An energy information management method, system and device based on identification resolution and a storage medium

By combining identifier resolution and blockchain technology, a unified identifier code system has been established, which solves the problems of information fragmentation and difficulty in integration in the energy management system, realizes unified and refined management of energy information, and improves data reliability and management efficiency.

CN116150408BActive Publication Date: 2026-06-02YANGTZE OPTICAL FIBRE & CABLE CO LTD +1

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
YANGTZE OPTICAL FIBRE & CABLE CO LTD
Filing Date
2022-12-30
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing energy management systems suffer from fragmented information, difficulty in integration and unified management, and a lack of refined analysis, resulting in unclear energy consumption, low management levels, and a lack of understanding of energy-saving measures.

Method used

An energy information management method based on identifier resolution is adopted. Energy data is managed through a unified identifier code system. The identifier code node service platform is used to assign codes to information templates and generate identifier files. Blockchain technology is combined to ensure that the data is tamper-proof, thereby achieving unified and refined data management.

Benefits of technology

It has enabled the platformization and refined management of energy information, solved the problem of easy scalability in energy management, improved data reliability and traceability efficiency, and supported the formulation of scientific energy-saving strategies.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application discloses an energy information management method, system and device based on identification analysis, and a storage medium, and comprises the following steps: obtaining an energy information analysis instruction; analyzing the energy information analysis instruction to obtain an identification code; obtaining a corresponding energy identification file according to the identification code; analyzing the energy identification file to obtain an energy information analysis result; the energy identification file is generated by at least one energy information template and an identification code mapped with the information template; and the identification code mapped with the information template is generated according to a set rule after the information template is analyzed. The energy information management method, system and device based on identification analysis realized by the application expand the application range on the basis of a traditional energy management system, gather energy data, and introduce an identification analysis technology at the same time, so that identification codes are assigned to regions, workshops, processes, devices, real-time energy consumption and overall energy consumption, template data is uploaded to an identification node service platform, and the energy consumption information flow of an industry upstream and downstream is thus connected.
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Description

Technical Field

[0001] This invention belongs to the field of energy information management technology, specifically relating to energy information management methods, systems, devices, and storage media based on identifier resolution. Background Technology

[0002] Current energy management systems suffer from various problems, including a lack of understanding of energy consumption patterns, insufficient knowledge of their own energy management capabilities, unfamiliarity with energy regulations and policies, lack of knowledge about which sectors can save energy, lack of understanding of new energy-saving technologies and products, and uncertainty about which aspects of energy management need improvement. The first issue stems from the insufficient strength of internal management information within the energy management system. Energy information is fragmented due to numerous factors related to equipment and production, making it difficult to meticulously correlate and organize energy management information within the system. The second issue is the difficulty in integrating unified and customized information management rules within the industry, hindering the ability to achieve unified information management under customized conditions.

[0003] In this context, there is an urgent need to develop energy management methods and systems to address the aforementioned issues, realize online energy consumption monitoring systems, improve the energy metering system, enhance the precision of energy management, and achieve broader energy information management across the industry. Summary of the Invention

[0004] Therefore, in response to at least one of the above-mentioned defects or improvement needs of the prior art, the present invention proposes an energy information management method, system, device and storage medium based on identifier resolution, which can realize the platform-based and refined management of energy information.

[0005] Specifically, this invention proposes an energy information management method based on identifier resolution, characterized in that the method includes:

[0006] Obtain an energy information analysis command; parse the energy information analysis command to obtain an identification code; obtain the corresponding energy identification file using the identification code; parse the energy identification file to obtain the energy information analysis result;

[0007] The energy identification file is generated from at least one energy information template and an identification code mapped to the information template; the identification code mapped to the information template is generated by parsing the information template according to a set rule;

[0008] The energy information analysis instruction includes at least one relationship between identifiers, and / or information in the identifier file corresponding to the identifier.

[0009] Furthermore, the parsing of the information template involves parsing the energy information recorded in the information template, as well as the energy information collection object and collection gateway.

[0010] Furthermore, the setting rule is: select one or more identifier codes corresponding to the parsed information.

[0011] Furthermore, the information template is generated from selectable information index items, and information is entered corresponding to the information index items; or, the information template is collected by the data acquisition module and generated under the regularization of information template index items.

[0012] Furthermore, the method for parsing energy information analysis instructions to obtain the identification code is as follows: the energy information is traversed and matched in the information template of the identification file to obtain the identification code.

[0013] Furthermore, the name of the identification file includes identification code information.

[0014] This invention also discloses an energy information management system based on identifier resolution, characterized in that the system includes:

[0015] Energy source data collection and rule-making platform, including,

[0016] The data acquisition module is used to collect energy information;

[0017] And a data rule-making module, used to perform rule-making processing on the energy information to generate information templates and send them to the identifier node service platform;

[0018] The identifier node service platform includes,

[0019] The identification file generation module obtains the identification file from the received information template and identification code;

[0020] The identification code parsing module is used to obtain energy information analysis instructions, obtain energy information identification codes from the energy information analysis instructions, and send them to the information management platform;

[0021] Information management platform, including,

[0022] The storage module is used to store the identifier files generated by the identifier node service platform;

[0023] The processing module is used to receive the identifier code query and match the corresponding identifier file sent by the identifier node service platform and feed it back to the identifier node service platform;

[0024] Energy management platform, including,

[0025] The energy data processing module receives the identification file sent by the identification node service platform, parses the energy information in the identification file, and performs the analysis of the energy information according to the instructions sent by the user interface module.

[0026] The user interface module is used to receive energy information analysis instructions and send them to the identification node service platform.

[0027] Furthermore, the identifier node service platform includes an information template module that provides an interface for inputting information templates.

[0028] Furthermore, the identifier node service platform also includes:

[0029] The identifier generation module is used to parse the information template and generate identifiers according to the set rules.

[0030] The information template is parsed as follows: the energy information recorded in the information template, as well as the energy information collection object and collection gateway;

[0031] The setting rule is: select one or more identifier codes corresponding to the parsed information.

[0032] Furthermore, the interface provides information index items for information templates, allowing users to input or collect relevant information to generate information templates.

[0033] In summary, compared with the prior art, the above-described technical solutions conceived in this invention can achieve the following beneficial effects:

[0034] This invention first discloses an energy information management method based on identification codes. It utilizes a unified identification code system to manage energy data information collection gateways, and uses a unified identification code node service platform to assign codes to information templates to generate identification files, which are then stored and managed on the identification code node service platform. The identification code system serves as an intermediate platform for energy information management across different enterprises and even different industrial parks, while simultaneously supporting the scalable management of both customized and unified information. As a bridge between heterogeneous data, the identification code system handles the initiation, retention, transfer, and storage of data between the enterprise side and the energy data information application platform side, and also performs data governance.

[0035] This invention further provides an energy information management method based on identification codes, which uses information templates and identification files to perform energy identification file management on an identification node service platform. Identification files are generated by adding identification codes to information templates. First, a unified identification code allocation interface is set up to assign unified management identification codes to registered enterprises, data acquisition devices, and their uploaded related data information. This makes the energy information management system more easily expandable, especially by assigning codes to energy consumption units such as instruments, meters, energy types, regions, and work groups involved in energy management according to material classification and identification coding rules. This allows for analysis of the energy data and information collected in the identification files, achieving unified management of different enterprises or even different industrial parks and different energy consumption types.

[0036] The classification of identification codes, information templates, and identification files in this invention, as well as various types of energy information, can be managed and distributed through blockchain technology, making the energy information tamper-proof and improving the reliability and efficiency of energy information traceability and retrieval.

[0037] In summary, the technical solution of this invention addresses the issues of scalability and refined management of energy information in energy management, particularly in application scenarios where energy-consuming units have large factory areas, scattered power distribution rooms, a large number and variety of electrical equipment that are difficult to manage centrally, and are prone to data loss, inaccurate data, and untimely reporting. It solves the problem of lacking refined energy consumption data analysis, managing energy consumption distribution, and providing refined data such as energy consumption status of various buildings, branches, sub-items, departments, and floors, energy consumption statistics, year-on-year / month-on-month analysis, and expense reports to support scientific energy-saving strategies. Attached Figure Description

[0038] Figure 1 This is a schematic diagram of the process structure of the energy information management method based on identification codes implemented according to the present invention;

[0039] Figure 2 This is a schematic diagram of the process structure of another implementation of the energy information management method based on identification codes according to the present invention;

[0040] Figure 3 This is a schematic diagram of the module composition structure of an energy information management system based on identification codes implemented according to the present invention; Detailed Implementation

[0041] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention. Furthermore, the technical features involved in the various embodiments of this invention described below can be combined with each other as long as they do not conflict with each other.

[0042] The terms "comprising" and "having," and any variations thereof, in the specification, claims, and accompanying drawings of this invention are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or apparatus that includes a series of steps or modules is not limited to the steps or modules listed, but may optionally include steps or modules not listed, or may optionally include other steps or modules inherent to such processes, methods, products, or apparatus.

[0043] According to an embodiment of the present invention, an energy management method, based on a traditional energy system, firstly, utilizes a code-based identification management technology to establish an identifier resolution gateway to obtain various data from energy users; secondly, further heterogeneous processing is performed on the data obtained by the identifier resolution gateway, along with protocol conversion and edge processing, to obtain regularized data; thirdly, an identifier resolution platform is used to mine and analyze the regularized data obtained to obtain further data information under the identifier code. Based on this, systematic data collection is achieved, and big data is used for energy data management and mining to realize energy management.

[0044] like Figure 1 As shown, an energy information management method according to an embodiment of the present invention includes a method for managing energy information through identification codes, so that the energy information collected through identification code assignment can perform refined data collection and analysis:

[0045] Obtain the energy information identification code; use the energy information identification code to obtain the corresponding energy identification document;

[0046] An energy identification file is generated from at least one energy information template and an identification code mapped to the information template;

[0047] The energy identification file is parsed to obtain energy information.

[0048] Furthermore, in energy information management, the energy information identification code is used to obtain other identification codes, thereby querying and retrieving the energy identification file mapped by the identification code. The identification file contains energy information. The energy information stored in the above identification file is parsed to perform energy data mining and analysis.

[0049] The energy information identification file is generated from at least one information template and an identification code; the identification code is generated by parsing the information template according to set rules.

[0050] In one implementation, an identifier node service platform is used to achieve unified management of identifier codes, thereby parsing information templates containing energy information and realizing the mapping and allocation of identifier codes.

[0051] In one implementation, an identifier node service platform is used to achieve unified management of identifier codes, so as to allocate identifier codes to the energy information collection terminal gateway, so that the information template uploaded from the gateway carries the identifier code, thereby realizing the mapping and allocation of identifier codes.

[0052] In subsequent mining and analysis of energy information in the identification files, the energy information application platform obtains at least one relationship between an energy information identification code and at least one other identification code, and / or, the identification file corresponding to the energy information identification code and the information in the identification file corresponding to the identification code. In this way, a flexible energy information acquisition method is obtained by associating identification codes with other identification codes, associating identification files with other identification codes, querying identification files with other identification codes, extracting identification codes from identification files, and further associating identification files.

[0053] The energy management method based on identification codes implemented according to the present invention is to form identification files through the allocation of identification codes in a unified system for information management, and to realize the association between identification files through the mapping relationship established between identification codes, thereby obtaining the personalized information managed in the corresponding identification files.

[0054] The objects assigned to the identification code management can be data information collected through the platform, or various production equipment, energy-consuming equipment, and material equipment collected from data sources. Gateways include environmental edge gateways, energy edge gateways, material edge gateways, and equipment edge gateways, which means that energy information identification files correspond to equipment with identification codes.

[0055] In the methods of acquiring energy information, acquiring energy identification code information is the node that triggers information association. In some implementations, the identification file records various customized and personalized energy information. This type of information is generated through customizable information templates by means of collection, input, and aggregation, etc., to maintain the openness and customization of information management, so as to be compatible with personalized energy information of various enterprises, products, equipment, materials, and processing processes.

[0056] In some implementations, the energy identification code information is not obtained by direct input, but indirectly by other forms of identification code conversion, or not by identification code conversion but by the relationship between the identification code and the device, and the energy identification code is obtained through the converted information of the device; including but not limited to conversion into QR codes, and obtaining the energy identification code directly by scanning the QR code.

[0057] like Figure 2 The diagram illustrates an energy management method implemented according to another embodiment of the present invention. The information in the identification file corresponding to the energy identification code is obtained through a mapping association method; that is, the information in the identification file is first obtained, and then the corresponding identification code is obtained through the information in the identification file. This method is used as an implementation of the overall process of applying the identification code in the energy management method, including:

[0058] Collect and process the first energy information, and then transform and regularize the first energy information to obtain the second energy information;

[0059] The second energy information is parsed, an identification code is assigned, and an energy information identification file is generated;

[0060] Parse the data analysis instructions, and search for and match the corresponding identification file in the energy information identification file according to the data analysis instructions; then obtain the energy information identification code from the identification file.

[0061] Starting with the energy information identification code, the queried identification code is obtained one by one according to the mapping relationship between the identification codes;

[0062] The corresponding identifier file is obtained by using the identifier code obtained after the query to retrieve all relevant information in the query information.

[0063] Perform data mining and analysis on the energy information obtained based on data analysis instructions.

[0064] The energy management method of the present invention, as embodied in the above embodiments, is based on the core of using the mapping relationship of the identification code distributed by the unified rule platform, using the information in the data analysis instructions to find the corresponding energy identification file, thereby obtaining the energy information in the information template of the energy identification file, and reading the energy information to automatically perform data mining and analysis to obtain the conclusion of energy management.

[0065] In the above embodiments, the data analysis instructions in this embodiment include, but are not limited to:

[0066] Specific information query commands, energy consumption statistics commands, material energy consumption information commands, and processing energy consumption commands. For example, 5. By querying the energy identification code, the system matches the energy identification code to obtain a list of identification files containing the energy identification code.

[0067] The query command retrieves the query result identifier by combining the identifier code with the query information specified in the command.

[0068] This query instruction implementation, in addition to using the mapping relationship between identifiers, can be further customized. The instruction can further include the mapping relationship between identifiers and information in the energy identifier file to retrieve the energy information stored in the identifier file.

[0069] The system then retrieves the identification code of the relevant energy storage information to locate the identification file and executes the query command in this way.

[0070] The query command can be implemented in the following ways in the specific interactive interface:

[0071] The information query command is triggered by the input target information to display a selection list of various query command templates, thereby guiding users to select a specific information query command from the selection list to obtain the target information.

[0072] The statistical information query command, triggered by the input target information, associates with data analysis commands to retrieve statistical information from energy information management, such as the energy consumption signal of a device over a time period, such as cumulative consumption information for years / months / weeks.

[0073] For example, the energy consumption information of the equipment in the corresponding production process of material A, to obtain information after further data mining and analysis by extracting information from the identification file.

[0074] In one embodiment of the present invention, the energy identification document with an identification code is provided by an information template.

[0075] The information template provides a modular set of index information. Users select and / or customize combinations of index information to form a template that can be filled with specific data. The information template receives the corresponding information entered by the user and uploads it, possessing a unified information...

[0076] The information management identification code management platform analyzes information templates, assigns corresponding identification codes to the information templates, completes the mapping and binding between information templates and identification codes, and forms identification files. These identification files are then managed uniformly on the identification code management platform. Correspondingly, data analysis commands are executed on the identification code management platform, or on other platforms or interfaces that can interact with it.

[0077] 5. In another embodiment of the present invention, an energy identification document with an identification code is provided, in one embodiment of which is...

[0078] The energy data acquisition gateway generates information templates, and each gateway corresponds to at least one device that collects data according to predefined data rules. After receiving and inputting data according to the information templates, the gateway uploads the data. A unified information management platform analyzes the information templates, assigns corresponding identification codes to them, and completes the process of matching information templates with identification codes.

[0079] The mapping and binding are used to form an identifier file, which is then managed uniformly on the identifier code management platform. Correspondingly, query commands for identifiers 0 are executed on the identifier code management platform, or on other platforms that can interact with the identifier code management platform.

[0080] Alternatively, it can be executed on the interface. Before uploading the information template, a device-related identification code can be written into it. The identification code management platform parses the information template, writes the identification code, and stores it in the identification code management platform for execution and management.

[0081] The mapping relationship between information templates and identification codes is as follows: at least one identification code corresponding to the attribute type information such as device, gateway, region, enterprise, and material to which the information in the information template belongs is mapped to the information template.

[0082] Before generating the identification file, the information template is saved and managed. The information template corresponds to the user subject with personalized data entry and different gateway device subjects. The information template can be queried and updated according to specific energy management requirements. The identification code parsing platform can further open the interface to identify the edited and updated information template in order to update the identification file. In some implementations, the immutability of the identification file is guaranteed. The information template update can be regenerated after multi-node consensus.

[0083] The identification code for identifying files in this invention can be of one or more types.

[0084] As a specific implementation of the identification code in this invention, it is preferable to complete the allocation and establishment of identification codes on a unified identification code node service platform, and to complete the mapping and binding between identification codes and information templates on the unified identification code node service platform, thereby generating identification files.

[0085] In this embodiment of the invention, the encoding rules of the identification code are not considered as key points or limitations of protection. They can be composed of character codes, or QR codes containing distinguishable information, or images containing unique information, depending on the existing implementation. The encoding system of the identification code can be established by considering the systematic nature of energy management and the interrelationships between them.

[0086] The naming of the identification files in this invention is a string generated according to a unified rule. Each identification file has a different name. In one specific energy management implementation, the enterprise number is used as a prefix, the department and equipment number are used as the second part of the information, the index energy information keyword characters corresponding to the information template are used as the third part of the information, the information template name string customized by the enterprise to upload the information template is used as the fourth part of the information, and the gateway device information for uploading the information is used as the fifth part of the information.

[0087] The naming of information templates in this invention can be managed by referring to the customized rules for energy management on the user end and the gateway end, or by referring to the naming rules and methods of identification files.

[0088] The addition of identification codes in this invention involves adding at least one type of identification code to an information template, or adding identification codes of multiple types within the same information template to adapt to different data mining and analysis algorithms.

[0089] In this invention, the generation of information templates and identification codes is preferably managed on different platforms. This separates the energy information mining and analysis of information templates from the registration, generation, allocation, and traceability management of identification codes, thus providing enterprises with customized implementation interfaces for uploading information and improving the adaptability of energy information management.

[0090] like Figure 3 As shown, an embodiment of an energy management system of the present invention includes:

[0091] Energy source data acquisition and rule-making platform: including data acquisition module and data rule-making module;

[0092] The data acquisition module obtains production site data through identifier resolution gateways. These gateways include environmental edge gateways, energy edge gateways, material edge gateways, and equipment edge gateways, which have been assigned preliminary identifiers during user registration. The production site data includes production environment, energy-consuming equipment, materials, and production equipment data.

[0093] The data rule-making module acquires various heterogeneous data collected by the data acquisition module, performs protocol conversion and edge processing to obtain rule-making data, which is managed in the form of information templates and interacts with the identifier node service platform.

[0094] The identification node service platform provides an interface for importing information templates, receiving energy information templates, adding identification codes with mapping relationships to different information templates, generating energy identification files, and providing an interface for displaying a list of identification files;

[0095] Further name the identification file;

[0096] The information management platform stores identification files; based on the identification codes in the obtained identification files and the query instructions, the information management platform obtains the identification codes according to the mapping relationship of the identification codes contained in the query instructions, thereby obtaining the queried identification files and feeding them back to the identification node service platform.

[0097] The information management platform can further parse and execute information in query commands.

[0098] The energy data mining and analysis platform includes an energy data processing module, an interaction module with the identification node service platform, and a user interface module.

[0099] The interaction module of the identifier node service platform is used to interact with the identifier node service platform and obtain energy identifier file data;

[0100] The user interface module provides the user interaction terminal for the energy data mining and analysis platform. Users can query energy data through the interface module to realize real-time energy monitoring, energy consumption history query, and energy consumption prediction analysis.

[0101] The energy data processing module is used to parse the energy data mining and analysis instructions from the user interface module, parse the above instructions, and obtain the query instructions for interaction with the identification node service platform, so that the information management platform in the identification node service platform can execute the acquisition of relevant energy identification files.

[0102] The energy data processing module further parses energy data mining and analysis commands, extracts relevant data from the acquired energy identification files, and performs analysis, such as triggering alarms when thresholds are exceeded. These thresholds are maintained internally by the platform based on various energy consumption safety regulations. The aggregated data on specific energy devices optimizes their energy usage processes. In short, the acquired data can be further utilized for various energy information applications, such as:

[0103] Equipment Management: View real-time data, historical data, event data, and meter reading data from the terminal at any time to help users quickly trace the source of faults and keep track of the equipment's operating status in real time.

[0104] Intelligent inspection: Once inspection rules are defined, several inspection plans can be generated based on the inspection cycle. These inspection plans are displayed in list form on PC and PDA.

[0105] Energy Overview: Visually presents the geographical distribution and energy consumption ranking of all factory buildings. The visualization dashboard shows the total energy consumption of the factory, as well as the operating status of various energy facilities such as electricity, water, gas, cooling, and new energy sources.

[0106] Real-time monitoring: Displays data including equipment operation data, as well as energy consumption data such as cooling, heating, electricity, gas, and water. Alarms are triggered when thresholds are exceeded.

[0107] Cost Statistics: Compiles energy data, sets benchmark prices, calculates energy costs based on energy data and benchmark prices, configures benchmarks from the dimensions of time and energy type, calculates costs, and generates bar charts and KPI line charts.

[0108] Energy Consumption Reports: View all economic and energy consumption indicators of equipment within a custom time period. Query equipment and regional energy consumption by year, month, and day. Display hourly, daily, monthly, and yearly reports of equipment in the form of tables and bar charts. Supports exporting reports to Excel format for local use.

[0109] Energy efficiency statistics: Achieve energy balance through Sankey diagrams, energy consumption analysis, categorized and itemized energy statistics, energy consumption ranking, energy consumption comparison, individual energy consumption statistics, energy consumption reports, energy audits, and energy consumption indicator control to truly achieve refined energy use.

[0110] Economic Analysis: Statistics on energy consumption by region, workshop, and process; energy consumption data displayed in modules; comprehensive view of economic indicators, operation and maintenance indicators, and energy consumption indicators of equipment within a custom time period; multi-dimensional analysis of economic benefits; and data support for energy-saving renovations.

[0111] The energy management system of this invention also includes a system permission module, which assigns permissions to registered enterprises, including the setting of organizations, departments, positions, users, and role-based permission allocation, forming the basis for enterprise data isolation. In this way, after the system permission module is set up, users can access the identification node service platform according to their acquired permissions. Different enterprises can use the same identification node service platform, while simultaneously integrating more energy data. System management assigns different permissions to different enterprises, ensuring that when an enterprise account logs in, it can only see its own operational information, achieving data isolation. Through system-level permission management, multiple enterprises are integrated. After registration, enterprises can use the user interface in the identification node service platform within the system to fill in information templates for management nodes in products and / or processes and upload them to the identification node service platform to generate identification files with unified coding rules. The identification node service platform then uniformly plans and allocates mapping-related identification codes based on all registered enterprise and product information, ensuring that all information on the platform has a traceable association method. This allows the energy management platform to query and analyze more related information and data.

[0112] After the system permission module completes registration, it assigns an identifier prefix to the enterprise based on the enterprise information entered by the user on the identifier node service platform. The identifier prefix uniquely identifies the enterprise entity. Upon receiving the enterprise's relevant information, it is necessary to determine whether the enterprise is authorized to access the system. If authorized, a corresponding identifier prefix is ​​assigned to the enterprise. This identifier prefix can serve as a prefix for the corresponding identifier code and / or identifier file name, ensuring that each enterprise has a unique and identifiable code.

[0113] As a system permission module in this invention, at the energy data collection end, in addition to user input, data collection can also be completed through various gateways. In a specific implementation, in addition to enterprise user registration, energy data collection is also registered in the system permission module, and identification codes are allocated through the identification node service platform.

[0114] On the identification node service platform, one or more types of identification codes are added to each information template to form an identification file. This identification file contains the information filled in the information template, and the identification files are linked by identification codes with a mapping relationship. In this way, more comprehensive energy information data can be associated. For example, full-process energy data can be statistically analyzed through full-process information, and energy consumption during storage and transportation can be associated through the associated warehouse location information, which can further help optimize energy consumption.

[0115] As a preferred embodiment of the present invention, the information in the information template or identification file can be updated.

[0116] The data collected by the data acquisition module in the implementation method undergoes protocol conversion and edge processing to obtain regularized data, which is managed in the form of information templates.

[0117] Furthermore, according to a preferred embodiment of this invention, the management platform uses blockchain technology to manage identification files and also verifies traceability requests. If the verification passes, the corresponding identification file is obtained by parsing and querying the traceability request.

[0118] In another embodiment of the present invention, the information management platform uses blockchain technology to manage the identification files. After the identification files are generated, they are distributed across nodes in the form of blockchain data blocks. Signature and encryption technologies are used to call blockchain smart contracts to achieve blockchain data on-chaining, synchronization, and consensus, with the aim of ensuring data trustworthiness and preventing arbitrary tampering.

[0119] Enterprises and / or various energy data acquisition gateways register enterprise identification prefixes with the energy management system; then, enterprises join the identification node service platform, generate corresponding information templates for each stage of energy consumption, add identification codes to the identification node service platform to form identification files, and then send an on-chain request to the information management platform. With the consensus of the nodes on the information management platform, the on-chain of the identification files is completed.

[0120] After connecting to the energy data mining and analysis platform, upon receiving a data query request, a certificate query request is sent to the information management platform for verification (the request includes Action (GetDepositFile), Version, Region, and EvidenceId). After successful verification, the relevant identification files are located and searched, and the results are returned to the source data mining and analysis platform to complete the data mining and utilization after the information template is parsed.

[0121] This invention proposes an energy management system, which includes:

[0122] Processor; user display interface coupled to the processor, the processor receives information input from the user display interface and displays information; the user display interface includes a first type of user display interface, including a first window displaying multiple optional or customizable information index columns, selecting at least one of the information index columns, filling in information in the corresponding information index column, and generating an information template;

[0123] In one embodiment, the energy information template includes information template index columns such as: processing time, electricity consumption, material name, quality, water consumption, etc.

[0124] The first window includes a first click box. After the first click box is clicked, it will redirect to the second window. The second window displays a list of multiple information templates generated after the processor processes the information index and the corresponding filled information.

[0125] The data template displayed in the second window includes metadata identification number, prefix, product model, template file type selection, operation column, etc., before the identification code is generated.

[0126] In other words, in this embodiment, the user interface generated by the information template obtained by the management system is different from that of the identification code management platform;

[0127] While maintaining the ability to upload data via customized terminals, a separate identification code management platform and interface are used for unified management of identification codes;

[0128] Alternatively, users may be redirected to the second type of user display interface, which displays a list of identification document registration applications. This list is generated from an information index and multiple information templates created after the information is filled in.

[0129] In the second type of user display interface, a list of identification file registration applications is generated one by one according to the corresponding data template. The window displays the list of identification file registration applications, and the displayed column information includes, but is not limited to, prefix, identification, creation time, update time, operation column, etc.

[0130] A list of identification file registrations is generated for each corresponding data template, and the data template and identification file registration application list option boxes in the second type of user display interface are displayed simultaneously. This allows the second type of user display interface to show the relevance of the data template and identification file registration application for easy selection, and to further verify the validity of the data. This enables the data template to be editable and modifiable before it is uploaded to the identification node platform for management.

[0131] The second type of user display interface, after the identification file registration application list is generated, the processor couples with the information management platform to complete the generation and management of the identification file with added identification code;

[0132] It also includes a third type of user display interface, which has an interface for generating or inputting energy data mining and analysis instructions, triggering a jump to a third window. The third window displays a list of identified files after the corresponding query, or directly displays the results interface after the data in the identified files has been analyzed in a visual interface.

[0133] The third type of user display interface provides an interactive interface for the energy data mining and analysis platform. This interface is mainly used to implement the management interface of the energy data mining and analysis platform, allowing users to input energy information management commands or select command templates. In some implementations, the command templates include monitoring data display, energy consumption statistics, energy consumption optimization strategies, etc. Selecting one of the command templates can trigger the execution of data mining and analysis on the processor, thereby completing the information processing. Specific forms include, but are not limited to, directly displaying the identification file, analyzing the data information of the identification file, and outputting the results after performing model calculations.

[0134] Preferably, the corresponding information is extracted directly from the identifier file according to the instruction template and displayed in the second type of user display interface. That is, the identifier node service platform can also be used as a result output platform for energy data mining and analysis.

[0135] The identifier file list displays the names of the identifier files, which are strings containing specific component modules. The information template list displays the names of the information templates, along with an edit button.

[0136] The energy management system includes a fourth type of display interface that receives user registration information input or registration from the energy data acquisition gateway. The string includes registration information or information derived from registration information.

[0137] As an embodiment of the energy management system of this invention in terms of interface management, it provides a simple interface for interaction with users. Through a customized first-type user display interface submission interface, personalized energy data information is entered and managed, and preliminary data standardization steps are completed. In the switching between the second-type user display interface and the first-type user display interface, the customized interface interface interacts with the identification node service platform, and completes the system entry under the unified management rules based on identification codes in the energy management system. Thus, a wider range of unified management of energy information is achieved while retaining customized data information.

[0138] The present invention also provides a storage medium storing a computer program executable by a processor, which, when run on the processor, causes the processor to perform the steps of any of the aforementioned industry-standard product traceability methods. The computer-readable storage medium may include, but is not limited to, any type of disk, including floppy disks, optical disks, DVDs, CD-ROMs, microdrives, as well as magneto-optical disks, ROMs, RAMs, EPROMs, EEPROMs, DRAMs, VRAMs, flash memory devices, magnetic cards or optical cards, nanosystems (including molecular memory ICs), or any type of medium or device suitable for storing instructions and / or data.

[0139] It should be noted that, for the sake of simplicity, the foregoing method embodiments are all described as a series of actions. However, those skilled in the art should understand that the present invention is not limited to the described order of actions, because according to the present invention, some steps can be performed in other orders or simultaneously. Furthermore, those skilled in the art should also understand that the embodiments described in the specification are preferred embodiments, and the actions and modules involved are not necessarily essential to the present invention.

[0140] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions in other embodiments.

[0141] In the embodiments provided by this invention, it should be understood that the disclosed system can be implemented in other ways. For example, the system embodiments described above are merely illustrative; for instance, the division of modules is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple modules or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be through some service interfaces; the indirect coupling or communication connection between systems or modules may be electrical or other forms.

[0142] The modules described as separate components may or may not be physically separate. The components shown as modules may or may not be physical modules; that is, they may be located in one place or distributed across multiple network modules. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs.

[0143] Furthermore, the functional modules in the various embodiments of the present invention can be integrated into one processing module, or each module can exist physically separately, or two or more modules can be integrated into one module. The integrated modules described above can be implemented in hardware or as software functional modules.

[0144] If the integrated module is implemented as a software functional module and sold or used as an independent product, it can be stored in a computer-readable storage device (CMD). Based on this understanding, the technical solution of this invention, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a memory and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of this invention. The aforementioned memory includes various media capable of storing program code, such as USB flash drives, read-only memory (ROM), random access memory (RAM), portable hard drives, magnetic disks, or optical disks.

[0145] The foregoing description is merely an exemplary embodiment of this disclosure and should not be construed as limiting the scope of this disclosure. Any equivalent changes and modifications made in accordance with the teachings of this disclosure shall still fall within the scope of this disclosure. Those skilled in the art will readily conceive of other embodiments of this disclosure upon considering the specification and practicing the disclosure herein. This invention is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not described herein. The specification and embodiments are to be considered exemplary only, and the scope and spirit of this disclosure are defined by the claims.

[0146] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0147] The description in this specification is merely illustrative of the invention. Those skilled in the art can make various modifications or additions to the specific embodiments described or use similar methods to replace them, as long as they do not deviate from the content of this specification or exceed the scope defined in the claims, they should all fall within the protection scope of this invention.

Claims

1. An energy information management method based on identifier resolution, characterized in that, The method includes: Obtain an energy information analysis command; parse the energy information analysis command to obtain an energy information identification code; obtain the corresponding energy identification file using the energy information identification code; parse the energy identification file to obtain the energy information analysis result; The energy identification file is generated from at least one energy information template and an identification code mapped to the information template; the identification code mapped to the information template is generated according to a set rule after parsing the information template; the mapping relationship between the information template and the identification code is as follows: at least one identification code corresponding to the attribute type information to which the information in the information template belongs is mapped to the information template, and the attribute type information includes equipment, gateway, region, enterprise, and material; The energy information analysis instruction includes at least one relationship between an energy information identifier and at least one identifier, and / or, the identifier file corresponding to the energy information identifier and the information in the identifier file corresponding to the identifier.

2. The energy information management method based on identifier resolution according to claim 1, characterized in that, The information template is parsed as follows: the energy information recorded in the information template, as well as the energy information collection object and collection gateway, are parsed.

3. The energy information management method based on identifier resolution according to claim 2, characterized in that, The setting rule is: select one or more identifier codes corresponding to the parsed information.

4. The energy information management method based on identifier resolution according to any one of claims 1-3, characterized in that, The information template is generated from selectable information index items, and information is entered corresponding to the information index items; or, the information template is collected by the data acquisition module and generated under the regularization of information template index items.

5. The energy information management method based on identifier resolution according to any one of claims 1-3, characterized in that, The process of parsing energy information analysis instructions to obtain energy information identification codes involves iterating through and matching the energy information in the information template of the identification file to obtain the energy information identification codes.

6. The energy information management method based on identifier resolution according to claim 5, characterized in that, The name of the identification file includes identification code information.

7. An energy information management system based on identifier resolution, characterized in that, The system includes: Energy source data collection and rule-making platform, including, The data acquisition module is used to collect energy information; And a data rule-making module, used to perform rule-making processing on the energy information to generate information templates and send them to the identifier node service platform; The identifier node service platform includes, The identification file generation module obtains an identification file using the received information template and identification code. The mapping relationship between the information template and the identification code is as follows: at least one identification code corresponding to the attribute type information to which the information in the information template belongs is mapped to the information template. The attribute type information includes device, gateway, region, enterprise, and material. The identification code parsing module is used to obtain energy information analysis instructions, obtain energy information identification codes from the energy information analysis instructions, and send them to the information management platform; Information management platform, including, The storage module is used to store the identifier files generated by the identifier node service platform; The processing module is used to receive the identifier code query and match the corresponding identifier file sent by the identifier node service platform and feed it back to the identifier node service platform; Energy management platform, including, The energy data processing module receives the identification file sent by the identification node service platform, parses the energy information in the identification file, and performs the analysis of the energy information according to the instructions sent by the user interface module. The user interface module is used to receive energy information analysis instructions and send them to the identification node service platform; the energy information analysis instructions include at least one relationship between the energy information identification code and at least one identification code, and / or, the identification file corresponding to the energy information identification code and the information in the identification file corresponding to the identification code.

8. The energy information management system based on identifier resolution according to claim 7, characterized in that, The identifier node service platform includes an information template module, which provides an interface for inputting information templates.

9. The energy information management system based on identifier resolution according to claim 7 or 8, characterized in that, The identifier node service platform also includes: The identifier generation module is used to parse the information template and generate identifiers according to the set rules. The information template is parsed as follows: the energy information recorded in the information template, as well as the energy information collection object and collection gateway; The setting rule is: select one or more identifier codes corresponding to the parsed information.

10. The energy information management system based on identifier resolution according to claim 8, characterized in that, The interface provides information index items for information templates, allowing users to input or collect relevant information to generate information templates.