CN1548976A - On-line monitoring system for turn-to-turn short circuit of generator rotor - Google Patents

On-line monitoring system for turn-to-turn short circuit of generator rotor Download PDF

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Publication number
CN1548976A
CN1548976A CNA031489346A CN03148934A CN1548976A CN 1548976 A CN1548976 A CN 1548976A CN A031489346 A CNA031489346 A CN A031489346A CN 03148934 A CN03148934 A CN 03148934A CN 1548976 A CN1548976 A CN 1548976A
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China
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crest
trough
magnetic flux
screen
waveform
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冯松伟
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Zhonghua Electrical Co ltd
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Zhonghua Electrical Co ltd
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Abstract

A method for automatically identifying a generator rotor turn-to-turn short circuit from information generated by a magnetic flux sensor. The present invention uses an automatic warning function to alert a remote operator of a generator rotor problem while allowing the condition of the rotor problem to be automatically recorded for future analysis. The invention allows the generator to be continuously monitored for the presence of turn-to-turn short circuits. The invention comprises a novel method for calculating the deviation between the wave crest and the wave trough.

Description

Generator amature turn-to-turn short circuit on-line monitoring system
Background technology
Because " turn-to-turn short circuit (short-turns) " that the puncture of insulator and migration cause between the rotor winding of generator is the example of validity with the phenomenon of stability of well-known reduction generating.Generator magnetic flux amount probe method is the method for this turn-to-turn short circuit of a kind of practicable detection in the time of early stage.In exploitation in 1970, this method was used to measure the variation of power generator air gap magnetic flux to generator magnetic flux amount probe method, the asymmetric existence that reflects rotor inter-turn short circuit of magnetic flux by D.R.Albright.Usually the be connected panel terminal of generator of magnetic-flux detector is used together, and waveform will be recorded and print then.Yet the use of magnetic flux detector measurement is labour-intensive on the mode that data are obtained and analyzed, and is easy to cause artificial mistake in this case.
The routine measurement of magnetic flux detector waveform is carried out according to trimestral timetable usually, because the generator amature turn-to-turn short circuit does not have significant symptom in early days, usually it will reveal as time goes by gradually, and little turn-to-turn short circuit is incited somebody to action growing as time goes by and become more serious.Like this, carry out the required manpower of rotor maintenance job, also using a kind of semi-automatic surveillance that is used for discerning rotor inter-turn short circuit earlier for the time and the saving that reduce system-down.This automatic system is used the IBM PC-AT compatible computer that user software and hardware have been installed.Use this system can show magnetic flux detection waveform, it also provides and has been used for data are saved as the application program of data-base content, thereby allows to reproduce original data to a certain extent.
The defective of this system is that it is manually-operated, needs artificial each waveform measurement value of gathering.The operator must be in the generator end image data; And, when in conventional system, detecting rotor inter-turn short circuit, can not provide switch fault report to the operator, turn-to-turn short circuit can only be discerned by maintainer at the scene.In addition, during preset time and beyond the conventional waveform measurement, just rotor inter-turn short circuit can not have been detected.
Summary of the invention
In brief, preferred form of the present invention is the combination of a software and hardware, and in order to discern rotor inter-turn short circuit in early days, it comprises uses the in-service monitoring system that magnetic flux is surveyed the method that waveform is measured.More specifically, this system has automatic detection and reports that any magnetic flux surveys the asymmetric characteristics of waveform, and in case detects abnormal conditions and can alarm is provided or carry out other operations to the staff.
This system is used for the ability with post analysis except having catching waveform under the condition of setting automatically, also comprises the ability of waveform being monitored in real time by such as computing machine Internet and/or Intranet.
Description of drawings
According to following detailed description and with reference to the accompanying drawings, those of ordinary skill in the art can be well understood to other purpose and advantage of the present invention, in these accompanying drawings:
Fig. 1 is an xsect and a waveform that 2 pole wheels of 8 grooves are arranged.
Fig. 2 shows the processing to waveform.
Fig. 3 shows the identification according to crest of the present invention and trough.
Fig. 4 be one according to program flow diagram of the present invention.
Fig. 5 is the process flow diagram and the table that show according to the various aspects of master routine of the present invention.
Fig. 6 shows the example that a monitor according to the present invention shows.
Fig. 7 shows the example of system according to an embodiment of the invention assembling
Fig. 8 is an example that the hardware that surveillance is combined with electricity generation system according to the present invention is installed.
Embodiment
Generator amature magnetic flux detector 10 well-known in the art normally one be installed in the distance field entity from approximately 3/ 4Inch is to about 1 3/ 4The sensor of this minimum distance between the inch.Magnetic flux detector 10 need be placed on the position of the axle of air gap usually, and is positioned on any possible position of non-magnetic field wedge.For the GE generating set of dispatching from the factory after nineteen ninety, permanent magnetic flux detector often has been installed in device fabrication.The function of magnetic flux detector 10 is that the magnetic density that allows to measure the stator air gap changes.The groove that focuses on rotor of the waveform that the magnetic flux detector generates and the magnetic density between the tooth change.The amplitude of tank voltage peak value is the function of the deviation that causes of effective turn (slot leakage flux) in the groove and the air gap flux density value of passing groove.The detection of turn-to-turn short circuit be by with slot wave shape with and the groove of its relative magnetic pole is compared and determine that the amplitude excursion between them obtains.
Fig. 1 shows the xsect of one 2 pole wheel, and its each magnetic pole has 8 grooves, can see this rotor in the generating plant usually.It is relevant with the quantity of pole surface and groove that Fig. 1 also shows the wave form that obtains from magnetic flux detector 10, magnetic pole A (8A-1A, A1-A8), magnetic pole B (B8-B1,1B-8B).Therefore, a complete circulation has 16 crests and 16 troughs altogether.
Fig. 2 A shows a typical magnetic flux detector waveform, the groove of crest and trough is numbered, Fig. 2 B shows typical waveform processing with the form of figure, by pole surface just in time the point of process lantern slide is cut, be denoted as line A in the drawings, subsequently left-half spun upside down and places it in the top of right half part and overlap on together up to the crest relevant with same groove.Fig. 2 C has shown the comparison of carrying out subsequently that can see, this relatively be by identification whether the amplitude of the crest method that distortion taken place and significantly be lower than the crest of relative magnetic pole carry out, if there is this situation, can determine that then this groove has one or more turn-to-turn short circuit.
Embodiments of the invention have used the waveform that produces from magnetic flux detector 10.The present invention comprises a computer based surveillance for instance, it has used for example LabView of National Instruments company, and National Instruments LabView is a graphical development environment that is used for making up data acquisition, instrument and control system.LabView has used friendly graphical user program, and wherein the user can create one the user interface that software systems are controlled alternately is provided.Having the system design that monitoring software and measurement hardware are combined closely makes the solution of quick development data collection and control, analysis and demonstration become very easy.Use has the software of the powerful build-in function that is used for Measurement and analysis and is used for the graphical compiler that performance is optimized is the desired feature of monitoring software, and it is with compatible mutually such as Windows 2000/NT/Me/9x, Mac OS, Linux, these operating systems of Sun System.
In an embodiment of the present invention, permanent the linking together of magnetic flux detector of surveillance and generator, so just handle solution is provided, thereby provide great improvement measuring reliability, correctness and objectivity for manual magnetic flux detector measurement.For example in Fig. 9,143 or 144 connectors that pass the top and bottom in generating plant, the dragon drum beach generator connect data and obtain input end and can be connected to the magnetic flux detector.The magnetic flux detector signal can be caught to allow input signal to be sent to data processing unit 16 by for example DAQ card 14 and be analyzed.Use software that these data that obtain are compared with the amplitude of relative magnetic pole corresponding groove with post-processing unit, can on computer display 20, show the analysis result information relevant then with other, with the situation of monitors rotor, and the generation of observation turn-to-turn short circuit.In case capture this data, waveform just can automatically save as file and analyze in the needs in the future being used for.System's monitoring image that can also allow to have the alarm indication is shown on the remote computer terminal in addition, such as being positioned on company's Intranet Anywhere.Because data can gather and analyze on computers, so these data also can be by obtaining such computer link to Internet.Under the situation about being widely used, Internet refers to link by transmission control protocol/Internet protocol (TCP/IP) between computing machine and the network.
In an embodiment of the present invention, the hardware interface of collection magnetic flux detector signal is a 6024E DAQ card.6024E DAQ card apparatus 14 is analog to digital converters, and when monitoring hardware uses, it reflects real-time performance in based on the development environment of Windows.6024E DAQ card is an example of the well-known equipment in present technique field, and it can be converted to the output that computing machine can be used with these inputs then from such as obtaining input the such equipment of magnetic flux detector.The user can use built-in DAQ card to create the real-time assembly of the desktop computer inside of the standard that is embedded in, and a high performance real-time system can be worked together with all flexible and powerful instruments in the surveillance, to create real-time measurement and analysis.
For example 6024E DAQ card is by connector and 8 digital I/O lines of 16 analog input channels (8 difference input channels), two analog output channels, 68 pins.The analog input of 8 magnetic flux detector waveforms is enough to all generators in the typical power house.
In case gathered data from the magnetic flux detector, will detect to crest in the data stream as shown in Figure 3 and trough.Can calculate the deviation of crest and trough subsequently, and can use alarming mechanism or other signal according to the parameter of data.What remember is, maximum crest and trough amplitude normally are detected near pole surface, and direct current offset makes the problem of detection some complexity a little that becomes.Therefore, as an example, after the signal that has obtained a period of time (approximately 20ms), at first minimum and maximum amplitude is assessed.In an embodiment of the present invention, if amplitude, exceeds peak swing greater than about 4.5V about more than 10% or the about voltage below 10% that is low to moderate minimum amplitude be used as the boundary voltage of crest and trough.The automatic crest detecting function of surveillance, LabView for example preferablyly discerns with interior execution crest on the crest border, discerns with interior execution trough on the trough border.For fear of wrong identification to crest, at first before first crest border of identification, last trough is discerned, first crest frontier probe always is used for first point that crest is surveyed like this.
At first calculate deviation between crest and the trough subsequently by calculating difference of vibration between first crest and first trough.Difference of vibration between first crest and first trough is divided by bigger one in the middle of first crest or the trough then.If waveform is symmetrical, between crest and trough, do not have difference so, remove the result be zero.This process repeats with interior crest and trough other 15 borders.Because the influence of air gap flux density, when the air gap flux density of passing transverse axis is zero, this will be more accurate relatively.
Well-known in the art be, magnetic flux detector waveform changes along with the change of load, but symmetry still keeps.When load variations suddenly having occurred, great variation has for example taken place in 20ms, its result perhaps is that a big crooked and asymmetric magnetic flux is surveyed waveform, it is asymmetric causing observed waveform.Yet the generation owing to the load variations of thinking in an embodiment of the present invention suddenly will can not continue for example can obtain the waveform in ten cycles altogether before determining whether that turn-to-turn short circuit has taken place.In ten waveform samplings of surpassing are arranged, detect under the situation of asymmetric waveform, surpassed default value, at this moment just can activate turn-to-turn short circuit alarm or other signal.
Have several other factors also can have influence on waveform, for example do not have load when generator, when being in the idle running situation, rotor-exciting is less or do not have, and wherein, the magnetic flux detector waveform of noting should have less amplitude and long cycle.Yet amplitude of wave form will increase when generator connects load, and the cycle will dwindle.Similar to the situation of load variations, any abrupt change under the generator duty all may cause observing the asymmetric of waveform.According to this point, method is to obtain magnetic flux detector waveform after the variation of generator takes place preferably.In an embodiment of the present invention, under the situation of amplitude of wave form at 3000rpm of crest, may be increased to, so data can only be at amplitude greater than approximately obtaining in the 4.5V (3000rpm) above about 4.5V at the crest between two magnetic poles.This example is illustrated in generator between Kai Heguan, change in, the modification that data are gathered allows to stop the activity of turn-to-turn short circuit alarm.Yet, higher if difference continues to keep, for example 10 or sampling above 10, shorted turns indicator will activate, and this indicator may be a lamp, a monitor screen element and/or a control signal.
In an embodiment of the present invention, if zero crossing line and waveform crest value are overlapping when generator loading increases, then Wave data can be preserved automatically.On this aspect, waveform has minimum interference.Therefore, at this moment the data of record will have tangible reference value when comparing with past and data in the future.In addition, in order to generate a kind of different data processing, can be created in the history of the turn-to-turn short circuit percent value of zero cross point.When waveform is automatically caught and data is saved as a data file, can also obtain other information, for example unit number, date and time information are beneficial to data analysis in the future.
Vicious the time, for instance, the DAQ error indicator of a redness will light, and can also send an alarm signal to control operation person in addition in the waveform that does not recognize crest or obtain from the magnetic flux detector.Can in Fig. 4, see the example of system flowchart, start data acquisition here, will not recognize crest and trough if make a mistake, this be can be manual be saved in the file.Calculate and show deviation and the deviation of deviation and setting is compared.This process can repeat in following period of time, with the possibility of the unacceptable deviation of eliminating reporting errors.Usually on the time frame that is provided with, catch 10 waveforms, and the deviation of these waveforms and setting is compared.Counter that can be cleared is used for determining the quantity of the waveform that captures.If deviation has dropped on outside the acceptable scope, may send one and alarm and it is recorded in the file.
In an embodiment of the present invention, as shown in Figure 5, the master routine that is used to monitor the magnetic flux detector for example flux probe.vi has at least 3 cover subroutines in work.The first cover subroutine for example deviation.vi is calculated difference of vibration between crest and the trough; The second cover subroutine for example peakrecognition.vi is discerned useful crest and trough from original waveform; Last cover subroutine is the ascii text file of write to file with header.vi output time and amplitude, crest and trough information for example; In program is under the situation of flux probe.vi, and the file of all generations all uses extension name .xls to store.
Embodiments of the invention have used a graphic user interface, and as shown in Figure 6, this interface may be for example printer and/or computer monitor.Especially, the interface information below master routine in the example of flux probe.vi and graphic user interface generate:
1, real-time magnetic flux detector measurement.
2, useful crest and trough are highlighted sign.
3, selectable sampling rate.
4, selectable and acceptable amplitude excursion.
5, peak swing deviation that measures and corresponding groove number.
6, detected crest and trough quantity.
7,16 crests and trough amplitude excursion.
8, passage (be under monitoring generator unit number).
9, red DAQ input error is indicated.
10, red turn-to-turn short circuit is indicated.
One embodiment of the present of invention can dispose and be installed as has the ability that the user can revise the mode of image data in the magnetic flux detector.This ability allows user its correctness of expansion and accuracy on the basis of the data of gathering.For example data sampling rate can followingly be provided with:
The cycle of low frequency component: 20ms
From the surface of a magnetic pole to the time of relative magnetic pole: 10ms
The groove of each magnetic pole: 8
Groove from a magnetic pole to relative magnetic pole process: 16
The averaging time of each groove (high frequency period): 10ms/16=625 μ s
The minimum sampling period: 625 μ s
Minimum sampling rate: p.s. (312.5 μ s) -1=3200 sample values
In order to have acceptable time resolution, sampling rate>=5*3200sps=16ksps.
Resolution in the embodiments of the invention and program response time can be provided with, and for example are set to the resolution of 8 bits.In a such measurement, maximum error is 1/ (2 8-1)=0.392%, this is more much smaller than the vision deviation that can see in traditional data acquisition practice.Because the response time is not very important, so 1 to 2 second maximum response time should be acceptable.
Realize that the surveillance shown in Fig. 7 relates to consideration based on the system requirements such as generator quantity, data acquisition request and these factors of algorithm complex.Need to determine appropriate software platform, for example a LabView then.Also data acquisition interface to be connected on the generator practically.For example, if use National Instrument DAQ card 6024E as analog to digital converter, maximum can connect 4 generator magnetic flux amount detectors.For example between DAQ card and magnetic flux detector, can connect by a BNC cable.As well-known in the art, it should be understood that any equipment that is used for transmitting such signal all is operable.Go up for therein one analog to digital converter is installed, as shown in Figure 9, for example in generating plant, dragon drum beach generator, the data that converter passes 143 or 144 connectors of top and bottom by connection are obtained input end and are connected on the generator panel, the computing machine that is used for gathering digital signal is the Celeron desktop computer, and it is suitable for as actual measurement.
Because the magnetic flux detector waveform of different types of generator has its oneself waveform character, can be by the modification of software program being revised crest/valley detection method.Usually according to this correction, need the reliability of a workout period after program made amendment with test macro.
The target of having used the execution of monitoring software in the embodiment of the invention of LabView software and hardware to consider comprises:
1, monitors constantly and analyze.
2, target, rule-based wave form analysis are arranged.
3, telemonitoring.
4, monitor nearly 4 generators simultaneously.
5, when taking place, turn-to-turn short circuit reacts at once.
6, provide local and remote alarm to export to remind the operator.
7, when taking place, turn-to-turn short circuit automatically waveform is saved as file.
8, the wave file of output seizure is to analyze.
9, cost efficiency height and installation are simple.
10, user-friendly LabView background.
11, by company's Intranet in-service monitoring.
Software and hardware is in an embodiment of the present invention installed and is comprised:
Following software is installed in computing machine:
LabView fully/specialize in system
LabView real time execution engine
Subsequent data obtains the installation of hardware can together carry out with the installation of measurement and robotization browser, and this browser can find obtaining among the CD-ROM that hardware together sends with data usually.In addition,, should carry out executable program, perhaps under the situation that the real time execution engine only has been installed, move executable file in the place that source file can move if development system has been installed.
Used LabView in an embodiment of the present invention, image data, explanation results, output data file and termination routine are finished by following described step:
Image data from wave file:
1, select File from the sources of waveforms file
2, select the waveform text of any following form
Time?1,<tab>Amplitude?1<CR>
Time?2,<tab>Amplitude?1<CR>
Here<CR〉corresponding to ASCII character 13,<tab〉corresponding to sign indicating number 9, wave file is directed in the system subsequently.
From the DAQ card, gather Wave data:
1, the DAQ card is chosen as the source of waveform.
2, adjust the quantity and the sampling rate of sampling, the quantity that makes sampling is divided by the twice of sampling rate greater than the line cycle.
Illustrate the result
With the form display waveform of analysis waveform and crest and the trough that recognizes.If the quantity of the quantity of crest and trough is unequal, perhaps the deviation between crest and the trough has surpassed acceptable level, and red turn-to-turn short circuit lamp will light.If do not recognize crest or wrong in the waveform that obtains, red error light will light.For file and Comp Sine sources of waveforms, have only the lantern festival of passage that input is responded, for the input of DAQ card, lamp will respond at they corresponding passages simultaneously.
Output to data file:
Press the file that save button will show that a dialog box prompting will write, the form of file will be:
Time?<Tab>?Input?Amplitude?<Tab>?Peak?time?<Tab>?Peak?Amplitude<Tab>?Valley?Time?<Tab>?Valley?Amplitude?<CR>
Here, first row is a head, and other row are data, empty trough and the crest value of " 0 " expression.
EOP (end of program):
Activate of the operation of STOP button, and return exploitation or quit a program terminator.

Claims (13)

1, a kind of method of defective of automatic identification magnetic flux detector waveform, this method comprises the following step:
The data that will receive from the magnetic flux detector are converted to digital form;
The time cycle of Chi Xuing is gone up the data of gathering digital form actually;
The minimum and maximum amplitude of recognition data;
The boundary standard of crest and valley detection is set;
Identification crest and trough;
Crest and trough are compared, and the deviation between calculating crest and the trough;
More whether what determine crest and trough is acceptable; With
If crest and trough are unacceptable, then produce a signal.
2, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1, the cycle of wherein gathering the step of digital form data is about 20ms.
3, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1, the step that wherein is provided for the boundary standard that crest and trough survey comprises: it is following 10% first voltage standard is set is the peak swing value, and second voltage standard is set is minimum amplitude value above 10%.
4, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1, wherein relatively crest and trough and the step of calculating the deviation between crest and the trough comprise:
A) calculate amplitude difference between the trough of the crest of first identification and first identification;
B) crest that relatively calculates and the difference between the trough;
C) to other each crest of having discerned and the trough repeating step a) and b).
5, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1, wherein relatively comprising to crest and trough:
The crest that recognizes and the quantity of trough are counted, and are further comprised following step:
The quantity of determining crest whether with the quantity Matching of trough;
If the quantity of the quantity of crest and trough does not match, send a signal.
6, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1, wherein determine more whether be that acceptable step comprises to crest and trough:
A) from comparison, discern deviation to crest and trough;
B) value of identification user setting;
C) determine value that whether crest and trough deviation relatively be provided with greater than the user;
D) if this deviation greater than the value that the user is provided with, just thinks that this deviation is unacceptable.
7, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 6 further comprises following step:
To a plurality of sampled value execution in step a) to c); With
If the sampled value that predefined quantity is arranged in a plurality of sampled values thinks then that greater than the value that the user is provided with this deviation is unacceptable.
8, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 7, wherein predefined quantity is greater than 10.
9, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1 further comprises following step:
Display waveform after having discerned crest and trough.
10, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1 further comprises following step:
Show this deviation later in the deviation of having calculated crest and trough.
11, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1 further comprises following step:
After the deviation of having discerned crest and trough, waveform is sent in the file.
12, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1 further comprises following step:
On screen, show real-time magnetic flux detector measurement;
On screen, highlight useful crest and trough;
On screen, show optional sampling rate;
On screen, show optional acceptable amplitude excursion;
On screen, show through the peak swing deviation measured and corresponding groove number;
The quantity that on screen, shows detected crest and trough;
On screen, show normalized amplitude excursion in the past;
On screen, show number corresponding to the generator that is monitored;
Display digit data acquisition indicator on screen;
On screen, show shorted turns indicator;
On screen, show normalized amplitude excursion bar chart;
On screen, show selectable number of samples;
On screen, show the turn-to-turn short circuit alarm counter;
The crest that on screen, shows zero crossing;
On screen, show the conventional counter of preserving;
On screen, show the trigger level indicator;
On screen, show active power (MW) indicator;
On screen, show reactive power (MVAR) indicator.
13, the method that is used for discerning automatically the defective of magnetic flux detector waveform as claimed in claim 1 further comprises following step:
After the deviation of having discerned crest and trough, waveform is sent in the file.
CNA031489346A 2003-05-06 2003-07-01 On-line monitoring system for turn-to-turn short circuit of generator rotor Pending CN1548976A (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
HK03103199.0 2003-05-06
HK03103199A HK1053238A2 (en) 2003-05-06 2003-05-06 Automatic online monitoring for generator rotor short-turns

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Publication Number Publication Date
CN1548976A true CN1548976A (en) 2004-11-24

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Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100462729C (en) * 2006-06-15 2009-02-18 西安交通大学 On-line monitoring method for winding turn-to-turn short-circuit of distribution generator stator based on multi-criterion mixing
CN101592698B (en) * 2009-06-19 2011-10-05 贵阳新光电气有限公司 Method and device for online monitoring and positioning turn-to-turn short circuit for rotator of water wheel generator
CN105866685A (en) * 2016-05-26 2016-08-17 广西玉柴博耐特电器有限公司 Special equipment for detecting rotor of starter and detection method
CN109212374A (en) * 2018-09-14 2019-01-15 中国科学院电工研究所 A kind of the winding interturn short-circuit fault detection means and method of integer slot winding permanent magnet motor
CN109901008A (en) * 2019-03-05 2019-06-18 广州广重企业集团有限公司 A kind of generator rotor interturn short-circuit test method
CN110221159A (en) * 2019-07-18 2019-09-10 杭州电力设备制造有限公司 A kind of fault detection method, system and the equipment of the transformer based on iron core leakage field
CN110441685A (en) * 2018-05-04 2019-11-12 安德烈·斯蒂尔股份两合公司 The device and system of the on-state of drive motor for detection instrument

Cited By (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100462729C (en) * 2006-06-15 2009-02-18 西安交通大学 On-line monitoring method for winding turn-to-turn short-circuit of distribution generator stator based on multi-criterion mixing
CN101592698B (en) * 2009-06-19 2011-10-05 贵阳新光电气有限公司 Method and device for online monitoring and positioning turn-to-turn short circuit for rotator of water wheel generator
CN105866685A (en) * 2016-05-26 2016-08-17 广西玉柴博耐特电器有限公司 Special equipment for detecting rotor of starter and detection method
CN105866685B (en) * 2016-05-26 2019-02-22 广西玉柴博耐特电器有限公司 A kind of starter armature detection special equipment and detection method
CN110441685A (en) * 2018-05-04 2019-11-12 安德烈·斯蒂尔股份两合公司 The device and system of the on-state of drive motor for detection instrument
CN109212374A (en) * 2018-09-14 2019-01-15 中国科学院电工研究所 A kind of the winding interturn short-circuit fault detection means and method of integer slot winding permanent magnet motor
CN109901008A (en) * 2019-03-05 2019-06-18 广州广重企业集团有限公司 A kind of generator rotor interturn short-circuit test method
CN109901008B (en) * 2019-03-05 2021-09-07 广州广重企业集团有限公司 Method for testing turn-to-turn short circuit of generator rotor winding
CN110221159A (en) * 2019-07-18 2019-09-10 杭州电力设备制造有限公司 A kind of fault detection method, system and the equipment of the transformer based on iron core leakage field

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