DocumentCode :
3098206
Title :
Coupled-Magnetic Filters with Adaptive Inductance Cancellation
Author :
Lymar, D.S. ; Neugebauer, T.C. ; Perreault, D.J.
Author_Institution :
Dept. of Electr. Eng. & Comput. Sci., MIT, Cambridge, MA
fYear :
2005
fDate :
16-16 June 2005
Firstpage :
590
Lastpage :
600
Abstract :
Conventional filter circuits suffer from a number of limitations, including performance degradation due to capacitor parasitic inductance and the size and cost of magnetic elements. Coupled-magnetic filters have been developed that provide increased filter order with a single magnetic component, but also suffer from parasitic inductance in the filter shunt path due to imperfectly-controlled coupling of the magnetics. In this paper, we introduce a new approach to coupled-magnetic filters that overcomes these limitations. Filter sensitivity to variations in coupling is overcome by adaptively tuning the coupling of the magnetic circuit with feedback based on the sensed filter output ripple. This active coupling control enables much greater robustness to manufacturing and environmental variations than are possible in the conventional coupled-magnetic approach, while preserving its advantages. Moreover, the proposed technique also adaptively cancels the deleterious effects of capacitor parasitic inductance, thereby providing much higher filter performance than is achievable in conventional designs. The new technique is experimentally demonstrated in a dc/dc power converter application and is shown to provide high performance
Keywords :
DC-DC power convertors; capacitors; feedback; inductance; magnetic circuits; magnetic devices; power filters; robust control; tuning; active coupling control; adaptive inductance cancellation; adaptive tuning; capacitor parasitic inductance; coupled-magnetic filters; dc/dc power converter; feedback; filter sensitivity; magnetic circuit; magnetic elements; sensed filter output ripple; Adaptive filters; Capacitors; Circuit optimization; Costs; Coupling circuits; Degradation; Inductance; Magnetic circuits; Magnetic separation; Output feedback;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics Specialists Conference, 2005. PESC '05. IEEE 36th
Conference_Location :
Recife
Print_ISBN :
0-7803-9033-4
Type :
conf
DOI :
10.1109/PESC.2005.1581686
Filename :
1581686
Link To Document :
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