A 3-phase, 12 kW, start-connected permanent magnet (PM) motor has a rated speed of 2200 rpm when supplied from a 110 Hz supply. The d-axis and q-axis inductances are La= 3.5mH and Lq= 4.7mH, respectively. The armature resistance and rotational losses are negligible. The motor operates without field weakening up to 2200 rpm, and a negative direct-axis current is imposed if the motor operates at speeds above 2200 rpm. The no-load terminal line-to-line voltage at 1250 rpm is 420 V (RMS). a. Determine the permanent magnet flux linkage. b. Calculate the rated phase current. c. Calculate the rated line to line voltage of the PM motor.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
icon
Related questions
Question
A 3-phase, 12 kW, start-connected permanent magnet (PM) motor has a rated speed of 2200
rpm when supplied from a 110 Hz supply. The d-axis and q-axis inductances are La= 3.5mH
and Lq= 4.7mH, respectively. The armature resistance and rotational losses are negligible.
The motor operates without field weakening up to 2200 rpm, and a negative direct-axis
current is imposed if the motor operates at speeds above 2200 rpm.
The no-load terminal line-to-line voltage at 1250 rpm is 420 V (RMS).
a. Determine the permanent magnet flux linkage.
b. Calculate the rated phase current.
c.
Calculate the rated line to line voltage of the PM motor.
d. At a speed of 3000 rpm, the PM motor operates in field weakening mode with a direct
axis current of -30A and produces a torque of 15 Nm. Determine the per-phase current
at this operating condition.
Transcribed Image Text:A 3-phase, 12 kW, start-connected permanent magnet (PM) motor has a rated speed of 2200 rpm when supplied from a 110 Hz supply. The d-axis and q-axis inductances are La= 3.5mH and Lq= 4.7mH, respectively. The armature resistance and rotational losses are negligible. The motor operates without field weakening up to 2200 rpm, and a negative direct-axis current is imposed if the motor operates at speeds above 2200 rpm. The no-load terminal line-to-line voltage at 1250 rpm is 420 V (RMS). a. Determine the permanent magnet flux linkage. b. Calculate the rated phase current. c. Calculate the rated line to line voltage of the PM motor. d. At a speed of 3000 rpm, the PM motor operates in field weakening mode with a direct axis current of -30A and produces a torque of 15 Nm. Determine the per-phase current at this operating condition.
Expert Solution
steps

Step by step

Solved in 4 steps

Blurred answer
Knowledge Booster
Three phase Induction Motor
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, electrical-engineering and related others by exploring similar questions and additional content below.
Similar questions
Recommended textbooks for you
Introductory Circuit Analysis (13th Edition)
Introductory Circuit Analysis (13th Edition)
Electrical Engineering
ISBN:
9780133923605
Author:
Robert L. Boylestad
Publisher:
PEARSON
Delmar's Standard Textbook Of Electricity
Delmar's Standard Textbook Of Electricity
Electrical Engineering
ISBN:
9781337900348
Author:
Stephen L. Herman
Publisher:
Cengage Learning
Programmable Logic Controllers
Programmable Logic Controllers
Electrical Engineering
ISBN:
9780073373843
Author:
Frank D. Petruzella
Publisher:
McGraw-Hill Education
Fundamentals of Electric Circuits
Fundamentals of Electric Circuits
Electrical Engineering
ISBN:
9780078028229
Author:
Charles K Alexander, Matthew Sadiku
Publisher:
McGraw-Hill Education
Electric Circuits. (11th Edition)
Electric Circuits. (11th Edition)
Electrical Engineering
ISBN:
9780134746968
Author:
James W. Nilsson, Susan Riedel
Publisher:
PEARSON
Engineering Electromagnetics
Engineering Electromagnetics
Electrical Engineering
ISBN:
9780078028151
Author:
Hayt, William H. (william Hart), Jr, BUCK, John A.
Publisher:
Mcgraw-hill Education,