2017 IEEE 2nd Advanced Information Technology, Electronic and Automation Control Conference (IAEAC) 2017
DOI: 10.1109/iaeac.2017.8053974
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Comparative study between passive PFC and active PFC based on Buck-Boost conversion

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Cited by 14 publications
(2 citation statements)
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“…Passive filters contain different configurations of inductance, capacitance, and resistance, forming low-pass, high-pass, middle-pass, and middle-no pass filters, the structure, and functions of which are described in [206], [223]. Passive filters are not flexible in load variations; however, active filters have the desired dynamic response [206], [224]. Active filters are equipped with switches; in other words, ICs and BICs can work as active filters as well [2], [204].…”
Section: ) Power Quality Controlmentioning
confidence: 99%
“…Passive filters contain different configurations of inductance, capacitance, and resistance, forming low-pass, high-pass, middle-pass, and middle-no pass filters, the structure, and functions of which are described in [206], [223]. Passive filters are not flexible in load variations; however, active filters have the desired dynamic response [206], [224]. Active filters are equipped with switches; in other words, ICs and BICs can work as active filters as well [2], [204].…”
Section: ) Power Quality Controlmentioning
confidence: 99%
“…O conversor Forward será empregado no controle de potência (PC) como um estágio de rebaixamento da tensão. No entanto, para ser conectado à rede elétrica, necessita ser precedido por um conversor PFC, para isso foi utilizado um conversor Buck-Boost, representado na figura 6 [19]. Devido ao fato de ambos conversores possuírem um interruptor para chaveamento, propôs-se uma topologia que integra os dois conversores com apenas um interruptor.…”
Section: Estágio Pfcunclassified