Building production safety risk grading management and control and hidden danger investigation online collaboration platform
Through the online collaborative platform, the problems of information silos and data in traditional building production safety management are solved, efficient and accurate safety management is achieved, the coordination and consistency of various inspections are ensured, and the work efficiency and comprehensiveness of data support are improved.
Patent Information
- Application Number
- CN202510684192.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-26
- Publication Date
- 2025-08-26
AI Technical Summary
There are problems of information islands, cumbersome processes and inaccurate data in traditional building production safety management, resulting in inefficient and poor results in safety management.
The online collaborative platform for building production safety risk grading control and hidden danger investigation is adopted, including online interaction modules, workflow engine modules, data collection statistics modules and remote video inspection modules, to realize online data entry, collaborative management, real-time statistics and video inspection, and automatically generate reports.
It improves the efficiency and accuracy of data entry, promotes information sharing, breaks information silos, realizes efficient coordination of security management, ensures the orderly progress of various inspections, provides comprehensive and accurate data support, and improves the convenience of inspections and the decision-making ability of managers.
Smart Images

Figure CN120542931A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of construction production collaboration technology, and in particular to an online collaborative platform for building production safety risk classification management and hidden danger investigation. Background Art
[0002] With the rapid development of the construction industry, construction safety has become a focus of attention from all walks of life. The traditional construction safety management model has the following defects: (1) Information islands: In traditional construction safety management, information exchange between departments is not smooth, resulting in serious information islands. This makes it impossible for each department to timely understand the inspection results and rectification status of other departments, thus affecting the overall safety management effect; (2) Complicated process: The traditional construction safety inspection process is cumbersome and requires a lot of manpower and time. From project self-inspection to company special inspection, to monthly comprehensive inspection and leadership agency inspection, each link requires manual participation and record keeping, which not only increases the workload but also makes it easy to make mistakes; (3) Inaccurate data: Due to the lack of effective data collection and statistical methods in traditional construction safety management, the data is inaccurate and incomplete, which makes it impossible for managers to accurately understand the construction safety status and thus cannot formulate effective safety management measures. Summary of the Invention
[0003] In view of this, the present invention proposes an online collaborative platform for construction production safety risk classification management and hidden danger investigation, which can solve the defects of information islands, cumbersome processes and inaccurate data in the construction production safety management model.
[0004] The technical solution of the present invention is achieved as follows: An online collaborative platform for risk classification management and hidden danger investigation in construction production safety, including: Online interactive module, used for online entry of project self-inspection, company special inspection, monthly comprehensive inspection and leadership-assigned inspection data; The workflow engine module is used to coordinate workflows for project self-inspections, company-specific inspections, monthly comprehensive inspections, and inspections by leaders. Data collection and statistics module, used to collect and count various inspection execution data; The remote video inspection module is used by the construction production safety management department to submit videos of designated construction sites, view the video content online, take screenshots and mark them, and issue rectification orders; The automatic report generation module is used to automatically generate provincial statistics reports after the inspection is completed.
[0005] As a further optional solution to the online collaborative platform for construction production safety risk classification control and hidden danger investigation, the workflow collaboration for project self-inspection, company special inspection, monthly comprehensive inspection, and leadership-assigned inspection specifically includes: Based on the project self-inspection results, the company's special inspection results, the monthly comprehensive inspection results, and the inspection results of the leadership agent, the project self-inspection score, special inspection score, monthly comprehensive inspection score, and the leadership agent inspection score are calculated; Calculate the comprehensive score of the project based on the scores and weights of each inspection; Based on the comprehensive score and problem list, a rectification plan is formulated, and the person responsible for rectification and the rectification deadline are clearly defined.
[0006] As a further optional solution for the online collaborative platform for building production safety risk classification control and hidden danger investigation, the comprehensive score of the project is calculated based on the scores and weights of each inspection. The specific formula is: Comprehensive score = (project self-inspection score × self-inspection weight + company special inspection score × special weight + monthly comprehensive inspection score × monthly weight + leadership agency inspection score × leadership weight) - (number of problems × problem weight) + (rectification completion rate × rectification weight).
[0007] As a further optional solution for the online collaborative platform for building production safety risk classification control and hidden danger investigation, the collection and statistics of various inspection execution data specifically include: Collect data in real time based on the execution status of inspection tasks, where the data includes the total number of inspection tasks, the number of completed inspection tasks, and the number of qualified inspection tasks; Calculations are performed based on the data collected to calculate the completion rate, pass rate and overall score.
[0008] As a further option for the online collaborative platform for construction safety risk classification management and hidden danger investigation, the construction safety management department submits videos of designated construction sites, conducts online video content review, screenshot annotation, and issues rectification orders, specifically including: The construction production safety management department takes videos of designated construction sites and uploads them to the designated database; Security managers review uploaded videos based on the database. When they find any security issues during viewing, they use the screenshot function to capture relevant footage. Label the screenshots, clearly indicate the security issue, and add text descriptions; Based on the security issues marked in the screenshots, use the security risk assessment formula to quantify the severity of the security issues; Based on the results of video viewing and screenshot annotation, as well as the assessment results obtained from the safety risk assessment formula, a rectification order is compiled and issued to the relevant responsible units or individuals.
[0009] As a further optional solution for the online collaborative platform for building production safety risk classification control and hidden danger investigation, the safety risk assessment formula is specifically as follows: ; in, SRAF Indicates the severity of the security issues in the video. It is i The score of the security question, It is i The weight of each security issue is determined according to the importance and frequency of the issue. n is the total number of security issues.
[0010] An online collaborative method for building production safety risk classification control and hidden danger investigation, specifically including: Through the online interactive module, input project self-inspection data, company special inspection data, monthly comprehensive inspection data and leadership agent inspection data; Utilize the workflow engine module to collaboratively manage the workflows of project self-inspection, company-specific inspection, monthly comprehensive inspection, and inspection by leadership agents; Through the data collection and statistics module, the execution data of project self-inspections, company special inspections, monthly comprehensive inspections and inspections by leaders are collected and statistically analyzed to form an overview of safety inspections; The construction production safety management department uses the remote video inspection module to submit video data of designated construction sites, view the video content through the online platform, take necessary screenshots and annotations, and issue rectification notices based on the video inspection results through the platform; After each inspection is completed, the automatic report generation module is used to automatically generate an inspection report that meets the provincial unified standards based on the entered data and statistical results.
[0011] A computing device includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of the above-mentioned online collaborative method for risk classification management and hidden danger investigation of construction production safety are implemented.
[0012] A computer-readable storage medium stores a computer program, which, when executed by a processor, implements the steps of the above-mentioned online collaborative method for graded control of construction production safety risks and hidden danger investigation.
[0013] The beneficial effects of the present invention are: by entering various types of inspection data online, the tediousness of traditional paper records is avoided, and the efficiency and accuracy of data entry are improved. At the same time, online interaction also promotes information sharing and collaborative work between different departments, breaking down information silos and making safety management more efficient. Automated process management enables various tasks such as project self-inspections, company special inspections, monthly comprehensive inspections and leadership-assigned inspections to be carried out in an orderly and efficient manner. The workflow engine ensures the coordination and consistency of various inspections, reduces manual intervention, and improves work efficiency. The data collection and statistics module can collect and count the execution data of various inspections in real time, providing comprehensive and accurate data support for managers. By analyzing these data, managers can timely understand the safety status of construction production, discover potential safety risks, and thus formulate targeted safety management measures. The remote video inspection module allows the construction production safety management department to submit video materials of designated construction sites, and conduct online video content viewing, screenshot annotation, and rectification order issuance. This function greatly improves the convenience and efficiency of inspections, allowing managers to understand the safety status of the construction site anytime and anywhere. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0015] Figure 1 This is a schematic diagram of the composition of an online collaborative platform for building production safety risk classification management and hidden danger investigation according to the present invention; Figure 2 This is a flow chart of an online collaborative method for risk classification control and hidden danger investigation of construction production safety according to the present invention; Figure 3 The figure is a schematic diagram of the composition of a computing device according to the present invention. DETAILED DESCRIPTION
[0016] The following is a clear and complete description of the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0017] refer to Figures 1 to 3 , an online collaborative platform for construction production safety risk classification management and hidden danger investigation, including: Online interactive module, used for online entry of project self-inspection, company special inspection, monthly comprehensive inspection and leadership-assigned inspection data; The workflow engine module is used to coordinate workflows for project self-inspections, company-specific inspections, monthly comprehensive inspections, and inspections by leaders. Data collection and statistics module, used to collect and count various inspection execution data; The remote video inspection module is used by the construction production safety management department to submit videos of designated construction sites, view the video content online, take screenshots and mark them, and issue rectification orders; The automatic report generation module is used to automatically generate provincial statistics reports after the inspection is completed.
[0018] In this embodiment, by entering various types of inspection data online, the tediousness of traditional paper records is avoided, and the efficiency and accuracy of data entry are improved. At the same time, online interaction also promotes information sharing and collaborative work between different departments, breaking down information silos and making safety management more efficient. Automated process management enables various tasks such as project self-inspections, company-specific inspections, monthly comprehensive inspections, and leadership-assigned inspections to be carried out in an orderly and efficient manner. The workflow engine ensures the coordination and consistency of various inspections, reduces manual intervention, and improves work efficiency. The data collection and statistics module can collect and compile execution data of various inspections in real time, providing managers with comprehensive and accurate data support. By analyzing this data, managers can promptly understand the safety status of construction production, identify potential safety risks, and thus formulate targeted safety management measures. The remote video inspection module allows the construction production safety management department to submit video materials of designated construction sites and conduct online video content viewing, screenshot annotation, and issuance of rectification orders. This function greatly improves the convenience and efficiency of inspections, allowing managers to understand the safety status of the construction site anytime and anywhere.
[0019] Preferably, the workflow coordination of project self-inspection, company-specific inspection, monthly comprehensive inspection, and leadership-assigned inspection specifically includes: Based on the project self-inspection results, the company's special inspection results, the monthly comprehensive inspection results, and the inspection results of the leadership agent, the project self-inspection score, special inspection score, monthly comprehensive inspection score, and the leadership agent inspection score are calculated; Calculate the comprehensive score of the project based on the scores and weights of each inspection; Based on the comprehensive score and problem list, a rectification plan is formulated, and the person responsible for rectification and the rectification deadline are clearly defined.
[0020] In this embodiment, by calculating specific scores based on the results of various inspections, a quantitative assessment of construction production safety risks is achieved. This quantitative assessment method allows managers to more intuitively understand the safety status of the project. The comprehensive score calculated based on the scores and weights of each inspection can comprehensively reflect the overall safety level of the project. This comprehensive score can serve as an important indicator of the effectiveness of project safety management and provide a basis for decision-making for management. Through the workflow engine module, collaborative management of various tasks such as project self-inspections, company-specific inspections, monthly comprehensive inspections, and leadership-assigned inspections is achieved. This collaborative management method ensures the orderly progress of various inspection tasks, avoids duplication of work and information silos, and improves work efficiency. Based on the comprehensive scores and problem lists, the rectification plan formulated can clearly define the responsible persons and rectification deadlines for rectification, ensuring that problems are resolved in a timely manner. This rectification method with clear responsibilities helps to enhance managers' sense of responsibility and urgency and improves rectification efficiency. By analyzing the scores of various inspections, potential safety risks can be discovered in a timely manner. This risk warning mechanism helps managers take preventive and control measures in advance to avoid the occurrence of safety accidents.
[0021] It should be noted that the project self-inspection score is: self-inspection score = (number of completed items / total number of items) x 100; Special inspection pass rate: pass rate = (number of qualified items / total number of inspection items) x 100; Monthly comprehensive score: comprehensive score = (self-inspection score + special inspection score + other scores) / total number of inspection items x weight; Completion rate of leader's tasks: completion rate = (number of completed tasks / total number of tasks) x 100; The special inspection score is quantitatively evaluated based on the special inspection pass rate, and the leadership agency score is quantitatively evaluated based on the leadership agency completion rate.
[0022] Preferably, the comprehensive score of the project is calculated based on the scores and weights of each inspection, and the specific formula is: Comprehensive score = (project self-inspection score × self-inspection weight + company special inspection score × special weight + monthly comprehensive inspection score × monthly weight + leadership agency inspection score × leadership weight) - (number of problems × problem weight) + (rectification completion rate × rectification weight).
[0023] In this embodiment, the formula comprehensively considers the scores of multiple dimensions such as project self-inspection, company special inspection, monthly comprehensive inspection and leadership agency inspection, ensuring the comprehensiveness and objectivity of the evaluation. Each inspection link has its own specific weight, reflecting the importance of different inspections in overall safety management; by subtracting the number of problems and multiplying it by the problem weight, the formula incorporates the number and severity of problems into the evaluation system, which prompts the management team to pay attention not only to the scores, but also to the discovery and resolution of problems, thereby promoting continuous improvement; by adding the rectification completion rate and multiplying it by the rectification weight, the formula encourages timely and effective rectification actions, which helps to form a closed-loop management, ensure that discovered problems are resolved in a timely manner, and thus improve the overall safety management level.
[0024] Preferably, the collecting and statistically analyzing the execution data of various inspections specifically includes: Collect data in real time based on the execution status of inspection tasks, where the data includes the total number of inspection tasks, the number of completed inspection tasks, and the number of qualified inspection tasks; Calculations are performed based on the data collected to calculate the completion rate, pass rate and overall score.
[0025] In this embodiment, by collecting the total number of inspection tasks, the number of completed inspection tasks, and the number of qualified inspection tasks in real time, the management can timely understand the execution status of the inspection tasks. This real-time data monitoring helps to quickly identify potential problems and take corrective measures in a timely manner. The collection and analysis of real-time data provides a dynamic feedback mechanism for the management. The management can adjust the safety management strategy according to the changing trend of the data to ensure the smooth progress of the project; by calculating the ratio of the number of completed inspection tasks to the total number of inspection tasks, the completion rate is obtained. This indicator reflects the progress and efficiency of the inspection tasks and helps the management evaluate the work performance of the project team; by calculating the ratio of the number of qualified inspection tasks to the number of completed inspection tasks, the pass rate is obtained. This indicator directly reflects the safety quality level of the project. Combined with the scores and weights of each inspection, the comprehensive Score, this score can fully reflect the safety management level of the project; by collecting and statistically analyzing data, management can conduct quantitative analysis to identify weak links and potential risks in safety management. This quantitative analysis helps to improve the accuracy and scientific nature of decision-making. Continuous collection and analysis of data can identify trends and patterns in safety management. Management can take measures in advance to prevent potential risks based on these trends and patterns, ensuring the safe and smooth progress of the project; the automated process of collecting statistical data reduces manual intervention and improves the efficiency and accuracy of data processing, which helps management obtain key information more quickly and make timely decisions. The real-time collection and openness and transparency of data enhance team members' understanding and trust in the safety management process. This transparency helps to form a common safety management culture and improve the team's overall safety management level.
[0026] It should be noted that the formula for calculating the completion rate is as follows: CR = (number of completed inspection tasks / total number of inspection tasks) × 100%; The formula for calculating the pass rate is as follows: QR = (number of qualified inspection tasks / number of completed inspection tasks) × 100%; The formula for calculating the comprehensive score is as follows: CS=CR×0.6+QR×0.4.
[0027] Preferably, the construction production safety management department submits a video of the designated construction site, conducts online video content viewing, screenshot annotation, and issues a rectification order, specifically including: The construction production safety management department takes videos of designated construction sites and uploads them to the designated database; Security managers review uploaded videos based on the database. When they find any security issues during viewing, they use the screenshot function to capture relevant footage. Label the screenshots, clearly indicate the security issue, and add text descriptions; Based on the security issues marked in the screenshots, use the security risk assessment formula to quantify the severity of the security issues; Based on the results of video viewing and screenshot annotation, as well as the assessment results obtained from the safety risk assessment formula, a rectification order is compiled and issued to the relevant responsible units or individuals.
[0028] In this embodiment, by shooting videos of designated construction sites and uploading them to the database, the management department can intuitively record the safety conditions of the construction site. Compared with traditional text descriptions or photo records, this video recording method is more vivid and comprehensive, which helps managers to understand the on-site conditions more accurately. Safety managers can view video content online anytime and anywhere, and use the screenshot function to mark problems immediately when they find problems. This instant feedback mechanism greatly improves monitoring efficiency and helps to quickly identify and solve safety problems; marking the screenshots, clearly pointing out the safety problems, and adding text descriptions make the problem location more accurate and the description clearer, which helps the responsible units or individuals to quickly understand the problems and take effective corrective measures; using The security risk assessment formula quantifies the security issues marked in the screenshots to determine the severity of the security issues. This quantitative assessment method helps managers more objectively judge the urgency and importance of the issues, thereby rationally allocating resources and prioritizing serious issues. Based on the results of video viewing and screenshot annotation, as well as the assessment results obtained by the security risk assessment formula, rectification orders are compiled and issued to the relevant responsible units or individuals. This standardized rectification process ensures the timely discovery, accurate assessment and effective rectification of problems, and helps to form a closed-loop management. The rectification order clearly points out the security issues, responsible units or individuals, rectification requirements and deadlines, making responsibilities clearer, helping to enhance the sense of responsibility and urgency of the responsible units and improve rectification efficiency.
[0029] Preferably, the security risk assessment formula is specifically: ; Among them, SRAF represents the severity of the security issues in the video. It is i The score of the security question, It is i The weight of each security issue is determined according to the importance and frequency of the issue. n is the total number of security issues.
[0030] An online collaborative method for building production safety risk classification control and hidden danger investigation, specifically including: Through the online interactive module, input project self-inspection data, company special inspection data, monthly comprehensive inspection data and leadership agent inspection data; Utilize the workflow engine module to collaboratively manage the workflows of project self-inspection, company-specific inspection, monthly comprehensive inspection, and inspection by leadership agents; Through the data collection and statistics module, the execution data of project self-inspections, company special inspections, monthly comprehensive inspections and inspections by leaders are collected and statistically analyzed to form an overview of safety inspections; The construction production safety management department uses the remote video inspection module to submit video data of designated construction sites, view the video content through the online platform, take necessary screenshots and annotations, and issue rectification notices based on the video inspection results through the platform; After each inspection is completed, the automatic report generation module is used to automatically generate an inspection report that meets the provincial unified standards based on the entered data and statistical results.
[0031] A computing device includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of the above-mentioned online collaborative method for risk classification management and hidden danger investigation of construction production safety are implemented.
[0032] A computer-readable storage medium stores a computer program, which, when executed by a processor, implements the steps of the above-mentioned online collaborative method for graded control of construction production safety risks and hidden danger investigation.
[0033] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An online collaborative platform for building production safety risk classification management and hidden danger investigation, characterized by: include: Online interactive module, used for online entry of project self-inspection, company special inspection, monthly comprehensive inspection and leadership-assigned inspection data; The workflow engine module is used to coordinate workflows for project self-inspections, company-specific inspections, monthly comprehensive inspections, and inspections by leaders. Data collection and statistics module, used to collect and count various inspection execution data; The remote video inspection module is used by the construction production safety management department to submit videos of designated construction sites, view the video content online, take screenshots and mark them, and issue rectification orders; The automatic report generation module is used to automatically generate provincial statistics reports after the inspection is completed.
2. The online collaborative platform for construction production safety risk classification management and hidden danger investigation according to claim 1 is characterized in that: The workflow coordination for project self-inspection, company-specific inspection, monthly comprehensive inspection, and inspection by leadership agents specifically includes: Based on the project self-inspection results, the company's special inspection results, the monthly comprehensive inspection results, and the inspection results of the leadership agent, the project self-inspection score, special inspection score, monthly comprehensive inspection score, and the leadership agent inspection score are calculated; Calculate the comprehensive score of the project based on the scores and weights of each inspection; Based on the comprehensive score and problem list, a rectification plan is formulated, and the person responsible for rectification and the rectification deadline are clearly defined.
3. The online collaborative platform for construction production safety risk classification management and hidden danger investigation according to claim 2 is characterized in that: The comprehensive score of the project is calculated based on the scores and weights of each inspection. The specific formula is: Comprehensive score = (project self-inspection score × self-inspection weight + company special inspection score × special weight + monthly comprehensive inspection score × monthly weight + leadership agency inspection score × leadership weight) - (number of problems × problem weight) + (rectification completion rate × rectification weight).
4. The online collaborative platform for construction production safety risk classification management and hidden danger investigation according to claim 3 is characterized in that: The collection and statistics of various inspection execution data specifically include: Collect data in real time based on the execution status of inspection tasks, where the data includes the total number of inspection tasks, the number of completed inspection tasks, and the number of qualified inspection tasks; Calculations are performed based on the data collected to calculate the completion rate, pass rate and overall score.
5. The online collaborative platform for construction production safety risk classification management and hidden danger investigation according to claim 4 is characterized in that: The construction production safety management department shall submit videos of designated construction sites, conduct online video content review, screenshot annotation, and issue rectification orders, including: The construction production safety management department takes videos of designated construction sites and uploads them to the designated database; Security managers review uploaded videos based on the database. When they find any security issues during viewing, they use the screenshot function to capture relevant footage. Label the screenshots, clearly indicate the security issue, and add text descriptions; Based on the security issues marked in the screenshots, use the security risk assessment formula to quantify the severity of the security issues; Based on the results of video viewing and screenshot annotation, as well as the assessment results obtained from the safety risk assessment formula, a rectification order is compiled and issued to the relevant responsible units or individuals.
6. The online collaborative platform for construction production safety risk classification management and hidden danger investigation according to claim 5 is characterized in that: The security risk assessment formula is specifically: ; Among them, SRAF represents the severity of the security issues in the video. It is i The score of the security question, It is i The weight of each security issue is determined according to the importance and frequency of the issue. n is the total number of security issues.
7. An online collaborative method for building production safety risk classification control and hidden danger investigation, characterized by: Specifically include: Through the online interactive module, input project self-inspection data, company special inspection data, monthly comprehensive inspection data and leadership agent inspection data; Utilize the workflow engine module to collaboratively manage the workflows of project self-inspection, company-specific inspection, monthly comprehensive inspection, and inspection by leadership agents; Through the data collection and statistics module, the execution data of project self-inspections, company special inspections, monthly comprehensive inspections and inspections by leaders are collected and statistically analyzed to form an overview of safety inspections; The construction production safety management department uses the remote video inspection module to submit video data of designated construction sites, view the video content through the online platform, take necessary screenshots and annotations, and issue rectification notices based on the video inspection results through the platform; After each inspection is completed, the automatic report generation module is used to automatically generate an inspection report that meets the provincial unified standards based on the entered data and statistical results.
8. A computing device, characterized in that It includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, the steps of the online collaborative method for graded control of construction production safety risks and hidden danger investigation as described in claim 7 are implemented.
9. A computer-readable storage medium, characterized in that The storage medium stores a computer program, which, when executed by a processor, implements the steps of the online collaborative method for construction production safety risk classification management and hidden danger detection as described in claim 7.
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