A new power-factor-corrected single-transformer UPS design

Phenomenal growth in the personal computer (PC) market has fueled a corresponding growth in the need for uninterruptible power supplies (UPSs) to back up the utility and prevent loss of data. This paper presents a new off-line UPS design suitable for PC backup applications. It is based on a novel is...

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Published inIEEE transactions on industry applications Vol. 36; no. 1; pp. 171 - 179
Main Authors Morrison, R., Egan, M.G.
Format Journal Article
LanguageEnglish
Published New York IEEE 01.01.2000
The Institute of Electrical and Electronics Engineers, Inc. (IEEE)
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Abstract Phenomenal growth in the personal computer (PC) market has fueled a corresponding growth in the need for uninterruptible power supplies (UPSs) to back up the utility and prevent loss of data. This paper presents a new off-line UPS design suitable for PC backup applications. It is based on a novel isolated AC/DC converter derived from the integration of a nonisolated buck-boost AC/DC converter with an isolated bidirectional dual active bridge DC/DC converter. The features of the design include input power-factor correction, a single high-frequency transformer for charging and backup, simple control, inherent current limiting, low switch voltage stresses, and zero-voltage switching of the switches over a wide operating range. The UPS output voltage is trapezoidal in shape and the transition slope can be set such that the output current crest factor is close to unity provided the values of the line filter capacitors of the PC are known.
AbstractList Phenomenal growth in the personal computer (PC) market has fueled a corresponding growth in the need for uninterruptible power supplies (UPSs) to back up the utility and prevent loss of data. This paper presents a new off-line UPS design suitable for PC backup applications. It is based on a novel isolated AC/DC converter derived from the integration of a nonisolated buck-boost AC/DC converter with an isolated bidirectional dual active bridge DC/DC converter. The features of the design include input power-factor correction, a single high-frequency transformer for charging and backup, simple control, inherent current limiting, low switch voltage stresses, and zero-voltage switching of the switches over a wide operating range. The UPS output voltage is trapezoidal in shape and the transition slope can be set such that the output current crest factor is close to unity provided the values of the line filter capacitors of the PC are known
Phenomenal growth in the personal computer (PC) market has fueled a corresponding growth in the need for uninterruptible power supplies (UPSs) to back up the utility and prevent loss of data. This paper presents a new off-line UPS design suitable for PC backup applications. It is based on a novel isolated AC/DC converter derived from the integration of a nonisolated buck-boost AC/DC converter with an isolated bidirectional dual active bridge DC/DC converter. The features of the design include input power-factor correction, a single high-frequency transformer for charging and backup, simple control, inherent current limiting, low switch voltage stresses, and zero-voltage switching of the switches over a wide operating range. The UPS output voltage is trapezoidal in shape and the transition slope can be set such that the output current crest factor is close to unity provided the values of the line filter capacitors of the PC are known.
Author Egan, M.G.
Morrison, R.
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Cites_doi 10.1109/PESC.1994.349670
10.1109/IAS.1988.25153
10.1109/PESC.1988.18193
10.1080/09398368.1995.11463363
10.1109/63.17961
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References abdelhamid (ref5) 1995; 5
ehsani (ref8) 1990
yonemori (ref3) 1989
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jain (ref9) 1997
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SubjectTerms Alternating current
Application software
Backups
Bridge circuits
Converters
Current limiters
DC-DC power converters
Direct current
Electric potential
Microcomputers
Personal computers
Stress control
Switches
Uninterruptible power systems
UPS
Voltage
Voltage control
Zero voltage switching
Title A new power-factor-corrected single-transformer UPS design
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