Overall Architecture: Three-layer linkage + Intelligent Dispatching Hub (Core Hub)
Core logic: New energy power generation (solar/wind/hydrogen) → energy storage buffering (smoothing fluctuations) → intelligent grid connection/dispatching (adapting to power grid/load) → intelligent operation and maintenance (optimizing efficiency), forming a closed-loop iteration to ensure the safe, stable, and efficient operation of the new energy system.
First layer: Power generation layer (core production capacity of new energy, "energy source" of the system)
Core function: Convert renewable energy into usable energy such as electricity/hydrogen energy, serving as the foundation of new energy solutions and determining the production capacity scale and energy types of the system.
Second layer: Energy storage and grid connection layer (system "stabilizer + connector")
Core role: To smooth out the fluctuations in new energy power generation, achieve safe grid connection, and ensure stable power supply to loads. It is a core link in addressing the "intermittency and volatility" of new energy, connecting the power generation layer and the electricity consumption layer.
Third layer: Scheduling and Operation & Maintenance Layer (the "smart brain" of the system)
Core function: Based on the whole-process data, realize intelligent dispatching, efficient operation and maintenance, and optimized decision-making of new energy systems, transforming from "passive operation" to "active optimization" to improve system efficiency and benefits.
Core Hub: Data Middle Platform (running through the three-layer architecture)
Core Function: Break down data barriers among the power generation layer, energy storage and grid-connection layer, and dispatching and operation and maintenance layer, and realize the unified collection, storage, cleaning, and sharing of power generation data, energy storage data, grid-connection data, and operation and maintenance data;
Core Value: Avoid "information silos", provide unified data support for power prediction, dispatching optimization, and fault early warning, and realize the "data-driven" operation of new energy systems.