Title :
Common-Mode Voltage Reduction PWM Algorithm for AC Drives
Author :
Tallam, Rangarajan M. ; Kerkman, Russel J. ; Leggate, David ; Lukaszewski, Richard A.
Author_Institution :
Drives Bus., Rockwell Autom., Mequon, WI, USA
Abstract :
The impact of common-mode voltage (CMV) generated by pulsewidth modulation (PWM) ac drives on motor bearings is well known. Several algorithms for CMV reduction have been proposed in the literature. While a few algorithms assume ideal switching and fall apart when nonidealities like inverter dead time are considered, some others are effective only in a limited operating range of the drive. In this paper, a previously proposed algorithm is modified for practical implementation to include compensation for dead-time and reflected-wave motor overvoltage stress while still producing output voltage waveforms with reduced common-mode content. Experimental results are provided to show the reduction in CMV over the entire operating range, with other performance attributes such as reflected-wave motor overvoltage that are identical to conventional space-vector PWM. The advantages of applying the algorithm to a fully regenerative ac drive are also demonstrated.
Keywords :
AC motor drives; machine bearings; overvoltage; pulse width modulation; CMV reduction; common-mode voltage reduction PWM algorithm; inverter dead time; motor bearings; pulsewidth modulation; reflected-wave motor overvoltage stress; regenerative AC drive; space-vector PWM; AC generators; AC motors; Automation; Brushes; Filters; Pulse width modulation; Pulse width modulation inverters; Shafts; Space vector pulse width modulation; Voltage; AC drives; common-mode voltage (CMV); dead time; pulsewidth modulation (PWM); reflected wave;
Journal_Title :
Industry Applications, IEEE Transactions on
Conference_Location :
7/12/2010 12:00:00 AM
DOI :
10.1109/TIA.2010.2057396