Small current grounding system single-phase grounding fault wire selection method based on transient zero-module current

A single-phase grounding fault, small current grounding technology, applied in the fault location, detecting faults according to conductor type, measuring electricity and other directions, can solve the problems of difficult acquisition, poor decomposition effect, difficulty in selecting wavelet bases, etc., to achieve economical strong effect

Inactive Publication Date: 2016-08-17
NARI TECH CO LTD +2
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Problems solved by technology

The line selection methods based on transient fault information generally include the first half-wave method, line selection using transient reactive power direction, and transient current line selection method based on wavelet transform, etc., but these methods

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  • Small current grounding system single-phase grounding fault wire selection method based on transient zero-module current
  • Small current grounding system single-phase grounding fault wire selection method based on transient zero-module current
  • Small current grounding system single-phase grounding fault wire selection method based on transient zero-module current

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[0033] In order to make the technical means, creative features, achievement goals and effects realized by the present invention easy to understand, the present invention will be further described below with reference to the specific embodiments.

[0034] like figure 1 The structure of the simulation system provided by the present invention is as follows: a 35kV substation has a return incoming line, and a 10kV system in the form of a single bus is distributed through a main transformer with a Y / D connection. Types include: cable + overhead line mixed line, pure cable line, pure overhead line. The arc suppression coil is installed on the grounding to neutral point. When the switch K is open, the system is a neutral point ungrounded system; when the switch K is closed, the system is a grounding system through the arc suppression coil, and the overcompensation degree is taken as 10%.

[0035] Using PSCAD / EMTDC electromagnetic transient simulation software to figure 1 Three-phas...

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Abstract

The invention discloses a single-phase grounding fault line selection method for a small current grounding system based on transient zero-mode current. Three-phase modeling is performed on the power grid, and different fault conditions are selected for single-phase grounding fault simulation experiments to obtain various lines Transient zero-mode current; extract the above data; perform empirical mode decomposition EMD on the above data; calculate the time-domain energy of multiple IMFs and residual components; add the energy of IMF and residual components to obtain the energy sum of a line , repeat the above steps to obtain the energy sum of all lines; calculate the energy weight coefficients of each line, compare the energy weight coefficients of each line, and the line corresponding to the maximum energy weight coefficient is the faulty line. Comparing the peak value and polarity of the first zero-mode current pulse and the polarity of the first instantaneous power peak value, the zero-mode current amplitude of the faulty line is larger than that of the non-faulty line, and the polarity of the two is opposite. The invention is not affected by arc suppressing coils and fault conditions and can accurately select fault lines.

Description

technical field [0001] The invention relates to a single-phase grounding fault line selection method for a small current grounding system based on transient zero-mode current, and belongs to the technical field of single-phase grounding line selection for distribution networks. Background technique [0002] The neutral point of my country's 6-35kV distribution network widely adopts the small current grounding method, that is, the neutral point is not grounded or grounded through the arc suppression coil. Operation experience shows that the lower the voltage level, the more ground faults, and the most common one is single-phase ground fault, accounting for more than 80%. A single-phase ground fault may cause overvoltage, burn out equipment, or even personal injury or death. Therefore, quickly determining the fault location and troubleshooting is the top priority for improving the reliable and safe operation of the distribution network. [0003] At present, the domestic resea...

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Application Information

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IPC IPC(8): G01R31/08
CPCG01R31/086G01R31/088
Inventor 韩冰张志昌赵家庆戴则梅钱科军张蓓蓓陈连杰徐春雷孟勇亮杜红卫田江
Owner NARI TECH CO LTD
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