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PERFORMANCE OF SENSORLESS CONTROL OF PERMANENT MAGNET SYNCHRONOUS GENERATOR IN WIND TURBINE SYSTEM

-1850. [3] ERRAMI Y., MAAROUFI M., OUASSAID M., Modeling and control strategy of PMSG based variable speed wind energy conversion system, International Conference on Multimedia Computing and Systems (ICMCS), 2011, 1-6. [4] FAN S., WANG P., WEN C., A new sensorless control strategy used in direct-drive PMSG wind power system, 2nd IEEE International Symposium on Power Electronics for Distributed Generation Systems (PEDG), 2010, 611-615. [5] GAJEWSKI P., PIEŃKOWSKI K., Control of a Variable Speed Wind Turbine System with PMSG Generator

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The Performance of Direct-Driven Variable Speed Wind Turbine with PMSG and Converter Systems

References [1] EL HANI S., GUEDIRA S., EL ALAMI N., Maximum Power Tracking Control Wind Turbine Based on Permanent Magnet Synchronous Generator with Complete Converter, International Journal of Smart Grid and Clean Energy, 2014, Vol. 3, No. 1, 15-21. [2] GAJEWSKI P., PIEŃKOWSKI K., Control of a Variable Speed Wind Turbine System With PMSG Generator, Maszyny Elektryczne - Zeszyty Problemowe, 2015, Vol. 107, No. 3, 75-90. [3] GAJEWSKI P., PIEŃKOWSKI K., Analysis of a Wind Energy Converter System with PMSG

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A comparative study between four-level NSVM and three-level NSVM technique for a DFIG-based WECSs controlled by indirect vector control

control strategies on the rotor side converter in DFIG-based wind turbines,” Energy Procedia, Elsevier, Vol. 100, pp. 551-555, 2016. [6] Y. S. Rao, A. J. Laxmi, “Direct torque control of doubly fed induction generator based wind turbine under voltage dips,” International Journal of Advances in Engineering & Technology, Vol. 3, pp. 711-720, 2012. [7] S. Massoum, A. Meroufel, A. Massoum, P. Wira, “ A direct power control of the doubly-fed induction generator based on the SVM strategy,” Elektrotehniski Vestnik, Vol. 45, No. 5, pp. 235-240, 2017. [8] S. M

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Non-Cartesian Frame Transformation-Based Control of a Three-Phase Power Converter During Unbalanced Voltage Dip – Part I: Transformation Principles

References Abdeltawab, H. H. and Mohamed, Y. A. R. I. (2016). Robust Energy Management of a Hybrid Wind and Flywheel Energy Storage System Considering Flywheel Power Losses Minimization and Grid-Code Constraints. IEEE Transactions on Industrial Electronics , 63(7), pp. 4242–4254. Abdel-Khalik, A. S., Hamad, M. S., Massoud, A. M. and Ahmed, S. (2018). Postfault Operation of a Nine-Phase Six-Terminal Induction Machine Under Single Open-Line Fault. IEEE Transactions on Industrial Electronics , 2, pp. 1084–1096. Afshari, E., Moradi, G. R., Rahimi

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Frequency Based Islanding Detection Methods in Power Electronic Converters

References [1] WŁAS M., Distributed generation in power supply system, Zeszyty Naukowe Wydziału Elektrotechniki i Automatyki Politechniki Gdańskiej, 2010, No. 27, 39-42. [2] ROPP M., BOWER W., Evaluation of islanding detection methods for utility-interactive inverters in photovoltaic systems, Sandia National Laboratories, US, November 2002. [3] SKOCIL T., GOMIS-BELLMUNT O., MONTESINOS-MIRACLE D., GALCERAN-ARELLANO S., RULL-DURAN J., Passive and active methods of islanding for PV systems, 13th European Conference

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Control of a Doubly Fed Induction Generator at Grid Voltage Imbalance

REFERENCES [1] L iserre M., C ardenas R., M olinas M., R odriguez J., Overview of multi-MW wind turbines and wind parks , IEEE Trans. Ind. Electron., 2011, 58(4), 1081–1095. [2] M üller S., D eicke M., D e D oncker R., Doubly fed induction generator systems for wind turbines , Ind. Appl. Mag. IEEE, 2002, 8(3), 26–33. [3] K uwabara T., S hibuya A., F uruta H., K ita E., M itsuhashi K., Design and dynamic response characteristics of 400 MW adjustable speed pumped storage unit for Ohkawachi Power Station , IEEE Trans. Energy Convers

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PARAMETRIC ANALYSIS FOR THE DESIGN OF A 4 POLE RADIAL PERMANENT MAGNET GENERATOR FOR SMALL WIND TURBINES

References [1] MALINOWSKI M., MILCZAREK A., KOT R., GORYCA Z., SZUSTER J.T., Optimized Energy-Conversion Systems for Small Wind Turbines: Renewable energy sources in modern distributed power generation systems, IEEE Power Electronics Magazine, Sept. 2015, 2, 3, 16-30. [2] WANG Y., XU L., Peak Power Improvement of Interior Permanent Motor for Electrified Vehicles, IEEE Electrification Magazine, June 2014, 2, 2, 25-30. [3] EL-REFAIE A.M., Motors/generators for traction/propulsion applications: A review, IEEE

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Synchrogenverter – Parallel Connection of Synchronous Generator and Power Converter with Energy Storage

References [1] WEILIN LI, XIAOBIN ZHANG, HUIMIN LI, A Novel Digital Automatic Voltage Regulator for Synchronous Generator, Conference Proceedings POWERCON, 2010. [2] AHMED A. MOHAMED, MOHAMED ELSHAER, OSAMA A. MOHAMMED, Reactive Power Compensation Control for Stand - Alone Synchronous Generator-Based Wind Energy Conversion System, Conference Proceedings IECON, 2010. [3] SHARMA P., BHATTI T.S., RAMAKRISHNA K.S.S., Control of reactive power of autonomous winddiesel hybrid power systems, Conference Proceedings

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State Observer for Doubly-Fed Induction Generator

ardenas R., P ena R., C lare J., A sher G., P roboste J., MRAS observers for sensorless control of doubly-fed induction generators , IEEE Trans. Power Electron., 2008, 23(3), 1075–1084. [7] G uzinski J., D iguet M., K rzeminski Z., L ewicki A., A bu -R ub H., Application of speed and load torque observers in high-speed train drive for diagnostic purpose s, IEEE Trans. Ind. Electron., 2009, 56(1), 248–256. [8] K rzemiński Z., Sensorless multiscalar control of double fed machine for wind power generators , Proc. Power Conversion Conference, PCC

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ANTI-WINDUP STRATEGY FOR AN LQ CURRENT CONTROLLER WITH OSCILLATORY TERMS FOR THREE-PHASE GRID-TIE VSCs IN SMES SYSTEMS

European Conf. on Electronics and Applications (EPE 2011), 2011, 1-10. [15] BOTTRELL N., GREEN T.C., Comparison of Current-Limiting Strategies During Fault RideThrough of Inverters to Prevent Latch-Up and Wind-Up, IEEE Transactions on Power Electronics, 2014, 29, 7, 3786-3797. [16] SZYPULSKI M., IWAŃSKI G., Sensorless State Control of Stand-Alone Doubly Fed Induction Generator Supplying Nonlinear and Unbalanced Loads, IEEE Transactions on Energy Conversion, 2016, PP, 99, 1-1. [17] HARNEFORS L., YEPES A.G., VIDAL A

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