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Continuous Acoustic Monitoring of Electrical Machines; Processing Signals from USB Microphone Mobile Smartphone Sensors Detecting DC Motor Controller Fault

机译:电机连续声学监控;来自USB麦克风和移动智能手机传感器的处理信号检测直流电机控制器故障

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Transient current instability is one of the most common faults evident in Pulse Width Modulation (PWM) controlled brushless DC motors. This paper explores the under-developed field of real-time acoustic diagnostics for electrically based faults using consumer grade sensors. Current instabilities produce an audible torque transient on the motor, easily detectable using consumer acoustic sensors; a USB microphone and smartphone in this case. Two time-frequency signal processing techniques, Wavelet Packet Transform (WPT) and Empirical Mode Decomposition (EMD), are used to isolate information pertaining to the fault and are assessed for computational performance. This gives four processed signals to search for instabilities using a peak finding technique. We then compare the performance of each method. With the USB microphone WPT signal correlating the best results (93%), a simplistic logarithmic predictive model is used to estimate the durations for the next experimental run, in real-time. The results prove that readily accessible and affordable consumer acoustic sensors can be used for real-time fault diagnostics with a high degree of accuracy.
机译:瞬态电流不稳定是脉冲宽度调制(PWM)控制无刷直流电机中最常见的最常见故障之一。本文探讨了使用消费者级传感器的基于电力的故障的实时声学诊断的发达领域。目前的不稳定性在电机上产生可听的扭矩瞬态,易于使用消费者声学传感器可检测到;在这种情况下USB麦克风和智能手机。两个时频信号处理技术,小波包变换(WPT)和经验模式分解(EMD)用于隔离与故障有关的信息,并评估计算性能。这为四个处理后的信号提供了使用峰值发现技术搜索不稳定性的。然后,我们比较每个方法的性能。利用USB麦克风WPT信号关联最佳效果(93 %),使用简单的对数预测模型用于实时估计下一个实验运行的持续时间。结果证明,易于访问和实惠的消费声学传感器可用于具有高精度的实时故障诊断。

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