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Vibration Measurement of Induction Motor Under Dynamic Eccentricity Using Optical Fiber Bragg Grating Sensors

机译:使用光纤布拉格光栅传感器动态偏心振动电动机的振动测量

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The vibration in Three-Phase Induction Motors (TIM) is due to mechanical and electrical forces existing during the motor operation. Vibration problems in induction motors can be extremely frustrating and may lead to greatly reduced reliability increasing the maintenance cost. The vibration was measured using fiber Bragg gratings (FBG) installed inside the motor between two stator teeth. The vibration frequencies in TIM are predicted using a model of the forces present in the air gap considering a static and dynamic rotor eccentricity. Two FBGs were positioned between two stator teeth, separated by 120° from each other. The analysis of the vibration spectrum at 60 Hz motor power supply presents the frequencies 60 Hz, 120 Hz, 180 Hz and 240 Hz. This combination of the mechanical and electrical frequencies continue to appear even when the motor electrical supply frequency is reduced by half. The measurement present in this paper can be used to determine some TIM parameters, like the effect of the motor power supply on its vibration signal and also be used like a potential maintenance tool for predictive purposes with high efficiency to continuously monitor the TIM.
机译:三相感应电动机中的振动(TIM)是由于在电动机操作期间存在的机械和电力。感应电机中的振动问题可能极为令人沮丧,可能导致大大降低的可靠性增加了维护成本。使用安装在两个定子齿之间的电动机内的光纤布拉格光栅(FBG)测量振动。考虑到静电和动态转子偏心的气隙中存在的力的模型,预测TIM中的振动频率。两个FBG在两个定子齿之间定位,彼此分开120°。 60 Hz电机电源的振动频谱分析呈现60Hz,120Hz,180Hz和240Hz的频率。即使当电动机电源频率降低一半时,机械和电频率的这种组合也会继续出现。本文中存在的测量可用于确定一些TIM参数,如电动机电源对其振动信号的影响,也可用作具有高效率的预测目的的潜在维护工具,以连续监测摩擦。

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