Experiment

Ritika Dusad
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Abstract

This work presents an experiment proposal for continuous partial discharge analysis during an automated thermal cycle experiment for hydro generator stator coils/bars. It is an innovative approach because we propose to perform partial discharges test and thermal cycle experiment simultaneously, while they are usually performed individually. We developed an automated test bench that allows performing data acquisition throughout the experiments. We decided to force different coil failures during the tests to observe any changes in the partial discharges trend. First, we changed the thermal cycle temperature limits, and this led to coil overheating before an electrical failure occurred in the insulation. Later, we applied a voltage that was higher than the rated for the coil, which led to a faster electrical failure. The partial discharges trend changed moments before the electrical fault, and the system was able to identify such change. Our preliminary results show that the continuous analysis of partial discharges trends might lead to better maintenance planning by identifying the moment when the hydro generator aging gets critical.
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实验
本文提出了在水轮发电机定子线圈/棒的自动热循环实验中进行连续局部放电分析的实验方案。这是一种创新的方法,因为我们提出了局部放电试验和热循环试验同时进行,而它们通常是单独进行的。我们开发了一个自动化的测试平台,允许在整个实验中执行数据采集。我们决定在测试期间强迫不同的线圈失效,以观察局部放电趋势的任何变化。首先,我们改变了热循环温度限制,这导致线圈过热,然后在绝缘中发生电气故障。后来,我们施加了一个高于线圈额定电压的电压,这导致了更快的电气故障。局部放电趋势在电气故障发生前瞬间发生了变化,系统能够识别这种变化。初步结果表明,通过对水轮发电机局部放电趋势的连续分析,可以识别出水轮发电机老化的关键时刻,从而制定更好的维修计划。
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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Analysis Conclusions Experiment Fluctuation Dissipation Theorem Magnetic Monopole Noise
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