Solar-storage-charging solution

Suitable for electric vehicle charging stations, it addresses the price differential between peak and off-peak hours as well as charging demand peaks, thereby boosting the utilization of green electricity.

Photovoltaic green electricity directly powers vehicle charging, while intelligent energy storage expansion alleviates transformer pressure. Combining peak-valley arbitrage with charging revenue, and employing dynamic management to mitigate grid risks, we empower charging stations to operate efficiently.

 

Scheme advantages

Tripartite Collaboration

Integration of photovoltaics, energy storage, and charging stations to enhance the utilization rate of green electricity.

Intelligent Scaling

Optimize transformer capacity through algorithms; flexibly handle surges in charging loads.

Risk aversion

Dynamically manage power; prevent overloading and the risk of reverse power flow.

Direct supply of green electricity

Photovoltaic power directly charges vehicles, reducing reliance on the power grid and electricity costs.

Revenue stacking

Peak-valley arbitrage combined with green electricity revenue enhances the profitability of charging stations.

 

System architecture diagram

 

Applicable scenarios

  • Urban fast-charging stations, logistics park charging stations, corporate charging stations, and more.
  • The peak charging load experiences significant fluctuations, and electricity costs and capacity expansion pressures are particularly prominent.

Customer value

  • Direct supply of green electricity reduces costs: Photovoltaic power directly charges vehicles, reducing reliance on grid electricity for charging stations.
  • Transformer Capacity Expansion: Optimizing the algorithm to adjust transformer capacity and flexibly handle peak charging loads.
  • Combined revenue streams: peak-valley arbitrage + green electricity revenue + charging service fees, enhancing profitability.
  • Security Assurance: Dynamic power management to avoid overloading and the risk of reverse power flow.
  • Efficient Operation: Coordinated scheduling of photovoltaic, energy storage, and charging systems to enhance the 24-hour service capability of charging stations.