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Analysis of Radial Force Ripple with Sensor Errors and its Effect in NVH Performance for SRMs

机译:SRM的带有传感器误差的径向力波动分析及其对NVH性能的影响

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Phase current shaping is a common approach to reduce the radial force ripple and thus improve the noise, vibration, and harshness (NVH) performance of the switched reluctance machine (SRM). However, this method is reliant on the accuracy of the position and the current sensors. This paper presents an analytical approach to model the effect of position and current sensor errors on radial force ripple SRM and its impact on the NVH performance of the machine. As a phase current shaping method, current harmonics injection is chosen to analyze the sensor errors on its performance. Initially, the radial force is modelled using the Fourier series expansion. Then, position and current sensor errors in the SRM drive system are included in the analytical modelling. The harmonic orders of the radial force ripple are analyzed and simulated for different sensor errors. NVH performance of SRM is analyzed to show the effects of different sensor errors on the current profiling methods. Simulation and experimental results are provided to verify the proposed method of analysis.
机译:相电流整形是减少径向力纹波并因此改善开关磁阻电机(SRM)的噪声,振动和粗糙度(NVH)性能的常用方法。但是,这种方法依赖于位置和电流传感器的精度。本文提出了一种分析方法,用于模拟位置和电流传感器误差对径向力纹波SRM的影响及其对机器NVH性能的影响。作为一种相电流整形方法,选择电流谐波注入来分析传感器性能方面的误差。最初,使用傅里叶级数展开对径向力进行建模。然后,将SRM驱动系统中的位置和电流传感器错误包括在分析建模中。针对不同的传感器误差,对径向力纹波的谐波阶次进行了分析和仿真。分析了SRM的NVH性能,以显示不同传感器错误对当前配置文件方法的影响。仿真和实验结果提供了验证所提出的分析方法。

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