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Study of IPMSM Interturn Faults Part II: Online Fault Parameter Estimation

机译:IPMSM匝间故障研究第二部分:在线故障参数估计

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This paper is a continuation of part I, which presented interturn fault (ITF) models for interior permanent magnet synchronous motors (IPMSMs). ITFs are defined by two ITF parameters: the healthy turn ratio and the fault contact resistance. First, this paper presents a proof that the two fault parameters defining a given ITF condition cannot be individually estimated from motor information and drive information (applied voltage, phase current, rotor speed, etc.) because they have multiple solutions. However, it is also shown that the additional Ohmic loss, which is the most important factor in heat generation and deterioration due to ITFs, is not dependent on these solutions. Thus, after arbitrarily setting one fault parameter, the other can be estimated for a given ITF condition; this model can be used to represent the effect of an ITF, particularly its Ohmic power loss. In this paper, an online fault parameter estimation method for IPMSMs is proposed after presenting one of the two fault parameters. The proposed method utilizes a searching algorithm that finds the fault parameter that has the minimum negative-sequence voltage error between the applied voltage and the ITF models (presented in part I). An experiment was performed to verify the proposed fault parameter estimation method.
机译:本文是第一部分的续篇,该部分介绍了内部永磁同步电动机(IPMSM)的匝间故障(ITF)模型。 ITF由两个ITF参数定义:正常匝数比和故障接触电阻。首先,本文提出了证明,不能从电动机信息和驱动信息(施加电压,相电流,转子速度等)单独估计定义给定ITF条件的两个故障参数,因为它们具有多种解决方案。但是,还显示出额外的欧姆损耗(这是ITF导致热量产生和劣化的最重要因素)并不依赖于这些解决方案。因此,在任意设置一个故障参数后,可以针对给定的ITF条件估计另一个故障参数;该模型可用于表示ITF的效果,尤其是其欧姆功率损耗。本文提出了两种故障参数之一,提出了一种在线的IPMSM故障参数估计方法。所提出的方法利用搜索算法来找到故障参数,该故障参数在施加的电压和ITF模型(在第一部分中介绍)之间具有最小的负序电压误差。进行了实验以验证所提出的故障参数估计方法。

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