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Grid connected wind driven permanent magnet synchronous generator with high frequency solid state transformer

Publication Type : Conference Paper

Publisher : Proceedings of IEEE International Conference on Emerging Technological Trends in Computing, Communications and Electrical Engineering,

Source : Proceedings of IEEE International Conference on Emerging Technological Trends in Computing, Communications and Electrical Engineering, ICETT 2016, Institute of Electrical and Electronics Engineers Inc. (2017)

Url : https://www.scopus.com/inward/record.uri?eid=2-s2.0-85017283106&doi=10.1109%2fICETT.2016.7873707&partnerID=40&md5=1115832fdbe56a9e354eab53eecb210d

ISBN : 9781509037513

Keywords : Analytical calculation, DC transformers, Electric generators, High frequency transformers, Incremental conductance, Incremental conductance algorithm, Magnets, MATLAB, Maximum power point trackers, Maximum Power Point Tracking, Multistage converters, Permanent magnet synchronous generator, Permanent magnets, Solid state transformer (SST), Synchronous generators, Synchronous Reference Frame

Campus : Coimbatore

School : School of Engineering

Department : Electrical and Electronics

Year : 2017

Abstract : This paper presents the control of grid connected wind driven permanent magnet synchronous generator through solid state transformer with a high frequency multistage converter interconnect. Maximum power point tracking is carried out in the high frequency generator side converter stage where as the grid side converter takes care of the synchronization. The model parameters for the high frequency transformer are obtained by analytical calculation and the same is used in the simulation. A push pull converter with incremental conductance algorithm on the generator side tracks the MPP. It also converts the dc output into high frequency wave so that it can be directly applied to the primary of the high frequency transformer. The rectified secondary voltage is grid synchronized through the grid side inverter with synchronous reference controller. The entire system including the high frequency transformer is simulated in MATLAB/Simulink for a 2.5 kW PMSG. © 2016 IEEE.

Cite this Research Publication : P. V. Sandeep and Dr. Vijayakumari A., “Grid connected wind driven permanent magnet synchronous generator with high frequency solid state transformer”, in Proceedings of IEEE International Conference on Emerging Technological Trends in Computing, Communications and Electrical Engineering, ICETT 2016, 2017.

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