VIRTUAL ELECTRICAL ENGINEERING LABORATORY

Numerical Protection of Induction Motor

Numerical relay • Phasor analysis • Fault simulation • Protection characteristics

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Experiment Objective

To perform numerical protection of a three-phase induction motor. The simulation calculates rated current, CT secondary current, relay pickup levels, sequence quantities and operating time for different abnormal operating conditions.

Live Measurements

Rated current
Actual current
CT secondary
✓ SYSTEM READY — NO TRIP

Three-Phase Phasor Diagram

Voltage / Current Phasors — 120° Phase Displacement
Phase A
Phase B
Phase C
Negative sequence

Numerical Protection System

Three-Phase Motor Feeder THREE-PHASE SUPPLY BREAKER CTs NUMERICAL RELAY 49 • 50/51 • 50N/51N • 46 HEALTHY INDUCTION MOTOR CT secondary measurement EARTH

Numerical Calculations

1. Rated Motor Current

IN = P 3 ·V ·η ·cosφ

2. CT Secondary Current

Is = Ip × CTs CTp

3. Thermal Pickup — 49

IOL = K100 × IN

4. Overcurrent Pickup — 50/51

IOC = K100 × IN

5. Earth Fault Pickup — 50N/51N

IEF = K100 × IN

6. Negative Sequence Pickup — 46

I2 = K100 × IN

Inverse-Time Relay Characteristic

IEC-style inverse characteristic
Inverse characteristic
Pickup
Operating point

Three-Phase Current Waveform

Phase currents with 120° displacement
IA
IB
IC

Protection Pickup Comparison

Protection Decision

Element Pickup Measured Decision
49
50/51
50N/51N
46

Adjust the relay settings and run the simulation.