机构间传输线的平行线共振及对固定并联电抗失电线路的影响

S. Ashmore, M. Majidi, M. Etezadi-Amoli
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引用次数: 0

摘要

事件分析是系统保护的重要内容,但由于数据的有限性和缺乏性,事件分析很容易受到阻碍。这在公用事业互连点尤其相关,因为机构间的合作对于可靠的故障分析是必要的。即便如此,当涉及到平行线谐振等电力系统现象时,保护工程师也应该对意外操作得出合理的结论。在这种特殊情况下,永久性相对地故障证明了并联电抗器与连接多个公用事业和电力系统的同一通道中两条传输线之间的电容耦合之间的相关性。结果表明,由于零序网络的示意图显示了一个缺失的零序电压源,因此提出的互耦在失电线路上产生零序电流的实用理论是不准确的。相反,相地故障在并联电抗器电感和失电线路电容耦合之间形成了一个零序谐振网络。然后,该电路由循环零序电流激励,并由相邻带电的平行线感应的零序电压维持。对该谐振电路的分析表明,由平行线的地形和几何形状以及相地故障的位置决定的极高感应电压值的潜力。
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Parallel Line Resonance Between Interagency Transmission Lines and the Effect on a De-Energized Line with Fixed Shunt Reactance
Event analysis is a staple of system protection, yet it is easily hindered by limited and lacking data. This is especially relevant at points of utility interconnection as interagency cooperation is necessary for robust fault analysis. Even so, protection engineers are expected to reach reasonable conclusions about unexpected operations which can be particularly difficult when power system phenomena like parallel line resonance is involved. In this particular case, a permanent phase-to-ground fault demonstrated a correlation between a shunt reactor and the capacitive coupling between two transmission lines in the same right of way that interconnect multiple utilities and electrical systems. As is demonstrated, the utility proposed theory of the mutual coupling inducing zero sequence current on the de-energized line was inaccurate as a diagram of the zero sequence network reveals a missing zero sequence voltage source. Instead, the phase-to-ground fault formed a zero sequence resonant network between the shunt reactor inductance and the de-energized line capacitive coupling. This circuit was then excited by circulating zero sequence current and sustained by zero sequence voltage induced from the adjacent, energized, parallel line. Analysis of this resonant circuit shows the potential for extremely high induced voltage magnitudes which are governed by the topography and geometry of both parallel lines and location of the phase-to-ground fault.
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