A fault location method for high-voltage transmission lines based on multi-source data set theory

A high-voltage transmission line and fault location technology, applied in the direction of fault location, information technology support system, etc., can solve problems such as failure to determine fault location, ranging failure, and complex traveling wave waveform, so as to reduce the time of manual inspection and reduce The effect of reducing power outage time and excessive consumption

Active Publication Date: 2017-12-05
EXAMING & EXPERIMENTAL CENT OF ULTRAHIGH VOLTAGE POWER TRANSMISSION COMPANY CHINA SOUTHEN POWER GRID
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  • Abstract
  • Description
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  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The current common fault location identification method relies on traveling wave distance measurement on overhead lines. It becomes relatively complicated, causing the background of the ranging device to calculate multiple possible fault locations, resulting in the failure of ranging; sometimes the same line is installed with fault ranging devices developed by different manufacturers, which will give different fault locations, resulting in failure Determine the real fault location; some line sections do not even install fault distance measuring devices at all; these factors have caused great obstacles to the line operating unit to quickly determine the fault location and organize line maintenance personnel to quickly deal with line faults

Method used

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  • A fault location method for high-voltage transmission lines based on multi-source data set theory
  • A fault location method for high-voltage transmission lines based on multi-source data set theory
  • A fault location method for high-voltage transmission lines based on multi-source data set theory

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Embodiment

[0038] like Figures 1 to 4 As shown, a high-voltage transmission line fault location method based on multi-source data set theory includes:

[0039] Step A. After the fault triggers the tripping of the line, use traveling wave ranging to obtain all suspected fault points or the position of the entire tripped line;

[0040] Step B, judging whether the line tripping belongs to joint debugging, if not, then proceed to the following steps;

[0041] Step C, querying the relevant external disasters that occurred near each of the suspected fault points or the location of the entire trip line, and obtaining the location where the line may fail under the influence of the external disasters;

[0042] Step D, inquire about each defect of the line, and obtain the position where the line may fail under the influence of the defect of the line itself;

[0043] Step E: Combining the above-mentioned external disasters and the fault location of the line that may be caused by the defect of th...

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Abstract

The invention provides a high-voltage transmission line fault location method based on a multi-source data set theory. When a line fails, defect information of the line and the real-time information of a weather system are queried according to the position information of the fault, the real fault position and the actual cause of line failure are determined, and a suggested solution is put forward. The time of fault handling is greatly shortened for the staff, and the economic loss caused by the fault is reduced.

Description

technical field [0001] The invention relates to the field of high-voltage power transmission in power systems, in particular to a fault location method for high-voltage transmission lines based on multi-source data set theory. Background technique [0002] my country's economy continues to develop, and the requirements for power supply are getting higher and higher, so the power industry is also constantly developing in response to social requirements. In order to ensure sufficient power supply in coastal areas with dense power loads, China Southern Power Grid has formed 15 west-to-east power transmission channels of "seven direct currents and eight alternating currents" of 500 kV and above, all of which are more than 1,000 kilometers long. Longer, so the probability of failure on the line corridor is higher. These long transmission lines shoulder the important task of connecting the resource-rich areas in the west and the power load center in the east. They have high volta...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01R31/08
CPCY04S10/52
Inventor 李晋伟张怿宁钱海宋云海黄义隆王振何珏
Owner EXAMING & EXPERIMENTAL CENT OF ULTRAHIGH VOLTAGE POWER TRANSMISSION COMPANY CHINA SOUTHEN POWER GRID
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