CN101867192A - Reactive compensation control simulation test system - Google Patents

Reactive compensation control simulation test system Download PDF

Info

Publication number
CN101867192A
CN101867192A CN200910156924A CN200910156924A CN101867192A CN 101867192 A CN101867192 A CN 101867192A CN 200910156924 A CN200910156924 A CN 200910156924A CN 200910156924 A CN200910156924 A CN 200910156924A CN 101867192 A CN101867192 A CN 101867192A
Authority
CN
China
Prior art keywords
data
module
voltage
service module
interface service
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.)
Granted
Application number
CN200910156924A
Other languages
Chinese (zh)
Other versions
CN101867192B (en
Inventor
赵启承
胡骅
池伟
陈金法
陆翌
金涌涛
Original Assignee
Electric Power Research Institute of State Grid Zhejiang Electric Power Co Ltd
Zhejiang Electric Power Test and Research Insititute
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 Electric Power Research Institute of State Grid Zhejiang Electric Power Co Ltd, Zhejiang Electric Power Test and Research Insititute filed Critical Electric Power Research Institute of State Grid Zhejiang Electric Power Co Ltd
Priority to CN200910156924XA priority Critical patent/CN101867192B/en
Publication of CN101867192A publication Critical patent/CN101867192A/en
Application granted granted Critical
Publication of CN101867192B publication Critical patent/CN101867192B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B90/00Enabling technologies or technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02B90/20Smart grids as enabling technology in buildings sector
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E40/00Technologies for an efficient electrical power generation, transmission or distribution
    • Y02E40/30Reactive power compensation
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y04INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
    • Y04SSYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
    • Y04S40/00Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them
    • Y04S40/12Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment
    • Y04S40/124Systems for electrical power generation, transmission, distribution or end-user application management characterised by the use of communication or information technologies, or communication or information technology specific aspects supporting them characterised by data transport means between the monitoring, controlling or managing units and monitored, controlled or operated electrical equipment using wired telecommunication networks or data transmission busses

Abstract

The invention discloses a reactive compensation control simulation test system. A real-time simulation system is mainly suitable for the detailed researches on the transient state process and the dynamic process of the trunk network and the local system of large power systems and the test researches on physical devices, but cannot be used for verifying or optimizing the control strategies for a voltage reactive control device in a single system or a regional system. The technical scheme is that the reactive compensation control simulation test system is characterized in that the reactive compensation control simulation test system comprises a task scheduling management center, a man-machine interface, a data interface service module, a power flow calculation module, a communication interface service module, a controller power supply and a PLC driver module. The system can be used for testing a single voltage reactive control device or a plurality of electrically connected voltage reactive control devices and verifying or optimizing the control strategies for the voltage reactive control device.

Description

Reactive compensation control simulation test system
Technical field
The present invention relates to the electric system simulation field, specifically a kind of reactive compensation control simulation test system.
Background technology
Electric system simulation is to set up model according to practical power systems, thereby utilizes model to study the work behavior and the feature of electric power system, is the important tool of electric power system experimental study, planning and designing and management and running.Correct selection electric power system model and parameter are the bases of electric system simulation.A large amount of electric power system engineering research and accident emulation show that model and parameter have significant impact to electric system simulation precision and confidence level.
With regard to present technical merit, the scale of Power System Off-line emulation is unrestricted substantially, can more intactly simulate large-scale electrical power system, is applicable to the transient state and the dynamic process of research large power system complexity.But the calculated off-line program can not insert the actual physical device carries out emulation, need Mathematical Modeling accurately for the simulation of novel electric power system physical device, and the acquisition of Mathematical Modeling needs also l-G simulation test to verify except that theory analysis.And the characteristics of power system real-time simulation system are simulation electric power system real-time processes, can unify to simulate electromagnetic transient, electromechanical transient process and the follow-up dynamic process of electric power system, can insert the actual physical device and carry out analogue test.But because the requirement of emulation real-time and the restriction of analogue system hardware size, general real-time emulation system the electric power system scale that can simulate always limited.Real-time emulation system mainly is applicable to backbone network and the transient state of local system and the experimental study of dynamic process and physical unit that studies large power system in great detail, but can't verify or optimize the voltage and reactive power control system control strategy in single or the district system.
Summary of the invention
Technical problem to be solved by this invention is to overcome the defective that above-mentioned prior art exists, a kind of reactive compensation control simulation test system is provided, be used for single voltage and reactive power control system or several have the test of the voltage and reactive power control system that is electrically connected, with checking or optimize the control strategy of voltage and reactive power control system.
For this reason, the technical solution used in the present invention is as follows: reactive compensation control simulation test system, it is characterized in that it comprises task scheduling administrative center, man-machine interface, data-interface service module, trend computing module, communication interface service module, charged power and PLC (abbreviation of input and output terminal case) driver module
Task scheduling administrative center is used for being responsible for the dispatching management of other each several parts, monitors the ruuning situation of each several part, and the normal operation of whole system is safeguarded in the request of response each several part;
The data-interface service module, be used to manage the related data of whole system, for other each several parts provide unified data-interface service, respond the reading and writing data request of other each several parts, guarantee that each several part can correctly obtain data efficiently, other each several part reads and writes data and all finishes by this part, so both can realize the uniqueness of data source, the interface that also can keep other each several part to read and write data is unified, make things convenient for further expanding of system, the data source that this part is mainly managed comprises the flow data file, real-time data base, historical data base and and the second-time development service module, utilize the second-time development service module can develop drawing tool, with drawing tool can the draw geographical winding diagram (abbreviation geographical map) of the electrical network of studying and station wiring diagram (being called for short the station figure of factory);
Man-machine interface is used for being responsible for the graphical demonstration of data, and the user operates response, data query, and the derivation of Excel form, and man-machine interface comprises that also the dynamic display module of element, test monitor submodule and clock module;
The trend computing module is used for electric network swim and calculates, and reads trend by the data-interface service module and calculates desired data, then result of calculation is write file or corresponding database by the data-interface service module;
The communication interface service module is used for relevant information is issued to voltage and reactive power control system (voltage and reactive power control system abbreviates VQC as), receives the return value of VQC then, is transmitted to the data-interface service module, carries out the packing and the parsing of data;
Charged power is used for converting relevant information to electric parameters and sends tested voltage and reactive power control system to;
The PLC driver module is used for converting relevant information to switching value and sends tested voltage and reactive power control system to.
Described man-machine interface, data-interface service module, trend computing module and communication interface service module are finished by a computing platform, the main frame of this computing platform is an industrial PC, be furnished with Ethernet, USB and RS232 interface, industrial PC connects charged power and PLC driver module respectively by Ethernet switch.
The present invention exports to charged power with the information such as voltage that computing platform calculates, and suitable testing power supply is provided for the test of VQC equipment; And the status data of electrical network related elements exported to VQC equipment; With the control results acquisition of VQC equipment and send computing platform to, computing platform is made corresponding feedback according to the action command that returns, thereby forms a complete closed loop then.
Major function of the present invention is as follows:
(1) constantly automatic or manual changes electric network composition and parameter, the trend of repeated calculation electrical network;
(2) according to flow data, draw geographical winding diagram, station wiring diagram, show necessary, commonly used data message;
(3) in station wiring diagram, by the closure of operation bus connection switch, can change the structure of electrical network, similarly, also can control the switching of idle control appliance;
(4) in the figure of factory station, can double-click the capacitor group can associated configuration external analog signal source (voltage, electric current, phase place etc.), switching value signal contact etc., is used to export analog signals and gathers switching value signal etc.;
(5) trend is calculated and can be carried out communication with VQC or soft VQC, according to VQC or soft VQC return state repeated calculation trend;
(6) in the process of trend repeated calculation, on geographical winding diagram or station wiring diagram, can show computing mode information in time;
(7) flexible, practical statistical query function can the query display user appointed information, writes down corresponding VQC the result of the action under the various data modes, and can export to the Excel form;
(8) system's playback function: when providing control strategy for the VQC equipment in many power stations, system should be able to preserve current network topology, electrical network parameter and load data, generator output level, information such as the load tap changer position of carrying and the idle control appliance amount of putting into operation are arranged, so that can carry out system's playback behind the control strategy of carrying out a certain VQC equipment;
(9) exist in electrical network under the situation of a plurality of VQC, the VQC of maskable appointment makes it not participate in to regulate; Also can specify the VQC assembled scheme that participates in adjusting;
(10) can edit time sequencing and the combinational logic sequence of movement that VQC moves;
(11) supporting the user to edit increases different types of VQC communication protocol, can adopt dynamic link library (.DLL file) mode or other modes.
The present invention can carry out good expansion by the software section of computing platform and hardware communication interface, can satisfy the demand of bigger system scale in the future; Software systems calculated capacity and access semaphore are unrestricted; Maximum analog amount output channel number: 50; Maximum number amount output/input channel number: 196 (based on the numbers of the I/O passage of PLC).
The invention will be further described below in conjunction with specification drawings and specific embodiments.
Description of drawings
Fig. 1 is the block diagram of system of the present invention.
Fig. 2 is a typical operation flow chart of the present invention.
Embodiment
Reactive compensation control simulation test system as shown in Figure 1, it is made up of task scheduling administrative center, man-machine interface, data-interface service module, trend computing module and communication interface service module.
Task scheduling administrative center is used for being responsible for the dispatching management of other each several parts, monitors the ruuning situation of each several part, the request of response each several part.
The data-interface service module is used to manage flow data file, real-time data base, historical data base and the second-time development service module of whole system, for other each several parts provide unified data-interface service, responds the reading and writing data request of other each several parts.
Man-machine interface is used for being responsible for the graphical demonstration of data, and the user operates response, data query, and the derivation of Excel form, and man-machine interface comprises that the dynamic display module of element, test monitor submodule and clock module.
The trend computing module is used for electric network swim and calculates, and reads trend by the data-interface service module and calculates desired data, then result of calculation is write file or database by the data-interface service module.
The communication interface service module is used for relevant information is issued to voltage and reactive power control system, receives the return value of voltage and reactive power control system then, is transmitted to the data-interface service module, carries out the packing and the parsing of data.
Man-machine interface, data-interface service module, trend computing module and communication interface service module are finished by computing platform, the main frame of this computing platform is an industrial PC, be furnished with Ethernet, USB and RS232 interface, industrial PC connects charged power and PLC driver module respectively by Ethernet switch.
The typical operation flow process of using this emulation test system is as shown in Figure 2:
By resolving the flow data file, use the drawing tool of second-time development service Development of Module, the geographical winding diagram and the station wiring diagram of the electrical network of studying that can draw.In geographical winding diagram, can clearly recognize the grid structure and the running status of electrical network; In station wiring diagram, drawn the various device in the factory station, comprise bus, transformer, circuit breaker, rest capacitance device, reactor etc., convenient connection and the ruuning situation of understanding each electric network element in the factory station can be operated the electrical network related elements simultaneously easily.According to research and content measurement, the relevant parameter of VQC is set, call the trend computing module then and calculate electric network swim.If calculation of tidal current satisfies the condition of convergence, then show final result of calculation, stop cycle calculations; If calculation of tidal current does not satisfy the condition of convergence, then show calculated case when front-wheel.Whether the user can be arranged on and allow the user to operate the electrical network related elements in each loop calculation, such as switching of capacitor etc.Calculation of tidal current sends to charged power by the Modbus driver module and is further processed, and is issued to VQC then, realizes the control to voltage power-less; The status data of electrical network related elements is exported to voltage and reactive power control system by the PLC driver module.Action command after voltage and reactive power control system is controlled it returns to the trend computing module by the PLC driver module, carries out the trend of next round and calculates and voltage power-less control.
Except that this typical operation flow process, other operational circumstances also within the native system process range, such as: based on geographical winding diagram and the station wiring diagram file before just finished operate, by graphing input electrical network parameter, the VQC closed-loop control does not restrain but surpass maximum cycle-index, VQC and the flow calculation program of allowing and finish whole computational process etc. automatically.
Computing platform and charged power connect, and by charged power output analog quantity, consider that charged power is furnished with the RS232 interface, and the communication of computing platform and charged power can be adopted the mode of Ethernet.
The MODBUS agreement is adopted in communication between main frame and charged power.
Computing platform need give VQC as input by the status data of hardware device PLC output electrical network related elements (as circuit breaker), and the output of electrical network related elements action command is finished by PLC.
The acquisition function of VQC control consequential signal is by the user interface of definition standard, and the communication code of reality is encapsulated into the form of DLL, and the permission user develops new DLL voluntarily to satisfy the more demand of user.Following two kinds communication modes is arranged: a) directly gather, use the input channel of PLC to realize; B) adopt certain communication protocol to transmit remote motion signal, IEC60870-5-101 stipulations for example, VQC has RS232 or RS485 interface, if adopt the RS232 interface, can be connected with computing platform by the protocol converter of a RS232/ Ethernet.
The IEC60870-5-101 agreement is adopted in communication between main frame and charged power, also can support other communications protocol in the future, as: 60870-5-104,61850.
Requiring of charged power of the present invention is as follows:
(1) alternating voltage: amount limit: 100V, 220V, 400V; Adjustable range: amount limit * (0~130) %; Accuracy: 0.05 grade; Stability: 0.03%/3min; The distortion factor :≤0.2% (linear non-capacitive load); Output loading capacity: every phase 20VA (exporting 120% o'clock);
(2) alternating current: amount limit: 1A, 5A, 10A; Adjustable range: 1A, 5A measures limit * (0~140) %; 10A measures limit * (0~120) %; Accuracy: 0.05 grade; Stability: 0.03%/3min; The distortion factor :≤0.2% (linear load); Output loading capacity: 20VA (exporting 120% o'clock);
(3) phase place: adjustable range: 0 °~360 °; Resolution: 0.01 °; Accuracy: 0.05 °;
(4) telemechanical stipulations: RS232 (join RS232 outward and change Ethernet interface) adopts the MODBUS stipulations.

Claims (5)

1. reactive compensation control simulation test system is characterized in that it comprises task scheduling administrative center, man-machine interface, data-interface service module, trend computing module, communication interface service module, charged power and PLC driver module,
Task scheduling administrative center is used for being responsible for the dispatching management of other each several parts, monitors the ruuning situation of each several part, the request of response each several part;
The data-interface service module is used to manage the related data of whole system, for other each several parts provide unified data-interface service, responds the reading and writing data request of other each several parts;
Man-machine interface is used for being responsible for the graphical demonstration of data, and the user operates response, data query, and the derivation of Excel form;
The trend computing module is used for electric network swim and calculates, and reads trend by the data-interface service module and calculates desired data, then result of calculation is write file or database by the data-interface service module;
The communication interface service module is used for relevant information is issued to tested voltage and reactive power control system, receives the return value of voltage and reactive power control system then, is transmitted to the data-interface service module, carries out the packing and the parsing of data;
Charged power is used for converting relevant information to electric parameters and sends tested voltage and reactive power control system to;
The PLC driver module is used for converting relevant information to switching value and sends tested voltage and reactive power control system to.
2. reactive compensation control simulation test system according to claim 1, the operating process that it is characterized in that using native system is as follows: by resolving flow data, the relevant parameter of voltage and reactive power control system is set, calculate electric network swim with the trend computing module then, if calculation of tidal current satisfies the condition of convergence, then show final result of calculation, stop cycle calculations; If calculation of tidal current does not satisfy the condition of convergence, then show calculated case when front-wheel, calculation of tidal current sends to charged power by the Modbus driver module and is further processed, be issued to voltage and reactive power control system then, realization is to the control of voltage power-less, the status data of electrical network related elements is exported to voltage and reactive power control system by the PLC driver module, action command after voltage and reactive power control system is controlled it returns to the trend computing module by the PLC driver module, carries out the trend of next round and calculates and voltage power-less control.
3. reactive compensation control simulation test system according to claim 2, it is characterized in that described man-machine interface, data-interface service module, trend computing module and communication interface service module finish by a computing platform, the main frame of this computing platform is an industrial PC, be furnished with Ethernet, USB and RS232 interface, industrial PC connects charged power and PLC driver module respectively by Ethernet switch.
4. reactive compensation control simulation test system according to claim 1 and 2 is characterized in that the data of described data-interface service module management comprise flow data file, real-time data base, historical data base and second-time development service module.
5. reactive compensation control simulation test system according to claim 4 is characterized in that described man-machine interface comprises that also the dynamic display module of element, test monitor submodule and clock module.
CN200910156924XA 2009-12-24 2009-12-24 Reactive compensation control simulation test system Expired - Fee Related CN101867192B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN200910156924XA CN101867192B (en) 2009-12-24 2009-12-24 Reactive compensation control simulation test system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN200910156924XA CN101867192B (en) 2009-12-24 2009-12-24 Reactive compensation control simulation test system

Publications (2)

Publication Number Publication Date
CN101867192A true CN101867192A (en) 2010-10-20
CN101867192B CN101867192B (en) 2012-08-22

Family

ID=42958797

Family Applications (1)

Application Number Title Priority Date Filing Date
CN200910156924XA Expired - Fee Related CN101867192B (en) 2009-12-24 2009-12-24 Reactive compensation control simulation test system

Country Status (1)

Country Link
CN (1) CN101867192B (en)

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102035210A (en) * 2011-01-05 2011-04-27 河北省电力研究院 Relaxative-constraint powerless equipment optimization method for power system
CN102636997A (en) * 2012-05-13 2012-08-15 马玉春 Simulation method for analog input and switch output module
CN102820649A (en) * 2012-04-09 2012-12-12 华北电力大学 Method for building real time digital system (RTDS)-energy management system (EMS) system-level closed-loop control experiment simulation platform
CN103280814A (en) * 2013-03-26 2013-09-04 南京南瑞集团公司 Wind power plant reactive voltage comprehensive control system and method
CN104391196A (en) * 2014-11-24 2015-03-04 武汉大学 Function and performance detection and inspection method and system of dynamic compensation device of smart power grid
CN104579165A (en) * 2015-01-22 2015-04-29 国家电网公司 Photovoltaic power station dynamic reactive response performance site testing method
CN109245110A (en) * 2018-11-07 2019-01-18 国家电网有限公司 A kind of distribution network voltage rich in small power station optimizes and revises method

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101252281B (en) * 2008-02-28 2010-11-10 国电南瑞科技股份有限公司 Method and system for testing electric voltage reactive-load integrated control functions
CN101364738B (en) * 2008-08-15 2010-09-08 国电南瑞科技股份有限公司 Tracing and simulating test method for voltage reactive integrated control system

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102035210A (en) * 2011-01-05 2011-04-27 河北省电力研究院 Relaxative-constraint powerless equipment optimization method for power system
CN102035210B (en) * 2011-01-05 2013-09-11 河北省电力公司电力科学研究院 Relaxative-constraint powerless equipment optimization method for power system
CN102820649A (en) * 2012-04-09 2012-12-12 华北电力大学 Method for building real time digital system (RTDS)-energy management system (EMS) system-level closed-loop control experiment simulation platform
CN102820649B (en) * 2012-04-09 2014-12-03 华北电力大学 Method for building real time digital system (RTDS)-energy management system (EMS) system-level closed-loop control experiment simulation platform
CN102636997A (en) * 2012-05-13 2012-08-15 马玉春 Simulation method for analog input and switch output module
CN103280814A (en) * 2013-03-26 2013-09-04 南京南瑞集团公司 Wind power plant reactive voltage comprehensive control system and method
CN103280814B (en) * 2013-03-26 2016-04-20 南京南瑞集团公司 A kind of wind power plant reactive voltage complex control system and method
CN104391196A (en) * 2014-11-24 2015-03-04 武汉大学 Function and performance detection and inspection method and system of dynamic compensation device of smart power grid
CN104579165A (en) * 2015-01-22 2015-04-29 国家电网公司 Photovoltaic power station dynamic reactive response performance site testing method
CN104579165B (en) * 2015-01-22 2018-07-13 国家电网公司 A kind of on-the-spot test method of photovoltaic plant dynamic reactive response performance
CN109245110A (en) * 2018-11-07 2019-01-18 国家电网有限公司 A kind of distribution network voltage rich in small power station optimizes and revises method

Also Published As

Publication number Publication date
CN101867192B (en) 2012-08-22

Similar Documents

Publication Publication Date Title
CN101867192B (en) Reactive compensation control simulation test system
CN102254074B (en) Automatic modeling method of intelligent transformer substation spacer
CN104239059B (en) Intelligence based on full model matches somebody with somebody the construction method of electricity consumption unified information support platform
CN202159106U (en) Intelligent tester with intelligent power grid self-healing control technology
CN102663912A (en) Computer simulation systems for integrated dispatching and monitoring of regional power network
CN107516895A (en) Power distribution network rapid simulation method, device, storage medium and its computer equipment
CN103207336A (en) Lightning arrester operation analog simulation system
CN110460076A (en) The automatic checkout system and method for grid side energy storage Monitor Process control system
CN102025151A (en) Method for acquiring power flow cross section data of online operation state of power grid
CN102708196A (en) Method for coordinating and sharing transformer substation end and dispatching end model based on E language
Ma et al. Study on smart home energy management system based on artificial intelligence
CN103455554A (en) Intelligent power distribution network model base system
CN109490769A (en) A kind of chip protective relaying device, tester and its control method, connector
CN201611448U (en) Closed loop test platform of control protection device in electrical power system
CN112859645A (en) Comprehensive energy system performance test platform
CN107067161B (en) Automatic checking implementation system and method for information point table in smart power grid
CN103605293B (en) A kind of substation relay protection emulation test system and emulation test method thereof
Gomes et al. Energy analyzer emulator for microgrid implementation and demonstration and respective gateway
CN203217008U (en) A lightning arrester operation analog simulation system
Bruno et al. First activities and power-hardware-in-the-loop tests at the public research laboratory LabZERO
Bai et al. Automatic modeling and optimization for the digital twin of a regional multi-energy system
CN116011946A (en) Method, system and equipment for generating power grid training teaching plan
CN201821314U (en) Modularized microcomputer excitation regulator
CN115085208A (en) Management method for reactive voltage regulation scheme
Foster et al. University microgrid testbeds: A literature survey

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
ASS Succession or assignment of patent right

Free format text: FORMER OWNER: THE TECHNICAL SERVICE CENTER OF ZHEJIANG ELECTRIC POWER EXPERIMENT RESEARCH INSTITUTE

Effective date: 20121217

Owner name: THE TECHNICAL SERVICE CENTER OF ZHEJIANG ELECTRIC

Free format text: FORMER OWNER: ZHEJIANG ELECTRIC POWER TEST AND RESEARCH INSITITUTE

Effective date: 20121217

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20121217

Address after: Hangzhou City, Zhejiang province 310014 City Zhaohui village eight district

Patentee after: The Technical Service Center of Zhejiang Electric Power Experiment Research Institute

Address before: The eight district of Hangzhou city in Zhejiang province 310014 Huadian Zhaohui under No. 1 Lane

Patentee before: Zhejiang Electric Power Test And Research Insititute

Patentee before: The Technical Service Center of Zhejiang Electric Power Experiment Research Institute

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

Granted publication date: 20120822

Termination date: 20201224

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