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Numerical Modeling of Brushless Synchronous Generator for Rectifier Fault detection

机译:整流器故障检测用无刷同步发电机的数值建模

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Fault detection in electric machines can prevent the development of system faults and reduce the time and cost of repairs. Due to the fact that the most electrical energy in the world is produced by synchronous generators, it is more important to diagnose occurring faults in synchronous generators fast. Considering the ability of the numerical modeling method to analyze the performance of electric machines, in this paper, a brushless synchronous machine is firstly modeled to evaluate the one diode open-circuited fault on rotary rectifier with the 2D finite element method and the FFT of the terminal voltage is obtained. Finally, by using simulation and experimental results, the support vector machine has been used for classification applied to the FFT of voltages. The results indicate the ability of the proposed method to detect rotary diode faults in a brushless synchronous generator.
机译:电机中的故障检测可以防止系统故障的发展,并减少维修时间和成本。由于世界上最多的电能是由同步发电机产生的,因此快速诊断同步发电机中发生的故障更为重要。考虑到数值建模方法分析电机性能的能力,本文首先对无刷同步电机进行建模,以二维有限元方法和旋转傅立叶变换(FFT)对旋转整流器上的一个二极管开路故障进行评估。获得端子电压。最后,通过仿真和实验结果,将支持向量机用于电压FFT的分类。结果表明,该方法具有检测无刷同步发电机中旋转二极管故障的能力。

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