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Fuzzy Logic-based Electrothermal Life Model for Inverter-fed Induction Motor Insulation

机译:基于模糊逻辑的感应电动机绝缘电热寿命模型

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Pulse width modulated adjustable speed drives used in industries lead to significant advantages in terms of performance, size, and efficiency. But, the output voltage and the current waveforms become non-sinusoidal leading to an increase in voltage and thermal stresses. This results into accelerated insulation aging and premature failure of the motors. With multiple stresses, the life models for insulating materials become complex and ambiguous. This article presents the fuzzy logic application to derive an electrothermal life model to investigate the synergic effects of voltage and thermal stresses on intrinsic aging of inverter-fed induction motor insulation. Three parameters, viz. voltage stress factor, waveform slope stress factor, and spike frequency factor, are proposed to describe the insulation stresses for pulse width modulated voltages. These parameters are computed from the experimental results at different switching frequencies and are used in fuzzy logic-based life estimation algorithms. The results of the fuzzy logic life model are verified by performing the accelerated aging test with the same pulse width modulated voltages on paper insulation. An electrothermal life model is derived from the fuzzy logic results, which can be directly used for the life estimation of any general purpose low-voltage inverter-fed induction motor insulation.
机译:工业上使用的脉宽调制可调速驱动器在性能,尺寸和效率方面都具有明显的优势。但是,输出电压和电流波形变为非正弦曲线,导致电压和热应力增加。这导致加速的绝缘老化和电动机的过早故障。由于存在多种应力,绝缘材料的寿命模型变得复杂而模棱两可。本文介绍了模糊逻辑应用程序,以推导出电热寿命模型,以研究电压和热应力对逆变器供电的感应电动机绝缘固有老化的协同效应。三个参数,即。提出了电压应力因子,波形斜率应力因子和尖峰频率因子来描述脉宽调制电压的绝缘应力。这些参数是根据不同开关频率下的实验结果计算得出的,并用于基于模糊逻辑的寿命估算算法中。通过在纸绝缘层上以相同的脉冲宽度调制电压执行加速老化测试,验证了模糊逻辑寿命模型的结果。从模糊逻辑结果中得出电热寿命模型,该模型可直接用于任何通用低压逆变器供电的感应电动机绝缘的寿命估算。

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