학술논문

Design and analytical inductance calculations of five-phase fault-tolerant permanent-magnet Machine
Document Type
Conference
Source
2014 17th International Conference on Electrical Machines and Systems (ICEMS) Electrical Machines and Systems (ICEMS), 2014 17th International Conference on. :1639-1642 Oct, 2014
Subject
Engineering Profession
Power, Energy and Industry Applications
Robotics and Control Systems
Transportation
Inductance
Windings
Fault tolerance
Fault tolerant systems
Harmonic analysis
Finite element analysis
Stator windings
Fault-tolerant machine
Inductance calculation
Winding function method
Language
Abstract
Multiphase fault-tolerant machines have many advantages, such as high reliability, high-power transmission under low voltage and so on. Therefore, they are attracting more and more attention in recent research. A design method for the multiphase fault-tolerant machine is proposed in this paper. The five-phase fault-tolerant permanent-magnet machine designed by the method realizes thermal, magnetic, electrical and physical isolations among phases, and it satisfies all the requirements of the fault-tolerant machine. The inductance parameters of the machine play an important role in designing the control system. Therefore, an analytical approach to calculate the inductance parameters of the machine is put forward. The self-inductance and mutual-inductance are calculated, and the results are precise. The proposed method avoids the complexity caused by establishing the finite-element model of the machine. The inductance parameters obtained by the analytical method are consistent with the finite-element simulation results, which validates the effectiveness of this method.