On-line evaluation method of switching resistor of transformer substation in three-second wiring mode

A technology of switch resistance and wiring mode, which is applied in the field of online evaluation of switch resistance in substations with 3/2 connection mode, can solve the problems of large calculation amount and inaccurate calculation results, and achieve the effect of small hardware investment and reduced calculation amount

Active Publication Date: 2015-12-16
NANJING UNIV OF SCI & TECH +1
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

This method needs to select working conditions from a large amount of current data, and the calculation amount is relatively large, and errors such as instantaneous current phase are ignored in the process of establishing the equation, and the calculation results are not accurate enough.
[0004] It can be seen from the above that there is no method in the prior art to accurately evaluate the resistance value of the switchgear in the 3 / 2 wiring mode substation

Method used

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  • On-line evaluation method of switching resistor of transformer substation in three-second wiring mode
  • On-line evaluation method of switching resistor of transformer substation in three-second wiring mode
  • On-line evaluation method of switching resistor of transformer substation in three-second wiring mode

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Embodiment Construction

[0016] The 3 / 2 wiring mode substation switch resistance online evaluation method of the present invention is realized on the CRIO platform, and the CRIO platform is such as figure 2 As shown, including the controller layer and the application layer.

[0017] The controller layer consists of the following parts:

[0018] 1) Management control module: realize the operation and control of the whole system, realize the configuration and communication of each application module in the lower layer;

[0019] 2) Data storage module: process and store the analog and digital information collected by the acquisition board;

[0020] 3) Algorithm implementation module: realize the function of random programming, and realize the function of online evaluation of switch resistance.

[0021] 4) Result display module: realize the function of human-computer interaction and display the calculation results.

[0022] The application layer consists of the following parts:

[0023] 1) Clock sync...

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Abstract

The invention discloses an on-line evaluation method of a switching resistor of a transformer substation in a three-second wiring mode. The method is realized based on a CRIO platform. A current collection card arranged on the CRIO platform is used for obtaining switching currents at different moments; an inequality constraint condition of the switching resistor and the current is established based on a Kirchhoff voltage law and a maximum value of the switching resistor of the transformer substation is selected as a target function, thereby establishing an optimum planning model of the switching resistor; and then an optimum planning model is resolved by using a genetic algorithm. According to the invention, an effect of on-line operation resistor evolution of the switch in the three-second transformer substation can be realized effectively; a fault switch in the transformer substation can be found timely; and the result has the obvious parameter identification effect.

Description

technical field [0001] The invention belongs to the technical field of power system analysis, in particular to an online evaluation method for switch resistance of a 3 / 2 connection mode substation. Background technique [0002] In engineering applications, the most commonly used methods for measuring switch resistance in substations are the DC voltage drop method and the DC double-arm bridge method. The DC voltage drop method is to pass a constant large current of more than 100A to the switch, measure the voltage drop at both ends of the switch, and calculate the contact resistance value of the switch according to Ohm's law. However, the disadvantage of this method is that passing a constant large current for a long time will easily cause excessive heat and accelerated oxidation of the contacts, which will cause additional errors in the measured value of the contact resistance, and the usually used large current generators are relatively large in size and weight, which is no...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01R27/02G01R31/327
Inventor 卜京刘建坤侯洋汪成根殷明慧谢云云蔡晨晓姚娟
Owner NANJING UNIV OF SCI & TECH
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