CN209486204U - A kind of converter valve TCU unit testing platform - Google Patents

A kind of converter valve TCU unit testing platform Download PDF

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Publication number
CN209486204U
CN209486204U CN201822065117.4U CN201822065117U CN209486204U CN 209486204 U CN209486204 U CN 209486204U CN 201822065117 U CN201822065117 U CN 201822065117U CN 209486204 U CN209486204 U CN 209486204U
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China
Prior art keywords
tcu
zener diode
voltage
energy supply
pliotron
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CN201822065117.4U
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Chinese (zh)
Inventor
王荣超
夏谷林
田越宇
黄聪
陈明佳
卢雯兴
石万里
韦德重
陈极升
刘进
尹忠葵
蔡鑫
荣军
刘彬
黄威
全晓方
房博一
黄承喜
杨武志
宋阳
杨海亮
覃广斌
张忠恒
夏武
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Liuzhou Bureau of Extra High Voltage Power Transmission Co
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Liuzhou Bureau of Extra High Voltage Power Transmission Co
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Abstract

The utility model discloses a kind of converter valve TCU unit testing platforms, it includes the 6th zener diode that the TCU, which energizes circuit, 7th zener diode, pliotron and trigger controller, after the access power supply of TCU energy supply circuit, 6th zener diode, 7th zener diode will be established respectively has the first tank voltage and the second tank voltage and by pliotron using first tank voltage and the second tank voltage as the energy supply voltage of flip chip, so that trigger controller exports pulse wave signal periodically to trigger turn on thyristors, including oscillograph, the oscillograph energizes the voltage input end in circuit with TCU respectively, 6th zener diode, 7th zener diode, the pin of pliotron, and the pulse wave signal output point of trigger controller is connected, so as to external input electricity Pressure, energy supply loop voltage, start pulse signal waveform rule and correlation are analyzed, and judge whether TCU energy supply circuit is intact.

Description

A kind of converter valve TCU unit testing platform
Technical field
The utility model relates to technical field of electric power, and in particular to a kind of converter valve TCU unit testing platform.
Background technique
Large-scale application has been obtained in high voltage direct current transmission project currently based on the thyristor valves of TCU structure. Converter valve is the core equipment of HVDC transmission system, and basic control unit of the TCU as thyristor, reliability are direct Determine the operational reliability of DC transmission system.Since power electronic devices belongs to light current device, voltage endurance capability and long-term The performance of high load operation is relatively poor, it is contemplated that converter valve returns inspection dropout number and is greater than 7 or protectiveness trigger signal Number is greater than 8, and it will cause direct current locking, IP loss, IP concussion, protectiveness triggering once occurs in converter valve TCU energy supply circuit Etc. abnormal phenomenon, grid equipment O&M unit found out it is necessary to carry out special test to converter valve thyristor level TCU energy supply circuit The root that abnormal phenomenon occurs.The domestic test macro for energizing circuit specifically for TCU not yet at present, designs and Implements one kind It can be used for the test platform of high voltage direct current transmission project converter valve thyristor level TCU control unit, and carry out engineer application to seem It is very urgent
Utility model content
The purpose of the utility model is to overcome above-mentioned the deficiencies in the prior art, provide a kind of converter valve TCU unit testing Platform, to judge whether it is working properly for testing TCU energy supply circuit.
To achieve the above object, the technical solution of the utility model is:
A kind of converter valve TCU unit testing platform, for judging whether TCU energy supply circuit is intact, and the TCU energizes circuit Including the 6th zener diode, the 7th zener diode, pliotron and trigger controller, when TCU energy supply circuit access After power supply, the 6th zener diode, the 7th zener diode foundation will have the first tank voltage and the second tank voltage simultaneously respectively By pliotron using first tank voltage and the second tank voltage as the energy supply voltage of flip chip, so that triggering Controller exports pulse wave signal periodically to trigger turn on thyristors, including oscillograph, and the oscillograph is supplied with TCU respectively Can circuit voltage input end, the 6th zener diode, the 7th zener diode, pliotron pin, and triggering control The pulse wave signal output point of device processed is connected.
The converter valve TCU unit testing platform further includes temperature measurer, and the temperature measurer is for measuring the 6th pressure stabilizing two The temperature of pole pipe, the 7th zener diode and pliotron.
The output voltage of the power supply is 2kV.
The temperature measurer is infrared radiation thermometer.
The utility model compared with prior art, the beneficial effect is that:
This converter valve TCU unit testing platform is passed through by using multi-channel high-accuracy oscillograph while accessing TCU energy supply The voltage input end in circuit, the 6th zener diode V6, the 7th zener diode V7, pliotron V8, and triggering control The pulse wave signal output point of device, to obtain corresponding voltage waveform, so as to external input voltage, energy supply circuit electricity Pressure, start pulse signal waveform rule and correlation are analyzed, and judge whether TCU energy supply circuit is intact.
Detailed description of the invention
Fig. 1 is the circuit diagram of converter valve TCU unit testing platform provided by the embodiment of the utility model;
Fig. 2 is the circuit theory schematic diagram that TCU energizes circuit.
Specific embodiment
The content of the utility model is described in further details with reference to the accompanying drawings and detailed description.
Embodiment:
Whether converter valve TCU unit testing platform provided in this embodiment is intact for judging TCU energy supply circuit, refering to figure It is 100 schematic diagram of TCU energy supply circuit either as shown in Fig. 2, the TCU energizes circuit that dotted line, which is framed part, shown in 1, in figure 100 include mainly the 6th zener diode V6, the 7th zener diode V7, pliotron V8 and trigger controller, works as TCU After energizing circuit access power supply 10, the 6th zener diode V6, the 7th zener diode V7 will be established respectively has the first energy storage electric It presses (22V) and the second tank voltage (11V) and is made first tank voltage and the second tank voltage by pliotron V8 For the energy supply voltage of flip chip, so that trigger controller exports pulse wave signal periodically to trigger turn on thyristors.
When zener diode V6, V7 and pliotron V8 are worked normally, U4, U5 point voltage are inputted with power frequency supply Voltage, periodically establishes 22V, 11V voltage and energy stabilization is energized in trigger controller, and trigger controller is made to export duty Than stable FP trigger pulse.
When zener diode V6, V7 and pliotron break down, U4, U5 point voltage be difficult to reach 22V and 11V or Holding time of voltage deficiency influences trigger controller and works normally, and leads to that trigger pulse or output trigger pulse disorder cannot be exported Erroneous trigger thyristor.
This converter valve TCU unit testing platform is passed through by using multi-channel high-accuracy oscillograph 1 while accessing TCU energy supply The voltage input end in circuit, the 6th zener diode V6, the 7th zener diode V7, pliotron V8, and triggering control The pulse wave signal output point of device, to obtain corresponding voltage waveform, so as to external input voltage, energy supply circuit electricity Pressure, start pulse signal waveform rule and correlation are analyzed, and judge whether TCU energy supply circuit is intact.
Preferably, converter valve TCU unit testing platform is additionally provided with infrared thermography instrument, to measure two pole of the 6th pressure stabilizing The temperature of pipe V6, the 7th zener diode V7 and pliotron V8, to check each energy supply element, whether there is or not overheatings, improve The accuracy of TCU energy supply circuit abnormality detection.
Correspondingly, the present embodiment additionally provides TCU energy supply loop fault measurement method, and this method further includes following steps:
S1, pass through transformer by 220V power boost to 2kV, to charge to TCU energy supply circuit;
S2, using oscillograph to TCU energy supply circuit voltage input end, the 6th zener diode, the 7th zener diode, The pin of pliotron and the pulse wave signal output point of trigger controller carry out voltage measurement, to external input electricity Pressure, energy supply loop voltage, start pulse signal waveform rule and correlation are analyzed, and judge whether TCU energy supply circuit is intact.
Specifically, judge the whether intact method in TCU energy supply circuit are as follows: if the 6th zener diode, two pole of the 7th pressure stabilizing The first tank voltage that pipe is established, the second tank voltage periodically establish 22V, 11V voltage and can stabilization in triggering Controller energy supply, the trigger pulse for keeping trigger controller output duty cycle stable, then it represents that TCU energizes circuit and completes;If the 6th The first tank voltage, the second tank voltage that zener diode, the 7th zener diode are established be difficult to reach 22V and 11V or Holding time of voltage deficiency influences trigger controller and works normally, and leads to that trigger pulse or output trigger pulse disorder cannot be exported Erroneous trigger thyristor, then it represents that TCU energizes loop fault.
One kind as this TCU energy supply loop fault measurement method is preferred, this method further include:
S3, charging 5 minutes is carried out to TCU energy supply circuit, after each component temperature is stablized after TCU energy supply circuit, use is infrared Temperature measurer measures the temperature of the 6th zener diode, the 7th zener diode and pliotron, 25 degrees Celsius of feelings of room temperature The 6th zener diode V6 of normal TCU, the 7th zener diode V7 temperature are not to be exceeded 40 degrees Celsius under condition, pliotron V8 temperature should be in 30-50 degree Celsius range, and pliotron V8 plays stable tank circuit voltage in TCU energy supply circuit Effect.When pliotron V8 failure, the both ends the CE 22V tank voltage of pliotron V8 can not be supported, keeps the voltage straight It connects and is carried by the six, the 7th zener diode V6, V7.Cause V6, V7 to flow through overload electric current, generates overheating, it is long-term high It is damaged under warm operating condition.Eventually leading to tank circuit spread of voltage influences the normal output of pulse signal.In this way, by energy supply Circuit zener diode V6, V7 and pliotron V8 carry out infrared measurement of temperature, and checking each energy supply element, whether there is or not overheatings, improve The accuracy of TCU energy supply circuit abnormality detection.
For above-described embodiment simply to illustrate that the technical ideas and features of the present invention, its purpose is allows this field Interior those of ordinary skill can understand the content of the utility model and implement accordingly, can not limit the utility model with this Protection scope.The equivalent changes or modifications that all essence according to the content of the present invention is made, should all cover in this reality With in novel protection scope.

Claims (4)

1. a kind of converter valve TCU unit testing platform, for judging whether TCU energy supply circuit is intact, TCU energy supply circuit packet The 6th zener diode, the 7th zener diode, pliotron and trigger controller are included, when TCU energy supply circuit access electricity Behind source, the 6th zener diode, the 7th zener diode foundation will have the first tank voltage and the second tank voltage and lead to respectively Overpower triode is using first tank voltage and the second tank voltage as the energy supply voltage of flip chip, so that triggering control Device processed exports pulse wave signal periodically to trigger turn on thyristors, which is characterized in that including oscillograph, the oscillograph point Not and TCU energize circuit voltage input end, the 6th zener diode, the 7th zener diode, pliotron pin, with And the pulse wave signal output point of trigger controller is connected.
2. converter valve TCU unit testing platform as described in claim 1, which is characterized in that it further include temperature measurer, the thermometric Instrument is used to measure the temperature of the 6th zener diode, the 7th zener diode and pliotron.
3. converter valve TCU unit testing platform as described in claim 1, which is characterized in that the output voltage of the power supply is 2kV。
4. converter valve TCU unit testing platform as claimed in claim 2, which is characterized in that the temperature measurer is infrared measurement of temperature Instrument.
CN201822065117.4U 2018-12-10 2018-12-10 A kind of converter valve TCU unit testing platform Active CN209486204U (en)

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CN201822065117.4U CN209486204U (en) 2018-12-10 2018-12-10 A kind of converter valve TCU unit testing platform

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Application Number Priority Date Filing Date Title
CN201822065117.4U CN209486204U (en) 2018-12-10 2018-12-10 A kind of converter valve TCU unit testing platform

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109581112A (en) * 2018-12-10 2019-04-05 中国南方电网有限责任公司超高压输电公司柳州局 A kind of converter valve TCU unit testing platform and TCU energize loop fault measurement method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109581112A (en) * 2018-12-10 2019-04-05 中国南方电网有限责任公司超高压输电公司柳州局 A kind of converter valve TCU unit testing platform and TCU energize loop fault measurement method
CN109581112B (en) * 2018-12-10 2024-05-31 中国南方电网有限责任公司超高压输电公司柳州局 Converter valve TCU unit test platform and TCU energy supply loop fault measurement method

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