AbstractGrid integration of induction generators driven by renewable energy sources requires power electronic converters to transform the grid voltage into an output voltage of appropriate magnitude and frequency. This paper presents an experimental validation on vector control of a matrix converter fed induction generator. Operation of a matrix converter is presented. The principle of vector control for induction generators is described. A matrix converter prototype 3 kW, 230 V, 50 Hz is developed. Rotor speed and flux are digitally controlled by 32-bit microcontrollers TMS320F28069. The experimental results confirm viability of the proposed control method
The matrix converter connects the three-phase power supply with the three-phase load directly throug...
Induction machines are among the most widely used electrical-to-mechanical converters in electric dr...
In recent decades, the matrix converter (MC) has emerged as a promising AC/AC converter that perform...
AbstractGrid integration of induction generators driven by renewable energy sources requires power e...
This thesis concerns the design and construction of a closed-loop controlled matrix converter induct...
International audienceThis paper presents the control design for a matrix converter, which interface...
This paper introduces an application of wind energy conversion system (WECs) with matrix converter. ...
In this article, different matrix converter (MC) control strategies are comprehensively explained. F...
The open-ended winding induction machine fed from a standard two-level Voltage Source Inverter (VSI)...
In this paper a new control system for a 4-leg Matrix Converter (MC) feeding an isolated load is dis...
This paper proposes a Capacitor Excited Induction Generator (CEIG)-Matrix Converter (MC) system for ...
The requirement of variable frequency and variable output voltage for standalone induction generator...
Alternating current (AC) induction machines are frequently used in variable speed drives with applic...
[[abstract]]The paper proposes a direct torque control (DTC) scheme for a matrix-converter-fed induc...
University of Minnesota Ph.D. dissertation. August 2011. Major: Electrical engineering. Advisor: Pro...
The matrix converter connects the three-phase power supply with the three-phase load directly throug...
Induction machines are among the most widely used electrical-to-mechanical converters in electric dr...
In recent decades, the matrix converter (MC) has emerged as a promising AC/AC converter that perform...
AbstractGrid integration of induction generators driven by renewable energy sources requires power e...
This thesis concerns the design and construction of a closed-loop controlled matrix converter induct...
International audienceThis paper presents the control design for a matrix converter, which interface...
This paper introduces an application of wind energy conversion system (WECs) with matrix converter. ...
In this article, different matrix converter (MC) control strategies are comprehensively explained. F...
The open-ended winding induction machine fed from a standard two-level Voltage Source Inverter (VSI)...
In this paper a new control system for a 4-leg Matrix Converter (MC) feeding an isolated load is dis...
This paper proposes a Capacitor Excited Induction Generator (CEIG)-Matrix Converter (MC) system for ...
The requirement of variable frequency and variable output voltage for standalone induction generator...
Alternating current (AC) induction machines are frequently used in variable speed drives with applic...
[[abstract]]The paper proposes a direct torque control (DTC) scheme for a matrix-converter-fed induc...
University of Minnesota Ph.D. dissertation. August 2011. Major: Electrical engineering. Advisor: Pro...
The matrix converter connects the three-phase power supply with the three-phase load directly throug...
Induction machines are among the most widely used electrical-to-mechanical converters in electric dr...
In recent decades, the matrix converter (MC) has emerged as a promising AC/AC converter that perform...