This book addresses the vector control of three-phase AC machines, in particular induction motors with squirrel-cage rotors (IM), permanent magnet synchronous motors (PMSM) and doubly-fed induction machines (DFIM), from a practical design and development perspective. The main focus is on the application of IM and PMSM in electrical drive systems, where field-orientated control has been successfully established in practice. It also discusses the use of grid-voltage oriented control of DFIMs in wind power plants. This second, enlarged edition includes new insights into flatness-based nonlinear control of IM, PMSM and DFIM. The book is useful for practitioners as well as development engineers and designers in the area of electrical drives and wind-power technology. It is a valuable resource for researchers and students.
By:
Nguyen Phung Quang, Jörg-Andreas Dittrich Imprint: Springer-Verlag Berlin and Heidelberg GmbH & Co. K Country of Publication: Germany Edition: Softcover reprint of the original 2nd ed. 2015 Dimensions:
Height: 235mm,
Width: 155mm,
Spine: 20mm
Weight: 5.854kg ISBN:9783662518038 ISBN 10: 3662518031 Series:Power Systems Pages: 364 Publication Date:29 October 2016 Audience:
Professional and scholarly
,
Undergraduate
Format:Paperback Publisher's Status: Active
Principles of vector orientation and vector orientated control structures for systems using three-phase AC machines.- Inverter control with space vector modulation.- Machine models as prerequisite to design the controllers and observers.- Problems of actual-value measurement and vector orientation.- Dynamic current feedback control for fast torque impression in drive systems.- Equivalent circuits and methods to determine the system parameters.- On-line adaptation of the rotor time constant for IM drives.- Optimal control of state variables and set points for IM drives.- Nonlinear control structures for three-phase AC drive systems.- Linear control structure for wind power plants with DFIM.- Nonlinear control structures for wind power plants with DFIM.