2008
DOI: 10.1109/pesc.2008.4591934
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Novel multi-element resonant converters for front-end dc/dc converters

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Cited by 62 publications
(32 citation statements)
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“…Multielement RPCs combine all the properties of the RPC topologies of lower order, absorbing all the parasitic elements and enabling operation with low switching losses at high switching frequencies. Analyses of multielement resonant converters are documented in [87]- [89]. A review of multielement resonant converters is in [90], and a comparison of different topologies of multielement RPCs is presented in [91].…”
Section: Multielement Rpcsmentioning
confidence: 99%
“…Multielement RPCs combine all the properties of the RPC topologies of lower order, absorbing all the parasitic elements and enabling operation with low switching losses at high switching frequencies. Analyses of multielement resonant converters are documented in [87]- [89]. A review of multielement resonant converters is in [90], and a comparison of different topologies of multielement RPCs is presented in [91].…”
Section: Multielement Rpcsmentioning
confidence: 99%
“…For the particular case of the GRSCC, after some manipulations (11) can be rewritten as: 1 2 rms max max( , )…”
Section: Resonant Networkmentioning
confidence: 99%
“…The general relation of (8) is as (14), which is obtained by applying the averaging operator on both sides of (12), and T −1 0 is the fundamental frequency of v S . It is assumed that S is constant, and variations of v S are significantly less than f S (at least the Nyquist rate is held).…”
Section: Principle Of Power Processing In Swrcsmentioning
confidence: 99%
“…It is assumed that S is constant, and variations of v S are significantly less than f S (at least the Nyquist rate is held). When v S is dc, and the ripple component of v O is neglected, (14) is reduced to (8)…”
Section: Principle Of Power Processing In Swrcsmentioning
confidence: 99%