| Line Name | Parent Node | Dir | Pole ID | Len(m) | Load(kW) | Conductor | Dn.kW | Dn.Amps | Span VD% | Cum. VD% | Loss(W) | Action |
|---|
🖱️ Interactive Map: Drag canvas to pan. Use Zoom buttons on top right.
| Conductor Type | Type Class | Ampacity / Max Current (A) | Resistance R (Ω/km) | Reactance X (Ω/km) |
|---|
1. 3-Phase Downstream Current (I): I = (kW × 1000) / (√3 × V_system × cosΦ)
2. Voltage Drop / Regulation (V_drop & %VD): V_drop = √3 × I × (R·cosΦ + X·sinΦ) × (Length / 1000) | %VD = (V_drop / V_system) × 100
3. Conductor Line Loss (P_loss): P_loss = 3 × I² × R × (Length / 1000) (W)
4. Transformer Losses & Annual Energy Loss (kWh): P_Tx = P_NoLoad + P_FullLoad × (Actual_kVA / Rated_kVA)² | Annual kWh = Total_kW_Loss × 8760 × Load_Factor (0.3)
| Line Type | Parent | Dir | Node ID | Len(km) | Load(kW) | Conductor | DTC / Tx | Tx kVA Action | Dn.kW | Dn.A | Span VR% | Cum VR% | Loss(kW) | Act |
|---|
🖱️ Drag to pan · Order: Substation (SS) → Trunk / Spur → DTC (25/63/100/250)
1. Current: I = kW / (√3 × V_kV × cosφ)
2. Voltage Drop & Regulation: V_drop = √3 × I × (R·cosΦ + X·sinΦ) × L_km | %VR = (V_drop / V) × 100
3. Active Line Loss: Loss_kW = 3 × I² × R × L_km / 1000
4. Annual Energy Loss Estimation (kWh): Annual kWh = Total_Loss_kW × 8760 Hours × Load_Factor (0.3)