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文章摘要
一种采用纵向阻抗的变压器保护算法
A transformer protection algorithm using longitudinal impedance
Received:January 14, 2019  Revised:January 14, 2019
DOI:
中文关键词: 变压器  序分量  纵向阻抗  漏阻抗  电流互感器饱和
英文关键词: Transformer ,Fault component,Longitudinal impedance,The leakage impedance ,Saturation of current transformer
基金项目:
Author NameAffiliationE-mail
夏经德   
yuanyubao* Department of Electronic and Information, Xi’an Polytechnic University, 1328553995@qq.com 
刘欢庆   
高淑萍   
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中文摘要:
      针对变压器差动保护需要通过二次谐波等算法来识别励磁涌流的问题,在纵向阻抗保护原理的基础上提出一种基于故障分量的变压器保护算法。利用故障分量纵向阻抗在内部故障小于变压器漏阻抗,在外部故障、空载合闸大于变压器漏阻抗的特点,算法能够可靠识别故障区域。在变压器空载合闸时依据输电系统中稳定的阻抗关系,可以有效抵御励磁涌流的影响,使得保护算法在空载合闸时可靠不动作。同时考虑区外故障电流互感器可能发生的各种饱和情况,算法能够正确识别故障区域,具有较强的抗干扰能力。通过在PSCAD中进行仿真试验,结果表明算法不受电流互感器饱和、励磁涌流的影响,具备较强的可靠性和抗干扰能力,拥有良好的工程应用前景。
英文摘要:
      Aiming at the problem that transformer differential protection needs to identify inrush current of excitation by means of secondary harmonics and other algorithms, a transformer protection algorithm based on fault component is proposed on the basis of longitudinal impedance protection principle. Based on the characteristics that the longitudinal impedance of the fault component is less than the transformer leakage impedance in the internal fault, more than the transformer leakage impedance in the external fault and more than the transformer leakage impedance in the no-load closing, the algorithm can identify the fault area reliably. According to the stable impedance relation in the transmission system, the protection algorithm can effectively resist the influence of inrush current when the transformer is closed at no load, so that the protection algorithm can not operate reliably when the transformer is closed at no load. At the same time, considering all kinds of saturation conditions that may occur in the fault ct outside the zone, the algorithm can correctly identify the fault zone and has strong anti-interference ability. The simulation experiment in PSCAD shows that the algorithm is not affected by current transformer saturation and excitation inrush current, has strong reliability and anti-interference ability, and has a good prospect of engineering application.
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