Electrical Monitoring of Damper Bar Condition in Salient Pole Synchronous Motors without Motor Disassembly

J. Antonino-Daviu, V. Fuster-Roig, Sangwook Park, Yonghyun Park, Hanchun Choi, Jongsan Park, Sang Bin Lee
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引用次数: 20

Abstract

The damper (or amortisseur) winding of synchronous motors (SM) is a critical component required for starting the motor. Several cases of forced outage of industrial processes due to starting failure of salient pole SMs caused by damper bar damage have recently been reported. Detection of damper bar failure is difficult since they are active only during motor starting, and testing in the field currently relies on off-line visual inspection. It was recently shown that broken damper bars can be detected from the airgap flux, but this requires installation of airgap flux sensors inside the motor. In this paper, a method based on analysis of the stator starting current is proposed for detecting broken damper bars. In addition, an electrical detection method based on signal injection from the motor terminals is proposed. The new methods have been devised to provide remote testing from the motor control center without motor disassembly required in existing tests. Experimental testing performed on a 30 kW salient pole SM prototype with emulated broken bars shows that the proposed methods can provide sensitive and reliable detection of damper bar failures.
无拆卸凸极同步电动机阻尼杆状态的电气监测
同步电动机的阻尼器(或止动器)绕组是起动电动机所需的关键部件。最近报道了几起因阻尼杆损坏导致凸极sm启动失败而导致工业过程被迫中断的案例。由于阻尼杆仅在电机启动时才起作用,因此很难检测到阻尼杆的故障,而且目前的现场测试依赖于离线目测。最近的研究表明,可以通过气隙磁通检测到阻尼器杆的断裂,但这需要在电机内部安装气隙磁通传感器。本文提出了一种基于定子起动电流分析的阻尼器断条检测方法。此外,还提出了一种基于电机端子信号注入的电检测方法。新方法的设计是为了从电机控制中心提供远程测试,而不需要在现有测试中拆卸电机。在30kw凸极SM样机上进行的模拟断杆试验表明,该方法能够对阻尼杆的失效进行灵敏、可靠的检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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