CN104156230B - The red-black figure implementation method of automation based on debugging system object-oriented data technology - Google Patents

The red-black figure implementation method of automation based on debugging system object-oriented data technology Download PDF

Info

Publication number
CN104156230B
CN104156230B CN201410331039.1A CN201410331039A CN104156230B CN 104156230 B CN104156230 B CN 104156230B CN 201410331039 A CN201410331039 A CN 201410331039A CN 104156230 B CN104156230 B CN 104156230B
Authority
CN
China
Prior art keywords
model
equipment
red
black
debugging system
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.)
Active
Application number
CN201410331039.1A
Other languages
Chinese (zh)
Other versions
CN104156230A (en
Inventor
赵仰东
周养浩
杜红卫
夏崇镨
韩韬
彭晖
武会超
刘凡
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.)
State Grid Corp of China SGCC
Nari Technology Co Ltd
Original Assignee
State Grid Corp of China SGCC
Nari Technology Co Ltd
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 State Grid Corp of China SGCC, Nari Technology Co Ltd filed Critical State Grid Corp of China SGCC
Priority to CN201410331039.1A priority Critical patent/CN104156230B/en
Publication of CN104156230A publication Critical patent/CN104156230A/en
Application granted granted Critical
Publication of CN104156230B publication Critical patent/CN104156230B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Supply And Distribution Of Alternating Current (AREA)
  • Debugging And Monitoring (AREA)

Abstract

The invention discloses a kind of red-black figure implementation method of electrical power distribution automatization system based on debugging system object-oriented data technology, the node object that device object, system-oriented towards power network are managed is integrated and be divided into data in system according to different sources.Following distribution net work structure is described with red figure, black chart states the distribution net work structure of current real time execution, and red, black two numbers evidence seamlessly transit is realized by " red turn black ", ensure that figure and the actual holding of network topology and scene are unified in real time, support dispatcher to grasp current, following distribution net work structure in time, realize operation monitoring and sacurity dispatching.The beneficial effect that the present invention is reached:The distribution artwork that generally existing in domestic electrical power distribution automatization system can be solved builds speed is slow, accuracy is poor scene, it is impossible to debug the problem of not putting into operation terminal under red figure state, at the same can improve red turn it is black when device model integrality and conversion efficiency.

Description

The red-black figure implementation method of automation based on debugging system object-oriented data technology
Technical field
The present invention relates to a kind of red-black figure implementation method of automation based on debugging system object-oriented data technology, belong to electricity Force system distribution network technology field.
Background technology
The need for urban construction, expressway extension and transformation, the network structure of power distribution network and its topology almost all everyday Changing, the track remodelling in multiple places may be carried out simultaneously within sometimes one day, and this allows for auxiliary tone dispatcher must It must face that a network that at every moment may all change is scheduled and instruction is issued.
For distribution construction and frequently situation is transformed, distribution network model dynamic change treatment mechanism solves real mould The real-time and scheduling problem of type and future models.Take the lead in proposing red-black figure concept in distribution management at home, i.e., to power distribution network mould Type/figure is managed according to planning and designing, actual motion to network model, is that auxiliary tone is provided in fact before circuit power transmission puts into operation When, following wiring diagram, it is ensured that according to operation.
The present invention is under electrical power distribution automatization system red and black figure application present situation, based on debugging system in dispatching of power netwoks control system The red-black figure application function of a new generation of object-oriented data technology, can preferably solve the multiple of the red-black figure good application of puzzlement at present Problem.
The content of the invention
To solve in the prior art for the deficiency that red-black figure application is present at present, use for reference debugging system technical research and be based on The red-black figure application of object-oriented data, can solve the problem that in red-black figure model multi version it is an object of the invention to provide one kind and returns The power distribution automation based on debugging system object-oriented data technology of the key issues such as rolling, terminal debugging, the parallel importing of multi-model Red-black figure implementation method.
In order to realize above-mentioned target, the present invention is adopted the following technical scheme that:
The red-black figure implementation method of automation based on debugging system object-oriented data technology, it is characterised in that including:
1) according to the set distribution management service management flow of electric company, built in electrical power distribution automatization system debugging system Equipment zero order model including vertical the connections figure related to current business and equipment topological model;Current business refers at present Distribution scheduling business, such as stop power transmission operation before and after circuit some day reconfiguration.
2) according to the equipment zero order model, equipment level one data model is set up by the distribution scheduling business;It is described to set Standby level one data model includes device real-time monitoring model, analytical model for application and other computation models;Further according to the equipment Level one data model generation device secondary data simulator;According to being actually needed for different distribution scheduling business, system can match somebody with somebody The real-time monitoring model of generation, high soft analytical model for application and other models are set to, for being supported not on the premise of mutual independence With the use demand of application;The equipment secondary data model includes preposition measurement model, Information Interaction Model, system emulation mould Type and other models;The preposition measurement model and Information Interaction Model are generated by device real-time monitoring model;The system is imitated True mode and other models are generated by analytical model for application;
3) according to the step 1) and 2) in equipment zero order model, equipment level one data model and equipment secondary data model Generating process, empirically value is the equipment zero order model, equipment level one data model and equipment secondary data model mend Device parameter full of sufficient data object completeness criterion;The device parameter includes the unit type in zero order model, cable Equipment in length/specification, rated capacity, rated current, two grades of preposition models in passage, period and second-level message interaction models Deng;
4) according to the step 1), 2) and 3), the debugging system generates corresponding red figure;
5) test checking is carried out to the red figure in debugging system;
6) according to the step 5) test the result determine whether to meet service feature, the service feature is system In equipment zero order model, equipment level one data model, equipment secondary data model and connections figure with the distribution adjust The scene of degree business is consistent:If being unsatisfactory for this service feature, retract again successively by the step 1), 2), 3), 4) and 5) red figure is built, untill requirement is met;If meeting this service feature, next step is carried out;
7) red figure in debugging system is had access in electrical power distribution automatization system runtime according to stopping power transmission business, carried out red Turn black operation, as the black figure in runtime.
The red-black figure implementation method of the foregoing automation based on debugging system object-oriented data technology, it is characterised in that The step 1) in set up connections figure and equipment topological model method be:Carried out using system artwork storehouse integrated tool Drawing makees storehouse and forms the connections figure and equipment Top Modules using system GIS/PMS artworks interface importing external system Type.
The red-black figure implementation method of the foregoing automation based on debugging system object-oriented data technology, it is characterised in that institute Stating GIS/PMS artwork interfaces includes:Workflow management interface, the workflow management interface is used for the work of electrical power distribution automatization system Stream is connected with the workflow of external system and forms closed loop workflow;Model introducting interface, the model introducting interface is with increment Mode is used for the model data for importing CIM/XML or CIM-E specifications derived from external system;Figure introducting interface, the figure Introducting interface is used for the graph data for importing CIM/SVG or CIM-G specifications derived from external system;Bus adapter, it is described total Line adapter is used to connect the bus realization for meeting IEC61968 standard criterions and External system communication.
The red-black figure implementation method of the foregoing automation based on debugging system object-oriented data technology, it is characterised in that institute State step 4) in, the red figure includes:The device object mould in do not put into operation primary connection figure, debugging system in debugging system Type, the different life of equipment;The life cycle include do not put into operation the phase, in Yunqi, treat the date of retirement.
The red-black figure implementation method of the foregoing automation based on debugging system object-oriented data technology, it is characterised in that institute Stating device object model includes:Equipment zero order model, the equipment zero order model includes graph topology model and equipment Top Modules Type;Equipment first-order model, the equipment first-order model includes device real-time monitoring model, analytical model for application and other calculating moulds Type;Equipment second-level model, the equipment second-level model include preposition measurement model, Information Interaction Model, system simulation model and Other models;Object integrity is verified, and the object integrity verification is according to system configuration in the equipment zero order model, equipment First-order model and equipment second-level model are carried out.
The red-black figure implementation method of the foregoing automation based on debugging system object-oriented data technology, it is characterised in that institute Stating object integrity verification includes:Hierarchical relationship, unique encodings in the equipment topological model, voltage class, affiliated application Attribute for sky or does not meet foreign key constraint;Signal in the real-time monitoring model is associated with equipment;The front-collection model In passage, period, stipulations are to be empty and can be communicated with acquisition terminal foundation.
The red-black figure implementation method of the foregoing automation based on debugging system object-oriented data technology, it is characterised in that The step 7) in, the red turn of black operation includes:Initiated in runtime or debugging system, be base using the red figure of debugging system Plinth, analyzes all devices object that the feeder line included in red figure and the feeder line are included, with identical figure and equipment in black figure Object is compared, and variance data is synchronized in runtime by base unit incremental mode of device object, as operation Black figure in system.
The beneficial effect that the present invention is reached:It is red that the present invention provides the power distribution network based on debugging system object-oriented data technology Black figure implementation method, it is possible to resolve the distribution artwork of generally existing builds that speed is slow, accuracy is poor in domestic electrical power distribution automatization system Scene, it is impossible to debug the problem of not putting into operation terminal under red figure state, at the same can improve red turn it is black when device model it is complete Whole property and conversion efficiency.
Brief description of the drawings
Red-black figure application data objectization processing logical schematic of Fig. 1 present invention based on debugging system;
Fig. 2 Distribution Network Equipment objectification schematic diagrames of the present invention.
Embodiment
The invention will be further described below in conjunction with the accompanying drawings.Following examples are only used for clearly illustrating the present invention Technical scheme, and can not be limited the scope of the invention with this.
The red-black figure implementation method of automation based on debugging system object-oriented data technology, step is as follows:
1) according to the set distribution management service management flow of electric company, built in electrical power distribution automatization system debugging system Equipment zero order model including vertical the connections figure related to current business and equipment topological model.Current business refers at present Distribution scheduling business, such as stop power transmission operation before and after circuit some day reconfiguration.The method of foundation is to utilize system diagram Mould storehouse integrated tool carries out drawing and makees storehouse and form the circuit using system GIS/PMS artworks interface importing external system Wiring diagram and equipment topological model.Wherein, GIS/PMS artworks interface includes:Workflow management interface, for by power distribution automation system The workflow of system and the workflow of external system connect and form closed loop workflow;Model introducting interface, is used for incremental mode Import the model data of CIM/XML or CIM-E specifications derived from external system;Figure introducting interface, for importing external system The graph data of derived CIM/SVG or CIM-G specifications;Bus adapter, IEC61968 standard criterions are met for connecting Bus is realized and External system communication.
2) according to equipment zero order model, equipment level one data model is generated;It is real-time that equipment level one data model includes equipment Monitoring model, analytical model for application and other computation models;Further according to equipment level one data model generation device secondary data mould Type equipment;Equipment secondary data model includes preposition measurement model, Information Interaction Model, system simulation model and other models; Preposition measurement model and Information Interaction Model are generated by device real-time monitoring model;System simulation model and other models are by applying Analysis model is generated;
3) according to step 1) and 2) in equipment zero order model, equipment level one data model and equipment secondary data model life Into process, empirically value is that equipment zero order model, equipment level one data model and equipment secondary data model supplement meet number According to the device parameter of object integrity specification.Device parameter includes the unit type in zero order model, cable length/specification, volume Equipment in constant volume, rated current, two grades of preposition models in passage, period and second-level message interaction models etc.;
4) according to step 1), 2) and 3), debugging system generates corresponding red figure.Red figure includes not putting into operation in debugging system Device object model, the different life of equipment in primary connection figure, debugging system.Life cycle include do not put into operation the phase, In Yunqi, treat the date of retirement.
5) red figure is entered by the linkage test of topology connectivity, device parameter integrality and on-site terminal in debugging system Row test checking;
6) according to step 5) test the result determine whether to meet service feature, what service feature referred to this test is Equipment zero order model, equipment level one data model, equipment secondary data model and connections figure in system with the distribution The scene of scheduling business is consistent:If being unsatisfactory for service feature, retract again successively by step 1), 2), 3), 4) He 5) build Red figure, untill requirement is met;If meeting service feature, next step is carried out;
7) red figure in debugging system is had access in electrical power distribution automatization system runtime according to stopping power transmission business, carried out red Turn black operation, as the black figure in runtime.Red turn of black operation includes:Initiated in runtime or debugging system, to adjust Based on the red figure of test system, all devices object that the feeder line included in red figure and the feeder line are included is analyzed, with phase in black figure Same figure and device object is compared, and variance data is synchronized into operation system by base unit incremental mode of device object In system, as the black figure in runtime.
Such as Fig. 1, system is divided into debugging system, runtime two parts.
Debugging system is orientated artwork data as and built and verification, terminal debugging and software module testing, and data are by surveying Try backward running subsystem issue artwork data and leading information.Runtime orientates the monitoring of distribution network operation as, towards scheduling Using.
Keep two system datas consistent with synchronizing function by data publication between debugging system, runtime.Issue refers to Debugging system data write runtime, synchronously refer to runtime data writing debugging system.
From system integral macroscopic angle, the figure of debugging system, model data as system red figure and following mould Type, runtime as system black figure and real-time model.
Pass through the correctness of model checking functional assessment model, figure in debugging system.Runtime passes through red turn of black work( Red graph model can be converted to black graph model.
Debugging system configures preposition application with runtime, is communicated respectively with on-site terminal, two preposition pass through heartbeat Line coordination and terminal communication, the communication linkage that both are set up by exclusive mode and terminal.
As shown in Fig. 2 device object model in the method includes:
Equipment zero order model, including graph topology model and equipment topological model;
Equipment first-order model, including device real-time monitoring model, analytical model for application and other computation models;
Equipment second-level model, including preposition measurement model, Information Interaction Model, system simulation model and other models;Before Measurement model and Information Interaction Model is put to be generated by device real-time monitoring model;System simulation model and other models are by application point Analyse model generation;
Object integrity is verified, according to system configuration in equipment zero order model, equipment first-order model and equipment second-level model Carry out, particular content includes:Hierarchical relationship, unique encodings, voltage class in equipment topological model, affiliated application attribute are not Sky meets foreign key constraint;Signal in real-time monitoring model is associated with equipment;Passage, point in the front-collection model Number, stipulations are to be empty and can be communicated with acquisition terminal foundation.
Debugging system constitutes autonomous system by database server, application server, front server, work station.Backstage System is connected by fire wall with runtime, is externally responsible for realizing that artwork is exchanged with the connection of EMS/GIS/PMS systems;
Increase red-black figure server in runtime, for responding the data syn-chronization of debugging system initiation, analysis, issuing work Make.
Debugging system and the preposition of runtime are deployed in the preposition network segment of identical, both by heartbeat line coordination, mutually Reprimand mode and terminal communication.
Method of the present invention compares with prior art:
A) stable model, figure multi version administrative mechanism are provided, support model retracts:Matched somebody with somebody by configuring with runtime The debugging system quantity of set, it is possible to achieve the network model such as different editions, graphics management, i.e., each debugging system is its correspondence Runtime model, a graphics version;It is available from runtime when some debugging system artwork makes a mistake The mode for rewriteeing data to debugging system realizes the rollback of debugging system artwork version.
B) specification, easy-operating workflow management instrument are provided, possesses and model/figure of different editions is managed;System System develops the operation flow configuration tool that can customize for the artwork data maintenance process of debugging system, runtime, to User provides flow definition and passes through workflow management different editions artwork data.
C) all terminal debugging functions such as period typing, passage configuration, remote-controlled test can be completed in debugging system, are debugged It is synchronized to after the completion of system debug in runtime, runtime without being debugged again to terminal;I.e. preposition heartbeat line technology, leads to Cross management terminal preposition or runtime is preposition in synchronization connection debugging system, before putting equipment in service terminal only with debugging The preposition communication of system, completes the test jobs such as remote control experiment, realizes and is debugged before putting equipment in service with on-site terminal.
D) the heartbeat mechanism that multisystem is coordinated, it is to avoid security risk.Preposition heartbeat passes through coordinated operation system, multiple Debugging system is linked with terminal, there is following items safety assurance mechanism:1st, ensure that a timeslice only communicates with a system; 2nd, only when a system release Terminal communication link, another system just can set up communication link with terminal;3rd, equipment is thrown During fortune, terminal only sets up communication link with runtime, when equipment on the contrary does not put into operation, only sets up communication link with debugging system.
E) on the weak influence of overall system performance:It is all that figure, mould test checking work are completed in debugging system, it is to avoid Substantial amounts of analysis work is completed in runtime, overhead is reduced;When putting into operation, only by the number changed in debugging system According to Partial synchronization into runtime, therefore synchronous data volume is smaller, does not produce pressure to runtime.
Described above is only the preferred embodiment of the present invention, it is noted that for the ordinary skill people of the art For member, without departing from the technical principles of the invention, some improvement and deformation can also be made, these improve and deformed Also it should be regarded as protection scope of the present invention.

Claims (7)

1. the red-black figure implementation method of the automation based on debugging system object-oriented data technology, it is characterised in that including:
1) according to the set distribution management service management flow of electric company, in electrical power distribution automatization system debugging system set up with Equipment zero order model including the related connections figure of distribution scheduling business and equipment topological model;
2) according to the equipment zero order model, equipment level one data model is set up by the distribution scheduling business;The equipment one DBMS model includes device real-time monitoring model, analytical model for application and other computation models;Further according to the equipment one-level Data model generates equipment secondary data simulator;The equipment secondary data model includes preposition measurement model, information and handed over Mutual model, system simulation model and other models;The preposition measurement model and Information Interaction Model are by device real-time monitoring mould Type is generated;The system simulation model and other models are generated by analytical model for application;
3) according to the step 1) and 2) in equipment zero order model, equipment level one data model and equipment secondary data model life Into process, empirically value is that the equipment zero order model, equipment level one data model and equipment secondary data model supplement are full The device parameter of sufficient data object completeness criterion;
4) according to the step 1), 2) and 3), the debugging system generates corresponding red figure;
5) test checking is carried out to the red figure in debugging system;
6) according to the step 5) test the result determine whether to meet service feature, during the service feature is system Equipment zero order model, equipment level one data model, equipment secondary data model and connections figure with the distribution scheduling industry The scene of business is consistent:If being unsatisfactory for the service feature, retract again successively by the step 1), 2), 3), 4) He 5) structure Red figure is built, untill requirement is met;If meeting the service feature, next step is carried out;
7) red figure in debugging system is had access in electrical power distribution automatization system runtime according to stopping power transmission business, carry out red turn it is black Operation, as the black figure in runtime.
2. the red-black figure implementation method of the automation based on debugging system object-oriented data technology according to claim 1, its Be characterised by, in the step 1) in set up connections figure and equipment topological model method be:
Make storehouse using the progress drawing of system artwork storehouse integrated tool and import outside system using system GIS/PMS artworks interface System forms the connections figure and equipment topological model.
3. the red-black figure implementation method of the automation based on debugging system object-oriented data technology according to claim 2, its It is characterised by, the GIS/PMS artworks interface includes:
Workflow management interface, the workflow management interface is used for the work of the workflow of electrical power distribution automatization system and external system Stream connects and forms closed loop workflow;
Model introducting interface, the model introducting interface with incremental mode be used for import CIM/XML derived from external system or The model data of CIM-E specifications;
Figure introducting interface, the figure introducting interface is used for the figure for importing CIM/SVG or CIM-G specifications derived from external system Graphic data;
Bus adapter, the bus adapter is used to connect the bus realization for meeting IEC61968 standard criterions and outside System communicates.
4. the red-black figure implementation method of the automation based on debugging system object-oriented data technology according to claim 1, its It is characterised by, the step 4) in, the red figure includes:
The device object model in do not put into operation primary connection figure, debugging system in debugging system, the different life of equipment; The life cycle include do not put into operation the phase, in Yunqi, treat the date of retirement.
5. the red-black figure implementation method of the automation based on debugging system object-oriented data technology according to claim 4, its It is characterised by, the device object model includes:
Equipment zero order model, the equipment zero order model includes graph topology model and equipment topological model;
Equipment first-order model, the equipment first-order model includes device real-time monitoring model, analytical model for application and other calculating Model;
Equipment second-level model, the equipment second-level model include preposition measurement model, Information Interaction Model, system simulation model and Other models;
Object integrity is verified, and the object integrity verification is according to system configuration in the equipment zero order model, equipment one-level Model and equipment second-level model are carried out.
6. the red-black figure implementation method of the automation based on debugging system object-oriented data technology according to claim 5, its It is characterised by, the object integrity verification includes:
Hierarchical relationship, unique encodings, voltage class, affiliated application attribute in the equipment topological model be not outer for empty or satisfaction Key constraint;
Signal in the real-time monitoring model is associated with equipment;
Passage, period, stipulations in the front-collection model can not communicate for sky and with acquisition terminal foundation.
7. the red-black figure implementation method of the automation based on debugging system object-oriented data technology according to claim 1, its It is characterised by, in the step 7) in, the red turn of black operation includes:
Initiated in runtime or debugging system, based on the red figure of debugging system, analyze the feeder line included in red figure and institute The all devices object that feeder line is included is stated, is compared with identical figure and device object in black figure, by variance data to set Standby object is that base unit incremental mode is synchronized in runtime, as the black figure in runtime.
CN201410331039.1A 2014-07-11 2014-07-11 The red-black figure implementation method of automation based on debugging system object-oriented data technology Active CN104156230B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201410331039.1A CN104156230B (en) 2014-07-11 2014-07-11 The red-black figure implementation method of automation based on debugging system object-oriented data technology

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201410331039.1A CN104156230B (en) 2014-07-11 2014-07-11 The red-black figure implementation method of automation based on debugging system object-oriented data technology

Publications (2)

Publication Number Publication Date
CN104156230A CN104156230A (en) 2014-11-19
CN104156230B true CN104156230B (en) 2017-08-29

Family

ID=51881737

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201410331039.1A Active CN104156230B (en) 2014-07-11 2014-07-11 The red-black figure implementation method of automation based on debugging system object-oriented data technology

Country Status (1)

Country Link
CN (1) CN104156230B (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105119385B (en) * 2015-10-10 2016-12-21 江苏省电力公司苏州供电公司 Electrical power distribution automatization system based on red and black figure mechanism
CN109542977B (en) * 2018-10-29 2023-04-28 国网新疆电力有限公司昌吉供电公司 Future state distribution network graph data processing method based on IEC standard
US10841182B2 (en) 2019-03-29 2020-11-17 Juniper Networks, Inc. Supporting near real time service level agreements
US10897396B2 (en) * 2019-03-29 2021-01-19 Juniper Networks, Inc. Supporting concurrency for graph-based high level configuration models
CN111931315B (en) * 2019-12-26 2022-07-22 南京南瑞继保电气有限公司 Method for realizing distribution network graph transaction part release

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101447693A (en) * 2008-12-08 2009-06-03 安徽中兴继远信息技术有限公司 Automatic system for wireless information transmission distribution network
CN103714150A (en) * 2013-12-29 2014-04-09 国家电网公司 Visualization error correction method of power distribution network topology model

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101447693A (en) * 2008-12-08 2009-06-03 安徽中兴继远信息技术有限公司 Automatic system for wireless information transmission distribution network
CN103714150A (en) * 2013-12-29 2014-04-09 国家电网公司 Visualization error correction method of power distribution network topology model

Non-Patent Citations (3)

* Cited by examiner, † Cited by third party
Title
红黑图机制在中山配网自动化系统中的应用;张立航;《科技创新与应用》;20130618;第155页 *
配电网自动化管理系统模型动态变化处理机制;杜红卫等;《电力系统自动化》;20070325;第31卷(第6期);第52-56页 *
配网自动化系统自动布局技术与图模交互应用研究;李坤;《中国优秀硕士学位论文全文数据库 工程科技II辑》;20140515(第5期);C042-514 *

Also Published As

Publication number Publication date
CN104156230A (en) 2014-11-19

Similar Documents

Publication Publication Date Title
CN103488835B (en) The emulation platform of a kind of dispatch automated system and emulation mode thereof
CN104156230B (en) The red-black figure implementation method of automation based on debugging system object-oriented data technology
CN102929911B (en) Substation and scheduling station method of integrated modeling
CN105095600B (en) A kind of intelligent substation and regulation and control center cooperative modeling method
CN102521398B (en) Modeling method for substation-dispatching center two-level distributed type power grid
CN102663912B (en) Computer simulation systems for integrated dispatching and monitoring of regional power network
CN102750406B (en) Multi-version management method for model set and difference model-based power grid model
CN101465564B (en) In-situ digitalization method and apparatus for transforming plant primary equipment
CN108736465A (en) A kind of future-state electric network model construction method and device
CN105005658B (en) Transformer station's integrated system apparatus logic emulation mode
Georg et al. A HLA based simulator architecture for co-simulating ICT based power system control and protection systems
CN105807658B (en) Method for sharing graph-model information of intelligent substation and scheduling master station
CN103616825B (en) A kind of low cost semi-physical self-adaption clock virtual microgrid test platform
CN102222982B (en) Method and device for realizing programmed operation of transformer station based on SVG (Scalable Vector Graphics) technology
CN105426300B (en) Standard conformance test system and method for CIM/E model of power system
CN108345739B (en) Method for identifying CIME and SVG model file information to realize protection fixed value on-line check function and obtain model
CN112765258B (en) Power distribution network graph model checking management system and method thereof
CN104133443A (en) Method for automatically generating power grid dispatching operation order through power grid overhaul application forms
CN103441570A (en) One-button type sequential control operation control method based on integrated information platform
CN106130185A (en) A kind of monitoring system of electric substation modeling method based on status monitoring information
CN110784020A (en) Automatic checking and accepting equipment, system and method for monitoring information
WO2015010482A1 (en) Cross-system ems status estimation method based on cim/e interaction
CN101964542A (en) Method for accessing IEC61970 dispatching EMS system to IEC61850 digital transformer substation
CN106374458A (en) Intelligent analysis method for identifying unreasonable power-failure management
CN103545917A (en) Scheduling-automation sub-station simulation system

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
CB03 Change of inventor or designer information

Inventor after: Zhou Yanghao

Inventor after: Du Hongwei

Inventor after: Xia Chongpu

Inventor after: Han Tao

Inventor after: Peng Hui

Inventor after: Wu Huichao

Inventor after: Liu Fan

Inventor before: Zhao Yangdong

Inventor before: Zhou Yanghao

Inventor before: Du Hongwei

Inventor before: Xia Chongpu

Inventor before: Han Tao

Inventor before: Peng Hui

Inventor before: Wu Huichao

Inventor before: Liu Fan

COR Change of bibliographic data
CB03 Change of inventor or designer information

Inventor after: Zhao Yangdong

Inventor after: Zhou Yanghao

Inventor after: Du Hongwei

Inventor after: Xia Chongpu

Inventor after: Han Tao

Inventor after: Peng Hui

Inventor after: Wu Huichao

Inventor after: Liu Fan

Inventor before: Zhou Yanghao

Inventor before: Du Hongwei

Inventor before: Xia Chongpu

Inventor before: Han Tao

Inventor before: Peng Hui

Inventor before: Wu Huichao

Inventor before: Liu Fan

CB03 Change of inventor or designer information
GR01 Patent grant
GR01 Patent grant