Solar Hydrogen Advanced Training System
(AG101)
  • Familiarization with optimal alignment of solar modules.
  • Determining the efficiency of the electrolyzer.
  • Demonstrating the behavior of solar modules.
  • Measuring the values of the photovoltaic system with changes of the position.
  • Converting losses with the charging and discharging of batteries.
  • Learning how to test day and night profiles.
  • Calculating the degree of efficiency of an electrolyzer.
  • Knowing about battery Technology.
  • Demonstrating the battery Systems & Control.
  • Appling Fuel Cell Technology.
  • Familiarization with battery- Fuel Cell Hybrids.
  • Understanding the electrochemical Energy Storage & Conversion.
  • Learning about renewable Energy Storage.
  • Enhancing the principles of Electrical & Hybrid Vehicles (HEV/FCEV).
  • Knowing about Backup Power Systems.
  • Understanding Micro-Grids & Smart Grids.
  • Charging/Discharging the battery.
  • Analyzing & Comparing Battery & Fuel Cell Model.
  • Calculation & Evaluation of Electrical Characteristics.
  • Hydrogen Generation with Solar Energy System:
    • Solar Module:
      • Type: Polycrystalline.
      • System voltage: 24 V DC.
      • MPP output: > 250 Wp.
      • Efficiency: >16 %.
      • Short circuit current: >9 A.
      • MPP voltage: >30 V.
    • Battery:
      • Type: 2 solar lead-acid batteries (12 V), maintenance-free.
      • System voltage: 24 V DC.
      • Capacity: 55 Ah.
    • Hydrogen Generator:
      • Production capacity: 72 nl/h.
      • H2 flow rate: 1200cc/min.
      • Hydrogen purity: > (99.99999 %).
      • Outlet pressure: 16 bars.
      • Required water quality: < 1μS/cm, deionized or distilled.
      • Power supply voltage: 100-240 Vac 50/60Hz.
      • Internal tank capacity: 1,1l.
      • External tank capacity: 5 or 10l.
  • Fuell Cell and Power Management System:
    • Fuel Cell System:
      • Rated output: 1200 W @ 5 ... 25 °C
      • Rated current: 60 ADC max.
      • Operating voltage: 18 ... 36 VDC
      • Maximum hydrogen consumption: 15 Nl/min
      • Hydrogen purity for operation: min. 4.0
      • Permissible H2 inlet pressure: 1 … 15 bar
    • H2 Flow Meter:
      • Measuring range: 0.83 … 25 Nl/min.
      • Measuring accuracy: ± 1.5 % from the end value.
    • H2 Sensor:
      • Sensor standard range: 0.00 … 1.00 Vol. % H2.
    • DC Converter with Integrated Load Regulator:
      • Max. output power: 1500 W
      • Max. output current: 55 ADC
      • Rated output voltage: 24 VDC
      • Output voltage range: 21 … 30 VDC
      • Max. input current: 60 ADC
      • Input voltage range: 18 … 36 VDC
      • Efficiency: 96 %
    • Inverter:
      • Continuous output power: 1500 WAC.
      • Inlet voltage: 21 … 30 VDC.
      • Output voltage 230 VAC (50 Hz), 115 VAC (60Hz).
      • Output signal form pure: Reiner Sinus (THD < 3 %).
      • Efficiency: 91/93 % (110/230 V).
    • Electronic Load Module:
      • Max. continuous power: 1200 W.
      • DC load current: 0 … 85 ADC.
      • DC load voltage: 0 … 80 VDC.
      • Load resistance: 0.08...30 ΩC.
    • Battery Module:
      • Battery set 1: lead-acid, 24 V, (2 x 12 V), 7,2 Ah.
      • Battery set 2: lead-acid, 24 V, (2 x 12 V), 18 Ah.
      • Safety elements: 30 A, 80 A.
    • H2 Storage Module:
      • Hydrogen manometer: 0 … 25 bars
      • Safety elements: 3 x temperature sensors, pressure relief valve, hydrogen safety switch, manometer.
  • Solar Hydrogen Advanced Training System (AG101).
  • BEDO Software.
  • Hard Copy User Manual.
  • Laboratory PC.

Solar Hydrogen Advanced Training System aimed at improving knowledge and abilities concerning solar energy and hydrogen production. The concepts of the generation, storage, and conversion of renewable energy can be explored and understood by students thanks to this novel technology. Learners can participate in extensive experiments that highlight the benefits of solar hydrogen technology and hybrid energy systems.

  • Through hands-on applications of renewable energy technologies, trainees can deepen their understanding of sustainability and energy management.
  • The integrated system facilitates a range of experiments, including the creation of hydrogen and energy storage in hybrid systems, as well as the conversion of solar energy.
  • The Solar Hydrogen Trainer is a training device that uses two photovoltaic modules to power an electrolyzer to produce hydrogen.
  • With the accompanying BEDO software, performance and generation data of the PV modules, power electronics, battery, and electrolyzer are recorded and shown.
  • The Fuel Cell Training system is an ideal tool for teaching PEM fuel cell systems' basic engineering fundamentals.
  • The Fuel Cell-Battery Hybrid System that lets trainees’ study and comprehend different hybrid configurations and system behavior.
  • The system's components are movable and easily connectable or disconnected.
  • Trainees can investigate the future of energy technology on a strong platform made available by the Integrated Training System.
  • The training system may provide trainees with a comprehensive learning experience that equips them for professions in sustainable technologies and renewable energy by combining the Hybrid Energy Lab-System and Solar Hydrogen Trainer.