Blocked rotor test
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A blocked rotor test is conducted on an
induction motor An induction motor or asynchronous motor is an AC motor, AC electric motor in which the electric current in the rotor (electric), rotor that produces torque is obtained by electromagnetic induction from the magnetic field of the stator winding ...
. It is also known as
short-circuit test The purpose of a short-circuit test is to determine the series branch parameters of the equivalent circuit of a transformer. Method The test is conducted on the high-voltage (HV) side of the transformer where the low-voltage (LV) side (or the ...
(because it is the mechanical analogy of a transformer short-circuit test), locked rotor test or stalled torque test. From this test,
short-circuit current A short circuit (sometimes abbreviated to short or s/c) is an electrical network, electrical circuit that allows a Electric current, current to travel along an unintended path with no or very low electrical impedance. This results in an excessiv ...
at normal voltage,
power factor In electrical engineering, the power factor of an AC power system is defined as the ratio of the ''real power'' absorbed by the electrical load, load to the ''apparent power'' flowing in the circuit. Real power is the average of the instantaneou ...
on short circuit, total
leakage reactance Leakage inductance derives from the electrical property of an imperfectly coupled transformer whereby each Electromagnetic coil, winding behaves as a self-inductance in series and parallel circuits, series with the winding's respective Electrical r ...
, and starting torque of the motor can be found. It is very important to know a motor's starting torque since if it is not enough to overcome the initial friction of its intended load then it will remain stationary while drawing an excessive current and rapidly overheat. The test may be conducted at lower voltage because at the normal voltage the current through the windings would be high enough to rapidly overheat and damage them. The test may still be conducted at full voltage if it is brief enough to avoid overheating the windings or overloading the starting circuits, but requires much more care to be taken while performing the test. The ''blocked rotor torque test'' is less significant on wound-rotor motors because the starting torque of these wound-rotor motors depend upon the external resistance added. However, it may still be used to characterise the motor.


Method

In the blocked rotor test, the
rotor ROTOR was an elaborate air defence radar system built by the British Government in the early 1950s to counter possible attack by Soviet bombers. To get it operational as quickly as possible, it was initially made up primarily of WWII-era syst ...
is locked securely enough that it cannot break free. A low voltage is applied on the
stator The stator is the stationary part of a rotary system, found in electric generators, electric motors, sirens, mud motors, or biological rotors (such as bacterial flagella or ATP synthase). Energy flows through a stator to or from the rotat ...
terminals so that there is
full load current Inrush current, input surge current, or switch-on surge is the maximal instantaneous input current drawn by an electrical device when first turned on. Alternating-current electric motors and transformers may draw several times their normal full-lo ...
in the stator winding, and the current, voltage and power input are measured at that point. When the rotor is stationary, the
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, s = 1 . The test is conducted at 1/4 the rated frequency as recommended by IEEE, because the rotor's effective resistance at low frequency may differ at high frequency. The test can be repeated for different values of voltage to ensure the values obtained are consistent. As the current through the stator may exceed the rated current, the test should be conducted quickly. By using the parameters found by this test, the motor circle diagram can be constructed.


Calculations involved


Short-circuit current at normal voltage

I_ is the short-circuit current at voltage V_
I_ is the short-circuit current at normal voltage V
I_ = I_ \times \frac


Short-circuit power factor

W_ is the total input power on short circuit
V_ is the line voltage on short circuit
I_ is the line current on short circuit
cos \phi_ is the short-circuit power factor
cos \phi_ = \frac


Leakage reactance

Z_ is the short-circuit impedance as referred to stator
X_ is the leakage reactance per phase as referred to stator
Z_ = \frac \text \text = \frac W_ is the total copper loss
W_ is the core loss W_ = W_ - W_
W_ = \times R_ = \frac X_ = \sqrt


See also

*
Open-circuit test Open circuit may refer to: * Open circuit breathing apparatus, any type of breathing apparatus where the exhaled gas is discharged to the surroundings without recycling any of it ** Open-circuit scuba, a type of Scuba-diving equipment where the user ...
* Circle diagram


References

{{Electric machines Electrical circuits