DocumentCode
1596328
Title
Impact of power density maximization on efficiency of dc-dc converter systems
Author
Kolar, J.W. ; Biela, J. ; Badstubner, Uwe
Author_Institution
Power Electron. Syst. Lab., ETH Zurich, Zurich
fYear
2007
Firstpage
23
Lastpage
32
Abstract
The demand for decreasing costs and volume leads to a constantly increasing power density of industrial converter systems. In order to improve the power density further different aspects, like thermal management and electromagnetic effects must be considered in conjunction with the electrical design. Therefore, a comprehensive optimization procedure based on analytical models for minimizing volume of DC-DC converter systems has been developed at the Power Electronic Systems Laboratory of the ETH Zurich. Based on this procedure three converter topologies - a phase shift converter with current doubler and with capacitive output filter and a series-parallel resonant converter - are optimized with respect to power density for a telecom supply (400V/48V). There, the characteristic of the power density, the efficiency and the volume distribution between the components as function of frequency is discussed. For the operating points with maximal power density also the loss distribution is presented. Further more, the sensitivity of the optimum with respect to junction temperature, cooling and core material is investigated. The highest power density is achieved by the series-parallel resonant converter. For a 5 kW supply a density of approximately 12 kW/ltr. and a switching frequency of ca. 130 kHz results.
Keywords
DC-DC power convertors; phase convertors; resonant power convertors; telecommunication power supplies; DC-DC converter system; capacitive output filter; current doubler; electromagnetic effects; optimization procedure; phase shift converter; power 5 kW; power density maximization; series-parallel resonant converter; telecom supply; thermal management; Analytical models; Costs; DC-DC power converters; Energy management; Laboratories; Power electronics; Power system management; Resonance; Thermal management; Thermal management of electronics;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Electronics, 2007. ICPE '07. 7th Internatonal Conference on
Conference_Location
Daegu
Print_ISBN
978-1-4244-1871-8
Electronic_ISBN
978-1-4244-1872-5
Type
conf
DOI
10.1109/ICPE.2007.4692344
Filename
4692344
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