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Preliminary modeling of geomagnetically induced currents in South Africa using PowerWorld Simulator

机译:使用PowerWorld Simulator对南非的地磁感应电流进行初步建模

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Geomagnetically induced currents (GICs) have received increasing attention in scientific and engineering communities since 1989 due to their effects on electrical infrastructure. Geomagnetic disturbances (GMD), initiated by plasma ejections from the Sun, induce low frequency (<;1 Hz) quasi-dc voltages in transmission lines, causing GICs to flow through neutral-grounded star-wound (grounded-wye) transformer windings. Half-wave saturation of the core causes unbalanced currents, harmonics, localized heating and an increase in non-active power consumption, leading to tripping of protective relays and system instability. South African experience of power system disruption by GICs, even in its mid-latitude location, has been reported and initiated several studies. This research, using the PowerWorld Simulator software, extends previous studies to assess the GICs, voltage stability and reactive power requirements of a model network typical of power systems in South Africa, when subjected to the benchmark GMD event.
机译:自1989年以来,由于地磁感应电流(GIC)对电力基础设施的影响,因此越来越受到科学和工程界的关注。由太阳发出的等离子体引发的地磁干扰(GMD)在传输线中感应出低频(<; 1 Hz)准直流电压,导致GIC流经中性接地的星形绕线(变压器)绕组。铁心的半波饱和会导致电流不平衡,谐波,局部发热以及无功功率消耗的增加,从而导致保护继电器跳闸和系统不稳定。据报道,即使在中纬度地区,南非政府也对GIC破坏电力系统的经验进行了一些研究。使用PowerWorld Simulator软件进行的这项研究扩展了先前的研究,以评估遭受基准GMD事件时南非电力系统典型模型网络的GIC,电压稳定性和无功功率要求。

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