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Power management for HEV based on PMSM using passivity control

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Warianty tytułu
PL
Zarządzanie energią dla HEV w oparciu o PMSM z wykorzystaniem kontroli pasywności
Języki publikacji
EN
Abstrakty
EN
This article offers a resolution of a problem of coordination of the converters of a system fuel cell involving a hydrogen fuel cell with super capacitors as an application with an instantaneous dynamic power by using a non-linear controller PI. The strategy of management of energy include the strategy of control of the state machine, the strategy of proportional control - classical integral (CPICS), and the proof of the stability of the whole source system in a continuous loop closed have were shown simulation and results on a system has reduced ladder prove the feasibility of proposed for a true system transports electrical.The total model of system and the strategy of control is produced by using Matlab / Simulink.
PL
W artykule zaproponowano rozwiązanie problemu koordynacji przetwornic układu ogniw paliwowych z udziałem wodorowego ogniwa paliwowego z superkondensatorami jako aplikacji o chwilowej mocy dynamicznej z wykorzystaniem nieliniowego regulatora PI. Strategia zarządzania energią obejmująca strategię sterowania maszyną stanów, strategię sterowania proporcjonalnego - całka klasyczna (CPICS) oraz dowód stabilności całego systemu źródłowego w ciągłej pętli zamkniętej przedstawiono symulację i wyniki na systemie o zredukowanej drabinie udowodniono wykonalność proponowanego dla rzeczywistego systemu transportów elektrycznych. Całkowity model systemu i strategia sterowania jest tworzony z wykorzystaniem Matlaba/Simulinka.
Rocznik
Strony
106--112
Opis fizyczny
Bibliogr. 21 poz., rys., tab.
Twórcy
  • Laboratoire de Maitrise des Energies Renouvelables, Faculté de Technologie, Université de Bejaia, Algiers
  • Laboratoire de Maitrise des Energies Renouvelables, Faculté de Technologie, Université de Bejaia, Algiers
  • Laboratoire des Sciences Appliquées, Ecole Nationale Supérieure des Technologies Avancées ENSTA d’alger, Algier
  • Laboratoire de Maitrise des Energies Renouvelables, Faculté de Technologie, Université de Bejaia, Algiers
  • Ouzou, 15000, Algeria
  • Laboratoire de Maitrise des Energies Renouvelables, Faculté de Technologie, Université de Bejaia, Algiers
Bibliografia
  • [1] M D. Berliner, D A. Cogswell , M Z. Bazant *, R D. Braatz A Mixed Continuous-Discrete Approach to Fast Charging of Liion Batteries While Maximizing Lifetime IFAC-PapersOnLine 2022, Pages 305-310
  • [2] H. Aouzellag, B. Amrouche, k. iffouzar D. aouzellag. Proposed hysteresis energy management strategy based on storage system efficiency for hybrid electric vehicle Journal of Energy Storage, 2022, 105259
  • [3] Azib Toufik, Bethoux Olivier, Remy Ghislain, Marchand Claude. Saturation management of a controlled fuel-cell/ultracapacitor hybrid vehicle. IEEE Trans. Veh. Technol. 2011; 60: 4127– 4138.
  • [4] H S Das , M Salem , M A A M Zainuri , A M Dobi , S Li , Md H Ullah . A comprehensive review on power conditioning units and control techniques in fuel cell hybrid systems Energy Reports, 2022, Pages 14236-14258
  • [5] A A Sinha , Sanjay , M Z Ansari , A K Shukla c , T Choudhary . Comprehensive review on integration strategies and numerical modeling of fuel cell hybrid system for power & heat production. International Journal of Hydrogen Energy .2023
  • [6] B Amrouche , T O Cherif, M Ghanes, K Iffouzar, A passivity-based controller for coordination of converters in a fuel cell system used in hybrid electric vehicle propelled by two seven phase induction motor. Int. J. Hydrogen Energy 2017, 26362- 26376.
  • [7] S Sagaria, RC Neto, P Baptista. Assessing the performance of vehicles powered by battery, fuel cell and ultra-capacitor: Application to light-duty vehicles and buses Energy Conversion and Management, 2021, 113767
  • [8] A Farsi, M A. Rosen Performance analysis of a hybrid aircraft propulsion system using solid oxide fuel cell, lithium ion battery and gas turbine . Applied Energy, 2023, 120280
  • [9] C Jia , J Zhou , H He , J Li a c, Z Wei , K Li, M Shi . A novel energy management strategy for hybrid electric bus with fuel cell health and battery thermal and health-constrained awareness . Energy ,2023, 127105
  • [10] M Iqbal , M Becherif, H S Ramadan, A Badji. Energy source sizing methodology for hybrid fuel cell vehicles based on statistical description of driving cycle. Applied Energy, 2021, 117345
  • [11] R T Yadlapalli , R R Alla , R Kandipati , A Kotapati. Super capacitors for energy storage: Progress, applications and challenges Journal of Energy Storage Volume 49, May 2022, 104194
  • [12] M Hua , C Zhang , F Zhang , Z Li , X Yu , H Xu , Q Zhou .Energ y management of multi-mode plug-in hybrid electric vehicle using multi-agent deep reinforcement learning Applied Energy, 2023, 121526
  • [13] B Jin, L Zhang a, QChen a, Z Fu. Energy management strategy of fuzzy logic control for fuel cell truck. Energy Reports 2023, 247-255
  • [14] R Koubaa , S Bacha , M Smaoui, L krichen. Robust optimization based energy management of a fuel cell/ultra capacitor hybrid electric vehicle under uncertainty Energy 2020, 117530
  • [15] I M Abdelqawee, A W Emam, M S ElBages, M A Ebrahim. An improved energy management strategy for fuel cell/battery/supercapacitor system using a novel hybrid jellyfish/particle swarm/BAT optimizers. Journal of Energy Storage, January 2023, 106276
  • [16] G Ren, H Wang, CChen, J Wang An energy conservation and environmental improvement solution-ultra-capacitor/battery hybrid power source for vehicular applications. Sustainable Energy Technologies and Assessments, April 2021, 100998
  • [17] K Iffouzar , B Amrouche , T O Cherif, M F Benkhoris, D Aouzellag , K Ghedamsi . Improved direct field oriented control of multiphase induction motor used in hybrid electric vehicle application. Int. J. Hydrogen Energy 2017, Pages 19296-19308
  • [18] Q Li , H Yang, Y Han a, MLi b, W Chen. A state machine strategy based on droop control for an energy management system of PEMFC-battery-supercapacitor hybrid tramway. In. J . Hydrogen Energy 2016, 16148-16159
  • [19] D Rezzak a, N Boudjerda. Robust energy management strategy based on non-linear cascade control of fuel cells-super capacitors hybrid power system. In. J Hydrogen Energy 2020, Pages 23254-23274
  • [20] H Hu, W W Yuan , M Su , K Ou .Optimizing fuel economy and durability of hybrid fuel cell electric vehicles using deep reinforcement learning-based energy management systems. Energy Conversion and Management September 2023, 117288
  • [21] Hilairet M, Ghanes M, Bethoux O, Tanasa V, Barbot J-P, Normand-Cyrot D. A passivity-based controller for coordination of converters in a fuel cell system. Control Eng Pract 2013;21(8):1097e109. Pergamon.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa nr POPUL/SP/0154/2024/02 w ramach programu "Społeczna odpowiedzialność nauki II" - moduł: Popularyzacja nauki i promocja sportu (2025).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e115a785-83f2-4964-909c-bf4f67062530
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