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Wind Power Training System with Comprehensive Modules IoT-based Intelligent Control and Pure Sine Wave Power

Henan Ruimu Intelligent Technology Co., Ltd.
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    Buy cheap Wind Power Training System with Comprehensive Modules IoT-based Intelligent Control and Pure Sine Wave Power from wholesalers
     
    Buy cheap Wind Power Training System with Comprehensive Modules IoT-based Intelligent Control and Pure Sine Wave Power from wholesalers
    • Buy cheap Wind Power Training System with Comprehensive Modules IoT-based Intelligent Control and Pure Sine Wave Power from wholesalers

    Wind Power Training System with Comprehensive Modules IoT-based Intelligent Control and Pure Sine Wave Power

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    Model Number : RM-F177
    Payment Terms : T/T
    Certification : ISO9001/ISO14001/ISO45001
    Brand Name : RUIMU
    • Product Details
    • Company Profile

    Wind Power Training System with Comprehensive Modules IoT-based Intelligent Control and Pure Sine Wave Power

    Electrical Training Equipment Offering Comprehensive Modules Covering Electrical Safety Standards and Operational Procedures
    Product Overview

    The device consists of seven main units: a wind turbine generator, a wind power generation controller, a power storage unit, an inverter module, a switch control unit, a load unit, and a display unit. The system can conduct experiments on the entire process of wind power generation and is an ideal product for vocational high schools, universities, and graduate students to conduct research, training, and teaching on wind power generation as their main research topic.

    Teaching Characteristics
    • The system's experimental platform integrates an indoor temperature/humidity meter and a wind speed measurement system, making it more intuitive for users to operate.
    • The system uses digital DSP technology to achieve fully intelligent management of battery charging and discharging.
    • The system panel features intuitive digital instruments and an LCD display, allowing users to instantly understand the system's operating status.
    • The off-grid power supply on the system can provide users with pure 110V/220V AC sine wave power.
    • The wind power generation teaching experiment system allows students to disassemble, move, and use it themselves. It is easy to use, energy-saving, environmentally friendly, and pollution-free.
    • Adding a module on the principles and experiments of distributed generation will enhance students' understanding of new knowledge.
    System Operation Technical Conditions
    Total capacity: <1.5kVA
    Operating power supply: ~3N/380V/50Hz/3A
    Dimensions: 1565mm × 720mm × 1650mm
    Weight: <150kg
    System Components & Specifications
    1. Wind Power System
    Wind turbine diameter: 1.65m
    Starting wind speed: 1.5 m/s
    Rated wind speed: 12 m/s
    Safe wind speed: 35 m/s
    Operating mode: Upwind permanent magnet synchronous generator
    Fan blade rotation direction: clockwise
    Number of blades: 3
    Wind turbine blade material: Glass-reinforced polypropylene
    Motor materials: Aluminum alloy & stainless steel
    Simulated wind tunnel air volume: 34073 m³/h, 1275Pa-2138Pa
    Voltage: Three-phase four-wire 380VAC
    Power: 2.2 kW
    Speed control unit: 2.2KW vector frequency inverter, output frequency: 0-100Hz
    2. Charging System
    Rated power: 400W
    Rated voltage: 12/24V
    Rated current: 33.3/16.7A
    3. Electric Energy Storage System
    Energy storage type: Valve-regulated sealed lead-acid battery
    Rated voltage: 12V
    Rated capacity: 55 Ah
    Charging method: Constant voltage, maximum charging current: 5.6A
    4. Off-grid Inverter Module System
    DC input voltage: 10.5 ~ 16.8 VDC
    Rated output power: 300W
    Output voltage: 110/220 VAC
    Output waveform: Pure sine wave
    Output frequency: 50Hz
    Work efficiency: 85%
    Power factor: >0.88
    Waveform distortion rate: ≤5%
    Operating environment: Temperature -20℃~50℃, Relative humidity: <90% (25℃)
    Protection functions: Reverse polarity protection, short circuit protection, overheat protection, and overload protection
    5. Control Module System
    Operating voltage: 12V DC
    Charging power: 500W
    Photovoltaic power: 100W
    Fan power: 400W
    Charging method: PWM pulse width modulation
    Maximum charging current: 16.5A
    Over-discharge protection voltage: 10.5V
    Over-discharge recovery voltage: 12.6V
    Output protection voltage: 16.2V
    Unloading start voltage: 15V (factory setting)
    Unloading start current: 12A (factory setting)
    Controller functions: Battery overcharge protection, over-discharge protection, battery open circuit protection, load overvoltage protection, output short circuit protection, battery reverse connection protection, undervoltage and overvoltage anti-vibration protection, equalization charging, and temperature compensation
    6. Load Module Device System
    Fan: 1 unit, 12/24V, 1.25A, 15W
    Traffic lights: 1 set (R, G, B), 12/24V, 0.8A, 9.6W
    Motor: 1 unit, 12/24V, 0.35A, 5W, Speed: 20rpm/min
    AC loads: One AC LED light and one AC energy-saving lamp
    DC analog load: 12V/24V/28W LED street light board with PWM dimming function and adjustable output power
    7. Wind Measurement System
    Measurement range: Wind speed: 0~60m/s
    Accuracy: ±0.1m/s
    Operating power supply: AC 220V±20% 50HZ, DC12V, 5V or other power supply
    Recording interval: 1 minute to 240 minutes, continuously adjustable
    Internal storage: 4M bit
    Ambient temperature: -40℃~50℃
    Speed sensor: 0-5000 RPM wind turbine speed detection and display (indoor)
    Safety feature: Over-wind speed alarm interrupt output function for closed-loop equipment connection
    8. Display Device System
    DC ammeter: 1 unit, 20A, 0.5" LED display
    DC voltmeter: 1 unit, 50V, 0.5" LED display
    AC voltmeter: 1 unit, 500V, 0.5" LED display
    AC ammeter: 1 unit, 5A, 0.5" LED display
    AC voltmeter: 1 unit, 50V, 0.5" LED display
    AC ammeter: 1 unit, 50A, 0.5" LED display
    Time, temperature/humidity meter: 1 unit, displays time from -20 to 99.9℃, indoor temperature and humidity
    Fan tachometer: 1 unit, 5A, 0.5" LED display
    9. Electrical Switch Control Panel
    Components: AC residual current circuit breaker, emergency stop switch, instrument switch, fan input switch, DC input switch, instrument display, control buttons (switches), intelligent wind-solar hybrid controller, anemometer, and blower speed control
    10. IoT-based Intelligent Control System for Safe Electricity Use in Laboratories
    Features
    • Disconnects within 0.1 seconds when detecting leakage or electric shock
    • Fault indicator lights for easy troubleshooting
    • Padlock function for maintenance safety
    • Cloud data upload via IoT communication for remote monitoring
    Functions
    • Collects, analyzes, stores, and queries electricity consumption data
    • Real-time data visualization with chart-based queries
    • Real-time monitoring of electrical equipment and line status
    • Automatic fault location and report generation
    • Power quality monitoring and customized solutions
    • Energy efficiency optimization through data analysis
    Technical Parameters - Actuator
    Number of poles3P+N
    Tripping characteristicsC (5-10)In D (10-14)In
    Rated currentIn 6A, 10A, 16A, 20A, 25A, 32A, 40A, 50A, 63A
    Rated voltageUe AC 230V/400V
    Rated frequency50Hz
    Rated short-circuit breaking capacityIcu 10kA
    Rated current of the frameInm63A
    Protection featuresPhase loss, leakage, overload, short circuit, padlock, over-temperature, over/under voltage protection
    Technical Parameters - Network Device
    Main control chipSTM32F103C8T6
    Crystal oscillator8M passive
    Communication chipSP3485
    InterfaceStandard RS485
    Dimensions89mm × 67.5mm × 20.5mm
    Weight70g
    Power supplyAC220V
    Power consumption1.5W
    Operating temperature-25℃ to +70℃
    Operating humidity95%
    Practical Training Projects
    • Experiment 1. Fundamental Theoretical Experiment on Wind Power Generation
    • Experiment 2. Wind Power Generation System Design Experiment
    • Experiment 3. Simulation Experiment of Basic Theory and Application Technology of Wind Power Generation
    • Experiment 4. Measurement Techniques Related to Wind Power Generation
    • Experiment 5. Wind Power Generation Control Technology Experiment
    • Experiment 6. Wind Power Generation Power Electronics Experiment
    • Experiment 7. Over-discharge protection, over-discharge recovery, overcharge protection, and overcharge recovery. Equalizing charge protection, equalizing charge recovery, float charge protection, float charge recovery
    • Experiment 8. Over-wind speed alarm, under-wind speed alarm, and LCD display of wind speed
    • Experiment 9. Direct Load Experiment of Wind Power Generation System
    • Experiment 10. The Influence of Wind Speed Variation on Wind Power Generation Systems
    • Experiment 11. Experiment on the Principle of Speed Limiting Mechanical Protection System
    • Experiment 12. Experiment on the Principle of Speed Limiting Electronic Control Protection System
    • Experiment 13. Overpower Protection Experiment for Fans
    • Experiment 14. Fan Overspeed Protection Experiment
    • Experiment 15. Wind power generation curves at different rotational speeds
    • Experiment 16. Wind Condition Detection Experiment
    • Experiment 17. Independent Fan System Experiment
    • Experiment 18. Comprehensive Experiment
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