induction motor protection system

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Page 2: Induction Motor Protection System

http://www.edgefxkits.com/

Introduction:

Three-phase induction motors are the most common and frequently

encountered machines in the industry.

An induction motor works on transforming action. The stator works as

the primary, while the rotor works as the secondary. It is also called

asynchronous motor.

It is simple in design, rugged, low-price and has easy maintenance.

It runs essentially as constant speed from no-load to full load.

Induction Motor Protection System

Page 3: Induction Motor Protection System

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Its speed depends on the frequency of the power source.

It is not easy to have variable speed control and requires a variable-

frequency power electronic drive for optimal speed control.

Induction Motor Protection System

Page 4: Induction Motor Protection System

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Description:

To provide safety to the industrial motor/pump/lift Motor etc. If any of the

phases, out of the 3 phases is missing or if the temperature of the motor

during operation exceeds the threshold value, motor stops immediately.

The system uses a 3-Phase power supply where three single phase

transformers are connected to it.

If any of the phases is not available the corresponding transformer stops

supplying power to the circuit. This leads to one of the four relays getting

switched OFF.

The main relay which is powered through a set of four relays gets

disconnected because of one relay not being powered.

Induction Motor Protection System

Page 5: Induction Motor Protection System

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Thus the motor gets disconnected. A thermistor is connected to the

motor body to sense the temperature. If the temperature increases then

supply to the fourth relay is disconnected.

Induction Motor Protection System

Page 6: Induction Motor Protection System

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An induction motor has two main parts:

Stator - It is the stationary part of the motor.

Rotor - It is the rotating part of the motor.

Induction Motor Protection System

Page 7: Induction Motor Protection System

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Stator has three main parts:

Outer Frame : It is the outer body of the motor. It protects the inner

part of the machine.

Stator Core: Built up of high grade silicon steel. Carries the

alternating magnetic field.

Stator winding: Has a three phase winding.

Induction Motor Protection System

Page 8: Induction Motor Protection System

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There Are Two Types Of Rotors Which Are Employed In 3 –

Phase Induction Motor:

Squirrel

Phase Cage Rotor or wound/ Slip Ring Rotor.

Induction Motor Protection System

Page 9: Induction Motor Protection System

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Squirrel:

It consists of a laminated cylindrical core having semi closed circular

slots at the outer periphery.

Copper or aluminum bar conductors are placed in these slots and short

circuited at each end by copper or aluminum rings called short circuiting

rings.

The rotor winding is permanently short circuited and it is not possible to

add any external resistance.

The rotor slots are not parallel to the shaft but skewed to reduce

humming, provide smoother torque for different positions of rotor and

reduce magnetic locking of stator and rotor.

Induction Motor Protection System

Page 10: Induction Motor Protection System

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Phase Wound Rotor:

It is also called SLIP RING ROTOR

Consists of a laminated core having semi closed slots at the outer

periphery and carries a 3-phase insulated winding.

The rotor is wound for the same number of poles as that of stator.

The three finish terminals are connected together forming a star point

and the three star terminals are connected to three slip rings fixed on the

shaft.

Induction Motor Protection System

Page 11: Induction Motor Protection System

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Slip:

Induction motor rotor always rotate at a speed less than synchronous

speed.

The difference between the flux (Ns) and the rotor speed (N) is called

slip.

% Slip = (Ns – N) N

Slip speed = Ns – N 100

Induction Motor Protection System

Page 12: Induction Motor Protection System

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The Working of an Induction Motor:

A 3 phase AC current passing through a stator winding produces a rotating

magnetic field. So as in the previous case, current will be induced in the

bars of the squirrel cage and it will start to rotate.

This is due to the rate of change of magnetic flux in one squirrel bar pair

which is different from another, due to its different orientation.

This variation of current in the bar will change over time. That's why the

name induction motor used in electricity is induced in rotor by magnetic

induction rather than direct electric connection.

Such small slices of iron layers make sure that eddy current losses are at a

minimum.

Induction Motor Protection System

Page 13: Induction Motor Protection System

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The bars of a squirrel cage are inclined to the axis of rotation, or it has got

a skew. This is to prevent torque fluctuation.

If the bars were straight there would have been a small time gap for the

torque in the rotor bar pair to get transferred to the next pair.

This will cause torque fluctuation and vibration in the rotor. By providing

a skew in the rotor bars, before the torque in one bar pair dies out, the next

pair comes into action. Thus it avoids torque fluctuation.

Induction Motor Protection System

Page 14: Induction Motor Protection System

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Principle of Operation:

A rotating field is set up in the stator when a 3- Phase supply is given.

The stationary rotor cut the revolving field and due to electromagnetic

induction an e.m.f. is induced in the rotor conductor.

As the rotor conductor is short circuited current flows through them.

It becomes a current carrying conductor in magnetic field and start

rotating.

Induction Motor Protection System

Page 15: Induction Motor Protection System

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Future Scope:

Single phasing and high temperature protections are easily achieved by

this simple circuit using comparator and relay circuits.

Further it can be enhanced by using current sensors for over load

protection and phase sequence sensor for protecting the motor from

applying wrong phase sequence.

It can also modify as once the temperature comes to the normal position

it will automatically come to normal operation of the motor.

Induction Motor Protection System

Page 16: Induction Motor Protection System

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Conclusion:

Induction Motor Protection System is against the single phasing and

the high temperature is achieved by simply interrupting the power

supply to the load effectively by the use of comparator - transistor

driven relays.

Without using microcontroller and other programmable devices makes

the protection scheme simple and less complex.

Induction Motor Protection System