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Towards a new partial discharge calibration strategy based on the transfer function of machine stator windings

机译:基于电机定子绕组传递函数的新型局部放电校准策略

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摘要

Individual partial discharge (PD) detection and measurement is well recognised as a methodology for providing data on which assessments of the insulation integrity of high power plant can be made. It relies, as a technique, on the accurate acquisition of PD pulse data, including pulse magnitudes. Unfortunately, due to calibration difficulties with partial discharge detectors in static or rotating machine applications, pulse magnitude measurements may be erroneous. Calibration difficulties arise when the PD pulse is not simulated by the calibration pulse. This occurs when the PD pulse is 'distorted' as it propagates from its site of origin to the machine/detector terminals. To aid in the development of a new calibration strategy, the paper reports the results of two techniques. In the first, the transfer functions of different sections of stator winding are investigated to determine whether a frequency band exists in which a PD pulse would suffer minimal distortion as a function of location, in its propagation from site of origin to detector. Such a frequency band would indicate the appropriate bandwidth to which a detector could be tuned to avoid errors which were location dependent. This work builds on previously reported investigations. In the second, a technique of detected PD pulse reconstruction is investigated. The distorted, detected pulse postpropagation is reconstructed to its original magnitude via transfer function techniques. Given that the transfer functions from different locations in a winding are known and the location of the discharge can be identified or inferred, the technique offers an empirical approach to minimise calibration errors.
机译:单独的局部放电(PD)检测和测量已被公认为提供数据的方法论,可以据此对大电厂的绝缘完整性进行评估。作为一种技术,它依赖于PD脉冲数据(包括脉冲幅度)的精确采集。不幸的是,由于在静态或旋转机器应用中局部放电检测器的校准困难,因此脉冲幅度测量可能是错误的。当校准脉冲未模拟PD脉冲时,会出现校准困难。当PD脉冲从其原始位置传播到机器/检测器终端时,当PD脉冲“失真”时,就会发生这种情况。为了帮助开发新的校准策略,本文报告了两种技术的结果。首先,研究定子绕组不同部分的传递函数,以确定在从原点到检测器的传播过程中,是否存在PD脉冲随位置而受到最小失真的频带。这样的频带将指示检测器可以调谐到的适当带宽,以避免与位置有关的误差。这项工作建立在以前报告的调查的基础上。在第二部分中,研究了检测PD脉冲重建的技术。通过传递函数技术将失真的,检测到的脉冲后传播重建到其原始大小。假设已知绕组中不同位置的传递函数,并且可以识别或推断出放电位置,则该技术提供了一种经验方法,可将校准误差降至最低。

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