为vsd操作的EX/ATEX高压电机提供可靠的在线局部放电监测(olpd)的新解决方案

L. Renforth, R. Giussani, Terje Knutsen, Brynjar Aardal, T. Kjenner
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引用次数: 3

摘要

在石油和天然气行业中,大多数大型(> 7.5 MW)高压(> 3.3 kV)电机都是通过变速驱动器(vsd)运行的。为了保持这些关键机器的可用性,需要在线状态监测技术。本文提出了一种可靠的、在线局部放电(OLPD)的高压电机定子绕组绝缘状态检测方法。电感式三波段传感器用于提供工频同步信号以及OLPD测量信号。这使得可以在所有vsd工作频率下构建整个功率周期的相位分解局部放电(PRPD)模式。数据采集技术利用具有6通道同步数据采集的24通道智能多路复用器,使脉冲优先级测量能够在分布式传感器之间进行。新的OLPD监测解决方案已经在挪威一家油气运营商的试点项目中进行了测试,该项目成功地在线监测了5.9 kV, 40 MW双绕组vsd操作的EX-P电机的局部放电活动。这是通过优先检测从多个传感器装置检测到的同步信号,主动识别来自VSD电力电子设备的电磁(e/m)噪声而实现的。在这个项目中,总共使用了18个传感器来监测整个双绕组VSD和高压电机电路。报告的OLPD监测结果表明,系统检测到的1000个脉冲中只有大约1个(0.1%)是PD脉冲,其余99.9%是由vsd电力电子开关引起的e/m噪声脉冲。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel solution for the reliable online partial discharge monitoring (olpd) of vsd-operated EX/ATEX HV motors
The majority of the larger (> 7.5 MW) high voltage (> 3.3 kV) motors in the oil and gas industry are operated through variable speed drives (VSDs). In order to maintain the availability of these critical machines, on-line condition monitoring (CM) technology is required. This paper describes a novel solution for reliable, on-line partial discharge (OLPD) CM of the HV stator winding insulation condition of VSD-operated HV motors. Inductive, tri-band sensors were used to provide a power frequency synchronization signal alongside the OLPD measurement signal. This enables phase resolved partial discharge (PRPD) patterns across the power cycle to be constructed, at all of the VSDs operating frequencies. The data acquisition technology utilises a 24-channel smart multiplexer with 6-channel synchronous data acquisition to enable pulse precedence measurements to be made between distributed sensors. The new OLPD monitoring solution has been trialed in a pilot project with an oil and gas operator in Norway where a 5.9 kV, 40 MW twin-winding VSD-operated EX-P motor was successfully monitored on-line for partial discharge activity. This was made possible through the active discrimination of the electromagnetic (e/m) noise from the VSD power electronics using precedence detection of synchronous signals detected from multiple sensor installations. A total of 18 sensors were utilized to monitor the complete twin-winding VSD and HV motor circuit in this project. The OLPD monitoring results reported show that only around 1 pulse in 1000 (0.1%) detected by the system was a PD pulse with the remaining 99.9% being e/m noise pulses caused by the VSDs power electronics switching.
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