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General Theory of Electric Machines
EEPE 6398
Erik Jonsson School of Engineering and Computer Science
Fundamentals of electromechanical energy conversion, operating time constants, and dynamic operation of electric machinery. The theory and models of synchronous generators transient operations. Fundamentals of reference frame theory in multi-phase systems and its application to permanent magnet synchronous machines, wound rotor synchronous machines, induction machines, and synchronous reluctance machines. Electric machines operations using reluctance torque including steady state and transient operation of salient pole synchronous machines, interior permanent magnet synchronous motors and switched reluctance machines. 3 credit hours.
Offering Frequency: Each year
Grades: 51
Median GPA: A
Mean GPA: 3.368
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General Theory of Electric Machines
EEPE 6398
Erik Jonsson School of Engineering and Computer Science
Fundamentals of electromechanical energy conversion, operating time constants, and dynamic operation of electric machinery. The theory and models of synchronous generators transient operations. Fundamentals of reference frame theory in multi-phase systems and its application to permanent magnet synchronous machines, wound rotor synchronous machines, induction machines, and synchronous reluctance machines. Electric machines operations using reluctance torque including steady state and transient operation of salient pole synchronous machines, interior permanent magnet synchronous motors and switched reluctance machines. 3 credit hours.
Offering Frequency: Each year
Grades: 51
Median GPA: A
Mean GPA: 3.368
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