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Experimental compensation of the negative sequence current for accurate stator fault detection in induction motors

机译:通过对负序电流进行实验补偿,可精确检测异步电动机中的定子故障

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The negative sequence current can offer an efficient and fast monitoring technique to detect incipient stator fault in induction machines. However, unbalanced supply voltage, inherent machine asymmetry and non ideal sensors can also contribute to the generation of this negative sequence current. Thus, it is rather difficult to extract the negative sequence current caused only by the fault. To improve the accuracy of fault detection, this paper proposes an efficient method based on the use of experimental techniques to identify and separate the negative sequence current due to the inherent asymmetry in the machine and the non-calibration of the sensors in order to extract the negative sequence current caused only by the fault. The efficiency of the proposed method is demonstrated by the use of experimental data's coming from 1.1 kW motor supplied by a balanced voltage.
机译:负序电流可以提供一种有效且快速的监控技术,以检测感应电机中的定子初始故障。但是,不平衡的电源电压,固有的机器不对称性和不理想的传感器也会导致产生此负序电流。因此,很难提取仅由故障引起的负序电流。为了提高故障检测的准确性,本文提出了一种有效的方法,该方法基于实验技术来识别和分离由于机器固有的不对称性和传感器的非校准所引起的负序电流,以便提取故障信号。负序电流仅由故障引起。通过使用来自平衡电压提供的1.1 kW电动机的实验数据证明了所提出方法的效率。

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