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DC MOTORS SEE 3433 ELECTRICAL MACHINES
24

DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

Dec 16, 2015

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Elinor Hines
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Page 1: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

DC MOTORS

SEE 3433

ELECTRICAL MACHINES

Page 2: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

DC MOTOR

- Shunt motors

- Separately excited

- Series (we’ll look briefly)

Page 3: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

DC MOTORS

Page 4: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

+ + --

DC motor

DC MOTOR

Page 5: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

+ + --

DC motor

Mechanical Load: fans, blowers, Compressors,

+Va

-

+Vf

-

Tm Tload

Load torque opposing the motor torque

DC MOTOR

Page 6: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

DC MOTOR

+ + --

DC motor

+V-

+V-

F = mg

Tm Tload

Page 7: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

DC MOTOR

Hoist

Page 8: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

DC MOTOR

- Some applications require the control the speed

- Some applications require the control the torque

- In order to control the torque or speed we need to know the T- characteristics of the motor and the mechanical load

Intersections between the two characteristics will determine the operating point

Page 9: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

DC MOTOR

Shunt motorVt = IaRa + Ea

It = Ia + If

Ea = k

+

Vt

Ra

Rcf

Rcw

ItIf

Ia

Te = kIa

Te

Tload

Mechanicalload

k = Vt - IaRa

k

RIV aat

e2t T

)k(Ra

kV

Page 10: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

Three possible methods of speed control:

Field flux

e2t T

)k(Ra

kV

Armature voltage Vt

Armature resistance Ra

Page 11: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

2T

ea

T

t

k

TRkV

Te

TLT

t

kV

Vt ↓

Varying Vt

Requires variable DC supply

Page 12: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

2T

ea

T

t

k

TRkV

Te

TLT

t

kV

Vt ↓

Varying Vt

Requires variable DC supply

Page 13: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

Te

Varying Vt

Requires variable DC supply

TL

T

eaTt k

TR)k(V

Constant TL

Page 14: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

Vt

aaTt RI)k(V

aaRI

rated,tV

base

Varying Vt

Constant TL

T

eaTt k

TR)k(V

Page 15: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

Introduction

2T

ea

T

t

k

TRkV

Te

Ra ↑

TL

T

t

kV

Varying Ra

Simple controlLosses in external resistor

Page 16: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

2T

ea

T

t

k

TRkV

Te

TL

T

t

kV

Varying

Not possible for PM motorMaximum torque capability reduces

Page 17: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

For wide range of speed control 0 to base armature voltage, above base field flux reduction

Armature voltage control : retain maximum torque capability

Field flux control (i.e. flux reduced) : reduce maximum torque capability

Te

MaximumTorque capability

Armature voltage controlField flux control

base

Method of speed control in DC motor drives

Page 18: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

Te

MaximumTorque capability

base

Page 19: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

Te

Constant powerConstant torque

base

0 to base armature voltage, above base field flux reduction

P = EaIa,max = kaIa,max

Pmax

Pmax = EaIa,max = kabaseIa,max

1/

P

Page 20: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

0 to base armature voltage, above base field flux reduction

Page 21: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

0 to base armature voltage, above base field flux reduction

+

Vt

Ra

Rcf

Rcw

ItIf

Ia

BUT there are problems !

Page 22: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

0 to base armature voltage, above base field flux reduction

+

Vt

Ra

Rcf

Rcw

ItIf

Ia

Controlling Vt will also affect If

Controlling If via Rcf caused losses I2R

Page 23: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

0 to base armature voltage, above base field flux reduction

Separately Excited DC motor

DC supplyfor armature

DC supplyfor field

What if we have an AC supply ?

Page 24: DC MOTORS SEE 3433 ELECTRICAL MACHINES. DC MOTOR - Shunt motors - Separately excited - Series (we’ll look briefly)

Separately Excited DC motor

AC to DCconverter

AC to DCconverter

3-p

ha

se

AC

sou

rce

Armature voltage control Field voltage control

+Vdc

-

+Vdc

-