A 440-V, 3-phase, 8-pole, 50-Hz star-connected induction motor is given. The equivalent circuit of R1 -0.1ohm, R2 0.1/s ohm; x1 x'2 j0.5 ohm, Rc-100 ohm, xm-j20 ohm. The short-circuit test is conducted with a locked rotor and a line current of 80 A. The 'open-circuit' test is conducted by supplying the primary winding at rated voltage and at the same time driving the rotor in the same direction as the rotating field, at synchronous speed; s 0. Detemine: (a) the line voltage and power factor on the short-circuit test; (b) the line current and power factor on the 'open-circuit' test; (c) the equivalent circuit per-phase if these tests were analyzed on an approximate basis; i.e. neglecting the magnetizing branch when analyzing the s.c. test and neglecting the series leakage impedances for analysis of the o.c. test
A 440-V, 3-phase, 8-pole, 50-Hz star-connected induction motor is given. The equivalent circuit of R1 -0.1ohm, R2 0.1/s ohm; x1 x'2 j0.5 ohm, Rc-100 ohm, xm-j20 ohm. The short-circuit test is conducted with a locked rotor and a line current of 80 A. The 'open-circuit' test is conducted by supplying the primary winding at rated voltage and at the same time driving the rotor in the same direction as the rotating field, at synchronous speed; s 0. Detemine: (a) the line voltage and power factor on the short-circuit test; (b) the line current and power factor on the 'open-circuit' test; (c) the equivalent circuit per-phase if these tests were analyzed on an approximate basis; i.e. neglecting the magnetizing branch when analyzing the s.c. test and neglecting the series leakage impedances for analysis of the o.c. test
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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![A 440-V, 3-phase, 8-pole, 50-Hz star-connected induction motor is given. The
equivalent circuit of RI -0.1ohm, R2-0.1/s ohm; x1 =x'2= j0.5 ohm,
Rc-100 ohm, xm-j20 ohm. The short-cireuit test is conducted with a locked rotor
and a line current of 80 A. The 'open-circuit' test is conducted by supplying the
primary winding at rated voltage and at the same time driving the rotor in the same
direction as the rotating field, at synchronous speed; s 0. Determine:
(a) the line voltage and power factor on the short-circuit test;
(b) the line current and power factor on the 'open-circuit' test;
(c) the equivalent circuit per-phase if these tests were analyzed on an approximate
basis; i.e. neglecting the magnetizing branch when analyzing the s.c. test and
neglecting the series leakage impedances for analysis of the o.c. test](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F3c22c388-69cf-4d55-a26a-1300dbe5f4ce%2Fbb916c7e-e4aa-4a41-95d5-ad4f11c2e2ec%2Fgpj5aun_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A 440-V, 3-phase, 8-pole, 50-Hz star-connected induction motor is given. The
equivalent circuit of RI -0.1ohm, R2-0.1/s ohm; x1 =x'2= j0.5 ohm,
Rc-100 ohm, xm-j20 ohm. The short-cireuit test is conducted with a locked rotor
and a line current of 80 A. The 'open-circuit' test is conducted by supplying the
primary winding at rated voltage and at the same time driving the rotor in the same
direction as the rotating field, at synchronous speed; s 0. Determine:
(a) the line voltage and power factor on the short-circuit test;
(b) the line current and power factor on the 'open-circuit' test;
(c) the equivalent circuit per-phase if these tests were analyzed on an approximate
basis; i.e. neglecting the magnetizing branch when analyzing the s.c. test and
neglecting the series leakage impedances for analysis of the o.c. test
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