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A method for improving the operation reliability of a converter valve tower in a converter station

A converter valve, converter station technology, applied in the direction of converting AC power input to DC power output, power transmission AC network, output power conversion device, etc. The problem of damage to the terminal blocks and the difficulty of controlling the electrical distance can achieve the effect of improving operation safety and simple operation.

Active Publication Date: 2021-06-08
SOUTHWEST ELECTRIC POWER DESIGN INST OF CHINA POWER ENG CONSULTING GROUP CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Obviously, the wiring radian of the soft wire connected by conventional suspension insulators cannot meet the seismic requirements of converter valves in areas with high seismic intensity
At the same time, since the body weight of the 800kV converter valve tower is 4-5t, if the conventional suspension insulator is used to connect the flexible wire, the seismic displacement of the converter valve tower will be limited due to the margin of the flexible wire connected to the suspension insulator Therefore, the seismic stress of the converter valve tower will directly pull the valve-side bushing of the converter through the connecting flexible wire, which may cause damage to the terminal of the valve-side bushing of the converter.
[0004] In addition, in the conventional UHV converter substation converter valve side outlet structure design scheme, the A, B, and C three-phase converters are all connected to the bottom insulator of the suspension pipe bus through six split soft wires, and the six The lead wires of the split flexible wires are long, the electrical distance between the down-conductor of the side-phase short-circuit of the suspension pipe mother and the upper-lead wire of the side phase to the outlet line of the converter valve tower is not easy to control, and the swing of the suspension pipe mother (especially Earthquake conditions) may cause the adjacent six-split flexible wires to collide with each other, thus affecting the safety and reliability of the connection and outgoing wires at the converter valve side

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  • A method for improving the operation reliability of a converter valve tower in a converter station
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  • A method for improving the operation reliability of a converter valve tower in a converter station

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Embodiment Construction

[0029] In order to make the object, technical solution and advantages of the present invention clearer, the present invention will be described in detail below in conjunction with the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described here are only used to explain the present invention, not to limit the present invention.

[0030] Such as figure 1 , figure 2 , image 3 The shown connection structure between the converter substation and the converter valve tower of the converter station mainly includes the converter substation 1, the jumper pipe bus 7, the suspension pipe bus 8 and the converter valve tower 12, and the converter substation 1 includes The three phases A, B, and C are respectively marked as A-phase commutation rheology 1A, B-phase commutation rheology 1B, and C-phase commutation rheology 1C, among which C-phase commutation rheology 1C is defined as side-phase commutation rheology. The diverter valve...

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Abstract

The invention provides a method for improving the operation reliability of a converter valve tower in a converter station. The connecting terminal in the middle of the converter valve tower (12A) of the phase A is respectively connected to the upper valve side bushing (1A) of the phase A converter (1A). 2) A conductive connection is formed between the casings (3) on the lower valve side of the B-phase converter (1B); connect the terminals in the middle of the B-phase converter valve tower (12B) to the B-phase converter (1B) A conductive connection is formed between the upper valve side bushing (2) of the phase C converter (1C) and the lower valve side bushing (3) of the phase C converter (1C); connect the terminal in the middle of the phase C converter valve tower (12C) to the A conductive connection is formed between the lower valve-side bushing (3) of the converter (1A) and the upper valve-side bushing (2) of the C-phase converter (1C); connect the wiring at the bottom of the converter valve tower (12) An electrical connection is formed between the terminals. The invention can ensure the trigger sequence without changing the logic control sequence in the valve control protection system of the converter valve tower, and improves the operation safety and reliability of the converter valve tower.

Description

technical field [0001] The invention relates to the field of connection design between a converter transformer and a converter valve tower, in particular to a method for improving the operation reliability of a converter valve tower in a converter station. Background technique [0002] In the ±800kV UHV converter station, two sets of twelve-pulse converter valve towers are usually connected in series, and each set of twelve-pulse valve sets is arranged in a valve hall. A, B, and C three-phase converter transformers (abbreviated as "converter transformers", the same below) have valve-side bushings directly inserted into the valve hall, and are respectively connected to A, B, C The connection terminal of the three-phase converter valve tower. Although this one-to-one phase sequence wiring method is simple to operate, for the valve control protection system of the converter valve tower, in order to ensure the trigger sequence of the converter valve tower, it is necessary to ch...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02J3/36H02M7/00
CPCH02J3/36H02M7/003Y02E60/60
Inventor 骆玲王强余波许泳吴怡敏朱大鹏胡晓邹家勇李龙才邢毅丁晓飞冯川冯千秀包维瀚曾捷李珊珊李良霄朱忻悦赵宇晖杨凌霜王昊铎
Owner SOUTHWEST ELECTRIC POWER DESIGN INST OF CHINA POWER ENG CONSULTING GROUP CORP