Abstract

In this paper. the method of direct torque control in the presence of a sliding-mode speed controller is proposed for a small wind turbine being used in water heating applications. This concept and control system design can be expanded to grid connected or off-grid applications. Direct torque control of electrical machines has shown several advantages including very fast dynamics torque control over field-oriented control. Moreover. the torque and flux controllers in the direct torque control algorithms are based on hvsteretic controllers which are nonlinear. In the presence of a sliding-mode speed control. a nonlinear control system can be constructed which is matched for AC/DC conversion of the converter that gives fast responses with low overshoots. The main control objectives of the proposed small wind turbine can be maximum power point tracking and soft-stall power control. This small wind turbine consists of permanent magnet synchronous generator and external wind speed. and rotor speed measurements are not required for the system. However. a sensor is needed to detect the rated wind speed overpass events to activate proper speed references for the wind turbine. Based on the low-cost design requirement of small wind turbines. an available wind speed sensor can be modified. or a new sensor can be designed to get the required measurement. The simulation results will be provided to illustrate the excellent performance of the closed-loop control system in entire wind speed range (4-25 m/s).

Highlights

  • Small-scale wind turbines are becoming more popular in modern household applications

  • The main control objectives of the proposed small wind turbine can be maximum power point tracking and soft-stall power control. This small wind turbine consists of permanent magnet synchronous generator and external wind speed, and rotor speed measurements are not required for the system

  • The developed direct torque control (DTC) sliding-mode controller provides a fast response with less overshoot, which is appropriate for the proposed small wind turbine application

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Summary

Introduction

Small-scale wind turbines are becoming more popular in modern household applications. The method of direct torque control in the presence of a sliding-mode speed controller is proposed for a small wind turbine being used in water heating applications. In this study, a combined DTC and sliding mode control are used to improve performance from the proposed soft-stall power control method.

Results
Conclusion

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