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Response of Power System Protective Relays to Solar and HEMP MHD-E3 GIC

机译:电力系统保护继电器对太阳能和大麻MHD-E3 GIC的响应

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Geomagnetically induced currents (GIC) in a power system are the result of variations in the earth's magnetosphere influenced by solar storms or, in the extreme case, the late-time magnetohydrodynamic (MHD-E3) component of a high-altitude nuclear detonation. These currents appear as a quasi-DC offset superimposed on the AC current waveform and are capable of driving power system transformers towards saturation. A three-phase transformer system with varying levels of DC injection has been constructed in order to create a scale version of these quasi-DC transient waveforms. These harmonic-rich waveforms have been used to create tests for injection into protective relays. The relays under analysis include microprocessor, solid state, and electromechanical, representing applications including transformer, line and feeder protection.This paper is presented to the Texas A&M Conference for Protective Relay Engineers, College Station, TX, March 26, 2019.
机译:电力系统中的地磁诱导的电流(GIC)是地球磁层的变化的结果,受太阳风暴或极端情况,在极端情况下,高空核爆炸的晚期磁流体动力学(MHD-E3)组分。这些电流显示为叠加在交流电流波形上的准直流偏移,并且能够驱动电力系统变压器朝向饱和度。已经构建了具有不同DC注入水平的三相变压器系统,以便创建这些准直流瞬态波形的比例版本。这些富谐波的波形已被用于创建注射到保护继电器的测试。分析中的继电器包括微处理器,固态和机电,代表包括变压器,线路和馈线保护的应用。本文提交给德克萨斯州保护继电器工程师,大学站,TX,2019年3月26日。

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