Q8 (10 Marks) Electrical Circuits & Calculations 🔥 Repeated 4x in exams
MET • Written Exam

(a) What are the factors which determine the synchronous speed of a motor? (6)

(b) The star-connected rotor of an induction motor has a standstill resistance of 4.5 ohms/phase and a resistance of 0.5 ohms/phase. The motor has an Induced emf of 50V between the slip-rings at stand-still on open circuit when connected to its normal supply voltage. Find the current in each phase and the power factor at start when the slip-ring is short-circuited (10)

Appeared In: Jul 2026Feb 2024Jan 2024Sep 2022

Verified Model Answer (Text Solution)

Structured for DG Shipping MEO Class II examination scoring criteria.

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Part (a)

The synchronous speed of an AC motor is determined by two primary factors:

  • Supply Frequency (f)
  • Number of Poles (P)

The relationship between these factors and the synchronous speed (Ns) is given by the formula:

$$N_{s}=\frac{120f}{P}$$

Where Ns is the synchronous speed in revolutions per minute (RPM), f is the supply frequency in hertz, and P is the number of poles.

For example,

  • A 2-pole motor (P=2) running on a 50 Hz supply (f=50) will have a synchronous speed of 3000 RPM.
  • A 4-pole motor (P=4) on the same supply will have a synchronous speed of 1500 RPM.

In practical applications, especially for induction motors, the actual operating speed is slightly less than the synchronous speed due to a phenomenon known as slip, which is necessary for torque production.

For synchronous motors, the rotor locks in step with the stator's rotating magnetic field, and thus operates precisely at the synchronous speed.

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