A complete hybrid solar photovoltaic (PV) power generation system mainly consists of a power generation unit, a conversion unit, an energy storage unit, a control unit, and supporting auxiliary materials. Each component functions collaboratively to ensure stable system operation.
PV modules generate electricity → prioritize local loads → excess energy charges battery via PCS → remaining energy can be fed into the grid.
The energy storage battery discharges through the PCS to supply local loads. If insufficient, the grid automatically replenishes power.
Buy low-cost electricity from the grid during off-peak periods to charge storage; discharge during peak periods to reduce costs.
During grid failures, the system switches to "off-grid mode" automatically, ensuring operation of critical loads like mining communication or production lines.
| 80-125KW Solar Energy Storage System Solution | |||
|---|---|---|---|
| Model | 80KW | 100KW | 125KW |
| Solar Panel | 80-88KW | 100-110KW | 125-135KW |
| Hybrid Solar Inverter | 80KW | 100KW | 125KW |
| Battery Rack | 200kwh | 241kwh | 261kwh |
| PV/DC Cable | 800 Meters | 1000 Meters | 1200 Meters |
| MC4 Connector | 50 Pairs | 50 Pairs | 50 Pairs |
| Mounting Brackets | Customized Pitched/Flat/Ground Roof Accessories Included | ||
SOLAR PANELS: High conversion efficiency with a design lifespan of 25-30 years. Resistant to wind, sand, and UV.
LFP BATTERY: Lifepo4 technology with ≥8000 deep cycles. High thermal stability and energy density.
HYBRID INVERTER: Integrated PCS, grid-connected generation, and EMS. Supports 200% DC oversizing.
EMS & BMS: Real-time monitoring of SOC/SOH, formulation of optimal charging strategies, and fault protection.









