高压电缆的短路行为及相关现象

A. Pokryvailo, C. Scapellati
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引用次数: 1

摘要

在许多高压负载中,当电压接近其运行极限时,放电是不可避免的。这种载荷可以是真空间隙,例如x射线管。放电特性不仅取决于负载的状态,而且,在真空间隙的情况下,取决于外部电路。在电缆连接中,电缆长度至关重要。后者在文学中往往被忽视。在本文中,我们考虑两种情况。在第一、常规连接中,电缆屏蔽层两侧接地。然后用常规的传输线方程来描述电缆中的过程。我们展示了短路条件下的行波发展模式和电源侧的过电压(OV)作为电缆参数的函数。在第二种情况下,电源侧的屏蔽接地,负载侧的屏蔽是浮动的(开放空间连接)。结果表明,传统的输电线路模型已不再适用。设计并分析了具有集总参数的PSpice等效电路。结果表明,在开式连接中,负载侧电缆绝缘存在过应力,而在常规连接中,供电侧电缆绝缘存在过应力。给出了在低压模型上的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavior of HV cable at short circuit and related phenomena
Discharges in many HV loads are unavoidable at voltages close to their operational limits. Such loads may be vacuum gaps, e.g., X-ray tubes. The discharge characteristics depend not only on the state of the load, but, in the case of a vacuum gap, on external circuitry. In cabled connections, the cable length is critical. The latter is mostly overlooked in literature. In this paper, we consider two cases. In the first, regular connection, the cable shield is connected to ground on both sides. Then the processes in the cable can be described by conventional transmission line equations. We show the pattern of traveling waves developing at short-circuit conditions and overvoltages (OV) at the power supply side as a function of the cable parameters. In the second case, the shield at the power supply side is grounded, and at the load side it is floating (open space connection). It is shown that conventional transmission line model is no longer applicable. PSpice equivalent circuits with lumped parameters are developed and analyzed. It is shown that the cable insulation is overstressed at the load side in open-space connections, and at the power supply side in regular connections. Experimental results obtained on low-voltage models are presented.
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