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Experimental investigation of different fault indicators for Synchronous machine failure analysis

机译:用于同步电机故障分析的不同故障指示器的实验研究

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Fault indicators signifying major failures in Synchronous machines (SM) are highlighted. A 15 megawatt (MW) SM was chosen in which, electro-mechanical faults were made by suitably altering physical disposition of machine parts. Finite element simulation of the motor model helped build signature for ideal and fault conditions in time and frequency domains for different fault indicators. Measurements were performed for stator parameters like phase voltage, current, stator current of the exciter and also through slip-ring for various rotor parameters, such as field winding voltage, current, shaft voltage and current. Comparison of simulation and measured results indicates field current and shaft voltage as two major fault detecting parameters. Stator exciter current proves to be an ideal indicator for semiconductor failures and even carries signatures for electro-mechanical faults. Notwithstanding the limitations of accessibility for measurement, information from field current and shaft voltage can be corroborated together for a combined fault diagnostic strategy.
机译:突出显示表示同步机(SM)中主要故障的故障指示器。选择了15兆瓦(MW)的SM,其中通过适当改变机器零件的物理布置来产生机电故障。电机模型的有限元仿真有助于在时域和频域中为不同故障指示器建立理想和故障条件的特征。对定子参数(例如相电压,电流,励磁机的定子电流)进行测量,并通过滑环对各种转子参数(例如励磁绕组电压,电流,轴电压和电流)进行测量。仿真和测量结果的比较表明,励磁电流和轴电压是两个主要的故障检测参数。定子励磁电流被证明是半导体故障的理想指示器,甚至带有机电故障的信号。尽管测量的可访问性受到限制,但可以将来自励磁电流和轴电压的信息一起确认,以进行组合的故障诊断策略。

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