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Locating method and device for one-phase earth fault of power distribution network based on transient state signal wavelet transformation

A single-phase ground fault, transient signal technology, applied in fault location, measuring device, fault detection according to conductor type, etc., can solve problems such as affecting power supply safety, prolonging power outage time, inaccurate positioning, etc., and achieving amplitude-phase characteristics Obvious, improved reliability, mature technology effect

Active Publication Date: 2013-02-27
STATE GRID CORP OF CHINA +2
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

When a single-phase ground fault occurs, the ground current is very small, and it can continue to run for 1 to 2 hours under the fault condition, but the fault point must be found as soon as possible, which raises the problem of fault location
[0003] The problem of fault location in the distribution network has not been well resolved for a long time. The method of manual line inspection is often still used on site. Manual line inspection not only consumes a lot of manpower and material resources, but also prolongs the power outage time and affects the safety of power supply.
At present, there are three methods for automatic positioning on site. The first method is to inject a high-frequency signal from the PT and detect the signal along the line to determine the fault location. However, because the distributed capacitance of the line forms a path for the high-frequency signal, the positioning is not correct when it is grounded through a resistor. precise
The second method is to use the fault indicator. Since the fault indicator can only measure the phase current and cannot measure the zero-sequence current, it is better for short-circuit faults, but the accuracy of single-phase ground fault location is very low.
The third method is to install a smart switch with a built-in CT. Although this method can measure the zero-sequence current, the terminals and master stations operating on the market have simple algorithms that only judge whether the steady-state zero-sequence current exceeds a fixed value. The positioning accuracy of the arc suppression coil grounding system is very low

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  • Locating method and device for one-phase earth fault of power distribution network based on transient state signal wavelet transformation
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  • Locating method and device for one-phase earth fault of power distribution network based on transient state signal wavelet transformation

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Embodiment Construction

[0039] The technical solution of the present application will be described in further detail below through specific embodiments in conjunction with the drawings in the description.

[0040] This application proposes a new positioning method, the principle of which is to perform wavelet transformation on the zero-sequence current signal measured by each terminal when the line is operating with a single-phase ground fault, and use the difference of the current signal of each terminal after the transformation, Perform fault location.

[0041] The terminal is installed on the tower of the overhead line or in the cable ring network cabinet, and its input terminal receives the phase current signal of the secondary side of the distribution line (including overhead lines and cables) and synthesizes the phase current signal to obtain the zero-sequence current signal, and communicates with the main station through Optical fiber communication or mobile communication connection.

[0042]...

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Abstract

The invention discloses a locating method and device for a one-phase earth fault region of a power distribution network. The locating method comprises the following steps of: accurately acquiring zero sequence current transient state signals within two periods before and after a zero sequence current exceeds a starting value through terminals arranged in different positions on a line; carrying out wavelet transformation and reconstruction on the zero sequence current transient state signals by the terminals; and analyzing a fault point region according to an approximation coefficient integral value of a detail component after the reconstruction. The locating device disclosed by the invention consists of a terminal and a master station, wherein the terminal is arranged on an overhead line tower or in a cable ring network cabinet, the input end of the terminal is used for receiving a phase current signal at the secondary side of a distribution line CT, the phase current signal is synthesized to obtain a zero sequence current signal, and the terminal is connected with the master station through optical fiber communication or mobile communication; and the master station is arranged in a converting station or dispatching center, composed of an optical fiber communication module and a mobile communication module and used for receiving a signal sent by the terminal. The locating method and device are matured in technique and high in reliability.

Description

technical field [0001] The invention belongs to the technical field of power system automation, and specifically relates to a section positioning method for a single-phase ground fault in a distribution network and a positioning device based on the positioning method. When a phase-to-ground fault occurs, accurately locate the fault section. Background technique [0002] The 3-60kV distribution network in my country widely adopts the non-effective neutral point grounding method, also known as the small current grounding system, and most of the faults in the small current grounding system are single-phase grounding faults. When a single-phase ground fault occurs, the ground current is very small, and it can continue to run for 1 to 2 hours under the fault condition, but the fault point must be found as soon as possible, which raises the problem of fault location. [0003] The problem of fault location in the distribution network has not been well resolved for a long time, and...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01R31/08
CPCG01R31/08G01R31/086G01R31/088G01R31/52Y04S10/52
Inventor 牟景旭王增平赵庆杞齐郑郭昆亚郑涛
Owner STATE GRID CORP OF CHINA
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