Calculadora de Diseño de Estación de Carga de VE
Dimensione el transformador y la distribución para una estación de carga de VE — carga de demanda, factor de uso simultáneo, tensión de suministro y una lista de materiales de referencia.
Para consultores e instaladores que dimensionan el servicio eléctrico y el transformador para estaciones de carga de VE AC y DC.
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Ejemplo resuelto
Un ejemplo de referencia precalculado (indexable — no requiere JavaScript). Introduzca sus propios parámetros arriba para obtener un resultado en vivo.
Ejemplo resuelto — 4×7 kW + 2×22 kW AC + 2×60 kW + 1×120 kW DC
| Quantity | Value |
|---|---|
| Connected load | 312 kW (Σ chargers × rated power) |
| Diversity factor | 0.8 (simultaneous-use factor) |
| Demand load | 312 × 0.8 = 250 kW |
| Demand (apparent) | 250 ÷ 0.95 = 263 kVA |
| Required transformer | next standard ≥ 289 kVA → 315 kVA |
| Supply voltage | 10 kV (MV feed) — recommended for this size |
| Equipment | Spec | Qty | Subtotal |
|---|---|---|---|
| AC charger (7 kW) | 7 kW · 1-phase/3-phase | 4 | POA |
| AC charger (22 kW) | 22 kW · 3-phase | 2 | POA |
| DC fast charger (60 kW) | 60 kW · CCS/GB-T | 2 | POA |
| DC fast charger (120 kW) | 120 kW · CCS/GB-T | 1 | POA |
| Distribution transformer | 315 kVA · 10 kV / 0.4 kV · S13 | 1 | POA |
| Total equipment (reference) | POA |
Ejemplo resuelto — centro de carga rápida DC de 4×120 kW
| Quantity | Value |
|---|---|
| Connected load | 480 kW (Σ chargers × rated power) |
| Diversity factor | 0.9 (simultaneous-use factor) |
| Demand load | 480 × 0.9 = 432 kW |
| Demand (apparent) | 432 ÷ 0.95 = 455 kVA |
| Required transformer | next standard ≥ 500 kVA → 630 kVA |
| Supply voltage | 10 kV (MV feed) — recommended for this size |
| Equipment | Spec | Qty | Subtotal |
|---|---|---|---|
| DC fast charger (120 kW) | 120 kW · CCS/GB-T | 4 | POA |
| Distribution transformer | 630 kVA · 10 kV / 0.4 kV · S13 | 1 | POA |
| Total equipment (reference) | POA |
Cómo se calculó
- · Carga conectada: Σ (número de cargadores × potencia nominal).
- · Carga de demanda: Pdemand = Pconnected × factor de diversidad.
- · kVA de demanda: S = Pdemand ÷ factor de potencia.
- · Transformador: siguiente kVA estándar ≥ S × 1,1 (margen de diseño).
- · Corriente de línea: I = S ÷ (√3 · U).
Normas referenciadas
| Standard | Scope |
|---|---|
| IEC 61851 | Sistema de carga conductiva para vehículos eléctricos |
| GB/T 51313 | Norma técnica para instalaciones de carga distribuidas de VE |
| GB/T 18487 | Sistema de carga conductiva para vehículos eléctricos (China) |
Preguntas frecuentes
How do I size the transformer for an EV charging station?
Sum the charger ratings with a coincidence factor: AC Level 2 chargers are 7-22 kW each, DC fast chargers 60-360 kW. A 10-charger DC station can peak near 500-1200 kVA. Size the Transformer to the coincident peak plus margin, per IEC 61851 and GB/T 51313. The calculator computes demand and transformer kVA.
What is the difference between AC and DC EV charging?
AC charging (Level 2, 7-22 kW) uses the vehicle's onboard charger and takes hours; DC fast charging (60-360 kW) bypasses it and charges to 80% in 20-40 minutes. DC stations need much larger electrical supply and cooling. The calculator models both and sizes supply accordingly.
What is the typical demand factor for an EV charging station?
EV charging is time-correlated, so the demand factor is higher than other loads — 0.7-1.0 for a busy DC fast-charging hub. A fleet depot charging overnight runs 0.8-1.0 simultaneously. The calculator applies a coincidence factor to avoid undersizing the supply.
What supply voltage does a DC fast charging station need?
A small station (a few 60-120 kW chargers) runs on 0.4 kV; a larger hub (500 kW-1.5 MW) needs a 10 kV feed and a dedicated transformer, per GB/T 51313. The calculator selects the supply voltage and transformer from the aggregated charger load.
What charging standard should the station support?
Global standards: CCS (Combined Charging System) and CHAdeMO for DC, GB/T 20234 for China, and Type 2 for AC. A station serving mixed fleets usually offers CCS2 DC plus Type 2 AC. The calculator's design basis assumes IEC 61851-compliant chargers.
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