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A study on the fault diagnosis analysis of variable reluctance resolver for electric vehicle

机译:电动汽车变无磁阻器故障诊断分析研究

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Variable reluctance (VR) resolver is widely used in traction motor for battery electric vehicle as well as hybrid electric vehicle as a rotor position sensor. VR resolver generates absolute position signal by using resolver-to-digital converter (RDC) in order to deliver exact position of permanent magnets in a rotor of traction motor to motor controller. This paper deals with fault diagnosis of VR resolver by using co-simulation analysis with RDC for position angle detection. As fault conditions, eccentricity of VR resolver, short circuit condition of excitation coil and output signal coils, and material problem of silicon steel in a view point of permeability are considered. 2D FEM is used for the output signal waveforms of SIN, COS and these waveforms are converted into absolute position angle by using the algorithm of RDC. For the verification of proposed analysis results, experiment on fault conditions was conducted and compared with simulation ones.
机译:可变磁阻(VR)旋转变换器广泛用于电池电动车辆的牵引电动机以及混合电动车作为转子位置传感器。 VR旋转变压器通过使用旋转变压器到数字转换器(RDC)产生绝对位置信号,以便在牵引电机的转子中输送永磁体的精确位置到电机控制器。本文通过使用RDC与RDC进行定位角度检测,对VR解析器进行故障诊断。作为故障条件,考虑了VR旋转变换器的偏心,激励线圈和输出信号线圈的短路条件,以及硅钢在渗透性点中的材料问题。 2D FEM用于SIN的输出信号波形,COS和这些波形通过使用RDC的算法将绝对位置角转换为绝对位置角。为了验证所提出的分析结果,对故障条件进行了实验,并与模拟中进行了比较。

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