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The challenge and solution of transformer protection under AC-DC hybrid transmission grid

机译:交直流混合输电网络下变压器保护的挑战与解决方案

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In AC-DC hybrid transmission grid, Both DC magnetic bias and commutation failure are common circumstances and which have adverse impact on the behavior of transformer protection in adjacent AC side. Taking the ±500kV Bao-Dei and Gui-Guang II HVDC projects as model, and based on a large number of RTDS experiments, the performance of transformer differential protection under those two situations is discussed in detail. Quantitative analysis indicates that the second harmonic produced by DC magnetic bias may cause transformer protection fail to operate in minor internal faults. On the other hand, the AC system can be regarded as a harmonic source under the circumstance of commutation failure, and the high content of the second harmonic may lead to mal-restraint of transformer differential protection especially in slight internal faults. To solve those problems, a novel protection method based on excitation impedance is put forward in this paper. Simulation results show that the proposed scheme is high in sensitivity and reliability even under condition of minor internal fault along with DC magnetic bias or commutation failure.
机译:在交直流混合输电网中,直流磁偏和换相故障都是常见情况,会对相邻交流侧的变压器保护性能产生不利影响。以±500kV保德和贵广二号直流输电工程为模型,并基于大量的RTDS实验,详细讨论了这两种情况下的变压器差动保护性能。定量分析表明,直流磁偏置产生的二次谐波可能会导致变压器保护在内部较小故障时无法运行。另一方面,交流系统在换向失败的情况下可以看作是谐波源,二次谐波含量高可能导致变压器差动保护的误动作,特别是在轻微的内部故障时。针对这些问题,提出了一种基于励磁阻抗的新型保护方法。仿真结果表明,该方案即使在内部故障较小,直流偏置或换向失败的情况下,仍具有较高的灵敏度和可靠性。

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