Modeling and control of an electromechanical system with a permanent magnet generator and a voltage source converter

Author:

Mazurenko LeonidORCID, ,Grebenikov ViktorORCID,Dzhura Oleksandr,Shykhnenko MaksymORCID, ,

Abstract

In the paper simulation dynamic models for the analysis of characteristics and transients of electromechanical system using a permanent magnet electric generator (PMG) connected to a variable speed fixed pitch wind turbine (WT) and a voltage source converter (VSC) mathematical models are developed. The system supplies a direct current (dc) resistive load through a controlled switch. The objective of the controlled resistive load connected to the VSC dc circuit of the system is to perform the dc output voltage stabilization for simulating the mode of generating the active power into a grid via a grid invertor. Two algorithm structures of realization of tracking the optimal WT motion trajectory in the coordinates “WT aerodynamical power – rotary speed” have been considered. The tracking algorithms function is to provide the maximization of power extraction from wind flow by WT. Electromechanical processes in the PMG – VSC system for both tracking algorithms have been investigated using developed dynamic simulation models and vector control technique of electromagnetic torque of the generator at variable WT mechanical power. The results of numerical investigations of the electromagnetic processes in the system have been analized. The efficiencies of the proposed control algorithms applied to the VSC in the considered electromechanical system have been compared and discussed.

Publisher

Lviv Polytechnic National University

Subject

General Medicine

Reference8 articles.

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2. 2. W. Qiao, L. Qu and R. G. Harley, "Control of IPM Synchronous Generator for Maximum Wind Power Generation Considering Magnetic Saturation", in IEEE Transactions on Industry Applications, vol. 45, no. 3, pp. 1095-1105, May-june 2009. doi: 10.1109/TIA.2009.2018914.

3. 3. V. V. Grebenikov and R. V. Gamaliia, "Comparative Analysis of Two Types of Generators with Permanent Magnets for Wind Turbine", 2019 IEEE International Conference on Modern Electrical and Energy Systems (MEES), kremenchuk Mykhailo Ostrohradskyi National University, September 23-25, pp. 126-129, kremenchuk, Ukraine, 2019. doi: 10.1109/MEES.2019.8896375.

4. 4. L.I.Mazurenko, O.V.Dzhura, M.V.Kramar, and M.O. Shykhnenko, "Wind energy conversion system with induction generators connected to a single static compensator", 2019 IEEE International Conference on Modern Electrical and Energy Systems (MEES), kremenchuk Mykhailo Ostrohradskyi National University, September 23-25, pp. 258-261, kremenchuk, Ukraine, 2019. doi: 10.1109/MEES.2019.8896405

5. 5. A.Hemeida, W.A.Farag, and O.A.Mahgoub, "Modeling and Control of Direct Driven PMSG for Ultra Large Wind Turbines", World Academy of Science, Engineering and Technology, pp. 1269-1275, At Venice, Italy, 2011.

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