CN208421081U - Wireless on-load vector test instrument - Google Patents

Wireless on-load vector test instrument Download PDF

Info

Publication number
CN208421081U
CN208421081U CN201820641374.5U CN201820641374U CN208421081U CN 208421081 U CN208421081 U CN 208421081U CN 201820641374 U CN201820641374 U CN 201820641374U CN 208421081 U CN208421081 U CN 208421081U
Authority
CN
China
Prior art keywords
measurement
processor
voltage
voltage reference
display
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201820641374.5U
Other languages
Chinese (zh)
Inventor
李小晖
高继宏
庞伟生
史建成
杨俊俊
孙永发
王海滨
王博
王一博
董慧芳
姬文泽
张晶晶
李振兴
樊晓苹
刘小凡
王荣业
赵中奇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xi'an Double British Polytron Technologies Inc
Hai Bei Electric Co Of Guo Wang Qinghai Province Utilities Electric Co
Original Assignee
Xi'an Double British Polytron Technologies Inc
Hai Bei Electric Co Of Guo Wang Qinghai Province Utilities Electric Co
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Xi'an Double British Polytron Technologies Inc, Hai Bei Electric Co Of Guo Wang Qinghai Province Utilities Electric Co filed Critical Xi'an Double British Polytron Technologies Inc
Priority to CN201820641374.5U priority Critical patent/CN208421081U/en
Application granted granted Critical
Publication of CN208421081U publication Critical patent/CN208421081U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Remote Monitoring And Control Of Power-Distribution Networks (AREA)

Abstract

The utility model relates to a kind of wireless on-load vector test instrument.Including a voltage reference and a measurement host, between the two using wireless communication.Voltage reference and measurement host respectively have power supply, using synchronic command, realize that different measurement points are calculated based on the synchro measure of the electrical parameters such as frequency, amplitude, the phase of voltage, electric current between voltage reference.Measurement host can not only work independently, and complete the survey calculation of three-phase voltage, three-phase current signal items electrical parameter;Can also with voltage reference be reference, carry out repeatedly separately measurement, save data, by all input measurement results with voltage reference composite calulation after, be unified in a vectogram and directly display over the display, to carry out PT nuclear phase and on-load vector test.It is a kind of amplitude for being conveniently suitable for intelligent substation, signal between multiple and different places capable of being measured and phase, the hand-held instrument for carrying out on-load vector test, directly displaying hexagonal figure.

Description

Wireless on-load vector test instrument
Technical field
The utility model relates to a kind of wireless on-load vector test instrument for power measurement field.
Background technique
When substation's commissioning of new equipment or the modified equipment of electric current secondary loop restore power transmission, need to carry out on-load Vector test, i.e., measurement three-phase load electric current virtual value and relative to reference voltage phase and judge phase sequence, to detect two The correctness of primary current, voltage circuit, and then guarantee the correct movement of protection.In the test of conventional substation, voltage, current-mode After analog quantity is all located at same protective device screen, it can be easily accomplished by three-phase phase volt ampere meter, but in intelligent substation, There is no voltage, the analog input of electric current after protection screen, the analog quantity of voltage is located in busbar voltage combining unit, electric current Analog quantity is located in each interval combining unit, and the two is at a distance of several meters or even tens of rice, and therefore, the test of on-load vector is exactly The problem of some opposite difficulty.It is also required in conventional transform er differential protection respectively by the basis of high tension voltage, while measuring height In low three side electric current amplitude and phase, to differentiate to second loop return wiring.
Currently, domestic mainstream digit phase volt ampere meter is all made of the mode an of host, multiple inputs, it is only applicable to electricity Pressure, current-mode analog quantity are the same as the traditional substation shielded.For surveying the research of phase technology at a distance or being synchronized using GPS signal, It is using special synchronous impulse line.Synchronous using GPS signal, hardware is complicated, at high cost;It is wanted using special synchronous impulse line It is laid with private cable, it has not been convenient to use.Therefore the country there is no it is a kind of be conveniently suitable for intelligent substation, can measure it is more The amplitude and phase of signal between a different location, the hand-held instrument for carrying out on-load vector test, directly displaying hexagonal figure Table.
Summary of the invention
To solve above-mentioned status, the utility model provides a kind of wireless on-load vector test instrument.Wireless on-load to Tester includes a voltage reference and a measurement host, between the two using wireless communication.Voltage reference and measurement master Machine respectively has power supply, using synchronic command, realizes frequency of the different measurement points based on voltage, electric current between voltage reference, width The synchro measure of the electrical parameters such as value, phase calculates.Measurement host can not only work independently, and complete three-phase voltage, three-phase current letter The survey calculation of number every electrical parameter;It can also be reference with voltage reference, carry out repeatedly separately measurement, data are saved, by institute Have input measurement result with voltage reference composite calulation after, be unified in a vectogram and directly display over the display, thus Carry out PT nuclear phase and on-load vector test.
The voltage reference includes voltage measurement circuit, display, processor, clock module, serial wireless communication module And power circuit.Voltage signal by input port access voltage measurement circuit be filtered, shaping, the processing such as amplification;Voltage The output signal of measurement route is connect with processor;Processor is connected to display, for showing metrical information;Clock module System clock is provided, processor is connected to, the starting of each measuring signal is controlled for processor;Serial wireless communication module with Processor connection, for voltage reference with the communication between measurement host.
The measurement host includes voltage measurement circuit, current measurement route, display, processor, memory, clock mould Block, serial wireless communication module and power circuit.Voltage, current signal access corresponding measurement route by input port and are filtered The processing such as wave, shaping, amplification;The output signal of measurement route is connect with processor;Processor is connected to display, for that will survey Amount information is shown;Memory is for saving each individual measurement result;Clock module provides system clock, is connected to processing Device controls the starting of each measuring signal for processor;Serial wireless communication module is connect with processor, for measuring host With the communication between voltage reference.
When the utility model tester measures:
Serial radio receiving transmitting module is first passed through before measurement host-initiated measurement and sends synch command to voltage reference, and is recorded It measures host clock and issues the moment, when voltage reference receives synch command, also recording voltage reference clock moment, voltage reference are connect After the completion of receipts, to measurement host response sync response order, clock is sended and received with voltage reference, measurement host receives To when sync response order, record measurement host receives clock time, using this four clock times, can calculate measurement master The clock skew and transmission delay of machine and voltage reference.According to clock skew adjust measurement host clock and voltage reference when Clock is synchronous, and according to transmission delay, setting measures Startup time next time, and measurement host issues starting measurement to voltage reference and refers to It enables, measures host and voltage reference carves synchronous averaging measurement on startup.Host is measured after being measured passes through serial channel radio Believe that module reads voltage reference measurement result, and calculates the electricity such as amplitude, the phase in each channel between voltage reference and measurement host and join Relationship between several or signal, and result is exported to display and is shown.And each measurement result can be saved in memory, After multiple result is with voltage reference composite calulation, it is unified in a vectogram and directly displays over the display.
Detailed description of the invention
The particular content of the utility model is furtherd elucidate with reference to the accompanying drawings and embodiments:
Fig. 1: the overall structure diagram of the present embodiment;
Fig. 2: the present embodiment voltage reference structural schematic diagram;
Fig. 3: the present embodiment measures main machine structure schematic diagram;
Fig. 4: the present embodiment measures synchronous schematic diagram.
Specific embodiment
Referring to Fig.1, the present embodiment includes voltage reference 1, measurement host 6;Wherein voltage reference include voltage input end 3, Display 2, dual-mode antenna 4 and power switch 5;Wherein measurement host includes voltage input end 8, current input terminal 9, display 7 And dual-mode antenna 10 and power switch 11.
It is the voltage reference structure chart referring to Fig. 2, voltage input end 3 accesses voltage measurement circuit 12;12 output letter It number is connected to processor 13, processor connects display 2, and for showing measurement result, clock module 14 is located inside processor, Serial wireless communication module 19 is connected to processor, and wireless receiving and dispatching antenna 4 connects 19, and power module 20 provides work power supply.
It is the measurement host structure chart referring to Fig. 3, three road voltage input ends 8 access voltage measurement circuit 21;Three roads electricity It flows input terminal 9 and accesses current measurement route 22;21,22 output signal is connected to processor 23, and processor connects display 7, For showing measurement result, clock module 24 is located inside processor, and memory 26 is connected to processor, serial radio communication mold Block 25 is connected to processor, and wireless receiving and dispatching antenna 10 connects 25, and power module 27 provides work power supply.
In the specific implementation, any kind single-chip microcontroller with AD in piece may be selected in processor, such as stm32 series monolithic Or MSP430 series monolithic;Voltage and current measurement route is common AC sampling filtering and amplifying circuit;Display 2 may be selected SPI serial line interface may be selected with processor in single-color dot matrix LCD, and the TFT display screen with touch function may be selected in display 7, can be with Different screen resolutions is selected according to their own needs;Serial wireless communication module according to communication distance may be selected 2.4G or External FLASH chip such as W25Q128 may be selected in 433MHz different capacity module, memory;Chargeable lithium may be selected in power circuit Battery and DCDC circuit.
Referring to Fig. 4, synchronous schematic diagram is measured for this example, time shaft 28 is voltage reference clock, and time shaft 29 is measurement Host clock, measurement host in 35 moment t1 send synch command 32 to voltage reference, when voltage reference receives synch command, Record 36 voltage reference clock time t2, after voltage reference finishes receiving, in 37 voltage reference clock time t3 to measurement host It replys and sends sync response order, t2 and t3 is had in order, when measurement host receives sync response order, 38 measurement of record Host receives clock time t4, using this four clock times, when can calculate the Offset for measuring host and voltage reference Clock deviates 30 and Delay transmission delay 31.
T2-t1=Delay+Offset
T4-t3=Delay-Offset
Therefore: Delay=((t2-t1)+(t4-t3))/2
Offset=((t2-t1)-(t4-t3))/2
The clock for adjusting measurement host according to clock skew is synchronous with the clock of voltage reference, according to transmission delay, setting Startup time 39 is measured next time, and measurement host issues starting measurement instruction 34 to voltage reference, when measurement instruction is with starting It carves, measures host and voltage reference carves synchronous averaging measurement on startup.Host is measured after being measured passes through serial channel radio Believe that module reads voltage reference measurement result, and calculates the electricity such as amplitude, the phase in each channel between voltage reference and measurement host and join Relationship between several or signal, and result is exported to display and is shown.And each measurement result can be saved in memory, After multiple result is with voltage reference composite calulation, it is unified in a vectogram and directly displays over the display.
Since there are certain delays from reception is sent to for wireless communication, specific delay is by environment and aerial rate and number Influenced according to the size of packet, but it is same under the conditions of delay time be fixed.It is computed and surveys, the method is reliable and stable Method for synchronously measuring, measurement result precision can meet measurement request.

Claims (3)

1. a kind of wireless on-load vector test instrument characterized by comprising a voltage reference and a measurement host, electricity It presses between benchmark and measurement host using wireless communication, all input multiple measurement results are unified in a vector with voltage reference It is directly displayed over the display in figure;
The voltage reference includes that voltage input, measurement route, processor, clock module, serially wirelessly communicate display all the way Module and power circuit;Voltage signal by input port access voltage measurement circuit be filtered, shaping, enhanced processing;Electricity The output signal of pressure measurement route is connect with processor;Processor is connected to display;Serial wireless communication module and processor Connection, for voltage reference with the communication between measurement host;
The measurement host includes three tunnel voltage inputs, three road electric current inputs, voltage measurement circuit, current measurement route, display Device, processor, memory, clock module, serial wireless communication module and power circuit;Voltage, current signal pass through input terminal Mouthful corresponding measurement route of access is filtered, shaping, enhanced processing;The output signal of measurement route is connect with processor;Processing Device is connected to display;Clock module is connected to processor;Serial wireless communication module is connect with processor, for measuring host With the communication between voltage reference.
2. wireless on-load vector test instrument according to claim 1, which is characterized in that the voltage reference includes all the way Voltage input end, voltage input end access measurement route, measurement route is AC sampling, amplification, filter circuit, and measurement route connects To the processor with AD in piece;Display uses monochrome LCD display, is connected by SPI serial line interface with processor;Clock Module is located inside processor, and the starting of each measuring signal is controlled for processor;Serial wireless communication module and processor 2.4G or 433MHz different capacity module may be selected in connection.
3. wireless on-load vector test instrument according to claim 1, which is characterized in that the measurement host includes three tunnels Voltage input end and three road current input terminals, voltage and current input terminal access measurement route, measurement route are AC sampling, put Greatly, filter circuit, measurement route are connected to the processor with AD in piece;Display is gone here and there using colored TFT display by SPI Line interface is connected with processor;Clock module is located inside processor, and the starting of each measuring signal is controlled for processor;It deposits Reservoir is external FLASH chip, is connect with processor;Serial wireless communication module is connect with processor, optional 2.4G or 433MHz different capacity module.
CN201820641374.5U 2018-05-02 2018-05-02 Wireless on-load vector test instrument Active CN208421081U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201820641374.5U CN208421081U (en) 2018-05-02 2018-05-02 Wireless on-load vector test instrument

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201820641374.5U CN208421081U (en) 2018-05-02 2018-05-02 Wireless on-load vector test instrument

Publications (1)

Publication Number Publication Date
CN208421081U true CN208421081U (en) 2019-01-22

Family

ID=65116840

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201820641374.5U Active CN208421081U (en) 2018-05-02 2018-05-02 Wireless on-load vector test instrument

Country Status (1)

Country Link
CN (1) CN208421081U (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110146762A (en) * 2019-06-05 2019-08-20 国网江苏省电力有限公司苏州供电分公司 A kind of detachable loading tests device suitable for intelligent substation
CN110221146A (en) * 2019-06-05 2019-09-10 国网江苏省电力有限公司苏州供电分公司 Loading tests method suitable for intelligent substation
CN110441622A (en) * 2018-05-02 2019-11-12 国网青海省电力公司海北供电公司 Wireless on-load vector test instrument
CN110850168A (en) * 2019-10-30 2020-02-28 广东电网有限责任公司 Feeder line loop closing real-time phase angle measuring device and method
CN118131086A (en) * 2024-05-08 2024-06-04 国网山东省电力公司淄博供电公司 Method, system, detection terminal and readable storage medium for detecting transformer hexagonal diagram by means of station power supply

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110441622A (en) * 2018-05-02 2019-11-12 国网青海省电力公司海北供电公司 Wireless on-load vector test instrument
CN110146762A (en) * 2019-06-05 2019-08-20 国网江苏省电力有限公司苏州供电分公司 A kind of detachable loading tests device suitable for intelligent substation
CN110221146A (en) * 2019-06-05 2019-09-10 国网江苏省电力有限公司苏州供电分公司 Loading tests method suitable for intelligent substation
CN110850168A (en) * 2019-10-30 2020-02-28 广东电网有限责任公司 Feeder line loop closing real-time phase angle measuring device and method
CN118131086A (en) * 2024-05-08 2024-06-04 国网山东省电力公司淄博供电公司 Method, system, detection terminal and readable storage medium for detecting transformer hexagonal diagram by means of station power supply

Similar Documents

Publication Publication Date Title
CN208421081U (en) Wireless on-load vector test instrument
CN201402286Y (en) Voltage drop detecting device of secondary circuit of voltage transformer
CN103149546B (en) The field integrated tester of a kind of portable electric energy measuring terminal
CN105445534B (en) A kind of remote-wireless vector instrument
CN201285444Y (en) Electric energy meter calibration apparatus
CN110456160B (en) Method and device for testing direct current resistance of ultrahigh voltage three-phase transformer
CN202033439U (en) Mobile laboratory
CN201402287Y (en) Voltage drop detecting device of secondary circuit of voltage transformer
CN105301437B (en) Transformer station's transformer secondary polarity detection method based on GPS sync identifications
CN202166679U (en) Intelligent dynamic-collecting terminal for three-phase electric energy data
CN106124909A (en) A kind of electric energy detection metering system
CN102520239A (en) Power consumption testing system for communication module of electricity information acquisition system
CN205301413U (en) Test system for vehicle quiescent current
CN204945238U (en) A kind of self-powered distributed wireless current sensor
CN110441622A (en) Wireless on-load vector test instrument
CN106526379A (en) Method for implementing power quality test analysis based on wireless sampling
CN102645581A (en) Low-tension electricity metering device
CN201909813U (en) Intelligent multifunctional high-voltage megohmmeter
CN206057436U (en) Without phase of line volt-ampere tester
CN104316746A (en) Smart measurement and computational analysis method of PT secondary circuit voltage and pressure drop
CN102230946B (en) Multifunctional intelligent electric power monitoring instrument
CN208189027U (en) A kind of distributed data intelligent acquisition device
CN112730962A (en) Wireless multipoint current-voltage phase volt-ampere measuring meter of transformer substation
CN208125825U (en) Wireless telemetering phase checking device
CN113049865A (en) Power parameter detection device and method

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant