An engineering quality inspection system based on multiple qualification parameters

The engineering quality testing system with multiple qualification parameters enables unified input, automatic splitting, and compliance verification of cross-industry qualifications, solving the problem of insufficient qualification recognition in traditional testing systems and improving testing efficiency and compliance.

CN122089336APending Publication Date: 2026-05-26CHONGQING CONSTR ENG QUALITY SUPERVISION & TESTING CENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHONGQING CONSTR ENG QUALITY SUPERVISION & TESTING CENT CO LTD
Filing Date
2026-02-02
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The existing testing system cannot adapt to the demand for multiple qualification parameters at the same time, resulting in insufficient qualification identification capabilities, low efficiency in splitting, weak compliance control, and problems such as incorrect parameter classification and chaotic numbering.

Method used

An engineering quality testing system based on multiple qualification parameters is adopted, including a testing parameter library construction module, a multi-qualification parameter simultaneous entrustment registration module, a parameter automatic classification and analysis module, a report scheme intelligent generation module, and a number generation module, to achieve unified input, automatic classification, splitting, and compliance verification of cross-industry qualifications.

Benefits of technology

This improved the efficiency of the testing process, reduced manual operation time, ensured the standardization and compliance of test reports, and avoided regulatory penalties due to risks of exceeding qualifications.

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Abstract

This invention relates to the field of engineering quality testing technology and discloses an engineering quality testing system based on multiple qualification parameters. The system includes a testing parameter library construction module, a multi-qualification parameter simultaneous commissioning registration module, an automatic parameter classification and analysis module, a report scheme intelligent generation module, and a numbering generation module. The testing parameter library construction module is used to establish a testing parameter library based on the industry testing capabilities of testing institutions. The multi-qualification parameter simultaneous commissioning registration module allows users to enter testing parameters with cross-industry qualifications at once. The automatic parameter classification and analysis module can identify the qualification affiliation of commissioned parameters. The report scheme intelligent generation module provides multiple qualification splitting schemes for users to choose from. This invention supports one-time commissioning registration of multiple qualification parameters. Combined with automatic classification and splitting functions, it avoids the cumbersome process of traditional manual splitting, reducing commission processing time from 1-2 days to several minutes, significantly improving work efficiency.
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Description

Technical Field

[0001] This invention relates to the field of engineering quality testing technology, and in particular to an engineering quality testing system based on multiple qualification parameters. Background Technology

[0002] With the formal implementation of the "Administrative Measures for Construction Project Quality Testing" (Ministry of Housing and Urban-Rural Development Order No. 57) in 2023, the construction project quality testing industry faces stricter regulatory requirements. The new regulations explicitly stipulate that test reports must not contain parameters outside the scope of the testing industry's qualifications, placing higher demands on the qualification management capabilities of testing systems. Traditional testing systems typically only support registration for commissions based on a single qualification, failing to meet the practical needs of commissioning multiple qualification parameters simultaneously. In actual business operations, commissioned samples often involve testing parameters from multiple industries, but traditional systems lack automatic parameter qualification recognition functions, only simply recording parameter names. This leads to significant compliance risks for testing institutions, necessitating a technological upgrade to meet the new regulations.

[0003] Existing testing systems suffer from significant technical deficiencies, primarily in insufficient qualification identification capabilities, low efficiency in parameter splitting, and weak compliance controls. When commissioned parameters involve multiple qualifications, manual splitting of the commission form is required, leading to complex processes, frequent signature exchanges, and multiple registrations and receipts for the same sample, significantly reducing work efficiency. Manual splitting is prone to parameter classification errors or numbering confusion, with error correction taking 1-2 days, severely impacting testing progress. More seriously, the system lacks an automated compliance verification mechanism, making it difficult to effectively prevent risks related to exceeding qualification limits and exposing testing institutions to regulatory penalties. Therefore, developing a new testing system capable of intelligently identifying qualifications and automatically splitting parameters is of paramount importance and urgency. Summary of the Invention

[0004] The purpose of this invention is to address the shortcomings of existing technologies, such as insufficient qualification identification capabilities, low efficiency in segmentation, and weak compliance control, and to propose an engineering quality inspection system based on multiple qualification parameters.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] An engineering quality testing system based on multiple qualification parameters is disclosed. This system includes a testing parameter library construction module, a multi-qualification parameter simultaneous commissioning registration module, an automatic parameter classification and analysis module, a report scheme intelligent generation module, and a numbering generation module. The testing parameter library construction module is used to establish a testing parameter library based on the industry testing capabilities of testing institutions. The multi-qualification parameter simultaneous commissioning registration module allows users to enter testing parameters with cross-industry qualifications at once. The automatic parameter classification and analysis module can identify the qualification affiliation of commissioned parameters. The report scheme intelligent generation module provides multiple qualification splitting schemes for users to choose from. The numbering generation module automatically generates commissioning numbers according to industry numbering rules.

[0007] Preferably, the testing parameter library construction module analyzes the capabilities and qualifications of testing institutions, identifies more than 500 testing items, categorizes more than 7,000 capability parameters and assigns them unique codes, and establishes a parameter qualification standard library that includes new qualifications from the Construction Commission, CMA qualifications and other qualifications, providing a data foundation for automatic parameter classification.

[0008] Furthermore, the multi-qualification parameter simultaneous entrustment registration module provides a unified parameter input interface, supporting users to enter testing parameters involving multiple industry qualifications at one time. The system automatically records complete information such as parameter names and testing requirements, realizing the simultaneous entrustment registration of multiple qualification parameters.

[0009] Furthermore, the automatic parameter classification and analysis module intelligently compares the commissioned parameters with the qualification standard library, automatically identifies the industry qualification category to which each parameter belongs, and marks the overlap of parameter qualifications, providing a decision-making basis for report generation.

[0010] Furthermore, the intelligent report generation module adopts a "default scheme + manual confirmation" mechanism, which automatically generates multiple splitting schemes based on the parameter qualification comparison results, including different strategies such as construction engineering qualification priority and CMA qualification priority. Users can choose the optimal scheme according to their actual needs.

[0011] Preferably, the numbering generation module automatically assigns a qualified entrustment number to the split parameters according to the numbering rules stipulated by the industry regulatory authorities, ensuring the standardization and uniqueness of each test report number.

[0012] Preferably, the system supports simultaneous processing of two or more qualification parameters and can automatically split into multiple test reports according to the distribution of qualification parameters, so as to achieve the effect of simultaneous registration of qualification parameters in multiple industries.

[0013] Furthermore, the system has a parameter qualification compliance verification function, which can detect in real time whether the entrusted parameters exceed the qualification range, effectively preventing the risk of the test report parameters exceeding the qualification and ensuring the compliance of the testing activities.

[0014] The beneficial effects of this invention are as follows:

[0015] 1. Improve business processing efficiency: The system supports one-time registration of multiple qualification parameters. Combined with automatic classification and splitting functions, it avoids the cumbersome process of traditional manual splitting and shortens the processing time from the original 1-2 days to a few minutes, greatly improving work efficiency.

[0016] 2. Ensure testing compliance: By establishing a comprehensive parameter qualification standard library and a real-time compliance verification mechanism, it can accurately identify parameters that exceed qualifications and promptly issue prompts, thus avoiding the risk of test reports exceeding qualifications from the source and helping testing institutions meet industry regulatory requirements.

[0017] 3. Optimize user experience: A unified parameter entry interface and flexible report splitting scheme reduce the difficulty of operation for users. At the same time, the automatic generation of standardized and unique entrustment numbers reduces human error and improves the accuracy of overall business processing. Attached Figure Description

[0018] Figure 1 This is a flowchart illustrating the overall workflow of an engineering quality testing system based on multiple qualification parameters proposed in this invention.

[0019] Figure 2 This is a flowchart illustrating the parameter processing and qualification identification of an engineering quality testing system based on multiple qualification parameters proposed in this invention.

[0020] Figure 3 This is a flowchart illustrating the report generation and selection process of an engineering quality testing system based on multiple qualification parameters proposed in this invention.

[0021] Figure 4 This is a flowchart of an anomaly handling and compliance verification process for an engineering quality testing system based on multiple qualification parameters proposed in this invention.

[0022] Figure 5 This is a flowchart illustrating the multi-qualification parameter decomposition logic of an engineering quality testing system based on multiple qualification parameters proposed in this invention. Detailed Implementation

[0023] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0024] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.

[0025] Reference Figure 1-5 This invention relates to an engineering quality testing system based on multiple qualification parameters. The system comprises a testing parameter library construction module, a multi-qualification parameter simultaneous commissioning registration module, an automatic parameter classification and analysis module, an intelligent report generation module, and a numbering generation module. The testing parameter library construction module establishes a testing parameter library based on the industry testing capabilities of testing institutions. The multi-qualification parameter simultaneous commissioning registration module allows users to input testing parameters from across industries at once. The automatic parameter classification and analysis module identifies the qualification affiliation of commissioned parameters. The intelligent report generation module provides multiple qualification splitting schemes for users to choose from. The numbering generation module automatically generates commissioning numbers according to industry numbering rules. Through the coordinated operation of these five core modules, the system breaks through the limitations of traditional single-qualification, decentralized operations in engineering quality testing. It forms a complete closed loop from parameter management and commissioning registration to report generation and number allocation, providing an integrated solution for cross-industry, multi-qualification testing needs and significantly improving the efficiency and standardization of the testing process.

[0026] Preferably, the testing parameter library construction module analyzes the capabilities and qualifications of testing institutions, identifies over 500 testing items, categorizes over 7,000 capability parameters and assigns them unique codes, and establishes a parameter qualification standard library that includes new qualifications from the Construction Commission, CMA qualifications, and other qualifications. This provides a data foundation for automatic parameter classification. This module focuses on the actual capabilities of testing institutions, and through quantitative analysis (500+ testing items, 7,000+ capability parameters) and unique code management, it covers mainstream qualification types such as new qualifications from the Construction Commission and CMA qualifications. The constructed parameter qualification standard library not only ensures the integrity and uniqueness of the data, but also provides accurate and reliable data support for the automatic classification and compliance verification of subsequent modules, avoiding classification errors caused by data chaos.

[0027] Furthermore, the module for simultaneous registration of multiple qualification parameters provides a unified parameter input interface, allowing users to input testing parameters involving multiple industry qualifications at once. The system automatically records complete information such as parameter names and testing requirements, enabling simultaneous registration of multiple qualification parameters.

[0028] Preferably, the automatic parameter classification and analysis module intelligently compares the commissioned parameters with the qualification standard library, automatically identifies the industry qualification category to which each parameter belongs, and marks the overlap of parameter qualifications, providing a decision-making basis for report generation.

[0029] Furthermore, the intelligent report generation module adopts a "default scheme + manual confirmation" mechanism, which automatically generates multiple splitting schemes based on the parameter qualification comparison results, including different strategies such as construction engineering qualification priority and CMA qualification priority. Users can choose the optimal scheme according to their actual needs.

[0030] Preferably, the numbering generation module automatically assigns a qualified commission number to the split parameters according to the numbering rules stipulated by the industry regulatory authorities, ensuring the standardization and uniqueness of each test report number. This module strictly follows the numbering rules of the industry regulatory authorities to avoid invalid reports due to non-standard numbering. At the same time, it assigns a number to each of the split reports (such as a single commission split into 2-3 reports due to multiple qualifications), and ensures the uniqueness of all numbers through system logic. This facilitates traceability and query by regulatory authorities and also makes it convenient for testing institutions to archive and manage reports internally, improving the compliance and traceability of the overall process.

[0031] Furthermore, the system supports simultaneous processing of two or more qualification parameters and can automatically split into multiple test reports based on the distribution of qualification parameters, achieving the effect of simultaneous registration of qualification parameters from multiple industries.

[0032] Furthermore, the system has a parameter qualification compliance verification function, which can detect in real time whether the entrusted parameters exceed the qualification range, effectively preventing the risk of the test report parameters exceeding the qualification and ensuring the compliance of the testing activities.

[0033] Working Principle: This system uses a testing parameter library as its core data source. Through the collaborative operation of five modules, it achieves intelligent processing of multiple qualification parameters from commission registration to report generation. The core logic revolves around "data support - efficient input - intelligent analysis - scheme generation - standard numbering". The testing parameter library construction module lays the foundation for system operation. By analyzing the qualification capabilities of testing institutions, it sorts out more than 500 testing items and more than 7,000 capability parameters, assigns unique codes, and establishes a standard library including new qualifications from the Construction Commission, CMA qualifications, etc., forming a "data dictionary" for parameter qualification matching. Users can enter testing parameters for cross-industry qualifications at once through the unified interface of the multi-qualification parameter simultaneous commission registration module. The system automatically and completely records the parameter name, testing requirements, and other information, breaking the limitations of traditional single qualification input. After the input is completed, the parameter automatic classification and analysis module is immediately launched. It intelligently compares the commissioned parameters with the standard library, accurately identifies the qualification affiliation of each parameter, and simultaneously marks the overlap, providing a basis for subsequent splitting. Based on the comparison results, the report scheme intelligent generation module adopts a "default scheme + manual confirmation" mechanism to automatically generate splitting schemes such as construction engineering qualification priority and CMA qualification priority. After the user selects the optimal solution, the numbering module assigns a unique and standardized commission number to the split parameters according to industry rules. Throughout the process, the compliance verification function intervenes in real time to check whether the parameters exceed the qualification range, and immediately alerts if any abnormality is found. The system ultimately automatically splits multiple qualification parameters into multiple compliance test reports, achieving efficient conversion from one-time data entry to standardized report output, reducing the traditional 1-2 day processing time to a few minutes, ensuring both compliance and efficiency.

Claims

1. An engineering quality inspection system based on multiple qualification parameters, characterized in that, The system includes a testing parameter library construction module, a multi-qualification parameter simultaneous entrustment registration module, a parameter automatic classification and analysis module, a report scheme intelligent generation module, and a number generation module. The testing parameter library construction module is used to establish a testing parameter library based on the industry testing capabilities of testing institutions. The multi-qualification parameter simultaneous entrustment registration module allows users to enter testing parameters with cross-industry qualifications at once. The parameter automatic classification and analysis module can identify the qualification affiliation of entrusted parameters. The report scheme intelligent generation module provides multiple qualification splitting schemes for users to choose from. The number generation module automatically generates entrustment numbers according to industry numbering rules.

2. The system according to claim 1, characterized in that, The testing parameter library construction module analyzes the capabilities and qualifications of testing institutions, identifies more than 500 testing items, categorizes more than 7,000 capability parameters and assigns them unique codes, and establishes a parameter qualification standard library that includes new qualifications from the Construction Commission, CMA qualifications and other qualifications, providing a data foundation for automatic parameter classification.

3. The system according to claim 1, characterized in that, The module for simultaneous registration of multiple qualification parameters provides a unified parameter input interface, allowing users to input testing parameters involving multiple industry qualifications at once. The system automatically records complete information such as parameter names and testing requirements, enabling simultaneous registration of multiple qualification parameters.

4. The system according to claim 1, characterized in that, The automatic parameter classification and analysis module intelligently compares the commissioned parameters with the qualification standard library, automatically identifies the industry qualification category to which each parameter belongs, and marks the overlap of parameter qualifications, providing a decision-making basis for report generation.

5. The system according to claim 1, characterized in that, The intelligent report generation module adopts a "default scheme + manual confirmation" mechanism, which automatically generates multiple splitting schemes based on the parameter qualification comparison results, including different strategies such as construction engineering qualification priority and CMA qualification priority. Users can choose the optimal scheme according to their actual needs.

6. The system according to claim 1, characterized in that, The numbering generation module automatically assigns qualified entrustment numbers to the split parameters according to the numbering rules stipulated by the industry regulatory authorities, ensuring the standardization and uniqueness of each test report number.

7. The system according to claim 1, characterized in that, The system supports simultaneous processing of two or more qualification parameters and can automatically split into multiple test reports based on the distribution of qualification parameters, achieving the effect of simultaneous registration of qualification parameters in multiple industries.

8. The system according to claim 1, characterized in that, The system has a parameter qualification compliance verification function, which can detect in real time whether the entrusted parameters exceed the qualification range, effectively preventing the risk of the test report parameters exceeding the qualification and ensuring the compliance of the testing activities.