Distributed Intelligence in Autonomous PEM Fuel Cell Control

被引:3
|
作者
Rubio, Abel [1 ]
Agila, Wilton [1 ]
Gonzalez, Leandro [2 ,3 ]
Aviles-Cedeno, Jonathan [1 ]
机构
[1] Escuela Super Politecn Litoral ESPOL, Fac Engn Elect & Computat FIEC, Ctr Res Dev & Innovat Comp Syst CIDIS, POB 09-01-5863, Guayaquil, Ecuador
[2] CSIC, UPM, Ctr Automat & Robot, Ctra Campo Real Km 0,200, Arganda Del Rey 28500, Spain
[3] Natl Hydrogen & Fuel Cell Technol Testing Ctr CNH2, Prolongac Fernando Santo S-N, Puertollano 13500, Spain
关键词
PEM fuel cell; distributed intelligence; fuzzy controller; fuzzy numbers; agent-based control; expert agent; intelligent agent; EXCESS RATIO CONTROL; IMPROVED VERSION; MODE; AIR; IDENTIFICATION;
D O I
10.3390/en16124830
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
A combination of perceptive and deliberative processes is necessary to ensure the efficient and autonomous control of proton exchange membrane fuel cells (PEMFCs) under optimal humidification conditions. These processes enable monitoring and control tasks across various application scenarios and operating conditions. Consequently, it becomes crucial to adjust parameter values corresponding to different states of the PEMFC during its operation. In this context, this work presents the design and development of an architecture for the control and management of a PEMFC with a maximum power output of 500 [W] based on intelligent agents operating under optimal conditions (membrane humidification). The proposed architecture integrates perception and action algorithms that leverage sensory and contextual information using heuristic algorithms. It adopts a hierarchical structure with distinct layers, each featuring varying time windows and levels of abstraction. Notably, this architecture demonstrates its effectiveness in achieving the desired energy efficiency objective, as evidenced by successful validation tests conducted with different electrical power values delivered by the fuel cell, encompassing three distinct operating states (dry, normal, and flooded). An exemplary application of this scheme is the dynamic control of the humidification of the polymeric membrane, which further highlights the capabilities of this architecture.
引用
收藏
页数:25
相关论文
共 50 条
  • [1] Experts Agents in PEM Fuel Cell Control
    Agila, Wilton
    Cajo, Ricardo
    Plaza, Douglas
    2015 INTERNATIONAL CONFERENCE ON RENEWABLE ENERGY RESEARCH AND APPLICATIONS (ICRERA), 2015, : 896 - 900
  • [2] Approximate Reasoning Techniques in the Control of States of Operation of the PEM Fuel Cell
    Agila, Wilton
    Rubio, Gomer
    Aviles-Cedeno, Jonathan
    Gonzalez, Leandro
    2023 11TH INTERNATIONAL CONFERENCE ON SMART GRID, ICSMARTGRID, 2023,
  • [3] PEM Fuel Cell System as an Autonomous Power Supplier
    Heuer, M.
    Kaebisch, M.
    Heideck, G.
    Styczynski, Z. A.
    2009 IEEE POWER & ENERGY SOCIETY GENERAL MEETING, VOLS 1-8, 2009, : 605 - +
  • [4] Qualitative Model of Control in the Pressure Stabilization of PEM Fuel Cell
    Agila, W.
    Rubio, Gomer
    Miranda, L.
    Vazquez, L.
    2018 7TH INTERNATIONAL CONFERENCE ON RENEWABLE ENERGY RESEARCH AND APPLICATIONS (ICRERA), 2018, : 1221 - 1226
  • [5] Adaptive control of membrane conductivity of PEM fuel cell
    Farcas, Alin C.
    Dobra, Petru
    7TH INTERNATIONAL CONFERENCE INTERDISCIPLINARITY IN ENGINEERING (INTER-ENG 2013), 2014, 12 : 42 - 49
  • [6] Variational approach and optimal control of a PEM fuel cell
    Capatina, A.
    Ene, H.
    Pasa, G.
    Polisevski, D.
    Stavre, R.
    NONLINEAR ANALYSIS-THEORY METHODS & APPLICATIONS, 2011, 74 (10) : 3242 - 3260
  • [7] Dynamic model and robust control for the PEM fuel cell systems
    Tan, Jie Ying
    Ismail, Raja Mohd Taufika Raja
    Jadin, Mohd Shawal
    RESULTS IN ENGINEERING, 2024, 22
  • [8] Temperature and Humidity Control of a Micro PEM Fuel Cell Stack
    Kunde, C.
    Hanke-Rauschenbach, R.
    Mangold, M.
    Kienle, A.
    Sundmacher, K.
    Wagner, S.
    Hahn, R.
    FUEL CELLS, 2010, 10 (06) : 949 - 959
  • [9] Control Strategy Assessment for Improving PEM Fuel Cell System Efficiency in Fuel Cell Hybrid Vehicles
    Luciani, Sara
    Tonoli, Andrea
    ENERGIES, 2022, 15 (06)
  • [10] Control logics and strategies for air supply in PEM fuel cell engines
    Hou, Junbo
    Yang, Min
    Ke, Changchun
    Zhang, Junliang
    APPLIED ENERGY, 2020, 269