Safety data analysis method based on automatic construction and cloud server
By combining reference process data and feature description information set in automated construction, the accuracy and timeliness of the safety evaluation data matching index in automated construction are solved, and a more accurate safety evaluation is achieved.
Patent Information
- Application Number
- CN202510450373.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2025-07-29
AI Technical Summary
In automated construction, how to improve the accuracy and timeliness of the matching index between the target task link and the auxiliary task link safety evaluation data.
By combining the set reference process automation construction safety evaluation data, we determine the reference process automation construction safety evaluation data queue with the matching index between the target task link and the auxiliary task link that meets the requirements, and use the process construction safety feature description information set for classification processing to determine the matching index to realize data transfer and difference analysis.
The accuracy and timeliness of the matching index between the target task link and the auxiliary task link are improved, and a more accurate safety evaluation is achieved.
Smart Images

Figure CN120387695A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of automated construction technology, and particularly to a safety data analysis method and a cloud server based on automated construction. Background Art
[0002] At present, with the continuous development of automated construction, how to ensure the quality of the matching index between the safety evaluation data of the automated construction in the target task link and the safety evaluation data of the automated construction in each auxiliary task link is a problem that needs to be solved currently. Summary of the Invention
[0003] To improve the technical problems existing in the related art, this application provides a safety data analysis method and a cloud server based on automated construction.
[0004] This application provides a safety data analysis method based on automated construction, which is applied to a cloud server. The method includes: Combining the safety evaluation data of each set reference process for automated construction, determining a first queue of safety evaluation data of the reference process for automated construction whose matching index with the safety evaluation data of the automated construction in the target task link meets the requirements of the first target matching index, and a second queue of safety evaluation data of the reference process for automated construction whose matching index with the safety evaluation data of the automated construction in the auxiliary task link meets the requirements of the first target matching index.
[0005] Optionally, the first queue of safety evaluation data of the reference process for automated construction is formed by using at least one piece of safety evaluation data of the first reference process for automated construction in each piece of safety evaluation data of the reference process for automated construction; the safety evaluation data of the automated construction in the auxiliary task link is the safety evaluation data of the automated construction in each preset auxiliary task link, and the second queue of safety evaluation data of the reference process for automated construction is formed by using at least one piece of safety evaluation data of the second reference process for automated construction in each piece of safety evaluation data of the reference process for automated construction; Respectively determining the queue matching index between the first queue of safety evaluation data of the reference process for automated construction and each second queue of safety evaluation data of the reference process for automated construction, and determining the task link safety evaluation data matching index between the safety evaluation data of the automated construction in the target task link and the safety evaluation data of the automated construction in each auxiliary task link.
[0006] Optionally, before combining the safety evaluation data of each set reference process for automated construction and determining a first queue of safety evaluation data of the reference process for automated construction whose matching index with the safety evaluation data of the automated construction in the target task link meets the requirements of the first target matching index, it further includes: Automatically change the construction safety evaluation data of each of the auxiliary task segments into multiple sets of construction safety evaluation data for auxiliary processes with the same number, and determine the queues of construction safety evaluation data for auxiliary processes corresponding to the construction safety evaluation data of each of the auxiliary task segments; wherein, each piece of construction safety evaluation data for an auxiliary process in the queue of construction safety evaluation data for auxiliary processes is sorted according to the positioning label of the piece of construction safety evaluation data for an auxiliary process in the corresponding construction safety evaluation data of the auxiliary task segment. Based on the construction safety evaluation data for auxiliary processes with the same positioning label in each of the queues of construction safety evaluation data for auxiliary processes, determine at least one corresponding reference process construction safety evaluation data, and determine each preset reference process construction safety evaluation data.
[0007] Optionally, based on the construction safety evaluation data for auxiliary processes with the same positioning label in each of the queues of construction safety evaluation data for auxiliary processes, determining at least one corresponding reference process construction safety evaluation data, and determining each preset reference process construction safety evaluation data includes: Take the construction safety evaluation data for auxiliary processes with the same positioning label in each of the queues of construction safety evaluation data for auxiliary processes as a set of process construction safety feature description information, perform classification processing on each set of process construction safety feature description information, and determine at least one corresponding reference process construction safety evaluation data for each set of process construction safety feature description information; Determine each preset reference process construction safety evaluation data through at least one corresponding reference process construction safety evaluation data for each set of process construction safety feature description information.
[0008] Optionally, when there is a connection between the set of process construction safety feature description information and the positioning label of the construction safety evaluation data for the auxiliary process included in the set of process construction safety feature description information in the corresponding construction safety evaluation data of the auxiliary task segment, in combination with each set of preset reference process construction safety evaluation data, determine the first queue of reference process construction safety evaluation data whose matching index with the construction safety evaluation data of the target task segment meets the requirements of the first target matching index, including: Change the automated construction safety evaluation data of the target task link into the automated construction safety evaluation data of multiple target processes, and determine the queue of the automated construction safety evaluation data of the target processes for the automated construction safety evaluation data of the target task link; wherein, each piece of automated construction safety evaluation data of the target process in the queue of the automated construction safety evaluation data of the target process is sorted according to the positioning label of each piece of automated construction safety evaluation data of the target process in the automated construction safety evaluation data of the target task link. Among the at least one piece of reference automated construction safety evaluation data corresponding to the set of process construction safety feature description information, determine the first piece of reference automated construction safety evaluation data whose matching index with the automated construction safety evaluation data of the target process meets the requirements of the second target matching index; wherein, the positioning label of the automated construction safety evaluation data of the target process in the queue of the automated construction safety evaluation data of the target process is the same as the associated positioning label of the set of process construction safety feature description information. When each piece of automated construction safety evaluation data of the target process has a corresponding piece of the first piece of reference automated construction safety evaluation data, determine that the matching index between the queue of the first piece of reference automated construction safety evaluation data formed by each piece of the first piece of reference automated construction safety evaluation data and the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index, and determine the queue of the first piece of reference automated construction safety evaluation data corresponding to the automated construction safety evaluation data of the target task link.
[0009] Optionally, when each piece of preset reference automated construction safety evaluation data has construction safety heat content respectively, and the construction safety heat content is used to independently reflect each piece of reference automated construction safety evaluation data, determining the queue of the first piece of reference automated construction safety evaluation data corresponding to the automated construction safety evaluation data of the target task link includes: Determine the queue of the first piece of reference automated construction safety evaluation data corresponding to the automated construction safety evaluation data of the target task link through the construction safety heat content of each piece of the first piece of reference automated construction safety evaluation data.
[0010] Optionally, when there is a connection between the set of process construction safety feature description information and the positioning label of the auxiliary automated construction safety evaluation data included in the set of process construction safety feature description information in the automated construction safety evaluation data of the corresponding auxiliary task link, combining each piece of preset reference automated construction safety evaluation data to determine each queue of the second piece of reference automated construction safety evaluation data whose matching index with each piece of preset automated construction safety evaluation data of the auxiliary task link meets the requirements of the first target matching index, includes: Among at least one reference process automated construction safety evaluation data corresponding to the process construction safety feature description information set, determine second reference process automated construction safety evaluation data whose matching index with the auxiliary process automated construction safety evaluation data meets the requirements of the second target matching index; wherein, the positioning label of the auxiliary process automated construction safety evaluation data in the auxiliary process automated construction safety evaluation data queue is the same as the associated positioning label of the process construction safety feature description information set. When each of the auxiliary process automated construction safety evaluation data has a corresponding second reference process automated construction safety evaluation data, determine that the matching index between the second reference process automated construction safety evaluation data queue formed by each of the second reference process automated construction safety evaluation data and the auxiliary task link automated construction safety evaluation data meets the requirements of the first target matching index, and determine the second reference process automated construction safety evaluation data queue corresponding to the auxiliary task link automated construction safety evaluation data.
[0011] Optionally, when the number of the first reference process automated construction safety evaluation data in the first reference process automated construction safety evaluation data queue is the same as the number of the second reference process automated construction safety evaluation data in the second reference process automated construction safety evaluation data queue, respectively determine the queue matching index between the first reference process automated construction safety evaluation data queue vector and each of the second reference process automated construction safety evaluation data queues, including: Respectively determine the process construction safety status matching index between each first reference process automated construction safety evaluation data in the first reference process automated construction safety evaluation data queue and the second reference process automated construction safety evaluation data with the corresponding positioning label in the second reference process automated construction safety evaluation data queue. Perform an integration process on the determined process construction safety status matching index to determine the queue matching index between the first reference process automated construction safety evaluation data queue and the second reference process automated construction safety evaluation data queue.
[0012] Optionally, the method further includes: Normalize the target automated construction project according to the task link automated construction safety evaluation data matching index between the target task link automated construction safety evaluation data and each auxiliary task link automated construction safety evaluation data.
[0013] The present application also provides a cloud server, including a memory, a processor and a network module; wherein, the memory, the processor and the network module are electrically connected directly or indirectly; the processor reads a computer program from the memory and runs it to implement the above method.
[0014] The present application also provides a readable storage medium, on which a program is stored, and when the program is executed by a processor, the above method is implemented.
[0015] For the embodiments of the present application, in each preset automated construction safety evaluation data of the reference process, at least one first reference process automated construction safety evaluation data whose matching index with the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index is determined, the first reference task link automated construction safety evaluation data queue corresponding to the automated construction safety evaluation data of the target task link is determined, and at least one second reference process automated construction safety evaluation data whose matching index with the automated construction safety evaluation data of the auxiliary task link meets the requirements of the first target matching index is determined, and the second reference process construction safety status queue corresponding to each automated construction safety evaluation data of the auxiliary task link is determined. In this way, the automated construction safety evaluation data of the target task link and the automated construction safety evaluation data of each auxiliary task link can be transferred to the same index for difference analysis. Combining the matching index between each preset automated construction safety evaluation data of the reference process, the queue matching index between the first reference task link automated construction safety evaluation data queue and each second reference task link automated construction safety evaluation data queue is determined, so as to determine the task link automated construction safety evaluation data matching index between the automated construction safety evaluation data of the target task link and the automated construction safety evaluation data of each auxiliary task link, improving the accuracy and timeliness of determining the matching index between the automated construction safety evaluation data of the target task link and the automated construction safety evaluation data of each auxiliary task link. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The accompanying drawings herein are incorporated into the specification and constitute a part of this specification, showing embodiments consistent with the present application, and are used together with the specification to explain the principles of the present application.
[0017] Figure 1 is a flowchart of a safety data analysis method based on automated construction provided by an embodiment of the present application.
[0018] Figure 2 is a schematic hardware structure diagram of a cloud server provided by an embodiment of the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0019] Exemplary embodiments will be described in detail herein, and examples thereof are shown in the accompanying drawings. When the following description refers to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. On the contrary, they are merely examples of devices and methods consistent with some aspects of the present application as detailed in the appended claims.
[0020] Please refer to Figure 1 , the embodiment of the present application provides a schematic flowchart of a safety data analysis method based on automated construction, which is applied to a cloud server. Further, the method may specifically include the technical solutions described in the following steps.
[0021] Step101. Combine the automated construction safety evaluation data of each set reference process to determine a first reference process automated construction safety evaluation data queue whose matching index with the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index, and a second reference process automated construction safety evaluation data queue whose matching index with the automated construction safety evaluation data of the auxiliary task link meets the requirements of the first target matching index.
[0022] Among them, the first reference process automated construction safety evaluation data queue is formed by using at least one first reference process automated construction safety evaluation data in each reference process automated construction safety evaluation data; the automated construction safety evaluation data of the auxiliary task link is the automated construction safety evaluation data of each preset auxiliary task link, and the second reference process automated construction safety evaluation data queue is formed by using at least one second reference process automated construction safety evaluation data in each reference process automated construction safety evaluation data.
[0023] Step102. Respectively determine the queue matching index between the first reference process automated construction safety evaluation data queue and each second reference process automated construction safety evaluation data queue, and determine the task link automated construction safety evaluation data matching index between the automated construction safety evaluation data of the target task link and the automated construction safety evaluation data of each auxiliary task link.
[0024] In some preferred embodiments, before combining the automated construction safety evaluation data of each set reference process to determine a first reference process automated construction safety evaluation data queue whose matching index with the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index, it further includes: Automatically change the construction safety evaluation data of each of the auxiliary task links into multiple pieces of auxiliary process construction safety evaluation data with the same number, and determine the auxiliary process construction safety evaluation data queue corresponding to the construction safety evaluation data of each of the auxiliary task links; wherein, each piece of auxiliary process construction safety evaluation data in the auxiliary process construction safety evaluation data queue is sorted according to the positioning label of each piece of auxiliary process construction safety evaluation data in the corresponding auxiliary task link construction safety evaluation data. Based on the auxiliary process construction safety evaluation data with the same positioning label in each of the auxiliary process construction safety evaluation data queues, determine at least one corresponding reference process construction safety evaluation data, and determine each preset reference process construction safety evaluation data.
[0025] In some preferred embodiments, based on the auxiliary process construction safety evaluation data with the same positioning label in each of the auxiliary process construction safety evaluation data queues, determining at least one corresponding reference process construction safety evaluation data, and determining each preset reference process construction safety evaluation data includes: Take the auxiliary process construction safety evaluation data with the same positioning label in each of the auxiliary process construction safety evaluation data queues as a set of process construction safety feature description information, perform classification processing on each set of process construction safety feature description information, and determine at least one corresponding reference process construction safety evaluation data for each set of process construction safety feature description information; Determine each preset reference process construction safety evaluation data through at least one corresponding reference process construction safety evaluation data for each set of process construction safety feature description information.
[0026] In some preferred embodiments, when there is a connection between the set of process construction safety feature description information and the positioning label of the auxiliary process construction safety evaluation data included in the set of process construction safety feature description information in the corresponding auxiliary task link construction safety evaluation data, in combination with each set of preset reference process construction safety evaluation data, determine the first reference process construction safety evaluation data queue whose matching index with the target task link construction safety evaluation data meets the requirements of the first target matching index, including: Change the automated construction safety evaluation data of the target task link into the automated construction safety evaluation data of multiple target processes, and determine the automated construction safety evaluation data queue of the target processes for the automated construction safety evaluation data of the target task link; wherein, each automated construction safety evaluation data of the target process in the automated construction safety evaluation data queue of the target process is sorted according to the positioning label of each automated construction safety evaluation data of the target process in the automated construction safety evaluation data of the target task link. Determine the first reference automated construction safety evaluation data among at least one reference automated construction safety evaluation data corresponding to the set of process construction safety feature description information, whose matching index with the automated construction safety evaluation data of the target process meets the requirements of the second target matching index; wherein, the positioning label of the automated construction safety evaluation data of the target process in the automated construction safety evaluation data queue of the target process is the same as the associated positioning label of the set of process construction safety feature description information. When each automated construction safety evaluation data of the target process has a corresponding first reference automated construction safety evaluation data, determine that the matching index between the first reference automated construction safety evaluation data queue formed by each first reference automated construction safety evaluation data and the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index, and determine the first reference automated construction safety evaluation data queue corresponding to the automated construction safety evaluation data of the target task link.
[0027] In some preferred embodiments, when each preset reference automated construction safety evaluation data has construction safety heat content respectively, and the construction safety heat content is used to independently reflect each reference automated construction safety evaluation data, determining the first reference automated construction safety evaluation data queue corresponding to the automated construction safety evaluation data of the target task link includes: Determine the first reference automated construction safety evaluation data queue corresponding to the automated construction safety evaluation data of the target task link through the construction safety heat content of each first reference automated construction safety evaluation data.
[0028] In some preferred embodiments, when there is a connection between the process construction safety feature description information set and the positioning tags of the auxiliary process automation construction safety evaluation data included in the process construction safety feature description information set in the corresponding auxiliary task link automation construction safety evaluation data, in combination with each set reference process automation construction safety evaluation data, each second reference process automation construction safety evaluation data queue whose matching index with each preset auxiliary task link automation construction safety evaluation data meets the requirements of the first target matching index is determined, including: Among at least one reference process automation construction safety evaluation data corresponding to the process construction safety feature description information set, a second reference process automation construction safety evaluation data whose matching index with the auxiliary process automation construction safety evaluation data meets the requirements of the second target matching index is determined; wherein, the positioning tag of the auxiliary process automation construction safety evaluation data in the auxiliary process automation construction safety evaluation data queue is the same as the associated positioning tag of the process construction safety feature description information set; When each of the auxiliary process automation construction safety evaluation data has a corresponding second reference process automation construction safety evaluation data, it is determined that the matching index between the second reference process automation construction safety evaluation data queue formed by each second reference process automation construction safety evaluation data and the auxiliary task link automation construction safety evaluation data meets the requirements of the first target matching index, and the second reference process automation construction safety evaluation data queue corresponding to the auxiliary task link automation construction safety evaluation data is determined.
[0029] In some preferred embodiments, when the number of the first reference process automation construction safety evaluation data in the first reference process automation construction safety evaluation data queue is the same as the number of the second reference process automation construction safety evaluation data in the second reference process automation construction safety evaluation data queue, the queue matching indexes between the first reference process automation construction safety evaluation data queue vector and each second reference process automation construction safety evaluation data queue are respectively determined, including: The process construction safety status matching indexes between each first reference process automation construction safety evaluation data in the first reference process automation construction safety evaluation data queue and the second reference process automation construction safety evaluation data with the corresponding positioning tag in the second reference process automation construction safety evaluation data queue are respectively determined; The determined process construction safety status matching indexes are subjected to an overall processing to determine the queue matching index between the first reference process automation construction safety evaluation data queue and the second reference process automation construction safety evaluation data queue.
[0030] In some preferred embodiments, the method further includes: Normalizing the target automated construction project according to the task link automated construction safety evaluation data matching index between the target task link automated construction safety evaluation data and the automated construction safety evaluation data of each auxiliary task link.
[0031] For the embodiments of the present application, among the automated construction safety evaluation data of each preset reference process, at least one first reference process automated construction safety evaluation data whose matching index with the target task link automated construction safety evaluation data meets the requirements of the first target matching index is determined, and the first reference task link automated construction safety evaluation data queue corresponding to the target task link automated construction safety evaluation data is determined. And at least one second reference process automated construction safety evaluation data whose matching index with the automated construction safety evaluation data of the auxiliary task link meets the requirements of the first target matching index is determined, and the second reference process construction safety status queue corresponding to the automated construction safety evaluation data of each auxiliary task link is determined. In this way, the target task link automated construction safety evaluation data and the automated construction safety evaluation data of each auxiliary task link can be transferred to the same index for difference analysis. Combining the matching index between the automated construction safety evaluation data of each set reference process, the queue matching index between the first reference task link automated construction safety evaluation data queue and each second reference task link automated construction safety evaluation data queue is determined, thereby determining the task link automated construction safety evaluation data matching index between the target task link automated construction safety evaluation data and the automated construction safety evaluation data of each auxiliary task link, improving the accuracy and timeliness of determining the matching index between the target task link automated construction safety evaluation data and the automated construction safety evaluation data of each auxiliary task link.
[0032] On this basis, please refer to Figure 2 , the present application also provides a schematic hardware structure diagram of a cloud server 20, specifically including a memory 21, a processor 22, a network module 23, and an information processing device for online office. The memory 21, the processor 22, and the network module 23 are directly or indirectly electrically connected to achieve data transmission or interaction. For example, these components can be electrically connected to each other through one or more communication buses or signal lines. The memory 21 stores an information processing device for online office. The information processing device for online office includes at least one software function module that can be stored in the memory 21 in the form of software or firmware. The processor 22 runs the software program and modules stored in the memory 21.
[0033] Among them, the memory 21 can be, but is not limited to, a Random Access Memory (RAM), a Read Only Memory (ROM), a Programmable Read-Only Memory (PROM), an Erasable Programmable Read-Only Memory (EPROM), an Electric Erasable Programmable Read-Only Memory (EEPROM), etc. Among them, the memory 21 is used to store a program, and after receiving an execution instruction, the processor 22 executes the program.
[0034] The processor 22 may be an integrated circuit chip with data processing capabilities. The above-mentioned processor 22 may be a general-purpose processor, including a Central Processing Unit (CPU), a Network Processor (NP), etc. It can implement or execute the various methods, steps, and logic block diagrams disclosed in the embodiments of the present application. The general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc.
[0035] The network module 23 is used to establish a communication connection between a cloud server 20 and other communication terminal devices through a network, and implement the sending and receiving operations of network signals and data. The above-mentioned network signals may include wireless signals or wired signals.
[0036] Furthermore, a readable storage medium is also provided, on which a program is stored, and when the program is executed by a processor, the above-mentioned method is implemented.
[0037] It should be understood that the present application is not limited to the exact structure already described and shown in the drawings, and various modifications and changes can be made without departing from its scope. The scope of the present application is only limited by the appended claims.
[0038] The present application may be a system, a method, and / or a computer program product. The computer program product may include a computer-readable storage medium, on which computer-readable program instructions for causing a processor to implement various aspects of the present application are loaded.
[0039] The embodiments of the present application have been described above. The above description is exemplary and not exhaustive, and is also not limited to the disclosed embodiments. Many modifications and variations are obvious to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, practical applications, or improvements to technologies in the market, or to enable other ordinary skill in the art to understand the embodiments disclosed herein. The scope of the present application is defined by the appended claims.
Claims
1. A safety data analysis method based on automated construction, characterized in that: Applied to a cloud server, the method includes: combining the automated construction safety evaluation data of each set reference process to determine a first reference process automated construction safety evaluation data queue whose matching index with the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index, and a second reference process automated construction safety evaluation data queue whose matching index with the automated construction safety evaluation data of the auxiliary task link meets the requirements of the first target matching index.
2. The method according to claim 1, characterized in that: The first reference process automated construction safety evaluation data queue is formed by using at least one first reference process automated construction safety evaluation data in each reference process automated construction safety evaluation data; the automated construction safety evaluation data of the auxiliary task link is the automated construction safety evaluation data of each preset auxiliary task link, and the second reference process automated construction safety evaluation data queue is formed by using at least one second reference process automated construction safety evaluation data in each reference process automated construction safety evaluation data; Respectively determine the queue matching index between the first reference process automated construction safety evaluation data queue and each of the second reference process automated construction safety evaluation data queues, and determine the task link automated construction safety evaluation data matching index between the automated construction safety evaluation data of the target task link and each of the automated construction safety evaluation data of the auxiliary task link.
3. The method according to claim 2, wherein: Before combining the automated construction safety evaluation data of each set reference process to determine a first reference process automated construction safety evaluation data queue whose matching index with the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index, it further includes: Changing each of the automated construction safety evaluation data of the auxiliary task link into multiple auxiliary process automated construction safety evaluation data with the same number, and determining the auxiliary process automated construction safety evaluation data queue corresponding to each of the automated construction safety evaluation data of the auxiliary task link; wherein, each auxiliary process automated construction safety evaluation data in the auxiliary process automated construction safety evaluation data queue is sorted according to the positioning label in the corresponding automated construction safety evaluation data of the auxiliary task link. Based on the auxiliary process automated construction safety evaluation data with the same positioning label in each of the auxiliary process automated construction safety evaluation data queues, determine the corresponding at least one reference process automated construction safety evaluation data, and determine each of the preset reference process automated construction safety evaluation data.
4. The method according to claim 3, wherein: Based on the auxiliary process automated construction safety evaluation data with the same positioning label in each of the auxiliary process automated construction safety evaluation data queues, determine the corresponding at least one reference process automated construction safety evaluation data, and determine each of the preset reference process automated construction safety evaluation data, including: Automatically process each piece of auxiliary process automated construction safety evaluation data in the queue. The auxiliary process automated construction safety evaluation data under the same positioning tag is used as a set of construction safety feature description information for a process. Classify each set of construction safety feature description information for a process to determine at least one reference process automated construction safety evaluation data corresponding to each set of construction safety feature description information for a process; Determine each preset reference process automated construction safety evaluation data through at least one reference process automated construction safety evaluation data corresponding to each set of construction safety feature description information for a process.
5. The method according to claim 4, characterized in that: When there is a connection between the positioning tag of the auxiliary process automated construction safety evaluation data included in the set of construction safety feature description information for a process and the set of construction safety feature description information for a process in the automated construction safety evaluation data of the corresponding auxiliary task link, combine each preset reference process automated construction safety evaluation data to determine a first reference process automated construction safety evaluation data queue whose matching index with the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index, including: Change the automated construction safety evaluation data of the target task link into multiple target process automated construction safety evaluation data, and determine the target process automated construction safety evaluation data queue of the automated construction safety evaluation data of the target task link; among them, each target process automated construction safety evaluation data in the target process automated construction safety evaluation data queue is sorted according to the positioning tag of each target process automated construction safety evaluation data in the automated construction safety evaluation data of the target task link; Determine the first reference process automated construction safety evaluation data whose matching index with the target process automated construction safety evaluation data meets the requirements of the second target matching index among at least one reference process automated construction safety evaluation data corresponding to the set of construction safety feature description information for a process; among them, the positioning tag of the target process automated construction safety evaluation data in the target process automated construction safety evaluation data queue is the same as the associated positioning tag of the set of construction safety feature description information for a process; When each target process automated construction safety evaluation data has a corresponding first reference process automated construction safety evaluation data, determine that the matching index between the first reference process automated construction safety evaluation data queue formed by each first reference process automated construction safety evaluation data and the automated construction safety evaluation data of the target task link meets the requirements of the first target matching index, and determine the first reference process automated construction safety evaluation data queue corresponding to the automated construction safety evaluation data of the target task link; When each piece of automated construction safety evaluation data for a preset reference process has construction safety heat content, and the construction safety heat content is used to independently reflect the automated construction safety evaluation data for each reference process, determine the first reference process automated construction safety evaluation data queue corresponding to the automated construction safety evaluation data for the target task link, including: Determine the first reference process automated construction safety evaluation data queue corresponding to the automated construction safety evaluation data for the target task link through the construction safety heat content of each piece of the first reference process automated construction safety evaluation data.
6. The method according to claim 4, wherein: When there is a connection between the process construction safety feature description information set and the positioning label of the auxiliary process automated construction safety evaluation data included in the process construction safety feature description information set in the automated construction safety evaluation data for the corresponding auxiliary task link, combine each piece of preset reference process automated construction safety evaluation data to determine each second reference process automated construction safety evaluation data queue whose matching index with each preset auxiliary task link automated construction safety evaluation data respectively meets the requirements of the first target matching index, including: Among at least one piece of reference process automated construction safety evaluation data corresponding to the process construction safety feature description information set, determine the second reference process automated construction safety evaluation data whose matching index with the auxiliary process automated construction safety evaluation data meets the requirements of the second target matching index; wherein, the positioning label of the auxiliary process automated construction safety evaluation data in the auxiliary process automated construction safety evaluation data queue is the same as the associated positioning label of the process construction safety feature description information set. When each piece of the auxiliary process automated construction safety evaluation data has a corresponding piece of the second reference process automated construction safety evaluation data, determine that the matching index between the second reference process automated construction safety evaluation data queue formed by each piece of the second reference process automated construction safety evaluation data and the automated construction safety evaluation data for the auxiliary task link meets the requirements of the first target matching index, and determine the second reference process automated construction safety evaluation data queue corresponding to the automated construction safety evaluation data for the auxiliary task link.
7. The method according to claim 2, characterized in that: When the number of pieces of the first reference process automated construction safety evaluation data in the first reference process automated construction safety evaluation data queue is the same as the number of pieces of the second reference process automated construction safety evaluation data in the second reference process automated construction safety evaluation data queue, respectively determine the queue matching index between the first reference process automated construction safety evaluation data queue vector and each second reference process automated construction safety evaluation data queue, including: Respectively determine the process construction safety status matching index between each piece of the first reference process automated construction safety evaluation data in the first reference process automated construction safety evaluation data queue and the second reference process automated construction safety evaluation data with the corresponding positioning label in the second reference process automated construction safety evaluation data queue. Integrate the determined process construction safety status matching index to determine the queue matching index between the first reference process automated construction safety evaluation data queue and the second reference process automated construction safety evaluation data queue.
8. The method according to claim 2, characterized in that: The method further includes: Normalize the target automated construction project according to the task link automated construction safety evaluation data matching index between the target task link automated construction safety evaluation data and the automated construction safety evaluation data of each auxiliary task link.
9. A cloud server, characterized in that, It includes a memory, a processor, and a network module; wherein, the memory, the processor, and the network module are directly or indirectly electrically connected; the processor realizes the method according to any one of claims 1-8 by reading and running a computer program from the memory.
10. A readable storage medium, characterized in that a program is stored thereon, and when the program is executed by a processor, the method according to any one of claims 1-8 is realized.