Electric Machine; Check image, all question there. The test data on 208 volt (line to line), 60Hz , four-pole , Y connected , three phase IM rated at 1710 rpm is as follows: Test Data; No load Test Blocked Rotor Test Power Input : 450W 59.4W Line Current : 1.562A 2.77A Line Voltage : 208V 27V "The state resistance (dc) between any two terminal is 2.4Ω" "Friction and windage loss is 18W" Compute the equivalent circuit parameters
Electric Machine; Check image, all question there. The test data on 208 volt (line to line), 60Hz , four-pole , Y connected , three phase IM rated at 1710 rpm is as follows: Test Data; No load Test Blocked Rotor Test Power Input : 450W 59.4W Line Current : 1.562A 2.77A Line Voltage : 208V 27V "The state resistance (dc) between any two terminal is 2.4Ω" "Friction and windage loss is 18W" Compute the equivalent circuit parameters
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Electric Machine; Check image, all question there.
The test data on 208 volt (line to line), 60Hz , four-pole , Y connected , three phase IM rated at 1710 rpm is as follows:
Test Data;
No load Test Blocked Rotor Test
Power Input : 450W 59.4W
Line Current : 1.562A 2.77A
Line Voltage : 208V 27V
"The state resistance (dc) between any two terminal is 2.4Ω"
"Friction and windage loss is 18W"
Compute the equivalent circuit parameters of the motor.
![X,
X,
R,
4(1)
(1)
i, (1)
R,
R.
i,(1)
Fig. Equivalent Circuit
The test data on 208 volt (line to line), 60 Hz, four - pole, Y connected, three phase IM rated at 1710 rpm is as follows :
Test Data
No load Test Blocked Rotor Test
Power Input 450 W
59.4 W
Line Current 1.562 A
2.77 A
Line Voltage 208 V
27 V
*The state resistance (dc) between any two terminal is 2.4 N.
**Friction and windage loss is 18 W.
Compute the equivalent circuit parameters of the motor
O a. R1 = 1.2 N, R2 = 1.38051 N, X1 = 2.50054 N, X2 = 2.50054 N, R. = 100.148 N, Xm = 128.04 N
O b. R = 2.4 N, R2 = 1.085 N, X1 = 1.5 N, X2 = 1.5 N, R. = 70.25 N, Xm = 88.4 n
O c. R1 = 2.4 2, R2 = 0.80531 N, X1 = 3.275 N, X2 = 3.275 N, R. = 75.2775 N, Xm
115.08 N
%3D
O d. R1 = 1.2 N, R2 = 0.38051 N, X1 = 2.254 N, X2 = 2.254 N, R. = 90.148 N, Xm
28.04 N
%3D
O e. R1 = 2.4 S, R2 = 2.38051 N, X1 = 2.3554 N, X2 = 2.3554 N, R. = 120.417 N, Xm = 64.04N
%3D](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd36c63ce-8093-49b2-a67d-9c7f0d69fa93%2F5341ad80-fde3-40e3-a8bd-fc319d424ea1%2Fni2ngiw_processed.png&w=3840&q=75)
Transcribed Image Text:X,
X,
R,
4(1)
(1)
i, (1)
R,
R.
i,(1)
Fig. Equivalent Circuit
The test data on 208 volt (line to line), 60 Hz, four - pole, Y connected, three phase IM rated at 1710 rpm is as follows :
Test Data
No load Test Blocked Rotor Test
Power Input 450 W
59.4 W
Line Current 1.562 A
2.77 A
Line Voltage 208 V
27 V
*The state resistance (dc) between any two terminal is 2.4 N.
**Friction and windage loss is 18 W.
Compute the equivalent circuit parameters of the motor
O a. R1 = 1.2 N, R2 = 1.38051 N, X1 = 2.50054 N, X2 = 2.50054 N, R. = 100.148 N, Xm = 128.04 N
O b. R = 2.4 N, R2 = 1.085 N, X1 = 1.5 N, X2 = 1.5 N, R. = 70.25 N, Xm = 88.4 n
O c. R1 = 2.4 2, R2 = 0.80531 N, X1 = 3.275 N, X2 = 3.275 N, R. = 75.2775 N, Xm
115.08 N
%3D
O d. R1 = 1.2 N, R2 = 0.38051 N, X1 = 2.254 N, X2 = 2.254 N, R. = 90.148 N, Xm
28.04 N
%3D
O e. R1 = 2.4 S, R2 = 2.38051 N, X1 = 2.3554 N, X2 = 2.3554 N, R. = 120.417 N, Xm = 64.04N
%3D
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