Permanent Magnet Synchronous Machines

Interest in permanent magnet synchronous machines (PMSMs) is continuously increasing worldwide, especially with the increased use of renewable energy and the electrification of transports. This book contains the successful submissions of fifteen papers to a Special Issue of Energies on the subject a...

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Year of Publication:2019
Language:English
Physical Description:1 electronic resource (282 p.)
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100 1 |a Eriksson, Sandra  |4 auth 
245 1 0 |a Permanent Magnet Synchronous Machines 
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520 |a Interest in permanent magnet synchronous machines (PMSMs) is continuously increasing worldwide, especially with the increased use of renewable energy and the electrification of transports. This book contains the successful submissions of fifteen papers to a Special Issue of Energies on the subject area of “Permanent Magnet Synchronous Machines”. The focus is on permanent magnet synchronous machines and the electrical systems they are connected to. The presented work represents a wide range of areas. Studies of control systems, both for permanent magnet synchronous machines and for brushless DC motors, are presented and experimentally verified. Design studies of generators for wind power, wave power and hydro power are presented. Finite element method simulations and analytical design methods are used. The presented studies represent several of the different research fields on permanent magnet machines and electric drives. 
546 |a English 
653 |a MPC 
653 |a predictive current control (PCC) 
653 |a fault diagnosis 
653 |a modeling 
653 |a back electromotive force 
653 |a finite-element analysis 
653 |a sensorless control 
653 |a brushless dc motor 
653 |a flying start 
653 |a periodic timer interrupt 
653 |a digital simulation 
653 |a torque control 
653 |a saturation 
653 |a renewable energy 
653 |a finite element method 
653 |a sensorless motor 
653 |a electric propulsion systems 
653 |a electric vehicle 
653 |a energy efficiency 
653 |a sub-fractional slot-concentrated winding 
653 |a stability 
653 |a design tools 
653 |a brushless machine 
653 |a permanent magnet synchronous motor (PMSM) 
653 |a electrical signature analysis 
653 |a Vernier machine 
653 |a multiphase machine 
653 |a interior permanent magnet synchronous machines 
653 |a automotive applications 
653 |a pulse width modulation 
653 |a current ripples 
653 |a PMSM 
653 |a wave power 
653 |a outer rotor 
653 |a electric vehicle (EV) 
653 |a power control 
653 |a condition monitoring 
653 |a energy conversion 
653 |a sliding mode observer (SMO) 
653 |a field weakening 
653 |a small wind turbines 
653 |a interior permanent-magnet machines 
653 |a permanent-magnet machine 
653 |a free-wheeling period 
653 |a brushless DC (BLDC) motor 
653 |a speed tracking 
653 |a current spikes 
653 |a flux switching machine 
653 |a Brushless DC motors 
653 |a magnetic reluctance network 
653 |a winding inductance 
653 |a parameter perturbation 
653 |a DB-DTFC (deadbeat-direct torque and flux control) 
653 |a R-C filter 
653 |a phase-advanced method 
653 |a motor drives 
653 |a PMSM (permanent magnet synchronous motor) 
653 |a coils 
653 |a predictive maintenance 
653 |a cogging torque 
653 |a finite element analysis 
653 |a permanent magnet material 
653 |a vector control 
653 |a linear generator 
653 |a commutation error compensation 
653 |a electrical machine design 
653 |a permanent magnet synchronous generator 
653 |a wind generator 
653 |a mathematical model 
653 |a permanent magnet synchronous motor 
653 |a hybrid electric vehicle (HEV) 
653 |a stator 
653 |a bulk electric system 
653 |a permanent magnet synchronous machine (PMSM) 
653 |a synchronous generator 
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