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Positive sequence synthesized integrated brake device for preventing multiple-branch voltage transformer differential protection unwanted operation by utilizing fault components

A technology of differential protection and fault components, applied in the direction of emergency protection circuit devices, electrical components, etc., can solve the problems of transformer differential protection misoperation, failure to eliminate zero-sequence current, large differential unbalanced current, etc.

Inactive Publication Date: 2004-12-29
ZHEJIANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, when the errors of the three-phase current transformers on the grounding side are inconsistent, and the transformer only has power on the neutral point grounding side where an external fault occurs, the traditional method cannot eliminate the zero-sequence current caused by the external grounding fault on the neutral point grounding side. Influenced, there will be a large differential unbalanced current, and the ratio braking element and inrush braking element cannot perform reliable braking, especially when the transformer load current is small or even zero. The inrush braking element cannot brake this, as long as the error current exceeds the threshold, the transformer differential protection will malfunction

Method used

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  • Positive sequence synthesized integrated brake device for preventing multiple-branch voltage transformer differential protection unwanted operation by utilizing fault components

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Embodiment 1

[0008] A positive-sequence synthesizing integrated brake device that uses fault components to prevent misoperation of multi-branch transformer differential protection. Its circuit structure is shown in Figure 1, and the number of transformer neutral point grounding sides n=3. When the signal at the positive input terminal of the comparator 9 is smaller than the signal at the negative input terminal, the comparator 9 outputs 0, which is judged as an external ground fault, and the outlet of the three-phase differential protection is blocked; otherwise, the comparator 9 outputs 1, allowing the three-phase differential protection to operate. When the differential current and zero-sequence current are reduced to the same side, the same transformation ratio and weight k 10 =0.8,k 20 =0.6,k 30 =0.3, the setting value K is 0.8. The advantage of this device is that it can completely avoid the misoperation of the transformer differential protection caused by the ground fault outside t...

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PUM

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Abstract

The invention discloses a positive sequence synthesized integrated brake device for preventing multiple-branch voltage transformer differential protection unwanted operation by utilizing fault components, wherein the three-phase difference currents in the transformer differential protection constitute ratio braking element with the maximum value of zero-sequence current on each of the neutral point earthing end (or branches), when the positive input end signal is less than the negative input end signal on the comparators, the comparator outputs 0, the lateral area outer ground fault is determined, the three-phase differential protection exit is locked, otherwise the comparator 9 outputs 1, and the corresponding differential protection actuations are allowed. The advantage of the invention is, the transformer differential protection accidental operation resulted from ground fault outside the lateral area when the errors of the three-phase current transformer are in inconformity without influencing the correct actuation of the differential protection under the circumstance of in-area faults.

Description

technical field [0001] The invention relates to a transformer protection device, in particular to a positive sequence synthesis comprehensive braking device which uses fault components to prevent misoperation of multi-branch transformer differential protection. Background technique [0002] The existing power transformer differential protection device uses a ratio brake element, that is, the ratio of the differential current to the through current, to identify the fault outside the zone and the fault in the zone; The waveform or harmonic content of the differential current is used to identify the excitation inrush current and over-excitation current to achieve the purpose of identifying internal faults. For a power transformer with neutral points directly grounded on two or more sides, when an external ground fault occurs on one grounding side, a large ground fault zero-sequence current may occur on multiple sides. In order to prevent the zero-sequence current from causing ...

Claims

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Application Information

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IPC IPC(8): H02H7/045
Inventor 徐习东
Owner ZHEJIANG UNIV
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