Description
IES-EV-355
KEY TECHNICAL SPECIFICATIONS
Hybrid Vehicle Training PlatformFull passenger-car hybrid training model with exposed structure for educational demonstration.
Hybrid Powertrain ArchitectureStrong hybrid system demonstrating interaction between internal combustion engine, electric motor and battery.
Internal Combustion Engine ModuleHybrid-compatible petrol engine designed for demonstration of engine operation within a hybrid powertrain.
Traction Motor & Generator SystemPermanent magnet synchronous motor with generator functionality for EV drive, motor assist and battery charging.
Hybrid Transmission SystemPower-split or e-CVT hybrid transmission arrangement demonstrating torque distribution and power flow.
Battery & Energy Storage SystemLithium-ion hybrid battery pack with integrated battery management system for monitoring voltage and state-of-charge.
Power Electronics SystemInverter, DC-DC converter and hybrid control electronics used for power management and propulsion control.
Vehicle Electrical SystemHigh-voltage and low-voltage wiring harness with auxiliary electrical subsystem demonstration.
Vehicle Mechanical SystemsAccessible steering, suspension, drivetrain and braking systems for mechanical study.
Instrumentation & Monitoring InterfaceControl panel displaying parameters such as battery SOC, motor speed, engine RPM and vehicle speed.
Safety & Protection SystemProtective covers, emergency stop, electrical insulation and grounding mechanisms for safe laboratory operation.
RANGE OF EXPERIMENTS
Study of hybrid electric vehicle operating modes (EV, hybrid and engine modes)
Analysis of energy flow and power-split mechanism in hybrid systems
Investigation of regenerative braking operation and energy recovery
Observation of engine–motor–battery interaction in hybrid propulsion
Battery charging behaviour and state-of-charge monitoring
Study of inverter and power electronics operation
Analysis of drivetrain, steering and braking mechanisms
FEATURES
Fully functional anatomical hybrid electric vehicle training platform
Exposed components for clear visualization of vehicle subsystems
Real-time energy flow monitoring and parameter display
Integration of hybrid powertrain and vehicle mechanical systems
Modular structure suitable for laboratory training and demonstration
Built-in safety protection for controlled laboratory operation
Ideal for EV and hybrid vehicle technology education programs

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