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Industrial photovoltaic energy storage management platform

NegotiableUpdate on 01/20
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Overview
By implementing intelligent energy management, the industrial photovoltaic energy storage management platform enables us to better utilize the potential of energy storage stations, promote the sustainable development of clean energy, and contribute to the construction of a green and low-carbon future energy system.
Product Details

Industrial photovoltaic energy storage management platformApplication Scenario:

1) Factories and shopping malls:Factories and shopping malls have obvious electricity usage habits. Installing energy storage for peak shaving, valley filling, and demand management can reduce electricity costs and serve as a backup power source for emergency situations;

2) Light storage charging station:Photovoltaic self use and supply of energy to electric vehicle charging stations, energy storage to mitigate the impact of high-power charging stations on the power grid;

3) Microgrid:Microgrids have the flexibility to operate on or off the grid, mainly in industrial parks, islands, and remote areas. Energy storage plays a role in balancing power generation supply and electricity load;

4) New application scenarios:Industrial and commercial energy storage is actively exploring new scenarios for integrated development, which have appeared in many application scenarios such as data centers, 5G base stations, battery swapping heavy trucks, and port shore power.


Functions of industrial photovoltaic energy storage management platform

  1. Real time monitoring and control

    • Monitor photovoltaic power generation, energy storage charging and discharging status, grid voltage frequency, and user load.

    • Remote control of inverter start stop, PCS power setting, and battery balancing charging and discharging.

  2. Energy optimization management

    • Economic dispatch: Develop charging and discharging plans based on electricity price fluctuations (peak valley levels) and photovoltaic forecasts.

    • Demand response: In response to the peak shaving demand of the power grid, discharge to support the grid during peak electricity consumption.

    • Microgrid operation: In off grid mode, coordinate photovoltaic, energy storage, and diesel generators to ensure power supply reliability.

  3. Fault diagnosis and warning

    • Monitor battery temperature and voltage abnormalities through BMS to prevent thermal runaway or overcharging and discharging.

    • Analyze the harmonic content and PCS efficiency of the inverter to detect equipment degradation trends in advance.

    • Combining meteorological data to predict photovoltaic power generation and optimize energy storage reserve capacity.

  4. Data Analysis and Reporting

    • Generate statistical reports on daily/monthly/annual power generation, energy storage charging and discharging, carbon emission reduction, etc.

    • Compare actual operational data with simulation models to evaluate system performance and economy.

    • Support custom report export (such as Excel, PDF format).