CN108241138A - The detection device and detecting system of a kind of electric mutual inductor - Google Patents
The detection device and detecting system of a kind of electric mutual inductor Download PDFInfo
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- CN108241138A CN108241138A CN201810078164.4A CN201810078164A CN108241138A CN 108241138 A CN108241138 A CN 108241138A CN 201810078164 A CN201810078164 A CN 201810078164A CN 108241138 A CN108241138 A CN 108241138A
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- 238000001514 detection method Methods 0.000 title claims abstract description 50
- 238000012360 testing method Methods 0.000 claims abstract description 121
- 230000005611 electricity Effects 0.000 claims abstract description 64
- 238000004804 winding Methods 0.000 claims description 44
- 238000006243 chemical reaction Methods 0.000 claims description 16
- 239000000203 mixture Substances 0.000 claims description 14
- 238000012545 processing Methods 0.000 claims description 10
- 230000003321 amplification Effects 0.000 claims description 5
- 238000003199 nucleic acid amplification method Methods 0.000 claims description 5
- 241000208340 Araliaceae Species 0.000 claims description 2
- 235000005035 Panax pseudoginseng ssp. pseudoginseng Nutrition 0.000 claims description 2
- 235000003140 Panax quinquefolius Nutrition 0.000 claims description 2
- 235000008434 ginseng Nutrition 0.000 claims description 2
- 230000001360 synchronised effect Effects 0.000 description 20
- 238000005070 sampling Methods 0.000 description 19
- 238000010586 diagram Methods 0.000 description 12
- 230000009466 transformation Effects 0.000 description 6
- 238000005516 engineering process Methods 0.000 description 2
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- 230000004048 modification Effects 0.000 description 2
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- 230000005540 biological transmission Effects 0.000 description 1
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- 238000011056 performance test Methods 0.000 description 1
- 238000002360 preparation method Methods 0.000 description 1
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01R—MEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
- G01R35/00—Testing or calibrating of apparatus covered by the other groups of this subclass
- G01R35/02—Testing or calibrating of apparatus covered by the other groups of this subclass of auxiliary devices, e.g. of instrument transformers according to prescribed transformation ratio, phase angle, or wattage rating
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Abstract
The present invention provides the detection devices and detecting system of a kind of electric mutual inductor,The control signal being detected by control unit output to electric mutual inductor,And the voltage error of electric mutual inductor is determined based on the reference voltage and target voltage received,The current error of electric mutual inductor is determined based on the reference current and target current received,Using controlled voltage source according to detection the first test electricity consumption of control signal output and the second test electricity consumption,By the normal voltage mutual inductance unit with boosting according to the first test electricity output test voltage and reference voltage,Test voltage is used to that electric mutual inductor to be made to export target voltage,Electric current and reference current are tested according to test electricity output by the normalized current mutual inductance unit with up-flow,Test electric current is used to that electric mutual inductor to be made to export target current,So that during testing electric mutual inductor,Without manual debugging,Improve the testing efficiency to electric mutual inductor.
Description
Technical field
The invention belongs to the detection devices and detecting system of electronic technology field more particularly to a kind of electric mutual inductor.
Background technology
Electronic type voltage transformer and electronic current mutual inductor are referred to as electric mutual inductor, with electric mutual inductor quilt
Extensively using in electrical power transmission system such as ring main unit and on-pole switch, the demand to electric mutual inductor is also increasing.
Although the tester of existing electric mutual inductor can dispatch from the factory to electric mutual inductor before performance test,
During being tested using tester electric mutual inductor, need to rely on and manually debugged and operated ability to tester
Enough to complete test, testing efficiency is relatively low.
Invention content
An embodiment of the present invention provides the detection devices and detecting system of a kind of electric mutual inductor, can improve mutual to electronics
The testing efficiency of sensor.
The purpose of the present invention is to provide a kind of detection device of electric mutual inductor, including:
Control unit, for exporting the control signal being detected to electric mutual inductor, and based on the reference electricity received
Pressure and target voltage determine the voltage error of the electric mutual inductor, and institute is determined based on the reference current and target current received
State the current error of electric mutual inductor;
Controlled voltage source is connected with described control unit, for according to it is described control signal output first test electricity consumption and
Second test electricity consumption;
With boosting normal voltage mutual inductance unit, respectively with the electric mutual inductor, described control unit and it is described by
Control voltage source is connected, and the normal voltage mutual inductance unit of the band boosting is used for according to the first test electricity output test voltage
With the reference voltage, the test voltage is used to that the electric mutual inductor to be made to export the target voltage;
With up-flow normalized current mutual inductance unit, respectively with the electric mutual inductor, described control unit and it is described by
Control voltage source is connected, and the normalized current mutual inductance unit of the band up-flow is used to test electric current according to second test electricity output
With the reference current, the test electric current is used to that the electric mutual inductor to be made to export the target current.
Another object of the present invention is to provide a kind of detecting system of electric mutual inductor, including host computer, the detection
System further includes the detection device of electric mutual inductor as described above.
The detection device and detecting system of a kind of electric mutual inductor provided by the invention are exported by control unit to electronics
The control signal that mutual inductor is detected, and determine based on the reference voltage and target voltage received the voltage of electric mutual inductor
Error is determined the current error of electric mutual inductor based on the reference current and target current received, utilizes controlled voltage source root
According to detection the first test electricity consumption of control signal output and the second test electricity consumption, by the normal voltage mutual inductance unit that band boosts according to the
One test electricity output test voltage and reference voltage, test voltage are risen for electric mutual inductor to be made to export target voltage by band
The normalized current mutual inductance unit of stream tests electric current and reference current according to test electricity output, and test electric current is used to make electronics
Mutual inductor exports target current so that during testing electric mutual inductor, without manual debugging, improves to electricity
The testing efficiency of sub- mutual inductor.
Description of the drawings
Technical solution in order to illustrate the embodiments of the present invention more clearly, below will be to needed in embodiment description
Attached drawing is briefly described, it should be apparent that, the accompanying drawings in the following description is some embodiments of the present invention, general for this field
For logical technical staff, without creative efforts, other attached drawings are can also be obtained according to these attached drawings.
Fig. 1 is a kind of structure diagram of the detection device of electric mutual inductor provided in an embodiment of the present invention;
Fig. 2 is a kind of concrete structure schematic diagram of the detection device of electric mutual inductor provided in an embodiment of the present invention;
Fig. 3 be a kind of electric mutual inductor provided in an embodiment of the present invention detection device in echo signal amplifying unit tool
Body circuit diagram;
Fig. 4 be a kind of electric mutual inductor provided in an embodiment of the present invention detection device in boost mutual inductance unit unit tool
Body circuit diagram;
Fig. 5 be a kind of electric mutual inductor provided in an embodiment of the present invention detection device in the first amplifying unit specific electricity
Lu Tu;
Fig. 6 is the specific electricity that mutual inductance unit is flowed up in a kind of detection device of electric mutual inductor provided in an embodiment of the present invention
Lu Tu;
Fig. 7 be a kind of electric mutual inductor provided in an embodiment of the present invention detection device in the second amplifying unit specific electricity
Lu Tu;
Fig. 8 is the overall plan schematic diagram of the present invention;
Fig. 9 is a kind of structure diagram of the detecting system of electric mutual inductor provided in an embodiment of the present invention.
Specific embodiment
Below in conjunction with the attached drawing in the embodiment of the present invention, the technical solution in the embodiment of the present invention is carried out clear, complete
Site preparation describes, it is clear that described embodiment is part of the embodiment of the present invention, instead of all the embodiments.Based on this hair
Embodiment in bright, the every other implementation that those of ordinary skill in the art are obtained without making creative work
Example, shall fall within the protection scope of the present invention.
Fig. 1 is referred to, Fig. 1 is a kind of structure of the detection device of electric mutual inductor provided in an embodiment of the present invention, in order to
Convenient for explanation, illustrate only and the relevant part of the embodiment of the present invention.
As shown in Figure 1, a kind of detection device 100 of electric mutual inductor, including:Control unit 10, controlled voltage source 20, band
The normal voltage mutual inductance unit 30 of boosting and the normalized current mutual inductance unit 40 with up-flow.Specifically:
Control unit 10, for exporting the control signal being detected to electric mutual inductor 110, and based on the ginseng received
It examines voltage and target voltage determines the voltage error of electric mutual inductor 110, it is true based on the reference current and target current received
Determine the current error of electric mutual inductor 110.
Controlled voltage source 20 is connected with control unit 10, for according to detection control signal output first test electricity consumption and
Second test electricity consumption.
With boosting normal voltage mutual inductance unit 30, respectively with electric mutual inductor 110, control unit 10 and controlled voltage
Source 20 is connected, and the normal voltage mutual inductance unit with boosting is used for according to the first test electricity output test voltage and reference voltage,
Test voltage is used to that electric mutual inductor 110 to be made to export target voltage.
With up-flow normalized current mutual inductance unit 40, respectively with electric mutual inductor 110, control unit 10 and controlled voltage
Source 20 is connected, and the normalized current mutual inductance unit with up-flow is used to test electric current and reference current according to the second test electricity output,
Test electric current is used to that electric mutual inductor 110 to be made to export target current.
It should be noted that electric mutual inductor can be individually to be detected electronic type voltage transformer, individually tested electricity
Type current sensor, three phase combined electronic type voltage transformer or three phase combined electronic current mutual inductor.Utilizing electricity
When the detection device 100 of sub- mutual inductor tests electronic type voltage transformer, the detection device 100 of electric mutual inductor exports
Be electronic type voltage mutual inductance voltage error, using electric mutual inductor detection device 100 to electronic current mutual inductor
When being tested, what the detection device 100 of electric mutual inductor exported is the current error of electronic current mutual inductance.
In the present embodiment, test voltage is single-phase test voltage, in the process tested electric mutual inductor 110
In, being exported by the normal voltage mutual inductance unit 30 with up-flow to one or more electric mutual inductors in single-phase test voltage
110.Test electric current is single-phase test electric current, and during testing electric mutual inductor 110, single-phase test electric current passes through
Normalized current mutual inductance unit 40 with up-flow is exported to one or more electric mutual inductors 110.
In all embodiments of the application, it is defeated according to control signal that control unit 10 is additionally operable to detection controlled voltage source 20
The the first test electricity consumption and the second test electricity consumption gone out, when detecting that the first test electricity consumption is less than the first predetermined threshold value, output is new
Control signal, make the controlled voltage source 20 according to test electricity consumption of the new control signal output equal to the first predetermined threshold value;
Alternatively, when detecting that the second test electricity consumption is less than the second predetermined threshold value, new control signal is exported, makes the controlled voltage source
20 according to test electricity consumption of the new control signal output equal to the second predetermined threshold value.
Fig. 2 shows a kind of concrete structure schematic diagram of the detection device of electric mutual inductor of the embodiment of the present invention, in order to just
In explanation, illustrate only and the relevant part of the embodiment of the present invention.
As shown in Fig. 2, control unit 10 includes:Echo signal amplifying unit 11, AD conversion unit 12 and processing are single
Member 13.
Echo signal amplifying unit 11 is connected with AD conversion unit 12, and AD conversion unit 12 distinguishes connect band boosting
Normal voltage mutual inductance unit 30, the normalized current mutual inductance unit 40 with up-flow and processing unit 13, echo signal amplifying unit
11 pairs of target voltages are amplified respectively with target current, obtain amplified target voltage and amplified target current, mould
Number converting unit 12 is used to distinguish reference voltage, amplified target voltage, reference current and amplified target current
Corresponding digital signal is converted into, and is sent to processing unit 13.
As shown in Fig. 2, the normal voltage mutual inductance unit 30 with boosting includes:Boost mutual inductance unit 31 and the first amplifying unit
32。
The mutual inductance unit 31 that boosts includes input terminal 311, the first output terminal 312 and second output terminal 313, and boost mutual inductance list
The input terminal 311 of member 31 connects controlled voltage source 20, the first output terminal 312 connection electric mutual inductor of boosting mutual inductance unit 31
110, the second output terminal 313 of boosting mutual inductance unit 31 connects the first amplifying unit 32, and the output terminal of the first amplifying unit 32 connects
Connect control unit 10, boosting mutual inductance unit 31 is according to test with being electrically generated test voltage and first voltage, and pass through boosting mutual inductance
Test voltage is sent to electric mutual inductor 110 by the first output terminal 312 of unit 31, makes electric mutual inductor 110 according to test electricity
Pressure output target voltage, the first amplifying unit is sent to by the second output terminal 313 for the mutual inductance unit 31 that boosts by first voltage
32, the first amplifying unit 32 is amplified first voltage to obtain reference voltage.
As a kind of mode in the cards of the present embodiment, the first output terminal 312 of boosting mutual inductance unit 31 can include
Three wire connection terminals, for exporting the identical single-phase test voltage in three tunnels to electric mutual inductor 110, each wire connection terminal connects respectively
Connect three voltage input ends of same electric mutual inductor 110 so that the electric mutual inductor 110 is defeated according to the three tunnels test voltage
Go out three road target voltages;Or each wire connection terminal connects the voltage input end of different electric mutual inductors 110, different electricity respectively
Sub- mutual inductor 110 exports different target voltages according to test voltage respectively.
As shown in Fig. 2, the normalized current mutual inductance unit 40 with up-flow includes:Flow up mutual inductance unit 41 and the second amplifying unit
42。
It flows up mutual inductance unit 41 and includes input terminal 411, the first output terminal 412 and second output terminal 413, flow up mutual inductance list
The input terminal 411 of member 41 connects controlled voltage source 20, the first output terminal 412 connection electric mutual inductor of up-flow mutual inductance unit 41
110, the second output terminal 413 of up-flow mutual inductance unit 41 connects the second amplifying unit 42, and the output terminal of the second amplifying unit 42 connects
Connect control unit 10, up-flow mutual inductance unit 41 tests electric current and the first electric current, and pass through up-flow mutual inductance with being electrically generated according to test
Test voltage is sent to electric mutual inductor 110 by the first output terminal 412 of unit 41, makes electric mutual inductor 110 according to test electricity
Stream output target current, the second amplifying unit 42 is sent to by the second output terminal for flowing up mutual inductance unit 41 by the first electric current,
Second amplifying unit 42 is amplified to obtain reference current to the first electric current.
As a kind of mode in the cards of the present embodiment, the first output terminal 412 of up-flow mutual inductance unit 41 can include
Two wire connection terminals connect at least one electric mutual inductor 110, electronics mutual inductance between the first wire connection terminal and the second wire connection terminal
Device 110 exports target current respectively according to test electric current.
Fig. 3 shows the specific of echo signal amplifying unit in a kind of detection device of electric mutual inductor of the embodiment of the present invention
Circuit diagram.
As shown in figure 3, echo signal amplifying unit 11 includes signal amplification circuit, signal amplification circuit amplifies including signal
Device UX and connecting wire L1.
The first input end of signal amplifier UX and the first end composition echo signal amplifying unit 11 of connecting wire L1
Input terminal, the second input terminal of signal amplifier UX are connected with the output terminal of signal amplifier UX, form first node UX1, the
The output terminal of the second end composition echo signal amplifying unit 11 of one node UX1 and connecting wire L1.
Fig. 4 shows the specific of mutual inductance unit unit of boosting in a kind of detection device of electric mutual inductor of the embodiment of the present invention
Circuit diagram.
As shown in figure 4, boosting mutual inductance unit 31 includes:First transformer T1 and the second transformer T2.
The input terminal of the both ends composition boosting mutual inductance unit 31 of the armature winding of first transformer T2, time of the first transformer
Both ends of the both ends (A, X) of grade winding respectively with the armature winding of the second transformer T2 are connected, composition boosting mutual inductance unit 31
First output terminal, the second output terminal of both ends (a, x) the composition boosting mutual inductance unit 31 of the secondary windings of the second transformer T2.
Fig. 5 shows the tool of the first amplifying unit in the detection device of electric mutual inductor provided in an embodiment of the present invention a kind of
Body circuit diagram, as shown in figure 5, the first amplifying unit 32 includes:First resistor R1, second resistance R2 and the first amplifier U1.
The first end of first resistor R1 is respectively used to connect the secondary of the second transformer T1 with the first end of second resistance R2
The both ends (a, x) of winding, the second end of first resistor R1 connect the first of the first amplifier U1 altogether with the second end of second resistance R2
Input terminal, the second input terminal of the first amplifier U1 are grounded altogether with the first end of second resistance R2, the output terminal of amplifier U1 with
The second end of second resistance R2 forms the output terminal of the first amplifying unit 32.
Fig. 6 shows the tool that mutual inductance unit is flowed up in a kind of detection device of electric mutual inductor provided in an embodiment of the present invention
Body circuit diagram, as shown in fig. 6, up-flow mutual inductance unit 41 includes:Third transformer T3 and the 4th transformer T4.
The input terminal of the both ends composition up-flow mutual inductance unit 41 of the armature winding of third transformer T3, third transformer T3's
The first end of secondary windings is connected with the first end of the armature winding of the 4th transformer T4, the secondary windings of third transformer T3
First output terminal of the second end P2 composition up-flow mutual inductances unit 41 of the armature winding of second end P1 and the 4th transformer T4, the 4th
The second output terminal of both ends (K1, K2) the composition up-flow mutual inductance unit 41 of the secondary windings of transformer T4.
Fig. 7 shows the tool of the second amplifying unit in the detection device of electric mutual inductor provided in an embodiment of the present invention a kind of
Body circuit diagram, as shown in fig. 7, the second amplifying unit 42 includes:5th transformer T5,3rd resistor R3 and the second amplifier
U2。
The both ends of the armature winding of 5th transformer T5 connect respectively the secondary windings of the 4th transformer T4 both ends (K1,
K2), the first end of the armature winding of the 5th transformer T5 connects the first of the second amplifier U2 altogether with the first end of 3rd resistor R3
Input terminal, the second end of 3rd resistor R3 are connected with the output terminal of the second amplifier U2, form second node U21, the 5th transformation
The second end of the secondary windings of device T5 and the second input terminal of the second amplifier U2 are grounded altogether, form third node U22, the second section
Point U21 and third node U22 forms the output terminal of the second amplifying unit 42.
Below in conjunction with Fig. 2 to Fig. 7 to the present embodiment by a kind of electric mutual inductor detection device 100 operation principle
It is described in detail.
As shown in Fig. 2, the detection device 100 of electric mutual inductor is connected at least one electric mutual inductor 110, wherein,
During being detected to electric mutual inductor 110, control unit 10 sends control signal, controlled voltage to controlled voltage source 20
Electricity consumption is tested in source 20 according to the first test electricity consumption of control signal output and second, wherein, output the first test electricity consumption is used for band
The normal voltage mutual inductance unit 30 of boosting generates test voltage and reference voltage, and test voltage is used to make electric mutual inductor 110 defeated
Go out target voltage;Second test electricity consumption is used for the generation of normalized current mutual inductance unit 40 test electric current and reference current with up-flow,
Test electric current is used to that electric mutual inductor 110 to be made to export target current.
When controlled voltage source 20 is according to the first test electricity consumption of control signal output and the second test electricity consumption, control unit 10
Electricity consumption is tested by the first test electricity consumption of detection and the second test electricity consumption, and in the amplitude of the first test electricity consumption and/or second
When amplitude does not meet predetermined threshold value, new control signal is exported, so that the amplitude of adjustment the first test electricity consumption and/or the second survey
The amplitude for trying out electricity meets predetermined threshold value.
Normal voltage mutual inductance unit 30 with boosting is according to the first test electricity output test voltage and reference voltage, test
Voltage is used to that electric mutual inductor 110 to be made to export target voltage.As shown in figure 4, the first test electricity consumption passes through the first transformer T1's
After the both ends input of armature winding, boosted, tested to the first test electricity consumption by the secondary windings of the first transformer T1
Voltage, after the armature winding both ends of the second transformer T2 input the test voltage, by the secondary windings of the second transformer T2 to this
Test voltage carries out mutual inductance, obtains reference voltage.
As shown in Fig. 2, Fig. 4 and Fig. 5, reference voltage is sent by the secondary windings both ends (a, x) of the second transformer T2
To the first amplifying unit 32, after being amplified by the first amplifying unit 32 to reference voltage, it is sent to AD conversion unit 12.Together
When, test voltage is sent to electric mutual inductor 110 by the secondary windings of the first transformer T1, and electric mutual inductor 110 is according to this
Test voltage generates target voltage, and passes through after echo signal amplifying unit 11 is amplified, and is sent to AD conversion unit 12,
After carrying out analog-to-digital conversion to reference voltage and target voltage by AD conversion unit 12, obtain two groups of digital signals, and by this two
Group digital signal is sent to processing unit 13, and then determine electric mutual inductor based on two groups of digital signals by processing unit 13
110 voltage error.
Normalized current mutual inductance unit 40 with up-flow tests electric current and reference current, test according to the second test electricity output
Electric current is used to that electric mutual inductor 110 to be made to export target current.As shown in fig. 6, the second test electricity consumption passes through third transformer T3's
After the both ends input of armature winding, it is sensed by the part winding of the secondary windings of the first transformer T1, and together with the
The armature winding of four transformer T4 carries out Current Mutual Inductance, and electric current is tested in output, meanwhile, lead on the secondary windings of the 4th transformer T4
It crosses and Current Mutual Inductance generation reference current is carried out to test electric current.
As shown in Fig. 2, Fig. 6 and Fig. 7, the secondary windings both ends (K1, K2) of the 4th transformer T4 send reference current
It to the second amplifying unit 42, is received by the 5th transformer T5 in the second amplifying unit 42, and by the second amplifier U2 to reference
After electric current is amplified, it is sent to AD conversion unit 12.Meanwhile test the of the electric current secondary windings that passes through three transformer T3
The second end P2 of the armature winding of two end P1 and the 4th transformer T4 is sent to electric mutual inductor 110, electric mutual inductor 110
Target current is generated according to the test voltage, and passes through after echo signal amplifying unit 11 amplifies and is sent to AD conversion unit 12,
After carrying out analog-to-digital conversion to reference current and target current by AD conversion unit 12, obtain two groups of digital signals, and by this two
Group digital signal is sent to processing unit 13, and then determine electric mutual inductor based on two groups of digital signals by processing unit 13
110 current error.
Fig. 8 shows the overall plan of the present invention, as shown in figure 8, the detection device 100 of electric mutual inductor, by program-controlled electric
Voltage standard mutual inductor 3 of the potential source (1,2) with boosting, the current standard mutual inductor 4 with up-flow, accurate voltage converter 5, precision
Power pack 6, voltage-tracing and driving (7a, 7b, 7c, 7d, 7e, 7f), 8 Channel Synchronous sampling A/D converter 8, DSP controls
Device 9 forms.It can be to being individually detected electronic type voltage transformer (10a, 10b, 10c) or individually tested electronic current sensor
(11a, 11b, 11c) carries out error-detecting, and can also be formed to electronic type voltage transformer (10a, 10b, 10c) three are combined
The three phase combined electronic current of formula electronic type voltage transformer or electronic current mutual inductor (11a, 11b, 11c) composition is mutual
Sensor is detected.
Dsp controller 9 as shown in Figure 8 is exported by serial ports 1 in control instruction to the serial ports of program-controlled voltage source 1, control
1 output voltage of program-controlled voltage source drives the voltage standard mutual inductor 3 with boosting that the voltage value of program-controlled voltage source 1 is increased to one
Secondary voltage value, primary voltage are applied to tested electronic type voltage transformer (10a, 10b, 10c) and the voltage mark with boosting simultaneously
Standard potential transformer inside quasi- mutual inductor 3, with the standard potential transformer output inside the voltage standard mutual inductor 3 to boost
On accurate quadratic transformation voltage a, x to a0, x0 of the accurate voltage converter 5 of the present apparatus for 0.02%, accurate voltage transformation
Device 5 exports (Vr_1V) and is linked on the channel 1 of 8 Channel Synchronous sampling A/D converter 8, is detected electronic type voltage transformer
The secondary output (a1, x1) of (10a, 10b, 10c), (a2, x2), (a3, x3) are linked into voltage-tracing and drive the defeated of (2,4,6)
On entering, the output (V1_1V, V2_1V, V3_1V) of voltage-tracing and driving (2,4,6) is linked into the sampling A/D conversions of 8 Channel Synchronous
On the channel (4,6,8) of device, the sampling of 8 Channel Synchronous sampling A/D converter synchronized sampling channel 1, channel 4, channel 6, channel 8
Value, using channel 1 as standard channel, channel 4, channel 6, channel 8 pass through Fourier algorithm and other algorithms as tested channel
It is exactly to be detected the width of electronic type voltage transformer 10a to calculate the amplitude error of synchronized sampling channel 1 and channel 4 and phase error
It is worth error and phase error, similarly, using channel 1 as standard channel, channel 6, channel 8 pass through Fourier as tested channel
Algorithm and other algorithms calculate synchronized sampling channel 1 and channel 6, the amplitude error of channel 8 and phase error is exactly tested electricity
The amplitude error and phase error of minor voltage transformer 10b, 10c.
Dsp controller 9 as shown in Figure 8 is exported by serial ports 2 in control instruction to the serial ports of program-controlled voltage source 2, control
2 output voltage of program-controlled voltage source, it is one to drive the current standard mutual inductor 4 with up-flow that the current value of program-controlled voltage source 2 is flowed up
Primary current value, primary current are applied to terminal of tested electronic current mutual inductor (11a, 11b, 11c) and simultaneously with up-flows
Current standard mutual inductor 4 inside standard current transformer, with up-flow current standard mutual inductor 4 inside normalized current it is mutual
On the accurate quadratic transformation electric current (K1, K2) to (T0, Tx) of the precision current converter of the present apparatus for 0.02% of sensor output,
Precision current converter output (Ir_1V) is linked on the channel 2 of 8 Channel Synchronous sampling A/D converter, is detected electronic current
The secondary output (1s1,1s2) of mutual inductor (11a, 11b, 11c), (2s1,2s2), (3s1,3s2) are linked into voltage-tracing and drive
In the input of dynamic (1,3,5), it is same that the output (I1_1V, I2_1V, I3_1V) of voltage-tracing and driving (1,3,5) is linked into 8 channels
Step is sampled on the channel 3, channel 5, channel 7 of A/D converter, 8 Channel Synchronous sampling A/D converter synchronized sampling channel 2, channel
3rd, the sampled value of channel 5, channel 7, using channel 2 as standard channel, channel 3, channel 5, channel 7 pass through as tested channel
Fourier algorithm and other algorithms calculate the amplitude error of synchronized sampling channel 2 and channel 3 and phase error is exactly tested electricity
The amplitude error and phase error of type current transformer 11a, similarly, using channel 2 as standard channel, channel 5, channel 7 divide
Channel Zuo Wei be detected, by Fourier algorithm and other algorithms calculate synchronized sampling channel 2 respectively with channel 5 and channel 7
Amplitude error and phase error be exactly tested electronic current mutual inductor (11b, 11c) amplitude error and phase error.
Another object of the present invention is to provide a kind of detecting system 200 of electric mutual inductor, as shown in figure 9, electronics is mutual
The detecting system 200 of sensor includes host computer 120, further includes the detection device 100 of the electric mutual inductor in above-described embodiment.
Due to a kind of detecting system specific implementation related to the present invention of electric mutual inductor provided in the present embodiment
Mode and operation principle have elaborated in the above-described embodiments, and therefore, details are not described herein again.
As shown in figure 8, be can be to the electronic type voltage transformer of 3 10kV or 1 for one of innovative point of the present invention
Three phase combined electronic type voltage transformer realizes full automatic phase error and amplitude error calibrating.
Specially:Use program-controlled voltage source 1, the voltage standard mutual inductor 3 with boosting, accurate voltage converter 5,8 channels
Synchronized sampling A/D converter 8, dsp controller 9 realize the full-automatic calibrating to the electronic type voltage transformer of 10KV.
The electronic type voltage transformer used for the metering of 10kV generally only examines and determine 80% rated value, 100% rated value
With the amplitude error and phase error of 120% rated value, that is, with boosting voltage standard mutual inductor 3 export 8kV, 10kV,
Whether the error that tested electronic mutual inductor is detected during 12kV meets the accuracy requirement of its calibration.
Step 1, by 1 output voltage of serial ports calibrating point VSET, (inside is converted to high-voltage value A, an X, becomes for DSP controls 9
Than for 10kV/200V=50) to the output valve of program-controlled voltage source 1, the output valve of program-controlled voltage source 1 is linked into the voltage with boosting
On standard mutual inductor 3, the voltage of sub-value A, the X output about 8KV of the voltage standard mutual inductor 3 with boosting.(internal boosting
The accuracy of device Tv 31 only has 10% or so).
Step 2, sub-value A, X of the voltage standard mutual inductor 3 with boosting is accurate by internal voltage standard mutual inductor
It is transformed on secondary voltage to accurate voltage converter 5, continues the analog voltage that accurate transformation is 1V on accurate voltage converter 5
Onto the input of channel 1 of 8 Channel Synchronous sampling A/D converter 8, dsp controller 9 controls 8 Channel Synchronous to sample by SPI interface
A/D converter 8 acquires and calculates 1 voltage value VM of channel (inside is converted on high-voltage value A, an X), if output is primary
Voltage meets 8kV ± 1%, enters step 3, otherwise, is adjusted to:VSETi=VSETi-1-(VM-VSETi-1), wherein VSETiFor this
The reset value of secondary calibrating point VSET, VSETi-1Point VSET setting values were examined and determine for last time.
Continue the voltage value of the channel 1 of measurement 8 Channel Synchronous sampling A/D converter 8, then judge whether to meet 8kV ± 1%
Requirement after meeting the requirements, enter step 3.
Step 3, dsp controller 9 is according to channel 1 and channel 4 (the corresponding tested electronic type voltage transformer sampled
10a), channel 6 (corresponding tested electronic type voltage transformer 10b), channel 8 (corresponding tested electronic type voltage transformer 10c)
Sampled value calculates the amplitude error of tested electronic type voltage transformer 10a, 10b, 10c by Fourier algorithm and other algorithms
And phase error, and the test data of this calibrating point is preserved, if not being that the last one is cautious, step 1 is returned to, otherwise enters step
Rapid 4.
Step 4, verification result is printed.
One of innovative point of the present invention is can be three phase combined to the electronic current mutual inductor of 3 1000A or 1
Electronic current mutual inductor realize full automatic phase error and amplitude error calibrating.
Specially:Use program-controlled voltage source 2, the current standard mutual inductor 4 with up-flow, precision current converter 6,8 channels
Synchronized sampling A/D converter 8, dsp controller 9 realize the full-automatic calibrating to the electronic current mutual inductor of 1000A.
The current transformer used for the metering of 1000A generally only examines and determine 5% rated value, 20% rated value, 100% volume
The amplitude error and phase error of definite value and 120% rated value, that is, the output of the current standard mutual inductor 4 with up-flow 50A,
Whether the error that tested electronic mutual inductor is detected when 100A, 1000A, 1200A meets the accuracy requirement of its calibration.
Step 1, by the output calibrating point of serial ports 2 ISET, (inside is converted to primary current value P1, P2, no-load voltage ratio for DSP controls 9
For 1000A/5A=200) to the output valve of program-controlled voltage source 2, the output valve of program-controlled voltage source 2 is linked into the electric current mark with up-flow
On quasi- mutual inductor 4, the electric current of sub-value P1, the P2 output about 1000A of the current standard mutual inductor 4 with up-flow.
Step 2, sub-value P1, P2 of the current standard mutual inductor 4 with up-flow passes through internal current standard mutual inductor essence
It is really transformed on secondary current to precision current converter 6, the electric current accurate transformation for continuing handle on precision current parallel operation 6 is 1V's
On analog voltage to the input of channel 2 of 8 Channel Synchronous sampling A/D converter 8, dsp controller 9 controls 8 channels by SPI interface
Synchronized sampling A/D converter 8 acquires and calculates 2 voltage value IM of channel (inside is converted in flow valuve P1, P2), if it is defeated
The primary voltage gone out meets 50A ± 1%, enters step 3, otherwise, is adjusted to:ISETi=ISETi-1-(IM-ISETi-1), wherein
ISETiFor this calibrating point ISET reset value, ISETi-1Point ISET setting values were examined and determine for last time to continue to measure 8 Channel Synchronous
The current value of the channel 2 of A/D converter 8 is sampled, then judges whether the requirement for meeting 50A ± 1%, after meeting the requirements, into
Enter step 3.
Step 3, dsp controller 9 is according to channel 2 and channel 3 (the corresponding tested electronic current mutual inductor sampled
11a), channel 5 (corresponding tested electronic type voltage transformer 11b), channel 7 (corresponding tested electronic current mutual inductor 11c)
Sampled value calculates the amplitude error of tested electronic type voltage transformer 11a, 11b, 11c by Fourier algorithm and other algorithms
With phase error and the test data of this calibrating point is preserved, if not being that the last one is cautious, step 1 is returned to, otherwise enters step
Rapid 4.
Step 4, verification result is printed.
The detection device and detecting system of a kind of electric mutual inductor provided by the invention are exported by control unit to electronics
The control signal that mutual inductor is detected, and determine based on the reference voltage and target voltage received the voltage of electric mutual inductor
Error is determined the current error of electric mutual inductor based on the reference current and target current received, utilizes controlled voltage source root
According to detection the first test electricity consumption of control signal output and the second test electricity consumption, by the normal voltage mutual inductance unit that band boosts according to the
One test electricity output test voltage and reference voltage, test voltage are risen for electric mutual inductor to be made to export target voltage by band
The normalized current mutual inductance unit of stream tests electric current and reference current according to test electricity output, and test electric current is used to make electronics
Mutual inductor exports target current so that during testing electric mutual inductor, without manual debugging, improves to electricity
The testing efficiency of sub- mutual inductor.
Unit in terminal of the embodiment of the present invention can be combined, divided and deleted according to actual needs.
More than, only specific embodiment of the invention, but protection scope of the present invention is not limited thereto is any to be familiar with
Those skilled in the art in the technical scope disclosed by the present invention, can readily occur in various equivalent modifications or substitutions,
These modifications or substitutions should be covered by the protection scope of the present invention.Therefore, protection scope of the present invention should be wanted with right
Subject to the protection domain asked.
Claims (10)
1. a kind of detection device of electric mutual inductor, which is characterized in that the detection device includes:
Control unit, for exporting the control signal that is detected to electric mutual inductor, and based on the reference voltage received and
Target voltage determines the voltage error of the electric mutual inductor, and the electricity is determined based on the reference current and target current received
The current error of sub- mutual inductor;
Controlled voltage source is connected with described control unit, for according to the control signal output the first test electricity consumption and second
Test electricity consumption;
With boosting normal voltage mutual inductance unit, respectively with the electric mutual inductor, described control unit and the controlled electricity
Potential source is connected, and the normal voltage mutual inductance unit of the band boosting is used for according to the first test the electricity output test voltage and institute
Reference voltage is stated, the test voltage is used to that the electric mutual inductor to be made to export the target voltage;
With up-flow normalized current mutual inductance unit, respectively with the electric mutual inductor, described control unit and the controlled electricity
Potential source is connected, and the normalized current mutual inductance unit of the band up-flow is used to test electric current and institute according to second test electricity output
Reference current is stated, the test electric current is used to that the electric mutual inductor to be made to export the target current.
2. detection device as described in claim 1, which is characterized in that described control unit includes:Echo signal amplifying unit,
AD conversion unit and processing unit;
The echo signal amplifying unit is connected with the AD conversion unit, and the AD conversion unit connects the band respectively
The normal voltage mutual inductance unit of boosting, the normalized current mutual inductance unit of band up-flow and the processing unit, the target
Signal amplification unit amplifies the target voltage and the target current respectively, obtains amplified target voltage with putting
Target current after big, the AD conversion unit are used for the reference voltage, the amplified target voltage, the ginseng
It examines electric current and the amplified target current is converted into corresponding digital signal, and be sent to the processing unit respectively.
3. detection device as claimed in claim 2, which is characterized in that the echo signal amplifying unit includes signal amplification electricity
Road, the signal amplification circuit include signal amplifier and connecting wire;
The first input end of the signal amplifier and the first end of the connecting wire form the echo signal amplifying unit
Input terminal, the second input terminal of the signal amplifier is connected with the output terminal of the signal amplifier, forms first node,
The second end of the first node and the connecting wire forms the output terminal of the echo signal amplifying unit.
4. detection device as described in claim 1, which is characterized in that the normal voltage mutual inductance unit of the band boosting includes:
Boost mutual inductance unit and the first amplifying unit;
The boosting mutual inductance unit includes input terminal, the first output terminal and second output terminal, the defeated of mutual inductance unit that boost
Enter end and connect the controlled voltage source, the first output terminal of the boosting mutual inductance unit connects the electric mutual inductor, the liter
The second output terminal of mutual inductance unit is pressed to connect first amplifying unit, the output terminal of first amplifying unit connects the control
Unit processed, the boosting mutual inductance unit according to the test with being electrically generated the test voltage and first voltage, and described in passing through
Boost mutual inductance unit the first output terminal by the test voltage be sent to it is described state electric mutual inductor, make the electric mutual inductor
Target voltage is exported according to the test voltage, is sent out the first voltage by the second output terminal of the boosting mutual inductance unit
It send to first amplifying unit, first amplifying unit is amplified the first voltage to obtain the reference voltage.
5. detection device as described in claim 1, which is characterized in that the normalized current mutual inductance unit of the band up-flow includes:
Flow up mutual inductance unit and the second amplifying unit;
The up-flow mutual inductance unit includes input terminal, the first output terminal and second output terminal, described to flow up the defeated of mutual inductance unit
Enter end and connect the controlled voltage source, the first output terminal of the up-flow mutual inductance unit connects the electric mutual inductor, the liter
The second output terminal for flowing mutual inductance unit connects second amplifying unit, and the output terminal of second amplifying unit connects the control
Unit processed, the up-flow mutual inductance unit according to the test with being electrically generated the test electric current and the first electric current, and described in passing through
The test voltage is sent to the electric mutual inductor by the first output terminal of up-flow mutual inductance unit, makes the electric mutual inductor root
According to the test electric current output target current, first electric current is sent by the second output terminal of the up-flow mutual inductance unit
To second amplifying unit, second amplifying unit is amplified to obtain the reference current to first electric current.
6. detection device as claimed in claim 4, which is characterized in that the boosting mutual inductance unit includes:First transformer and
Second transformer;
The input terminal of the both ends composition boosting mutual inductance unit of the armature winding of first transformer, first transformer
Both ends of the both ends respectively with the armature winding of second transformer of secondary windings be connected, form the boosting mutual inductance unit
The first output terminal, the secondary windings of second transformer both ends composition it is described boosting mutual inductance unit second output terminal.
7. detection device as claimed in claim 6, which is characterized in that first amplifying unit includes:First resistor, second
Resistance and the first amplifier;
The first end of the first resistor is respectively used to connect time of second transformer with the first end of the second resistance
The both ends of grade winding, the second end of the second end of the first resistor and the second resistance connect the of first amplifier altogether
One input terminal, the second input terminal of first amplifier are grounded altogether with the first end of the second resistance, the amplifier
The second end of output terminal and the second resistance is used to form the output terminal of first amplifying unit.
8. detection device as claimed in claim 5, which is characterized in that the up-flow mutual inductance unit includes:Third transformer and
4th transformer;
The input terminal of the both ends composition up-flow mutual inductance unit of the armature winding of the third transformer, the third transformer
The first end of secondary windings be connected with the first end of the armature winding of the 4th transformer, the secondary of the third transformer
The second end of winding and the first output of the second end composition up-flow mutual inductance unit of the armature winding of the 4th transformer
End, the second output terminal of the both ends composition up-flow mutual inductance unit of the secondary windings of the 4th transformer.
9. detection device as claimed in claim 8, which is characterized in that second amplifying unit includes:5th transformer,
Three resistance and the second amplifier;
The both ends of the armature winding of 5th transformer connect the both ends of the secondary windings of the 4th transformer respectively, described
It is first defeated to connect second amplifier altogether for the first end of the secondary windings of 5th transformer and the first end of the 3rd resistor
Enter end, the second end of the 3rd resistor is connected with the output terminal of second amplifier, forms second node, and the described 5th becomes
The second end of the secondary windings of depressor and the second input terminal of second amplifier are grounded altogether, form third node, and described the
Two nodes form the output terminal of second amplifying unit with the third node.
10. a kind of detecting system of electric mutual inductor, including host computer, which is characterized in that the detecting system is further included such as power
Profit requires the detection device of 1 to 9 any one of them electric mutual inductor.
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Citations (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102053235A (en) * | 2010-10-21 | 2011-05-11 | 中国南方电网有限责任公司超高压输电公司柳州局 | On-site steady-state accuracy verification system for electronic current transformer and verification method thereof |
CN202013414U (en) * | 2010-04-15 | 2011-10-19 | 秦皇岛开发区海纳电测仪器有限责任公司 | Integral calibrating apparatus of three-phase combination instrument transformer based on electron source |
CN102854488A (en) * | 2012-08-26 | 2013-01-02 | 江西省电力科学研究院 | Integral detection method of intelligent substation electric energy metering device |
CN202916434U (en) * | 2012-11-20 | 2013-05-01 | 深圳市星龙科技有限公司 | Calibration device for current transformer |
DE102012105046A1 (en) * | 2012-06-12 | 2013-12-12 | Maschinenfabrik Reinhausen Gmbh | Reference measuring system for calibrating a power measuring system for power transformers |
CN203519813U (en) * | 2013-10-17 | 2014-04-02 | 国家电网公司 | Standard device for error calibration of electronic-voltage-transformer analog small signal |
CN103913715A (en) * | 2014-04-23 | 2014-07-09 | 国家电网公司 | High voltage metering box error verification system and error verification method |
CN204945357U (en) * | 2015-07-22 | 2016-01-06 | 上海电气输配电试验中心有限公司 | A kind of electronic mutual inductor steady state error measuring means |
CN205720627U (en) * | 2016-04-13 | 2016-11-23 | 太原山互科技有限公司 | Numeral partial pressure type mutual inductor tester whole body assay device |
CN206832977U (en) * | 2017-06-25 | 2018-01-02 | 山西省机电设计研究院 | Electronic mutual inductor verification system |
CN207937587U (en) * | 2018-01-26 | 2018-10-02 | 黄建钟 | A kind of detection device and detecting system of electric mutual inductor |
-
2018
- 2018-01-26 CN CN201810078164.4A patent/CN108241138B/en active Active
Patent Citations (11)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN202013414U (en) * | 2010-04-15 | 2011-10-19 | 秦皇岛开发区海纳电测仪器有限责任公司 | Integral calibrating apparatus of three-phase combination instrument transformer based on electron source |
CN102053235A (en) * | 2010-10-21 | 2011-05-11 | 中国南方电网有限责任公司超高压输电公司柳州局 | On-site steady-state accuracy verification system for electronic current transformer and verification method thereof |
DE102012105046A1 (en) * | 2012-06-12 | 2013-12-12 | Maschinenfabrik Reinhausen Gmbh | Reference measuring system for calibrating a power measuring system for power transformers |
CN102854488A (en) * | 2012-08-26 | 2013-01-02 | 江西省电力科学研究院 | Integral detection method of intelligent substation electric energy metering device |
CN202916434U (en) * | 2012-11-20 | 2013-05-01 | 深圳市星龙科技有限公司 | Calibration device for current transformer |
CN203519813U (en) * | 2013-10-17 | 2014-04-02 | 国家电网公司 | Standard device for error calibration of electronic-voltage-transformer analog small signal |
CN103913715A (en) * | 2014-04-23 | 2014-07-09 | 国家电网公司 | High voltage metering box error verification system and error verification method |
CN204945357U (en) * | 2015-07-22 | 2016-01-06 | 上海电气输配电试验中心有限公司 | A kind of electronic mutual inductor steady state error measuring means |
CN205720627U (en) * | 2016-04-13 | 2016-11-23 | 太原山互科技有限公司 | Numeral partial pressure type mutual inductor tester whole body assay device |
CN206832977U (en) * | 2017-06-25 | 2018-01-02 | 山西省机电设计研究院 | Electronic mutual inductor verification system |
CN207937587U (en) * | 2018-01-26 | 2018-10-02 | 黄建钟 | A kind of detection device and detecting system of electric mutual inductor |
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