The Rotating Speed Set of Wind Turbine Using the Pendulum as an Angle Blades Control

Y. Yulianto, Agus Pracoyo, Bambang Priyadi

Abstract


Abstract: Besides the wind speed, the angle of the blades in the wind turbine can affect the rotational speed of the wind turbine. In order for the blade to adjust the angle of the blade automatically, it needs to be equipped with a pendulum. The focus of this article is the design and testing of wind turbine rotational speed control using a pendulum. The pendulum is positioned at a certain radius to the turbine shaft (X axis) for the sensitivity of the speed sensor and at the blade edge (Y axis) to provide torsional force on the blade. Then designed a wind turbine prototype equipped with a pendulum which is based on the characteristic angular curve when it comes to changes in wind speed. The test results show that controlling the rotational speed using a pendulum at a certain position can work quite effectively even though it cannot provide a completely constant speed.


Keywords


rotational speed; wind turbine; blade angle; pendulum

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References


K. Sholanov, A. Kabanbayev, K. Abzhaparov, “Study and Selection of Parameters ofAutomatically Controlled Wind Power Station with Swaying Sailsâ€, International Journal of Renewable Energy Research-IJRER, vol.10, No.2, pp.765-779, June 2020 (Artikel).

Wei Tong, “Wind Power Generation and Wind Turbine Designâ€, Boston, WIT Press Southampton, pp.3-48, 2010. (Book).

L. Benaaouinate, M. Khafallah, D. Voyer, A. Mesbahi, T. Bouragba, “Nonlinear Control Based on Fuzzy Logic for a Wind Energy Conversion System Connected to the Gridâ€, International Journal of Renewable Energy Research-IJRER, vol.10, No.1, pp.193-204, March, 2020. (Artikel)

D. Icaza, F. Cordova, F. Toledo,â€Modeling, Simulation and Construction of a Wind Turbine with Chain Multiplication System9 Destined to Rural Areas of the Canton Cuenca-Ecuadorâ€, Conference: 2018 7th International Conference on Renewable Energy Research and Applications (ICRERA), Dec 2018 (Conference Paper)

A. Belkaida, I. Colak, K. Kayisli, R. Bayindir, “Modeling of a Permanent Magnet Synchronous Generator in a Power Wind Generation System with an Electrochemical Energy Storageâ€, International Journal of Smart Grid, Vol.2, No.4, pp.197-202, December, 2018. (Article)

S. Wharton and J.K. Lundquist, “Atmospheric Stability Affects Wind Turbine Power Collectionâ€, IOP Publishing, Environ. Res. Lett. 7 014005, Vol. 7 Iss.1, (2012) 014005 (9pp), January 2012 (Article)

N.S. Çetin , M.A. Yurdusev, R. Ata and A. Özdamar, “Assessment of Optimum Tip Speed Ratio of Wind Turbinesâ€, Mathematical and Computational Applications, Association for Scientific Research, Vol. 10, Iss. 1, pp.147-154, April 2005. (Article)

Yu-Jen Chena, Yi-Feng Tsaib, Chang-Chi Huangc, Meng Hsien Lid, Fei-Bin Hsiaoe, “The Design and Analysis of Passive Pitch Control for Horizontal Axis Wind Turbineâ€, The 6th International Conference on Applied Energy - ICAE2014, Published by Elsevier Ltd., Energy Procedia, vol. 61 (2014) pp. 683-686. Januari 2015. (Conference Paper)

M.M. Pedersen, T.J. Larsen, H.A. Madsen, and S.J. Andersen, “Free-flow Wind Speed from A Blade-mounted Flow Sensorâ€, Wind Energ. Sci., vol. 3, pp.121–138, March 2018 (Article)

Rus T., Rus L.F., Abrudan A., Domnita F.,Mare R., “Experimental Tests in Equipping Vertical Axis Wind Turbines withElectric Generatorâ€, International Journal of Renewable Energy Research-IJRER, vol.6, No.2, pp.465-471, 2016. (Artikel)

I. Herráez, B. Akay, G.J.W. van Bussel, J. Peinke1, and B. Stoevesandt, “Detailed Analysis of The Blade Root Flow of a Horizontal Axis Wind Turbineâ€, Wind Energ. Sci., vol. 1, pp.89–100, Januari 2016 (Discussion paper)

D. K. Arya, L. Dewan, “Speed Control of Variable Speed Wind Turbine Systemâ€, 2015 International Conference on Energy, 2015 International Conference on Energy, Power and Environment: Towards Sustainable Growth (ICEPE), IEEE, DOI: 10.1109/EPETSG.2015.7510078, Shillong, India, July 2016. (Conference Paper)

F. Zhou, J. Liu, “Pitch Controller Design of Wind Turbine Based on Nonlinear PI/PD Control, Shock and Vibrationâ€, Xi’an University of Technology, DOI: 10.1155/2018/7859510, 14 pages, Xi’an-China, October 2018.

R. Gao, Z. Gao, “Pitch Control for Wind Turbine Systems Using Optimization, Estimation and Compensationâ€, Renewable Energy, vol. 91, Pages 501-515. June 2016. (Article)

S. Baburajan1, A. Ismail, “Design and Control of the Pitch of Wind Turbine through PIDâ€, International Research Journal of Engineering and Technology (IRJET) , vol. 04, Iss. 09, pp. 657-661, September 2017. (Article)

M. Arboui, A. Essadki, T. Nasser, H. Chalawane, “Comparative Analysis of ADRC & PI Controllers Used in Wind Turbine System Driving a DFIGâ€, â€, International Journal of Renewable Energy Research-IJRER, vol. 7 No.4. pp.1816-1824, 2017. (Article)

T. Pourseif, A. Afzalian, “Pitch Angle Control of Wind Turbine Systems in Cold Weather Conditions using µ Robust Controllerâ€, International Journal of Energy and Environmental Engineering, vol.8, pp.197–207, DOI 10.1007/s40095-017-0231-y, March 2017. (Article)

R. Garduno, M. Borunda, M. A. Hernandez, and G. Zubeldia, “Speed Control of a Wind Turbine Using Fuzzy Logicâ€, Advances in Soft Computing, pp.522-536, DOI: 10.1007/978-3-030-33749-0_42, October 2019 (Book Chapter)

M. Chirca, M. Dranca, C. A. Oprea, P. D. Teodosescu, A. M. Pacuraru, C. Neamtu and S. Breban, “Electronically Controlled Actuators for a Micro Wind Turbine Furling Mechanismâ€, Energies, vol.13 Iss. 14, August 2020. (Article)

B.O. Karimovitch, B.Z . Kuttybekovitch, (Publication), “Pendulum wind turbineâ€, Patent, International application published with international search report, French, Russian, Publication of WO2010098648A1. 2010. (Patent)

王å·, “Pendulum speed control wind driven generatorâ€, Patent, Application CN200910073819A (China), 2010. (Patent)




DOI (PDF): https://doi.org/10.20508/ijrer.v10i4.11377.g8083

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