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A method to reduce common mode and differential mode dv/dt at the motor terminals in PWM rectifier/PWM inverter type adjustable speed drive systems

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2 Author(s)
Rendusara, D. ; Dept. of Electr. Eng., Texas A&M Univ., College Station, TX, USA ; Enjeti, P.

In this paper, it is shown via analysis and experiments that common mode dv/dt transitions at motor terminals is twice as severe in a regenerative (PWM rectifier/PWM inverter) type ASD compared to a nonregenerative (diode rectifier/PWM inverter) type ASD system. It should be noted that higher common mode dv/dt at the motor terminals results in: (i) higher induced shaft voltage at each dv/dt transition, which can result in bearing currents and cause pitting/fluting of the bearings, and (ii) higher leakage currents to ground which can interfere with the plant zero sequence protection system. The paper proposes a method to reduce these effects. An input/output filter topology with interconnection to DC-link midpoint is proposed. This method reduces both common mode and differential mode dv/dt at the motor terminals, permits the use of long motor leads, and the filter components can be installed within the rectifier/inverter enclosure. Finally experimental results are presented on a 20 kW PWM ASD test stand

Published in:
Applied Power Electronics Conference and Exposition, 1998. APEC '98. Conference Proceedings 1998., Thirteenth Annual  (Volume:2 )

Date of Conference: 15-19 Feb 1998

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