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New On-Line Excitation-System Ground Fault Location Method Tested in a 106 MVA Synchronous Generator

机译:在106 MVA同步发电机中测试的新的在线励磁系统接地故障定位方法

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摘要

In this paper, a novel excitation-system ground-fault location method is described and tested in a 106 MVA synchronous machine. In this unit, numerous rotor ground-fault trips took place always about an hour after the synchronization to the network. However, when the field winding insulation was checked after the trips, there was no failure. The data indicated that the faults in the rotor were caused by centrifugal forces and temperature. Unexpectedly, by applying this new method, the failure was located in a cable between the excitation transformer and the automatic voltage regulator. In addition, several intentional ground faults were performed along the field winding with different fault resistance values, in order to test the accuracy of this method to locate defects in rotor windings of large generators. Therefore, this new on-line rotor ground-fault detection algorithm is tested in high-power synchronous generators with satisfactory results.
机译:在本文中,描述了一种新颖的励磁系统接地故障定位方法,并在106 MVA同步电机中进行了测试。在该单元中,总是在与网络同步后约一个小时发生许多转子接地故障跳闸。但是,跳闸后检查励磁绕组绝缘时,没有出现故障。数据表明,转子故障是由离心力和温度引起的。出乎意料的是,通过应用这种新方法,故障位于励磁变压器和自动电压调节器之间的电缆中。另外,为了防止这种方法定位大型发电机转子绕组中的缺陷的准确性,还沿着励磁绕组沿不同的故障电阻值进行了一些有意的接地故障。因此,这种新的在线转子接地故障检测算法在大功率同步发电机中进行了测试,结果令人满意。

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