Distribution planning tool that converts total connected load (kW) into maximum diversified peak demand, projects compound multi-year load growth, and recommends the next standard IEC/ANSI transformer rating with spare capacity headroom.
Governing Formulas & Standards
Standards Basis: IEEE C57.96 / IS 10561 / IEC 60076-1
S_{req} = \frac{P_{conn} \times \text{DF} \times (1 + g)^n}{\cos\phi} \quad ; \quad S_{select} \ge S_{req}
Applies demand factor to connected load, compounds by annual growth rate over n years, and divides by power factor to derive apparent power in kVA.
Worked Engineering Example: Commercial Facility Transformer Sizing (10-Year Horizon)
- Diversified Peak kW: P_peak = 1200 × 0.65 = 780.0 kW → 780 kW
- Future Load with Growth: P_future = 780 × 1.20 = 936.0 kW → 936 kW
- Required kVA Capacity: S_req = 936 / 0.85 = 1101.2 kVA → 1,101 kVA
Final Solution: Selected Standard Rating: 1,250 kVA (Initial Loading: 73.4% | Headroom: 149 kVA)
Frequently Asked Questions
- What is the difference between connected load and maximum demand?
- Connected load is the algebraic sum of the continuous ratings of all installed electrical appliances. Maximum demand is the highest actual load drawn simultaneously over a specified interval, accounting for diversity.
Interactive calculation engine and real-time CAD solver available online at https://amithvijayan.in/tools/transformer-capacity-sizing.