• DocumentCode
    553434
  • Title

    Comparison of 3 self-starting step-up DC:DC converter topologies for harvesting energy from low-voltage and low-power microbial fuel cells

  • Author

    Degrenne, Nicolas ; Allard, Bruno ; Buret, Francois ; Morel, Florent ; Adami, Salah-Eddine ; Labrousse, Denis

  • Author_Institution
    Lab. Ampere, Univ. de Lyon, Ecully, France
  • fYear
    2011
  • fDate
    Aug. 30 2011-Sept. 1 2011
  • Firstpage
    1
  • Lastpage
    10
  • Abstract
    This paper describes and evaluates 3 original step-up converter architectures able to harvest energy from low-voltage and low-power generators. Design and sizing are made according to specifications issued from the stringent characteristics of microbial fuel cells. The maximum harvested power is 10mW under input voltage Vin=0.3V (33mA input current). The considered converters include self-oscillating circuits for autonomous operation. The 2 first topologies are respectively adapted from boost and flyback topologies. The 3rd topology uses a Greinacher voltage-lift circuit. Energy is transferred to the load both directly (forward transfer) and indirectly (flyback transfer). PSPICE simulations enable evaluation and comparison of the 3 topologies in term of efficiency, robustness, step-up ratio, control and cost. Best efficiency of 80.6% is achieved by the boost-derived circuit which also enables a feedback action to harvest energy at maximum power point.
  • Keywords
    DC-DC power convertors; energy harvesting; fuel cells; low-power electronics; 3 self-starting step-up DC:DC converter topologies; Greinacher voltage-lift circuit; PSPICE simulations; autonomous operation; boost topologies; boost-derived circuit; current 33 mA; energy harvesting; feedback action; flyback topologies; flyback transfer; microbial fuel cells; power 10 mW; self-oscillating circuits; step-up converter architectures; voltage 0.3 V; Computer architecture; Fuel cells; Immune system; Integrated circuit modeling; Topology; Voltage control; Windings; Fuel cell system; alternative energy; resonant converter; switched-mode power supply;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Power Electronics and Applications (EPE 2011), Proceedings of the 2011-14th European Conference on
  • Conference_Location
    Birmingham
  • Print_ISBN
    978-1-61284-167-0
  • Electronic_ISBN
    978-90-75815-15-3
  • Type

    conf

  • Filename
    6020291