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Power-Frequency Voltage Withstand Characteristics of Insulations of Substation Secondary Systems

机译:变电站二次系统绝缘的工频耐压特性

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摘要

The insulation of secondary system in substation, including secondary cables and devices, have to endure the high ac power-frequency voltage during the short-circuit fault. The ac withstand characteristics of the secondary cables and devices are experimentally investigated and discussed in this paper. The insulation breakdown mechanism of relays can be classified into three modes: air gap breakdown, creeping discharge, and solid insulation breakdown, that of the microcomputer protection device is solid state component damage. The ac power-frequency breakdown voltages of the microcomputer protection device, the small-size electromagnetic and solid-state relays all are as low as about 2 kV. The statistic method to obtain the withstand voltage of long communication cable from experimental data of short cables is proposed. The minimum 3-s withstand voltages of secondary system are 6.5 kV and 2 kV, respectively, this should be considered in substation design. What's more, the volt-second characteristics of the power-frequency withstand voltage of the secondary cables and devices are analyzed and compared in detail, which would be important in the selection of secondary cables and devices. At last, the method how to guarantee high ac breakdown voltage of electromagnetic and solid-state relays and microcomputer protection device is suggested.
机译:变电站二次系统的绝缘(包括二次电缆和设备)在短路故障期间必须承受高交流工频电压。本文通过实验研究和讨论了次级电缆和设备的交流耐受特性。继电器的绝缘击穿机理可分为三种模式:气隙击穿,蠕变放电和固体绝缘击穿,而微机保护装置则是固态元件损坏。微机保护装置,小型电磁继电器和固态继电器的交流工频击穿电压都低至约2 kV。提出了一种从短电缆的实验数据中获得长通信电缆耐压的统计方法。二次系统的最低3s耐压分别为6.5 kV和2 kV,这在变电站设计中应予以考虑。此外,详细分析和比较了次级电缆和设备的工频耐受电压的伏秒特性,这对于选择次级电缆和设备很重要。最后提出了如何保证电磁和固态继电器及微机保护装置的高交流击穿电压的方法。

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