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Impact of quasiperiodic steady-state on boost converter current stress and inductor copper losses (CROSBI ID 686124)

Prilog sa skupa u zborniku | izvorni znanstveni rad | međunarodna recenzija

Stojanović, Željko ; Pelin, Denis ; Brandis, Andrej Impact of quasiperiodic steady-state on boost converter current stress and inductor copper losses // Book of abstract ; 20th International Symposium on Power Electronics - Ee2019 / Katić, Vladimir (ur.). Novi Sad: Društvo za energetsku elektroniku, Elektrotehnički institut Nikola Tesla, Fakultet tehničkih nauka, 2019. doi: 10.1109/PEE.2019.8923190

Podaci o odgovornosti

Stojanović, Željko ; Pelin, Denis ; Brandis, Andrej

engleski

Impact of quasiperiodic steady-state on boost converter current stress and inductor copper losses

A voltage-mode boost converter is analyzed. Due to changes of the input voltage converter exhibits different steady-states. The change of steady-state from period-one to quasiperiodic steady-state is observed. The increase of inductor current due to that change is much larger than due to any other change of steady- state. The increase of inductor effective current increases inductor copper losses while the increase of inductor peak current increases switches current stress. The significant increase of effective value and peak value in quasiperiodic steady-state is not well known to the switching power converter community, so it is important fact that must be taken into account when designing the boost converter.

boost converter , copper losses , current stress , effective current , peak current , quasiperiodic steady-state

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Podaci o prilogu

T1.4-8

2019.

objavljeno

10.1109/PEE.2019.8923190

Podaci o matičnoj publikaciji

Book of abstract ; 20th International Symposium on Power Electronics - Ee2019

Katić, Vladimir

Novi Sad: Društvo za energetsku elektroniku, Elektrotehnički institut Nikola Tesla, Fakultet tehničkih nauka

978-86-6022-218-5

Podaci o skupu

20th International Symposium on Power Electronics

predavanje

23.10.2019-26.10.2019

Novi Sad, Srbija

Povezanost rada

Elektrotehnika

Poveznice