Improvements in energy efficiency of induction motors by the use of magnetic wedges

感应电动机 定子 电磁线圈 能量(信号处理) 扭矩 电动机 计算机科学 磁铁 汽车工程 磁路 电磁感应
作者
Radu Curiac,Harry Li
出处
期刊:Petroleum and Chemical Industry Technical Conference 卷期号:: 1-6 被引量:28
标识
DOI:10.1109/pcicon.2011.6085890
摘要

The key functions of magnetic wedges in the slots of large induction motors are to reduce the air gap flux distortion, magnetizing current, the starting (inrush) current and temperature rise. The benefits of magnetic wedges are the increase of motor efficiency (by reducing core losses, stray load losses and winding losses), improvement of power factor, improved energy conservation and thereby being more environmentally responsible. There can also be cost savings from potential reduction in active material or frame size. End users can make better purchasing decisions with an understanding of the cost impact of magnetic wedges. The paper investigates the impact on the motor performance by employing magnetic versus non-magnetic wedges during starting and normal operation. The type of induction motor, open (ODP, WPII) or enclosed (TEFC), along with the number of poles, influences the effect on the motor performance that magnetic wedges have. Magnetic forces (stresses) acting on the wedges are also investigated in this paper. This paper also discusses qualification processes that are necessary in order to avoid failures and ensure reliable magnetic wedge systems.
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