Please use this identifier to cite or link to this item: https://repository.sustech.edu/handle/123456789/10069
Title: Constant Voltage And Frequency Of Self-Excited Induction Generator Driven By A Variable Speed Wind Turbine
Other Titles: الجھد والتردد الثابتین للمولد ألحثي ذاتي الإثارة المدار بواسطة التوربینة الھوائیة
Authors: Atayeb, Abd alazeem Musa Mohammed
Supervisor - Nagm Aldeen Abdo Mustafa Hassanain
Keywords: Electrical Engineering(Power)
Voltage and frequency unwavering
-Born self-induction
Wind Turbine
Issue Date: 11-Dec-2014
Publisher: Sudan University of Science and Technology
Citation: Atayeb,Abd alazeem Musa Mohammed .Constant Voltage And Frequency Of Self-Excited Induction Generator Driven By A Variable Speed Wind Turbine/Abd alazeem Musa Mohammed Atayeb;Nagm Aldeen Abdo Mustafa Hassanain.-khartoum:Sudan University of Science and Technology,College of Engineering,2014.-71p:ill;28cm.-M.Sc.
Abstract: An induction generator is a type of electrical generator that is mechanically and electrically similar to an induction motor .Induction generator produce electrical power when their shaft is rotated faster than the synchronous speed of the equivalent induction motor. To excite the generator, by feed reactive power can be supplied from the grid as it used in double feed induction generator or from the external capacitor bank connected on its terminal as it used in squirrel cage (self excited induction generator) . In this thesis, control schemes for the self-excited induction generator are developed using MATLAB/SIMULINK. The mathematical model of IM is developed and capacitor excitation is determined .Two control scheme are applied one for The extracting maximum power from the wind turbine from cutin to rated wind velocity by sensing only dc link power, (boost converter). Second control strategy is developed to regulate voltage and frequency to give constant voltage-constant frequency to an isolated load. The results are obtained and discussed
Description: Thesis
URI: http://repository.sustech.edu/handle/123456789/10069
Appears in Collections:Masters Dissertations : Engineering

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