11. The rotor resistance and standstill reactance of a 3-phase induction motor are respectively 0.015 2 and 0.09 2 per phase. At normal voltage, the full-load slip is 3%. Estimate the percentage reduction in stator voltage to develop full-load torque at one-half of full-load speed. What is then the power factor ?

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter35: Harmonics 916
Section: Chapter Questions
Problem 3RQ: Would a positive-rotating harmonic or a negative-rotating harmonic be more harmful to an induction...
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11. The rotor resistance and standstill reactance of a 3-phase induction motor are respectively 0.015 2
and 0.09 2 per phase. At normal voltage, the full-load slip is 3%. Estimate the percentage reduction
in stator voltage to develop full-load torque at one-half of full-load speed. What is then the power
factor ?
Transcribed Image Text:11. The rotor resistance and standstill reactance of a 3-phase induction motor are respectively 0.015 2 and 0.09 2 per phase. At normal voltage, the full-load slip is 3%. Estimate the percentage reduction in stator voltage to develop full-load torque at one-half of full-load speed. What is then the power factor ?
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