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Influence of Cable Insulation Structure on Terminal Over-voltage of Inverter-fed Motor

机译:电缆绝缘结构对变频电机端子过电压的影响

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With the applications of AC adjusting speed drives, the premature insulation failure of PWM inverter-fed motor appeared. One of major reasons for motor insulation failure was sharp pulse over-voltage on the terminal of motor (or the end of cable) because of wave reflection on the end of long cable. The purpose of present work is mainly to investigate the influence of cable insulation structure on its wave impedance, wave speed and terminal over-voltage of motor. The distributed inductance and capacitance of six representative cables were calculated by the finite element method, and then the wave impedances and wave speeds of cables were gained. Based on these characteristic parameters, one cable with three circuit conductors and one concentric grounding conductor was sorted out, and suitably used for inverter drive system. The insulating structure of this cable was optimized with orthogonal design method. The analyzed results showed that the dielectric constant of insulating material is a most important factor to improve the characteristic parameter of cable. It is also suggested that the foamed or/and magnetic filling insulating material are used for the inverter-fed cable. When the insulating material with the foamed and magnetic filling material is applied, the over-voltage on the terminal of motor with the power of 75kW will decrease by 34%.
机译:随着交流调速器的应用,出现了PWM变频调速电机过早绝缘故障的现象。电机绝缘故障的主要原因之一是由于长电缆末端的波反射,导致电机端子(或电缆末端)上的尖脉冲过电压。目前工作的目的主要是研究电缆绝缘结构对其波阻抗,波速和电动机端子过电压的影响。用有限元法计算了六种代表性电缆的分布电感和电容,得到了电缆的波阻抗和波速。根据这些特性参数,选出了一根具有三根电路导体和一根同心接地导体的电缆,适合用于变频器驱动系统。该电缆的绝缘结构采用正交设计方法进行了优化。分析结果表明,绝缘材料的介电常数是提高电缆特性参数的最重要因素。还建议将泡沫或/和磁性填充绝缘材料用于逆变器供电的电缆。当使用带有泡沫和磁性填充材料的绝缘材料时,功率为75kW的电动机端子上的过电压将降低34%。

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