Considerations on the coordinated control of controllable reactors

L.X. Zhou, Z. Yin, X.N. Xiao, Z.J. Wang, Z.Q. Wang, Y. Tan
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引用次数: 0

Abstract

In the extra-high voltage long transmission line, the non-allowed increasing of power voltage and the corresponding transient oscillation over-voltage are often occurred. The continued burning of the secondary arc usually keeps quite a long time for the high voltage level, long line and large capacity. There must lead to the failure of the re-closing if the secondary arc is not extinguished promptly, which will affect the security and stability of the system. In this paper, the dynamic induced over-voltage model as well as the dynamic secondary arc model in single-phase asymmetric breaking is established based on the distribution parameters of EHV long-line. A novel kind of high-controlled shunt reactor with a small reactor in the neutral is adopted to suppress the transient oscillation over-voltage and the secondary arc. Since the neutral point small reactor is constrained by the positive-sequence and zero-sequence capacitance of the line and the shunt reactor as well. The coordinate control of the neutral controllable small reactor achieves the dynamic change in accordance with the high-controlled shunt reactor which can realize the compensation of the phase capacitor so as to suppress the induced over-voltage and the secondary arc effectively.
可控反应器协调控制的若干问题
在超高压长输电线路中,经常会出现不允许的电源电压上升和相应的瞬态振荡过电压。对于电压等级高、线路长、容量大的场合,二次电弧的持续燃烧时间往往比较长。二次电弧不及时熄灭,必然会导致再合闸失败,影响系统的安全稳定。本文根据超高压线路的分布参数,建立了单相非对称破断的动态感应过电压模型和动态二次电弧模型。采用一种新型的高控并联电抗器,在中性点处设置一个小电抗器来抑制瞬态振荡过电压和二次电弧。由于中性点小电抗器同时受到线路和并联电抗器正序和零序电容的约束。中性点可控小电抗器的坐标控制实现了与高控并联电抗器的动态变化,实现了对相电容的补偿,从而有效地抑制了感应过电压和二次电弧。
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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