th Annual Conference of the IEEE Industrial Electronics Society, IECON, 10–13 Nov. 2013, Vienna, pp. 5364–5367.

[16] Paepen S., De Koker K., Adams P., Coussens P., Industrial drive based wind simulator for small wind turbine optimisation, International Conference on Clean Electrical Power, ICCEP, 14–16 June 2011, Ischia, pp. 786–790.

[17] Dolan D., Lehn P.W., Real-Time Wind Turbine Emulator Suitable for Power Quality and Dynamic Control Studies, International Conference on Power Systems Transients (IPST ‘05), 19–23 June 2005, Montreal, Canada, Paper No. IPST05-074.

[18] Szkolny S., Małyszko O., Symulator typu Hardware-In-The-Loop do testowania generatorów turbin wiatrowych, Zeszyty Problemowe – Maszyny Elektryczne, 2014, nr 103, cz. I, pp. 269–274.

Informacje

Informacje: Czasopismo Techniczne, 2015, Elektrotechnika Zeszyt 1-E (8) 2015, s. 229-239

Typ artykułu: Oryginalny artykuł naukowy

Tytuły:

Polski:

Hardware-in-the-loop simulator for testing wind turbine generators

Angielski:

Hardware-in-the-loop simulator for testing wind turbine generators

Autorzy

Department of Power Systems and Electrical Drives, Faculty of Electrical Engineering, West Pomeranian University of Technology, Szczecin

Department of Power Systems and Electrical Drives, Faculty of Electrical Engineering, West Pomeranian University of Technology, Szczecin

Publikacja: 16.12.2015

Status artykułu: Otwarte __T_UNLOCK

Licencja: Żadna

Udział procentowy autorów:

Sebastian Szkolny (Autor) - 50%
Olgierd Małyszko (Autor) - 50%

Korekty artykułu:

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Języki publikacji:

Angielski

Hardware-in-the-loop simulator for testing wind turbine generators

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