CN106451351B - A kind of station domain protecting method that logic-based judges - Google Patents

A kind of station domain protecting method that logic-based judges Download PDF

Info

Publication number
CN106451351B
CN106451351B CN201610284471.9A CN201610284471A CN106451351B CN 106451351 B CN106451351 B CN 106451351B CN 201610284471 A CN201610284471 A CN 201610284471A CN 106451351 B CN106451351 B CN 106451351B
Authority
CN
China
Prior art keywords
protection
voltage side
signal
zero
logic
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201610284471.9A
Other languages
Chinese (zh)
Other versions
CN106451351A (en
Inventor
王增平
马静
王桐
孙吕祎
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
North China Electric Power University
Original Assignee
North China Electric Power University
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by North China Electric Power University filed Critical North China Electric Power University
Priority to CN201610284471.9A priority Critical patent/CN106451351B/en
Publication of CN106451351A publication Critical patent/CN106451351A/en
Application granted granted Critical
Publication of CN106451351B publication Critical patent/CN106451351B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H7/00Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H7/00Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
    • H02H7/04Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions for transformers
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02HEMERGENCY PROTECTIVE CIRCUIT ARRANGEMENTS
    • H02H7/00Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions
    • H02H7/22Emergency protective circuit arrangements specially adapted for specific types of electric machines or apparatus or for sectionalised protection of cable or line systems, and effecting automatic switching in the event of an undesired change from normal working conditions for distribution gear, e.g. bus-bar systems; for switching devices

Landscapes

  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Emergency Protection Circuit Devices (AREA)

Abstract

Protect system and method in the station domain judged the invention belongs to Relay Protection Technology in Power System field more particularly to a kind of logic-based.It is characterized in that, the system comprises the connected data of sequence to read in module, logic judgment module and protection act module;Method includes gathered data;Using the substation secondary protective device action logic signal of acquisition fault message is obtained through logic judgment;According to fault message, trip signal is sent to corresponding breaker.The present invention effectively improves the back-up protection performance of element in station, solves that the stage back-up protection of tradition is difficult to coordinate and the problems such as action delay is long, the program is simple and reliable, it is easy to accomplish.

Description

A kind of station domain protecting method that logic-based judges
Technical field
The invention belongs to the station domain protections that Relay Protection Technology in Power System field more particularly to a kind of logic-based judge Method.
Background technology
Substation's traditional protection is only capable of obtaining local monospace or local message, and this geneogenous deficiency has resulted in protection Selectivity, quick-action and sensitivity can not be taken into account simultaneously, and cannot meet the requirements at the higher level that complex electric network proposes protection further. Meanwhile as computer, the communication technology are constantly progressive, obtain the protection of whole station information realization station domain and has become possibility, research station It protects to ensureing that electric power netting safe running is of great significance in domain.
Currently, the protection of station domain mainly has centralized and distributed two kinds of algorithms.Centralized algorithm is to concentrate all information To a computer system, information is focused on.Distributed algorithm is based on multi-Agent mainly for distributed busbar Decentralized bus protection principle and structure, design the technical solution of specific implementation, improve the reliability of bus differential protecting And sensitivity.
Invention content
To achieve the goals above, technical solution proposed by the present invention is a kind of station domain protection system that logic-based judges System, which is characterized in that the system comprises data to read in module, logic judgment module is connected with protection act sequence of modules;
The data read in the logical signal that module is used to acquire substation secondary protective device, including tranformer protection dress Answering for setting presses off lock signal, overcurrent protection signal, current direction signal, zero-sequencedirectional protection signal, zero-sequence current direction signal, And high-pressure side, medium voltage side, the distance protection signal of low-voltage side outlet protective device, zero-sequence current direction signal, zero sequence overcurrent Protection signal, and the data of acquisition are sent to logic judgment module;
The logic judgment module is used to press off lock signal, overcurrent protection signal, electricity according to answering for protection equipment for transformer Flow direction signal, zero-sequencedirectional protection signal, zero-sequence current direction signal and high-pressure side, medium voltage side, low-voltage side outlet protection Distance protection signal, zero-sequence current direction signal, the zero-sequencedirectional protection signal of device, it is high through tranformer protection logical AND, in, Low-voltage bus bar relay protective scheme judges, obtains fault message, and fault message is sent to protection act module;
The protection act module is used for according to fault message, and trip signal is sent to corresponding breaker.
A kind of station domain protecting method that logic-based judges, which is characterized in that the method includes:
Step 1:Gathered data, including answering for protection equipment for transformer press off lock signal, overcurrent protection signal, current direction Signal, zero-sequencedirectional protection signal, zero-sequence current direction signal and high-pressure side, medium voltage side, low-voltage side outlet protective device Distance protection signal, zero-sequence current direction signal, zero-sequencedirectional protection signal;
Step 2:Carry out tranformer protection logical AND high-voltage side bus relay protective scheme, medium voltage side bus protection logic and low pressure Side bus relay protective scheme judges, obtains fault message;
Step 3:According to fault message, trip signal is sent to corresponding breaker.
The tranformer protection logic includes tranformer protection logic based on zero-sequence current protection signal and based on multiple pressure It is latched the tranformer protection logic of overcurrent protection signal, specific logic is:
In tranformer protection logic based on zero-sequence current protection signal, protected without the high-voltage side outlet wire zero-sequence current in direction It protects III sections and starts without II sections of the high voltage side of transformer zero-sequence current protection in direction, or go out without the medium voltage side in direction IIII sections of line zero-sequence current protection and start without II sections of the transformer medium voltage side zero-sequence current protection in direction, while transformer High, medium voltage side zero-sequence current direction is not just, to be then determined as that earth fault occurs for transformer;
Based in the tranformer protection logic for pressing off lock overcurrent protection signal again, high voltage side of transformer presses off lock overcurrent and protects again I section startups of shield, in transformer, low-pressure side press off lock signal again and open, while in transformer, low-pressure side directional over-current protection I Duan Jun does not start, then judges that phase fault occurs for transformer.
The high-voltage side bus relay protective scheme include high-voltage side bus relay protective scheme based on zero-sequence current protection signal and Based on the high-voltage side bus relay protective scheme for pressing off lock overcurrent protection signal again, specific logic is:
In high-voltage side bus relay protective scheme based on zero-sequence current protection signal, without the high voltage side of transformer zero sequence in direction Current protection II starts, and high voltage side of transformer zero-sequence current direction is just, without the high-voltage side outlet wire zero-sequence current protection in direction III sections of startups, high-voltage side outlet wire zero sequence direction are not just that I, II, III sections of high-voltage side outlet wire ground distance protection does not start, Then judge that earth fault occurs for high-voltage side bus;
Based on press off again lock overcurrent protection signal high-voltage side bus relay protective scheme in, a high-pressure side at least outlet away from Start from quadrilateral characteristics, I, II, III sections of the distance protection of all outlets does not start, and high voltage side of transformer presses off lock letter again Number opening, while I sections of high voltage side of transformer directional over-current protection does not start, then judges that phase-to phase fault occurs for high-voltage side bus.
Medium pressure side bus relay protective scheme includes the medium voltage side bus protection logic sum based on zero-sequence current protection signal Based on the medium voltage side bus protection logic for pressing off lock overcurrent protection signal again, specific logic is:
In medium voltage side bus protection logic based on zero-sequence current protection signal, transformer medium voltage side zero sequence direction signal is Just, II sections of transformer medium voltage side zero-sequence current protection startup, medium voltage side circuit zero sequence direction signal and medium voltage side line-to-ground away from Do not start from protection signal, while without the III sections of startups of the medium voltage side zero sequence current protection in direction, then judging medium voltage side Earth fault occurs for busbar;
Based in the medium voltage side bus protection logic for pressing off lock overcurrent protection signal again, transformer medium voltage side presses off again to be locked I sections of startups of stream protection, I, II, III sections of medium voltage side circuit distance protection do not start, and high voltage side of transformer presses off lock overcurrent and protects again II sections of startups of shield, then judge that phase fault occurs for medium voltage side busbar.
The low-pressure side bus relay protective scheme includes being patrolled based on the low-pressure side bus protection for pressing off lock overcurrent protection signal again Volume, specific logic is:
Step down side presses off I sections of startups of lock overcurrent protection again, and I, II, III sections of low-pressure side circuit overcurrent protection is Do not start, high voltage side of transformer presses off II sections of startups of lock overcurrent protection again, then judges that phase fault occurs for low-pressure side bus.
Advantageous effect
The decision center of centralized station domain protection can obtain more information, from the level positioning failure of whole station, simplify Matching relationship of the protection on actuation time, and can improve the selectivity and reliability of protection.Based on this, the present invention adopts Take centralized solution, it is proposed that a kind of station domain protection system and method that logic-based judges.Domain host of standing receives substation The action logic signal of interior each second protection equipment is sentenced by tranformer protection logical AND high, medium and low voltage bus protection logic It is disconnected, fault message is obtained, and trip signal is sent to corresponding breaker.The standby that the invention effectively improves element in station is protected Performance is protected, solves that the stage back-up protection of tradition is difficult to coordinate and the problems such as action delay is long, the program is simple and reliable, is easy to It realizes.The present invention can not take into account selectivity, quick-action and sensitivity simultaneously for solving traditional transforming plant protecting, and further cannot The problem of meeting the requirements at the higher level that complex electric network proposes protection.
Description of the drawings
Fig. 1 is the station domain protection system construction drawing that logic-based provided by the invention judges;
Fig. 2 is the tranformer protection logic chart based on zero-sequence current protection signal;
Fig. 3 is based on the tranformer protection logic chart for pressing off lock overcurrent protection signal again;
Fig. 4 is the high-voltage side bus relay protective scheme figure based on zero-sequence current protection signal;
Fig. 5 is based on the high-voltage side bus relay protective scheme figure for pressing off lock overcurrent protection signal again;
Fig. 6 is the medium voltage side bus protection logic chart based on zero-sequence current protection signal;
Fig. 7 is based on the medium voltage side bus protection logic chart for pressing off lock overcurrent protection signal again;
Fig. 8 is based on the low-pressure side bus relay protective scheme figure for pressing off lock overcurrent protection signal again;
Fig. 9 is that certain the station model built on RTDS does the model emulation figure of simulating, verifying.
Specific implementation mode
Below in conjunction with the accompanying drawings, it elaborates to preferred embodiment.
Embodiment 1
Fig. 1 is the station domain protection system construction drawing that logic-based provided by the invention judges, as shown in Figure 1, the present invention carries The station domain protection system that the logic-based of confession judges includes that the connected data reading module of sequence, logic judgment module and protection are dynamic Make module.
Logical signal of the data reading module for acquiring substation secondary protective device, including protection equipment for transformer Lock signal, overcurrent protection signal, current direction signal, zero-sequencedirectional protection signal, zero-sequence current direction signal are pressed off again, and High-pressure side, medium voltage side, the distance protection signal of low-voltage side outlet protective device, zero-sequence current direction signal, zero-sequencedirectional protection Signal, and the data of acquisition are sent to logic judgment module;
Logic judgment module is used to press off lock signal, overcurrent protection signal, electric current side according to answering for protection equipment for transformer To signal, zero-sequencedirectional protection signal, zero-sequence current direction signal and high-pressure side, medium voltage side, low-voltage side outlet protective device Distance protection signal, zero-sequence current direction signal, zero-sequencedirectional protection signal, through tranformer protection logical AND high, medium and low voltage Bus protection logic judgment obtains fault message, and fault message is sent to protection act module;
Protection act module is used for according to fault message, and trip signal is sent to corresponding breaker.
The operation principle of the single-phase earthing distance protection system provided by the invention compared based on voltage-phase is:
In Fig. 2 logics, when earth fault occurs for transformer, in II sections of high voltage side of transformer zero-sequence current protection and transformer Press zero-sequence current protection II section of side at least can there are one startups, but since the two signal itself is without directional information, also not It can judge that abort situation is on the transformer or on busbar or circuit.And transformer is high, medium voltage side zero-sequence current is adjusted Positive direction is directed to outlet, if the two direction is not just, the possibility of busbar or line fault can be excluded, by failure at this time Position restriction is on the transformer.Meanwhile plus zero sequence current protection III sections of high-pressure side and medium voltage side line in relay protective scheme Zero-sequence current protection III sections of road entry condition, enhances the stringency of relay protective scheme, prevents high voltage side of transformer zero-sequence current from protecting II sections of II sections of shield or transformer medium voltage side zero-sequence current protection cause relay protective scheme to be judged by accident because of the reasons error starting such as plant failure.
In Fig. 3 logics, when phase fault occurs for transformer, high voltage side of transformer presses off I sections of lock overcurrent protection again will Start.And in transformer, the overcurrent protection positive direction of low-pressure side be directed toward busbar, if the side of transformer medium voltage side and low-pressure side at this time Do not start to overcurrent protection, then in can excluding, the possibility of low-pressure side bus and line fault, judgement failure is happened at transformer On.Meanwhile no matter in, low-pressure side whether have a plant-grid connection, in transformer, low-pressure side answer that press off lock signal be opening, lead to It crosses and the two conditions is accessed into "AND" logic, can eliminate and only press off lock overcurrent protection enabling signal conduct again by high voltage side of transformer The drawbacks of logic erroneous judgement, easily occurs for entry condition, enhances the reliability of relay protective scheme.
In Fig. 4 logics, due to high voltage side of transformer zero-sequence current protection positive direction and high-pressure side zero sequence current protection Positive direction is directed to circuit, therefore only needs high voltage side of transformer zero sequence direction current start, and high-pressure side circuit zero sequence direction It is not that just, while I, II, III section of circuit ground distance protection does not start that may recognize that ground connection occurs for high-voltage side bus former Barrier.In relay protective scheme figure, by by high voltage side of transformer zero-sequence current direction signal and high voltage side of transformer zero-sequence current protection II sections of enabling signal phase "AND" constitute zero-sequence current protection II sections of direction may and being not configured in protection in conventional stations and start letter Number.High-voltage side outlet wire zero-sequence current protection is started into access "AND" logic for III sections, the reliability of relay protective scheme can be enhanced, prevented Malfunction for tranformer protection causes logic to be judged by accident caused by protection equipment for transformer failure and other reasons.
In Fig. 5 logics, although relaying configuration has no the relaying configuration that positive direction is directed toward high-voltage side bus in conventional stations, In I sections of conventional high-tension side line road distance protection, the small quadrangle protection feature being equipped with centered on complex plane origin can react This signal can be uploaded to GOOSE network by high-voltage side bus phase-to phase fault.Since high-voltage side bus institute connecting lines are not all It is connected to power supply, therefore requires nothing more than starting apart from quadrilateral characteristics at least circuit in logic.No matter whether circuit accesses Power supply, I, II, III sections of distance protection will not start, and by the debugging of this condition possibility on the line occurs for logic. Again by limiting transformer high-pressure side directional over-current protection I sections do not start, exclude the possibility that breaks down of transformer, finally will therefore Barrier is located on high-voltage side bus.Since circuit distance protection and tranformer protection do not start under normal circumstances, if at this time certain Apart from quadrilateral characteristics malfunction occurs for a route protection, then bus protection logic can be caused to judge by accident, therefore by transformer High-pressure side presses off lock signal exploitation and protection "AND" logic is added again, improves the reliability of logic.
In Fig. 6 logics, II sections of transformer medium voltage side zero sequence direction signal and transformer medium voltage side zero-sequence current protection are opened Dynamic signal phase "AND", constitutes direction zero-sequence current protection II segment signals (being not configured in traditional protection), the trip bar as logic Part.Barring condition is constituted using medium voltage side circuit zero sequence direction signal and medium voltage side line-to-ground distance protection signal, by middle pressure Side line road fault condition excludes.Enhance the faulty action preventing of logic using III sections of enabling signals of medium voltage side zero sequence current protection Property.
In Fig. 7 logics, trip bar of the lock I sections of enabling signals of overcurrent protection as logic is pressed off again by transformer medium voltage side Part.Do not started using I, II, III sections of medium voltage side circuit distance protection to exclude medium voltage side circuit phase fault situation.In order to drop It is low to lead to the possibility that logic is judged by accident because of false protection, it presses off lock II sections of enabling signals of overcurrent protection again using high voltage side of transformer and comes Entry condition in logic is verified.
In Fig. 8 logics, trip bar of the lock I sections of enabling signals of overcurrent protection as logic is pressed off again by step down side Part.Do not started using the overcurrent protection of low-pressure side circuit to exclude low-pressure side circuit phase fault situation.Use high voltage side of transformer Lock II sections of enabling signals of overcurrent protection are pressed off again to be verified to the entry condition in logic, enhance logic reliability.
According to above-mentioned principle, the single-phase earthing distance protecting method provided by the invention compared based on voltage-phase includes:
Step 1:Gathered data, including answering for protection equipment for transformer press off lock signal, overcurrent protection signal, current direction Signal, zero-sequencedirectional protection signal, zero-sequence current direction signal and high-pressure side, medium voltage side, low-voltage side outlet protective device Distance protection signal, zero-sequence current direction signal, zero-sequencedirectional protection signal;
Step 2:The high, medium and low bus protection logic judgment of tranformer protection logical AND is carried out, fault message is obtained;
Step 3:According to fault message, trip signal is sent to corresponding breaker.
Embodiment 2
Certain station model that Guizhou Liu Panshui is built on RTDS does simulating, verifying, and model emulation figure is as shown in Figure 9.Exist respectively High-voltage side bus, three side of transformer and mesolow side bus setting single-phase short circuit, phase fault, three-phase shortcircuit, two phase ground Short circuit, developing fault and metastatic failure verify station domain defencive function.Verification result is as shown in table 1.
1. simulation results of table
Verification result, which shows to carry station domain protection scheme, can accurately identify various failures in station, meet protection rapidity, Selectivity, sensitivity requirements are obviously improved the movement speed protected in station compared with traditional protection.
The foregoing is only a preferred embodiment of the present invention, but scope of protection of the present invention is not limited thereto, Any one skilled in the art in the technical scope disclosed by the present invention, the change or replacement that can be readily occurred in, It should be covered by the protection scope of the present invention.Therefore, protection scope of the present invention should be with scope of the claims Subject to.

Claims (4)

1. the station domain protecting method that a kind of logic-based judges, which is characterized in that the method includes:
Step 1:Gathered data, including answering for protection equipment for transformer press off lock signal, overcurrent protection signal, current direction letter Number, zero-sequencedirectional protection signal, zero-sequence current direction signal and high-pressure side, medium voltage side, low-voltage side outlet protective device away from From protection signal, zero-sequence current direction signal, zero-sequencedirectional protection signal;
Step 2:It is female to carry out tranformer protection logical AND high-voltage side bus relay protective scheme, medium voltage side bus protection logic and low-pressure side Line relay protective scheme judges, obtains fault message;
The tranformer protection logic includes the tranformer protection logic sum based on the protection enabling signal in zero-sequence current protection The tranformer protection logic of lock enabling signal and overcurrent enabling signal, specific logic are pressed off based on answering in multiple pressure latch-up protection For:
In tranformer protection logic based on zero-sequence current protection signal, without the high voltage side of transformer outlet zero-sequence current in direction It protects III sections and starts without II sections of the high voltage side of transformer outlet zero-sequence current protection in direction, or without the change in direction IIII sections of depressor medium voltage side outlet zero-sequence current protection and II sections of transformer medium voltage side outlet zero-sequence current protection without direction Start, while transformer is high, medium voltage side zero-sequence current direction is not just, to be then determined as that earth fault occurs for transformer;
Based in the tranformer protection logic for pressing off lock overcurrent protection signal again, high voltage side of transformer presses off lock overcurrent protection I again Duan Qidong, in transformer, that low-pressure side presses off lock signal again is open, at the same in transformer, I section of low-pressure side directional over-current protection it is equal Do not start, then judges that phase fault occurs for transformer;
Step 3:According to fault message, trip signal is sent to corresponding breaker.
2. the station domain protecting method that a kind of logic-based according to claim 1 judges, which is characterized in that the high-pressure side Bus protection logic includes high-voltage side bus relay protective scheme based on zero-sequence current protection signal and is protected based on lock overcurrent is pressed off again The high-voltage side bus relay protective scheme of signal is protected, specific logic is:
In high-voltage side bus relay protective scheme based on zero-sequence current protection signal, without the high voltage side of transformer zero-sequence current in direction II is protected to start, high voltage side of transformer zero-sequence current direction is just, without III sections of the high-voltage side outlet wire zero-sequence current protection in direction Start, high-voltage side outlet wire zero sequence direction is not just that I, II, III sections of high-voltage side outlet wire ground distance protection does not start, then judges Earth fault occurs for high-voltage side bus;
Based on press off again lock overcurrent protection signal high-voltage side bus relay protective scheme in, a high-pressure side at least outlet distance four Side shape characteristic starts, and I, II, III sections of the distance protection of all outlets does not start, and high voltage side of transformer presses off lock signal and opens again It puts, while I sections of high voltage side of transformer directional over-current protection does not start, then judges that phase-to phase fault occurs for high-voltage side bus.
3. the station domain protecting method that a kind of logic-based according to claim 1 judges, which is characterized in that medium pressure side Bus protection logic includes medium voltage side bus protection logic based on zero-sequence current protection signal and is protected based on lock overcurrent is pressed off again The medium voltage side bus protection logic of signal is protected, specific logic is:
In medium voltage side bus protection logic based on zero-sequence current protection signal, transformer medium voltage side zero sequence direction signal be just, The II sections of startups of transformer medium voltage side zero-sequence current protection, medium voltage side circuit zero sequence direction signal and medium voltage side line-to-ground distance are protected Shield signal does not start, while without the III sections of startups of the medium voltage side zero sequence current protection in direction, then judging medium voltage side busbar Earth fault occurs;
Based in the medium voltage side bus protection logic for pressing off lock overcurrent protection signal again, transformer medium voltage side presses off lock overcurrent and protects again I sections of startups of shield, I, II, III sections of medium voltage side circuit distance protection do not start, and high voltage side of transformer presses off lock overcurrent protection II again Duan Qidong then judges that phase fault occurs for medium voltage side busbar.
4. the station domain protecting method that a kind of logic-based according to claim 1 judges, which is characterized in that the low-pressure side Bus protection logic includes based on the low-pressure side bus relay protective scheme for pressing off lock overcurrent protection signal again, and specific logic is:
Step down side presses off I sections of startups of lock overcurrent protection again, and I, II, III sections of low-pressure side circuit overcurrent protection does not open Dynamic, high voltage side of transformer presses off II sections of startups of lock overcurrent protection again, then judges that phase fault occurs for low-pressure side bus.
CN201610284471.9A 2016-04-29 2016-04-29 A kind of station domain protecting method that logic-based judges Expired - Fee Related CN106451351B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201610284471.9A CN106451351B (en) 2016-04-29 2016-04-29 A kind of station domain protecting method that logic-based judges

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201610284471.9A CN106451351B (en) 2016-04-29 2016-04-29 A kind of station domain protecting method that logic-based judges

Publications (2)

Publication Number Publication Date
CN106451351A CN106451351A (en) 2017-02-22
CN106451351B true CN106451351B (en) 2018-11-06

Family

ID=58183166

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201610284471.9A Expired - Fee Related CN106451351B (en) 2016-04-29 2016-04-29 A kind of station domain protecting method that logic-based judges

Country Status (1)

Country Link
CN (1) CN106451351B (en)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111123163A (en) * 2020-04-01 2020-05-08 广东电网有限责任公司佛山供电局 Method for manually simulating and testing overcurrent protection action range of re-pressing locking direction

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102064613A (en) * 2011-01-13 2011-05-18 许继电气股份有限公司 Fault locking method for relay protection in digital substation
CN102709885A (en) * 2012-05-25 2012-10-03 南京国网电瑞继保科技有限公司 Method for isolating power distribution network fault without constant time lag in over-current protection of transformer substation
CN104319743A (en) * 2014-05-30 2015-01-28 许继电气股份有限公司 Method and device for quick backup protection of high-voltage side of main transformer based on station region information
CN104362599A (en) * 2014-11-13 2015-02-18 国家电网公司 Method for protecting low-voltage bus of intelligent substation

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102064613A (en) * 2011-01-13 2011-05-18 许继电气股份有限公司 Fault locking method for relay protection in digital substation
CN102709885A (en) * 2012-05-25 2012-10-03 南京国网电瑞继保科技有限公司 Method for isolating power distribution network fault without constant time lag in over-current protection of transformer substation
CN104319743A (en) * 2014-05-30 2015-01-28 许继电气股份有限公司 Method and device for quick backup protection of high-voltage side of main transformer based on station region information
CN104362599A (en) * 2014-11-13 2015-02-18 国家电网公司 Method for protecting low-voltage bus of intelligent substation

Non-Patent Citations (2)

* Cited by examiner, † Cited by third party
Title
基于智能变电站的变压器后备保护智能跳闸策略;王悦等;《电工技术》;20131231(第12期);第28-30页以及第37页 *
智能变电站站域保护研究综述;陈磊等;《华东电力》;20130531;第41卷(第5期);第0948-0952页 *

Also Published As

Publication number Publication date
CN106451351A (en) 2017-02-22

Similar Documents

Publication Publication Date Title
CN106169740B (en) 110kV single-trunk segmental wiring incoming relay-protections are latched prepared auto restart relay protecting method
CN103728532B (en) One-phase earthing failure in electric distribution network judgement and localization method
CN103326335B (en) System and method for false action resistance of distance section III based on domain double-type fault characteristic
CN104779594B (en) Small current neutral grounding power system phase fault and single-phase grounding comprehensive protecting method
CN110110856B (en) Power grid fault diagnosis method and system based on multi-source information deep reasoning
CN101917064B (en) Back-up protection processing method of digital substation transformer based on GOOSE mode
CN102064613B (en) Fault locking method for relay protection in digital substation
CN108448540A (en) A kind of small resistance grounding system earth-fault protection new method compared based on zero-sequence current
CN112595930B (en) Backup protection method for petal type urban power grid area containing distributed power supply
CN105337256B (en) A kind of residual voltage compensating element, blocking method for multiple-circuit on same tower
CN106159913B (en) Multi-terminal flexible direct current system direct current fault protecting method
CN105356427B (en) The pilot zero sequence direction relay method of common-tower double-return transmission lines in parallel
KR101505176B1 (en) Apparatus and method for detecting failure of bus
CN104242274B (en) Quantity of state differential protecting method containing distributed power distribution network
CN107315128A (en) A kind of distributed earthing wire-selecting method and system based on GOOSE
CN104037738A (en) 3/2 wiring T-region short lead wire differential protection starting method and differential protection method
CN106684841A (en) Flexible direct-current grid system direct-current short-circuit fault protection method and device
CN103595032A (en) Method for locking zero-sequence directional elements applied to line with no transposition and double circuits on same tower
CN101800441A (en) Method for processing boundary information deficiency of centralization protector of digitalized converting station
CN104821655B (en) A kind of Fault Locating Method of region prepared auto restart
CN105301442B (en) Fault detector singlephase earth fault based on worst principle determines practical method
Horowitz et al. Blackouts and relaying considerations-Relaying philosophies and the future of relay systems
CN106451351B (en) A kind of station domain protecting method that logic-based judges
CN106159911B (en) Protect system and method in station domain based on the existing relay protective scheme amount of substation
CN109193595B (en) Active power distribution network failure separation method based on current phase comparison

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20181106

Termination date: 20200429

CF01 Termination of patent right due to non-payment of annual fee