A Global Stability of Linearizing Control of Induction Motor for PV Water Pumping Application

Author:

Salima Meziane1,Loubna Atarsia2,Riad Toufouti1

Affiliation:

1. Department of Electrical Engineering, Souk Ahras University Algeria & Laboratory of Electrotechnics and Renewable Energy LEER, Souk Ahras University, Algeria

2. Oum El Bouaghi University, Oum El Bouaghi, Algeria

Abstract

This article describes how a field oriented control can provide the same performance as it is achieved by a DC motor. However, this technique requires a mechanic sensor and is very sensitive to the variation of motor parameters which results in an undesirable coupling between the flux and the torque. To solve these problems, this paper proposes a global stability and robust nonlinear controller, applied to induction motor (IM), in order to achieve an exact decoupling between speed and flux for all motor operating conditions. The induction motor is coupled with a centrifugal hydraulic pump, powered by a photovoltaic array speeding system. The proposed system is designed for usage in rural areas or remote electricity needs in absence of the grid network. A nonlinear controller adjusts the motor speed reference to attain the maximum power point (MPPT). In presence of rotor and stator resistances and irradiation disturbance the results obtained by simulations confirm the effectiveness of the proposed method.

Publisher

IGI Global

Subject

General Medicine

Reference25 articles.

1. Efficiency optimization control of induction motor using Fuzzy logic.;D.Archana;International Journal of Soft Computing and Engineering IJSCE,2012

2. Blaschke, F. (1972). The principle of field orientation as applied to the new transvector closed-loop system for rotating-field machines. Siemens review, 34(3), 217-220.

3. Camocardi, P., Battaiotto, P., & Mantz, R. (2008, September). Wind generator with double stator induction machine. Control strategy for a water pumping application. In Proceedings of the43rd International University Power Engineering Conference UPEC ’08. IEEE.

4. FOC and DTC: two viable schemes for induction motors torque control

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