Engineering management evaluation method and device based on digital technology, and electronic equipment

By building quality and safety control standards and harmful substance accumulation models, and integrating the construction links into the traceability platform, the problem of information asymmetry during the construction process is solved, consumers can grasp the real-time grasp and in-depth participation of project progress, and protect consumer rights and corporate credibility.

CN120235495APending Publication Date: 2025-07-01SHANGHAI JIANKE TECHN ASSESSMENT OF CONSTR
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Patent Information

Application Number
CN202510288152.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2025-07-01

AI Technical Summary

Technical Problem

During the construction process, due to the information asymmetry between the supply and demand parties, it is difficult for consumers to grasp the progress of the project in real time, which easily leads to a decrease in the credibility of the enterprise. During the project acceptance, consumers cannot participate in depth, and it is difficult to provide effective evidence when there is a dispute, resulting in consumers being in a weak position.

Method used

By constructing quality and safety control standards for customized homes in the whole house, building a model for the accumulation of hazardous substance concentrations, obtaining current information on product energy and resource consumption, and integrating each link in the construction process on the traceability platform for consumers to query and supervise.

Benefits of technology

This has achieved information symmetry, and consumers can grasp the progress of the project in real time, participate in project acceptance in depth, protect consumers' rights and interests, and provide effective evidence when disputes arise, which improves the credibility and service level of the company.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a project management evaluation method and device based on a digital technology and electronic equipment, and the method comprises the steps: constructing a quality safety control standard of a whole-house customized home, and the standard comprises a general basis, design requirements, plate materials and a detection method in a customization process; constructing a harmful substance concentration accumulation model based on the parameter data influencing the release of the indoor pollutants; obtaining energy and resource consumption current situation information of the whole house customized household product, and evaluating the influence of the product on the ecological environment; all links in the construction process are integrated on the traceability platform, so that consumers can inquire and supervise material sources, detection reports, installation processes and key quality control records of completion acceptance in whole house customization. According to the invention, each link in the construction process is integrated on the traceability platform, so that information of supply and demand parties is symmetrical, consumers can conveniently master project progress in real time and deeply participate in acceptance of each project, and meanwhile, effective evidence can be conveniently provided when disputes occur.
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Description

Technical Field

[0001] The present invention relates to the field of project management, and particularly to a project management evaluation method, device and electronic equipment based on digital technology. Background Art

[0002] In traditional various engineering projects, due to non-standard publicity of relevant enterprises and uneven quality of enterprises, it is difficult for consumers to distinguish engineering projects and products among numerous enterprises. During the construction process, with the exacerbation of problems such as long engineering cycle, many links and unclear attributes, the information asymmetry between the supply and demand sides is caused. In addition, the opaque construction process makes it difficult for consumers to grasp the project progress in real time, and due to the lack of professionalism of consumers, the credibility of enterprises is easily reduced. During project acceptance, consumers cannot deeply participate in various project acceptances, and the simple acceptance method also makes it easier for both sides to have disputes. In the case of no third-party supervision of the process information, it is difficult to provide effective evidence when disputes occur, resulting in consumers being in a weak position. Therefore, it needs to be improved. Summary of the Invention

[0003] Based on this, it is necessary to provide a project management evaluation method, device and electronic equipment based on digital technology for the problems that during the construction process, due to information asymmetry between the supply and demand sides, it is difficult for consumers to grasp the project progress in real time, which easily leads to a reduction in the credibility of enterprises, and during project acceptance, consumers cannot deeply participate in various project acceptances, and it is difficult to provide effective evidence when disputes occur, resulting in consumers being in a weak position.

[0004] A project management evaluation method based on digital technology provided by the present invention, the method includes:

[0005] Construct a quality and safety control standard for the whole-house customized home, and the standard includes general basics, design requirements, board materials and detection methods during the customization process;

[0006] Based on parameter data that affects the release of indoor pollutants, construct a harmful substance concentration accumulation model;

[0007] Obtain the current situation information of energy and resource consumption of the whole-house customized home products, and evaluate the impact of the products on the ecological environment;

[0008] Integrate each link in the construction process on the traceability platform for consumers to query and supervise the key quality control records of the material sources, test reports, installation progress and completion acceptance in the whole-house customization.

[0009] In one embodiment, the construction of the quality and safety control standard for the whole-house customized home, and the standard includes general basics, design requirements, board materials and detection methods during the customization process, includes:

[0010] Based on consumer experience surveys, enterprise research, expert communication, experimental simulations, and literature and news materials research, identify the key factors affecting quality in the design, material selection, installation, and acceptance processes of whole-house customized furniture, and create quality requirement standards;

[0011] Based on standard literature review, verification tests, and expert demonstrations, create a quality and safety evaluation method for the key factors of whole-house customization;

[0012] Based on the quality requirement standards and the quality and safety evaluation method, construct the quality and safety control standards for whole-house customized furniture.

[0013] In one embodiment, the construction of the quality and safety control standards for whole-house customized furniture includes general basics, design requirements, board materials, and detection methods during the customization process, and also includes:

[0014] Determine the project links included in the whole-house customized furniture project contract;

[0015] According to the general basics, design requirements, board materials, and detection methods, match the corresponding quality and safety control standards for each project link.

[0016] In one embodiment, the construction of the harmful substance concentration accumulation model based on the parameter data affecting indoor pollutant release includes:

[0017] Obtain the parameters affecting indoor pollutant release in each project link, where the parameters include temperature and humidity, space gas flow rate, diffusion period or equilibrium time, and fresh air volume;

[0018] Regarding harmful substances such as formaldehyde, benzene, toluene, xylene, TVOC, and odor level, use the parameters as inputs to construct a harmful substance concentration accumulation model.

[0019] In one embodiment, the construction of the harmful substance concentration accumulation model based on the parameter data affecting indoor pollutant release also includes:

[0020] Identify the release amounts of harmful substances in each project link;

[0021] Based on the release amounts of harmful substances, optimize the material selection and use of decoration materials in each project link. In one embodiment, the acquisition of the current situation information on energy and resource consumption of whole-house customized furniture products and the assessment of the impact of the products on the ecological environment include:

[0022] Obtain the activity data and emission factors of whole-house customized furniture products;

[0023] Calculate the greenhouse gas emissions of whole-house customized furniture products;

[0024] Evaluate the impact of products on the ecological environment based on greenhouse gas emissions.

[0025] In one embodiment, each link in the construction process is integrated on the traceability platform for consumers to query and supervise the key quality control records of the material sources, inspection reports, installation processes, and completion acceptance in the whole-house customization, including:

[0026] Generate a project identification code based on the whole-house customized home improvement project contract;

[0027] Obtain the information of the material sources, inspection reports, installation processes, and completion acceptance in the whole-house customization, and create acceptance sub-items according to the project category;

[0028] Identify the consumer's identity and display the project links included in the corresponding whole-house customized home improvement project contract;

[0029] Evaluate each acceptance sub-item based on the quality and safety control standards, the harmful substance concentration accumulation model, and the impact of the product on the ecological environment.

[0030] The present invention also provides an engineering management evaluation device based on digital technology, including:

[0031] A construction module for constructing the quality and safety control standards for the whole-house customized home, where the standards include the general basis, design requirements, board materials, and inspection methods in the customization process;

[0032] An accumulation module for constructing a harmful substance concentration accumulation model based on the parameter data that affects the release of indoor pollutants;

[0033] An evaluation module for obtaining the current situation information of the energy and resource consumption of the whole-house customized home products and evaluating the impact of the products on the ecological environment;

[0034] An integration module for integrating each link in the construction process on the traceability platform for consumers to query and supervise the key quality control records of the material sources, inspection reports, installation processes, and completion acceptance in the whole-house customization.

[0035] The present invention also provides an electronic device, including a memory and a processor, where the memory stores a computer program, and when the processor executes the computer program, it implements the engineering management evaluation method based on digital technology as described in any one of the above.

[0036] The present invention also provides a computer-readable storage medium storing a computer program, and when the computer program is executed by a processor, it implements the engineering management evaluation method based on digital technology as described in any one of the above.

[0037] The above engineering management evaluation method, device and electronic equipment based on digital technology, on the one hand, by constructing the quality and safety control standards for whole-house customized furniture, standardize the industry standards, facilitate consumers to distinguish the engineering projects and product quality among many enterprises. At the same time, by constructing the harmful substance concentration accumulation model and evaluating the impact of products on the ecological environment, it is convenient to ensure the health and safety of consumers, promote the whole-house customization industry to reduce energy and resource consumption, and contribute to the realization of the "dual carbon" development goal. On the other hand, by integrating each link in the construction process on the traceability platform, the information between the supply and demand sides is symmetric, which facilitates consumers to grasp the progress of the project in real time and deeply participate in the acceptance of each project. At the same time, because each link of the construction process is stored on the platform, it is convenient to provide effective evidence in case of disputes. Description of the Drawings

[0038] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0039] Figure 1 Schematic flowchart of the engineering management evaluation method based on digital technology in an embodiment;

[0040] Figure 2 Schematic flowchart of constructing the quality and safety control standards for whole-house customized furniture in an embodiment;

[0041] Figure 3 Schematic flowchart of matching the quality and safety control standards corresponding to each project link in an embodiment;

[0042] Figure 4 Schematic flowchart of constructing the harmful substance concentration accumulation model in an embodiment;

[0043] Figure 5 Schematic flowchart of optimizing the material selection and use of decoration materials in each project link in an embodiment;

[0044] Figure 6 Schematic flowchart of evaluating the impact of products on the ecological environment in an embodiment;

[0045] Figure 7 Schematic flowchart of integrating each link in the construction process on the traceability platform in an embodiment;

[0046] Figure 8 Schematic structural diagram of the engineering management evaluation device based on digital technology in an embodiment;

[0047] Figure 9 Internal structure diagram of an electronic device for an embodiment. Specific implementation manners

[0048] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0049] The following will be combined with Figures 1-9 Describe the engineering management evaluation method, device, and electronic device of the present invention based on digital technology.

[0050] As Figure 1 shown, in one embodiment, an engineering management evaluation method based on digital technology includes the following steps:

[0051] Step S100, construct quality and safety control standards for whole-house customized furniture, where the standards include general bases, design requirements, board materials, and detection methods during the customization process.

[0052] The quality and safety of whole-house customization are one of the key factors affecting consumer satisfaction. By constructing quality and safety control standards for whole-house customized furniture, it is possible to fill the industry gap, facilitate consumers to distinguish engineering projects and product quality among numerous enterprises, and protect the rights and interests of consumers.

[0053] Step S200, construct a harmful substance concentration accumulation model based on parameter data that affects the release of indoor pollutants.

[0054] Focusing on odor level, formaldehyde, benzene, toluene, xylene, TVOC, etc., study the cumulative risk of harmful substances in the application scenario of whole-house customization, and facilitate the formation of effective technical requirements and evaluation methods, so as to protect the health and safety of consumers.

[0055] Step S300, obtain the current situation information of the energy and resource consumption of whole-house customized furniture products, and evaluate the impact of the products on the ecological environment.

[0056] By evaluating the impact of products on the ecological environment, it is convenient to promote the whole-house customization industry to reduce energy and resource consumption and contribute to the realization of the "dual carbon" development goal.

[0057] Step S400: Integrate each link in the construction process onto the traceability platform for consumers to query and supervise the key quality control records of the material sources, inspection reports, installation progress, and completion acceptance in the whole-house customization.

[0058] By integrating each link in the construction process onto the traceability platform, it is convenient to promote the digital industrialization and enhance the ability to develop the service industry. At the same time, it is convenient to achieve the whole-process monitoring of each link in the project, authenticate and promote high-quality enterprises and products, and reuse the inspection data to promote the sustainable development of the industry.

[0059] This engineering management evaluation method based on digital technology, on the one hand, standardizes the industry standards by constructing the quality and safety control standards for the whole-house customized furniture, which is convenient for consumers to distinguish the engineering projects and product quality among numerous enterprises. At the same time, by constructing the harmful substance concentration accumulation model and evaluating the impact of products on the ecological environment, it is convenient to ensure the health and safety of consumers, promote the whole-house customization industry to reduce energy and resource consumption, and contribute to the realization of the "dual-carbon" development goal. On the other hand, by integrating each link in the construction process onto the traceability platform, the information between the supply and demand sides is symmetric, which is convenient for consumers to keep track of the project progress in real time and deeply participate in the acceptance of each project. At the same time, since the materials of each link in the construction process are saved on the platform, it is convenient to provide effective evidence in case of disputes.

[0060] In this embodiment, refer to Figure 2 and construct the quality and safety control standards for the whole-house customized furniture. The standards include the general basis, design requirements, board materials, and inspection methods in the customization process, and the steps are as follows:

[0061] Step S110: Obtain the key factors affecting the quality in the design, material selection, installation, and acceptance processes of the whole-house customized furniture through consumer experience, enterprise research, expert communication, experimental simulation, and literature and news material research, and create the quality requirement standards.

[0062] By creating the quality requirement standards, it is convenient to establish quality requirements and standardize the management of key processes.

[0063] Step S120: Create the quality and safety evaluation method for the key factors of the whole-house customization according to the standard literature sorting, verification tests, and expert demonstration.

[0064] According to the standard literature sorting, verification tests, and expert demonstration, study the material consistency, design rationality, quality control during the installation process, and engineering quality acceptance indicators (such as position deviation, strength, lateral detachment risk, etc.), which is convenient to form an effective evaluation method.

[0065] Step S130: Based on the quality requirement standards and quality safety evaluation methods, construct the quality safety control standards for the whole-house customized home furnishings.

[0066] By constructing the quality safety control standards for the whole-house customized home furnishings, it is convenient to improve the product quality and protect the rights and interests of consumers.

[0067] In this embodiment, refer to Figure 3 , construct the quality safety control standards for the whole-house customized home furnishings. The standards include the general basis, design requirements, board materials, and detection methods during the customization process, and also include the following steps:

[0068] Step S140: Determine the project links included in the whole-house customized home furnishings engineering contract.

[0069] By determining the project links in the contract, the construction process becomes more transparent, facilitating consumers to keep track of the project progress in real time.

[0070] Step S150: According to the general basis, design requirements, board materials, and detection methods, match the corresponding quality safety control standards for each project link.

[0071] By matching the corresponding quality safety control standards for each project link, it is convenient for consumers to deeply participate in the acceptance of each project.

[0072] In this embodiment, refer to Figure 4 , based on the parameter data that affects the release of indoor pollutants, construct a harmful substance concentration accumulation model, including the following steps:

[0073] Step S210: Obtain the parameters that affect the release of indoor pollutants in each project link. The parameters include temperature and humidity, space gas flow rate, diffusion period or equilibrium time, and fresh air volume.

[0074] By deeply analyzing the influence of parameters such as different temperature and humidity, space gas flow rate, fresh air volume, diffusion period or equilibrium time on the release of indoor pollutants, it is convenient to construct the harmful substance concentration accumulation model subsequently.

[0075] Step S220: Regarding harmful substances such as formaldehyde, benzene, toluene, xylene, TVOC, and odor level, use the parameters as inputs to construct a harmful substance concentration accumulation model.

[0076] By constructing the harmful substance concentration accumulation model, it is convenient to improve the harmful substance evaluation and control technology for the whole-house customized home furnishings and solve the pain points of indoor air pollution in the industry.

[0077] In this embodiment, refer to Figure 5 , based on the parameter data that affects the release of indoor pollutants, construct a harmful substance concentration accumulation model, and also include the following steps:

[0078] Step S230: Identify the release amounts of harmful substances in each project link.

[0079] By identifying the release amounts of harmful substances, it is convenient to control the harmful substances in each project link.

[0080] Step S240: Optimize the selection and use of decoration materials in each project link based on the release amounts of harmful substances.

[0081] By optimizing the selection and use of decoration materials in each project link, it is convenient to reduce the impact on indoor air and ensure the health and safety of consumers.

[0082] In this embodiment, refer to Figure 6 , obtain the current situation information of energy and resource consumption of the whole-house customized home products, and evaluate the impact of the products on the ecological environment, including the following steps:

[0083] Step S310: Obtain the activity data and emission factors of the whole-house customized home products.

[0084] Activity data is the activity volume of production or consumption activities that cause greenhouse gas emissions. These data can usually be obtained from relevant statistical materials, field research or monitoring.

[0085] Emission factor is a coefficient corresponding to the activity level data, representing the greenhouse gas emission coefficient per unit production or consumption activity volume. The acquisition of emission factors is a key link in the emission factor method calculation because it directly affects the accuracy of the final carbon emissions.

[0086] Emission factors can be obtained through the following several ways:

[0087] 1. Adopt default values: Authoritative institutions such as IPCC, the US Environmental Protection Agency, and the European Environment Agency will provide some known emission factor data, which can be used as default values.

[0088] 2. Deduce based on measurement data: By field measurement and monitoring of emission data related to the activity level, specific emission factors can be deduced. Although this method is more accurate, it requires more time and resources.

[0089] 3. Refer to professional guidelines: Some countries or regions will issue greenhouse gas emission accounting methods and reporting guidelines for specific industries or fields, and these guidelines usually provide relevant emission factor data.

[0090] Step S320: Calculate the greenhouse gas emissions of the whole-house customized home products.

[0091] After obtaining the activity data and emission factors, the greenhouse gas emissions of the whole-house customized home products can be calculated.

[0092] The specific calculation formula is as follows:

[0093] Greenhouse gas emissions = Activity data × Emission factor.

[0094] Step S330: Based on the greenhouse gas emissions, evaluate the impact of the product on the ecological environment.

[0095] By evaluating the impact of the product on the ecological environment, it is convenient to guide the public to consume in a low-carbon manner.

[0096] In this embodiment, refer to Figure 7 , integrate each link in the construction process on the traceability platform for consumers to query and supervise the material sources, inspection reports, installation processes, and key quality control records of the completion acceptance in the whole-house customization, including the following steps:

[0097] Step S410: Generate a project identification code based on the whole-house customization home improvement project contract.

[0098] By generating a project identification code, it is convenient to realize the docking between the enterprise internal system and the platform. The one-code integration technology allows consumers to participate in all links of the whole-house customization throughout the process. With this platform, high-quality after-sales service is guaranteed, enhancing the consumer experience. At the same time, it is convenient to achieve standardization and transparency in aspects such as platform publicity, process disclosure, and inspection and acceptance, and realize the wide promotion and application of standards.

[0099] Step S420: Obtain the information on the material sources, inspection reports, installation processes, and completion acceptance in the whole-house customization, and create acceptance sub-items according to the project category.

[0100] By creating acceptance sub-items according to the project category, each link in the construction process can be accurately located and recorded. Consumers can query and supervise the key quality control records such as material sources, inspection reports, installation processes, and completion acceptance in the whole-house customization at any time, thus protecting the rights and interests of consumers while improving the enterprise service level and social influence.

[0101] Step S430: Identify the consumer's identity and display the project links included in the corresponding whole-house customization home improvement project contract.

[0102] By corresponding the consumer's identity with the whole-house customization home improvement project contract, it is convenient to quickly retrieve the project links included in the contract.

[0103] Step S440: Based on the quality and safety control standards, the harmful substance concentration accumulation model, and the impact of the product on the ecological environment, evaluate each acceptance sub-item.

[0104] After the construction of each project phase is completed, information on relevant material sources, inspection reports, installation progress, and completion acceptance is uploaded onto the platform. Consumers can evaluate and confirm each sub-item, enhancing their consumption experience. At the same time, acceptance evidence for each project phase is preserved, reducing acceptance disputes.

[0105] This engineering management evaluation method based on digital technology has the following advantages:

[0106] 1. Expand the market scope and increase inspection business

[0107] The full-category home furnishing industry has become the pursuit of many consumers nowadays. Its one-stop service saves a large amount of labor and material costs, so consumers are more willing to choose customized whole-house furniture when decorating. The increasing consumer demand has led many brand manufacturers to tend towards comprehensive development. At the same time, various types of decoration materials also face the need for inspection. According to statistics, the Chinese third-party construction and building materials inspection market has shown a high-speed growth trend in the past five years, rapidly increasing from 42.3 billion yuan in 2014 to 70 billion yuan in 2018, with a compound annual growth rate of 16%. In the future, with the further development of business models, the Chinese third-party construction and building materials inspection industry market will continue to mature, and the market scale will exceed 100 billion yuan in 2023. Against such a huge industrial background, the building materials inspection business will inevitably grow, and the market scale will also expand.

[0108] 2. Digital investment improves the economic efficiency and service level of enterprises

[0109] Digital technology is comprehensively integrating into social, economic, political, and ecological civilization fields with new concepts, new business forms, and new models, bringing profound impacts on people's production and life. The digital traceability platform for customized whole-house furniture can not only achieve information transparency but also help enterprises reduce labor and material costs, bringing economic benefits to enterprises. Through the traceability system, each link in the construction process can be accurately located and recorded. Consumers can query and supervise key quality control records such as material sources, inspection reports, installation progress, and completion acceptance in the customized whole-house furniture at any time, protecting consumers' rights and interests while improving the service level and social influence of enterprises.

[0110] 3. Provide management support for relevant government departments

[0111] Due to the special consumption mode, the customized whole-house furniture industry is prone to disputes between consumers and home improvement enterprises. The introduction of relevant standards for customized whole-house furniture ensures project quality and improves consumers' satisfaction with project effects. At the same time, the online traceability platform also enables the Consumer Protection Committee to quickly resolve and respond to consumers' demands, making the supervision of relevant projects more efficient and improving the supervision efficiency.

[0112] 4. Secondary utilization of data to achieve industrial value addition

[0113] A large amount of industrial data is collected in the digital platform for whole-house customized home furnishings. Through the mining and analysis of this data, it is possible to understand the consumption preferences and potential needs of customers in whole-house customization, such as design preferences, material selection, etc., and to count the order quotes, project progress, and delivery times of the construction party. According to the analysis results, the data is visualized to facilitate the expansion of sales channels, provide decision-making support, and ultimately achieve industrial value addition.

[0114] The engineering management evaluation device based on digital technology provided by the present invention will be described below. The engineering management evaluation device based on digital technology described below can be mutually referred to with the engineering management evaluation method based on digital technology described above.

[0115] As Figure 8 shown, in one embodiment, an engineering management evaluation device based on digital technology includes a construction module 810, an accumulation module 820, an evaluation module 830, and an integration module 840.

[0116] The construction module 810 is used to construct the quality and safety control standards for whole-house customized home furnishings. The standards include general basics, design requirements, board materials, and detection methods during the customization process.

[0117] The accumulation module 820 is used to construct a harmful substance concentration accumulation model based on parameter data that affects the release of indoor pollutants.

[0118] The evaluation module 830 is used to obtain information on the current status of energy and resource consumption of whole-house customized home furnishing products and evaluate the impact of the products on the ecological environment.

[0119] The integration module 840 is used to integrate each link in the construction process on the traceability platform for consumers to query and supervise the key quality control records of the material sources, inspection reports, installation processes, and completion acceptance in whole-house customization.

[0120] In this embodiment, the construction module 810 is specifically used for:

[0121] According to consumer experience, enterprise research, expert communication, experimental simulation, and literature and news data research, obtain the key factors affecting quality in the design, material selection, installation, and acceptance processes of whole-house customized home furnishings, and create quality requirement standards;

[0122] According to standard literature sorting, verification tests, and expert demonstrations, create a quality and safety evaluation method for key factors in whole-house customization;

[0123] Based on the quality requirement standards and the quality and safety evaluation method, construct the quality and safety control standards for whole-house customized home furnishings.

[0124] In this embodiment, the construction module 810 is also specifically used for:

[0125] Determine the project links included in the whole-house customized home furnishing project contract;

[0126] According to the general basis, design requirements, board materials used, and detection methods, match the corresponding quality and safety control standards for each project link.

[0127] In this embodiment, the accumulation module 820 is specifically used for:

[0128] Obtain the parameters that affect the release of indoor pollutants in each project link, where the parameters include temperature and humidity, space gas flow rate, diffusion period or equilibrium time, and fresh air volume;

[0129] Regarding harmful substances such as formaldehyde, benzene, toluene, xylene, TVOC, and odor level, use the parameters as inputs to construct a harmful substance concentration accumulation model.

[0130] In this embodiment, the accumulation module 820 is also specifically used for:

[0131] Identify the release amounts of harmful substances in each project link;

[0132] Based on the release amounts of harmful substances, optimize the selection and use of decoration materials in each project link.

[0133] In this embodiment, the evaluation module 830 is specifically used for:

[0134] Obtain the activity data and emission factors of the whole-house customized home furnishing products;

[0135] Calculate the greenhouse gas emissions of the whole-house customized home furnishing products;

[0136] Based on the greenhouse gas emissions, evaluate the impact of the products on the ecological environment.

[0137] In this embodiment, the integration module 840 is specifically used for:

[0138] Generate a project identification code based on the whole-house customized home furnishing project contract;

[0139] Obtain the information on the material sources, test reports, installation progress, and completion acceptance in the whole-house customization, and create acceptance sub-items according to the project categories;

[0140] Identify the consumer identity and display the project links included in the corresponding whole-house customized home furnishing project contract;

[0141] Evaluate each acceptance sub-item based on the quality and safety control standards, the harmful substance concentration accumulation model, and the impact of the products on the ecological environment.

[0142] On the one hand, the engineering management evaluation device based on digital technology standardizes the industry standards by constructing the quality and safety control standards for the whole-house customized home, facilitating consumers to distinguish the engineering projects and product quality among numerous enterprises. At the same time, by constructing a harmful substance concentration accumulation model and evaluating the impact of products on the ecological environment, it is convenient to ensure the health and safety of consumers, promote the whole-house customized industry to reduce energy and resource consumption, and contribute to the realization of the "dual-carbon" development goal. On the other hand, by integrating each link in the construction process onto the traceability platform, it enables information symmetry between the supply and demand sides, facilitating consumers to keep track of the project progress in real time and deeply participate in various project inspections. At the same time, since each link of the construction process is saved on the platform, it is convenient to provide effective evidence in case of disputes.

[0143] Figure 9 An example of the physical structure diagram of an electronic device is shown. The electronic device can be a smart terminal, and its internal structure diagram can be as Figure 9 shown. The electronic device includes a processor, a memory, and a network interface connected through a system bus. Among them, the processor of the electronic device is used to provide computing and control capabilities. The memory of the electronic device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system and a computer program. The internal memory provides an environment for the operation of the operating system and the computer program in the non-volatile storage medium. The network interface of the electronic device is used to communicate with external terminals through a network connection. When the computer program is executed by the processor, it realizes the engineering management evaluation method based on digital technology, and the method includes:

[0144] Construct the quality and safety control standards for the whole-house customized home, and the standards include general bases, design requirements, board materials, and detection methods during the customization process;

[0145] Based on the parameter data that affects the release of indoor pollutants, construct a harmful substance concentration accumulation model;

[0146] Obtain the current information on the energy and resource consumption of the whole-house customized home products, and evaluate the impact of the products on the ecological environment;

[0147] Integrate each link in the construction process onto the traceability platform for consumers to query and supervise the material sources, inspection reports, installation processes, and key quality control records of the completion acceptance in the whole-house customization.

[0148] Those skilled in the art can understand that Figure 9 the structure shown in

[0149] On the other hand, the present invention also provides a computer storage medium storing a computer program, which when executed by a processor implements an engineering management evaluation method based on digital technology. The method includes:

[0150] Construct a quality and safety control standard for the whole-house customized home, and the standard includes general basics, design requirements, board materials, and detection methods during the customization process;

[0151] Based on parameter data affecting the release of indoor pollutants, construct an accumulation model for harmful substance concentrations;

[0152] Obtain the current status information of the energy and resource consumption of the whole-house customized home products, and evaluate the impact of the products on the ecological environment;

[0153] Integrate each link in the construction process onto a traceability platform for consumers to query and supervise the key quality control records of the material sources, inspection reports, installation processes, and completion acceptance in the whole-house customization.

[0154] In another aspect, a computer program product or a computer program is provided. The computer program product or the computer program includes computer instructions, and the computer instructions are stored in a computer-readable storage medium. When the processor of an electronic device reads the computer instructions from the computer-readable storage medium and executes the computer instructions, an engineering management evaluation method based on digital technology is implemented. The method includes:

[0155] Construct a quality and safety control standard for the whole-house customized home, and the standard includes general basics, design requirements, board materials, and detection methods during the customization process;

[0156] Based on parameter data affecting the release of indoor pollutants, construct an accumulation model for harmful substance concentrations;

[0157] Obtain the current status information of the energy and resource consumption of the whole-house customized home products, and evaluate the impact of the products on the ecological environment;

[0158] Integrate each link in the construction process onto a traceability platform for consumers to query and supervise the key quality control records of the material sources, inspection reports, installation processes, and completion acceptance in the whole-house customization.

[0159] Those of ordinary skill in the art can understand that all or part of the processes in the methods of the above embodiments can be completed by instructing relevant hardware through a computer program. This computer program can be stored in a non-volatile computer-readable storage medium. When this computer program is executed, it can include the processes of the embodiments of the above various methods. Among them, any reference to a memory, storage, database, or other medium used in the various embodiments provided by the present invention can include non-volatile and / or volatile memories. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory can include random access memory (RAM) or external cache memory.

[0160] By way of illustration and not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), Rambus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and Rambus dynamic RAM (RDRAM), etc.

[0161] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, 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, it should be considered as the scope described in this specification.

[0162] The above-described embodiments merely represent several implementation manners of the present invention. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present invention, several modifications and improvements can still be made, and these all belong to the protection scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims

1. A project management evaluation method based on digital technology, characterized in that: The method comprises: Establish quality and safety control standards for customized home furnishings, which include general foundations, design requirements, board materials and testing methods in the customization process; Based on the parameter data that affect the release of indoor pollutants, a model for the accumulation of harmful substance concentrations is constructed; Obtain information on the current status of energy and resource consumption of customized home furnishing products, and evaluate the impact of products on the ecological environment; Integrate each link of the construction process on the traceability platform for consumers to query and supervise the key quality control records of material sources, test reports, installation progress and completion acceptance in whole-house customization.

2. The engineering management evaluation method based on digital technology according to claim 1 is characterized in that: The quality and safety control standards for building whole-house customized furniture include the general basis, design requirements, board materials and testing methods in the customization process, including: Based on consumer observation, enterprise research, expert communication, experimental simulation and literature and news material research, we can obtain the key factors that affect the quality of the whole house customized home design, material selection, installation and acceptance process, and establish quality requirement standards; Create a quality and safety evaluation method for key factors of whole-house customization based on standard literature review, verification tests and expert demonstration; Based on quality requirement standards and quality and safety evaluation methods, establish quality and safety control standards for whole-house customized home furnishings.

3. The engineering management evaluation method based on digital technology according to claim 2 is characterized in that: The quality and safety control standards for building whole-house customized furniture include the general basis, design requirements, board materials and testing methods in the customization process, and also include: Determine the project links included in the whole house custom home engineering contract; According to the general foundation, design requirements, plate materials and testing methods, the corresponding quality and safety control standards for each project link are matched.

4. The engineering management evaluation method based on digital technology according to claim 3 is characterized in that: The method of constructing a harmful substance concentration accumulation model based on parameter data that affect indoor pollutant release includes: Obtain the parameters that affect the release of indoor pollutants in each project link, including temperature and humidity, air flow rate in space, diffusion cycle or equilibrium time, and fresh air volume; For harmful substances such as formaldehyde, benzene, toluene, xylene, TVOC and odor level, the parameters are used as input to build a harmful substance concentration accumulation model.

5. The engineering management evaluation method based on digital technology according to claim 4 is characterized in that: The method of constructing a harmful substance concentration accumulation model based on parameter data that affects indoor pollutant release also includes: Identify the release of hazardous substances in each project link; Based on the release of harmful substances, optimize the selection and use of decoration materials in each project link.

6. The engineering management evaluation method based on digital technology according to claim 5 is characterized in that: The acquisition of the current status of energy and resource consumption of customized home furnishing products and the assessment of the impact of the products on the ecological environment include: Obtain activity data and emission factors for whole-house custom home furnishing products; Calculate greenhouse gas emissions from whole-house custom home furnishing products; Evaluate the impact of products on the ecological environment based on greenhouse gas emissions.

7. The engineering management evaluation method based on digital technology according to any one of claims 1 to 6, characterized in that: The above-mentioned integration of each link in the construction process on the traceability platform allows consumers to query and supervise the source of materials, test reports, installation progress and key quality control records of completion acceptance in the whole house customization, including: Generate a project identification code based on the whole house custom home engineering contract; Obtain information on material sources, test reports, installation progress, and completion acceptance in whole-house customization, and create acceptance sub-items based on project categories; Identify the identity of the consumer and display the project links included in the corresponding whole-house custom home engineering contract; Each acceptance item is evaluated based on quality and safety control standards, harmful substance concentration accumulation model and the impact of the product on the ecological environment.

8. An engineering management evaluation device based on digital technology, characterized in that: include: Building module, used to build quality and safety control standards for customized home furnishings. The standards include the general basis, design requirements, board materials and testing methods in the customization process; An accumulation module is used to construct an accumulation model of harmful substance concentration based on parameter data that affect indoor pollutant release; The evaluation module is used to obtain the current information on energy and resource consumption of customized home furnishing products and evaluate the impact of products on the ecological environment; The integrated module is used to integrate each link of the construction process on the traceability platform, so that consumers can query and supervise the key quality control records of material sources, test reports, installation progress and completion acceptance in whole-house customization.

9. An electronic device comprising a memory and a processor, wherein the memory stores a computer program, wherein: When the processor executes the computer program, the steps of the engineering management evaluation method based on digital technology described in any one of claims 1 to 7 are implemented.

10. A computer-readable storage medium storing a computer program, characterized in that: When the computer program is executed by a processor, the steps of the engineering management evaluation method based on digital technology described in any one of claims 1 to 7 are implemented.