CN2916644Y - Intelligent nuclear phase instrument - Google Patents
Intelligent nuclear phase instrument Download PDFInfo
- Publication number
- CN2916644Y CN2916644Y CN 200620075141 CN200620075141U CN2916644Y CN 2916644 Y CN2916644 Y CN 2916644Y CN 200620075141 CN200620075141 CN 200620075141 CN 200620075141 U CN200620075141 U CN 200620075141U CN 2916644 Y CN2916644 Y CN 2916644Y
- Authority
- CN
- China
- Prior art keywords
- signal
- transmitting terminal
- unit
- transmitting
- receiving end
- 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.)
- Expired - Fee Related
Links
Images
Landscapes
- Testing Of Short-Circuits, Discontinuities, Leakage, Or Incorrect Line Connections (AREA)
Abstract
The utility model relates to an intelligent nucleus phase instrument comprising a sending device and a receiving device connected at the two ends of the cable to be tested. The signal sending unit of the sending device sends three groups of preset digital signals to the three-phase cable core of the cable to be tested through three sending ends, and displays the preset colors corresponding with the three sending ends through a display unit; the receiving device receives and judges signals received through a signal judging unit, and sends the corresponding control signals to the display unit end of the receiving end to make the display of the receiving end display another color. The color or sign is the same as the color displayed by the display of the sending end connected with the same cable core.
Description
Technical field
The utility model belongs to the electric test apparatus field, particularly a kind of intelligent nuclear phase meter.
Technical background
The high voltage long-distance transmission line adopts three-phase alternating current system usually both at home and abroad.In that electric substation and transmission line of electricity are carried out finishing in the newly-built, renovating and enlarging process or at line maintenance, before the user send electricity, all must carry out the test of three-phase circuit nuclear phase, consistent to guarantee the transmission line of electricity phase sequence with the desired phase sequence of user's threephase load.
Traditional nuclear-phase method as shown in Figure 1.During nuclear phase, with an end of cable under test 12 as phase reference end 14, with its other end as nuclear phase end 15.Arbitrary phase cable core with reference edge 14 is connected with the ground connection copper cash GND of cable earlier, then the cable grounding copper cash GND' of nuclear phase end 15 is connected in terminals of multimeter 13.Last another terminals that sequentially the three-phase electricity cable core of nuclear phase end 15 are connected to multimeter respectively.When showing between two terminals, multimeter shows that then the cable core of nuclear phase end 15 and the cable core of reference edge 14 are same phase place when constituting a loop.Subsequently, the staff transmits cross-check information mutually by communication tool, uses the viscosity colour band of same color to twine heat-shrink tube at the two ends of cable under test 10.One check mutually finish after, the staff continues to check all the other copper cores, finishes until the equal nuclear phase of three-phase copper core.
Obviously, when utilizing this method to carry out nuclear phase, last artificial communication is a crucial step.Yet, having multiple factor affecting to artificial communication, the communication that for example mobile phone, Personal Handyphone System signal are smooth, the road noise is big etc. causes is unclear.And, because have mobile phone, Personal Handyphone System signal nuclear phase can't be finished through regular meeting for some place such as underground distribution institute.In addition, this nuclear-phase method must carry out nuclear phase with ground of copper core, and can't finish the nuclear phase of three-phase copper core simultaneously.These factors influence nuclear phase time of finishing.Practice shows that when utilizing this nuclear-phase method to carry out nuclear phase, the nuclear phase of finishing unit cable will spend 10 minutes even more time.Therefore, when quantities is big, utilize the traditional core phase method to carry out the cable nuclear phase, influenced the progress of engineering with regard to the needs cost plenty of time; Particularly run into breakdown repair, the quick eliminating that has restricted fault especially consuming time of cable nuclear phase.
Summary of the invention
The utility model provides a kind of intelligent nuclear phase meter, and the nuclear phase that it need not can finish simultaneously by artificial communication the three-phase electricity cable core greatly reduces the required time of nuclear phase work.
For achieving the above object, the technical solution of the utility model is, a kind of intelligent nuclear phase meter, comprise the dispensing device and the receiving trap that are used to be connected to the cable under test two ends, described dispensing device comprises signal transmitting unit, it has three transmitting terminals at least, and described three transmitting terminals are used for three-phase electricity cable core with cable under test one end and are electrically connected and send mutually different three groups of preset number signals to the three-phase electricity cable core, and wherein each transmitting terminal sends set of number signal; The transmitting terminal display unit, it has three transmitting terminal display devices at least, and described at least three transmitting terminal display devices are respectively applied for and show and corresponding default color of described three transmitting terminals or symbol; Described receiving trap comprises: the receiving end display unit, and it has three receiving end display devices at least; The signal judgement unit, it has at least three input ends and at least three output terminals, described each input end is used for being electrically connected with the three-phase electricity cable core of the cable under test other end, described each output terminal is electrically connected with described each receiving end display device respectively, the signal judgement unit is used for receiving, differentiate the signal of described each input end input, and send corresponding control signal to the receiving end display unit by corresponding output terminal, be used to make corresponding receiving end display device to show a kind of color or symbol, this kind color or symbol are identical with color or symbol that the corresponding transmitting terminal display device of transmitting terminal that same phase cable core is electrically connected shows.
Described transmitting terminal display device is a dichromatic LED.
Described receiving end display device is a dichromatic LED.
Described preset number signal is the mutually different three groups of digital signals of pulsewidth.
Described signal decision unit also comprises three optic coupling elements, and described each optic coupling element is connected on respectively on each input end of described signal transmitting unit.
The technical solution of the utility model compared with prior art, three dichromatic LEDs of its transmitting terminal display unit show and three corresponding three kinds of default colors of transmitting terminal, simultaneously, signal transmitting unit sends mutually different three groups of preset number signals to the three-phase electricity cable core of cable under test, receive and differentiation by the signal judgement unit through cable under test transmission back, and then three dichromatic LEDs of control receiving end display unit are luminous, the color that shows the transmitting terminal display device demonstration that is electrically connected with same cable core mutually, thereby the threephase cable copper cash can obtain nuclear phase simultaneously, greatly reduces the required time of nuclear phase work.
Description of drawings
Accompanying drawing 1 is a nuclear phase schematic representation of apparatus in the prior art;
Accompanying drawing 2 is the circuit diagram of dispensing device described in the utility model;
Accompanying drawing 3 is the circuit diagram of receiving trap described in the utility model;
Accompanying drawing 4 is the synoptic diagram of preset number signal described in the utility model;
Accompanying drawing 5 is the process flow diagram of detection master routine described in the utility model;
Accompanying drawing 6 is the process flow diagram of initial subroutine described in the utility model;
Accompanying drawing 7 is the process flow diagram of detection subroutine described in the utility model;
Accompanying drawing 8 is the process flow diagram of A parton program in the accompanying drawing 7;
Accompanying drawing 9 is the process flow diagram of B parton program in the accompanying drawing 7;
Accompanying drawing 10 is the process flow diagram of C parton program in the accompanying drawing 7;
Accompanying drawing 11 is the process flow diagram of E parton program in the accompanying drawing 7;
Wherein: 1, transmitting terminal; 2, signal transmitting unit; 3, transmitting terminal display unit; 4, input end; 5, receiving end display unit; 6, three terminal regulator; 7, signal judgement unit; 8, output terminal; 9, optic coupling element; 10, transmitting terminal display device; 11, receiving end display device; 12, cable under test; 13, multimeter; 14, reference edge; 15, nuclear phase end.
Embodiment
Shown in accompanying drawing 2, accompanying drawing 3, a kind of intelligent nuclear phase meter comprises the dispensing device and the receiving trap that are used to be connected to the cable under test two ends.
Transmitting terminal display unit 3 comprises three transmitting terminal display device 10a, 10b, 10c.For the three-phase electricity cable core of mark transmitting terminal, transmitting terminal display device 10a, 10b, 10c wants to send the light of three kinds of colors, and is for example red, green, Huang.And the common light emitting diode on the market can only send a kind of light of color, therefore in the present embodiment, described transmitting terminal display device 10a, 10b, 10c have selected a kind of special light emitting diode, i.e. dichromatic LED for use.Two light emitting diodes are arranged in the dichromatic LED, and one of them light emitting diode can only glow, and another can only green light, and when two light emitting diodes are lighted simultaneously because the parallax of human eye, just formed the light of the third color, i.e. gold-tinted.Can utilize the three-phase copper core of the signal cable of these three kinds of colors.
Dispensing device also comprises a three terminal regulator 6, is used for providing stable+5v voltage to single-chip microcomputer.The earth terminal of three terminal regulator 6 is connected with ground connection copper cash GND in the cable.
Red diodes among the transmitting terminal display device 10a is connected to the positive terminal of three terminal regulator 6 by 510 ohm current-limiting resistance, green diode among the transmitting terminal display device 10b is connected to the positive terminal of three terminal regulator 6 by 510 ohm current-limiting resistance, and the ruddiness among the transmitting terminal display device 10c, green diode all are connected to the positive terminal of three terminal regulator 6 by 510 ohm current-limiting resistance.Therefore, 10a, 10b and 10c show redness, green and yellow successively after the K switch closure, and be corresponding with threephase cable copper core L1, L2 and L3.
Accompanying drawing 3 is the circuit diagram of receiving trap described in the utility model.Described receiving trap comprises receiving end display unit 5 and signal judgement unit 7.Receiving end display unit 5 has three receiving end display device 11a, 11b, and 11c, described receiving end display device 11a, 11b, 11c also are dichromatic LED.Signal judgement unit 7 can select for use the pin number more than or equal to 11 common singlechip chip, in the present embodiment, selects the PIC series monolithic of U.S. MICROCHIP company for use, and model is PIC16F676.Select three pin RA0, RA1 on it and RA2 as input end 4.Described input end 4 is electrically connected by an optic coupling element 9 three-phase electricity cable core L1 ', L2' and the L3' with the cable under test other end respectively, and with the ground connection copper cash GND ' ground connection of this end cable.Select RC0~RC5 pin on it as output terminal 8, wherein RC0, RC1 are connected with two positive poles of receiving end display device 11a, RC2, RC3 are connected with two positive poles of receiving end display device 11b, and RC4, RC5 are connected with two positive poles of receiving end display device 11c.
After the K closure, described signal transmitting unit 2 sends mutually different three groups of preset number signals with regard to L1, L2 and L3, and wherein each transmitting terminal 1 sends the set of number signal.Because the ground connection copper cash GND at cable two ends, GND' is ground connection respectively, therefore has been equivalent to form three parallel loops at the cable two ends.Those skilled in the art should understand, and the preset number signal here can be any mutually different three groups of signals.In the present embodiment, can fast detecting go out different preset signals, therefore select the mutually different three groups of digital signals of pulsewidth as the preset number signal in order to make receiving trap.As shown in Figure 4, three groups of preset number signals are three duration interval 0.5S, and the cycle is the pulse of 2S, and wherein, the longest pulse persistance duration is 1.75S.So both can avoid the influence of cable distribution electric capacity, and can make single-chip microcomputer within 2S, finish whole actions again.
After the preset number signal was transferred to signal judgement unit 7 by cable under test, signal judgement unit 7 received and differentiates by the trace routine of burning in the chip signal of described each input by input end 4.Be detection master routine, initialization subroutine as accompanying drawing 5 to accompanying drawing 11, detect the process flow diagram of subroutine.After finishing initialization, in detecting subroutine, at first the digital signal that the RA mouth is received judges whether it all is 0.With the pulse signal in the accompanying drawing 4 is example, and the value that RA0, RA1, RA2 read during 0s is respectively 1,1,1.Carry out same judgement again after then waiting for 0.25s, at this moment, the value that RA0, RA1, RA2 read still is 1,1,1.Such flow process has been avoided The noise in the cable copper core.Carry out same judgement after waiting for 0.5s again, the value that this moment, RA0, RA1, RA2 read is respectively 0,1,1, therefore enters B parton program.As shown in Figure 9, in B parton program, judge at first whether RA2 is 0.If be 0, show that then signaling mode is incorrect, enter E parton program, i.e. error handler.If be 1, after continuing to wait for 20ms, judge once more whether RA0 is 1.Such flow process is The noise in the cable copper core equally.After judging that RA0 still is 0, wait for 0.5s, judge whether RA2 is 1.Shown in accompanying drawing 4, during 1.25s, the value of RA2 still is 1.Therefore, obtaining judged result: RA1 at last is the copper core that shows green light emitting diode correspondence in the dispensing device; RA0 is the copper core that shows red light emitting diode correspondence in the dispensing device; RA1 is the copper core that shows green light emitting diode correspondence in the dispensing device; RA2 is the copper core that shows yellow light emitting diode correspondence in the dispensing device.Therefore, signal judgement unit 7 is to corresponding RC mouth output high level, and it is red as control signal corresponding receiving end display device 11a to be shown, 11b shows green, and 11c shows yellow.Other estimate of situation is identical with above-mentioned situation principle, does not repeat them here.
When the user observes on certain receiving end display device and transmitting terminal display device 10a, 10b, any among the 10c shows identical color, shows that promptly the cable that connects between these two ends is same phase place.Thereby threephase cable copper core can obtain nuclear phase simultaneously, greatly reduces the required time of nuclear phase work.
Claims (5)
1, a kind of intelligent nuclear phase meter comprises the dispensing device and the receiving trap that are used to be connected to the cable under test two ends, and it is characterized in that: described dispensing device comprises
Signal transmitting unit (2), it has three transmitting terminals (1) at least, described three transmitting terminals (1) are used for three-phase electricity cable core with cable under test one end and are electrically connected and send mutually different three groups of preset number signals to the three-phase electricity cable core, and wherein each transmitting terminal (1) sends the set of number signal;
Transmitting terminal display unit (3), it has three transmitting terminal display devices at least, and (10c), (10a, 10b 10c) are respectively applied for demonstration and corresponding default color of described three transmitting terminals (1) or symbol to described at least three transmitting terminal display devices for 10a, 10b;
Described receiving trap comprises:
Receiving end display unit (5), it have at least three receiving end display devices (11a, 11b, 11c);
Signal judgement unit (7), it has at least three input ends (4) and at least three output terminals (8), described each input end (4) is used for being electrically connected with the three-phase electricity cable core of the cable under test other end, described each output terminal (8) respectively with described each receiving end display device (11a, 11b, 11c) be electrically connected, signal judgement unit (7) is used for receiving, differentiate the signal of described each input end (4) input, and send corresponding control signal to receiving end display unit (5) by corresponding output terminal, be used to make corresponding receiving end display device (11a, 11b, 11c) show a kind of color or symbol, (10c) color of Xian Shiing or symbol are identical for 10a, 10b with the corresponding transmitting terminal display device of transmitting terminal (1) that same cable core mutually is electrically connected for this kind color or symbol.
2, intelligent nuclear phase meter according to claim 1 is characterized in that: (10a, 10b 10c) are dichromatic LED to described transmitting terminal display device.
3, intelligent nuclear phase meter according to claim 1 is characterized in that: (11a, 11b 11c) are dichromatic LED to described receiving end display device.
4, intelligent nuclear phase meter according to claim 1 is characterized in that: described preset number signal is the mutually different three groups of digital signals of pulsewidth.
5, intelligent nuclear phase meter according to claim 1 is characterized in that: described signal decision unit (7) also comprises three optic coupling elements (9), and described each optic coupling element (9) is connected on respectively on each input end (4) of described signal transmitting unit (2).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200620075141 CN2916644Y (en) | 2006-07-13 | 2006-07-13 | Intelligent nuclear phase instrument |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN 200620075141 CN2916644Y (en) | 2006-07-13 | 2006-07-13 | Intelligent nuclear phase instrument |
Publications (1)
Publication Number | Publication Date |
---|---|
CN2916644Y true CN2916644Y (en) | 2007-06-27 |
Family
ID=38187558
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN 200620075141 Expired - Fee Related CN2916644Y (en) | 2006-07-13 | 2006-07-13 | Intelligent nuclear phase instrument |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN2916644Y (en) |
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1888921B (en) * | 2006-07-13 | 2010-05-12 | 江苏省电力公司苏州供电公司 | Intelligent nuclear phase instrument |
CN101893662A (en) * | 2010-07-23 | 2010-11-24 | 江苏省电力公司常州供电公司 | Nuclear phase method of digital substation |
CN101644730B (en) * | 2009-08-25 | 2012-04-25 | 广东电网公司广州供电局 | Circuit phase checking method |
CN103267904A (en) * | 2013-04-27 | 2013-08-28 | 国家电网公司 | Phase checking method in process of cable installation |
-
2006
- 2006-07-13 CN CN 200620075141 patent/CN2916644Y/en not_active Expired - Fee Related
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1888921B (en) * | 2006-07-13 | 2010-05-12 | 江苏省电力公司苏州供电公司 | Intelligent nuclear phase instrument |
CN101644730B (en) * | 2009-08-25 | 2012-04-25 | 广东电网公司广州供电局 | Circuit phase checking method |
CN101893662A (en) * | 2010-07-23 | 2010-11-24 | 江苏省电力公司常州供电公司 | Nuclear phase method of digital substation |
CN101893662B (en) * | 2010-07-23 | 2013-08-07 | 江苏省电力公司常州供电公司 | Nuclear phase method for digital transformer substation |
CN103267904A (en) * | 2013-04-27 | 2013-08-28 | 国家电网公司 | Phase checking method in process of cable installation |
CN103267904B (en) * | 2013-04-27 | 2015-08-05 | 国家电网公司 | Nuclear-phase method when a kind of cable is installed |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
CN1888921B (en) | Intelligent nuclear phase instrument | |
CN102243286B (en) | Apparatus for detecting and displaying grounding state of equipment or socket | |
CN102998520B (en) | Digital display high-voltage electroscope of telescopic rod | |
CN208207122U (en) | polarity tester | |
CN210894646U (en) | Device for quickly aligning cable cores | |
CN201532437U (en) | Cable number checking and phase checking device | |
CN101848043A (en) | Radio frequency test system and method | |
CN204731364U (en) | A kind of portable polycore cable distribution tester | |
CN104965147A (en) | Low-voltage-user electric energy meter series detection system and detection method | |
CN107064682A (en) | Assembly detection apparatus | |
CN2916644Y (en) | Intelligent nuclear phase instrument | |
CN103543378B (en) | Platform sheet relation detection method | |
CN205427090U (en) | Portable communications cable break -make testing arrangement | |
CN101487872B (en) | Network cable test method and device | |
CN206696365U (en) | Intelligent cable correcting line machine | |
CN204116430U (en) | Relay protection multi-outlet pressing plate pulse voltage detection device | |
CN203011948U (en) | Current transformer characteristic test secondary connection device | |
CN105182107A (en) | Detection device, system and method | |
CN106199318B (en) | A kind of Intelligent line inspection instrument applied to ammeter box | |
CN104865471A (en) | Low voltage live-line cable pair check meter | |
CN201293815Y (en) | Apparatus for detecting zero/live wire polarity and testing ground resistance | |
CN204807649U (en) | Tester | |
CN108548984A (en) | A kind of multi-function device and its assay method that line and switching value sequential are measured for intelligence | |
CN202057749U (en) | Instrument for detecting and displaying ground state of equipment or socket | |
CN108390719A (en) | A kind of optical cable is automatically to fine test system |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20070627 |