Re-switch on method for electric tansmission device

A transmission line and reclosing technology, which is applied to circuit devices, emergency protection circuit devices, electrical components, etc., can solve problems that threaten the safe and stable operation of the system, change of zero-sequence current protection range, protection malfunction or refusal to operate, etc.

Active Publication Date: 2005-03-02
NR ELECTRIC CO LTD
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Impedance and other phase selection methods, although most of them can correctly select the phase, but when a double-circuit line on the same pole and a double-circuit line with a different name phase cross-line fault occurs near the two terminals of the line, the phase selection element far away from the fault side will be misjudged as a phase-to-phase fault , so that the double circuit is misjudged as a multi-phase fault, causing all the double circuit to trip, which seriously threatens the safe and stable operation of the system
[0008] 2. Zero-sequence mutual inductance problem
[0009] The zero-sequence mutual inductance coefficient of double-circuit lines paralleled on the same pole is relatively

Method used

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  • Re-switch on method for electric tansmission device
  • Re-switch on method for electric tansmission device
  • Re-switch on method for electric tansmission device

Examples

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Embodiment Construction

[0102] Selection of Protection Tripping Modes for Double Circuit Lines on the Same Roof

[0103] The conventional tripping method is a single trip for single-phase faults and three trips for multi-phase faults. The disadvantage of this scheme is that it fails to maintain the connection between the two ends of the system to the greatest extent when three or more conductors fail. For example, when the IAIIBCG three-phase three-wire fault occurs, only the IBC two-phase is running during the reclosing period, and the IIA phase fails to participate in the quasi-three-phase operation. Another example is that when the IABIIBCG three-phase four-wire cross-line fault occurs, the double-circuit line is cut off, and the ICIIA two-phase operation cannot be retained and the switch is reclosed.

[0104] Therefore, when the systems on both sides mainly rely on double-circuit connections, the ideal tripping method is to only cut off the faulty phase when a fault occurs. The difference from t...

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Abstract

This invention relates to reclosing method for power transmission line. For joint parallel double circuit type: each circuit being equiped with individual protector, main protection being phase-splitting current differential protection or phase-command longitudinal protection; for various type single circuit fault or overline fault withni a zone, tripping fault being detected, determinnig no serious permanent fault, sequentially reclosing the tripping phases. For double-circuit fault, there must be two different type circuit being of no fault for reclosing, if not, two circuits must be tripped-off. This invention method increases the reclosing rate, together with minimizing the shock to the system after reclosing permanent fault.

Description

technical field [0001] The invention relates to a reclosing method of a power transmission line, in particular to a relay protection method for double-circuit lines paralleled on the same pole and a novel reclosing protection method. Background technique [0002] With the development of the electricity market and the construction of the power grid, it is required to give full play to the ability of the line to transmit electricity; Compared with two single-circuit lines, the parallel double-circuit line on the same pole has lower project cost, smaller outlet corridor width, shorter construction period, and obvious economic benefits. . Therefore, in the case of high land acquisition costs and tight exit corridors, double-circuit lines on the same pole are often used. [0003] Overseas ultra-high voltage transmission lines have successful operation experience in this respect. For example, in the power grids of Japan and European countries, most of th...

Claims

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Application Information

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IPC IPC(8): H02H3/06H02H3/34
Inventor 郑玉平张哲沈军沈国荣黄震
Owner NR ELECTRIC CO LTD
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