Arctic Regions: Icing at Low Temperatures and Modern Semiconductor Systems for De-Icing Overhead Transmission Line Wires

Khrennikov A. Yu., Kuvshinov A. A., Aleksandrov N. M.
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引用次数: 0

Abstract

The article shows that when operating overhead transmission lines in a number of regions, there is a serious problem of the glacial deposits of wires during the autumn-winter period. As a passive measure against the glacial deposits, various wires of increased strength can be used. One of the traditional active methods is the melting of glacial deposits on alternating current lines by creating short circuits or direct current using uncontrolled or controlled rectifier blocks. The development of new means to prevent glacial deposits on the overhead transmission lines consists of the use of combined conversion units capable of performing melting of glacial deposits, if necessary, and the rest of the time compensating for reactive power. The most promising one should recognize the melting of glacial deposits with an ultra-low frequency current that combines the advantages of melting with an alternating current of the industrial frequency (on three wires at the same time) and a DC current (limited only by the active resistance, smooth regulation of the melting current).
北极地区:低温结冰和用于架空输电线路除冰的现代半导体系统
文章指出,在一些地区的架空输电线路运行中,秋冬期间存在着严重的电线冰川沉积问题。作为对抗冰川沉积物的被动措施,可以使用各种增加强度的钢丝。传统的主动方法之一是通过使用非受控或可控整流块产生短路或直流电来融化交流电线路上的冰川沉积物。防止架空输电线路上的冰川沉积物的新方法的发展包括使用能够熔化冰川沉积物的组合转换装置,如有必要,其余时间补偿无功功率。最有希望的方法是利用超低频率电流融化冰川沉积物,这种超低频率电流结合了工业频率交流电(同时在三根电线上)和直流电流(仅受有源电阻的限制,熔化电流的平滑调节)的优点。
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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