To numerically analyze the electromagnetic torque of the induction motor with skewed slots, accurate and timely computation of the airgap flux density (AGFD) is required. Two-dimensional multi-slice finite-element method (2-D multi-slice FEM) is typically used in the computation of the AGFD in the induction motor with skewed slots. However, in order to achieve high accuracy, the number of the slices is generally very high, resulting in high computational costs. In this paper, a new computation method for the AGFD of the induction motor with skewed slots is proposed. In the proposed method, a skewed factor is introduced to the AGFD computed by the 2-D multi-slice FEM. With the proposed method, the number of slices needed of the 2-D multi-sli...
Finite Elements Method is a contemporary numerical method for determination of distribution of elec...
This work uses a methodology based on 2D-Finite Element Method (FEM) and on the Circuits Theory (Ind...
Author name used in this publication: S. L. HoAuthor name used in this publication: H. C. WongAuthor...
The induction motor with skewed rotor bars is an effective motor structure for eliminating the slot ...
Both the starting current and the starting torque of induction motors cannot be evaluated and measur...
Abstract: This paper deals with the effect of rotor skewing in induction machines. Two cases of roto...
Normally a complicated three-dimensional (3-D) approach is needed to study the field pattern of indu...
A method to estimate the flux-linkages and parameters of induction motors with skewed rotor bars is ...
Voltage sag is one of the most common power quality disturbances in industry, which causes huge inru...
The paper compares two different ways (2D and 3D) of modelling of two-phase squirrel-cage induction ...
Purpose – To develop a practical design tool employing a general purpose electromagnetic finite elem...
Abstract- In order to include the interbar currents of skewed-rotor inductor motors in finite-elemen...
Author name used in this publication: W. N. FuAuthor name used in this publication: S. L. HoAuthor n...
Author name used in this publication: S. L. HoAuthor name used in this publication: W. N. FuVersion ...
Modifying the equivalent rotor resistivity with rotor end factor in 2-dimension (2-D) finite element...
Finite Elements Method is a contemporary numerical method for determination of distribution of elec...
This work uses a methodology based on 2D-Finite Element Method (FEM) and on the Circuits Theory (Ind...
Author name used in this publication: S. L. HoAuthor name used in this publication: H. C. WongAuthor...
The induction motor with skewed rotor bars is an effective motor structure for eliminating the slot ...
Both the starting current and the starting torque of induction motors cannot be evaluated and measur...
Abstract: This paper deals with the effect of rotor skewing in induction machines. Two cases of roto...
Normally a complicated three-dimensional (3-D) approach is needed to study the field pattern of indu...
A method to estimate the flux-linkages and parameters of induction motors with skewed rotor bars is ...
Voltage sag is one of the most common power quality disturbances in industry, which causes huge inru...
The paper compares two different ways (2D and 3D) of modelling of two-phase squirrel-cage induction ...
Purpose – To develop a practical design tool employing a general purpose electromagnetic finite elem...
Abstract- In order to include the interbar currents of skewed-rotor inductor motors in finite-elemen...
Author name used in this publication: W. N. FuAuthor name used in this publication: S. L. HoAuthor n...
Author name used in this publication: S. L. HoAuthor name used in this publication: W. N. FuVersion ...
Modifying the equivalent rotor resistivity with rotor end factor in 2-dimension (2-D) finite element...
Finite Elements Method is a contemporary numerical method for determination of distribution of elec...
This work uses a methodology based on 2D-Finite Element Method (FEM) and on the Circuits Theory (Ind...
Author name used in this publication: S. L. HoAuthor name used in this publication: H. C. WongAuthor...