scholarly journals Analysis and Prediction of Cogging Torque and ripples in output Torque of Permanent Magnet Synchronous Motor and Line Start Permanent Magnet Synchronous Motor

Author(s):  
Ravisankar B Et.al

Permanent magnet (PM) motors are rapidly replacing the squirrel cage induction motors for its energy efficient operation, smooth control and high power density. Although PM Motors are energy efficient, they are inherently affected by cogging torque and torque ripple. Magnetic alignment between teeth of stator and permanent magnet of rotors produce cogging torque. Torque ripple is a dynamic oscillation during steady-steady operation which leads to various mechanical anomalies like vibration, noise and rotor stress. Torque ripple is produced in PM motors because of non-sinusoidal distribution of flux, saturation, improper selection of slots etc., these ill effects will deteriorate the starting and steady-state performance of motors. So it is very vital to make analysis and prediction of cogging torque and torque ripples to make the motor more effective. Now a day's minimizing the torque ripples and cogging torque are gaining importance in PM motor designs. In this proposed work, the cogging torque analysis and torque ripple analysis of permanent magnet motor and line start permanent magnet motor has been done and reported.

Author(s):  
Вадим Юрьевич Бухтуев

Использование синхронного двигателя с постоянными магнитами позволяет повысить надежность электропривода, снизить затраты на эксплуатацию и ремонт, увеличить энергоэфективность технологического процесса. Целью работы является построение системы управления синхронного двигателя с постоянными магнитами на ленточном конвейере, обеспечивающей требуемые динами-ческие показатели. В статье представлено сравнение трех систем управления и результаты моделирование в MATLAB R2019a. The use of a permanent magnet synchronous motor makes it possible to increase the reliability of an electric drive, reduce operating and repair costs, and increase the energy efficiency of the process. The aim of the work is to build a control system for a synchronous permanent magnet motor on a conveyor belt that provides the required dynamic performance. The article presents a comparison of three control systems and simulation results in MATLAB R2019a.


Energies ◽  
2019 ◽  
Vol 12 (3) ◽  
pp. 362
Author(s):  
Shuhua Fang ◽  
Songhan Xue ◽  
Zhenbao Pan ◽  
Hui Yang ◽  
Heyun Lin

This paper proposes the use of a novel cylindrical arc permanent magnet synchronous motor (CAPMSM) in a large telescope, which requires high positioning accuracy and low torque ripple. A 2D finite element method was used to analyze the cogging torque of the CAPMSM. The CAPMSM can be an alternative for a rotating motor to realize direct drive. A new method is proposed to separate the cogging torque, Tcog, into the torque, Tslot, generated by the slotted effect and the end torque, Tend, generated by the end effect. The average torque and the torque ripple are optimized considering stator center angle, the angle between two adjacent stators and the unequal thickness of a Halbach permanent magnet. The torque ripple decreased from 31.73% to 1.17%, which can satisfy the requirement of tracking accuracy for large telescopes.


Sign in / Sign up

Export Citation Format

Share Document