Intelligent building decoration project quality supervision system

Through the smart building decoration project quality supervision system, the construction data and third-party supervision data are integrated to achieve the evaluation and optimization of the independent supervision effect of different nodes, solving the problem of poor supervision effect in the existing technology and improving the independent supervision ability of building decoration project quality.

CN120235503APending Publication Date: 2025-07-01NANTONG SOLANG DECORATION ENG CO LTD
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Patent Information

Application Number
CN202510362344.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-07-01

AI Technical Summary

Technical Problem

The existing quality supervision plan for building decoration projects cannot effectively evaluate and optimize the independent supervision effect of different nodes, resulting in poor quality supervision evaluation.

Method used

Through the smart building decoration project quality supervision system, the building decoration project link supervision and processing module, link quality supervision verification module and node quality verification and control module are used to integrate construction data and third-party supervision data, and conduct automated supervision and dynamic regulation to achieve the evaluation and optimization of the independent supervision effect of different nodes.

Benefits of technology

The independent supervision and evaluation effect and optimization management effect of building decoration project quality at different nodes has been improved, reliable data support and dynamic regulation capabilities have been provided, and the diversity and comprehensiveness of supervision have been enhanced.

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Abstract

The invention discloses an intelligent building decoration project quality supervision system, and belongs to the technical field of building decoration supervision. The method is used for solving the problem that in an existing scheme, the autonomous supervision implementation effect of different node engineering quality of different building decorations cannot be evaluated, and targeted node supervision optimization management cannot be implemented. And the technical problems of poor autonomous supervision implementation evaluation effect and poor autonomous supervision optimization management effect of the building decoration project quality at different nodes are solved. Third-party supervision data and supervision processing combination sequences corresponding to different link construction are integrated and analyzed, and a link autonomous supervision matching effect corresponding to the link construction is determined and prompted. Supervision data associated with link autonomous supervision matching effects corresponding to all link construction in the same building decoration project node is acquired and integrated and analyzed, and dynamic regulation and control are performed on existing node project quality automatic supervision schemes corresponding to different building decoration project nodes.
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Description

Technical Field

[0001] The present invention relates to the technical field of building decoration supervision, and particularly relates to a quality supervision system for intelligent building decoration projects. Background Art

[0002] The quality supervision of building decoration projects refers to a series of supervision and inspection activities carried out during the decoration construction inside a building to ensure that the quality of the decoration project meets the relevant requirements and technical standards.

[0003] When the existing building decoration project quality supervision scheme is implemented, it conducts independent supervision and evaluation prompts for the specific implementation processes of different nodes of building decoration. However, it does not evaluate the independent supervision effects of the project quality of different nodes of different building decorations and implement targeted node supervision optimization management. There is a situation where it cannot evaluate the implementation effects of independent supervision of the project quality of different nodes of different building decorations and implement targeted node supervision optimization management, resulting in poor evaluation effects of independent supervision implementation and poor optimization management effects of independent supervision for the project quality of different nodes of building decoration. Summary of the Invention

[0004] The purpose of the present invention is to provide a quality supervision system for intelligent building decoration projects, which is used to solve the technical problem that the existing scheme cannot evaluate the implementation effects of independent supervision of the project quality of different nodes of different building decorations and implement targeted node supervision optimization management, resulting in poor evaluation effects of independent supervision implementation and poor optimization management effects of independent supervision for the project quality of different nodes of building decoration.

[0005] The purpose of the present invention can be achieved through the following technical solutions: A quality supervision system for intelligent building decoration projects includes a supervision and processing module for building decoration project links, which is used to supervise and process the construction data of different links in different nodes of building decoration projects to obtain a supervision and processing combination sequence corresponding to the construction of different links; A quality supervision and verification module for building decoration project links, which is used to obtain the third-party supervision data corresponding to the construction of different links in different nodes of building decoration projects, and integrate and analyze the third-party supervision data and the supervision and processing combination sequence corresponding to the construction of the affiliated link to determine and prompt the matching effect of independent supervision of the affiliated link; A quality verification and regulation module for building decoration project nodes, which is used to obtain and integrate and analyze the supervision data associated with the matching effects of independent supervision of all links in the same building decoration project node to determine the independent supervision status of the node project quality corresponding to the affiliated building decoration project node, and dynamically regulate the existing automatic supervision scheme for the node project quality corresponding to the affiliated building decoration project node.

[0006] As a further solution of the present invention, when supervising and processing the construction data of different links in different nodes of the building decoration project, the link construction supervision data corresponding to different construction workers in different links is obtained. When digitizing the link construction supervision data, the link construction duration in the link construction supervision data is obtained, and the link construction duration is matched with the corresponding standard range of the link construction duration; If the link construction duration belongs to the corresponding standard range of the link construction duration, the first link construction supervision value corresponding to the link construction is set to 0; If the link construction duration does not belong to the corresponding standard range of the link construction duration, the first link construction supervision value corresponding to the link construction is set to 1.

[0007] As a further solution of the present invention, a number of target position monitoring images in the link construction supervision data are obtained, and image processing and matching analysis are performed on the number of target position monitoring images, and traversal analysis is sequentially performed on the corresponding matching analysis results of the number of target position monitoring images; If the matching analysis results corresponding to all the target position monitoring images are normal, the second link construction supervision value corresponding to the link construction is set to 0; If there is an abnormal matching analysis result corresponding to the target position monitoring image, the second link construction supervision value corresponding to the link construction is set to K; K is a positive integer; The first link construction supervision value and the second link construction supervision value obtained by the corresponding supervision and processing of the link construction are sorted and combined to obtain the supervision and processing combination sequence corresponding to the link construction and uploaded to the building decoration project quality supervision platform in real time.

[0008] As a further solution of the present invention, the third-party supervision data corresponding to different links in the building decoration project is obtained, and the third-party supervision data and the supervision and processing combination sequence corresponding to the link construction are analyzed by the quality supervision identification model to output the supervision matching value PY corresponding to the link construction; Among them, the expression of the quality supervision identification model is ; In the formula, [xi] is the supervision and processing combination sequence, i is the number of different elements, i = 1, 2; xi is the value corresponding to different elements; JS is the third-party supervision data; According to the supervision matching value with a value of 0, it is prompted that the supervision matching corresponding to the link construction is consistent; According to the supervision matching value with a value of 1, it is prompted that the supervision matching corresponding to the link construction is inconsistent and an abnormal supervision instruction is generated.

[0009] As a further solution of the present invention, the reason for the mismatch between the third-party supervision data and the supervision and processing combination sequence corresponding to the link construction is obtained according to the abnormal supervision instruction and processed; If all the supervision result values in JS are 0 and there are elements in the supervision processing combination sequence that are not 0, determine the positions corresponding to the elements that are not 0 in the supervision processing combination sequence. If the position corresponding to the element that is not 0 is the first position, generate a first abnormal prompt; If the position corresponding to the element that is not 0 is the second position, generate a second abnormal prompt, and set the first automatic supervision abnormal coefficient corresponding to the construction of the current link to N1, where N is the total number of elements that are not 0 when all the supervision result values in JS are 0 and there are elements in the supervision processing combination sequence that are not 0; If there are non-zero supervision result values in JS and there are elements in the supervision processing combination sequence that are not 0, obtain whether the abnormal construction detection positions in the third-party supervision data are consistent with the abnormal target positions corresponding to the elements that are not 0 in the supervision processing combination sequence.

[0010] As a further solution of the present invention, if all the abnormal construction positions in the third-party supervision data are consistent with all the abnormal target positions corresponding to the elements that are not 0 in the supervision processing combination sequence, it is prompted that the supervision matching corresponding to the construction of the current link is consistent; If all the abnormal construction positions in the third-party supervision data are not completely consistent with all the abnormal target positions corresponding to the elements that are not 0 in the supervision processing combination sequence, generate a third abnormal prompt, and set the second automatic supervision abnormal coefficient corresponding to the construction of the current link to N2, where N2 is the total number of the inconsistent abnormal construction positions and abnormal target positions; If all the abnormal construction positions in the third-party supervision data are completely inconsistent with all the abnormal target positions corresponding to the elements that are not 0 in the supervision processing combination sequence, generate a fourth abnormal prompt, and set the third automatic supervision abnormal coefficient corresponding to the construction of the current link to N3, where N3 is the total number of all the abnormal target positions.

[0011] As a further solution of the present invention, obtain the supervision data associated with the link independent supervision matching effects corresponding to the construction of all links in the same building decoration project node and traverse and analyze it; If all the supervision data associated with the link independent supervision matching effects corresponding to the construction of all links are 0, mark the building decoration project node as a normal supervision node, and maintain the subsequent implementation of the existing node project quality automatic supervision plan corresponding to the normal supervision node.

[0012] As a further solution of the present invention, if there are non-zero supervision data associated with the link independent supervision matching effects corresponding to the construction of all links, pass the non-zero supervision data through the formula Calculate and obtain the independent supervision effect coefficient JX corresponding to the building decoration engineering node; in the formula, N1´, N2´, and N3´ are the total values of the first automatic supervision anomaly coefficient, the total value of the second automatic supervision anomaly coefficient, and the total value of the third automatic supervision anomaly coefficient respectively; c1, c2, and c3 are different proportionality coefficients, and 0 < c1 < c2 < c3; A is the independent supervision effect limit value corresponding to the building decoration engineering node and is greater than 1. Conduct data analysis on the calculated independent supervision effect coefficient to determine the independent supervision status of the node project quality corresponding to the building decoration engineering node.

[0013] As a further solution of the present invention, if the independent supervision effect coefficient is less than or equal to 0, generate a mild anomaly in the independent supervision status of the node project quality corresponding to the building decoration engineering node, and mark the building decoration engineering node as the first anomaly supervision node. On the contrary, generate a severe anomaly in the independent supervision status of the node project quality corresponding to the building decoration engineering node, and mark the building decoration engineering node as the second anomaly supervision node.

[0014] As a further solution of the present invention, implement targeted local regulation management on the existing node project quality automatic supervision schemes corresponding to all the first anomaly supervision nodes in the building decoration project. Implement targeted overall regulation management on the existing node project quality automatic supervision schemes corresponding to all the second anomaly supervision nodes in the building decoration project.

[0015] Compared with the existing solutions, the beneficial effects achieved by the present invention: By supervising and processing the construction data of different links in different nodes of the building decoration project, the present invention realizes the automatic supervision and data processing of the construction of different links in different nodes of the building decoration project, and can provide reliable construction supervision and processing data support for the subsequent analysis of the implementation effects of the independent supervision of the project quality of different nodes of different building decorations.

[0016] By integrating and analyzing the third-party supervision data with the supervision and processing combination sequences corresponding to the construction of different links, the present invention determines and prompts the matching effect of the independent supervision of the corresponding link construction, can not only obtain the implementation effects of the existing node project quality automatic supervision schemes corresponding to the construction of different links, but also provide reliable construction quality supervision and processing data support for the subsequent analysis of the independent supervision status of the node project quality corresponding to different building decoration project nodes, improving the diversity and comprehensiveness of the processing and analysis of the implementation effects of the independent supervision of different link constructions.

[0017] The present invention realizes the evaluation of the implementation effect of the independent supervision of the engineering quality of different nodes of different building decorations and the implementation of targeted node supervision optimization management by obtaining the supervision data associated with the matching effect of the independent supervision of all the construction links corresponding to the same building decoration engineering node, integrating and analyzing them, and dynamically regulating the existing node engineering quality automatic supervision schemes corresponding to different building decoration engineering nodes, thereby improving the implementation evaluation effect of the independent supervision of the engineering quality of different nodes of building decoration and the effect of independent supervision optimization management. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The present invention will be further described below with reference to the accompanying drawings.

[0019] Figure 1 It is a block diagram of the modules of a smart building decoration engineering quality supervision system of the present invention.

[0020] Figure 2 It is a flow chart of the operation of a smart building decoration engineering quality supervision system of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0021] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. 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.

[0022] As Figures 1 to 2 shown, the present invention is a smart building decoration engineering quality supervision system, including a building decoration engineering quality supervision platform, and a building decoration engineering link supervision and processing module, a building decoration engineering link quality supervision and verification module, and a building decoration engineering node quality verification and regulation module that are communicatively connected to the building decoration engineering quality supervision platform; The building decoration engineering link supervision and processing module is used to supervise and process the construction data of different links in different nodes of the building decoration project to obtain a supervision and processing combination sequence corresponding to the construction of different links; including: When supervising and processing the construction data of different links in different nodes of the building decoration project, the different nodes of the building decoration project include, but are not limited to, floor engineering nodes, wall and column surface engineering nodes, ceiling engineering nodes, and door and window engineering nodes; A number of different links are associated with different nodes. For example, in the ceiling engineering node: installation of the ceiling skeleton: installation specifications of light steel keels, aluminum alloy keels, etc.; Installation links of various decorative panels: installation techniques of ceilings made of different materials such as gypsum boards and mineral wool boards; Embedded installation link of equipment: positioning and installation of equipment such as air-conditioning vents, lamps, and smoke detectors on the ceiling; Fireproof plugging construction link: effective fire isolation is required in areas with high fireproof requirements; Obtain the corresponding construction supervision data for different construction personnel during construction in different links. The construction supervision data for the link includes the construction duration of the link and several monitoring images of target positions. The construction duration of the link is based on the duration from when the affiliated construction personnel start the construction of the link to the end of the construction of the link. The several monitoring images of target positions are obtained by the affiliated construction personnel taking pictures of several pre-set target positions and uploading them after completing the corresponding construction of the link. The several target positions corresponding to different construction links are determined by professional technical personnel in this field. When digitally processing the construction supervision data for the link, obtain the construction duration of the link in the construction supervision data for the link and match the construction duration with the corresponding standard range of construction duration for the link; If the construction duration of the link belongs to the corresponding standard range of construction duration for the link, and the standard range of construction duration for the link can be determined based on the historical construction data of the affiliated construction personnel or the previous test data corresponding to the construction of the link, then set the first construction supervision value corresponding to the link to 0; If the construction duration of the link does not belong to the corresponding standard range of construction duration for the link, then set the first construction supervision value corresponding to the link to 1; In the embodiments of the present invention, by supervising, processing, and analyzing the construction duration of the link corresponding to the construction, reliable local supervision data support can be provided for the subsequent analysis of the supervision status corresponding to the link.

[0023] In addition, obtain several monitoring images of target positions in the construction supervision data for the link, perform image processing and matching analysis on the several monitoring images of target positions, and sequentially traverse and analyze the corresponding matching analysis results of the several monitoring images of target positions; Among them, both the image processing and matching analysis of the monitoring images of target positions are existing conventional image processing analysis technical solutions, and the specific implementation steps are not elaborated here; In addition, when performing matching analysis on the processed monitoring images of target positions, match them with the pre-set standard image processing data of the corresponding target positions. The pre-set standard image processing data of the target positions can be determined by the previous test data corresponding to the construction of the link and the industry construction requirement data; If the matching analysis results corresponding to all the monitoring images of target positions are normal, then set the second construction supervision value corresponding to the link to 0; If there is an abnormal matching analysis result corresponding to the target position monitoring image, set the second construction supervision value corresponding to the construction of the link to K; K is a positive integer, representing the total number corresponding to all abnormal matching analysis results; Sort and combine the first construction supervision value and the second construction supervision value obtained from the supervision and processing corresponding to the construction of the link to obtain the supervision and processing combination sequence corresponding to the construction of the link and upload it to the building decoration project quality supervision platform in real time; In the embodiment of the present invention, by supervising and processing the construction data of different links in different nodes of the building decoration project, the automatic supervision and data processing of different links in different nodes of the building decoration project are realized, which can provide reliable construction supervision and processing data support for the subsequent analysis of the implementation effect of the independent supervision of the project quality of different building decoration different nodes.

[0024] The building decoration project link quality supervision and verification module is used to obtain the third-party supervision data corresponding to different links in different nodes of the building decoration project, and integrate and analyze the third-party supervision data and the supervision and processing combination sequence corresponding to the construction of the link to determine the link independent supervision matching effect corresponding to the construction of the link and prompt; including: Obtain the third-party supervision data corresponding to different links in different nodes of the building decoration project. The third-party supervision can be an individual or a company conducting the quality inspection of the building decoration project. The third-party supervision data includes several supervision items and supervision result values. The several supervision items can be carried out according to the target position corresponding to the construction of the link, and analyze the data of the third-party supervision data and the supervision and processing combination sequence corresponding to the construction of the link through the quality supervision recognition model, and output the supervision matching value PY corresponding to the construction of the link; Among them, the expression of the quality supervision recognition model is ; in the formula, [xi] is the supervision and processing combination sequence, i is the number of different elements, i = 1, 2; xi is the value corresponding to different elements; JS is the third-party supervision data; The supervision matching value includes a value of 0 or 1; Prompt that the supervision matching corresponding to the construction of the link is consistent according to the supervision matching value with a value of 0; Prompt that the supervision matching corresponding to the construction of the link is inconsistent according to the supervision matching value with a value of 1 and generate an abnormal supervision instruction, and obtain and process the reason why the third-party supervision data does not match the supervision and processing combination sequence corresponding to the construction of the link according to the abnormal supervision instruction; It should be noted that when the third-party supervision data does not match the supervision processing combination sequence corresponding to the construction of the corresponding link, it is necessary to further analyze and process the reasons for the mismatch, so as to provide reliable abnormal construction supervision data support for the data analysis of the existing node project quality automatic supervision plan corresponding to the construction of the corresponding link; If all the supervision result values in JS are 0 and there are elements in the supervision processing combination sequence that are not 0, determine the position corresponding to the element that is not 0 in the supervision processing combination sequence. If the position corresponding to the element that is not 0 is the first place, generate a first abnormal prompt, which can be understood as that the construction personnel are abnormal during the construction process but the quality of the link construction is normal; If the position corresponding to the element that is not 0 is the second place, generate a second abnormal prompt, and set the first automatic supervision abnormal coefficient corresponding to the construction of the corresponding link to N1, where N is the total number of elements that are not 0 when all the supervision result values in JS are 0 and there are elements in the supervision processing combination sequence that are not 0; If there are non-zero supervision result values in JS and there are elements in the supervision processing combination sequence that are not 0, obtain whether the abnormal construction detection position in the third-party supervision data is consistent with the abnormal target position corresponding to the element that is not 0 in the supervision processing combination sequence; If all the abnormal construction positions in the third-party supervision data are consistent with all the abnormal target positions corresponding to the elements that are not 0 in the supervision processing combination sequence, it is prompted that the supervision matching corresponding to the construction of the corresponding link is consistent; If all the abnormal construction positions in the third-party supervision data are not completely consistent with all the abnormal target positions corresponding to the elements that are not 0 in the supervision processing combination sequence, generate a third abnormal prompt, and set the second automatic supervision abnormal coefficient corresponding to the construction of the corresponding link to N2, where N2 is the total number of all abnormal construction positions and all abnormal target positions that are not completely consistent; If all the abnormal construction positions in the third-party supervision data are completely inconsistent with all the abnormal target positions corresponding to the elements that are not 0 in the supervision processing combination sequence, generate a fourth abnormal prompt, and set the third automatic supervision abnormal coefficient corresponding to the construction of the corresponding link to N3, where N3 is the total number of all abnormal target positions; In the embodiment of the present invention, by using the third-party supervision data to integrate and analyze the supervision processing combination sequences corresponding to the constructions of different links, determining the self-supervision matching effect corresponding to the construction of the corresponding link and prompting, it is possible to obtain the implementation effect of the existing node project quality automatic supervision plan corresponding to the constructions of different links, and it is also possible to provide reliable supervision processing data support for the analysis of the self-supervision status of the node project quality corresponding to the subsequent different building decoration project nodes, improving the diversity and comprehensiveness of the processing analysis of the self-supervision implementation effect of different links of construction.

[0025] A building decoration project node quality verification and control module is used to obtain and integrate and analyze the supervision data related to the self-supervision matching effect of all links in the same building decoration project node, determine the self-supervision status of the node project quality corresponding to the building decoration project node, and dynamically adjust the existing node project quality automatic supervision plan corresponding to the building decoration project node; including: Obtain and traverse and analyze the supervision data related to the self-supervision matching effect of all links in the same building decoration project node; If the supervision data related to the self-supervision matching effect of all links in the construction are all 0, mark the building decoration project node as a normal supervision node, and maintain the subsequent implementation of the existing node project quality automatic supervision plan corresponding to the normal supervision node; If there is non-zero supervision data related to the self-supervision matching effect of all links in the construction, the non-zero supervision data is passed through the formula Calculate to obtain the self-supervision effect coefficient JX corresponding to the building decoration project node; in the formula, N1´, N2´, and N3´ are the total values of the first automatic supervision anomaly coefficient, the total value of the second automatic supervision anomaly coefficient, and the total value of the third automatic supervision anomaly coefficient respectively, which are obtained by summing all the same first automatic supervision anomaly coefficients, all the second automatic supervision anomaly coefficients, and all the third automatic supervision anomaly coefficients respectively; c1, c2, and c3 are different proportionality coefficients, and 0 < c1 < c2 < c3, and the specific values are not restricted and can be customized according to the application needs of the actual application scenario; A is the self-supervision effect limit value corresponding to the building decoration project node and is greater than 1, which can be determined according to the previous test data corresponding to the building decoration project node, or can be determined according to the data of the corresponding industry standard design requirements; Conduct data analysis on the calculated self-supervision effect coefficient to determine the self-supervision status of the node project quality corresponding to the building decoration project node; If the self-supervision effect coefficient is less than or equal to 0, generate a mild anomaly in the self-supervision status of the node project quality corresponding to the building decoration project node, and mark the building decoration project node as the first abnormal supervision node; Otherwise, generate a severe anomaly in the self-supervision status of the node project quality corresponding to the building decoration project node, and mark the building decoration project node as the second abnormal supervision node; Implement targeted partial adjustment management on the existing node project quality automatic supervision plan corresponding to all the first abnormal supervision nodes in the building decoration project; Implement targeted overall adjustment management on the existing node project quality automatic supervision plan corresponding to all the second abnormal supervision nodes in the building decoration project; Among them, targeted local regulation and management can be specifically implemented by modifying, supplementing, and improving the local supervision rules for the existing node project quality automatic supervision plan corresponding to the first abnormal supervision node; Implement targeted overall regulation and management, which can be specifically implemented by modifying, supplementing, and improving the overall supervision rules for the existing node project quality automatic supervision plan corresponding to the second abnormal supervision node.

[0026] In the embodiments of the present invention, by obtaining the supervision data associated with the autonomous supervision matching effect of all links in the same building decoration project node, integrating and analyzing it, and dynamically regulating the existing node project quality automatic supervision plan corresponding to different building decoration project nodes, the autonomous supervision implementation effect of the project quality of different building decoration different nodes is evaluated, and targeted node supervision optimization management is implemented, improving the autonomous supervision implementation evaluation effect and autonomous supervision optimization management effect of the building decoration project quality at different nodes.

[0027] In addition, the formulas involved above are all calculated by removing the dimension and taking their numerical values, and are obtained by a software through simulating a large amount of data to get a formula that is closest to the actual situation.

[0028] In several embodiments provided by the present invention, it should be understood that the disclosed system can be implemented in other ways. For example, the above-described invention embodiments are merely illustrative. For example, the division of modules is only a logical function division, and there can be other division methods in actual implementation.

[0029] The modules described as separate components may or may not be physically separated, and the components shown as modules may or may not be physical modules. They can be located in one place or distributed to multiple network modules. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0030] In addition, the functional modules in each embodiment of the present invention can be integrated into one processing module, or each module can exist physically alone, or two or more modules can be integrated into one module. The above-integrated modules can be implemented in the form of hardware or in the form of a combination of hardware and software functional modules.

[0031] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above-described exemplary embodiments, and can be implemented in other specific forms without departing from the basic characteristics of the present invention.

[0032] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical solutions of the present invention.

Claims

1. A smart building decoration engineering quality supervision system, characterized in that: It includes a supervision and processing module for building decoration engineering links, which is used to supervise and process the construction data of different links in different nodes of the building decoration engineering, and obtain the supervision and processing combination sequence corresponding to the construction of different links; The quality supervision and verification module for building decoration projects is used to obtain the third-party supervision data corresponding to the construction of different links in different nodes of the building decoration project, and integrate and analyze the third-party supervision data and the supervision processing combination sequence corresponding to the construction of the corresponding links, determine the matching effect of the link self-supervision corresponding to the construction of the corresponding link and give prompts; The building decoration project node quality verification and control module is used to obtain and integrate the supervision data associated with the autonomous supervision matching effects of all construction links in the same building decoration project node, determine the autonomous supervision status of the node engineering quality corresponding to the building decoration project node, and dynamically control the existing node engineering quality automation supervision plan corresponding to the building decoration project node.

2. According to claim 1, a smart building decoration engineering quality supervision system is characterized in that: When supervising and processing the construction data of different links in different nodes of the building decoration project, the corresponding link construction supervision data of different construction personnel during the construction of different links are obtained. When digitally processing the link construction supervision data, the link construction duration in the link construction supervision data is obtained, and the link construction duration is matched with the corresponding link construction duration standard range; If the construction duration of a link falls within the standard range of the corresponding link construction duration, the first link construction supervision value corresponding to the corresponding link construction is set to 0; If the construction duration of a link does not fall within the standard range of the corresponding link construction duration, the first link construction supervision value corresponding to the corresponding link construction will be set to 1.

3. According to claim 2, a smart building decoration engineering quality supervision system is characterized in that: Acquire several target position monitoring images in the link construction supervision data, perform image processing and matching analysis on the several target position monitoring images, and perform traversal analysis on the matching analysis results corresponding to the several target position monitoring images in turn; If the matching analysis results corresponding to all target location monitoring images are normal, the second-stage construction supervision value corresponding to the corresponding stage construction is set to 0; If the matching analysis result corresponding to the target position monitoring image is abnormal, the second link construction supervision value corresponding to the link construction is set to K; K is a positive integer; The first-stage construction supervision values ​​and the second-stage construction supervision values ​​obtained by the supervision processing corresponding to the stage construction are sorted and combined to obtain the supervision processing combination sequence corresponding to the stage construction and upload it to the building decoration engineering quality supervision platform in real time.

4. According to claim 3, a smart building decoration engineering quality supervision system is characterized in that: Obtain the third-party supervision data corresponding to the construction of different links in different nodes of the building decoration project, and analyze the third-party supervision data and the supervision processing combination sequence corresponding to the construction of the corresponding link through the quality supervision identification model, and output the supervision matching value PY corresponding to the construction of the corresponding link; Among them, the expression of the quality supervision identification model is ; In the formula, [xi] is the supervision treatment combination sequence, i is the number of different elements, i=1, 2; xi is the value corresponding to different elements; JS is the third-party supervision data; According to the supervision matching value of 0, it is indicated that the supervision matching corresponding to the construction of the corresponding link is consistent; According to the supervision matching value of 1, it is prompted that the supervision matching corresponding to the construction of the corresponding link is inconsistent and an abnormal supervision instruction is generated.

5. According to claim 4, a smart building decoration engineering quality supervision system is characterized in that: According to the abnormal supervision instructions, the reasons for the mismatch between the third-party supervision data and the supervision processing combination sequence corresponding to the construction of the corresponding link are obtained and handled; If the values ​​of the supervision results in JS are all 0 and there is an element in the supervision processing combination sequence that is not 0, then determine the position corresponding to the element that is not 0 in the supervision processing combination sequence. If the position corresponding to the element that is not 0 is the first, then generate the first abnormal prompt; If the position corresponding to the non-zero element is the second position, a second abnormal prompt is generated, and the first automatic supervision abnormal coefficient corresponding to the construction of the corresponding link is set to N1, where N is the total number of non-zero elements in the supervision processing combination sequence when the supervision result values ​​in JS are all 0; If the value of the supervision result in JS is not 0 and there is an element in the supervision processing combination sequence that is not 0, obtain whether the abnormal construction detection position in the third-party supervision data is consistent with the abnormal target position corresponding to the element in the supervision processing combination sequence that is not 0.

6. According to claim 5, a smart building decoration engineering quality supervision system is characterized in that: If all abnormal construction positions in the third-party supervision data are consistent with all abnormal target positions corresponding to the non-zero elements in the supervision processing combination sequence, it indicates that the supervision matching corresponding to the construction of the corresponding link is consistent; If all abnormal construction positions in the third-party supervision data are not completely consistent with all abnormal target positions corresponding to the non-zero elements in the supervision processing combination sequence, a third abnormal prompt is generated, and the second automatic supervision abnormal coefficient corresponding to the construction of the corresponding link is set to N2, where N2 is the total number of inconsistencies between all abnormal construction positions and all abnormal target positions; If all abnormal construction positions in the third-party supervision data are completely inconsistent with all abnormal target positions corresponding to non-zero elements in the supervision processing combination sequence, a fourth abnormal prompt is generated, and the third automatic supervision abnormality coefficient corresponding to the construction of the corresponding link is set to N3, where N3 is the total number of all abnormal target positions.

7. The intelligent building decoration engineering quality supervision system according to claim 6 is characterized in that: Obtain the supervision data associated with the autonomous supervision matching effect of all construction links corresponding to the same building decoration project node and traverse and analyze; If the supervision data associated with the autonomous supervision matching effect corresponding to all construction links are 0, the corresponding building decoration project node will be marked as a normal supervision node, and the subsequent implementation of the existing node engineering quality automation supervision plan corresponding to the normal supervision node will be maintained.

8. The intelligent building decoration engineering quality supervision system according to claim 7 is characterized in that: If the supervision data associated with the matching effect of the self-supervision of all links corresponding to the construction is not 0, the supervision data with a value not 0 will be calculated through the formula Calculate and obtain the autonomous supervision effect coefficient JX corresponding to the building decoration engineering node; where N1´, N2´, N3´ are the total values ​​of the first automatic supervision anomaly coefficient, the second automatic supervision anomaly coefficient, and the third automatic supervision anomaly coefficient respectively; c1, c2, c3 are different proportional coefficients, and 0<c1<c2<c3; A is the autonomous supervision effect limit value corresponding to the building decoration engineering node and is greater than 1; Conduct data analysis on the calculated self-regulatory effect coefficient to determine the self-regulatory status of the node engineering quality corresponding to the building decoration engineering node.

9. The intelligent building decoration engineering quality supervision system according to claim 8 is characterized in that: If the self-regulatory effect coefficient is less than or equal to 0, the node engineering quality self-regulatory status corresponding to the building decoration engineering node is slightly abnormal, and the building decoration engineering node is marked as the first abnormal supervision node; Otherwise, a severe abnormality in the node engineering quality autonomous supervision status corresponding to the building decoration engineering node is generated, and the building decoration engineering node is marked as the second abnormal supervision node.

10. The intelligent building decoration engineering quality supervision system according to claim 9 is characterized in that: Implement targeted local control management for the existing node engineering quality automation supervision scheme corresponding to all first abnormal supervision nodes in the building decoration project; Implement targeted overall regulation and management on the existing node engineering quality automation supervision plan corresponding to all second abnormal supervision nodes in the building decoration project.