CN116910130B - Construction method of industrial data middle platform frame for hydropower equipment - Google Patents

Construction method of industrial data middle platform frame for hydropower equipment Download PDF

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CN116910130B
CN116910130B CN202311153821.4A CN202311153821A CN116910130B CN 116910130 B CN116910130 B CN 116910130B CN 202311153821 A CN202311153821 A CN 202311153821A CN 116910130 B CN116910130 B CN 116910130B
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data
equipment
standard
instantiation
information
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CN116910130A (en
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关杰林
陈辉
张春辉
李友平
王斌
黄正海
司汉松
胡杨
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China Yangtze Power Co Ltd
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China Yangtze Power Co Ltd
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    • 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
    • G06F16/24Querying
    • G06F16/248Presentation of query results
    • 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
    • G06F16/24Querying
    • G06F16/245Query processing
    • G06F16/2455Query execution
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • G06Q10/103Workflow collaboration or project management
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q50/00Systems or methods specially adapted for specific business sectors, e.g. utilities or tourism
    • G06Q50/06Electricity, gas or water supply

Abstract

The invention discloses a method for constructing an industrial data middle platform frame for hydroelectric equipment, which uses equipment objects as the center to develop, display and use data, and relates to static, dynamic, method and reference information; the mapping relation exists between the logic layer and the instantiation information in the scheme framework, the specification is used as the logic layer to manage the instantiation information, a foundation can be provided for batched data configuration and acquisition operation, the information can be displayed and checked, quick positioning and batched selection of resources such as data and methods can be performed, a sharing interface is provided, and support is provided for application visual development, data analysis and the like; the method can manage the standard and the process of information integration, improve the efficiency and the quality of the final result formation, and realize the data sharing and the application of the hydroelectric equipment crossing the power plant.

Description

Construction method of industrial data middle platform frame for hydropower equipment
Technical Field
The invention relates to the field of industrial Internet hydropower, in particular to a construction method of an industrial data middle stage frame for hydropower equipment.
Background
In a large hydropower station, original data of equipment are scattered in various source systems, the original data have isomerism, final equipment panoramic information can be formed through integration and carding, the relation among equipment, equipment and parts, and information among equipment, parts and structured data, time sequence data, unstructured data, advanced application analysis methods, fault treatment measures and the like is expressed, the correlation of main equipment of the hydropower station and relevant information thereof is realized, and the sharing and application of data, models and services are facilitated; information in the traditional service system is integrated according to service lines, and the information acquired by a user is relatively one-sided and related information of equipment cannot be acquired from the whole world, so that a method for constructing an industrial data middle platform frame for hydroelectric equipment needs to be designed to solve the problems.
Disclosure of Invention
The invention aims to provide a construction method of an industrial data middle platform frame for hydroelectric equipment, which solves the problems that in the service system of the prior art, information is integrated according to service lines, the information acquired by a user is on one side, and the related information of the equipment cannot be acquired from the whole world; the method has the characteristics of regularly, batchly and comprehensively acquiring data, managing the standard and process of information integration and improving the efficiency and quality of the final result formation.
In order to solve the technical problems, the technical scheme of the invention is as follows:
a construction method of an industrial data middle stage frame for hydroelectric equipment comprises the following steps:
s1, constructing a device object:
s101, basic data construction: constructing an equipment foundation standardized library, wherein the equipment foundation standardized library is used as a standard and a template for supporting instantiation modeling and has standard state management capability; state control and version management are carried out through standard state and flow management, and flow approval capacity is provided by combining a flow engine;
s102, panoramic data construction: including instantiation configurations and panoramic model configurations;
s103, data processing: the method comprises the steps of visual processing, exploratory analysis, reference database table, reference digital dictionary and construction of a custom data set; providing the functions of data screening, cutting, sorting, summarizing and calculating of the source layer data and the platform basic data; constructing a detail data set, and carrying out data exploration analysis on summarization, calculation and sequencing of the detail data set through exploration analysis;
s2, panoramic data service: including thematic services, and panoramic services.
Preferably, in step S101, the basic standardization library has different management interfaces for different standard contents, and abstracts the standard into a hierarchical structure class standard, a dictionary class standard, a rule class standard and a public information model class standard according to the characteristics thereof;
the standard state and flow management has standard state management capability, provides state control and version management functions, and provides flow approval and quality auditing capability by combining the flow of the flow engine and the quality auditing engine; the standard states comprise four states of establishment, auditing, release and offline, and the corresponding operable buttons of each state are different.
Preferably, in step S102, the instantiation configuration includes an instantiation device configuration, an instantiation station configuration, a topology relationship configuration, and a device container configuration; instantiation equipment configuration instantiates a logic structure according to the established logic structure of the system-equipment-component and combining the specific situation of an actual power station to form an instantiation structure model of the power station; the instantiation measuring point configuration is used for managing and maintaining the measuring points and the equipment tree of each power station in a tree table linkage mode; the topological relation graph expresses the upstream and downstream link relation of the equipment in the form of SVG industrial graph.
Preferably, in step S102, the panoramic model is configured with the device object as the center, and the association and fusion of the hydropower service data are performed, and the association is performed through the coding of the device kks and the logic device path field, so as to form the data panoramic model of the specific device.
Preferably, in step S102, physical asset information is managed through instantiation configuration, and the associated mode supports import, editing and interface synchronization; simultaneously configuring device classification by selection operations based on the standard dictionary; the panoramic model configuration takes the equipment tree generated by instantiation as a trunk, and carries out initialization of panoramic information items based on a standard model class diagram, wherein the information items are divided into static information, dynamic information, methods and reference information; automatic hooking of information is performed based on the fields and the labels, and a manual hooking function is provided.
Preferably, in step S2, the thematic service includes creating and publishing different types of data marts based on the panoramic data model, and uniformly managing all the data marts; the data sandbox screens and copies the data to the working process of the independent isolation area so as to meet the safety requirements of various complex application data; the topic service creates an analysis subtopic with business as a center, and associates a detail data set and a summary data set; performing drill-down analysis on the sub-topics, and performing primitive analysis display on the summarized results; the panoramic service classifies and manages the data constructed by the equipment objects according to the data types, externally provides data sharing service and queries page data according to different dimensions.
The method for constructing the industrial data middle platform frame for the hydroelectric equipment has the advantages that:
1, the scheme uses the equipment object as the center to re-integrate the data, and reasonably manages all information surrounding the equipment object, so that a user can regularly, batchly and comprehensively acquire the data in the process of using the data. Meanwhile, the standard and the process of information integration are required to be managed, so that the efficiency and the quality of the final result are improved, and the data sharing and the application of the hydropower equipment crossing the power plant are realized;
2, the scheme takes the equipment object as the center to develop, display and use data, and relates static, dynamic, method and reference information, complete panoramic information is firstly configured based on specifications, then a theme and a thematic data billboard are designed on the basis of panorama, and panoramic guidance can be checked at any time; the mapping relation exists between the logic layer and the instantiation information in the scheme framework, the specification is used as the logic layer to manage the instantiation information, a foundation can be provided for batched data configuration and acquisition operation, the information can be displayed and checked, quick positioning and batched selection of resources such as data and methods can be performed, a sharing interface is provided, and support is provided for application visual development, data analysis and the like.
Drawings
FIG. 1 is a schematic diagram of the overall implementation concept of an industrial data center in the present invention;
FIG. 2 is a schematic diagram of an industrial data center for a hydropower device according to the invention;
FIG. 3 is a schematic diagram of a standard state in an embodiment of the present invention;
FIG. 4 is a schematic diagram of a panoramic model configuration in an embodiment of the invention;
fig. 5 is a schematic diagram of a panoramic service according to an embodiment of the present invention.
Detailed Description
Embodiment one:
a construction method of an industrial data middle stage frame for hydroelectric equipment comprises the following steps:
s1, constructing a device object:
s101, basic data construction: constructing an equipment foundation standardized library, wherein the equipment foundation standardized library is used as a standard and a template for supporting instantiation modeling and has standard state management capability; state control and version management are carried out through standard state and flow management, and flow approval capacity is provided by combining a flow engine;
further, the basic standardized library has different management interfaces according to different standard contents, and can be abstracted into hierarchical structure class standards, dictionary class standards, rule class standards and public information model class standards according to the characteristics of the basic standardized library; the quasi-state and flow management has standard state management capability, provides state control and version management functions, and provides flow approval and quality auditing capability by combining the flow of a flow engine and a quality auditing engine; the standard state comprises four states of establishment, auditing, release and offline, and the corresponding operable buttons of each state are different;
s102, panoramic data construction: including instantiation configurations and panoramic model configurations;
s103, data processing: the method comprises the steps of visual processing, exploratory analysis, reference database table, reference digital dictionary and construction of a custom data set; providing the functions of data screening, cutting, sorting, summarizing and calculating of the source layer data and the platform basic data; constructing a detail data set, and carrying out data exploration analysis on summarization, calculation and sequencing of the detail data set through exploration analysis;
s2, panoramic data service: including thematic services, and panoramic services.
Preferably, in step S102, the instantiation configuration includes an instantiation device configuration, an instantiation station configuration, a topology relationship configuration, and a device container configuration; instantiation equipment configuration instantiates a logic structure according to the established logic structure of the system-equipment-component and combining the specific situation of an actual power station to form an instantiation structure model of the power station; the instantiation measuring point configuration is used for managing and maintaining the measuring points and the equipment tree of each power station in a tree table linkage mode; the topological relation graph expresses the upstream and downstream link relation of the equipment in the form of SVG industrial graph.
Preferably, in step S102, the panoramic model is configured with the device object as the center, and the association and fusion of the hydropower service data are performed, and the association is performed through the coding of the device kks and the logic device path field, so as to form the data panoramic model of the specific device.
Preferably, in step S102, physical asset information is managed through instantiation configuration, and the associated mode supports import, editing and interface synchronization; simultaneously configuring device classification by selection operations based on the standard dictionary; the panoramic model configuration takes the equipment tree generated by instantiation as a trunk, and carries out initialization of panoramic information items based on a standard model class diagram, wherein the information items are divided into static information, dynamic information, methods and reference information; automatic hooking of information is performed based on the fields and the labels, and a manual hooking function is provided.
Preferably, in step S2, the thematic service includes creating and publishing different types of data marts based on the panoramic data model, and uniformly managing all the data marts; the data sandbox screens and copies the data to the working process of the independent isolation area so as to meet the safety requirements of various complex application data; the topic service creates an analysis subtopic with business as a center, and associates a detail data set and a summary data set; performing drill-down analysis on the sub-topics, and performing primitive analysis display on the summarized results; the panoramic service classifies and manages the data constructed by the equipment objects according to the data types, externally provides data sharing service and queries page data according to different dimensions.
The foregoing embodiments are merely preferred embodiments of the present invention, and should not be construed as limiting the present invention, and the embodiments and features of the embodiments in the present application may be arbitrarily combined with each other without collision. The protection scope of the present invention is defined by the claims, and the protection scope includes equivalent alternatives to the technical features of the claims. I.e., equivalent replacement modifications within the scope of this invention are also within the scope of the invention.

Claims (1)

1. The construction method of the industrial data middle stage frame for the hydroelectric equipment is characterized by comprising the following steps of:
s1, constructing a device object:
s101, basic data construction: constructing an equipment foundation standardized library which is used as a standard and a template for supporting instantiation modeling and has standard state management capability; state control and version management are carried out through standard state and flow management, and flow approval capacity is provided by combining a flow engine;
the basic standardized library is provided with different management interfaces aiming at different standard contents, and abstracts the standard into a hierarchical structure class standard, a dictionary class standard, a rule class standard and a public information model class standard according to the characteristics of the standard content;
the standard state and flow management has standard state management capability, provides state control and version management functions, and provides flow approval and quality auditing capability by combining the flow of the flow engine and the quality auditing engine; the standard state comprises four states of establishment, auditing, release and offline, and the corresponding operable buttons of each state are different;
s102, panoramic data construction: including instantiation configurations and panoramic model configurations;
the instantiation configuration comprises an instantiation device configuration, an instantiation measuring point configuration, a topological relation configuration and a device container configuration; instantiation equipment configuration instantiates a logic structure according to the established logic structure of the system-equipment-component and combining the specific situation of an actual power station to form an instantiation structure model of the power station; the instantiation measuring point configuration is used for managing and maintaining the measuring points and the equipment tree of each power station in a tree table linkage mode; the topological relation graph expresses the upstream and downstream link relation of the equipment by using SVG industrial graphics;
the panoramic model configuration is centered on the equipment object, the association and fusion of the hydropower business data are carried out, and the association is carried out through the equipment kks code and the logic equipment path field, so that a data panoramic model of the specific equipment is formed;
further, physical asset information is managed through instantiation configuration, and import, editing and interface synchronization are supported in an associated mode; simultaneously configuring device classification by selection operations based on the standard dictionary; the panoramic model configuration takes the equipment tree generated by instantiation as a trunk, and carries out initialization of panoramic information items based on a standard model class diagram, wherein the information items are divided into static information, dynamic information, methods and reference information; automatic information hooking is carried out based on the fields and the labels, and meanwhile, a manual hooking function is provided;
s103, data processing: the method comprises the steps of visual processing, exploratory analysis, reference database table, reference digital dictionary and construction of a custom data set; providing the functions of data screening, cutting, sorting, summarizing and calculating of the source layer data and the platform basic data; constructing a detail data set, and performing data exploration analysis on summarization, calculation and sequencing of the detail data set through exploration analysis;
s2, panoramic data service: including thematic services, and panoramic services; the thematic service comprises the steps of creating and releasing different types of data marts based on a panoramic data model, and uniformly managing all the data marts; the data sandbox screens and copies the data to the working process of the independent isolation area so as to meet the safety requirements of various complex application data; the topic service creates an analysis subtopic with business as a center, and associates a detail data set and a summary data set; performing drill-down analysis on the sub-topics, and performing primitive analysis display on the summarized results; the panoramic service classifies and manages the data constructed by the equipment objects according to the data types, externally provides data sharing service and queries page data according to different dimensions.
CN202311153821.4A 2023-09-08 2023-09-08 Construction method of industrial data middle platform frame for hydropower equipment Active CN116910130B (en)

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