Title :
Generalized PWM algorithm for VSI fed induction motor drives using the only sampled reference phase voltages
Author :
Bhavani, J. ; Amarnath, J. ; Rayudu, D. Subba
Author_Institution :
E.E.E. Dept., Malla Reddy Eng. Coll., Hyderabad, India
Abstract :
This paper presents a simple generalized pulse width modulation (GPWM) algorithm for a 3-phase, 2-level voltage source inverter fed induction motor drives. The space vector approach requires angle and sector estimation for the calculation of gating times of the inverter and hence increases the complexity of the PWM algorithm. However, the proposed algorithm uses the instantaneous phase voltages only. Hence, the complexity will be reduced. Moreover, the proposed approach gives the realization of various carrier based PWM algorithms that include both space vector PWM (SVPWM) and various discontinuous PWM (DPWM) algorithms by using a generalized control algorithm and is obtained via unequal sharing of zero states. In the proposed approach, by varying a constant (k ) value from zero to one, various DPWM algorithms can be generated along with the SVPWM algorithm under both the linear and over modulation regions. To validate the proposed GPWM algorithm, several numerical simulation studies have been carried out and the results have been presented. The simulation results show the effectiveness of the proposed algorithm.
Keywords :
PWM power convertors; induction motor drives; invertors; numerical analysis; 3-phase 2-level voltage source inverter fed induction motor drive; DPWM algorithm; GPWM algorithm; VSI fed induction motor drives; discontinuous PWM algorithm; generalized PWM algorithm; generalized pulse width modulation algorithm; numerical simulation; reference phase voltage; sector estimation; Complexity theory; Radio access networks; Space vector pulse width modulation; DPWM; GPWM; Induction motor drive; SVPWM;
Conference_Titel :
Power Electronics (IICPE), 2012 IEEE 5th India International Conference on
Conference_Location :
Delhi
Print_ISBN :
978-1-4673-0931-8
DOI :
10.1109/IICPE.2012.6450523