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Lecture 23 EE743

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that is mechanical power supplied by the prime mover. m and sync are rotating in ... of a 400 V, 3-phase WYE-connected, four-pole, 60Hz induction motor running ... – PowerPoint PPT presentation

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Title: Lecture 23 EE743


1
Lecture 23 - EE743
3-Phase Induction Machines Performance calculation
Professor Ali Keyhani
2
Equivalent circuit
3
Power calculations
Pc core losses
Power crossing the air gap
Rotor losses
Developed power
Electromagnetic power
4
Power calculations
Rotational losses
To load
Pi
P0
Rotational losses
5
Power calculations
6
Power calculations
Recall
assume
7
Power calculations
  • Also note

8
Induction generator
  • For induction generators
  • ?mgt?sync that is mechanical power supplied by the
    prime mover
  • ?m and ?sync are rotating in the same direction
  • generator action Electrical power is supplied to
    the network via stator terminals
  • Also note for this case (?mgt?sync)

N
?sync
S
?sync
N
Tm
?m
  • that is the slip s is negative. Therefore
    negative slip means generator action.

Text
S
9
Special cases
  • Stand still condition (?m0)that is s1
    implies stand still
  • s0 implies ?m?sync that is the induction
    machine is running at synch speed. Induction
    machine can not run at ?sync ?m since frsfs gt
    fr0 (No power transmission)

10
Example 1
  • A six-pole induction motor is supplied by a
    synchronous generator having four poles and
    running at 1500 rpm. If the speed of the
    induction motor is 750 rpm, what is the rotor
    frequency

nm1500 rpm
nm750 rpm
11
Example 1
12
Example 2
  • The input to the rotor circuit of a four-pole
    60Hz induction motor, running at 1000 rpm is 3kW.
    What is the rotor copper losses?

13
Example 2
14
Example 3
  • The stator current of a 400 V, 3-phase
    WYE-connected, four-pole, 60Hz induction motor
    running at s0.06 is 60A at P.F.0.866. The
    stator copper losses is 2700 W, the total iron
    and rotational losses are 3600 W. Calculate the
    efficiency of the motor.

400 V
15
Example 3
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