CN110989980A - Load control acquisition monitoring system based on GIS positioning - Google Patents

Load control acquisition monitoring system based on GIS positioning Download PDF

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Publication number
CN110989980A
CN110989980A CN201911175299.3A CN201911175299A CN110989980A CN 110989980 A CN110989980 A CN 110989980A CN 201911175299 A CN201911175299 A CN 201911175299A CN 110989980 A CN110989980 A CN 110989980A
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CN
China
Prior art keywords
module
data
gis
monitoring system
maintenance
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Withdrawn
Application number
CN201911175299.3A
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Chinese (zh)
Inventor
洪娟
袁永
张雪蕾
王涓
鞠玲
蔡鹏�
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State Grid Jiangsu Electric Power Co Ltd
Taizhou Power Supply Co of State Grid Jiangsu Electric Power Co Ltd
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State Grid Jiangsu Electric Power Co Ltd
Taizhou Power Supply Co of State Grid Jiangsu Electric Power Co Ltd
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Application filed by State Grid Jiangsu Electric Power Co Ltd, Taizhou Power Supply Co of State Grid Jiangsu Electric Power Co Ltd filed Critical State Grid Jiangsu Electric Power Co Ltd
Priority to CN201911175299.3A priority Critical patent/CN110989980A/en
Publication of CN110989980A publication Critical patent/CN110989980A/en
Withdrawn legal-status Critical Current

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F8/00Arrangements for software engineering
    • G06F8/20Software design
    • G06F8/22Procedural
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/20Information retrieval; Database structures therefor; File system structures therefor of structured data, e.g. relational data
    • G06F16/29Geographical information databases

Abstract

The invention belongs to the field of negative control acquisition monitoring systems, and particularly relates to a negative control acquisition monitoring system based on GIS positioning. The GIS positioning-based load control acquisition monitoring system comprises a data input module, a dispatching module, an inquiry module, a geographic position navigation module, an inquiry module and a high-level application module. Through collecting the color change of failure, grasp the progress of the site work, improve the management to the site work. And the function of summarizing and archiving the fault maintenance information is added.

Description

Load control acquisition monitoring system based on GIS positioning
Technical Field
The invention belongs to the field of negative control acquisition monitoring systems, and particularly relates to a negative control acquisition monitoring system based on GIS positioning.
Background
At present, the development and construction speed of cities is more and more rapid in China's rapid development and continuous growth of social economy and electric power systems. Meanwhile, the scale of the power network architecture is larger, the electrical equipment is more complex, and more factors need to be considered in the process of power network construction. Along with the continuous improvement of the technological degree and the living standard of people, the dependence of various large-scale and civil electric equipment on an electric power system is larger and larger, the requirement is higher and higher, a series of problems of quality of power supply and electric energy, reliability of power supply, electric power market reformation, environmental protection and the like of a user reach unprecedented attention height, and the requirements can not be met by using the traditional design, operation, maintenance and management means. As an operation maintenance and planning department of a power grid, in addition to the above problems, how to interleave complicated and huge power grid distribution, increasingly complex power and electrical facilities, real-time changing power grid load information, and constantly moving urban and rural buildings and roads, especially how to provide numerous data related to geographical position and spatial information in a power network to related technical staff timely and accurately when needed, which requires rapid acquisition, accurate recording and scientific analysis processing of data information, unified management and multilayer protection of graphic information, geographical information and data information of various electrical devices to realize optimal combination and real-time sharing of resources is obviously a difficult point and a key point of the problem. Therefore, the traditional power graphic system can not meet the requirements of safe, stable, economic and reliable operation of the power grid, and the problems existing in the conventional power grid management and maintenance mode are increasingly obvious.
At present, the taizhou power grid structure has a certain scale, and a large number of various electrical equipment facilities with different specifications are distributed in wide regions and spaces. The planning management and operation and maintenance departments of power supply companies propose to describe and manage complex and variable power grids through computers, reasonably arrange maintenance plans, shorten fault repair time and the like.
At present, the power supply company still has a traditional method for collecting and managing power geographic information. Technical personnel need to obtain a relatively accurate map from a related unit, then, specific positions and related information of various electrical equipment and power lines are plotted according to actual conditions, and the information of the map is built into a system and recorded and filed.
Disclosure of Invention
The invention aims to intuitively display the geographical position distribution and acquisition conditions of the user through the system, shorten the working time of searching the user site through positioning and improve the working efficiency. Through collecting the color change of failure, grasp the progress of the site work, improve the management to the site work. And the function of summarizing and archiving the fault maintenance information is added.
In order to achieve the purpose, the invention adopts the following technical scheme.
A GIS system of the load control acquisition monitoring system based on GIS positioning comprises a data input module, a dispatching module, an inquiry module, a geographic position navigation module, an inquiry module and a high-level application module.
Furthermore, the GIS system mainly realizes the visual browsing of the electric equipment of the power grid and map data, and the input and display of various map data; modification and query of information of power transmission and transformation equipment and transformer substations, establishment and dispatching of work orders, and some high-level application parts.
Further, the data input module is responsible for inputting GIS space data and attribute data. The form import function is provided, so that the user can import the form once according to the standard format of the form and can input the form manually. The module also has data modification and deletion functions, and has basic logical judgment and verification functions for input data. After the input is completed, the corresponding object can be automatically generated according to the input.
Furthermore, the order dispatching module is mainly used for selecting the existing equipment by a switchboard staff to report and repair, corresponding maintenance staff can be selected after the work order is established, the maintenance staff can check the work order dispatched to the staff in the small program and navigate in the small program according to the longitude and latitude information.
Furthermore, the query module can perform query and result output of various data, can set query logic, can perform query in a region according to a coordinate system, and can output data.
Furthermore, the advanced application module provides an interface for hooking the system, and provides convenience for developing other advanced geographic information system applications.
Furthermore, the system can rely on small programs, the geographic position can be accurately navigated, third-party map applications such as a Gaudian map can be opened, the arrival time is shortened, and the maintenance efficiency is improved.
Further, in order to realize the above functions, the design method adopted in the earlier stage of the invention is as follows:
1. and developing GIS basic geographic information, defining a GIS basic information development database design part, establishing a corresponding data form in the SQLServer, realizing the management of attribute data, establishing a corresponding relation of a background database hierarchical table, and realizing the correspondence of the database.
2. Determining the relationship attributes among the tables according to the logic relationship among the electric power data so as to realize operations such as quick query and the like at a later stage, wherein the development of GIS basic geographic information is the basis and the premise of the whole development process, and only after the GIS basic development is completed, the GIS basic development can have a layered design framework, and the subsequent development can be carried out;
3. the more detailed the GIS information is, the more complete the data in the database is correspondingly; and finally, carrying out integrated development, and combining the GIS platform with the database platform to realize the information interactive sharing of data and graphs.
Furthermore, by combining with an electronic map of Thai city, the GIS status is carried out on the urban load control user terminal, and a channel for writing in, positioning and modifying the positioning is reserved, so that the positioning can realize a navigation function, and field maintenance personnel can be helped to quickly find the user.
And counting the acquisition conditions of the load control users by adopting system background data, reflecting the fault conditions of each user to the geographical position distribution map of the user, and forming visual acquisition condition display comprising a terminal address, an acquisition point name, a total number of users, a terminal category, a longitude, a latitude and a user address.
Further, the order module further comprises: firstly, generating information of a corresponding fault user and a corresponding on-site maintenance personnel contact telephone, and transmitting the information to be handled of a system of a corresponding host personnel; and secondly, the main staff performs fault verification work, confirms that the fault state needs field maintenance, and sends the maintenance information to the mobile phone of the corresponding field maintenance staff to arrange field terminal maintenance.
The system has the function of summarizing fault maintenance information, can be used for counting and maintaining fault information and field maintenance data by multiple persons at the same time, automatically updates data in the database, and solves the problem that the data cannot be shared and edited at the same time in the prior work
The beneficial effects are that:
through the system, the geographical position distribution and the acquisition condition of the user can be visually displayed, the working time for searching the user site is shortened through positioning, and the working efficiency is improved. Through collecting the color change of failure, grasp the progress of the site work, improve the management to the site work. And the function of summarizing and archiving the fault maintenance information is added.
1. Shorten the working time (accurate positioning, shorten the searching time of the user)
2. Improving the processing efficiency of faults
3. The system automatically generates the work order, facilitates the processing of abnormal data by the main station and improves the working efficiency
4. And the automatic summary of fault information is increased, so that the daily management of on-site construction and maintenance is facilitated.
Drawings
FIG. 1 is a schematic representation of the present invention
Detailed Description
The invention is described in detail below with reference to specific embodiments.
The specific implementation mode is as follows:
a GIS system of the load control acquisition monitoring system based on GIS positioning comprises a data input module, a dispatching module, an inquiry module, a geographic position navigation module, an inquiry module and a high-level application module.
Furthermore, the GIS system mainly realizes the visual browsing of the electric equipment of the power grid and map data, and the input and display of various map data; modification and query of information of power transmission and transformation equipment and transformer substations, establishment and dispatching of work orders, and some high-level application parts.
Further, the data input module is responsible for inputting GIS space data and attribute data. The form import function is provided, so that the user can import the form once according to the standard format of the form and can input the form manually. The module also has data modification and deletion functions, and has basic logical judgment and verification functions for input data. After the input is completed, the corresponding object can be automatically generated according to the input.
Furthermore, the order dispatching module is mainly used for selecting the existing equipment by a switchboard staff to report and repair, corresponding maintenance staff can be selected after the work order is established, the maintenance staff can check the work order dispatched to the staff in the small program and navigate in the small program according to the longitude and latitude information.
Furthermore, the query module can perform query and result output of various data, can set query logic, can perform query in a region according to a coordinate system, and can output data.
Furthermore, the advanced application module provides an interface for hooking the system, and provides convenience for developing other advanced geographic information system applications.
Furthermore, the system can rely on small programs, the geographic position can be accurately navigated, third-party map applications such as a Gaudian map can be opened, the arrival time is shortened, and the maintenance efficiency is improved.
Further, in order to realize the above functions, the design method adopted in the earlier stage of the invention is as follows:
1. and developing GIS basic geographic information, defining a GIS basic information development database design part, establishing a corresponding data form in the SQLServer, realizing the management of attribute data, establishing a corresponding relation of a background database hierarchical table, and realizing the correspondence of the database.
2. Determining the relationship attributes among the tables according to the logic relationship among the electric power data so as to realize operations such as quick query and the like at a later stage, wherein the development of GIS basic geographic information is the basis and the premise of the whole development process, and only after the GIS basic development is completed, the GIS basic development can have a layered design framework, and the subsequent development can be carried out;
3. the more detailed the GIS information is, the more complete the data in the database is correspondingly; and finally, carrying out integrated development, and combining the GIS platform with the database platform to realize the information interactive sharing of data and graphs.
Furthermore, by combining with an electronic map of Thai city, the GIS status is carried out on the urban load control user terminal, and a channel for writing in, positioning and modifying the positioning is reserved, so that the positioning can realize a navigation function, and field maintenance personnel can be helped to quickly find the user.
And counting the acquisition conditions of the load control users by adopting system background data, reflecting the fault conditions of each user to the geographical position distribution map of the user, and forming visual acquisition condition display comprising a terminal address, an acquisition point name, a total number of users, a terminal category, a longitude, a latitude and a user address.
Further, the order module further comprises: firstly, generating information of a corresponding fault user and a corresponding on-site maintenance personnel contact telephone, and transmitting the information to be handled of a system of a corresponding host personnel; and secondly, the main staff performs fault verification work, confirms that the fault state needs field maintenance, and sends the maintenance information to the mobile phone of the corresponding field maintenance staff to arrange field terminal maintenance.
The system has the function of summarizing fault maintenance information, can be used for counting and maintaining the fault information and field maintenance data by multiple persons at the same time, and can automatically update data in the database, thereby solving the inconvenience that the data cannot be shared and edited at the same time in the current work.
Finally, it should be noted that the above embodiments are only used for illustrating the technical solutions of the present invention, and not for limiting the protection scope of the present invention, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications or equivalent substitutions can be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention.

Claims (6)

1. The utility model provides a burden accuse collection monitoring system based on GIS location which characterized in that includes: the system comprises a data input module, a list sending module, a query module, a geographic position navigation module, a query module and a high-level application module; the data input module is responsible for inputting GIS spatial data and attribute data; the order dispatching module is mainly used for selecting the existing equipment for repair by a switchboard staff, corresponding maintenance staff can be selected after the work order is established, and the maintenance staff can check the work order dispatched to the staff in a small program; the query module can query various data and output results, can set query logic, can query in a coordinate system area, and can output data; the advanced application module provides an interface for hooking a system, and provides convenience for developing other advanced geographic information system applications.
2. The GIS positioning-based load control acquisition monitoring system according to claim 1, wherein the data input module has a form import function, so that a user can import data at one time according to a standard format of a form and can also input data manually, and after the data input is completed, a corresponding object can be automatically generated according to the input data.
3. The GIS positioning-based negative control acquisition monitoring system according to claim 2, wherein the data input module has writing positioning and modifying positioning.
4. The GIS location-based negative control acquisition monitoring system as claimed in claim 2, wherein the data input module is mainly used for acquiring a terminal address, an acquisition point name, a total household number, a terminal category, a longitude, a latitude and a user address of a user.
5. The GIS positioning-based negative control acquisition monitoring system according to claim 1, wherein the dispatch module further comprises: firstly, generating information of a corresponding fault user and a corresponding on-site maintenance personnel contact telephone, and transmitting the information to be handled of a system of a corresponding host personnel; and secondly, the main staff performs fault verification work, confirms that the fault state needs field maintenance, and sends the maintenance information to the mobile phone of the corresponding field maintenance staff to arrange field terminal maintenance.
6. The GIS positioning-based negative control acquisition monitoring system according to claim 1, wherein the geographic position navigation module can rely on small programs, the geographic position can be accurately navigated, and third-party map applications can be opened.
CN201911175299.3A 2019-11-26 2019-11-26 Load control acquisition monitoring system based on GIS positioning Withdrawn CN110989980A (en)

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Application Number Priority Date Filing Date Title
CN201911175299.3A CN110989980A (en) 2019-11-26 2019-11-26 Load control acquisition monitoring system based on GIS positioning

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Application Number Priority Date Filing Date Title
CN201911175299.3A CN110989980A (en) 2019-11-26 2019-11-26 Load control acquisition monitoring system based on GIS positioning

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111754900A (en) * 2020-06-15 2020-10-09 白金泉 Novel secondary screen cabinet safety measure arrangement system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111754900A (en) * 2020-06-15 2020-10-09 白金泉 Novel secondary screen cabinet safety measure arrangement system

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Application publication date: 20200410