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Design of a maximum power tracking system for wind-energy-conversion applications

IEEE Transactions on Industrial Electronics · 2006 · Vol. 53(2) · pp. 486–494
Eftichios KoutroulisK. Kalaitzakis

Abstract

A wind-generator (WG) maximum-power-point-tracking (MPPT) system is presented, consisting of a high-efficiency buck-type dc/dc converter and a microcontroller-based control unit running the MPPT function. The advantages of the proposed MPPT method are that no knowledge of the WG optimal power characteristic or measurement of the wind speed is required and the WG operates at a variable speed. Thus, the system features higher reliability, lower complexity and cost, and less mechanical stress of the WG. Experimental results of the proposed system indicate near-optimal WG output power, increased by 11%-50% compared to a WG directly connected via a rectifier to the battery bank. Thus, better exploitation of the available wind energy is achieved, especially under low wind speeds.

Advanced Battery Technologies ResearchWind Turbine Control SystemsElectric Motor Design and AnalysisMaximum power point trackingWind powerPower optimizerWind speedMaximum power principleControl theory (sociology)Rectifier (neural networks)MicrocontrollerPower (physics)Battery (electricity)
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References
Pitch-controlled variable-speed wind turbine generation
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