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A New Investigation of Dynamic Mathematical Model of Synchronous Reluctance Motor - A Simple Unified Analysis of Model Characteristics

机译:同步磁阻电动机动态数学模型的新研究-模型特征的简单统一分析。

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This paper presents a new characteristics analysis of a dynamic mathematical model for synchronous reluctance motors, which is recently attracting attention in conjunction with the problem of rotor phase selection and estimated based on the extended BEMF (back electromotive force) for sensorless drive. This paper gives the following new characteristic results in a simple unified analytical manner. (1) Change between positive and negative salient pole phases requires basically no modification to the dynamic mathematical model in the general reference frame. (2) Selection of positive or negative salient pole phase as rotor is no more than a preference of designers. (3) There exists a very simple method of deriving two stator flux models for explicit expression of the extended BEMF. (4) At least four circuit equations with the extended BEMF exist, which are equivalent to each other on the same reference frame. (5) There exists duality among the four circuit equations from the viewpoints of rotor phase selection. (6) The duality reinforces the above-mentioned five results. Main results of this paper correct or reinforce the results recently reported by others.
机译:本文介绍了一种用于同步磁阻电动机的动态数学模型的新特性分析,该模型最近与转子相位选择问题一起引起了人们的关注,并基于无传感器驱动的扩展BEMF(反电动势)进行了估算。本文以简单的统一分析方式给出了以下新的特征结果。 (1)在正,负凸极相位之间进行更改基本上不需要修改通用参考系中的动态数学模型。 (2)选择正或负凸极相位作为转子仅是设计人员的偏爱。 (3)有一种非常简单的方法可以导出两个定子磁通模型,以明确表示扩展的BEMF。 (4)至少存在四个扩展了BEMF的电路方程,它们在同一参考系上彼此等效。 (5)从转子相位选择的角度来看,这四个电路方程之间存在对偶性。 (6)对偶性加强了上述五个结果。本文的主要结果纠正或加强了其他人最近报告的结果。

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