the stator winding are supplied with balanced three-phase ac voltage, which produce induced voltage...

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The stator winding are supplied with balanced three- phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the distribution of stator winding so that there is an effect of multiple poles, producing several cycle of magnetomotive force (mmf) or field around the air gap. The speed of rotation of field is called the synchronous speed s , which is defined by : p s 2 ω s is syncronous speed [rad/sec] N s is syncronous speed [rpm] p is numbers of poles ω is the supply frequency [rad/sec] f is the supply frequency [Hz] N m is motor speed Stator Three-phase windings Rotor Airgap T Rotorwindings Three- phase supply m s p f N s 120 or

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Page 1: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the distribution of stator winding so that there is an effect of multiple poles, producing several cycle of magnetomotive force (mmf) or field around the air gap.

The speed of rotation of field is called the synchronous speed s , which is defined by :

ps

2

ωs is syncronous speed [rad/sec] Ns is syncronous speed [rpm] p is numbers of polesω is the supply frequency [rad/sec] f is the supply frequency [Hz] Nm is motor speed

Stator

Three-phasewindings

RotorAir gap

T

Rotor windings

Three-phasesupply

ms

p

fNs

120

or

Page 2: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

Stator

Three-phasewindings

RotorAir gap

T

Rotor windings

Three-phasesupply

ms

The rotor speed or motor speed is : )1( Ssm

Where S is slip, as defined as : S

mSS

Or

S

mS

N

NNS

The motor speed

Page 3: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

Equivalent Circuit Of Induction MotorEquivalent Circuit Of Induction Motor

Stator

Three-phasewindings

RotorAir gap

T

Rotor windings

Three-phasesupply

ms

Stator Air gap motor

Vs

Is

Im Ir’

Xs Xr’Rs

RmXm

Rr’/s

Where :

Rs is resistance per-phase of stator winding

Rr is resistance per-phase of rotor winding

Xs is leakage reactance per-phase of the winding stator

Xs is leakage reactance per-phase of the winding rotor

Xm is magnetizing reactance

Rm is Core losses as a reactance

Page 4: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

Performance Characteristic of Induction Motor

Stator copper loss :

Stator Air gap motor

Vs

Is

Im Ir’

Xs Xr’Rs

RmXm

Rr’/s

sscus RIP 23'2')(3 rrcur RIP Rotor copper loss :

m

s

m

mc R

V

R

VP

22

33 Core losses :

Page 5: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

S

RIP rrg

'2')(3

)1()(3'

2' SS

RIPPP rrcurgd

)1( SPP gd

- Power developed on air gap (Power fropm stator to rotor through air gap) :

Performance Characteristic of Induction Motor

- Power developed by motor :

or

- Torque of motor :m

dd

PT

s

g

S

g P

S

SP

)1(

)1(or

m

dd N

PT

2

60or

Page 6: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

mssi IVP cos3

gcusc PPP Input power of motor :

Performance Characteristic of Induction Motor

loadnodo PPP

gcusc

loadnod

i

o

PPP

PP

P

P

Output power of motor :

Efficiency :

Page 7: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

)( cuscg PPP

loadnod PP

SP

SP

P

P

g

g

g

d

1)1(

If

and

so, the efficiency can calculated as :

Performance Characteristic of Induction Motor

Page 8: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

)( 222ssm XRX

Generally, value of reactance magnetization Xm >> value Rm (core

losses) and also

So, the magnetizing voltage same with the input voltage : sm VV

Therefore, the equivalent circuit is ;

Stator Air gap motor

Vs

Is

Im Ir’

Xs Xr’Rs

RmXm

Rr’/s

Stator Air gap rotor

Vs

Ii

Im Ir’

Xs Xr’Rs

Rr’/s

PiPo

Is=Ir’

Xm

Performance Characteristic of Induction Motor

Page 9: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

)(

)()(

''

''

rsmr

s

rsmrsm

i

XXXjS

RR

S

RRjXXXX

Z

Total Impedance of this circuit is :

Performance Characteristic of Induction Motor

Stator Air gap rotor

Vs

Ii

Im Ir’

Xs Xr’Rs

Rr’/s

PiPo

Is=Ir’

Xm

The rotor current is :

2

1

2'

2'

'

rsr

s

sr

XXS

RR

VI

Page 10: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

2'

2'

2'3

rsr

ss

srd

XXS

RRS

VRT

Stator Air gap rotor

Vs

Ii

Im Ir’

Xs Xr’Rs

Rr’/s

PiPo

Is=Ir’

Tmax

Smax

Tst

Td

S=0s

Ns

S=1

TL

S=Smm

NmNm =0

Tm=TL

Operating point

Torque – speed Characteristic

Page 11: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

Tmax

Smax

Tst

S=0s

Ns

S=1

S=Sm

Nm =0

ss =0s

-Tmax

-Smax

S=-1 S=2

Forwardregeneration

Forwardmotoring

Reverseplugging

smsm

sm

Torque

Three region operation :

1. Motoring :

2. Regenerating :

3. Plugging :

10 S

0S

21 S

Page 12: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

Starting speed of motor is m = 0 or S = 1,

Performance Characteristic of Induction Motor

Starting torque of motor is :

2'

2'

2'3

rsr

ss

srst

XXS

RR

VRT

Slip for the maximum torque Smax can be found by setting : 0dS

Td d

So, the slip on maximum torque is :

212'2

'

max

rss

r

XXR

RS

Page 13: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

2'2

2

max

2

3

rssss

s

XXRR

VT

Performance Characteristic of Induction Motor

Torque maximum is :

And the maximum regenerative torque can be found as :

2'2

2

max

2

3

rssss

s

XXRR

VT

Where the slip of motor s = - Sm

Page 14: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

2'

2'

2'3

rsr

ss

srd

XXS

RRS

VRT

Speed-Torque Characteristic :

2'

2'

S

RRXX rsrs

2'

2'3

rss

srd

XXS

VRT

2'

2'3

rss

srst

XX

VRT

For the high Slip S. (starting)

So, the torque of motor is :

And starting torque (slip S=1) is :

Page 15: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

sr

rs RS

RXX

'2'

rs

sd R

SVT

'

3 2

For low slip S region, the motor speed near unity or synchronous speed, in this region the impedance motor is :

So, the motor torque is :

212'2

'

max

rss

r

XXR

RS

And the slip at maximum torque is :

The maximum motor torque is :

2'

2'

2'3

rsr

ss

srd

XXS

RRS

VRT

Page 16: The stator winding are supplied with balanced three-phase AC voltage, which produce induced voltage in the rotor windings. It is possible to arrange the

Tmax

S=0s

Ns

S=1

TL

Nm =0

Td

Vs1Vs Vs2> >

12

Tst

Tst1

Tst2

Stator Voltage Control

Controlling Induction Motor Speed by Adjusting The Stator Voltage Td

IMAC

VariableVoltageSources

Vs

Stator airgap

rotor

Ii

Im Ir’

Xs Xr’Rs

Rr’/s

PiPo

Is=Ir’

Vs

2'

2'

2'3

rsr

ss

srd

XXS

RRS

VRT