open access publication

Article, 2024

Optimized Design of Multi-Channel Resonant Converter for Fuel Cell Application

IEEE ACCESS, ISSN 2169-3536, 2169-3536, Volume 12, Pages 66605-66624, 10.1109/ACCESS.2024.3399709

Contributors

ZAIKIN, DENYS 0000-0003-4080-5631 (Corresponding author) [1] Andersen, M. K. [1] Brix Rugtved Rugholt, Mark [1] Kjeldsen, Thomas K. K. [1] Davari, Pooya 0000-0002-3273-3271 [2]

Affiliations

  1. [1] Advent Technol AS, DK-9000 Aalborg, Denmark
  2. [NORA names: Other Companies; Private Research; Denmark; Europe, EU; Nordic; OECD];
  3. [2] Aalborg Univ, Dept Energy, DK-9220 Aalborg, Denmark
  4. [NORA names: AAU Aalborg University; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

This research presents a multi-channel phase shift inductor-inductor-capacitor (LLC) resonant converter with a wide input and output voltage range that has been specially optimized for fuel cell applications. The worst-case minimum stack voltage and the battery voltage range were used to determine the optimal parameters of the LLC converter. The voltage gain of the converter operating at a constant power was considered, and an algorithm for such a calculation is proposed. Current balancing is implemented using channel temperature measurements, circumventing the need for expensive current sensors. A natural self-balancing mechanism is investigated for converters operating at high frequencies exceeding the series resonance frequency of a resonant converter. Efficiency optimization recommendations for the transformer turn ratio of the converter are illustrated. Multi-object optimization is implemented to achieve an optimized design so that both the minimum and maximum voltage gains can be realized; simultaneously, the transformer turn ratio is kept at a minimum to maintain high efficiency. An experimental prototype of a four-channel converter is implemented and verified at a 5-kW power level. Active content and the C language code files for converter calculations are also provided in this paper.

Keywords

Batteries, Current sharing, Fuel cells, Resistance, Resonant converters, Switching frequency, Voltage, Voltage control, fuel-cell converter, multi-objective optimization, resonant converter

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