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Analysis of instability and response of reactors with rectangular hysteresis loop core material in series with capacitors

机译:矩形磁滞环铁心材料串联电抗器的不稳定性和响应分析

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摘要

An exact analysis is given for a reactor having an idealized magnetization characteristic consisting of two linear regions of zero inductance, interrupted by a linear region of infinite inductance, when connected in series with a load comprising of capacitance and resistance under the action of a sinusoidal applied voltage. The recent developments in core materials have introduced magnetic materials such as Deltamax¿ and Orthonol¿ which have magnetization characteristic, at high values of saturation, approximating the ideal case. Thus the results obtained on the basis of an idealized analysis show good correlation with practical results obtained by experimenting on Deltamax cores. The circuit analyzed is the simplest circuit exhibiting an unstable and multivalued behavior attributed by several authors to a nonlinear resonance, sometimes referred to as ferro-resonance phenomenon. Since the ideal magnetization characteristic assumed, consisting of regions of zero and infinite inductance, could not resonate with the finite load capacitance, the behavior of the circuit is explained by a different approach.
机译:对具有理想磁化特性的电抗器进行了精确分析,该电抗器在施加正弦波的作用下与包括电容和电阻的负载串联时,由两个零电感的线性区域组成,并被无限电感的线性区域中断电压。核心材料的最新发展引入了诸如Deltamax和Orthonol这样的磁性材料,它们在高饱和度时具有磁化特性,接近理想情况。因此,在理想化分析的基础上获得的结果与通过Deltamax磁芯实验获得的实际结果显示出良好的相关性。分析的电路是最简单的电路,表现出不稳定的多值特性,一些作者将其归因于非线性谐振,有时称为铁磁谐振现象。由于假定的理想磁化特性(由零和无限电感的区域组成)无法与有限负载电容产生谐振,因此用另一种方法来解释电路的行为。

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