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Electrical insulation behavior subject to fast transients using a tesla transformer

机译:使用特斯拉变压器的快速瞬变进行电气绝缘行为

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A few cases of recent failures in transformers has been seen as the precursors of a measuring campaign to investigate the possible causes and failure mechanisms. The results of the measurements pointed towards the existence of high frequency pulses superimposed on the 50 Hz fundamental voltage. The effect of the pulses was a breakdown of the internal winding insulation of the transformer. Further research assigned those pulses to switching operation in the grid and resonance phenomena in the transformer windings. Therefore, a test circuit is developed in the laboratory to study the failure mechanism of the electrical insulation exposed to this specific voltage waveform in a controlled environment. The main element of the circuit is an extended Tesla Transformer. A high frequency pulse is generated and superimposed on the rated 50 Hz voltage of the insulation under study. The goal is to cover the gap between the research of ageing mechanisms at frequencies from DC to several kHz by using a perfect sine wave, and the research on the breakdown mechanism due to impulse or steep front voltages.
机译:最近变压器故障的一些情况被视为调查可能的原因和失效机制的测量运动的前体。测量结果指向叠加在50Hz基极电压上的高频脉冲的存在。脉冲的效果是变压器内部绕组绝缘的击穿。进一步的研究将这些脉冲分配到变压器绕组中的网格和谐振现象中的切换操作。因此,在实验室中开发了测试电路,以研究受控环境中暴露于该特定电压波形的电绝缘的故障机理。电路的主元件是延伸的Tesla变压器。产生高频脉冲并叠加在研究下绝缘的额定50 Hz电压上。我们的目标是通过使用一个完美的正弦波,以覆盖到几kHz的老化机制在从DC频率的研究之间的间隙,并在击穿机理由于冲动或陡峭前面电压的研究。

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