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Bibliography of the person, including all types of documents, not only theses.

PhD theses (1)

  1. Andraž Kravos: Thermodynamically based reduced dimensionality proton exchange membrane fuel cell model for observer based monitoring and control

MSc theses (4)

  1. Andraž Kravos: Termodinamska in emisijska analiza motorja z notranjim zgorevanjem ob uporabi sinteznega plina
  2. Miha Gričar: Razvoj inovativnega modela rasti večslojnih oksidov na jeklenih bipolarnih ploščah skladov gorivnih celic s protonsko izmenjevalno membrano
  3. Iva Klofutar: Razvoj inovativnega modela rotirajoče disk elektrode za uporabo v virtualnih zaznavalih staranja katalitskega materiala
  4. Jernej Gašperšič: Razvoj inovativnega časovno diskretnega virtualnega zaznavala staranja gorivne celice s protonsko izmenjevalno membrano

BSc theses (2)

  1. Sebastjan Purgar: Razvoj sistemske ravni modela anodnega podpornega sistema gorivnoceličnega sklada
  2. Jakob Arlič: Vpliv prostorsko spreminjajočih materialnih lastnosti plasti za difuzijo plinov na učinkovitost delovanja gorivnih celic

Other documents (16)

  1. Andraž Kravos, Tomaž Katrašnik: Closed-form formulation of the thermodynamically consistent electrochemical model considering electrochemical co-oxidation of CO and H$_2$ for simulating solid oxide fuel cells
  2. Andraž Kravos, Ambrož Kregar, Željko Penga, Frano Barbir, Tomaž Katrašnik: Real-time capable transient model of liquid water dynamics in proton exchange membrane fuel cells
  3. Ambrož Kregar, Gregor Tavčar, Andraž Kravos, Tomaž Katrašnik: Predictive virtual modelling framework for performance and platinum degradation modelling of high temperature PEM fuel cells
  4. Ambrož Kregar, Gregor Tavčar, Andraž Kravos, Tomaž Katrašnik: Predictive system-level modeling framework for transient operation and cathode platinum degradation of high temperature proton exchange membrane fuel cells
  5. Andraž Kravos, Ambrož Kregar, Tomaž Katrašnik: Hybrid methodology for efficient on the fly (re)parametrization of proton exchange membrane fuel cells electrochemical model for diagnostics and control applications
  6. Ambrož Kregar, Andraž Kravos, Tomaž Katrašnik: Methodology for evaluation of contributions of Ostwald ripening and particle agglomeration to growth of catalyst particles in PEM fuel cells
  7. Andraž Kravos, Daniel Ritzberger, Christoph Hametner, Stefan Jakubek, Tomaž Katrašnik: Methodology for efficient parametrisation of electrochemical PEMFC model for virtual observers
  8. Andraž Kravos, Tine Seljak, Samuel Rodman Oprešnik, Tomaž Katrašnik: Operational stability of a spark ignition engine fuelled by low H2 content synthesis gas
  9. Andraž Kravos, Ambrož Kregar, Kurt Mayer, Viktor Hacker, Tomaž Katrašnik: Identifiability analysis of degradation model parameters from transient CO$_2$ release in low-temperature PEM fuel cell under various AST protocols
  10. Zhang Peng Du, Andraž Kravos, Christoph Steindl, Tomaž Katrašnik, Stefan Jakubek, Christoph Hametner: Physically motivated water modeling in control-oriented polymer electrolyte membrane fuel cell stack models
  11. Andraž Kravos, Daniel Ritzberger, Gregor Tavčar, Christoph Hametner, Stefan Jakubek, Tomaž Katrašnik: Thermodynamically consistent reduced dimensionality electrochemical model for proton exchange membrane fuel cell performance modelling and control
  12. Ambrož Kregar, Klemen Zelič, Andraž Kravos, Tomaž Katrašnik: Educational scale-bridging approach towards modelling of electric potential, electrochemical reactions, and species transport in PEM fuel cell
  13. Andraž Kravos, Tit Voglar, Ambrož Kregar, Tomaž Katrašnik: Hybrid methodology for parametrisation of proton exchange membrane fuel cell model for diagnostics and control applications
  14. Andraž Kravos, Martin Vrlić, Christoph Hametner, Stefan Jakubek, Tomaž Katrašnik: Real-time capable nonlinear distributed parameter observer considering two-phase flow in PEM fuel cells
  15. Tomaž Katrašnik, Andraž Kravos: Advanced state-of-X diagnostics of proton exchange membrane fuel cells enabled by the multi-scale modeling framework
  16. Davor Rašić, Andraž Kravos, Tomaž Katrašnik: Predicting the impact of ambient temperature on PEM fuel cell cold start-up catalyst degradation with a multi-domain and multi-scale modeling framework