DFIM vector control sensitivity with current sensor faults
Author:
Abdellatif Meriem,Pietrzak‐David Maria,Slama‐Belkhodja Ilhem
Abstract
PurposeThe purpose of this paper is to present a doubly fed induction machine (DFIM) operating in motor mode and supplied by two voltage source inverters (in stator and rotor sides).Design/methodology/approachThe aim is to analyze the current sensor fault effects on the stator flux‐oriented control according to the current input‐output decoupling. This justifies the necessity of a reconfiguration control in order to satisfy the system service continuity. Also, a theoretical development of sensitivity coefficients gives an idea about control robustness toward a current sensor fault.FindingsThis paper emphasizes the system performance close dependency to the current sensor outputs accuracy. Moreover, simulation results point out the operation system deterioration in case of current sensor fault, which leads in most cases to its shut down in contrast with the industrial expectations. In this paper, the suggested solution is the DFIM speed drive control reconfiguration when a current sensor fault occurs in order to ensure system service continuity. MATLAB‐Simulink simulation results illustrate the system behavior before and after a current sensor fault. System performance preservation is performed after control reconfiguration.Originality/valueThis solution presented in this paper is relevant, especially because of its simplicity.
Subject
Applied Mathematics,Electrical and Electronic Engineering,Computational Theory and Mathematics,Computer Science Applications
Reference12 articles.
1. Abdellatif, M., Pietrzak‐David, M. and Slama‐Belkhodja, I. (2008a), “Control reconfiguration of a doubly fed induction motor drive with a current sensor fault”, ELECTRIMACS'08, Quebec, Canada, June 8‐11. 2. Abdellatif, M., Pietrzak‐David, M. and Slama‐Belkhodja, I. (2008b), “Sensitivity of the current input‐output decoupling vector control of the DFIM versus current sensor faults”, paper presented at the 13th International Power Electronics and Motion Control Conference, EPE‐PEMC, Poznan, September 1‐3. 3. Bahri, I., Naouar, M.‐W., Slama‐Belkhodja, I. and Monmasson, E. (2007), “FPGA‐based FDI of faulty current sensor in current controlled PWM converters”, paper presented at IEEE‐EUROCON 2007, Warsaw, September 9‐12. 4. Bolognani, S. and Zigliotto, M. (2002), “Essentials of IM parameters measurement for FOC drives tuning”, ICEM 2002, Bruges, August, pp. 26‐8. 5. Galotto, L., Bose, B.K., Leite, C., Pereira Pinto, J.O., Borges da Silva, L.E. and Lambert‐Torres, G. (2007), “Auto‐associative neural network based sensor drift compensation in indirect vector controlled drive system”, paper presented at the 33rd Annual Conference of the IEEE Industrial Electronics Society (IECON), Taipei, November 5‐8.
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