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Calibration method for high-precision failure indicator

A fault indicator and calibration method technology, which is applied in the direction of instruments, measuring devices, and measuring electrical variables, can solve the problems of large dynamic range of fault indicator measurement and little reference value for the operation status of distribution network lines, so as to improve load Effect of current value

Active Publication Date: 2013-10-02
FUJIAN AUTOMATION ELECTRIC POWER TECH
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Problems solved by technology

However, due to the large dynamic range of the fault indicator (0-1000A), the non-linearity of the iron core material and electronic components, the measurement accuracy of the load current collected by the fault indicator is greater than 5%. The operation status of the grid line is of little reference value

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  • Calibration method for high-precision failure indicator

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Embodiment Construction

[0019] Below in conjunction with specific embodiment the present invention is described in further detail:

[0020] Such as figure 1 As shown, a calibration method of a high-precision fault indicator of the present invention, the calibration method includes the following steps:

[0021] 1) Build a simulation circuit of the distribution network. The simulation circuit is equipped with a current source and an ammeter for detecting the actual current. The output current range of the current source is 0~1000A;

[0022] 2) Connect the fault indicator to the analog circuit, and increase the current output by the current source from 0 to 1000A in turn, and increase the current by 1A each time, record the load current sampling value I output by the fault indicator, and obtain 1001 loads Current sampling value;

[0023] 3) Analyze the relationship between the load current sampling value I and the actual current detected by the ammeter, and calculate the coefficient M between each loa...

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Abstract

The invention discloses a calibration method for a high-precision failure indicator. The calibration method comprises the following steps: (1) building an analog line for a distribution network; (2) clamping the failure indicator on the analog line and calculating the primary calibration coefficient M between each load current sampling value I and the actual current value; (3) achieving secondary calibration of the failure indicator, averaging the output current into 10 groups of interval, and respectively calculating the secondary calibration coefficients k and b of different intervals through the endpoint current values at two ends of each interval and the corresponding load current values subjected to primary calibration; (4) carrying out primary calibration and secondary calibration of the new load current value acquired by the failure indicator. After two times of calibration of the load current value acquired by the failure indicator, the load current value acquired by the failure indicator is greatly improved, the error precision of the load current value is lowered from 5% to 3%, and the load current value acquired by the failure indicator has reference significance on the line running state of the distribution network.

Description

technical field [0001] The invention relates to a fault indicator in an intelligent distribution network, in particular to a calibration method for a high-precision fault indicator. Background technique [0002] The earliest short-circuit fault indicator in China is a closed iron core with an opening set on the wire. When the current exceeds the operating value, the iron core is closed, and the display rod is unhooked and falls, indicating that the short-circuit current passes through it. After 1990, indicators capable of automatic reset were introduced in China, and after digestion and absorption improvements, they have been popularized and applied on a large scale in China. According to the development of fault indicator communication in the past two decades, it can be divided into two stages. The first stage is mainly to connect the fault indicator on the line. The indicator does not have the communication function, and the realization circuit is relatively simple. Gener...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01R35/00
Inventor 许为钤梁丽军
Owner FUJIAN AUTOMATION ELECTRIC POWER TECH