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Research on Fault Diagnosis Technology of Substation Grounding Grids using Frequency Sweep Method

机译:基于扫频法的变电站接地网故障诊断技术研究

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At present, there are five non-destructive evaluation methods for fault diagnosis of substation grounding grids, including DL/T standard detection, resistance network node, magnetic induction intensity, electrochemical analysis and ultrasonic guided wave detection. This paper discusses the detection of the state response of the grounding grids based on the signal input and output, and puts forward the frequency sweep method, which is the frequency sweep impedance and amplitude frequency response test technology of the grounding grids. On the basis of the corresponding test system, the grounding grids were laid at the interval of 8 m × 8 m and the test was completed under three working conditions of simulated desoldering, conductor fracture and conductor corrosion defects. For the excitation current and three response voltage waveforms obtained by 4-channel high-frequency sampling, the sweep impedance and amplitude frequency response curves are analyzed. The results of correlation coefficient analysis show that the sweep voltage waveform, amplitude frequency response curve when the conductor is broken are slightly different from those when there is no defect.
机译:目前,变电站接地网故障诊断的无损评估方法有五种,包括DL/T标准检测、电阻网络节点、磁感应强度、电化学分析和超声导波检测。本文讨论了基于信号输入和输出的接地网状态响应检测,提出了频率扫描法,即接地网的频率扫描阻抗和幅频响应测试技术。在相应测试系统的基础上,每隔8m×8m铺设接地网,并在模拟脱焊、导线断裂和导线腐蚀缺陷三种工况下完成测试。对四通道高频采样得到的励磁电流和三个响应电压波形,分析了扫频阻抗和幅频响应曲线。相关系数分析结果表明,导线断裂时的扫描电压波形、幅频响应曲线与无缺陷时略有不同。

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