In this paper, a tooth shape optimization method for cogging torque reduction in Permanent Magnet (PM) motors is developed by using the Reduced Basis Technique (RBT) coupled by Finite Element Analysis (FEA) and Design of Experiments (DOE) methods. The primary objective of the method is to reduce the enormous number of design variables required to define the tooth shape. RBT is a weighted combination of several basis shapes. The aim of the method is to find the best combination using the weights for each tooth shape as the design variables. A multi-level design process is developed to find suitable basis shapes or trial shapes at each level that can be used in the reduced basis technique. Each level is treated as a separated optimization pro...
The external-rotor permanent magnet torque motor is widely used in electric vehicles and mobile robo...
The aim of this paper is to present the optimal design process and an optimized model for a disconti...
This article describes a simple cogging torque minimization procedure for interior permanent magnet ...
In the present work, an integrated method of pole shape design optimization for reduction of torque ...
International audienceIn most of the industrial applications, such as vehicular traction, when a Per...
Topology and shape optimization are still rarely applied to problems in electromagnetic design due t...
Uneven distribution of permanent magnets (PM) is an effective way to minimize the cogging torques of...
peer reviewedThe objective of the paper is to present an open source environment to perform the desi...
Interior permanent magnet(IPM) motor has been widely used in the automotive industry and it needs hi...
This paper presents a new optimization method to design a rotor structure for a permanent magnet mot...
This paper presents sizing approaches to improve output torque performance in PM motor when partial ...
Both permanent magnet brushless DC motors and permanent magnet synchronous motors have attracted wid...
This paper presents the optimal shape of a permanent magnet in the surface-mounted permanent magnet ...
The development of the robotics and the automation and the need for the motors that can work in the ...
Cogging torque is a known disadvantage of surface permanent magnet (SPM) machines, especially if equ...
The external-rotor permanent magnet torque motor is widely used in electric vehicles and mobile robo...
The aim of this paper is to present the optimal design process and an optimized model for a disconti...
This article describes a simple cogging torque minimization procedure for interior permanent magnet ...
In the present work, an integrated method of pole shape design optimization for reduction of torque ...
International audienceIn most of the industrial applications, such as vehicular traction, when a Per...
Topology and shape optimization are still rarely applied to problems in electromagnetic design due t...
Uneven distribution of permanent magnets (PM) is an effective way to minimize the cogging torques of...
peer reviewedThe objective of the paper is to present an open source environment to perform the desi...
Interior permanent magnet(IPM) motor has been widely used in the automotive industry and it needs hi...
This paper presents a new optimization method to design a rotor structure for a permanent magnet mot...
This paper presents sizing approaches to improve output torque performance in PM motor when partial ...
Both permanent magnet brushless DC motors and permanent magnet synchronous motors have attracted wid...
This paper presents the optimal shape of a permanent magnet in the surface-mounted permanent magnet ...
The development of the robotics and the automation and the need for the motors that can work in the ...
Cogging torque is a known disadvantage of surface permanent magnet (SPM) machines, especially if equ...
The external-rotor permanent magnet torque motor is widely used in electric vehicles and mobile robo...
The aim of this paper is to present the optimal design process and an optimized model for a disconti...
This article describes a simple cogging torque minimization procedure for interior permanent magnet ...