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Article Dans Une Revue Control Engineering Practice Année : 2020

Advanced passivity-based, aging-tolerant control for a fuel cell/super-capacitor hybrid system

Résumé

This paper proposes an advanced aging-tolerant control for a fuel cell/super-capacitor hybrid system applied to a commercial vehicle. The controller is designed with the Interconnection and Damping Assignment-Passivity-Based Control (IDA-PBC) method to solve the converters coordination problem, where the state-of-charge of the super-capacitors and all current limitations are considered into the non-linear controller. The aging of the fuel cell is estimated in real-time by an extended Kalman filter and is integrated in the controller in order to preserve the stability of the whole system. Finally, a hardware-in-the-loop platform based on an INTEL/ALTERA FPGA is designed in order to validate the real-time operation of the algorithms for a specific case study with a fuel cell vehicle.
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Dates et versions

hal-02993899 , version 1 (07-11-2020)

Identifiants

  • HAL Id : hal-02993899 , version 1

Citer

Suyao Kong, Mathieu Bressel, Mickaël Hilairet, Robin Roche. Advanced passivity-based, aging-tolerant control for a fuel cell/super-capacitor hybrid system. Control Engineering Practice, 2020, 105, pp.104636 (11). ⟨hal-02993899⟩
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