Articles producció científica> Enginyeria Electrònica, Elèctrica i Automàtica

Model Predictive Control for Inter-Submodule State-of-Charge Balancing in Cascaded H-Bridge Converter-Based Battery Energy Storage Systems

  • Identification data

    Identifier: imarina:9433304
    Authors:
    Liang, GaowenRodriguez, EzequielFarivar, Glen GNunes, EnriqueKonstantinou, GeorgiosTownsend, Christopher DLeyva, RamonPou, Josep
    Abstract:
    In the operation of battery energy storage systems based on the cascaded H-bridge converter, it is beneficial to balance the state of charge of batteries in different submodules within the converter phase-arm. This is achieved by distributing the active power among the submodules. Although multiple methods have been proposed for this purpose, they face the challenge of rendering optimal active power distributions that maximize balancing speed while meeting power constraints in the battery energy storage system. To overcome this challenge, a model predictive control scheme is developed in this paper. The proposed method is remarkably robust against parametric uncertainties (battery voltage, capacity, etc.), as evidenced by its ability to tolerate a substantial 50% uncertainty in the parameters, resulting in a mere 0.05% steady-state error. Furthermore, because the predictive control can be executed at a low frequency, the computational burden is comparable to other existing methods.
  • Others:

    Author, as appears in the article.: Liang, Gaowen; Rodriguez, Ezequiel; Farivar, Glen G; Nunes, Enrique; Konstantinou, Georgios; Townsend, Christopher D; Leyva, Ramon; Pou, Josep
    Department: Enginyeria Electrònica, Elèctrica i Automàtica
    URV's Author/s: Leyva Grasa, Ramon
    Keywords: Australia Batteries Power distribution Predictive control Pulse width modulation State of charge Uncertainty
    Abstract: In the operation of battery energy storage systems based on the cascaded H-bridge converter, it is beneficial to balance the state of charge of batteries in different submodules within the converter phase-arm. This is achieved by distributing the active power among the submodules. Although multiple methods have been proposed for this purpose, they face the challenge of rendering optimal active power distributions that maximize balancing speed while meeting power constraints in the battery energy storage system. To overcome this challenge, a model predictive control scheme is developed in this paper. The proposed method is remarkably robust against parametric uncertainties (battery voltage, capacity, etc.), as evidenced by its ability to tolerate a substantial 50% uncertainty in the parameters, resulting in a mere 0.05% steady-state error. Furthermore, because the predictive control can be executed at a low frequency, the computational burden is comparable to other existing methods.
    Thematic Areas: Automation & control systems Ciência da computação Computer science applications Control and systems engineering Electrical and electronic engineering Engenharias iii Engenharias iv Engineering, electrical & electronic Instruments & instrumentation Interdisciplinar
    licence for use: https://creativecommons.org/licenses/by/3.0/es/
    Author's mail: ramon.leyva@urv.cat
    Author identifier: 0000-0001-6431-3688
    Record's date: 2025-03-03
    Paper version: info:eu-repo/semantics/acceptedVersion
    Paper original source: Ieee Transactions On Industrial Electronics. 71 (6): 5777-5786
    APA: Liang, Gaowen; Rodriguez, Ezequiel; Farivar, Glen G; Nunes, Enrique; Konstantinou, Georgios; Townsend, Christopher D; Leyva, Ramon; Pou, Josep (2024). Model Predictive Control for Inter-Submodule State-of-Charge Balancing in Cascaded H-Bridge Converter-Based Battery Energy Storage Systems. Ieee Transactions On Industrial Electronics, 71(6), 5777-5786. DOI: 10.1109/TIE.2023.3290249
    Licence document URL: https://repositori.urv.cat/ca/proteccio-de-dades/
    Entity: Universitat Rovira i Virgili
    Journal publication year: 2024
    Publication Type: Journal Publications
  • Keywords:

    Automation & Control Systems,Computer Science Applications,Control and Systems Engineering,Electrical and Electronic Engineering,Engineering, Electrical & Electronic,Instruments & Instrumentation
    Australia
    Batteries
    Power distribution
    Predictive control
    Pulse width modulation
    State of charge
    Uncertainty
    Automation & control systems
    Ciência da computação
    Computer science applications
    Control and systems engineering
    Electrical and electronic engineering
    Engenharias iii
    Engenharias iv
    Engineering, electrical & electronic
    Instruments & instrumentation
    Interdisciplinar
  • Documents:

  • Cerca a google

    Search to google scholar