By adopting flexible DC technology to interconnect power supply zones, we break the open‑loop limitations of conventional low‑voltage AC distribution. This strengthens source‑grid‑load interactions and improves cross‑area power‑supply reliability.

ADVANTAGES

Area Integrated Energy Solution

  • Real‑time line‑load monitoring enables dynamic cross‑area load redistribution to avoid localized overloads.

  • Smart switching and sectional control optimize supply radii and reduce power losses.

Mitigates Seasonal Low‑Voltage Issues

  • Automated transformer‑tap or reactive‑compensation adjustments maintain voltage stability.

  • Peak‑period load transfers alleviate low‑voltage conditions.

Optimizes Reactive‑Compensation Settings

  • Dynamic reactive‑compensation boosts power factor and reduces power losses.

  • Real‑time PV and load monitoring enables fine‑tuning of PV feed‑in power.

Prevents Distributed‑PV Over‑Voltage

  • Real‑time PV and load monitoring enables precise fine‑tuning of operating conditions.

  • Energy‑storage buffering of surplus PV power prevents reverse‑power overload.

Controls Reverse‑Feed Overload

  • PV‑access‑point voltage monitoring paired with inverter output control prevents over‑voltage.

  • Cross‑area PV power transfers mitigate local voltage spikes.

CHARACTERISTIC

Source-Grid-Load-Storage High-Efficiency Aggregation

Unify power sources, grid assets, energy storage and loads via customized control strategies that leverage each module’s characteristics. Fully activate energy storage and demand‑response resources for multi‑directional interactions, realizing highly‑efficient local microgrid management. Low‑power‑mode operation boosts on‑site PV consumption and guarantees system stability.

Virtual Power Plant Construction

Integrate data acquisition, monitoring, control and optimization functions to achieve unified dispatching of distributed generation, energy storage and loads, improving overall system efficiency and stability.

Peak Shaving &Valley-Filling Strategy

Through intelligent load control, the system maintains normal operation during daytime PV generation peaks and appropriately curtails power consumption at nighttime demand peaks, increasing local PV self‑consumption.

Application Scenarios

Rural grid

modernization

Zone interconnection and intelligent monitoring resolve long‑distance power supply and low‑voltage problems in rural networks.

Urban distribution

optimization

Enhance power supply reliability and power quality within high‑load urban zones.

Distributed-PV

demonstration zones

Prevent PV‑induced over‑voltage and reverse‑feed overload in PV‑dense regions.

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