Processing Method for Complex Characteristics of Electromagnetic Devices

S. Gladkikh, A. Lankin, I. Lankin
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Abstract

This article discusses the development of a method for processing the integral characteristics of electromagnetic devices, which are complex functions. In cases where a complex function has a dependence on a nonmonotonic function, its hyste-resis character is manifested. Such functions are difficult and sometimes impossible, to be processed by numerical dimensional-ity reduction methods (for example, the method of principal components, Wavelet transform). The developed method makes it possible to represent integral functions in an “expanded” form, i.e. get rid of back loops due to the monotonic representation of the nested function. The performed analysis of the dynamic characteristics of electromagnets shows that such processing does not result in the loss of important information, and the charac-teristics can later be transferred to the space of principal components. In this space, characteristics that have already been pro-cessed form a structured dependence and can be separated into clusters.
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电磁器件复杂特性的处理方法
本文讨论了一种处理复杂功能的电磁器件整体特性的方法。当复函数依赖于非单调函数时,其滞回特性就表现出来。这样的函数很难,有时甚至不可能用数值降维方法(例如,主成分法,小波变换)来处理。开发的方法使得以“扩展”形式表示积分函数成为可能,即摆脱由于嵌套函数的单调表示而导致的回循环。对电磁铁动态特性的分析表明,这种处理不会造成重要信息的丢失,并且可以将特征转移到主分量空间中。在这个空间中,已经处理过的特征形成了一种结构化的依赖关系,可以被分离成集群。
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