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This book highlights procedures utilized by the design departments
of leading global manufacturers, offering readers essential
insights into the electromagnetic and thermal design of rotating
field (induction and synchronous) electric machines. Further, it
details the physics of the key phenomena involved in the machines'
operation, conducts a thorough analysis and synthesis of polyphase
windings, and presents the tools and methods used in the evaluation
of winding performance. The book develops and solves the machines'
magnetic circuits, and determines their electromagnetic forces and
torques. Special attention is paid to thermal problems in
electrical machines, along with fluid flow computations. With a
clear emphasis on the practical aspects of electric machine design
and synthesis, the author applies his nearly 40 years of
professional experience with electric machine manufacturers - both
as an employee and consultant - to provide readers with the tools
they need to determine fluid flow parameters and compute
temperature distributions.
This book highlights procedures utilized by the design departments
of leading global manufacturers, offering readers essential
insights into the electromagnetic and thermal design of rotating
field (induction and synchronous) electric machines. Further, it
details the physics of the key phenomena involved in the machines'
operation, conducts a thorough analysis and synthesis of polyphase
windings, and presents the tools and methods used in the evaluation
of winding performance. The book develops and solves the machines'
magnetic circuits, and determines their electromagnetic forces and
torques. Special attention is paid to thermal problems in
electrical machines, along with fluid flow computations. With a
clear emphasis on the practical aspects of electric machine design
and synthesis, the author applies his nearly 40 years of
professional experience with electric machine manufacturers - both
as an employee and consultant - to provide readers with the tools
they need to determine fluid flow parameters and compute
temperature distributions.
This book is a result of the author's work which was initiated
about a decade ago and which, in the meantime, has resulted in his
Ph.D. Thesis and several technical papers. The book deals with
accurate modeling of electric machines during transient and steady
states, a topic which has been usually avoided in the literature.
The modeling techniques herein take into account all machine
peculiarities, such as the type and connection of its windings,
slotting, and saturation in the iron core. A special emphasis in
the book is given to the exact physical interpretation of all
phenomena which influence the machine's transient behavior. Besides
the Introduction, the book has five chapters. The second chapter
describes basic concepts of the magnetic equivalent circuit theory
and has examples of magnetic equivalent circuits of several types
of machines with their node potential equations. In the third
chapter the transform matrices w' and w" of A.C. wind ings are
derived. These matrices playa very important role in the magnetic
equivalent circuit theory because they connect the quantities from
the ma chine's magnetic equivalent circuit, branch fluxes, and mmfs
with the ma chine's phase currents and fluxes."
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