首页> 外文会议>Electrical Insulation Conference and Electrical Manufacturing Expo, 2005. Proceedings >A new diagnostic tool for preventive maintenance on large generators-PD location in stator windings by the traveling wave method
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A new diagnostic tool for preventive maintenance on large generators-PD location in stator windings by the traveling wave method

机译:一种用于大型发电机预防维护的新诊断工具-行波法在定子绕组中的PD位置

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The development of cost-effective maintenance strategies requires diagnostic tools which detect any defects as early as possible to enable the determination and selective planning of the requisite repair measures. The sensitive partial discharge (PD) measurement method enables the detection of individual weak points developing in generator high voltage stator insulation in their initial stages. However, a reliable evaluation also requires the most exact possible knowledge of the location of the insulation where partial discharge occurs. The following paper presents a method enabling the precise localization of internal partial discharges in the shielded slot section of stator windings based on the localization principle of transit time difference measurement between the two sides of the stator core. The PD pulses are decoupled from the winding bars using a patented new type of sensor, digitized at a high sampling rate of 4 GS/s and subjected to mathematical analysis. Measurements on old winding bars from large generators and on complete stator windings (40-1640 MVA) yield high localization accuracies within the range of centimeters. In a rewound 880 MVA generator with an active core length of 6.6 m, a partial discharge source was localized which could not be detected by conventional equipment at the generator terminals. This demonstrates the excellent sensitivity of the new diagnostic tool.
机译:经济高效的维护策略的开发需要诊断工具,尽早检测到任何缺陷,以实现必要的维修措施的确定和选择性规划。敏感的局部放电(PD)测量方法使得能够检测在其初始阶段中发电机高压定子绝缘中的各个弱点。然而,可靠的评估还需要最完全可能的知识,其中绝缘的位置发生在局部放电发生的情况下。下文提出了一种方法,其基于定子芯的两侧之间的运输时间差测量的定位原理,使定子绕组的屏蔽槽部分中的内部部分排出的精确定位。 PD脉冲使用专利的新型传感器与绕组杆分离,以4GS / s的高采样速率数字化并进行数学分析。从大发电机和完整定子绕组上的旧绕组杆上的测量(40-1640 MVA)在厘米范围内产生高定位精度。在具有6.6μm的有功核长度的反馈880 MVA发生器中,局部放电源是本地化的,该局部排出源不能通过发电机端子处的传统设备检测。这证明了新诊断工具的优异敏感性。

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