CN112883413A - Intelligent management method for IT asset data in power grid enterprise - Google Patents

Intelligent management method for IT asset data in power grid enterprise Download PDF

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Publication number
CN112883413A
CN112883413A CN202110082893.9A CN202110082893A CN112883413A CN 112883413 A CN112883413 A CN 112883413A CN 202110082893 A CN202110082893 A CN 202110082893A CN 112883413 A CN112883413 A CN 112883413A
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asset
data
assets
power grid
management method
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龙玉江
李洵
龙娜
甘润东
钟掖
卫薇
王杰峰
赵威扬
王策
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Guizhou Power Grid Co Ltd
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Guizhou Power Grid Co Ltd
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Priority to CN202110082893.9A priority Critical patent/CN112883413A/en
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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/60Protecting data
    • G06F21/62Protecting access to data via a platform, e.g. using keys or access control rules
    • G06F21/6209Protecting access to data via a platform, e.g. using keys or access control rules to a single file or object, e.g. in a secure envelope, encrypted and accessed using a key, or with access control rules appended to the object itself

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  • General Health & Medical Sciences (AREA)
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  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Management, Administration, Business Operations System, And Electronic Commerce (AREA)

Abstract

The invention discloses an intelligent management method of IT asset data in a power grid enterprise; the method comprises the following steps: s1: importing IT asset data; s2: auditing by an IT asset use department; s3: the IT asset receiving department audits; s4: operation and maintenance audit ledger change; s5: returning to the original port to check change of the machine account; s6: IT asset change reporting; s7, IT asset mobile management; according to the invention, the problem of 'isolated islands' of the IT assets is solved by the block chain technology enabling data management platform, so that data can be updated synchronously in time, data integrity, normalization, consistency and accuracy appear when the data are circulated among systems, and the data tracing is rapidly realized through block chain relevance analysis between the systems, and the IT assets can keep authority by using the block chain, so that the final data of the IT assets can be monitored and early warned.

Description

Intelligent management method for IT asset data in power grid enterprise
Technical Field
The invention belongs to the technical field of IT assets, and particularly relates to an intelligent management method of IT asset data in a power grid enterprise.
Background
With the development of informatization, the practicability of the system is deepened, the data quality problem is more and more prominent, and in order to guarantee the integrity, the normalization, the consistency and the accuracy of the data, the data management aiming at each system is urgent. The construction of systems such as slave data platforms and CMDBs is targeted at information management. The information has definite meanings, different information has own characteristics, the information management in different professional systems is different, and a uniform mode cannot be provided for the information management. The increasing number of related systems of IT management and the accompanying increase of related data are urgent, and a set of independent data management theory and platform are needed to manage the related data, so as to convert the related data of IT management into an intangible asset. The block chain technology is a leading-edge new technology, has the characteristics of data decentralized storage, data distributed deployment, data security anti-tampering, data traceability, data credibility and the like naturally, has natural fitness with the target of data management, and needs to manage and store the IT assets when the IT assets are in an asset management system, but various problems still exist in the management of the IT assets in the market.
For example, an authorized bulletin No. CN109961238A discloses an IT asset management system and an IT asset management method, which can implement full-life-cycle management of assets, are easy to maintain asset information, have relatively low operation and maintenance costs, can count asset conditions from multiple dimensions, and are suitable for unified management of remote IT assets, but do not solve the problems of poor data quality, unclear data tracing back, no monitoring and early warning of data, and the like existing in the asset management of the existing IT assets, and therefore, we propose an intelligent management method of IT asset data in power grid enterprises.
Disclosure of Invention
The invention aims to provide an intelligent management method of IT asset data in a power grid enterprise, so as to solve the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme: an intelligent management method of IT asset data in a power grid enterprise comprises the following steps:
s1, importing IT asset data: the IT assets are sorted, the IT asset data adopt a JSON data format, and then the IT assets are packed and compressed;
and S2, auditing by an IT asset use department: when an IT asset use department determines that the content of the IT asset is correct, the IT asset use department imports the IT asset into a node of a block chain through an SOA (service oriented architecture) interface;
s3, the IT asset receiving department audits: the IT asset receiving department extracts IT assets from the nodes of the block chain, then checks the content of the IT assets, and stores and saves the IT assets when the content of the IT assets is correct;
s4, operation and maintenance audit ledger change: after IT is stored, the operation and maintenance carries out secondary examination and examination on the IT asset content through the visual interface;
s5, returning to the original entrance to check change of the machine account: then, after the entrance examination, the IT assets are examined for the standing book, and then the IT assets are arranged in a financial system;
s6, IT asset change report: when the IT assets have problems or are newly added, newly added asset information, updated asset information and scrapped asset application can be realized through the nodes of the block chain;
s7, IT asset movement management: the IT assets can be accessed into the block chain through the mobile device to carry out mobile device operation in the process of IT asset operation and maintenance management.
Further, the JSON data format in S1 is self-descriptive, easy to read and write, and easy to machine parse and generate, and may be replaced by an XML data format or a YAML data format.
Furthermore, the SOA interface is a component model, which is used to split different functional units of the application program and to link the different functional units through well-defined interfaces and protocols between the services, and the interfaces are defined in a neutral manner and are independent of a hardware platform, an operating system and a programming language for realizing the services.
Further, the SOA interface can be replaced by a data interface in a REST API form to be in communication connection with the block chain.
Further, the IT asset change filing in the S6 includes newly added asset information, updated asset information, and a scrapped asset application, the newly added asset information inputs IT asset introduction, IT asset content, IT asset departments and IT asset backup personnel when being filled, the updated asset information inputs new IT asset content to the IT asset information and stores the new IT asset content in the original asset information, the scrapped asset application departments extracts the IT asset content, then labels, and then the operation and maintenance audits the change of the ledger to destroy the IT asset.
Further, the mobile device in S7 executes the following steps:
s71: performing two-dimensional code labeling on IT assets: when the IT asset data is imported, firstly generating a two-dimensional code for the IT asset;
s72: scanning and editing asset data: then scanning the two-dimensional code when the IT assets are edited by using the mobile equipment, and then operating the IT asset data;
s73: push asset management system: after the mobile device operates on the IT assets, the IT assets are then sent by the mobile device over the SOA interface onto the blockchain.
Further, the operation performed on the IT asset data in S72 includes editing, modifying, reviewing, deleting, and the like.
Further, the financial system in S5 performs asset addition, query reduction, depreciation, amortization, project fund transfer, temporary estimate fund transfer, formal fund transfer, completion settlement and other operations on IT assets.
Further, the IT asset movement management application in S7 is mainly an extension of asset management, generates a unique two-dimensional code identifier/tag for IT asset data, and edits and maintains the asset data by scanning the code through the APP.
Compared with the prior art, the invention has the beneficial effects that:
according to the invention, the problem of 'isolated islands' of the IT assets is solved by the block chain technology enabling data management platform, so that data can be updated synchronously in time, data integrity, normalization, consistency and accuracy appear when the data are circulated among systems, and the data tracing is rapidly realized through block chain relevance analysis between the systems, and the IT assets can keep authority by using the block chain, so that the final data of the IT assets can be monitored and early warned.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention. The objectives and other advantages of the present invention will be realized and attained by the structure particularly pointed out in the written description and claims hereof as well as the appended drawings.
Drawings
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be further described in detail with reference to the accompanying drawings, in which:
FIG. 1 is a schematic flow chart of the method of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1, the present invention provides a technical solution: an intelligent management method of IT asset data in a power grid enterprise comprises the following steps:
s1, importing IT asset data: the IT assets are sorted, the IT asset data adopt a JSON data format, and then the IT assets are packed and compressed;
and S2, auditing by an IT asset use department: when an IT asset use department determines that the content of the IT asset is correct, the IT asset use department imports the IT asset into a node of a block chain through an SOA (service oriented architecture) interface;
s3, the IT asset receiving department audits: the IT asset receiving department extracts IT assets from the nodes of the block chain, then checks the content of the IT assets, and stores and saves the IT assets when the content of the IT assets is correct;
s4, operation and maintenance audit ledger change: after IT is stored, the operation and maintenance carries out secondary examination and examination on the IT asset content through the visual interface;
s5, returning to the original entrance to check change of the machine account: then, after the entrance examination, the IT assets are examined for the standing book, and then the IT assets are arranged in a financial system;
s6, IT asset change report: when the IT assets have problems or are newly added, newly added asset information, updated asset information and scrapped asset application can be realized through the nodes of the block chain;
s7, IT asset movement management: the IT assets can be accessed into the block chain through the mobile device to carry out mobile device operation in the process of IT asset operation and maintenance management.
In order to realize the transmission of the intermediate data format for the transmission of the IT assets, in this embodiment, preferably, the JSON data format in S1 has self-descriptive property, is easy to read and write, and is also easy to parse and generate by a machine, the JSON data format may be replaced by an XML data format or a YAML data format, and JSON is a lightweight data exchange format when the JOON data format is selected. It is based on a subset of ECMAScript, and uses a text format that is completely independent of the programming language to store and represent data. The compact and clear hierarchy makes JSON an ideal data exchange language. The network transmission method is easy to read and write by people, is easy to analyze and generate by machines, and effectively improves the network transmission efficiency.
In order to implement a multiple transmission interface of degree data, in this embodiment, preferably, the SOA interface is a component model, and is used to split different functional units of an application program, and is connected by well-defined interfaces and protocols between the services, the interface is defined in a neutral manner, and should be independent of a hardware platform, an operating system, and a programming language for implementing the services, the SOA interface may be replaced with a data interface in the form of REST API to communicate with a block chain, and the SOA interface has the following characteristics when in use: accessible from outside the enterprise, readily available, coarse-grained service interface staging, loosely coupled, reusable services, service interface design management, standardized service interfaces, support for various message patterns, and precisely defined service contracts.
In order to implement change adjustment of the IT assets and facilitate maintenance of the IT assets, in this embodiment, preferably, the IT asset change report in S6 includes new asset information, updated asset information, and a scrapped asset application, the new asset information inputs an IT asset profile, an IT asset content, an IT asset department, and an IT asset backup staff when the new asset information is reported, the updated asset information inputs new IT asset content to the IT asset information and stores the new IT asset content in the original asset information, the scrapped asset application department extracts the IT asset content, then labels the new IT asset profile, the new IT asset content, and then destroys the IT assets by operation and maintenance audit stand account change.
In order to enable the IT asset to implement the consolidation adjustment by the mobile device, in this embodiment, IT is preferable that the mobile device in S7 operates as follows:
s71: performing two-dimensional code labeling on IT assets: when the IT asset data is imported, firstly generating a two-dimensional code for the IT asset;
s72: scanning and editing asset data: then scanning the two-dimensional code when the IT assets are edited by using the mobile equipment, and then operating the IT asset data;
s73: push asset management system: after the mobile device operates on the IT assets, the IT assets are then sent by the mobile device over the SOA interface onto the blockchain.
In order to implement the operation on the IT asset data, in this embodiment, IT is preferable that the operation on the IT asset data in S72 includes editing, modifying, reviewing, deleting, and the like.
In order to realize financial arrangement of IT assets, in this embodiment, IT is preferable that the financial system in S5 performs asset addition, query reduction, depreciation, amortization, project fund transfer, temporary estimate fund transfer, official fund transfer, completion settlement and other operations on IT assets.
In order to facilitate operation and identification of the IT asset on subsequent mobile devices, in this embodiment, preferably, the IT asset movement management application in S7 is mainly an extension to asset management, generates a unique two-dimensional code identifier/tag for IT asset data, and edits and maintains the asset data by scanning the code through the APP.
Example two:
in order to realize the transmission of the IT assets, which can realize the transmission of the intermediate data format, in this embodiment, preferably, the JSON data format in S1 has self-descriptive property, is easy to read and write, and is also easy to parse and generate by a machine, the JSON data format may be replaced by an XML data format or a YAML data format, the XML data format is different from databases such as Access, Oracle, SQL Server, and the like, and the databases provide more powerful data storage and analysis capabilities, for example: data indexing, sorting, searching, correlation consistency and the like, the XML is used for transmitting data, and the HTML which belongs to the standard general markup language is mainly used for displaying data. In fact, XML differs most from other forms of data representation: he is extremely simple. This is an advantage that looks somewhat trivial, but it is this that makes XML unusual. The simplicity of XML makes it easy to read and write data in any application, which makes XML the only common language for data exchange very quickly, although different applications will support other data exchange formats as well, but soon they will support XML, which means that programs can be more easily integrated with information generated under Windows, Mac OS, Linux, and other platforms, and then can easily load XML data into the program and analyze it and output the results in XML format.
Example three:
in order to realize the transmission of the intermediate data format for the transmission of the IT assets, in this embodiment, IT is preferable that the JSON data format in S1 is self-descriptive, easy to read and write, and easy to parse and generate by a machine, and the JSON data format may be replaced by an XML data format or a YAML data format, and YAML may be similar in syntax and other high-level languages, and may simply express data forms such as a list, a hash table, and a scalar. It uses space indentation and a number of appearance-dependent features that are particularly well-suited for expressing or editing data structures, various profiles, typographic debug content, file schemas (e.g., many email header formats are in close proximity to YAML). Although it is well suited for use in data structures that express a hierarchical model, there is also a fine-grained syntax that can represent relational model data. Since YAML uses space characters and lines to separate data, it is particularly well suited to operate with grep/Python/Perl/Ruby. Its characteristic that lets people get on hand most easily is cleverly avoid various closed symbols, such as: quotation marks, various brackets, etc., which can be complicated and illegible when nested.
Example four:
in order to implement a multiple transmission interface of degree data, in this embodiment, preferably, the SOA interface is a component model, and is used to split different functional units of an application program, and is connected by well-defined interfaces and protocols between the services, the interface is defined in a neutral manner, and should be independent of a hardware platform, an operating system, and a programming language for implementing the services, the SOA interface may be replaced with a data interface in the form of a REST API, and is in communication connection with a block chain, and the REST API interface is a universal open data interface.
The working principle and the using process of the invention are as follows:
firstly, importing IT asset data: the IT assets are sorted, the IT asset data adopt a JSON data format, and then the IT assets are packed and compressed;
and second step, auditing by an IT asset use department: when an IT asset use department determines that the content of the IT asset is correct, the IT asset use department imports the IT asset into a node of a block chain through an SOA (service oriented architecture) interface;
and thirdly, auditing by an IT asset receiving department: the IT asset receiving department extracts IT assets from the nodes of the block chain, then checks the content of the IT assets, and stores and saves the IT assets when the content of the IT assets is correct;
fourthly, operation and maintenance audit machine account change: after IT is stored, the operation and maintenance carries out secondary examination and examination on the IT asset content through the visual interface;
fifthly, returning to the original audit ledger change: then, after the entrance examination, the IT assets are examined for the standing book, and then the IT assets are arranged in a financial system;
sixthly, IT asset change filling: when the IT assets have problems or are newly added, newly added asset information, updated asset information and scrapped asset application can be realized through the nodes of the block chain;
seventh step, IT asset mobile management: the IT assets can be accessed into the block chain through the mobile device to carry out mobile device operation in the process of IT asset operation and maintenance management.
Finally, the above embodiments are only intended to illustrate the technical solutions of the present invention and not to limit the present invention, and although the present invention has been described in detail with reference to the preferred embodiments, it will be understood by those skilled in the art that modifications or equivalent substitutions may be made on the technical solutions of the present invention without departing from the spirit and scope of the technical solutions, and all of them should be covered by the claims of the present invention.

Claims (9)

1. An intelligent management method of IT asset data in a power grid enterprise is characterized in that: the operation method comprises the following steps:
s1, importing IT asset data: the IT assets are sorted, the IT asset data adopt a JSON data format, and then the IT assets are packed and compressed;
and S2, auditing by an IT asset use department: when an IT asset use department determines that the content of the IT asset is correct, the IT asset use department imports the IT asset into a node of a block chain through an SOA (service oriented architecture) interface;
s3, the IT asset receiving department audits: the IT asset receiving department extracts IT assets from the nodes of the block chain, then checks the content of the IT assets, and stores and saves the IT assets when the content of the IT assets is correct;
s4, operation and maintenance audit ledger change: after IT is stored, the operation and maintenance carries out secondary examination and examination on the IT asset content through the visual interface;
s5, returning to the original entrance to check change of the machine account: then, after the entrance examination, the IT assets are examined for the standing book, and then the IT assets are arranged in a financial system;
s6, IT asset change report: when the IT assets have problems or are newly added, newly added asset information, updated asset information and scrapped asset application can be realized through the nodes of the block chain;
s7, IT asset movement management: the IT assets can be accessed into the block chain through the mobile device to carry out mobile device operation in the process of IT asset operation and maintenance management.
2. The intelligent management method of the IT asset data in the power grid enterprise as claimed in claim 1, wherein: the JSON data format in the S1 is self-descriptive, easy to read and write and easy to analyze and generate by a machine, and can be replaced by an XML data format or a YAML data format.
3. The intelligent management method of the IT asset data in the power grid enterprise as claimed in claim 1, wherein: the SOA interface is a component model and is used for splitting different functional units of an application program and connecting the different functional units through well-defined interfaces and protocols among the services, and the interfaces are defined in a neutral mode and are independent of a hardware platform, an operating system and a programming language for realizing the services.
4. The intelligent management method of the IT asset data in the power grid enterprise as claimed in claim 3, wherein: the SOA interface can be replaced by a data interface in a REST API form to be in communication connection with the block chain.
5. The intelligent management method of the IT asset data in the power grid enterprise as claimed in claim 1, wherein: the IT asset change filling in the S6 comprises newly added asset information, updated asset information and a scrapped asset application, wherein the newly added asset information inputs IT asset introduction, IT asset content, an IT asset department and IT asset backup personnel when being filled, the updated asset information inputs new IT asset content to the IT asset information and stores the new IT asset content in original asset information, the scrapped asset application department extracts the IT asset content, then labels the IT asset content, and then the operation and maintenance audit ledger change destroys IT assets.
6. The intelligent management method of the IT asset data in the power grid enterprise as claimed in claim 1, wherein: the mobile device in S7 operates as follows:
s71: performing two-dimensional code labeling on IT assets: when the IT asset data is imported, firstly generating a two-dimensional code for the IT asset;
s72: scanning and editing asset data: then scanning the two-dimensional code when the IT assets are edited by using the mobile equipment, and then operating the IT asset data;
s73: push asset management system: after the mobile device operates on the IT assets, the IT assets are then sent by the mobile device over the SOA interface onto the blockchain.
7. The intelligent management method of the IT asset data in the power grid enterprise as claimed in claim 6, wherein: the operation performed on the IT asset data in S72 includes editing, modifying, reviewing, deleting, and the like.
8. The intelligent management method of the IT asset data in the power grid enterprise as claimed in claim 1, wherein: the financial system in S5 performs asset addition, query reduction, depreciation, amortization, project fund transfer, temporary estimate fund transfer, official fund transfer, completion settlement, and other operations on IT assets.
9. The intelligent management method of the IT asset data in the power grid enterprise as claimed in claim 1, wherein: the IT asset mobile management application in the S7 is mainly an extension of asset management, generates an only two-dimensional code identifier/label for IT asset data, and edits and maintains the asset data by scanning codes through an APP.
CN202110082893.9A 2021-01-21 2021-01-21 Intelligent management method for IT asset data in power grid enterprise Pending CN112883413A (en)

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Application publication date: 20210601