| • The unit demonstrates the practical application of such a combined system for student to conduct the |
| investigation of wind power generation. It is supplied as standard with a high-powered axial fan to |
| generate realistic wind-speeds and allows investigation of system performance inside the laboratory |
| irrespective of outside conditions. |
| • The wind module comes with direction emulator, that is, the angle of wind source can be adjusted |
| automatically by PLC or manually by HMI & pushbuttons, simulating the different wind directions. The |
| wind speed can be controlled by VFD with push button for adjustment, anemometer for data collection |
| and HMI for display. |
| • A hybrid controller is adopted in this system, available for both solar and wind power generation, |
| user can easily extend the trainer into a hybrid power generation system by adding solar simulator directly. |
| • Dedicated instrumentation includes, watt hour meter, AC/DC voltmeter and ampere meters for |
| investigation of system efficiency and characteristics. |
|
| > TRAINING CONTENT |
| • Wind turbine start-up wind speed experiment |
| • Wind turbine voltage output characteristic curve measurement |
| • Automatic / manual wind field control system experiment |
| • DC resistive and inductive load experiment |
| • AC resistive, capacitive and inductive load experiment |
| • Wind power generation AC and DC integrated output application |
| • Electricity consumption measurement of wind power generation AC output load |
| • HMI monitoring and control experiment |
| • PLC programming experiment |
| • Complete system hardware assembly experiment |
| • Complete system software design experiment |