Hydrogen Fuel Cell Electric Vehicle Training System Integrated with Renewable Energy -IES-EV-354

The Hydrogen Fuel Cell Electric Vehicle Training System Integrated with Renewable Energy is a modular educational platform designed to demonstrate hydrogen-based power generation and its application in electric vehicle propulsion systems. The setup combines a hydrogen fuel cell stack, battery storage system, motor drive and energy management electronics to illustrate the conversion of hydrogen energy into electrical power.
The system can operate as a Fuel Cell Electric Vehicle (FCEV) training platform or as a hybrid energy system integrated with renewable energy sources such as solar photovoltaic or wind modules. This configuration enables learners to study energy conversion, hybrid power management and load sharing between the fuel cell, battery and renewable energy sources.

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IES-EV-354

KEY TECHNICAL SPECIFICATIONS

Fuel Cell Power Generation SystemPEM hydrogen fuel cell stack designed for demonstrating electrochemical energy conversion and electric power generation.

Fuel Cell Stack ConfigurationMulti-cell proton exchange membrane fuel cell module capable of supplying electrical power for EV training applications.

Hydrogen Supply & Control SystemControlled hydrogen supply system with pressure regulation, flow control and safety mechanisms for laboratory operation.

Battery & Energy Storage SystemLithium-ion battery pack integrated with battery management system for energy storage and load balancing.

Motor & Drive SystemElectric traction motor with compatible motor controller used for propulsion and load demonstration.

Charging & Power Management SystemEnergy transfer controller enabling charging of battery from fuel cell output and hybrid energy operation.

Renewable Energy IntegrationProvision for solar photovoltaic or wind energy modules for hybrid renewable energy training experiments.

Instrumentation & Monitoring InterfaceMeasurement and monitoring of voltage, current, hydrogen flow, battery state-of-charge and output power.

Data Acquisition & Monitoring SystemReal-time monitoring interface for observation, data logging and graphical visualization of system parameters.

Safety & Protection SystemIntegrated safety mechanisms including hydrogen pressure control, system shutdown protections and electrical safeguards.

RANGE OF EXPERIMENTS

Study of hydrogen fuel cell operation and start-up behaviour

Analysis of energy conversion from hydrogen to electrical power

Fuel cell to battery charging and load sharing experiments

Hybrid energy system operation with renewable energy sources

Monitoring of battery charging behaviour and state-of-charge

Motor operation using fuel cell generated electrical power

Hydrogen flow measurement and power output analysis

Study of safety shutdown and protection system response

Energy conversion efficiency and system performance evaluation

FEATURES

PEM hydrogen fuel cell based electric vehicle training platform

Demonstration of hydrogen energy conversion and EV propulsion

Hybrid renewable energy integration capability

Real-time monitoring of hydrogen and electrical parameters

Modular workbench design for easy component access

Integrated safety protection and shutdown mechanisms

Suitable for EV, hydrogen energy and renewable energy training

Ideal for engineering laboratories and research centres

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