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Computer Controlled Automotive Hybrid Simulation Unit
Vendor
Edquip Product Code

PL-961020

Quality Certification
UL, CE
Warranty
60 months
Student product ratio
Production leadtime
90 days
Content languages
English, French, Spanish
Taining types
In person, Live online, Webinars, Documentation, Video
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The Computer Controlled Automotive Hybrid Simulation Unit, “AV-HYB”, developed by EDIBON, provides a complete solution to study and analyze the operation of hybrid vehicles by simulating different energy source combinations.

This unit features several simulation panels that explain the functioning of hybrid systems using LPG engines, biofuel engines, and gasoline-electric engines.

rid Vehicle Panel with Gasoline-Electric Engine:

Gasoline and electric engines are highly compatible, offering the benefits of both technologies while minimizing their drawbacks. The “AV-HYB” unit offers progressive training levels to provide users with in-depth knowledge and essential skills related to the operation and functionality of gasoline-electric hybrid vehicles.

The application includes a simulation panel (hardware and software) and a dedicated manual that explains the system architecture, the interaction between electric and combustion engines, the role of high-voltage systems, and battery pack handling and removal procedures.

Hybrid Vehicle with LPG Engine Panel:

LPG-powered hybrids offer significant fuel cost savings and reduced environmental impact. The “AV-HYB” unit includes training levels focused on LPG hybrid operation and system architecture.

Using the provided simulation panel (hardware and software) and training manual, users will study LPG and gasoline sequential injection processes, battery configurations in hybrid systems, and full vehicle maintenance procedures.

Panel of Hybrid Vehicle with Biofuel Engine:

Biofuel is derived from organic sources and is often combined with gasoline engines to lower CO₂ emissions and operating costs. The “AV-HYB” unit provides structured learning modules that equip users with the technical knowledge required to understand biofuel hybrid vehicles.

The included simulation panel (hardware and software) and accompanying manual allow for an in-depth study of system architecture, gasoline and biofuel sequential injection, battery pack configuration and removal, and the general maintenance of these systems.

This Computer Controlled Unit comes with the EDIBON Computer Control System (SCADA), including: the unit itself, a Data Acquisition Board, and complete Data Acquisition and Management Software Packages for full process control and parameter monitoring.

  1. AV-HYB. Unit:
  • Hybrid Vehicle Panel with Gasoline-Electric Engine:
  • Single-phase supply voltage: 230 / 110 VAC.
  • Lamps to indicate the operating status of the vehicle.
  • Switches for the simulation of the different operating processes of the vehicle.
  • Protection fuses.
  • Terminals to measure the battery voltages.
  • Diagram of Hybrid Vehicle with Gasoline-Electric Engine in the front panel.
  • Hybrid Vehicle with LPG Engine Panel:
  • Single-phase supply voltage: 230 / 110 VAC.
  • Lamps to indicate the operating status of the vehicle.
  • Switches for the simulation of the different operating processes of the vehicle.
  • Protection fuses.
  • Terminals to measure the battery voltages.
  • Diagram of Hybrid Vehicle with LPG Engine in the front panel.
  • Panel of Hybrid Vehicle with Biofuel Engine:
  • Single-phase supply voltage: 230 / 110 VAC.
  • Lamps to indicate the operating status of the vehicle.
  • Switches for the simulation of the different operating processes of the vehicle.
  • Protection fuses.
  • Terminals to measure the battery voltages.
  • Diagram of Hybrid Vehicle with Biofuel Engine in the front panel.

The complete unit includes as well:

  • Advanced Real-Time SCADA.
  • Open Control + Multicontrol + Real-Time Control.
  • Specialized EDIBON Control Software based on LabVIEW.
  • National Instruments Data Acquisition board.
  • Calibration exercises, which are included, teach the user how to calibrate a sensor and the importance of checking the accuracy of the sensors before taking measurements.
  • Projector and/or electronic whiteboard compatibility allows the unit to be explained and demonstrated to an entire class at one time.
  • Capable of doing applied research, real industrial simulation, training courses, etc.
  • Remote operation and control by the user and remote control for EDIBON technical support, are always included.
  • Totally safe, utilizing 4 safety systems (Mechanical, Electrical, Electronic and Software).
  • Designed and manufactured under several quality standards.
  • Optional ICAI software to create, edit and carry out practical exercises, tests, exams, calculations, etc. Apart from monitoring user’s knowledge and progress reached.
  • This unit has been designed for future expansion and integration. A common expansion is the EDIBON Scada-Net (ESN) System which enables multiple students to simultaneously operate many units in a network.
  1. EG5C/CCSOF. Computer Control + Data Acquisition + Data Management Software.
  2. Cables and Accessories, for normal operation.
  3. Manuals: This unit is supplied with 6 manuals. Required services, Assembly and Installation, Control software, Starting-up, Safety, Maintenance and Practices manuals.

EXERCISES AND PRACTICAL POSSIBILITIES TO BE DONE WITH THE MAIN ITEMS

  1. Familiarization with the Hybrid Vehicle with LPG Engine.
  2. Study and analysis of the maintenance of the Hybrid Vehicle with LPG Engine.
  3. Study and analysis of the different components of the Hybrid Vehicle with LPG Engine with the help of the simulation software.
  4. Study and analysis of the high-voltage circuit of the Hybrid Vehicle with LPG Engine.
  5. Study and analysis of the different parameters of the batteries of Hybrid Vehicle with LPG Engine.
  6. Study and analysis of the architecture of the Hybrid Vehicle with LPG Engine.
  7. Maintenance of the Hybrid Vehicle with LPG Engine.
  8. Familiarization with the Hybrid Vehicle with Gasoline-Electric Engine.
  9. Study and analysis of the maintenance of the Hybrid Vehicle with Gasoline-Electric Engine.
  10. Study and analysis of the different components of the Hybrid Vehicle with Gasoline-Electric Engine with the help of the simulation software.
  11. Study and analysis of the high-voltage circuit of the Hybrid Vehicle with Gasoline-Electric Engine.
  12. Study and analysis of the different parameters of the batteries of Hybrid Vehicle with Gasoline-Electric Engine.
  13. Study and analysis of the architecture of the Hybrid Vehicle with Gasoline-Electric Engine.
  14. Maintenance of the Hybrid Vehicle with Gasoline-Electric Engine.
  15. Familiarization with the Hybrid Vehicle with Biofuel Engine.
  16. Study and analysis of the maintenance of the Hybrid Vehicle with Biofuel Engine.
  17. Study and analysis of the different components of the Hybrid Vehicle with Biofuel Engine with the help of the simulation software.
  18. Study and analysis of the high-voltage circuit of the Hybrid Vehicle with Biofuel Engine.
  19. Study and analysis of the different parameters of the batteries of Hybrid Vehicle with Biofuel Engine.
  20. Study and analysis of the architecture of the Hybrid Vehicle with Biofuel Engine.
  21. Maintenance of the Hybrid Vehicle with Biofuel Engine

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Power requirements
1 phase, 110 VAC – 127 VAC/60 Hz, 1 phase, 200 VAC – 240 VAC/50 Hz
Other requirements
Computer
Warranty
60 months
HS code
Equipment dimensions (L/W/H)
1200 x 520 x 710 mm approx. (47.24 x 20.47 x 27.95 inches approx.) cm
Equipment weight
30 Kg approx. Kg
Production lead time
90 days
Teacher materials available
Yes
Student materials available
Yes
E-Learning modules
Yes
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