Current-density distribution in solid-rotor induction motor

The interaction between the eddy currents induced in the solid cylindrical rotor steel structure and the revolving field of the airgap produces the electrodynamic torque. The polyphase induction machine with solid-iron rotor offers advantages in ease of manufacture, in high torque per ampere at stan...

Full description

Bibliographic Details
Published:
Online Access:http://hdl.handle.net/2047/d20003733
id ndltd-NEU--neu-330691
record_format oai_dc
spelling ndltd-NEU--neu-3306912016-04-25T16:14:10ZCurrent-density distribution in solid-rotor induction motorThe interaction between the eddy currents induced in the solid cylindrical rotor steel structure and the revolving field of the airgap produces the electrodynamic torque. The polyphase induction machine with solid-iron rotor offers advantages in ease of manufacture, in high torque per ampere at standstill, in withstanding high rotational stresses, and in operating in unusual environments. It is the purpose of this paper to present an approximate three-dimensional nonlinear numerical analysis of the solid-rotor induction motor for finding the three-dimensional current-density distribution in the solid rotor, in order to calculate the performance characteristics, based on finite-difference iterative techniques.http://hdl.handle.net/2047/d20003733
collection NDLTD
sources NDLTD
description The interaction between the eddy currents induced in the solid cylindrical rotor steel structure and the revolving field of the airgap produces the electrodynamic torque. The polyphase induction machine with solid-iron rotor offers advantages in ease of manufacture, in high torque per ampere at standstill, in withstanding high rotational stresses, and in operating in unusual environments. It is the purpose of this paper to present an approximate three-dimensional nonlinear numerical analysis of the solid-rotor induction motor for finding the three-dimensional current-density distribution in the solid rotor, in order to calculate the performance characteristics, based on finite-difference iterative techniques.
title Current-density distribution in solid-rotor induction motor
spellingShingle Current-density distribution in solid-rotor induction motor
title_short Current-density distribution in solid-rotor induction motor
title_full Current-density distribution in solid-rotor induction motor
title_fullStr Current-density distribution in solid-rotor induction motor
title_full_unstemmed Current-density distribution in solid-rotor induction motor
title_sort current-density distribution in solid-rotor induction motor
publishDate
url http://hdl.handle.net/2047/d20003733
_version_ 1718235671758372864