DocumentCode :
382962
Title :
A novel neural network controller and its efficient DSP implementation for vector controlled induction motor drives
Author :
Ashrafzadeh, F. ; Sachdeva, R. ; Chu, A.
Author_Institution :
R&D Center, Whirlpool Inc., MI, USA
Volume :
2
fYear :
2002
fDate :
13-18 Oct. 2002
Firstpage :
1455
Abstract :
An artificial neural network controller is experimentally implemented on the Texas Instruments TMS320C30 digital signal processor. The controller emulates indirect field oriented control for an induction motor, generating direct and quadrature current command signals in the stationary frame. In this way, the neural network performs the critical functions of slip estimation and matrix rotation internally. There are five input signals to the neural network controller, namely, a shaft speed signal, the synchronous frame present and delayed values of the quadrature axis stator current, as well as two neural network output signals fed back after a delay of one sample period. The proposed three-layer neural network controller contains only 17 neurons in an attempt to minimize computational requirements of the digital signal processor. This allows DSP resources to be used for other control purposes and system functions. For experimental investigation, a sampling period of 1 ms is employed. Operating at 33.3 MHz (16.7 MIPS), the digital signal processor is able to perform an neural network calculations in a total time of only 280 /spl mu/s or only 4700 machine instructions. Torque pulsations are initially observed, but are reduced by iterative re-training of the neural network using experimental data. The resulting motor speed step response (for several forward and reverse step commands) quickly tracks the expected response, with negligible error under steady state conditions.
Keywords :
digital control; digital signal processing chips; induction motor drives; machine vector control; neurocontrollers; 1 ms; 280 mus; 33.3 MHz; DSP implementation; DSP resources; TMS320C30 digital signal processor; control purposes; digital signal processor; direct current command signals; forward step commands; indirect field oriented control; iterative re-training; matrix rotation; motor speed step response; neural network controller; neural network output signals; quadrature axis stator current; quadrature current command signals; reverse step commands; shaft speed signal; slip estimation; stationary frame; three-layer neural network controller; torque pulsations; vector controlled induction motor drives; Artificial neural networks; DC generators; Digital signal processing; Digital signal processors; Induction generators; Induction motor drives; Induction motors; Instruments; Neural networks; Process control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industry Applications Conference, 2002. 37th IAS Annual Meeting. Conference Record of the
Conference_Location :
Pittsburgh, PA, USA
ISSN :
0197-2618
Print_ISBN :
0-7803-7420-7
Type :
conf
DOI :
10.1109/IAS.2002.1042747
Filename :
1042747
Link To Document :
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