Electrons deceleration on the anode and prospects of powerful switch tubes for converting technics

V. Perevodchikov, P. Stalkov, V. Shapenko
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Abstract

Static VAR compensators (SVC) have been developed and introduced in the power industry and such equipment improves the quality of electrical transmission systems due to regulation of active and reactive power. Devices known as FACTS (Flexible AC Transmission Systems) operate at voltages of 35 kV, 110 kV and above. At such high voltage levels, the use of vacuum switch devices becomes competitive with semiconductor devices. The fact is that vacuum devices provide high voltage levels (100 kV and above), in comparison with semiconductor devices (6-7 kV). For use in high-voltage converters consecutive connection of many semiconductor devices with control circuitry is necessary. There are also other advantages of vacuum devices: high speed switching, stability of influence of electromagnetic interferences and heating. High-voltage breakdown in vacuum devices does not carry catastrophic character, unlike breakdown in semiconductor devices.
阳极上的电子减速及转换工艺用大功率开关管的前景
静态无功补偿器(SVC)已被开发并应用于电力工业,它通过调节有功和无功功率来提高输电系统的质量。被称为FACTS(柔性交流输电系统)的设备在35kv、110kv及以上的电压下运行。在如此高的电压水平下,真空开关器件的使用与半导体器件具有竞争力。与半导体器件(6-7千伏)相比,真空器件提供高电压水平(100千伏及以上)。为了在高压变换器中使用,必须将许多半导体器件与控制电路连续连接。真空器件还有其它优点:开关速度快,不受电磁干扰和加热影响的稳定性好。真空器件中的高压击穿不像半导体器件中的击穿那样具有灾难性。
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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