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Detection and Diagnosis of Compound Faults in a Reciprocating Compressor based on Motor Current Signatures

机译:基于电机电流签名的往复式压缩机中复合故障的检测与诊断

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Induction motors are the most common driver in the industry and consume tremendous energy every year. Monitoring the status of a motor and its downstream equipment and diagnosing faults in time not only avoids great damage to mechanical systems but also allows the motor to run at optimal efficiency. This paper studies the use of information from motor current signals to detect and diagnose faults of a reciprocating compressor (RC) and its upstream three-phase motor. The motor is applied by the RC with an oscillator torque which induces additional components in measured current signals. Moreover, the current signatures contain changes with the torque profiles due to different types of faults. Based on these analytical studies, experimental studies were carried out for different common RC faults, such as valve leakage, intercooler leakage, stator asymmetries and the compounds of them. The envelope analysis of current signals allows accurate demodulation of the torque profiles and thereby it can be combined with overall current levels for implementing model based detections and diagnosis. The results show these simulated faults can be separated under all operating pressures.
机译:感应电机是行业中最常见的司机,每年消耗巨大的能量。监控电机及其下游设备的状态,并及时诊断故障不仅避免了对机械系统的巨大损害,还允许电机以最佳效率运行。本文研究了从电动机电流信号中使用信息来检测和诊断往复式压缩机(RC)及其上游三相电动机的故障。电动机通过RC施加利用振荡器扭矩,该振荡器扭矩在测量的电流信号中引起附加部件。此外,由于不同类型的故障,当前签名包含随着扭矩分布的变化。基于这些分析研究,对不同常见的RC故障进行了实验研究,例如阀门泄漏,中间冷却器泄漏,定子不对称和它们的化合物。电流信号的包络分析允许精确地解调扭矩轮廓,从而可以与基于模型的检测和诊断相结合。结果显示这些模拟故障可以在所有操作压力下分开。

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