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ieee industry applications society annual meeting | 2004

Zero vector modulation method for voltage source inverter operating near zero output frequency

Silva Hiti; David Tang; Constantin Stancu; Eric R. Ostrom

A new zero vector modulation (ZVM) method is developed for usage in voltage source inverters operating near zero output frequency. In automotive applications during hill-holding maneuver a condition occurs requiring the electric drive system to produce high output current at zero or near zero output frequency. This mode of operation represents an increased stress for the VSI, since, depending upon the chosen modulation strategy, individual switch losses can exceed those occurring in normal operating modes. In the proposed ZVM method, the additional degree of freedom, choice of zero vectors, is used to distribute conduction losses among the inverter switches in the leg carrying the largest current. The zero vectors are altered periodically, at relatively low frequency (10 Hz-100 Hz). The method utilizes the fact that near zero speed, the average output voltage is small, and the time for which a zero vector is applied is significant. The method was tested experimentally on a 600 V, 400 A/sub rms/ inverter equipped with thermal-couples for the junction temperature measurements. For the tested inverter, the ZVM method enabled increased current rating at zero output fundamental frequency compared to commonly use discontinuous PWM method by approximately 15% and by about 30% compared to the space vector PWM modulation method with the same switching frequency.


Archive | 2007

Protection for permanent magnet motor control circuits

David Tang; Brian A. Welchko; Silva Hiti; Mark L. Selogie


Archive | 2007

Fault handling of inverter driven PM motor drives

Brian A. Welchko; Jonathan B. Rancho Santa Margaritia Huse; Silva Hiti; Brendan M. Conlon; Constantin C. Stancu; Khwaja M. Rahman; David Tang; William R. Milford Cawthorne


Archive | 2008

Low inductance interconnect device for a power capacitor component

Mark D. Korich; David Tang; Mark L. Selogie


Archive | 2011

Systems and methods for monitoring current in an electric motor

Brian A. Welchko; Silva Hiti; Ronald W. Whittier Young; David Tang; Gregory S. Smith


Archive | 2008

INTERFACE ASSEMBLIES FOR USE WITH INVERTERS OF VEHICLES

Mark D. Korich; Young Doo; David Tang; Mark L. Selogie


Archive | 2007

LIQUID-COOLED INVERTER ASSEMBLY

Mark D. Korich; Gregory S. Smith; George John; David Tang; Karl D. Conroy


Archive | 2008

LOW INDUCTANCE BUSBAR

Gholamreza Esmaili; Konstantinos Triantos; Constantin C. Stancu; Larry A. Hagerty; David Tang; Mark L. Selogie; Mark D. Korich


Archive | 2008

Stromrichter mit einem flüssiggekühlten Kondensator und einer Busstruktur mit niedriger Induktivität

Mark D. Korich; David Tang; Mark L. Selogie; Young Doo


Archive | 2008

DC BUS DISCHARGE IN AN ELECTRIC MOTOR SYSTEM

Silva Hiti; David Tang; Brian A. Welchko; Milun Perisic; Constantin C. Stancu

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Constantin C. Stancu

California Institute of Technology

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Silva Hiti

Seoul National University

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James M. Nagashima

California Institute of Technology

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