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Using a Matrix Converter including a Decoupled Multivariable Controller in a Wind Conversion System

Publish Year: 1389
Type: Conference paper
Language: English
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CLEANENERGY01_055

Index date: 19 November 2010

Using a Matrix Converter including a Decoupled Multivariable Controller in a Wind Conversion System abstract

The modeling and control design for a grid-connected wind-energy converter system including a matrix converter are presented. A nonlinear model is developed including equations of mechanical aerodynamic conversion, drive train, matrix converter, and squirrel-cage induction generator. The model is linearized, and the steady-state and transient responses of the small-signal model are evaluated and compared with the nonlinear system. A controller is developed to track the desired active and reactive powers delivered to the grid. Zero steady-state error is achieved using integral action with a multivariable controller designed using DC-gain decoupling method. Simulations show that the system outputs follow the references with zero steady-state errors

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Using a Matrix Converter including a Decoupled Multivariable Controller in a Wind Conversion System authors

S. Masoud Barakati

Faculty of Electrical and Computer, Sistan and Baluchestan University, Zahedan, Iran

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