Electrical systems • Displacement power factor

Estimate power-factor correction kVAR.

Calculate the theoretical reactive-power change between an existing lagging displacement power factor and a target value.

Clean-waveform scope only. This simplified method is not valid where meaningful nonlinear loads or harmonics may be present.

Step 1

Enter measured conditions

kW

Use measured or documented real power for the same operating condition.

Greater than 0 and no more than 1.

Must be at least the existing PF and no more than 1.

Mandatory scope checkAre there meaningful VFD, UPS, rectifier or other nonlinear loads—or known harmonics?

If uncertain, choose “Not sure.” The calculator will fail closed.

Runs in your browser. No entered data is stored or sent.

Step 2

Calculation result

Enter the measured values and complete the mandatory scope check.

Method and formula

For clean, near-sinusoidal conditions: φ₁ = acos(PF₁), φ₂ = acos(PF₂), Q₁ = P × tan(φ₁), Q₂ = P × tan(φ₂), and Qc = Q₁ − Q₂. Apparent powers are S₁ = P ÷ PF₁ and S₂ = P ÷ PF₂. With P in kW, reactive-power values are in kVAR and apparent-power values are in kVA.

Limits and interpretation

This is a steady-state displacement-power-factor calculation. It assumes lagging PF, constant active power and representative measurements. It does not model voltage, frequency, load steps, phase imbalance, harmonics, resonance, leading operation or equipment ratings. It performs no equipment, protection or installation design.

Why the harmonic gate fails closed

Power-electronic loads can introduce harmonic current, while power-factor correction equipment can be sensitive to harmonic conditions and resonance. “Yes” and “Not sure” therefore produce no kVAR value and require a power-quality assessment.

Sources