3-Wheeler Electric Vehicle Training Setup with Solar Powered Charging System -IES-EV-351
The 3-Wheeler Electric Vehicle Training Setup with Solar Powered Charging System is an advanced educational platform designed for hands-on learning and experimentation in electric mobility and renewable energy integration. The system replicates the working principles of an electric three-wheeler drivetrain combined with a solar-powered charging subsystem, allowing learners to study the interaction between electric propulsion and solar energy systems. The setup incorporates key EV components including traction motor, motor controller, battery system with BMS, drivetrain transmission and a solar photovoltaic charging arrangement with MPPT control. This configuration enables practical understanding of electric vehicle operation, battery charging behaviour and hybrid energy management between solar and grid power sources.
Key Technical Specifications
Traction MotorHigh-efficiency BLDC / PMSM traction motor designed for 3-wheeler EV applications with configurable voltage levels and regenerative operation support.
Motor ControllerProgrammable motor controller with regenerative braking capability, advanced speed and torque control and CAN communication interface.
Battery & Energy Storage SystemEV-grade lithium battery pack with integrated battery management system for monitoring voltage, current and temperature parameters.
Transmission & Drive SystemDifferential gear drive system suitable for 3-wheeler applications enabling realistic drivetrain operation and load transmission.
Solar Charging SystemIntegrated solar photovoltaic panel array with MPPT-based solar charge controller for efficient solar energy harvesting.
Hybrid Charging & Power ManagementHybrid charging arrangement supporting solar and grid power sources with automatic source switching and DC power management.
Instrumentation & SensorsIntegrated sensors for measurement of voltage, current, torque and speed enabling detailed system monitoring.
Data Acquisition & Monitoring SoftwareCAN-enabled data acquisition system with real-time monitoring, graphical visualization and exportable data analysis.
Display & Control InterfaceDigital meters and PC-based graphical dashboard for live parameter monitoring and system control.
Communication & Safety SystemIntegrated communication interface with emergency stop, overload protection, isolation switches and electrical safety mechanisms.
RANGE OF EXPERIMENTS
Study of electric 3-wheeler powertrain operation and drivetrain integration
Torque–speed and efficiency characteristics analysis of traction motor
Investigation of regenerative braking and energy recovery
Performance evaluation of solar charging system and MPPT operation
Hybrid power source management between solar and grid supply
Battery behaviour analysis and BMS parameter monitoring
CAN-based diagnostics and parameter monitoring
Data acquisition, visualization and performance analysis experiments
FEATURES
Integrated 3-wheeler electric vehicle training platform with solar charging system
Real EV drivetrain components for practical hands-on experimentation
Solar photovoltaic based charging with MPPT technology
Hybrid solar and grid charging capability for continuous operation
Integrated data acquisition system with real-time monitoring dashboard
Modular open-frame structure for easy access and maintenance
Built-in fault simulation and diagnostic learning capability
Suitable for EV laboratories, training centres and research institutions
MAECENAS IACULIS
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ADIPISCING CONVALLIS BULUM
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