Study on EMTP Simulation Applying Dual Reactor for Prevention of the Ferro-resonance and VT Burnout in Substation System

Seok-kon Kim, Y. An, B. Jang, Jong-kee Choi, N. Lee, Jung-yeol Han, Youjin Lee
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Abstract

Abstract When the line and switchgear of the substation system are disconnected, ferro-resonance can occur. This happens even if the capacitive reactance and inductive reactance are not equal, which are not common resonance conditions. Resonance conditions vary depending on the busbar configuration environment. Although the damping resistance method applying the existing saturable reactor to cope with ferro-resonance has been su ccessfully applied on site, th ere can be loss of normal function during long-term operat ion. The reason is because the rise in the operating frequency of saturable reactors means the saturation number is increased. Therefore, it can no longer function as saturable reactor since the resistor having inadequate capacity is burned out. To address this problem, in this paper, an EMTP-based simulation test was performed by designing and applying a dual reactor method, which adds an extended divergence reactor to the 1st side of the VT. The test result confirms that when the divergence reactor is inserted, the voltage and current values obtained at the 1st side and 2nd side of the VT as well as current values of divergence reactor part were stabilized from the transient phenomena and return to normal values. When compared with existing measures, although this method is similar in adding having a reactor added to a system regarding ferro-resonance, it has the advantage of being able to prevent ferro-resonance in advance since the reactor is added before the system is s aturated. In addition, because it does not use damping resistance, it can extend the equ ipment life and stabilize its operation. Therefore, there are a lot of differences in terms of its operating characteristics and achivement of goal between the conventional method and new divergence reactor method.
应用双电抗器预防变电站系统铁磁谐振和VT烧断的EMTP仿真研究
摘要当变电站系统的线路和开关柜断开时,会产生铁磁谐振。即使容抗和感抗不相等,也会发生这种情况,这不是常见的谐振条件。谐振条件随母线配置环境的不同而变化。利用现有的饱和电抗器处理铁谐振的阻尼电阻法虽然在现场得到了成功的应用,但在长期运行中可能会失去正常的功能。这是因为饱和电抗器工作频率的提高意味着饱和数的增加。因此,由于容量不足的电阻器被烧毁,它不能再作为饱和电抗器工作。为了解决这个问题,在这篇文章中,一个EMTP-based模拟测试是由双反应器设计和应用方法,增加了一个扩展散度反应堆第一VT。测试结果证实,当插入反应堆分歧,获得的电压和电流的值在第一和第二端VT以及当前值的散度稳定反应堆部分从瞬态现象和恢复正常的价值观。与现有的措施相比,虽然该方法与在系统中加入一个电抗器类似,但由于在系统饱和之前添加了电抗器,因此具有提前防止铁磁共振的优点。此外,由于不使用阻尼电阻,可以延长设备寿命,稳定运行。因此,传统方法与新型发散反应器方法在运行特性和目标实现方面存在很大差异。
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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