CN109814011A - Direct-current power distribution system and ground insulation fault detection method thereof - Google Patents
Direct-current power distribution system and ground insulation fault detection method thereof Download PDFInfo
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- CN109814011A CN109814011A CN201910040862.XA CN201910040862A CN109814011A CN 109814011 A CN109814011 A CN 109814011A CN 201910040862 A CN201910040862 A CN 201910040862A CN 109814011 A CN109814011 A CN 109814011A
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- 238000001514 detection method Methods 0.000 title claims abstract description 68
- 238000009413 insulation Methods 0.000 title claims abstract description 44
- 238000012360 testing method Methods 0.000 claims description 19
- 238000004891 communication Methods 0.000 claims description 3
- 230000005540 biological transmission Effects 0.000 claims description 2
- 238000000034 method Methods 0.000 abstract description 9
- 230000008569 process Effects 0.000 abstract description 6
- 238000010408 sweeping Methods 0.000 abstract 1
- 238000012544 monitoring process Methods 0.000 description 5
- 230000009471 action Effects 0.000 description 3
- 230000004888 barrier function Effects 0.000 description 3
- 230000005611 electricity Effects 0.000 description 3
- 230000005284 excitation Effects 0.000 description 2
- 238000007689 inspection Methods 0.000 description 2
- 239000003990 capacitor Substances 0.000 description 1
- 230000015556 catabolic process Effects 0.000 description 1
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Abstract
The application provides a direct current power distribution system and a ground insulation fault detection method thereof. The direct current distribution system comprises a main power distribution cabinet, N subordinate power distribution devices, a main controller, a plurality of sub-controllers and a plurality of circuit breakers. And when the Mth subordinate power distribution equipment starts self-checking work, the Mth sub-controller sends a frequency sweeping signal. When the Mth sub-controller detects that the current subordinate distribution equipment has a fault, the circuit breaker is controlled to further control the fault circuit in the fault equipment to be broken, and the influence of the fault circuit on the continuous power supply of the direct current distribution system or the work of detecting whether other circuits have insulation faults to the ground is eliminated. When the frequency sweep signal is low frequency, the influence of the line or equipment on the ground capacitance in the detection process can be reduced. When the frequency sweep signal is high frequency, the insulation fault of a local line or equipment to the ground can be detected more accurately, and the influence of other positions on the insulation impedance to the ground is reduced.
Description
Technical field
This application involves field of power systems, more particularly to a kind of direct-flow distribution system and its insulation against ground fault detection
Method.
Background technique
Direct-flow distribution system may be because that insulation breakdown brings huge security risk, cause the electrical peace such as electric shock and fire
Full accident, therefore prevented frequently with insulated monitoring method.It is traditional since direct current distribution system all links together
Insulated monitoring method is difficult that the position of insulation damages is accurately positioned and faulty line route selection is cut off with protection.
In order to improve the reliability and accuracy of direct current distribution system Insulation monitoring, traditional scheme often utilizes impressed current
Driving source is detected.When being detected using current excitation source, the fault point remoter from the current excitation source position, to exhausted
The influence of edge monitoring is smaller.But ac-excited source can generate certain influence to the power quality of normal power supply, while also more
It is easy to be influenced by distribution capacity over the ground and generate mistake.
Summary of the invention
Based on this, it is necessary to be easy to be influenced that failure can not be carried out by distribution capacity over the ground for ac-excited source
Accurate positionin problem provides a kind of direct-flow distribution system and its insulation against ground fault detection method.
A kind of direct-flow distribution system insulation against ground fault detection method, comprising:
The direct-flow distribution system includes main distribution cabinet and N number of junior's controller switching equipment;
The main distribution cabinet includes master controller;
Each junior's controller switching equipment includes a sub-controller, breaker and a plurality of route, and the N is more than or equal to 1
Positive integer;
The detection method includes:
The master controller successively sends sense command to N number of junior's controller switching equipment;
When m-th sub-controller receives the sense command, the m-th sub-controller sends ac-excited letter
Number, the ac-excited signal is swept-frequency signal, and the M is integer, and 1≤M≤N;
Sub-controller described in the m-th judge each route in m-th junior controller switching equipment electric current whether
Greater than the second pre-set current value;
When the electric current at least one route is greater than the second pre-set current value, the m-th sub-controller is to the master
Controller sends the detection information of the m-th junior controller switching equipment insulation against ground failure;
The m-th sub-controller sends break signal to breaker;
After the breaker receives the break signal, open circuit is carried out to faulty line.
The detection method in one of the embodiments, further include:
When the electric current in all routes is respectively less than or is equal to second pre-set current value, the control of son described in the m-th
Device processed sends the normal detection information of m-th junior controller switching equipment to master controller.
The detection method in one of the embodiments, further include:
When the master controller receives the m-th junior controller switching equipment of the feedback of sub-controller described in the m-th
When insulation against ground failure or the normal detection information of m-th junior controller switching equipment, the master controller is to the M+1 son control
Device processed sends sense command, until n-th sub-controller completes detection work.
The master controller successively sends sense command to N number of junior's controller switching equipment in one of the embodiments,
The step of, comprising:
Each sub-controller presets a voltage value being not mutually equal;
The master controller successively sends different voltage signals;
When a sub-controller in the multiple sub-controller receives the voltage equal with its preset voltage value
When signal, current junior's controller switching equipment starts to carry out self-test work.
The range of the swept-frequency signal is 0Hz-100KHz in one of the embodiments,.
Detection life successively is sent to N number of junior's controller switching equipment in the master controller in one of the embodiments,
Before order, further includes:
Whether the current value that the detection unit detects the direct-flow distribution system is greater than the first pre-set current value, the inspection
It surveys unit and is set to the main distribution cabinet, the master controller and the detection unit communicate to connect;
When the current value of the direct-flow distribution system is greater than the first pre-set current value, the master controller is to the multiple
Junior's controller switching equipment successively sends sense command.
Include: in one of the embodiments,
Main distribution cabinet;
N number of junior's controller switching equipment, each junior's controller switching equipment are electrically connected with the main distribution cabinet, each junior's distribution
Equipment includes a plurality of route;
Master controller is set to the main distribution cabinet, successively sends sense command to the multiple junior's controller switching equipment;
N number of sub-controller, a sub-controller are correspondingly arranged in junior's controller switching equipment, N number of sub- control
Device is communicated to connect with the master controller respectively, starts to carry out self-test work for controlling current junior's controller switching equipment, and
By the m-th junior controller switching equipment insulation against ground failure or the normal detection information feedback of m-th junior controller switching equipment
To the master controller, described N, M are integer, and N >=1,1≤M≤N;And
Multiple breakers are arranged a breaker on every route in a plurality of route, are located at the same institute
The breaker in junior's controller switching equipment and sub-controller communication connection are stated, for disengagement failure route and the direct current
The electrical connection of distribution system.
In one of the embodiments, further include:
Alarm, is set to the main distribution cabinet, and communicates to connect with the master controller, when detecting the L articles route
When being electrically connected for faulty line and being cut off with the direct-flow distribution system, alarm described in the main controller controls is reported
It is alert.
In one of the embodiments, further include:
Display, is set to the main distribution cabinet, and communicates to connect with the master controller, when detecting the L articles route
When being electrically connected for faulty line and being cut off with the direct-flow distribution system, display described in the main controller controls is shown pair
Earth fault detection information.
In one of the embodiments, further include:
Detection unit, with the master controller communicate to connect, for detect the direct-flow distribution system whether failure.
The application provides a kind of direct-flow distribution system and its insulation against ground fault detection method.The direct-flow distribution system packet
Include main distribution cabinet and N number of junior's controller switching equipment.The main distribution cabinet is electrically connected with N number of junior's controller switching equipment.Each junior
Controller switching equipment includes multiple sub-controllers, multiple breakers and a plurality of route.The direct-flow distribution system further includes master controller
And multiple sub-controllers.The master controller is set to the main distribution cabinet, for successively setting to the multiple junior's distribution
Preparation send sense command.The multiple sub-controller is set to the multiple junior's controller switching equipment.Specifically, each junior's distribution
One sub-controller is set in equipment.The multiple sub-controller and the master controller communicate to connect, for controlling described work as
Front lower grade controller switching equipment starts to carry out self-test work.When m-th junior controller switching equipment starts to carry out self-test work, m-th
Controller sends ac-excited signal.The ac-excited signal is swept-frequency signal, is for detecting current junior's controller switching equipment
No failure.Swept-frequency signal is divided into low frequency signal and high-frequency signal.When the m-th sub-controller detects that current junior's distribution is set
When for being faulty equipment, the m-th sub-controller controls the event in the faulty equipment by controlling the breaker
Hinder line broken circuit.Anti- faulty line here continues the DC power-supply system to power or detect whether that there are also All other routes to occur
The influence of the work of insulation against ground failure.Route in detection process can be reduced when the ac-excited signal is low frequency or is set
The influence of standby direct-to-ground capacitance, and a biggish range can be determined to local line or equipment fault to ground.When the exchange swashs
When to encourage signal be high-frequency, since line inductance is to the barrier action of AC signal, can more accurately detect local line or
Equipment insulation against ground failure reduces the influence of other positions ground insulation resistance.
Detailed description of the invention
Fig. 1 is a kind of direct-flow distribution system insulation against ground fault detection method process that the application one embodiment provides
Figure;
Fig. 2 is a kind of direct-flow distribution system insulation against ground fault detection method process that the application one embodiment provides
Figure;
Fig. 3 is the voltage signal that sends of the master controller that provides of the application one embodiment and different junior's controller switching equipments pair
The corresponding relationship of ground Insulation monitoring;
Fig. 4 is a kind of direct-flow distribution system structure connection figure that the application one embodiment provides;
Fig. 5 is a kind of direct-flow distribution system structure connection figure that the application one embodiment provides.
Main Reference element numbers
Direct-flow distribution system 100
Main distribution cabinet 10
Junior's controller switching equipment 20
Master controller 110
Detection unit 120
Sub-controller 210
Breaker 230
Alarm 240
Display 250
Specific embodiment
In order to which the objects, technical solutions and advantages of the application are more clearly understood, by the following examples, and combine attached
A kind of direct-flow distribution system and its insulation against ground fault detection method of the application is further elaborated in figure.It should
Understand, specific embodiment described herein only to explain the application, is not used to limit the application.
Referring to Figure 1, a kind of direct-flow distribution system insulation against ground fault detection method is provided in the application one embodiment.
The direct-flow distribution system 100 includes main distribution cabinet 10 and N number of junior's controller switching equipment 20.The main distribution cabinet 10 and N number of junior
Controller switching equipment 20 is electrically connected.The main distribution cabinet 10 includes master controller 110.Each junior's controller switching equipment 20 includes one
Sub-controller 210 and a plurality of route.The N is the positive integer more than or equal to 1.The detection method includes:
S100, the master controller 110 successively send sense command to N number of junior's controller switching equipment 20.
In step S100, the master controller 110 can be microcontroller or control circuit, as long as can control described N number of
Junior's controller switching equipment 20 successively carries out self-test work.Junior's controller switching equipment 20 can set for switchgear or other electricity consumptions
It is standby.
S200, when m-th sub-controller 210 receives the sense command, the m-th sub-controller 210 is sent
Ac-excited signal.The ac-excited signal is swept-frequency signal.The M is integer, and 1≤M≤N.
In step S200, after the master controller 110 sends sense command to m-th, and m-th is controlled
After device 210 receives the order.The m-th sub-controller 210 starts every into junior's controller switching equipment 20 at place
The ac-excited signal of frequency sweep mode is sent in route.The range of the swept-frequency signal is 0Hz-100KHz.The swept-frequency signal
Including low frequency signal and high-frequency signal.The range of the low frequency signal is 0Hz-10KHz, and the range of the high-frequency signal is
10KHz-100KHz。
S300, sub-controller 210 described in the m-th judge each route in m-th junior controller switching equipment 20
Electric current whether be greater than the second pre-set current value.
In step S300, the sub-controller 210 has judging unit, every route that the judging unit will test
Current value be compared with pre-set current value, to judge whether current line occurs insulation against ground failure.Described second is default
Current value is the boundary value that electric current when insulation against ground failure does not occur.
S400, when the electric current at least one route is greater than the second pre-set current value, the m-th sub-controller 210
The detection information of 20 insulation against ground failure of m-th junior controller switching equipment is sent to the master controller 110.
In step S400, when the electric current at least one route is greater than the second pre-set current value, the judging unit is
It can determine whether that insulation against ground failure occurs for current junior's controller switching equipment 20.And the current sub-controller 210 is to the master
Controller 110 sends the detection information of the 20 insulation against ground failure of current junior's controller switching equipment.
S500, when the electric current in all routes is respectively less than or is equal to second pre-set current value, described in the m-th
Sub-controller 210 sends the normal detection information of m-th junior controller switching equipment 20 to master controller 110.
In step S500, sub-controller 210 described in the m-th sends m-th junior distribution to master controller 110
After the normal detection information of equipment 20, m-th junior controller switching equipment 20 is operated normally.
S600, when under the m-th that the master controller 110 receives the feedback of sub-controller 210 described in the m-th
When grade 20 insulation against ground failure of controller switching equipment or the m-th junior 20 normal detection information of controller switching equipment, the main control
Device 110 sends sense command to the M+1 sub-controller 210, until n-th sub-controller 210 completes detection work.
In step S600, after m-th junior controller switching equipment 20 completes detection work, m-th junior controller switching equipment
20 safe condition do not influence the master controller 110 control other junior's controller switching equipments 20 not detected continue from
Detect work.
In the present embodiment, when m-th junior controller switching equipment 20 starts to carry out self-test work, m-th sub-controller 210 is sent out
Deliver stream pumping signal.The ac-excited signal is swept-frequency signal, for detect current junior's controller switching equipment 20 whether failure.
Swept-frequency signal is divided into low frequency signal and high-frequency signal.Detection process middle line can be reduced when the ac-excited signal is low frequency
The influence of road or equipment direct-to-ground capacitance, and a biggish range can be determined to local line or equipment fault to ground.When described
When ac-excited signal is high-frequency, since line inductance is to the barrier action of AC signal, local can be more accurately detected
Route or equipment insulation against ground failure reduce the influence of other positions ground insulation resistance.
Fig. 2 and Fig. 3 are referred to, in one embodiment, in S100, the master controller 110 is successively to N number of junior
Include: before controller switching equipment 20 sends the step of sense command and in step
Whether S10, the current value that the detection unit 120 detects the direct-flow distribution system 100 are greater than the first default electricity
Flow valuve.
In step S10, the detection unit 120 is set to the main distribution cabinet 10.The master controller 110 and the inspection
Unit 120 is surveyed to communicate to connect.First pre-set current value is that there is no insulation against ground failures for the direct-flow distribution system 100
When electric current boundary value.
S20, when the current value of the direct-flow distribution system 100 is greater than the first pre-set current value, each sub-controller 210
In preset a voltage value being not mutually equal.
In step S20, each preset voltage value is corresponding with the sense command.Only when the master controller
110 when sending equal with preset voltage value voltage signal, and junior's controller switching equipment 20 could start self-test and work.
S30, the master controller 110 successively send different voltage signals.
In step S30, it is arranged in the voltage signal and junior's controller switching equipment 20 that the master controller 110 is successively sent
Voltage threshold correspond.After junior's controller switching equipment 20 completes self-test work, the master controller 110 is sent
Next voltage signal opens self-test work to control next junior's controller switching equipment 20.
S40, when a sub-controller 210 in the multiple sub-controller 210 receives and its preset voltage value
When equal voltage signal, current junior's controller switching equipment 20 starts to carry out self-test work.
In step S40, the master controller 110 is by way of successively sending different voltage signals and then controls each
Junior's controller switching equipment 20 carries out self-test work in different periods.
In the present embodiment, the detection method controls oneself of junior's controller switching equipment 20 by classification transmission voltage signal
Examine the unlatching of work.When junior's controller switching equipment 20 is not received by the voltage signal, junior's controller switching equipment 20
It is standby.On the one hand the mode of hierarchical detection improves the accuracy of fault location, on the other hand reduce to electric energy
The influence of quality and reduce working loss.
In one embodiment, when the m-th sub-controller 210 is sent under the m-th to the master controller 110
After the detection information of grade 20 insulation against ground failure of controller switching equipment, further includes:
S700, the m-th sub-controller 210 send break signal to breaker 230.
In step S700, the breaker 230 is set as multiple.Each breaker 230 is correspondingly arranged in described more
Every route in route.The breaker 230 and the sub- control in same junior's controller switching equipment 20
Device 210 communicates to connect.
S800 after the breaker 230 receives the break signal, carries out open circuit to faulty line.
In step S800, when the breaker 230 carries out open circuit to the faulty line, the master controller 110
It can control and alarm the faulty line, work at present personnel is prompted to repair the faulty line.
In the present embodiment, the detection method further includes carrying out open circuit to the faulty line by breaker.Prevent here
Route continues the DC power-supply system 100 to power or detect whether that there are also the work that insulation against ground failure occurs for All other routes
Influence.
Fig. 4 is referred to, a kind of direct-flow distribution system 100 is provided in the application one embodiment.The direct-flow distribution system
100 include: main distribution cabinet 10, N number of junior's controller switching equipment 20, master controller 110 and N number of sub-controller 210.
The main distribution cabinet 10 is for providing electric energy.The main distribution cabinet 10 is electrically connected respectively with each junior's controller switching equipment 20
It connects.Each junior's controller switching equipment 20 includes a plurality of route.The master controller 110 is set to the main distribution cabinet 10, for
The multiple junior's controller switching equipment successively sends sense command.The master controller 110 can be microcontroller or control circuit,
As long as can control N number of junior's controller switching equipment 20 successively carries out self-test work.Junior's controller switching equipment 20 can be
Switchgear or other electrical equipments.
A sub-controller 210 in N number of sub-controller 210 is correspondingly arranged in junior's controller switching equipment
20.N number of sub-controller 210 is communicated to connect with the master controller 110 respectively.N number of sub-controller 210 is for controlling
Current junior's controller switching equipment 20 starts to carry out self-test work.When m-th junior controller switching equipment 20 starts to carry out self-test work
When, the m-th sub-controller 210 starts to send frequency sweep mode in every route into junior's controller switching equipment 20 at place
Ac-excited signal.The range of the swept-frequency signal is 0Hz-100KHz.The swept-frequency signal includes low frequency signal and high frequency letter
Number.The range of the low frequency signal is 0Hz-10KHz, and the range of the high-frequency signal is 10KHz-100KHz.N number of sub- control
Device 210 processed is also used to 20 insulation against ground failure of m-th junior controller switching equipment or m-th junior controller switching equipment 20 just
Normal detection information feeds back to the master controller 110.Described N, M are integer, and N >=1,1≤M≤N.
In the present embodiment, the direct-flow distribution system 100 includes main distribution cabinet 10 and N number of junior's controller switching equipment 20.It is described
Main distribution cabinet 10 is electrically connected with N number of junior's controller switching equipment 20.Each junior's controller switching equipment 20 includes a plurality of route.It is described straight
Flowing distribution system 100 further includes master controller 110 and multiple sub-controllers 210.The master controller 110 is set to the master and matches
Electric cabinet 10, for successively sending sense command to the multiple junior's controller switching equipment 20.The multiple sub-controller 210 is set to
The multiple junior's controller switching equipment 20.Specifically, a sub-controller 210 is arranged in each junior's controller switching equipment 20.It is described more
A sub-controller 210 is communicated to connect with the master controller 110, for control current junior's controller switching equipment 210 start into
Row self-test work.When m-th junior controller switching equipment 210 starts to carry out self-test work, m-th sub-controller sends ac-excited
Signal.The ac-excited signal is swept-frequency signal, for detect current junior's controller switching equipment 20 whether failure.Swept-frequency signal point
For low frequency signal and high-frequency signal.Route or equipment pair in detection process can be reduced when the ac-excited signal is low frequency
The influence of ground capacitor, and a biggish range can be determined to local line or equipment fault to ground.When the ac-excited letter
Number be high-frequency when, since line inductance is to the barrier action of AC signal, can more accurately detect local line or equipment
Insulation against ground failure reduces the influence of other positions ground insulation resistance.
Fig. 5 is referred to, in one embodiment, the direct-flow distribution system 100 further include: multiple breakers 230, alarm
Device 240, display 250 and detection unit 120.
The detection unit 120 is communicated to connect with the master controller 110, for detecting the direct-flow distribution system 100
Whether failure.One breaker 230 is set on every route in a plurality of route.Positioned at the same lower gradation
The breaker 230 and the sub-controller 210 in electric equipment 20 communicate to connect, for disengagement failure route and the direct current
The electrical connection of distribution system 100.The alarm 240 is set to the main distribution cabinet 10.And the alarm 240 and the master
Controller 110 communicates to connect.When detecting that the L articles route be faulty line and be cut off and 100 electricity of the direct-flow distribution system
When connection, the master controller 110 controls the alarm 240 and alarms.The alarm 240 can be buzzer siren
Or LED flashing lamp alarm.The display 250 is set to the main distribution cabinet 10, and communicates with the master controller 110
Connection.When detect the L articles route be faulty line and be cut off be electrically connected with the direct-flow distribution system 100 when, the master
Controller 110 controls the display 250 and shows fault to ground detection information.The information that the specific display 250 is shown
It can be which route in which junior's controller switching equipment 20 be faulty line.
In the present embodiment, the direct-flow distribution system 100 detects the direct-flow distribution system by the detection unit 120
It whether there is insulation against ground failure in 100.When detecting faulty line, the direct-flow distribution system 100 passes through the breaker
230 pairs of faulty lines carry out open circuit, and anti-route here continues the DC power-supply system 100 to power or detect whether that there are also it
The influence of the work of insulation against ground failure occurs for his route.And it is notified currently by the alarm 240 and the display 250
Faulty line described in staff overhauls.
Each technical characteristic of embodiment described above can be combined arbitrarily, for simplicity of description, not to above-mentioned reality
It applies all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited
In contradiction, all should be considered as described in this specification.
The several embodiments of the application above described embodiment only expresses, the description thereof is more specific and detailed, but simultaneously
The limitation to claim therefore cannot be interpreted as.It should be pointed out that coming for those of ordinary skill in the art
It says, without departing from the concept of this application, various modifications and improvements can be made, these belong to the protection of the application
Range.Therefore, the scope of protection shall be subject to the appended claims for the application patent.
Claims (10)
1. a kind of direct-flow distribution system insulation against ground fault detection method, which is characterized in that direct-flow distribution system (100) packet
Include main distribution cabinet (10) and N number of junior's controller switching equipment (20);
The main distribution cabinet (10) includes master controller (110);
Each junior's controller switching equipment (20) includes that a sub-controller (210), breaker (230) and a plurality of route, the N are big
In the positive integer for being equal to 1;
The detection method includes:
The master controller (110) successively sends sense command to N number of junior's controller switching equipment (20);
When m-th sub-controller (210) receives the sense command, the m-th sub-controller (210) sends exchange and swashs
Encourage signal, the ac-excited signal is swept-frequency signal, and the M is integer, and 1≤M≤N;
Sub-controller described in the m-th (210) judges the electric current of each route in m-th junior controller switching equipment (20)
Whether the second pre-set current value is greater than;
When the electric current at least one route is greater than the second pre-set current value, the m-th sub-controller (210) is to the master
The detection information of controller (110) transmission m-th junior controller switching equipment (20) insulation against ground failure;
The m-th sub-controller (210) sends break signal to breaker (230);
After the breaker (230) receives the break signal, open circuit is carried out to faulty line.
2. fault detection method according to claim 1, which is characterized in that the detection method further include:
When the electric current in all routes is respectively less than or is equal to second pre-set current value, sub-controller described in the m-th
(210) m-th junior controller switching equipment (20) normal detection information is sent to master controller (110).
3. fault detection method according to claim 2, which is characterized in that the detection method further include:
When gradation under the m-th that the master controller (110) receives sub-controller described in the m-th (210) feedback
When electric equipment (20) insulation against ground failure or the m-th junior controller switching equipment (20) normal detection information, the main control
Device (110) sends sense command to the M+1 sub-controller (210), until n-th sub-controller (210) complete detection work.
4. fault detection method according to claim 1, which is characterized in that the master controller (110) is successively to the N
A junior's controller switching equipment (20) sends the step of sense command, comprising:
Each sub-controller (210) presets a voltage value being not mutually equal;
The master controller (110) successively sends different voltage signals;
When a sub-controller (210) in the multiple sub-controller (210) receive it is equal with its preset voltage value
Voltage signal when, current junior's controller switching equipment (20) start carry out self-test work.
5. fault detection method according to claim 1, which is characterized in that the range of the swept-frequency signal is 0Hz-
100KHz。
6. fault detection method according to claim 1, which is characterized in that
Before the master controller (110) successively sends sense command to N number of junior's controller switching equipment (20), further includes:
Whether the current value that the detection unit (120) detects the direct-flow distribution system (100) is greater than the first pre-set current value,
The detection unit (120) is set to the main distribution cabinet (10), the master controller (110) and the detection unit (120)
Communication connection;
When the current value of the direct-flow distribution system (100) is greater than the first pre-set current value, the master controller (110) is to institute
It states multiple junior's controller switching equipments and successively sends sense command.
7. a kind of direct-flow distribution system (100) characterized by comprising
Main distribution cabinet (10);
N number of junior's controller switching equipment (20), each junior's controller switching equipment (20) are electrically connected with the main distribution cabinet (10), each
Junior's controller switching equipment (20) includes a plurality of route;
Master controller (110) is set to the main distribution cabinet (10), and detection life is successively sent to the multiple junior's controller switching equipment
It enables;
N number of sub-controller (210), a sub-controller (210) is correspondingly arranged in junior's controller switching equipment (20), described
N number of sub-controller (210) communicates to connect with the master controller (110) respectively, for controlling current junior's controller switching equipment
(20) start to carry out self-test work, and by m-th junior controller switching equipment (20) insulation against ground failure or the m-th junior
The normal detection information of controller switching equipment (20) is fed back to the master controller (110), and described N, M are integer, and N >=1,1≤M≤
N;And
Multiple breakers (230) are arranged a breaker (230) on every route in a plurality of route, are located at same
The breaker (230) and the sub-controller (210) communication connection in one junior's controller switching equipment (20), for cutting
Disconnected faulty line is electrically connected with the direct-flow distribution system (100).
8. direct-flow distribution system (100) according to claim 7, which is characterized in that further include:
Alarm (240), is set to the main distribution cabinet (10), and communicates to connect with the master controller (110), when detecting
When the L articles route is that faulty line and being cut off is electrically connected with the direct-flow distribution system (100), the master controller (110)
The alarm (240) is controlled to alarm.
9. direct-flow distribution system (100) according to claim 7, which is characterized in that further include:
Display (250), is set to the main distribution cabinet (10), and communicates to connect with the master controller (110), when detecting
When the L articles route is that faulty line and being cut off is electrically connected with the direct-flow distribution system (100), the master controller (110)
It controls the display (250) and shows fault to ground detection information.
10. the direct-flow distribution system (100) according to any one of claim 7-9, which is characterized in that further include:
Detection unit (120) communicates to connect with the master controller (110), is for detecting the direct-flow distribution system (100)
No failure.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201910040862.XA CN109814011B (en) | 2019-01-16 | 2019-01-16 | Direct-current power distribution system and ground insulation fault detection method thereof |
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CN201910040862.XA CN109814011B (en) | 2019-01-16 | 2019-01-16 | Direct-current power distribution system and ground insulation fault detection method thereof |
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CN109814011A true CN109814011A (en) | 2019-05-28 |
CN109814011B CN109814011B (en) | 2021-07-16 |
Family
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Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4203142A (en) * | 1978-07-31 | 1980-05-13 | Lee Donald E | Ground fault system and method of detection |
CN201290028Y (en) * | 2008-11-05 | 2009-08-12 | 西安兴汇电力科技有限公司 | Synthesis monitoring system for shortcut type multifunctional networking cable line |
CN102279340A (en) * | 2011-07-20 | 2011-12-14 | 珠海泰坦新能源系统有限公司 | Direct-grounding insulation fault detection device and method |
CN102565619A (en) * | 2012-02-16 | 2012-07-11 | 华北电力大学(保定) | State diagnosis method for small-current ground fault line selection device |
CN203561717U (en) * | 2013-10-21 | 2014-04-23 | 国网安徽省电力公司淮南供电公司 | Distribution board direct current ground connection alarm device |
CN104242258A (en) * | 2013-11-25 | 2014-12-24 | 河南理工大学 | Underground coal mine override trip prevention system and method based on EtherCAT |
CN104764981A (en) * | 2015-04-28 | 2015-07-08 | 上海交通大学 | Distribution network line fault section locating method based on standardization drift rate |
CN107918079A (en) * | 2017-11-17 | 2018-04-17 | 云南电网有限责任公司电力科学研究院 | A kind of one-phase earthing failure in electric distribution network localization method and system based on frequency sweep injection |
-
2019
- 2019-01-16 CN CN201910040862.XA patent/CN109814011B/en active Active
Patent Citations (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US4203142A (en) * | 1978-07-31 | 1980-05-13 | Lee Donald E | Ground fault system and method of detection |
CN201290028Y (en) * | 2008-11-05 | 2009-08-12 | 西安兴汇电力科技有限公司 | Synthesis monitoring system for shortcut type multifunctional networking cable line |
CN102279340A (en) * | 2011-07-20 | 2011-12-14 | 珠海泰坦新能源系统有限公司 | Direct-grounding insulation fault detection device and method |
CN102565619A (en) * | 2012-02-16 | 2012-07-11 | 华北电力大学(保定) | State diagnosis method for small-current ground fault line selection device |
CN203561717U (en) * | 2013-10-21 | 2014-04-23 | 国网安徽省电力公司淮南供电公司 | Distribution board direct current ground connection alarm device |
CN104242258A (en) * | 2013-11-25 | 2014-12-24 | 河南理工大学 | Underground coal mine override trip prevention system and method based on EtherCAT |
CN104764981A (en) * | 2015-04-28 | 2015-07-08 | 上海交通大学 | Distribution network line fault section locating method based on standardization drift rate |
CN107918079A (en) * | 2017-11-17 | 2018-04-17 | 云南电网有限责任公司电力科学研究院 | A kind of one-phase earthing failure in electric distribution network localization method and system based on frequency sweep injection |
Non-Patent Citations (8)
Title |
---|
DONG ZHIYUN: "Analysis of the influence to fault detecting of DC system from distributed capacitance", 《2015 IEEE INTERNATIONAL CONFERENCE ON CYBER TECHNOLOGY IN AUTOMATION, CONTROL, AND INTELLIGENT SYSTEMS (CYBER)》 * |
JIAJIE ZANG: "Grounding Design and Fault Analysis of MMC Based Flexible Interconnection Device in Future Distribution Networks", 《2018 IEEE INTERNATIONAL POWER ELECTRONICS AND APPLICATION CONFERENCE AND EXPOSITION (PEAC)》 * |
LEI XING: "Improvement of on-line monitoring method for insulation of substation DC system", 《2015 IEEE INTERNATIONAL CONFERENCE ON CYBER TECHNOLOGY IN AUTOMATION, CONTROL, AND INTELLIGENT SYSTEMS (CYBER)》 * |
XIUFANG JIA: "Affection of distributed capacitance on and a new method of detecting on detecting DC system earth fault", 《POWERCON "98. 1998 INTERNATIONAL CONFERENCE ON POWER SYSTEM TECHNOLOGY. PROCEEDINGS (CAT. NO.98EX151)》 * |
YANG HUPING: "Analysis on fault voltage and secondary arc current of single phase refusing-shut of the 500kV extra high voltage transmission line", 《2009 2ND INTERNATIONAL CONFERENCE ON POWER ELECTRONICS AND INTELLIGENT TRANSPORTATION SYSTEM (PEITS)》 * |
刘康军: "一起220kV变压器短路故障问题诊断和处理", 《科技风》 * |
李立伟: "基于现场总线的分布式直流系统接地在线监测装置设计", 《电力自动化设备》 * |
王巍: "基于注入信号的低压IT系统绝缘监测试验研究", 《电工电气》 * |
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