How to use: Estimate your carport PV capacity and charging piles. The table shows typical daily EV charging demand, recommended battery storage, and PV system size, with notes for reliability.
Scenario | Charging Setup | Daily EV Load (kWh) | Recommended Battery Storage | Recommended PV Capacity | Notes |
---|---|---|---|---|---|
Small Carport | 1 × 7kW AC Charger | ≈ 20–30 kWh/day | 15–20 kWh | 8–10 kW | Suitable for households / small office |
Medium Carport | 2 × 11kW AC Chargers | ≈ 50–60 kWh/day | 40–50 kWh | 20–25 kW | Good for commercial parking lots |
Large Carport | 4 × 22kW AC Chargers | ≈ 120–150 kWh/day | 100–120 kWh | 50–60 kW | Enterprises, hotels, fleet charging |
Public Charging Hub | 4 × 60kW DC Chargers | ≈ 400–500 kWh/day | 300–400 kWh | 150–200 kW | Service stations, highway rest stops |
Mega Station | 10 × 120kW DC Chargers | ≥ 1,200 kWh/day | ≥ 1,000 kWh | 500 kW – 1 MW | Large transport hubs, logistics centers |
Note: This table is a quick reference for PV + Energy Storage + Charging sizing. Actual design depends on EV type, charging behavior, and local solar resources.
🌞 PV-powered charging reduces grid dependency and electricity bills.
🔋 Energy storage ensures stable operation and peak shaving.
🚗 Smart charging improves efficiency for households, fleets, and public stations.
👉 For customized design that ensures maximum savings and reliability, please
contact our emxperts today.
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