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1.Photovoltaic Solar Environmental Monitoring System Product Overview
Photovoltaic Solar Environmental Monitoring System is mainly used to monitor the environmental condition of photovoltaic solar power station.Meteorological environment data is an important indicator to determine solar power generation and plays a decisive role in the quality of solar power generation; it also provides effective data guarantee for the design of solar power stations.The BGF11S smart cloud digital high-precision solar power generation environment monitoring system is a standard meteorological environment monitoring station designed and produced in accordance with the International Meteorological WMO Organization Meteorological Observation Standards and IEC (International Electrotechnical Technical Committee) standard standards.At the same time, it also complies with the requirements of the relevant contents in GB/T19964 "Technical Regulations on Photovoltaic Power Generation Connection Power Systems" and Q/GDW11000 "Specifications on the Information Exchange of Photovoltaic Power Station Grid-connected Scheduling Operation".The meteorological data that can be monitored by this system include: ambient temperature, ambient humidity, atmospheric pressure, wind speed, wind direction, backplane temperature, peak sunshine hours, horizontal total radiation, inclined total radiation, direct radiation, scattered radiation and other meteorological data.It has the characteristics of stable performance, high detection accuracy, and unattended, and can meet the business requirements of professional meteorological observation.
Widely used in real-time monitoring of solar power plants, providing data guarantee for studying solar power quality, efficiency, fault diagnosis data management.
2.Photovoltaic Solar Environmental Monitoring System product features
1.Real-time data monitoring: It can collect and analyze a variety of meteorological data, including a variety of meteorological data such as a networked operation report data, ambient temperature, ambient humidity, atmospheric pressure, wind speed, wind direction, backplane temperature, peak sunshine hours, horizontal total radiation, inclined total radiation, direct radiation, scattered radiation and other meteorological data.
2.Technology-based acquisition instrument: The photovoltaic environment data acquisition instrument adopts a new generation of 32-bit MCU processor, and the on-board integrated high-precision GPS chip can accurately correct the acquisition time and perform high-precision positioning.
3.Offline data analysis: A 32-bit processor is used to collect and analyze the collected data information without platform calculation and cloud analysis.The statistical analysis data is directly output through the collector statistical function to facilitate users to store and analyze the collected information.
4.Integrated wind speed and direction sensor: Use self-developed integrated wind speed and direction sensor, which has a simple structure, waterproof and dustproof, more stable monitoring performance, higher measurement accuracy, more convenient installation, and guaranteed quality.
5.Stainless steel equipment protective box: The equipment protective box is designed with stainless steel material, with external corrosion resistance and internal waterproof design, which better protects the electrical structure of the equipment and ensures the stability of the equipment without monitoring for a long time.
6.Global tracker: Direct radiation sensor and scattered radiation sensor are equipped with global adaptive fully automatic solar tracker.This tracker can be used normally worldwide at a global scale of less than 60° south latitude and less than 60° north latitude, with a temperature range of -40~60° ℃
7.Green power management: This data collector can use two power supply modes: AC220V and DC12V.It also integrates a new generation of green power management modules to achieve intelligent switching between AC and DC power supply.
8.Integrated observation bracket: The integrated observation bracket designed with the appearance is convenient for on-site personnel to quickly, conveniently and simply install and debug equipment in one person.
3.Photovoltaic Solar Environmental Monitoring System Technical Indicators
Technical parameters | Measurement range | Resolution | Accuracy | unit |
Ambient temperature | -40~80 | 0.1 | ±0.3 | ℃ |
Ambient humidity | 0~100 | 0.1 | ±2 | %RH |
Atmospheric pressure | 300~1100 | 0.1 | ±0.12 | hPa |
Wind speed | 0~60 | 0.1 | ±0.2m/s | m/s |
wind direction | 0~360 | 1 | ±1 | ° |
Backplane temperature | -50~100 | 0.1 | ±0.5 | ℃ |
Peak sunshine hours | 0~24 | 0.01 | --- | h |
Total horizontal radiation | 0~2000 | 1 | ≤5% | w/m2 |
Total tilt radiation | 0~2000 | 1 | ≤5% | w/m2 |
Direct radiation | 0~2000 | 1 | ≤5% | w/m2 |
Scattered radiation | 0~2000 | 1 | ≤5% | w/m2 |
Power system | AC220V±10% | Ensure normal operation of power supply to the on-site meteorological station | Users choose power supply method according to the on-site situation | |
DC12V | ||||
50W solar power supply | ||||
40Ah battery | ||||
Communication system | RS485 | Communication distance 0~1000m | Standard Modbus communication mode | |
Observation bracket | Integrated radiation joint observation bracket | Suitable for on-site long-term monitoring of solar power environment monitoring stations |