DocumentCode
2634059
Title
Series-parallel resonant UPS with capacitive output DC bus filter for powering HFC networks
Author
Pinheiro, Humberto ; Jain, Raven
Author_Institution
UFSM, Fed. Univ. of Sant Maria, Brazil
fYear
2000
fDate
2000
Firstpage
671
Lastpage
678
Abstract
This paper presents a single high-frequency transformer full isolated uninterruptible power supply based on series-parallel resonant converters for powering hybrid fiber-coaxial (HFC) networks. The proposed UPS provides galvanic isolation for the load and the battery, and operates with high input power factor while producing a trapezoidal output voltage waveform either at 60 Hz or at 1 Hz. Small size and light weight are achieved without penalizing the overall efficiency by operating at high frequency and by ensuring zero voltage switching (ZVS) under the different operating conditions. In addition, it is demonstrated that by using capacitive output DC bus filter it is possible to reduce the current stresses during the backup mode by the appropriate selection of the transformer turns ratio. A design procedure for the selection of the key resonant circuit parameters is developed and exemplified. Experimental results obtained from a laboratory prototype demonstrate the overall performance of the system
Keywords
high-frequency transformers; hybrid fibre coax networks; resonant power convertors; switching circuits; telecommunication power supplies; uninterruptible power supplies; ZVS; battery; capacitive output DC bus filter; current stresses reduction; galvanic isolation; high input power factor; high-frequency transformer; hybrid fiber-coaxial networks; isolated uninterruptible power supply; key resonant circuit parameters; load; operating conditions; series-parallel resonant UPS; series-parallel resonant converters; telecommunication power supplies; transformer turns ratio; trapezoidal output voltage waveform; zero voltage switching; Batteries; Filters; Frequency; Galvanizing; Hybrid fiber coaxial cables; Reactive power; Resonance; Stress; Uninterruptible power systems; Zero voltage switching;
fLanguage
English
Publisher
ieee
Conference_Titel
Telecommunications Energy Conference, 2000. INTELEC. Twenty-second International
Conference_Location
Phoenix, AZ
Print_ISBN
0-7803-6407-4
Type
conf
DOI
10.1109/INTLEC.2000.884321
Filename
884321
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