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HRN-1202 Dynamic Solar Power Generation Trainer

Technical Parameters
1. Input power: two-phase three-wire 220V ± 10% 50Hz
2. Working environment: temperature -10 °C ~ +55 °C Relative humidity ≤ 95% (no condensation) altitude <2000m
3. Device capacity: ≤2.5kVA
4. Overall structure size: Simulation device: width 2100mm × depth 1800mm × height 2000mm Training cabinet size: width 1000* depth 550* height 1900
5.Security protection: with leakage protection, safety in line with national standards

Product Description:

 Equipment overview

• The unit demonstrates the practical application of such a combined system for student to conduct the investigation of photovoltaic generation. It is supplied as standard with an adjustable light source to allow investigation of system performance inside the laboratory irrespective of outside conditions.

• The solar module comes with altitude emulator, that is, the angle of light source can be adjusted automatically by PLC or manually by HMI & pushbuttons, simulating the sun's rising and falling. An dual-axis tracking platform is installed with the PV panel to realize the automatic / manual sun tracking function.

• 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 wind simulator directly.

• Dedicated instrumentation includes, watt hour meter, AC/DC voltmeter and ampere meters for investigation of system efficiency and characteristics.

 

 Training program

• Solar panel open circuit voltage test

• Solar panel short circuit current test

• Solar panel iv characteristic test experiment

• Solar panel maximum power output characteristics experiment

• Solar panel transfer efficiency experiment

• Solar panel PV characteristics experiment

• Automatic / manual two-axis solar tracking system experiment

• Automatic / manual sun path control system experiment

• DC resistive and inductive load experiment

• AC resistive, capacitive and inductive load experiment

• Solar AC and DC integrated output application

• Electricity consumption measurement of solar AC output load

• HMI monitoring and control experiment

• PLC programming experiment

• Complete system hardware assembly experiment

• Complete system software design experiment

s) DC load test experiment

t) AC load test experiment

 



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