Enterprise carbon efficiency evaluation method based on industrial Internet identification resolution

Through the carbon efficiency evaluation method based on industrial Internet identity resolution, data is obtained from the industrial Internet and third-party platforms using the carbon efficiency code registration and resolution platform to generate enterprise carbon efficiency evaluation results, which solves the risk of data tampering, ensures the authenticity and accuracy of the evaluation, and supports real-time and controllable evaluation.

CN115239090BActive Publication Date: 2025-10-03CHINA ACADEMY OF INFORMATION & COMM
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Patent Information

Application Number
CN202210780574.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-05
Publication Date
2025-10-03
Estimated Expiration
2042-07-05

AI Technical Summary

Technical Problem

There is a risk of data tampering in corporate carbon efficiency evaluation, which makes it difficult to ensure the authenticity and accuracy of the evaluation results.

Method used

Through the carbon efficiency evaluation method based on industrial Internet identity resolution, the carbon efficiency code registration and resolution platform is used to obtain carbon efficiency evaluation reference data from the industrial Internet identity resolution system and third-party platforms, and combined with the preset carbon emission factor library to generate enterprise carbon efficiency evaluation results, avoiding enterprises from reporting data independently.

Benefits of technology

It ensures the data authenticity and accuracy of corporate carbon efficiency evaluation, ensures the reliability of evaluation results, and supports real-time evaluation and controllable evaluation frequency.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

A method for enterprise carbon efficiency evaluation based on industrial Internet identifier resolution relates to the field of industrial Internet technology and is applied to a carbon efficiency code registration and resolution platform. The method comprises: receiving an enterprise carbon efficiency evaluation request for a target enterprise, wherein the enterprise carbon efficiency evaluation request includes target information; obtaining first carbon efficiency evaluation reference data of the target enterprise from an industrial Internet identifier resolution system according to the enterprise carbon efficiency evaluation request; obtaining second carbon efficiency evaluation reference data of the target enterprise from a third-party platform according to the enterprise carbon efficiency evaluation request; determining the carbon emission factor corresponding to the target information from a preset carbon emission factor library deployed on the carbon efficiency code registration and resolution platform; generating an enterprise carbon efficiency evaluation result for the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data, and the second carbon efficiency evaluation reference data; and returning the enterprise carbon efficiency evaluation result to the electronic device that sent the enterprise carbon efficiency evaluation request. This application can ensure the authenticity and accuracy of the enterprise carbon efficiency evaluation result.
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Description

Technical Field

[0001] The present application relates to the field of industrial Internet technology, and specifically, to a method for evaluating enterprise carbon efficiency based on industrial Internet identity resolution. Background Art

[0002] In some cases, corporate carbon efficiency evaluation is required. At present, the data required for corporate carbon efficiency evaluation is mainly reported by the enterprises themselves. This may lead to the risk of enterprises tampering with the data, and thus the authenticity and accuracy of the corporate carbon efficiency evaluation results cannot be guaranteed. Summary of the Invention

[0003] An embodiment of the present application provides an enterprise carbon efficiency evaluation method based on industrial Internet identity resolution to solve the above technical problems.

[0004] According to a first aspect of an embodiment of the present application, a method for evaluating enterprise carbon efficiency based on industrial Internet identity resolution is provided, which is applied to a carbon efficiency code registration and resolution platform. The method includes:

[0005] Receiving a carbon efficiency evaluation request for a target enterprise; wherein the carbon efficiency evaluation request includes target information, and the target information includes at least one of first industry information of the target enterprise and first energy type information used by the target enterprise;

[0006] According to the enterprise carbon efficiency evaluation request, obtaining the first carbon efficiency evaluation reference data of the target enterprise from the Industrial Internet Identifier Resolution System;

[0007] Obtaining second carbon efficiency evaluation reference data of the target enterprise from a third-party platform according to the enterprise carbon efficiency evaluation request;

[0008] Determining the carbon emission factor corresponding to the target information from a preset carbon emission factor library deployed on the carbon efficiency code registration and parsing platform;

[0009] generating an enterprise carbon efficiency evaluation result of the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data, and the second carbon efficiency evaluation reference data;

[0010] The enterprise carbon efficiency evaluation result is returned to the electronic device that sent the enterprise carbon efficiency evaluation request.

[0011] In an optional example, generating the carbon efficiency evaluation result of the target enterprise according to the carbon emission factor, the first carbon efficiency evaluation reference data, and the second carbon efficiency evaluation reference data includes:

[0012] Determining a first type of evaluation parameter based on the carbon emission factor and the first carbon efficiency evaluation reference data; wherein the first type of evaluation parameter includes at least one of carbon emission intensity and carbon neutrality rate;

[0013] Determining a second type of evaluation parameter based on the carbon emission factor and the second carbon efficiency evaluation reference data; wherein the second type of evaluation parameter includes a carbon efficiency value;

[0014] An enterprise carbon efficiency evaluation result of the target enterprise is generated according to the first type of evaluation parameters and the second type of evaluation parameters.

[0015] In an alternative example,

[0016] The determining of the first type of evaluation parameters according to the carbon emission factor and the first carbon efficiency evaluation reference data includes:

[0017] determining a first energy consumption amount according to the first carbon efficiency evaluation reference data;

[0018] Converting the first energy consumption into a first carbon emission amount using the carbon emission factor;

[0019] Determining at least one of the carbon emission intensity and the carbon neutrality rate based on the first carbon emission amount and a first preset calculation model deployed on the carbon efficiency code registration and parsing platform;

[0020] and / or,

[0021] The determining of the second type of evaluation parameters based on the second carbon efficiency evaluation reference data and the carbon emission factor includes:

[0022] determining a second energy consumption and industrial added value based on the second carbon efficiency evaluation reference data;

[0023] Converting the second energy consumption into a second carbon emission amount using the carbon emission factor;

[0024] The carbon efficiency value is determined based on the industrial added value, the second carbon emissions and a second preset calculation model deployed on the carbon efficiency code registration and parsing platform.

[0025] In an optional example, the method further includes:

[0026] At least one of the preset carbon emission factor library, the first preset calculation model, and the second preset calculation model is updated.

[0027] In an optional example, the target information includes the first industry information, the first energy type information, and the industrial Internet identifier of the target enterprise;

[0028] After receiving the carbon efficiency evaluation request for the target enterprise, the method further includes:

[0029] Determine the second industry information and second energy type information corresponding to the target enterprise according to a preset corresponding relationship; wherein the preset corresponding relationship is the corresponding relationship between the enterprise, industry information, and energy type information;

[0030] The obtaining, according to the enterprise carbon efficiency evaluation request, first carbon efficiency evaluation reference data of the target enterprise from the Industrial Internet Identifier Resolution System includes:

[0031] When the second industry information is the same as the first industry information, and the second energy type information is the same as the first energy type information, the first carbon efficiency evaluation reference data of the target enterprise is obtained from the industrial Internet identifier resolution system according to the industrial Internet identifier.

[0032] In an optional example, the method further includes:

[0033] Obtaining, from the blockchain, third carbon efficiency evaluation reference data of the target enterprise according to the enterprise carbon efficiency evaluation request; wherein, each time the Industrial Internet Identifier Resolution System updates and stores the carbon efficiency evaluation reference data, it simultaneously uploads the corresponding carbon efficiency evaluation reference data to the blockchain for storage;

[0034] performing a preset verification operation on the first carbon efficiency evaluation reference data to obtain a first operation result;

[0035] performing the preset verification operation on the third carbon efficiency evaluation reference data to obtain a second operation result;

[0036] When the first calculation result and the second calculation result are the same, the step of generating the enterprise carbon efficiency evaluation result of the target enterprise according to the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data is performed.

[0037] In an optional example, the method further includes:

[0038] determining a first energy consumption amount according to the first carbon efficiency evaluation reference data;

[0039] determining a second energy consumption amount according to the second carbon efficiency evaluation reference data;

[0040] comparing the first energy consumption and the second energy consumption to obtain a comparison result;

[0041] If it is determined based on the comparison result that the matching check of the first energy consumption and the second energy consumption has passed, the step of generating the enterprise carbon efficiency evaluation result of the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data is executed; otherwise, the generation of the enterprise carbon efficiency evaluation result of the target enterprise is prohibited, and a prompt message is output to characterize the abnormal energy consumption of the target enterprise.

[0042] In an optional example, the method further includes at least one of the following two items:

[0043] Upload the carbon efficiency evaluation results of the enterprise to the blockchain for credible evidence storage;

[0044] In the event that an attack on the carbon effect code registration and parsing platform is detected, attack alarm information is output and / or log information associated with the attack is recorded.

[0045] According to a second aspect of an embodiment of the present application, a computer storage medium is provided, on which a computer program is stored. When the computer program is executed by a processor, the steps of the method described in the first aspect are implemented.

[0046] According to a third aspect of an embodiment of the present application, a carbon effect code registration and parsing platform is provided, comprising a memory and one or more processors, wherein the memory is used to store one or more programs; when the one or more programs are executed by the one or more processors, the method described in the first aspect above is implemented.

[0047] In the solution provided by the embodiment of the present application, the carbon efficiency code registration and resolution platform can, after receiving a carbon efficiency evaluation request for a target enterprise, obtain corresponding carbon efficiency evaluation reference data from the industrial Internet identification resolution system and the third-party platform according to the enterprise carbon efficiency evaluation request, and determine the corresponding carbon emission factor from the preset carbon emission factor library deployed on itself, so as to generate the enterprise carbon efficiency evaluation result of the target enterprise based on the obtained carbon efficiency evaluation reference data and the determined carbon emission factor, and return the enterprise carbon efficiency evaluation result to the electronic device that sent the enterprise carbon efficiency evaluation request. It can be seen that in the embodiment of the present application, based on the construction of the carbon efficiency code registration and resolution platform, the data required for enterprise carbon efficiency evaluation can be obtained from the industrial Internet identification resolution system, the third-party platform, and the carbon efficiency code registration and resolution platform itself, thereby realizing enterprise carbon efficiency evaluation, without the need for the enterprise to independently report the data required for enterprise carbon efficiency evaluation. This can avoid the risk of enterprise tampering with data, ensure the authenticity and accuracy of the data required for enterprise carbon efficiency evaluation, and thus ensure the authenticity and accuracy of the enterprise carbon efficiency evaluation results. In addition, in the embodiment of the present application, the data required for enterprise carbon efficiency evaluation can be obtained in real time, enterprise carbon efficiency evaluation can be carried out at any time, and the evaluation cycle and evaluation frequency of enterprise carbon efficiency evaluation can be controlled. BRIEF DESCRIPTION OF THE DRAWINGS

[0048] The drawings described herein are used to provide a further understanding of the present application and constitute a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application and do not constitute an improper limitation on the present application. In the drawings:

[0049] Figure 1 One of the flow charts of the enterprise carbon efficiency evaluation method based on industrial Internet identity resolution provided in an embodiment of the present application is shown;

[0050] Figure 2 The following is a logical framework diagram of the Industrial Internet identity resolution system;

[0051] Figure 3 A flowchart of industrial internet identity resolution of the industrial internet identity resolution system is shown;

[0052] Figure 4 The second flowchart of the enterprise carbon efficiency evaluation method based on industrial Internet identity resolution provided in an embodiment of the present application is shown;

[0053] Figure 5 The third flowchart of the enterprise carbon efficiency evaluation method based on industrial Internet identity resolution provided in an embodiment of the present application is shown;

[0054] Figure 6 The fourth flowchart of the enterprise carbon efficiency evaluation method based on industrial Internet identity resolution provided in an embodiment of the present application is shown;

[0055] Figure 7 The fifth flowchart of the enterprise carbon efficiency evaluation method based on industrial Internet identity resolution provided in an embodiment of the present application is shown;

[0056] Figure 8 A structural diagram of a carbon effect code registration and parsing platform provided in an embodiment of the present application is shown. DETAILED DESCRIPTION

[0057] See also Figure 1 , the figure shows a flow chart of the enterprise carbon efficiency evaluation method based on industrial Internet identification resolution provided by the embodiment of the present application. This method can be applied to the carbon efficiency code registration and resolution platform, such as Figure 1 As shown, the method includes step 110 , step 120 , step 130 , step 140 , step 150 and step 160 .

[0058] Step 110: Receive an enterprise carbon efficiency evaluation request for a target enterprise; wherein the enterprise carbon efficiency evaluation request includes target information, and the target information includes at least one of first industry information to which the target enterprise belongs and first energy type information used by the target enterprise.

[0059] It should be noted that the target enterprise can be any enterprise that needs to undergo corporate carbon efficiency evaluation, and the "target" in the target enterprise does not constitute any limitation on the target enterprise.

[0060] If there is a need to conduct an enterprise carbon efficiency evaluation on the target enterprise, an enterprise carbon efficiency evaluation request including target information for the target enterprise can be initiated to the carbon efficiency code registration and resolution platform through an electronic device (such as a terminal device). In this way, the carbon efficiency code registration and resolution platform can receive the enterprise carbon efficiency evaluation request.

[0061] Optionally, when the target information includes first industry information, the first industry information can be represented by the industry name or industry code of the industry to which the target enterprise belongs; when the target information includes first energy type information, the first energy type information can be represented by the energy type name or energy type code of the energy used by the target enterprise.

[0062] Step 120: According to the enterprise carbon efficiency evaluation request, obtain the first carbon efficiency evaluation reference data of the target enterprise from the Industrial Internet Identifier Resolution System.

[0063] It should be noted that the logical framework of the Industrial Internet identity resolution system can refer to Figure 2It is easy to see that the Industrial Internet ID resolution system can include public recursive resolution nodes (which can be referred to as recursive nodes), national top-level nodes, secondary nodes and enterprise nodes. In addition, the Industrial Internet ID resolution process of the Industrial Internet ID resolution system can be referred to Figure 3 ,like Figure 3 As shown in the figure, the industrial Internet identity resolution process generally includes the following steps:

[0064] (1) The identity resolution client sends an identity resolution request to the recursive node;

[0065] (2) The recursive node checks the local cache. If there is no cached result, the recursive node sends the resolution request to the national top-level node;

[0066] (3) The national top-level node returns the secondary node resolution address to the recursive node;

[0067] (4) The recursive node sends a resolution request to the secondary node;

[0068] (5) The secondary node returns the enterprise node resolution address to the recursive node;

[0069] (6) The recursive node sends a resolution request to the enterprise node;

[0070] (7) The enterprise node returns the identity resolution service address to the recursive node;

[0071] (8) The recursive node returns the identity service address to the identity resolution client;

[0072] (9) The identity resolution client sends a query request to the enterprise information system;

[0073] (10) The enterprise information system returns the identification object information to the identification resolution client.

[0074] Alternatively, as Figure 4 As shown, according to the enterprise carbon efficiency evaluation request, the carbon efficiency code registration and resolution platform can send a green and low-carbon identity resolution request including the industrial Internet identity of the target enterprise to the recursive node. The recursive node can send a green and low-carbon identity resolution request to the national top-level node, the second-level node, and the enterprise node in turn. The national top-level node, the second-level node, and the enterprise node can respectively respond to the received green and low-carbon identity resolution request, obtain the data required for the enterprise carbon efficiency evaluation of the target enterprise through identity resolution, and return the obtained data to the recursive node. The recursive node can integrate the data from the national top-level node, the second-level node, and the enterprise node to obtain the first carbon efficiency evaluation reference data of the target enterprise, and return the first carbon efficiency evaluation reference data to the carbon efficiency code registration and resolution platform. In this way, the carbon efficiency code registration and resolution platform successfully obtains the first carbon efficiency evaluation reference data from the industrial Internet identity resolution system.

[0075] Step 130: Acquire second carbon efficiency evaluation reference data of the target enterprise from a third-party platform according to the enterprise carbon efficiency evaluation request.

[0076] Optionally, the third-party platform may include platforms of departments such as statistics, economy and information technology, environmental protection, and electricity, and a large amount of data may be stored in the third-party platform.

[0077] In step 130, based on the carbon efficiency evaluation request of the enterprise, the carbon efficiency evaluation reference data related to the target enterprise can be obtained from the massive data stored in the third-party platform through the Application Programming Interface (API). The carbon efficiency evaluation reference data can be used as the second carbon efficiency evaluation reference data.

[0078] Step 140: Determine the carbon emission factor corresponding to the target information from a preset carbon emission factor library deployed on the carbon efficiency code registration and parsing platform.

[0079] It should be noted that the carbon efficiency code registration and parsing platform may be pre-deployed with a preset carbon emission factor library. The preset carbon emission factor library may store multiple carbon emission factors, each of which may correspond to an energy type. Optionally, each carbon emission factor may be expressed as a percentage less than 100%, or as a decimal less than 1.

[0080] Assuming that the target information includes the first energy type information, in step 110, based on the correspondence between the carbon emission factor and the energy type information, the carbon emission factor corresponding to the first energy type information can be determined very conveniently, and the determined carbon emission factor can be used as the carbon emission factor corresponding to the target information.

[0081] Step 150 : Generate an enterprise carbon efficiency evaluation result of the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data, and the second carbon efficiency evaluation reference data.

[0082] Optionally, the target enterprise's carbon efficiency evaluation results include, but are not limited to, the target enterprise's carbon efficiency evaluation grade report, carbon efficiency code, etc. It is understood that the target enterprise's carbon efficiency code can present the target enterprise's carbon efficiency evaluation grade results in a very three-dimensional and intuitive form.

[0083] Step 160: Return the enterprise carbon efficiency evaluation result to the electronic device that sent the enterprise carbon efficiency evaluation request.

[0084] After returning the enterprise carbon efficiency evaluation result to the electronic device that sent the enterprise carbon efficiency evaluation request, the electronic device can display the enterprise carbon efficiency evaluation result through a display screen for manual review of the enterprise carbon efficiency evaluation result.

[0085] In the embodiment of the present application, the carbon efficiency code registration and resolution platform can, after receiving the enterprise carbon efficiency evaluation request for the target enterprise, obtain the corresponding carbon efficiency evaluation reference data from the industrial Internet identification resolution system and the third-party platform respectively according to the enterprise carbon efficiency evaluation request, and determine the corresponding carbon emission factor from the preset carbon emission factor library deployed on itself, so as to generate the enterprise carbon efficiency evaluation result of the target enterprise based on the obtained carbon efficiency evaluation reference data and the determined carbon emission factor, and return the enterprise carbon efficiency evaluation result to the electronic device that sent the enterprise carbon efficiency evaluation request. It can be seen that in the embodiment of the present application, based on the construction of the carbon efficiency code registration and resolution platform, the data required for the enterprise carbon efficiency evaluation can be obtained from the industrial Internet identification resolution system, the third-party platform, and the carbon efficiency code registration and resolution platform itself, thereby realizing the enterprise carbon efficiency evaluation, without the need for the enterprise to independently report the data required for the enterprise carbon efficiency evaluation. This can avoid the risk of enterprise tampering with data, ensure the authenticity and accuracy of the data required for the enterprise carbon efficiency evaluation, and thus ensure the authenticity and accuracy of the enterprise carbon efficiency evaluation results. In addition, in the embodiment of the present application, the data required for the enterprise carbon efficiency evaluation can be obtained in real time, the enterprise carbon efficiency evaluation can be carried out at any time, and the evaluation cycle and evaluation frequency of the enterprise carbon efficiency evaluation can be controlled.

[0086] In an alternative example, Figure 5 As shown, step 150 includes:

[0087] Step 1501: Determine a first type of evaluation parameter based on the carbon emission factor and the first carbon efficiency evaluation reference data; wherein the first type of evaluation parameter includes at least one of carbon emission intensity and carbon neutrality rate;

[0088] Step 1503: Determine the second type of evaluation parameters based on the carbon emission factor and the second carbon efficiency evaluation reference data; wherein the second type of evaluation parameters include the carbon efficiency value;

[0089] Step 1505 : Generate the carbon efficiency evaluation result of the target enterprise based on the first type of evaluation parameters and the second type of evaluation parameters.

[0090] In a specific implementation, step 1501 includes:

[0091] Determine the first energy consumption according to the first carbon efficiency evaluation reference data;

[0092] Using the carbon emission factor, convert the first energy consumption into the first carbon emission;

[0093] Determine at least one of a carbon emission intensity and a carbon neutrality rate based on the first carbon emission amount and a first preset calculation model deployed on the carbon efficiency code registration and parsing platform;

[0094] Optionally, the first carbon efficiency evaluation reference data may include the energy consumption of the target enterprise, such as the daily energy consumption of the target enterprise over multiple days. By using these energy consumptions for calculation, the total energy consumption of the target enterprise can be obtained as the first energy consumption, or the average daily energy consumption of the target enterprise can be obtained as the first energy consumption, or the energy consumption of the target enterprise in a specific time period (such as the last month, the last quarter, etc.) can be obtained as the first energy consumption.

[0095] After determining the first energy consumption, the carbon emission factor determined in step 140 can be used to determine the amount of carbon emissions caused by the energy corresponding to the first energy consumption. The determined carbon emissions can be used as the first carbon emissions converted from the first energy consumption. Optionally, if the first energy consumption represents X kWh of electricity consumption, X can be multiplied by the carbon emission factor, and the result can be used as the first carbon emissions. If the first energy consumption represents Y tons of coal consumption, Y can be multiplied by the carbon emission factor, and the result can be used as the first carbon emissions.

[0096] It should be noted that a first preset calculation model may be deployed on the carbon efficiency code registration and parsing platform. The first preset calculation model may be a model for calculating at least one of carbon emission intensity and carbon neutrality rate. After converting the first energy consumption amount into the first carbon emission amount in the above manner, the first carbon emission amount may be provided to the first preset calculation model. The first preset calculation model may perform calculations according to a predetermined strategy to obtain at least one of the carbon emission intensity and carbon neutrality rate.

[0097] It should be noted that carbon emission intensity can refer to the amount of carbon dioxide emissions per unit of GDP. Therefore, the first preset calculation model can be specifically calculated based on the target enterprise's GDP-related data and the first carbon emission amount to determine carbon emission intensity. Additionally, carbon neutrality can refer to the total amount of carbon dioxide or greenhouse gas emissions directly or indirectly generated by a country, enterprise, product, activity, or individual over a certain period of time, offsetting its own carbon dioxide or greenhouse gas emissions through afforestation, energy conservation, and emission reduction, thereby achieving a positive or negative offset. Therefore, the first preset calculation model can be specifically calculated based on the target enterprise's afforestation data (e.g., the number and type of trees planted), energy conservation and emission reduction data (e.g., the number of kilowatt-hours of electricity saved through the use of clean energy), and the first carbon emission amount to determine carbon neutrality.

[0098] In this embodiment, by combining the first carbon efficiency evaluation reference data, the carbon emission factor and the unified first preset calculation model, at least one of the carbon emission intensity and the carbon neutrality rate can be determined efficiently and reliably, thereby obtaining a first type of evaluation parameter including at least one of the carbon emission intensity and the carbon neutrality rate.

[0099] In a specific implementation, step 1503 includes:

[0100] Determine the second energy consumption and industrial added value based on the second carbon efficiency evaluation reference data;

[0101] Using the carbon emission factor, the second energy consumption is converted into the second carbon emission;

[0102] The carbon efficiency value is determined based on the industrial added value, the second carbon emissions and the second preset calculation model deployed on the carbon efficiency code registration and analysis platform.

[0103] It should be noted that the method for determining the second energy consumption based on the second carbon efficiency evaluation reference data can refer to the description of the method for determining the first energy consumption based on the first carbon efficiency evaluation reference data, and the method for converting the second energy consumption into the second carbon emissions using the carbon emission factor can refer to the description of the method for converting the first energy consumption into the first carbon emissions using the carbon emission factor, which will not be repeated here.

[0104] Optionally, the second carbon efficiency evaluation reference data may include industrial added value, so that the industrial added value can be directly obtained from the second carbon efficiency evaluation reference data.

[0105] It should be noted that a second preset calculation model can be deployed on the carbon efficiency code registration and parsing platform. This second preset calculation model can be used to calculate carbon efficiency. After obtaining the industrial added value and the second carbon emissions in the above manner, these can be provided to the second preset calculation model, which can then perform calculations according to a predetermined strategy to obtain the carbon efficiency. Optionally, the second preset calculation model can specifically divide the carbon emissions by the industrial added value, with the result of this division serving as the carbon efficiency.

[0106] In this embodiment, the carbon efficiency value can be determined efficiently and reliably by combining the industrial added value, the second carbon emission amount and the unified second preset calculation model, thereby obtaining the second type of evaluation parameters including the carbon efficiency value.

[0107] After obtaining the first and second evaluation parameters, the corporate carbon efficiency evaluation grade report, carbon efficiency code, etc. of the target enterprise can be obtained by analyzing and integrating the first and second evaluation parameters, thereby generating the corporate carbon efficiency evaluation results of the target enterprise.

[0108] In an embodiment of the present application, by combining the carbon emission factor and the first carbon efficiency evaluation reference data from the industrial Internet identification resolution system, the first type of evaluation parameters can be determined efficiently and reliably. By combining the carbon emission factor and the second carbon efficiency evaluation reference data from the third-party platform, the second type of evaluation parameters can be determined efficiently and reliably. By combining the first type of evaluation parameters and the second type of evaluation parameters, the enterprise carbon efficiency evaluation results of the target enterprise can be generated efficiently and reliably to realize the enterprise carbon efficiency evaluation of the target enterprise.

[0109] In an optional example, the method further includes:

[0110] At least one of the preset carbon emission factor library, the first preset calculation model, and the second preset calculation model is updated.

[0111] Optionally, the carbon efficiency code registration and parsing platform can receive configuration information, which is used to indicate how to update the preset carbon emission factor library. For example, the configuration information can indicate that the carbon emission factor corresponding to a certain energy type information in the preset carbon emission factor library is updated from 0.5 to 0.4 or 0.6. In this way, according to the configuration information, the carbon efficiency code registration and parsing platform can perform corresponding update processing on the preset carbon emission factor library.

[0112] Optionally, the carbon efficiency code registration and parsing platform can receive a first deployment instruction, which is used to instruct the deployment of a new first preset calculation model. In this way, according to the first deployment instruction, the new first preset calculation model can be used to replace the first preset calculation model currently deployed by the carbon efficiency code registration and parsing platform to achieve the update of the first preset calculation model.

[0113] Optionally, the carbon efficiency code registration and parsing platform can receive a second deployment instruction, which is used to instruct the deployment of a new second preset calculation model. In this way, according to the second deployment instruction, the new second preset calculation model can be used to replace the second preset calculation model currently deployed by the carbon efficiency code registration and parsing platform to achieve the update of the second preset calculation model.

[0114] In an embodiment of the present application, the carbon emission factors stored in the preset carbon emission factor library can be made more accurate by updating the preset carbon emission factor library, the strategy used by the first preset calculation model to calculate at least one of the carbon emission intensity and the carbon neutrality rate can be made more reasonable by updating the first preset calculation model, and the strategy used by the second preset calculation model to calculate the carbon efficiency value can be made more reasonable by updating the second preset calculation model. This is conducive to further ensuring the accuracy and reliability of the enterprise's carbon efficiency evaluation results.

[0115] In an optional example, the target information includes first industry information, first energy type information, and an industrial Internet identifier of the target enterprise;

[0116] After receiving the carbon efficiency evaluation request for the target enterprise, the method further includes:

[0117] Determine the second industry information and second energy type information corresponding to the target enterprise according to a preset corresponding relationship; wherein the preset corresponding relationship is the corresponding relationship between the enterprise, industry information, and energy type information;

[0118] According to the enterprise carbon efficiency evaluation request, the first carbon efficiency evaluation reference data of the target enterprise is obtained from the Industrial Internet Identifier Resolution System, including:

[0119] When the second industry information is the same as the first industry information, and the second energy type information is the same as the first energy type information, the first carbon efficiency evaluation reference data of the target enterprise is obtained from the industrial Internet identifier resolution system according to the industrial Internet identifier.

[0120] Optionally, the preset correspondence can be pre-stored in the national top-level node. The industry information and energy type information corresponding to any enterprise in the preset correspondence can be: the industry information and energy type information provided by the enterprise when registering the green and low-carbon logo prefix. The preset correspondence can also be called logo registration information.

[0121] After receiving the enterprise carbon efficiency evaluation request for the target enterprise, the carbon efficiency code registration and parsing platform can call the identification registration information to determine the second industry information and second energy type information corresponding to the target enterprise recorded in the identification registration information, and compare the second industry information with the first industry information, and compare the second energy type information with the first energy type information.

[0122] If the second industry information is the same as the first industry information, and the second energy type information is the same as the first energy type information, it can be considered that the first industry information and the first energy type information carried in the enterprise carbon efficiency evaluation request are accurate, and thus it can be determined that the enterprise carbon efficiency evaluation request is a legitimate request. Therefore, the subsequent steps 120 to 160 can be executed normally to achieve a normal response to the enterprise carbon efficiency evaluation request.

[0123] If the second industry information is different from the first industry information, and / or the second energy type information is different from the first energy type information, it can be considered that at least one of the first industry information and the first energy type information carried in the enterprise carbon efficiency evaluation request is inaccurate. Therefore, it can be determined that the enterprise carbon efficiency evaluation request may not be a legitimate request. Therefore, subsequent steps 120 to 160 may not be executed.

[0124] In an embodiment of the present application, by setting a preset corresponding relationship and combining it with the target information in the enterprise carbon efficiency evaluation request, the legitimacy of the enterprise carbon efficiency evaluation request can be identified, and only normal responses can be made to legitimate enterprise carbon efficiency evaluation requests, which is conducive to ensuring the security of enterprise-related data.

[0125] exist Figure 1 Based on the embodiment shown, Figure 6 As shown, the method further includes:

[0126] Step 141: Obtain third carbon efficiency evaluation reference data of the target enterprise from the blockchain according to the enterprise carbon efficiency evaluation request; wherein, the Industrial Internet Identifier Resolution System simultaneously uploads the corresponding carbon efficiency evaluation reference data to the blockchain for storage each time the carbon efficiency evaluation reference data is updated and stored;

[0127] Step 142: performing a preset verification operation on the first carbon efficiency evaluation reference data to obtain a first operation result;

[0128] Step 143: performing a preset verification operation on the third carbon efficiency evaluation reference data to obtain a second operation result;

[0129] Step 144 , determining whether the first operation result and the second operation result are the same, if so, executing step 150 .

[0130] It should be noted that each time a national top-level node, a second-level node, or an enterprise node updates its carbon efficiency evaluation reference data, it can simultaneously upload the updated carbon efficiency evaluation reference data to the blockchain for storage. Each time a carbon efficiency evaluation reference data is stored, it can simultaneously upload the updated carbon efficiency evaluation reference data to the blockchain for storage. In other words, under normal circumstances, the blockchain will store all carbon efficiency evaluation reference data stored by the national top-level node, second-level node, and enterprise node. It is understood that information stored in the blockchain is difficult to tamper with.

[0131] In this embodiment of the present application, the carbon efficiency code registration and parsing platform can obtain the target enterprise's carbon efficiency evaluation reference data from a third-party platform based on the enterprise's carbon efficiency evaluation request as the third carbon efficiency evaluation reference data. Next, the carbon efficiency code registration and parsing platform can perform a preset verification operation on the first carbon efficiency evaluation reference data and the third carbon efficiency evaluation reference data to obtain a first calculation result and a second calculation result.

[0132] Optionally, the preset check operation may be a hash operation, and accordingly, the first operation result and the second operation result are respectively a hash value. Of course, the preset check operation may also be a cyclic redundancy check (CRC) operation or other operations, which are not listed here one by one.

[0133] After obtaining the first operation result and the second operation result, the first operation result and the second operation result may be compared to determine whether the first operation result and the second operation result are the same.

[0134] If the first operation result and the second operation result are the same, it can be considered that the carbon efficiency evaluation reference data stored by the Industrial Internet Identifier Resolution System and the blockchain for the target enterprise are consistent, which is consistent with normal circumstances. Therefore, it can be determined that the first carbon efficiency evaluation reference data obtained from the Industrial Internet Identifier Resolution System is reliable data. Therefore, the subsequent steps 150 and 160 can be executed normally to realize the corporate carbon efficiency evaluation of the target enterprise.

[0135] If the first operation result and the second operation result are different, it can be considered that the carbon efficiency evaluation reference data stored by the Industrial Internet Identifier Resolution System and the blockchain for the target enterprise are inconsistent, which is inconsistent with normal circumstances. Therefore, it can be determined that the first carbon efficiency evaluation reference data obtained from the Industrial Internet Identifier Resolution System may not be reliable enough. Therefore, subsequent steps 150 and 160 may not be executed.

[0136] In an embodiment of the present application, based on the third carbon efficiency evaluation reference data obtained from the blockchain, combined with the execution of the preset verification operation and the comparison of the operation results, it is possible to efficiently and reliably determine whether the first carbon efficiency evaluation reference data obtained from the Industrial Internet Identifier Resolution System is reliable, and only perform subsequent processing if it is reliable. This is conducive to further ensuring the reliability of the company's carbon efficiency evaluation results.

[0137] exist Figure 1 Based on the embodiment shown, Figure 7 As shown, the method further includes:

[0138] Step 145: determining a first energy consumption amount based on the first carbon efficiency evaluation reference data;

[0139] Step 146: determining a second energy consumption amount based on the second carbon efficiency evaluation reference data;

[0140] Step 147, comparing the first energy consumption and the second energy consumption to obtain a comparison result;

[0141] Step 148 , based on the comparison result, determine whether the matching check of the first energy consumption and the second energy consumption passes. If so, execute step 150 ; otherwise, execute step 170 .

[0142] Step 170 : prohibiting the generation of the carbon efficiency evaluation result of the target enterprise, and outputting a prompt message indicating that the energy consumption of the target enterprise is abnormal.

[0143] It should be noted that the specific implementation of step 145 and step 146 can refer to the relevant description of step 1501 and step 1503 above, and will not be repeated here.

[0144] Alternatively, the target enterprise may use electricity as the energy type. The first energy consumption amount may represent the target enterprise's actual electricity consumption, and the second energy consumption amount may be an estimate of the target enterprise's electricity consumption based on the electricity purchased from the power sector. The estimated target enterprise's electricity consumption may be the same as the electricity purchased from the power sector. It should be noted that, under normal circumstances, the target enterprise's actual electricity consumption is less than or equal to the electricity purchased from the power sector.

[0145] In a specific example, the first energy consumption can indicate that the actual electricity consumption of the target enterprise is 4000 kWh, and the second energy consumption can indicate that the circuit purchased by the target enterprise from the power department is 5000 kWh. Since 4000 kWh is less than 5000 kWh, it can be determined that the comparison result of the first energy consumption and the second energy consumption is consistent with the normal situation. Then, it can be further determined that the matching check of the first energy consumption and the second energy consumption has passed, and then steps 150 to 160 can be continued to realize the corporate carbon efficiency evaluation of the target enterprise.

[0146] In another specific example, the first energy consumption may indicate that the target enterprise actually consumed 6,000 kWh of electricity, while the second energy consumption may indicate that the target enterprise purchased 5,000 kWh of circuits from the power company. Since 6,000 kWh is 1,000 kWh greater than 5,000 kWh, it can be determined that the comparison result of the first and second energy consumptions is inconsistent with normal conditions. Therefore, it can be further determined that the matching check of the first and second energy consumptions has failed. Next, step 170 can be executed to prohibit the generation of the target enterprise's corporate carbon efficiency evaluation results and output a prompt message indicating that the target enterprise's energy consumption is abnormal. Optionally, the prompt message can be output via a short message, email, or other means.

[0147] In an embodiment of the present application, by comparing the first energy consumption determined according to the first carbon efficiency evaluation reference data with the second energy consumption determined according to the second carbon efficiency evaluation reference data, it is possible to efficiently and reliably determine whether the matching check of the first energy consumption and the second energy consumption has passed. If passed, the corporate carbon efficiency evaluation of the target enterprise can be continued. If not, the corporate carbon efficiency evaluation of the target enterprise can be discontinued, and prompt information can be output to prompt manual verification of relevant information of the target enterprise, such as verifying whether the actual electricity consumption of the target enterprise is indeed 6,000 degrees, and for example, verifying whether the industry information and energy type information corresponding to the target enterprise recorded in the identification registration information are accurate.

[0148] In an optional example, the method further includes at least one of the following two items:

[0149] Upload the company's carbon efficiency evaluation results to the blockchain for credible evidence storage;

[0150] When an attack on the Carbon Effect Code Registration and Parsing Platform is detected, an attack alarm message is output and / or log information associated with the attack is recorded.

[0151] In an embodiment of the present application, the carbon efficiency code registration and analysis platform can upload the corporate carbon efficiency evaluation results of the target enterprise to the blockchain for credible evidence storage, so that users in need can review the corporate carbon efficiency evaluation results of the target enterprise based on the blockchain.

[0152] In the embodiment of the present application, the Carbon Effect Code Registration and Parsing Platform may have a security situation awareness function. Based on the security situation awareness function, the Carbon Effect Code Registration and Parsing Platform may determine whether it is under attack. If the Carbon Effect Code Registration and Parsing Platform is under attack, the attack alarm information may be output in the form of voice, text, light, etc., so that humans can promptly understand the situation that the Carbon Effect Code Registration and Parsing Platform is under attack, and promptly respond to the attack, thereby ensuring the security of the Carbon Effect Code Registration and Parsing Platform. If the Carbon Effect Code Registration and Parsing Platform is under attack, it may also record log information associated with the attack, such as the specific time of the attack, the IP address that initiated the attack, etc., so that humans can subsequently respond to the attack in an appropriate manner based on the log information, thereby ensuring the security of the Carbon Effect Code Registration and Parsing Platform.

[0153] In an alternative example, Figure 4 As shown in the figure, enterprise carbon efficiency evaluation can be achieved through the following steps:

[0154] (1) The enterprise (client) initiates a carbon efficiency evaluation application by logging into the Carbon Efficiency Code Registration and Analysis Platform and selecting information such as the industry to which the enterprise belongs and the main energy type used (equivalent to initiating a carbon efficiency evaluation request for the target enterprise to the Carbon Efficiency Code Registration and Analysis Platform as mentioned above);

[0155] (2) The carbon efficiency code registration and analysis platform calls the identification registration information and compares it with the filled-in information (equivalent to the target information mentioned above);

[0156] (3) After comparing and confirming that the filled-in information is correct (equivalent to the second industry information being the same as the first industry information, and the second energy type information being the same as the first energy type information in the above text), the carbon efficiency code registration and resolution platform sends a green low-carbon identification resolution request to the recursive node, requesting the required data (equivalent to the first carbon efficiency evaluation reference data in the above text);

[0157] (4) The recursive node sends a green and low-carbon identity resolution request to the national top-level node, the second-level node, and the enterprise node in turn, obtains the corresponding data required for carbon efficiency evaluation through identity resolution, and returns it to the recursive node;

[0158] (5) The recursive node returns the parsing result, that is, the recursive node synchronizes the data (equivalent to the first carbon efficiency evaluation reference data mentioned above) to the carbon efficiency code registration and parsing platform;

[0159] (6) The carbon efficiency code registration and analysis platform compares the analyzed data with the blockchain stored data to verify whether the data has been tampered with (equivalent to comparing the first operation result with the second operation result to determine whether the first carbon efficiency evaluation reference data is reliable);

[0160] (7) If the first calculation result and the second calculation result are the same, the carbon efficiency code registration and analysis platform calls the carbon efficiency calculation model (such as the first preset calculation model and the second preset calculation model mentioned above), the carbon efficiency evaluation index system, and the carbon emission factor library including multiple carbon emission factors to calculate indicators such as carbon emission intensity and carbon neutrality rate;

[0161] (8) The carbon efficiency code registration and analysis platform calls statistical, economic and information data through API interfaces and other forms (equivalent to obtaining the second carbon efficiency evaluation reference data of the target enterprise from the third-party platform mentioned above), and calculates the carbon efficiency value through the carbon efficiency evaluation index system;

[0162] (9) The carbon efficiency code registration and analysis platform obtains the enterprise carbon efficiency evaluation report and carbon efficiency code (equivalent to the enterprise carbon efficiency evaluation results of the target enterprise generated above) through calculation, analysis and evaluation, and returns them to the enterprise (client).

[0163] In summary, the embodiment of the present application adopts an enterprise carbon efficiency evaluation system based on industrial Internet identification resolution, which includes a carbon efficiency code registration and resolution platform, an industrial Internet identification resolution system, a third-party platform, a carbon efficiency calculation model, a carbon efficiency evaluation index system, a carbon emission factor inventory, and other parts. Among them, the carbon efficiency code registration and resolution platform can be responsible for the collection, storage, and management of enterprise carbon efficiency calculations and related data, and has service functions such as carbon efficiency evaluation, evaluation result presentation, and data security situation awareness; the industrial Internet identification resolution system can provide data query, resolution and other service functions for enterprise carbon efficiency evaluation based on its own public data service capabilities; the third-party platform can include platforms of statistics, economics and information technology, environmental protection and other departments, which can count carbon emission-related data and transmit data to the carbon efficiency code registration and resolution platform through API interface calls; the carbon efficiency calculation model can provide carbon efficiency calculation and other service functions based on the carbon efficiency rating index system; the carbon efficiency evaluation index system and the carbon emission factor library can provide specific indicators and calculation factors (equivalent to the carbon emission factors mentioned above) for carbon efficiency evaluation.

[0164] By utilizing the above-mentioned enterprise carbon efficiency evaluation system, we can take the application of industrial Internet identification as the starting point and give full play to the value of industrial Internet identification in the field of industrial Internet. In response to the current pain points and difficulties of enterprises in conducting carbon efficiency evaluation, such as the lack of effective data collection methods and inaccurate and low carbon efficiency calculation data, through the identification resolution system, we can utilize the existing industrial Internet identification and obtain the data required for enterprise carbon efficiency accounting through resolution to solve the problem of inaccurate data reported independently by enterprises. Through the carbon efficiency code registration and resolution platform, we can call the calculation model, carbon efficiency evaluation index system, and carbon emission factor library to conduct active carbon efficiency and accurate accounting to overcome the problems of poor authenticity of carbon efficiency evaluation data, differentiated calculation models, inconsistent indicator system, and errors in manual accounting. This will improve the refinement and standardization of enterprise carbon efficiency evaluation, and the authenticity and accuracy of enterprise carbon efficiency evaluation results, provide a reference for enterprises to optimize their industrial structure and transform green energy-saving technologies, and promote the process of carbon peak and carbon neutrality.

[0165] Based on the same inventive concept, an embodiment of the present application provides a computer storage medium having a computer program stored thereon. When the computer program is executed by a processor, the following steps are implemented:

[0166] Receiving a request for an enterprise carbon efficiency evaluation for a target enterprise; wherein the enterprise carbon efficiency evaluation request includes target information, and the target information includes at least one of first industry information of the target enterprise and first energy type information used by the target enterprise;

[0167] According to the enterprise carbon efficiency evaluation request, obtain the first carbon efficiency evaluation reference data of the target enterprise from the Industrial Internet Identifier Resolution System;

[0168] Obtain the target enterprise's second carbon efficiency evaluation reference data from a third-party platform based on the enterprise's carbon efficiency evaluation request;

[0169] Determine the carbon emission factor corresponding to the target information from the preset carbon emission factor library deployed on the carbon efficiency code registration and analysis platform;

[0170] Generate the carbon efficiency evaluation results of the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data;

[0171] The enterprise carbon efficiency evaluation result is returned to the electronic device that sent the enterprise carbon efficiency evaluation request.

[0172] In an optional example, when the computer program is executed by a processor, the following steps are specifically implemented:

[0173] Determine the first type of evaluation parameters based on the carbon emission factor and the first carbon efficiency evaluation reference data; wherein the first type of evaluation parameters include at least one of carbon emission intensity and carbon neutrality rate;

[0174] Determine the second type of evaluation parameters based on the carbon emission factor and the second carbon efficiency evaluation reference data; wherein the second type of evaluation parameters include the carbon efficiency value;

[0175] Based on the first and second evaluation parameters, the carbon efficiency evaluation results of the target enterprise are generated.

[0176] In an optional example, when the computer program is executed by a processor, the following steps are specifically implemented:

[0177] Determine the first energy consumption according to the first carbon efficiency evaluation reference data;

[0178] Using the carbon emission factor, convert the first energy consumption into the first carbon emission;

[0179] At least one of the carbon emission intensity and the carbon neutrality rate is determined based on the first carbon emission amount and a first preset calculation model deployed on the carbon efficiency code registration and parsing platform.

[0180] In an optional example, when the computer program is executed by a processor, the following steps are specifically implemented:

[0181] Determine the second energy consumption and industrial added value based on the second carbon efficiency evaluation reference data;

[0182] Using the carbon emission factor, the second energy consumption is converted into the second carbon emission;

[0183] The carbon efficiency value is determined based on the industrial added value, the second carbon emissions and the second preset calculation model deployed on the carbon efficiency code registration and analysis platform.

[0184] In an optional example, when the computer program is executed by a processor, the following steps are further implemented:

[0185] At least one of the preset carbon emission factor library, the first preset calculation model, and the second preset calculation model is updated.

[0186] In an optional example, the target information includes first industry information, first energy type information, and an industrial Internet identifier of the target enterprise;

[0187] When the computer program is executed by the processor, the following steps are also implemented:

[0188] After receiving a carbon efficiency evaluation request for a target enterprise, determining the second industry information and second energy type information corresponding to the target enterprise according to a preset corresponding relationship; wherein the preset corresponding relationship is a corresponding relationship between the enterprise, industry information, and energy type information;

[0189] According to the enterprise carbon efficiency evaluation request, the first carbon efficiency evaluation reference data of the target enterprise is obtained from the Industrial Internet Identifier Resolution System, including:

[0190] When the second industry information is the same as the first industry information, and the second energy type information is the same as the first energy type information, the first carbon efficiency evaluation reference data of the target enterprise is obtained from the industrial Internet identifier resolution system according to the industrial Internet identifier.

[0191] In an optional example, when the computer program is executed by a processor, the following steps are further implemented:

[0192] According to the enterprise's carbon efficiency evaluation request, the third carbon efficiency evaluation reference data of the target enterprise is obtained from the blockchain; wherein, each time the Industrial Internet Identifier Resolution System updates and stores the carbon efficiency evaluation reference data, the corresponding carbon efficiency evaluation reference data is simultaneously uploaded to the blockchain for storage;

[0193] performing a preset verification operation on the first carbon efficiency evaluation reference data to obtain a first operation result;

[0194] performing a preset verification operation on the third carbon efficiency evaluation reference data to obtain a second operation result;

[0195] When the first operation result and the second operation result are the same, a step of generating an enterprise carbon efficiency evaluation result of the target enterprise according to the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data is executed.

[0196] In an optional example, when the computer program is executed by a processor, the following steps are further implemented:

[0197] Determine the first energy consumption according to the first carbon efficiency evaluation reference data;

[0198] determining a second energy consumption amount according to the second carbon efficiency evaluation reference data;

[0199] comparing the first energy consumption and the second energy consumption to obtain a comparison result;

[0200] If it is determined based on the comparison result that the matching check of the first energy consumption and the second energy consumption has passed, the step of generating the enterprise carbon efficiency evaluation result of the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data is executed; otherwise, the generation of the enterprise carbon efficiency evaluation result of the target enterprise is prohibited, and a prompt message is output to characterize the abnormal energy consumption of the target enterprise.

[0201] In an optional example, when the computer program is executed by a processor, the following steps are further implemented:

[0202] Upload the company's carbon efficiency evaluation results to the blockchain for credible evidence storage.

[0203] In an optional example, when the computer program is executed by a processor, the following steps are further implemented:

[0204] When an attack on the Carbon Effect Code Registration and Parsing Platform is detected, an attack alarm message is output and / or log information associated with the attack is recorded.

[0205] Based on the same inventive concept, this embodiment provides a carbon effect code registration and analysis platform, see Figure 8 , including a memory 801, a processor 802, a bus 803, and a computer program stored in the memory 801 and executable on the processor 802. When the processor 802 executes the computer program, the following steps are implemented:

[0206] Receiving a request for an enterprise carbon efficiency evaluation for a target enterprise; wherein the enterprise carbon efficiency evaluation request includes target information, and the target information includes at least one of first industry information of the target enterprise and first energy type information used by the target enterprise;

[0207] According to the enterprise carbon efficiency evaluation request, obtain the first carbon efficiency evaluation reference data of the target enterprise from the Industrial Internet Identifier Resolution System;

[0208] Obtain the target enterprise's second carbon efficiency evaluation reference data from a third-party platform based on the enterprise's carbon efficiency evaluation request;

[0209] Determine the carbon emission factor corresponding to the target information from the preset carbon emission factor library deployed on the carbon efficiency code registration and analysis platform;

[0210] Generate the carbon efficiency evaluation results of the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data;

[0211] The enterprise carbon efficiency evaluation result is returned to the electronic device that sent the enterprise carbon efficiency evaluation request.

[0212] In an optional example, when the processor 802 executes the computer program, the following steps are specifically implemented:

[0213] Determine the first type of evaluation parameters based on the carbon emission factor and the first carbon efficiency evaluation reference data; wherein the first type of evaluation parameters include at least one of carbon emission intensity and carbon neutrality rate;

[0214] Determine the second type of evaluation parameters based on the carbon emission factor and the second carbon efficiency evaluation reference data; wherein the second type of evaluation parameters include the carbon efficiency value;

[0215] Based on the first and second evaluation parameters, the carbon efficiency evaluation results of the target enterprise are generated.

[0216] In an optional example, when the processor 802 executes the computer program, the following steps are specifically implemented:

[0217] Determine the first energy consumption according to the first carbon efficiency evaluation reference data;

[0218] Using the carbon emission factor, convert the first energy consumption into the first carbon emission;

[0219] At least one of the carbon emission intensity and the carbon neutrality rate is determined based on the first carbon emission amount and a first preset calculation model deployed on the carbon efficiency code registration and parsing platform.

[0220] In an optional example, when the processor 802 executes the computer program, the following steps are specifically implemented:

[0221] Determine the second energy consumption and industrial added value based on the second carbon efficiency evaluation reference data;

[0222] Using the carbon emission factor, the second energy consumption is converted into the second carbon emission;

[0223] The carbon efficiency value is determined based on the industrial added value, the second carbon emissions and the second preset calculation model deployed on the carbon efficiency code registration and analysis platform.

[0224] In an optional example, when the processor 802 executes the computer program, it further implements the following steps:

[0225] At least one of the preset carbon emission factor library, the first preset calculation model, and the second preset calculation model is updated.

[0226] In an optional example, the target information includes first industry information, first energy type information, and an industrial Internet identifier of the target enterprise;

[0227] When the processor 802 executes the computer program, the processor 802 further implements the following steps:

[0228] After receiving a carbon efficiency evaluation request for a target enterprise, determining the second industry information and second energy type information corresponding to the target enterprise according to a preset corresponding relationship; wherein the preset corresponding relationship is a corresponding relationship between the enterprise, industry information, and energy type information;

[0229] According to the enterprise carbon efficiency evaluation request, the first carbon efficiency evaluation reference data of the target enterprise is obtained from the Industrial Internet Identifier Resolution System, including:

[0230] When the second industry information is the same as the first industry information, and the second energy type information is the same as the first energy type information, the first carbon efficiency evaluation reference data of the target enterprise is obtained from the industrial Internet identifier resolution system according to the industrial Internet identifier.

[0231] In an optional example, when the processor 802 executes the computer program, it further implements the following steps:

[0232] According to the enterprise's carbon efficiency evaluation request, the third carbon efficiency evaluation reference data of the target enterprise is obtained from the blockchain; wherein, each time the Industrial Internet Identifier Resolution System updates and stores the carbon efficiency evaluation reference data, the corresponding carbon efficiency evaluation reference data is simultaneously uploaded to the blockchain for storage;

[0233] performing a preset verification operation on the first carbon efficiency evaluation reference data to obtain a first operation result;

[0234] performing a preset verification operation on the third carbon efficiency evaluation reference data to obtain a second operation result;

[0235] When the first operation result and the second operation result are the same, a step of generating an enterprise carbon efficiency evaluation result of the target enterprise according to the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data is executed.

[0236] In an optional example, when the processor 802 executes the computer program, it further implements the following steps:

[0237] Determine the first energy consumption according to the first carbon efficiency evaluation reference data;

[0238] determining a second energy consumption amount according to the second carbon efficiency evaluation reference data;

[0239] comparing the first energy consumption and the second energy consumption to obtain a comparison result;

[0240] If it is determined based on the comparison result that the matching check of the first energy consumption and the second energy consumption has passed, the step of generating the enterprise carbon efficiency evaluation result of the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data is executed; otherwise, the generation of the enterprise carbon efficiency evaluation result of the target enterprise is prohibited, and a prompt message is output to characterize the abnormal energy consumption of the target enterprise.

[0241] In an optional example, when the processor 802 executes the computer program, it further implements the following steps:

[0242] Upload the company's carbon efficiency evaluation results to the blockchain for credible evidence storage.

[0243] In an optional example, when the processor 802 executes the computer program, it further implements the following steps:

[0244] When an attack on the Carbon Effect Code Registration and Parsing Platform is detected, an attack alarm message is output and / or log information associated with the attack is recorded.

[0245] Those skilled in the art will appreciate that the embodiments of the present application may be provided as methods, systems, or computer program products. Therefore, the present application may take the form of an entirely hardware embodiment, an entirely software embodiment, or an embodiment combining software and hardware. Furthermore, the present application may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0246] The present application is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each process and / or block in the flowchart and / or block diagram, as well as the combination of processes and / or blocks in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the processes in the flowchart and / or block diagram. Figure 1 a process or multiple processes and / or boxes Figure 1 A device that provides the functions specified in a block or multiple blocks.

[0247] These computer program instructions may also be stored in a computer readable memory that can direct a computer or other programmable data processing device to work in a specific manner, so that the instructions stored in the computer readable memory produce an article of manufacture comprising an instruction device, which implements the process Figure 1 a process or multiple processes and / or boxes Figure 1 The function specified in one or more boxes.

[0248] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 A step that specifies a function in one or more boxes.

[0249] Although the preferred embodiments of the present application have been described, those skilled in the art may make additional changes and modifications to these embodiments once they have learned the basic creative concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of the present application.

[0250] Obviously, those skilled in the art may make various changes and modifications to this application without departing from the spirit and scope of this application. Thus, if these modifications and variations of this application fall within the scope of the claims of this application and their equivalents, this application is intended to include these modifications and variations.

Claims

1. A method for evaluating enterprise carbon efficiency based on industrial Internet identifier resolution, characterized in that: Applied to the carbon effect code registration and analysis platform, the method includes: Receiving a carbon efficiency evaluation request for a target enterprise; wherein the carbon efficiency evaluation request includes target information, and the target information includes at least one of first industry information of the target enterprise and first energy type information used by the target enterprise; According to the enterprise carbon efficiency evaluation request, obtaining the first carbon efficiency evaluation reference data of the target enterprise from the Industrial Internet Identifier Resolution System; Obtaining second carbon efficiency evaluation reference data of the target enterprise from a third-party platform according to the enterprise carbon efficiency evaluation request; Determining the carbon emission factor corresponding to the target information from a preset carbon emission factor library deployed on the carbon efficiency code registration and parsing platform; determining a first energy consumption amount according to the first carbon efficiency evaluation reference data; determining a second energy consumption amount based on the second carbon efficiency evaluation reference data; wherein, when the target enterprise uses electricity, the first energy consumption amount includes the actual amount of electricity consumed by the target enterprise, and the second energy consumption amount includes the estimated amount of electricity consumed by the target enterprise based on the amount of electricity purchased by the target enterprise; comparing the first energy consumption and the second energy consumption to obtain a comparison result; If it is determined, based on the comparison result, that the matching check of the first energy consumption and the second energy consumption has passed, generating an enterprise carbon efficiency evaluation result for the target enterprise based on the carbon emission factor, the first carbon efficiency evaluation reference data, and the second carbon efficiency evaluation reference data; otherwise, prohibiting the generation of the enterprise carbon efficiency evaluation result for the target enterprise, and outputting a prompt message indicating that the energy consumption of the target enterprise is abnormal; Returning the enterprise carbon efficiency evaluation result to the electronic device that sent the enterprise carbon efficiency evaluation request; The step of generating the carbon efficiency evaluation result of the target enterprise according to the carbon emission factor, the first carbon efficiency evaluation reference data, and the second carbon efficiency evaluation reference data includes: Determining a first type of evaluation parameter based on the carbon emission factor and the first carbon efficiency evaluation reference data; wherein the first type of evaluation parameter includes at least one of carbon emission intensity and carbon neutrality rate; Determining a second type of evaluation parameter based on the carbon emission factor and the second carbon efficiency evaluation reference data; wherein the second type of evaluation parameter includes a carbon efficiency value; An enterprise carbon efficiency evaluation result of the target enterprise is generated according to the first type of evaluation parameters and the second type of evaluation parameters.

2. The method according to claim 1, characterized in that The determining of the first type of evaluation parameters according to the carbon emission factor and the first carbon efficiency evaluation reference data includes: determining a first energy consumption amount according to the first carbon efficiency evaluation reference data; Converting the first energy consumption into a first carbon emission amount using the carbon emission factor; Determining at least one of the carbon emission intensity and the carbon neutrality rate based on the first carbon emission amount and a first preset calculation model deployed on the carbon efficiency code registration and parsing platform; and / or, The determining of the second type of evaluation parameters based on the second carbon efficiency evaluation reference data and the carbon emission factor includes: determining a second energy consumption and industrial added value based on the second carbon efficiency evaluation reference data; Converting the second energy consumption into a second carbon emission amount using the carbon emission factor; The carbon efficiency value is determined based on the industrial added value, the second carbon emissions and a second preset calculation model deployed on the carbon efficiency code registration and parsing platform.

3. The method according to claim 2, characterized in that The method further comprises: At least one of the preset carbon emission factor library, the first preset calculation model, and the second preset calculation model is updated.

4. The method according to claim 1, wherein The target information includes the first industry information, the first energy type information, and the industrial Internet identifier of the target enterprise; After receiving the carbon efficiency evaluation request for the target enterprise, the method further includes: Determine the second industry information and second energy type information corresponding to the target enterprise according to a preset corresponding relationship; wherein the preset corresponding relationship is the corresponding relationship between the enterprise, industry information, and energy type information; The obtaining, according to the enterprise carbon efficiency evaluation request, first carbon efficiency evaluation reference data of the target enterprise from the Industrial Internet Identifier Resolution System includes: When the second industry information is the same as the first industry information, and the second energy type information is the same as the first energy type information, the first carbon efficiency evaluation reference data of the target enterprise is obtained from the industrial Internet identifier resolution system according to the industrial Internet identifier.

5. The method according to claim 1, wherein The method further comprises: Obtaining, from the blockchain, third carbon efficiency evaluation reference data of the target enterprise according to the enterprise carbon efficiency evaluation request; wherein, each time the Industrial Internet Identifier Resolution System updates and stores the carbon efficiency evaluation reference data, it simultaneously uploads the corresponding carbon efficiency evaluation reference data to the blockchain for storage; performing a preset verification operation on the first carbon efficiency evaluation reference data to obtain a first operation result; performing the preset verification operation on the third carbon efficiency evaluation reference data to obtain a second operation result; When the first calculation result and the second calculation result are the same, the step of generating the enterprise carbon efficiency evaluation result of the target enterprise according to the carbon emission factor, the first carbon efficiency evaluation reference data and the second carbon efficiency evaluation reference data is performed.

6. The method according to claim 1, wherein The method further comprises at least one of the following: Upload the carbon efficiency evaluation results of the enterprise to the blockchain for credible evidence storage; In the event that an attack on the carbon effect code registration and parsing platform is detected, attack alarm information is output and / or log information associated with the attack is recorded.

7. A computer storage medium, characterized in that A computer program is stored thereon, and when the computer program is executed by a processor, the steps of the method according to any one of claims 1 to 6 are implemented.

8. A carbon effect code registration and analysis platform, characterized by: The device comprises a memory and one or more processors, wherein the memory is used to store one or more programs; when the one or more programs are executed by the one or more processors, the method according to any one of claims 1 to 6 is implemented.

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