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Methods to determine which inverter drives need upgraded motor stator windings

机译:确定哪些变频器需要升级电机定子绕组的方法

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Random wound stator windings in motors operating in pulp and paper plants have failed when exposed to the fast-risetime voltage surges coming from inverters. Studies show that the failure is due to a combination of bad luck in specific motor installations (resonance phenomena caused by power cable length and surge impedance ratios) together with the fact that modern inverter-fed drives (IFDs) create tens of thousands of surges per second with risetimes as fast as 50 ns. Measurements on motors show that these surges create partial discharges (also called corona), and these discharges eventually destroy the turn-to-turn and/or phase-to-phase insulation, resulting in premature motor failure. This paper discusses the specific mechanisms involved in the stator winding failure due to IFDs and presents the measurements and analysis from surge monitoring installed on many different motors. Although some motors may experience short risetime, high magnitude surges, most motors experience either low magnitude and/or long risetime surges, which are relatively harmless. Usually several different magnitudes and risetimes are present from the same IFD. Thus it seems that conventional motor stators can be safely used in many (but not all) IFD applications. Methods are presented to determine when special IFD duty motors are needed. Surge voltage tests, as well as partial discharge tests can help the user insure that motors can successfully operate in severe applications.
机译:当纸浆厂和造纸厂运行的电动机中的随机缠绕的定子绕组暴露于来自逆变器的快速上升电压浪涌时,已经失效。研究表明,故障是由于特定电机安装中的运气不佳(由电源电缆长度和电涌阻抗比引起的谐振现象)以及现代逆变器馈电驱动器(IFD)每次产生数万次电涌所造成的。秒,上升时间高达50 ns。对电动机的测量表明,这些浪涌会产生局部放电(也称为电晕),并且这些放电最终会破坏匝间绝缘和/或相间绝缘,从而导致电动机过早失效。本文讨论了由IFD引起的定子绕组故障的具体机制,并介绍了安装在许多不同电动机上的电涌监测器的测量结果和分析结果。尽管某些电动机可能会经历短的上升时间,高幅度的电涌,但是大多数电动机会经历低幅度的和/或长的上升时间的电涌,这是相对无害的。通常,同一IFD存在几种不同的幅度和上升时间。因此,似乎传统的电动机定子可以安全地用于许多(但不是全部)IFD应用中。提出了确定何时需要特殊IFD占空比电机的方法。浪涌电压测试以及局部放电测试可以帮助用户确保电动机能够在恶劣的应用中成功运行。

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