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Fault current controller used for current bidirectional high-voltage direct current power transmission network

A high-voltage direct current and fault current technology, which is applied to emergency protection circuit devices, electrical components, and circuit devices used to limit overcurrent/overvoltage, and can solve problems such as difficult manufacturing, uncontrollable current limit, and single function

Active Publication Date: 2019-02-15
XI AN JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

However, with the improvement of DC voltage level and power transmission power, traditional access current-limiting inductors or resistors are difficult to manufacture due to the large inductance and resistance values ​​required, single-function, high customization, and uncontrollable current-limiting size. It cannot meet the development requirements of the modern DC grid, thus bringing new challenges and opportunities to the fault current control of the DC grid

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  • Fault current controller used for current bidirectional high-voltage direct current power transmission network
  • Fault current controller used for current bidirectional high-voltage direct current power transmission network
  • Fault current controller used for current bidirectional high-voltage direct current power transmission network

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Embodiment Construction

[0022] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0023] like figure 1 As shown, the present invention includes a first hybrid unidirectional switch circuit connected to the pole line and a second hybrid unidirectional switch circuit connected to the neutral line, and also includes a pole line reactor connected to the pole line and High-temperature superconductor, the polar line reactor is connected between the high-temperature superconductor and the hybrid unidirectional switch circuit; it also includes power electronic switches Q1, Q2, Q3 and Q4, and the emitters of the power electronic switches Q1 and Q2 are butted , the collectors of Q3 and Q4 are connected to the emitters of Q1 and Q2, wherein the collector of the power electronic switch Q1 is connected to one end of the first hybrid unidirectional switch circuit, and the emitter of Q3 is connected to the first hybrid unidirectional The ...

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Abstract

The invention discloses a fault current controller used for a current bidirectional high-voltage direct current power transmission network. The controller comprises a first hybrid unidirectional switch circuit and a second hybrid unidirectional switch circuit, wherein the first hybrid unidirectional switch circuit is connected to a pole line, and the second hybrid unidirectional switch circuit isconnected to a neutral line. The controller also comprises a pole line electric reactor and a high-temperature superconductor, wherein the pole line electric reactor and the high-temperature superconductor are connected to the pole line, and the pole line electric reactor is connected between the high-temperature superconductor and the hybrid unidirectional switch circuits. By use of the controller, a current bidirectional control flow limiting function can be realized, and the controller has perfectly symmetrical circuit topology and is not affected by a power grid tidal current direction. The turning-on duty cycle of electronic power switch is regulated, current-limiting current bidirectional continuous setting can be realized, so that the controller exhibits wide range adaptation and can be suitable for short circuit situations from different degrees.

Description

technical field [0001] The invention belongs to the technical field of direct current transmission, and in particular relates to a fault current controller for a current bidirectional high-voltage direct current transmission network. Background technique [0002] The DC transmission and distribution system started in the 1920s, because the technical reserves at that time were not enough to realize functions such as DC voltage conversion, power flow control, and fault interruption and current limiting. This restricts the development of direct current transmission grid to a great extent. Nowadays, with the vigorous development of new materials such as power electronic semiconductor devices and related control technologies, high-temperature superconducting materials, and liquid metals, DC systems have been mentioned again and become more and more popular due to their unique advantages over AC systems. The more it is used in the construction projects of new transmission and dis...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02H9/02
CPCH02H9/02H02H9/023H02H9/025
Inventor 卓超然杨旭张笑天张雄马鑫黄燕飞
Owner XI AN JIAOTONG UNIV
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