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首页> 外文期刊>IEEE Transactions on Power Delivery >Partial Discharge Behavior and Accelerated Aging Upon Repetitive DC Cable Energization and Voltage Supply Polarity Inversion
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Partial Discharge Behavior and Accelerated Aging Upon Repetitive DC Cable Energization and Voltage Supply Polarity Inversion

机译:重复直流电缆通电和电压供应极性反转时局部放电行为和加速老化

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摘要

DC cables are supposed to withstand a number of operations involving supply-voltage peak-value time variations, such as energization, switch off and polarity inversion. It is known that voltage-supply time variations cause electric field transients in cable insulation that can last for a long time before steady-state conditions are achieved, and during this time the electric field distribution is not only driven by electrical conductivity, as in steady state, but also by permittivity, as in AC. This paper shows that highly energetic degradation phenomena, that is, partial discharges, PD, can occur during voltage transients that a DC cable has to withstand during life. This results in a cumulative damage which can cause premature insulation breakdown, at times well shorter than those expected based on a cable design which is PD free under steady-state conditions. Quantification of the damage caused by PD, based on aging and residual life models, is proposed in the paper, and it is shown that damage can be significant enough to pose a threat for cable life when operation transient rate is e.g., a few per day, and that the faster the slew rate of the supply voltage variation, the highest the cumulative damage due to PD.
机译:DC电缆应承受涉及供应电压峰值时间变化的多个操作,例如通电,关闭和极性反转。众所周知,电压 - 供应时间变化导致电缆绝缘中的电场瞬变,在实现稳态条件之前可以持续很长时间,并且在此期间电场分布不仅通过电导率驱动,而不是稳定的电导率国家,但也通过允许,如AC。本文表明,在直流电缆在生命期间承受的电压瞬变期间,可以发生高度充电能的降解现象,即部分放电PD,可以在电压瞬变期间发生。这导致累积损坏,这可能导致过早的绝缘击穿,其比基于电缆设计的预期速度较短,这在稳态条件下的PD无线电设计。在纸上提出了基于老化和残留寿命模型的PD损坏的定量,并且显示在操作瞬态速率例如,每天少数几个时,损坏可能足以对电缆寿命构成威胁并且电源电压变化的转换速率越快,由于PD引起的累积损坏最高。

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