DC line fault protection method based on current converter injection characteristic signal

A technology for DC line faults and characteristic signals, applied in emergency protection circuit devices, circuit devices, components of emergency protection devices, etc., can solve problems such as non-selective restart of DC transmission, achieve significant direct and indirect benefits, and ensure Safe and reliable operation and the effect of reducing power outage losses

Active Publication Date: 2018-08-14
XI AN JIAOTONG UNIV +2
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Problems solved by technology

[0005] The purpose of the present invention is to provide a DC line fault protection method based on the characteristic

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  • DC line fault protection method based on current converter injection characteristic signal
  • DC line fault protection method based on current converter injection characteristic signal
  • DC line fault protection method based on current converter injection characteristic signal

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[0046] Below in conjunction with the accompanying drawings, the DC line fault protection method of the inverter injecting characteristic signals is further described:

[0047] The purpose of the present invention is to provide a DC line fault protection method based on the characteristic signal injected by the converter, aiming at solving the problem of non-selective restart of the existing DC power transmission. The invention first builds a true bipolar full-bridge converter model under the PSCAD software, and realizes the purpose of clearing the converter through a control strategy when the DC overhead line fails; The characteristic signal is injected into the line, and the difference of the propagation characteristics of the characteristic signal between the faulty line and the sound line is used to judge the fault nature of the DC fault line. The invention is of great significance to the improvement of the power supply reliability and anti-interference ability of the DC overh...

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Abstract

The invention discloses a DC line fault protection method based on a current converter injection characteristic signal. The method comprises the following steps: step 1: establishing a full-bridge modular multilevel current converter; step 2: when a DC line fault occurs, starting a characteristic signal injection strategy to inject the characteristic signal after a fault clearing strategy is started for a certain time, wherein the characteristic signal injection strategy can generate an identifiable characteristic signal in the line; and step 3, after the characteristic signal injection strategy is started, judging whether the fault exists through wavefront refraction. By adoption of the DC line fault protection method disclosed by the invention, permanent faults and transient faults can be quickly distinguished, when the fault is determined as the permanent fault, the fault distance can be accurately judged, and a function of fast restart of a fast arc-extinguishing fault and the non-start of the permanent fault is achieved; and by adoption of the DC line fault protection method disclosed by the invention, adaptive restart is achieved on a DC overhead line, adaptive identificationof the fault nature and the fast restart of the fast arc-extinguishing fault are achieved, the safe and reliable operation of a DC system is ensured, the power outage loss is reduced, and the directbenefit and the indirect benefit are very significant.

Description

technical field [0001] The invention belongs to the field of DC line fault protection, and in particular relates to a DC line fault protection method based on a characteristic signal injected by a converter. Background technique [0002] Most power system failures come from overhead lines. Operational experience shows that the line fault has the characteristics of single-phase (pole) and instantaneousness. The probability of successful reclosing after a fixed time limit after the line fault is removed is 60% to 90%. The higher the voltage level, the higher the recombination power. Automatic reclosing is widely used in AC lines, which improves the reliability of power supply and has huge social and economic benefits. However, if it coincides with a permanent fault, the power system will suffer two consecutive faults in a short period of time, which will reduce the insulation of electrical equipment and reduce its service life. [0003] At present, there is no distinction be...

Claims

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Application Information

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IPC IPC(8): H02H7/26H02H1/00
Inventor 宋国兵王婷张晨浩吴磊韩伟刘超
Owner XI AN JIAOTONG UNIV
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