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Floating Interleaved Boost Converter with Zero-Ripple Input Current Using Variable Inductor

delete2023-01-28
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OA
AI
H
Héctor Hidalgo
N
N. Vázquez *
R
Rodolfo Orosco
H
Héctor Huerta-Ávila
S
Sergio Pinto
L
Leonel Estrada
DOI:10.3390/technologies11010021delete
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Abstract

Abstract

En 中文
A zero-ripple input current is known to improve the lifetime of battery sets and fuel cells and to assure maximum power point tracking in PV panels. To perform current ripple elimination in a floating interleaved boost converter (FIBC), one of the typical linear inductors is substituted by a variable inductor, and phases of the converter have complementary duty cycles. This variable inductor is controlled using a switched current-source converter, which adjusts the input current ripple. An equivalent model for the variable inductor is presented, including uncertainties in the component description. To achieve current stabilization, a variable inductor controller was designed using the sliding modes approach via fixed frequency. An experimental prototype is implemented and tested with an output voltage controller to compare with the conventional FIBC. The results demonstrate that the input current ripple of the proposed converter is eliminated without significantly decreasing the efficiency.
Keywords:
DC-DC converters
floating interleaved boost converter
zero-ripple input current
variable inductor control

Journal

T
Technologies
IF:
3.6
Papers:
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Citations:
3.2K

Organization

U
universidad de guadalajara
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6.9K
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U
universidad de panama
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465
Papers: 299
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Cited Papers

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errMarcus Vinicius Silvério Costa; Francisco Everton Uchôa Reis; José Carlos Teles Campos; Fabricio Gonzalez Nogueira; Otacilio Da Mota Almeida
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