采用背对背晶闸管的表面永磁同步电机磁通减弱的简单模型

A.M. EL-Refaie;D.W. Novotny;T.M. Jahns
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引用次数: 15

摘要

本文重新讨论了表面永磁同步电机的磁通弱化问题。从机器等效电路和相量图的角度解释了实现无限恒功率速比的条件。背对背的可控硅或可控硅开关为表面永磁同步电机的三相供电,就基本元件的行为而言,将显示为相当于一个简单的串联电抗。使用这种开关相当于在机器上增加了一个串联电感。这种额外的电感有助于延长表面永磁同步电机的CPSR。这一点很重要,因为由于存在低磁导率的表面磁体和由此产生的低机器电感,延长表面PM机器的CPSR通常是一项具有挑战性的任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A simple model for flux weakening in surface PM synchronous machines using back-to-back thyristors
Flux weakening in surface permanent magnet (PM) synchronous machines is revisited in this letter. The condition for achieving infinite constant power speed ratio (CPSR) is explained from the machine equivalent circuit and phasor diagram point of view. Back-to-back thyristors, or triac, switches feeding the three phases of a surface PM synchronous machine will be shown to be equivalent to a simple series reactance with respect to fundamental component behavior. Using such switches is equivalent to adding a series inductance to the machine. This additional inductance helps extend the CPSR of surface PM synchronous machines. This is significant because extending the CPSR of surface PM machines is usually a challenging task due to the presence of low-permeability surface magnets and the resulting low machine inductance.
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