Intelligent determination method and device for engineering design parameters

By judging the correlation between engineering projects and determining the types of design parameters, the problem of cumbersome design parameter determination in power engineering is solved, realizing intelligent and efficient parameter determination and improving the execution efficiency of power engineering.

CN115545656BActive Publication Date: 2026-04-10SHENZHEN COMTOP INFORMATION TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN COMTOP INFORMATION TECH
Filing Date
2022-10-14
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In existing technologies, the process of determining the design parameters for power engineering is cumbersome, resulting in a low determination rate and making it difficult to advance the execution process of power engineering.

Method used

By judging the degree of correlation between the target project and the preset project, the required design parameter types for the target project are determined, and the design parameters, including the project transportation type and the project coefficient type, are intelligently determined based on the project information.

Benefits of technology

It has enabled the intelligent determination of engineering design parameters, reduced cumbersome procedures, improved determination speed and reliability, and smoothly promoted the execution process of power engineering.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an intelligent determination method and device for engineering standard setting parameters, and the method comprises the following steps: determining whether the engineering correlation degree between a target engineering and a preset engineering is greater than or equal to a preset correlation degree threshold according to the engineering information of the target engineering; when the determination result is yes, determining the type of the standard setting parameters required by the target engineering according to the engineering information of the target engineering, and determining the standard setting parameters of the target engineering according to the type of the standard setting parameters required by the target engineering. It can be seen that the application can determine the type of the standard setting parameters corresponding to the target engineering according to the engineering information of the target engineering, thereby determining the standard setting parameters of the target engineering, realizing the intelligent determination process of the engineering standard setting parameters, and without manually analyzing the data of the power engineering to determine the standard setting parameters one by one, the cumbersome process of determining the standard setting parameters can be reduced, and the determination rate of the standard setting parameters can be improved, thereby smoothly promoting the execution process of the power engineering.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electric power engineering, and in particular to an intelligent determination method and device for engineering design parameters. BACKGROUND

[0002] With the rapid development of electric power infrastructure construction, electric power engineering is becoming increasingly important. The emergence of electric power engineering can meet the service needs of electric power generation, transmission, transformation, distribution, and delivery infrastructure construction, making electric power infrastructure construction match the growing demand for electricity.

[0003] Currently, the determination of design parameters is an important link to ensure the smooth progress of electric power engineering. However, there are many types of design parameters, and manual analysis of various data of electric power engineering is required to determine the design parameters of electric power engineering one by one, making the determination process of design parameters too complicated to improve the determination rate of design parameters, thereby making it difficult to promote the execution process of electric power engineering. Therefore, it is particularly important to provide a method for improving the determination rate of design parameters of electric power engineering. SUMMARY

[0004] The technical problem to be solved by the present application is to provide an intelligent determination method and device for engineering design parameters, which can reduce the cumbersome process of determining design parameters, thereby improving the determination rate of design parameters, and thus smoothly promoting the execution process of electric power engineering.

[0005] To solve the above technical problems, the present application discloses an intelligent determination method for engineering design parameters, which comprises:

[0006] determining the engineering information of a target engineering to be determined; the engineering information of the target engineering includes the engineering action type of the target engineering and the engineering action object of the target engineering;

[0007] determining whether the engineering correlation degree between the target engineering and a preset engineering is greater than or equal to a preset correlation degree threshold according to the engineering information of the target engineering; the preset engineering includes at least one of a power distribution station engineering, an overhead line engineering, a cable line engineering, and a communication automation engineering;

[0008] when the determination result is yes, determining the type of design parameters required by the target engineering according to the engineering information of the target engineering, and determining the design parameters of the target engineering according to the type of design parameters required by the target engineering; the type of design parameters required by the target engineering includes engineering transportation type and / or engineering coefficient type, and the design parameters include engineering transportation parameters and / or engineering coefficient parameters.

[0009] As an optional implementation, in the first aspect of the present application, the step of determining the type of the determined design parameter required by the target project according to the project information of the target project comprises:

[0010] determining a target object required for performing the target project according to the type of the project action of the target project and the project action object; the type of the project action comprises a project installation type and / or a project construction type, the project action object comprises at least one of a power distribution station, an overhead line, a cable line and a communication transmission line, and the target object comprises at least one of a target performer, a target material and a target machine;

[0011] when the target object comprises the target material and / or the target machine, determining object information of the target object, and determining a transportation correlation degree of the target object according to the object information of the target object; the object information of the target object comprises at least one of quantity information, type information and acquisition location information of the target object;

[0012] judging whether the transportation correlation degree of the target object is greater than or equal to a preset correlation degree threshold;

[0013] when it is judged that the transportation correlation degree is greater than or equal to the preset correlation degree threshold, determining that the type of the determined design parameter required by the target project comprises a project transportation type.

[0014] As an optional implementation, in the first aspect of the present application, the step of determining the type of the determined design parameter required by the target project according to the project information of the target project comprises:

[0015] determining an execution scheduling condition of the target project, and determining a project execution condition of the target project according to the execution scheduling condition of the target project; the project execution condition comprises at least one of a project execution time period, a project execution time length and a project execution weather condition;

[0016] judging whether the project execution condition is a preset project execution condition, and if not, determining that the type of the determined design parameter required by the target project comprises a project coefficient type; the preset project execution condition comprises at least one of a preset project execution time period, a preset project execution time length and a preset project execution weather condition; or,

[0017] determining a specific operation content of the type of the project action and an object parameter of the project action object, and determining a project execution level of the target project according to the specific operation content of the type of the project action and the object parameter of the project action object; the object parameter of the project action object comprises a physical parameter and / or a chemical parameter;

[0018] determining whether the engineering execution level of the target engineering is greater than or equal to a preset level threshold, and if yes, determining that the determined parameter type required by the target engineering includes the engineering coefficient type.

[0019] As an optional implementation, in the first aspect of the present application, the determination of the engineering parameter of the target engineering according to the determined parameter type required by the target engineering comprises:

[0020] When the determined parameter type required by the target engineering includes the engineering transportation type, determining the transportation type required by the target object according to the object information of the target object; the transportation type required by the target object includes at least one of a labor transportation type and / or a vehicle transportation type, and the vehicle transportation type includes at least one of a land travel transportation type, a water travel transportation type and an air flight transportation type.

[0021] According to the transportation type required by the target object, analyzing the transportation situation of the target object under the transportation type; the transportation situation of the target object under the transportation type includes at least one of a transportation bump situation, an object damage situation, a corresponding vehicle wear situation, a transportation traffic situation and an environmental impact situation.

[0022] According to the transportation situation of the target object under the transportation type, determining the engineering transportation parameter of the target engineering; the engineering transportation parameter includes at least one of a labor transportation proportion, a vehicle transportation proportion, a labor transportation distance, a vehicle transportation distance, a labor carrying amount, a vehicle loading and unloading amount and a transportation rate.

[0023] As an optional implementation, in the first aspect of the present application, the analysis of the transportation situation of the target object under the transportation type according to the transportation type required by the target object comprises:

[0024] When the transportation type required by the target object includes the vehicle transportation type, determining the target type information corresponding to the vehicle transportation type; the target type information includes at least one of a terrain type information, a water body type information and a weather type information.

[0025] Based on the target type information corresponding to the transportation type of the vehicle, the basic parameters corresponding to the target type information are determined; the basic parameters corresponding to the target type information include at least one of the following: soil type corresponding to the terrain type information, soil proportion corresponding to the terrain type information, water quality corresponding to the water body type information, biological activity corresponding to the water body type information, precipitation corresponding to the meteorological type information, condensation corresponding to the meteorological type information, airflow corresponding to the meteorological type information, photovoltaic generation corresponding to the meteorological type information, and visibility corresponding to the meteorological type information.

[0026] Based on the basic parameters corresponding to the target type information, analyze the transportation status of the target object under the transportation type.

[0027] As an optional implementation, in the first aspect of the present invention, before analyzing the transportation status of the target object under the transportation type based on the basic parameters corresponding to the target type information, the method further includes:

[0028] Determine whether the target object has corresponding packaging materials;

[0029] When the judgment result is yes, the packaging parameters of the packaging material are determined; the packaging parameters of the packaging material include at least one of the following: packaging material type, packaging density, and packaging protection.

[0030] The step of analyzing the transportation status of the target object under the transportation type based on the basic parameters corresponding to the target type information includes:

[0031] Based on the packaging parameters of the packaging material and the basic parameters corresponding to the target type information, the transportation situation of the target object under the transportation type is analyzed.

[0032] As an optional implementation, in the first aspect of the present invention, the method further includes:

[0033] When the required parameter types for the target project include the project coefficient type, the project execution difference of the target project is determined based on the project execution status and the preset project execution status, and the project coefficient parameters of the target project are determined based on the project execution difference; the project coefficient parameters of the target project include the first worker labor coefficient parameter and / or the first machinery coefficient parameter of the target project; or,

[0034] Based on the execution level of the target project and the preset level threshold, the execution level difference of the target project is determined, and based on the execution level difference of the target project, the engineering coefficient parameters of the target project are determined; the engineering coefficient parameters of the target project include at least one of the second worker labor coefficient parameter, the second machinery coefficient parameter, and the material coefficient parameter of the target project.

[0035] A second aspect of the present invention discloses an intelligent device for determining engineering design parameters, the device comprising:

[0036] The first determining module is used to determine the engineering information of the target project to be determined; the engineering information of the target project includes the engineering function type of the target project and the engineering function object of the target project;

[0037] The judgment module is used to determine, based on the project information of the target project, whether the project correlation degree between the target project and the preset project is greater than or equal to a preset correlation degree threshold; the preset project includes at least one of substation project, overhead line project, cable line project and communication automation project;

[0038] The second determining module is used to determine the type of design parameters required for the target project based on the project information of the target project when the determination result of the determining module is yes; the type of design parameters required for the target project includes engineering transportation type and / or engineering coefficient type;

[0039] The third determining module is used to determine the typical design parameters of the target project according to the type of typical design parameters required for the target project; the typical design parameters include engineering transportation parameters and / or engineering coefficient parameters.

[0040] As an optional implementation, in a second aspect of the present invention, the second determining module determines the type of design parameters required for the target project based on the project information of the target project in the following specific manner:

[0041] Based on the engineering function type and the engineering function object of the target project, determine the target object required to execute the target project; the engineering function type includes engineering installation type and / or engineering construction type, the engineering function object includes at least one of substation, overhead line, cable line and communication transmission line, and the target object includes at least one of target personnel, target materials and target machinery;

[0042] When the target object comprises the target material and / or the target machine, object information of the target object is determined, and a transportation correlation degree of the target object is determined according to the object information of the target object; the object information of the target object comprises at least one of quantity information, type information and acquisition location information of the target object;

[0043] It is judged whether the transportation correlation degree of the target object is greater than or equal to a preset correlation degree threshold value;

[0044] When it is judged that the transportation correlation degree is greater than or equal to the preset correlation degree threshold value, it is determined that the determined parameter type required by the target project comprises a project transportation type.

[0045] As an optional implementation, in the second aspect of the present application, the second determining module determines the determined parameter type required by the target project according to the project information of the target project in the following manner:

[0046] The execution scheduling situation of the target project is determined, and the project execution situation of the target project is determined according to the execution scheduling situation of the target project; the project execution situation comprises at least one of a project execution time period, a project execution time length and a project execution weather condition;

[0047] It is judged whether the project execution situation is a preset project execution situation, and if not, it is determined that the determined parameter type required by the target project comprises a project coefficient type; the preset project execution situation comprises at least one of a preset project execution time period, a preset project execution time length and a preset project execution weather condition; or,

[0048] The specific operation content of the project action type and the object parameter of the project action object are determined, and the project execution level of the target project is determined according to the specific operation content of the project action type and the object parameter of the project action object; the object parameter of the project action object comprises a physical parameter and / or a chemical parameter;

[0049] It is judged whether the project execution level of the target project is greater than or equal to a preset level threshold value, and if yes, it is determined that the determined parameter type required by the target project comprises a project coefficient type.

[0050] As an optional implementation, in the second aspect of the present application, the third determining module comprises:

[0051] The determining sub-module is configured to determine the transportation type required by the target object according to the object information of the target object when the determined design parameter type required by the target project includes the engineering transportation type; the transportation type required by the target object includes the labor transportation type and / or the vehicle transportation type, and the vehicle transportation type includes at least one of the land travel transportation type, the water travel transportation type and the air flight transportation type;

[0052] The analyzing sub-module is configured to analyze the transportation condition of the target object under the transportation type according to the transportation type required by the target object; the transportation condition of the target object under the transportation type includes at least one of the transportation bump condition, the object damage condition, the corresponding vehicle wear condition, the transportation traffic condition and the environmental impact condition.

[0053] The determining sub-module is further configured to determine the engineering transportation parameter of the target project according to the transportation condition of the target object under the transportation type; the engineering transportation parameter includes at least one of the labor transportation proportion, the vehicle transportation proportion, the labor transportation distance, the vehicle transportation distance, the labor carrying amount, the vehicle loading and unloading amount and the transportation rate.

[0054] As an optional implementation, in the second aspect of the present application, the manner in which the analyzing sub-module analyzes the transportation condition of the target object under the transportation type according to the transportation type required by the target object is specifically as follows:

[0055] When the transportation type required by the target object includes the vehicle transportation type, the target type information corresponding to the vehicle transportation type is determined; the target type information includes at least one of the terrain type information, the water body type information and the weather type information.

[0056] According to the target type information corresponding to the vehicle transportation type, the basic parameter corresponding to the target type information is determined; the basic parameter corresponding to the target type information includes at least one of the soil type corresponding to the terrain type information, the soil proportion corresponding to the terrain type information, the water quality condition corresponding to the water body type information, the biological activity condition corresponding to the water body type information, the precipitation condition corresponding to the weather type information, the condensation condition corresponding to the weather type information, the airflow condition corresponding to the weather type information, the photoelectric generation condition corresponding to the weather type information and the visibility.

[0057] According to the basic parameter corresponding to the target type information, the transportation condition of the target object under the transportation type is analyzed.

[0058] As an optional implementation, in the second aspect of the present application, the third determining module further comprises:

[0059] a judging sub-module, configured to judge whether the target object exists corresponding packaging material before the analyzing sub-module analyzes the transportation situation of the target object under the transportation type according to the basic parameter corresponding to the target type information;

[0060] The determining sub-module is further configured to determine the packaging parameter of the packaging material when the judging sub-module judges that the answer is yes; the packaging parameter of the packaging material comprises at least one of packaging material type, packaging density and packaging protection situation.

[0061] The analyzing sub-module analyzes the transportation situation of the target object under the transportation type according to the basic parameter corresponding to the target type information in the following manner:

[0062] According to the packaging parameter of the packaging material and the basic parameter corresponding to the target type information, the transportation situation of the target object under the transportation type is analyzed.

[0063] As an optional implementation, in the second aspect of the present application, the determining sub-module is further configured to:

[0064] When the type of the engineering design parameter required to be determined by the target engineering comprises the engineering coefficient type, the engineering execution difference situation of the target engineering is determined according to the engineering execution situation of the target engineering and the preset engineering execution situation, and the engineering coefficient parameter of the target engineering is determined according to the engineering execution difference situation of the target engineering; the engineering coefficient parameter of the target engineering comprises at least one of the first worker labor coefficient parameter and / or the first mechanical coefficient parameter of the target engineering; or,

[0065] The execution level difference situation of the target engineering is determined according to the engineering execution level of the target engineering and the preset level threshold, and the engineering coefficient parameter of the target engineering is determined according to the execution level difference situation of the target engineering; the engineering coefficient parameter of the target engineering comprises at least one of the second worker labor coefficient parameter, the second mechanical coefficient parameter and the material coefficient parameter of the target engineering.

[0066] The third aspect of the present application discloses another intelligent engineering design parameter determination device, which comprises:

[0067] A memory storing executable program codes;

[0068] A processor coupled with the memory;

[0069] The processor invokes the executable program code stored in the memory to execute the intelligent determination method of engineering design parameter disclosed in the first aspect of the application.

[0070] The fourth aspect of the application discloses a computer storage medium, which stores computer instructions, and the computer instructions are used to execute the intelligent determination method of engineering design parameter disclosed in the first aspect of the application when being invoked.

[0071] Compared with the prior art, the embodiment of the application has the following beneficial effects:

[0072] In the embodiment of the application, whether the engineering correlation degree between the target engineering and the preset engineering is greater than or equal to the preset correlation degree threshold is determined according to the determined engineering information of the target engineering; when the determination result is yes, the type of the design parameter required to be determined by the target engineering is determined according to the engineering information of the target engineering, and the design parameter of the target engineering is determined according to the type of the design parameter required to be determined by the target engineering. It can be seen that the type of the design parameter corresponding to the target engineering can be determined according to the engineering information of the target engineering by implementing the application, so as to determine the design parameter of the target engineering, realize the intelligent determination process of the engineering design parameter, and the design parameter can be determined one by one without manual analysis of the data of the power engineering, so that the cumbersome process of determining the design parameter can be reduced, and the determination rate of the design parameter can be improved, thereby smoothly promoting the execution process of the power engineering. BRIEF DESCRIPTION OF DRAWINGS

[0073] In order to more clearly illustrate the technical solutions in the embodiments of the application, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings in the following description are only some embodiments of the application, and other drawings can be obtained by those skilled in the art without creative labor.

[0074] Figure 1 is a flowchart of an intelligent determination method of engineering design parameter disclosed by the embodiment of the application;

[0075] Figure 2 is a flowchart of another intelligent determination method of engineering design parameter disclosed by the embodiment of the application;

[0076] Figure 3 is a structural diagram of an intelligent determination device of engineering design parameter disclosed by the embodiment of the application;

[0077] Figure 4 is a structural diagram of another intelligent determination device of engineering design parameter disclosed by the embodiment of the application;

[0078] Figure 5is a structural schematic view of another kind of intelligent determination device for engineering parameter setting parameter disclosed by the embodiment of the application. DETAILED DESCRIPTION

[0079] In order for those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0080] The terms "first", "second", and the like in the specification and claims of the present application and the above-mentioned drawings are used to distinguish different objects, and are not used to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product, or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product, or end.

[0081] In this document, the term "embodiment" means that the specific features, structures, or characteristics described in connection with the embodiment can be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily mean the same embodiment is referred to, nor does it mean that independent or alternative embodiments are mutually exclusive or alternative to each other. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0082] The present application discloses an intelligent determination method and device for engineering parameter setting parameter, which can reduce the cumbersome process of parameter determination, and thus can improve the determination rate of parameter, thereby smoothly promoting the execution process of power engineering. The following will be described in detail respectively.

[0083] Embodiment one

[0084] Please refer to Figure 1 , Figure 1 is a flowchart of an intelligent determination method for engineering parameter setting parameter disclosed by the embodiment of the present application. Among them, Figure 1The intelligent determination method of engineering design parameters described can be applied to determine the engineering design parameters of various types of power engineering, such as power distribution station engineering, overhead line engineering, cable line engineering, and communication automation engineering, and the like. The embodiment of the present application does not limit the type of power engineering that needs to determine the engineering design parameters. Optionally, the method can be implemented by an engineering design parameter determination system, which can be integrated in an engineering design parameter determination device, or a local server or a cloud server for processing the engineering design parameter determination process, and the like, which is not limited by the embodiment of the present application.

[0085] As shown in Figure 1 The intelligent determination method of engineering design parameters can include the following operations:

[0086] 101. Determine the engineering information of the target engineering to be determined.

[0087] In the embodiment of the present application, optionally, the engineering information of the target engineering includes the engineering action type of the target engineering and the engineering action object of the target engineering. Further optionally, the engineering action type includes at least one of the engineering building type, the engineering installation type, the engineering reconstruction type, and the engineering demolition type; and the engineering action object includes at least one of the power distribution station, the overhead line, the cable line, and the communication transmission line.

[0088] 102. Determine whether the engineering correlation degree between the target engineering and the preset engineering is greater than or equal to the preset correlation degree threshold according to the engineering information of the target engineering.

[0089] In the embodiment of the present application, optionally, the preset engineering includes at least one of the power distribution station engineering, the overhead line engineering, the cable line engineering, and the communication automation engineering.

[0090] Further, as an optional implementation, according to the engineering information of the target engineering, determining whether the engineering correlation degree between the target engineering and the preset engineering is greater than or equal to the preset correlation degree threshold includes:

[0091] Determine the engineering action type of the preset engineering and the engineering action object of the preset engineering;

[0092] According to the engineering action type of the target engineering, the engineering action object of the target engineering, the engineering action type of the preset engineering, and the engineering action object of the preset engineering, determine the engineering similarity between the target engineering and the preset engineering, and determine whether the engineering similarity is greater than or equal to the preset similarity threshold;

[0093] When the determination result is yes, it is determined that the engineering correlation degree between the target engineering and the preset engineering is greater than or equal to the preset correlation degree threshold;

[0094] When the determination result is no, it is determined that the engineering correlation degree between the target engineering and the preset engineering is less than a preset correlation degree threshold.

[0095] 103.When the determination result is yes, according to the engineering information of the target engineering, a type of the design parameter required to be determined by the target engineering is determined, and according to the type of the design parameter required to be determined by the target engineering, the design parameter of the target engineering is determined.

[0096] In the embodiment of the present application, optionally, the type of the design parameter required to be determined by the target engineering includes an engineering transportation type and / or an engineering coefficient type. Further optionally, the design parameter includes an engineering transportation parameter and / or an engineering coefficient parameter, wherein the engineering coefficient parameter can be a man-machine coefficient parameter matched with a power distribution building, an overhead building, a cable building, a communication building, power distribution installation, overhead installation, cable installation, communication installation, etc.

[0097] It can be seen that by implementing the embodiment of the present application, the type of the design parameter corresponding to the target engineering can be determined according to the engineering information of the target engineering, so as to determine the design parameter of the target engineering, and the intelligent determination process of the engineering design parameter is realized, without manually analyzing the data of the power engineering to determine the design parameter one by one. Not only the cumbersome process of determining the design parameter is reduced, the determination rate of the design parameter is improved, but also the reliability and accuracy of the determination of the design parameter are improved, so as to smoothly promote the execution process of the power engineering.

[0098] In an optional embodiment, the determination of the type of the design parameter required to be determined by the target engineering according to the engineering information of the target engineering in the step 103 includes:

[0099] The execution scheduling of the target engineering is determined, and the engineering execution condition of the target engineering is determined according to the execution scheduling of the target engineering.

[0100] It is determined whether the engineering execution condition is a preset engineering execution condition, and if not, it is determined that the type of the design parameter required to be determined by the target engineering includes an engineering coefficient type.

[0101] In the optional embodiment, optionally, the engineering execution condition comprises at least one of an engineering execution time period, an engineering execution duration, an engineering execution weather condition, and an engineering execution region. Further optionally, the preset engineering execution condition comprises at least one of a preset engineering execution time period, a preset engineering execution duration, a preset engineering execution weather condition, and a preset engineering execution region. For example, if the preset engineering execution duration is 8 hours per day and the engineering execution duration of the target project is 12 hours per day, it can be determined that the determined parameter type required by the target project includes the engineering coefficient type, i.e., it can be determined that the determined parameter type required by the target project includes the man-machine coefficient matched with one or more of the power distribution building, the overhead building, the cable building, the communication building, the power distribution installation, the overhead installation, the cable installation, the communication installation, etc. Further, when it is determined that the engineering execution condition is not the preset engineering execution condition, it can be determined that the determined parameter type required by the target project does not include the engineering coefficient type.

[0102] It can be seen that the optional embodiment can determine the determined parameter type required by the target project according to the engineering information of the target project, which is beneficial to improve the reliability and accuracy of the determined parameter type, and further beneficial to subsequently quickly and accurately determine the determined parameter of the target project under the engineering coefficient type, so as to better promote the execution process of the power engineering.

[0103] In another optional embodiment, the step 103 of determining the determined parameter type required by the target project according to the engineering information of the target project comprises:

[0104] determining the engineering action type and the object parameter of the engineering action object, and determining the engineering execution level of the target project according to the specific operation content of the engineering action type and the object parameter of the engineering action object;

[0105] determining whether the engineering execution level of the target project is greater than or equal to a preset level threshold, and if yes, determining that the determined parameter type required by the target project includes the engineering coefficient type.

[0106] In the optional embodiment, optionally, the object parameter of the engineering action object comprises a physical parameter and / or a chemical parameter. For example, when technical transformation of an overhead line is required, the voltage parameter of the overhead line is determined, and then the engineering execution level of the target project is determined according to the specific content of the transformation operation of the overhead line and the specific voltage parameter (e.g., the tower of the overhead line with a voltage parameter of 220 kV is transformed). The engineering execution level can be understood as a determination basis of the engineering quantity and the engineering execution difficulty of the target project.

[0107] It can be seen that the optional embodiment can flexibly determine the type of the determined design parameter required by the target project according to the engineering information of the target project, realizes the intelligent determination mode of the type of the determined design parameter, so that the reliability and accuracy of the determined type of the determined design parameter can be further improved, and then the engineering coefficient type of the target project can be further determined according to the type of the determined design parameter, thereby better promoting the execution process of the electric power project.

[0108] Embodiment two

[0109] Please refer to Figure 2 , Figure 2 is a flowchart of an engineering determined design parameter intelligent determination method disclosed by the embodiment of the present application. Wherein, Figure 2 The engineering determined design parameter intelligent determination method described can be applied to determine the determined design parameters of various types of electric power projects, such as power distribution station projects, overhead line projects, cable line projects and communication automation projects, etc. The embodiment of the present application does not limit the type of electric power project which needs to determine the determined design parameter. Optionally, the method can be realized by a determined design parameter determination system, which can be integrated in a determined design parameter determination device, or a local server or a cloud server for processing the determined design parameter determination process, etc. The embodiment of the present application does not limit.

[0110] As Figure 2 shown, the engineering determined design parameter intelligent determination method can include the following operations:

[0111] 201, determine the engineering information of the target project to be determined.

[0112] 202, according to the engineering information of the target project, judge whether the engineering correlation degree between the target project and the preset project is greater than or equal to the preset correlation degree threshold.

[0113] 203, when the judgment result is yes, according to the engineering action type and the engineering action object of the target project, determine the target object required for executing the target project.

[0114] In the embodiment of the present application, optionally, the engineering action type includes engineering installation type and / or engineering building type; the engineering action object includes at least one of power distribution station, overhead line, cable line and communication transmission line. Further optionally, the target object includes at least one of target execution personnel, target material and target machine, i.e. human, material and machine required for executing the target project.

[0115] 204, when the target object includes target material and / or target machine, determine the object information of the target object, and according to the object information of the target object, determine the transportation correlation degree of the target object.

[0116] In the embodiment of the present application, optionally, the object information of the target object comprises at least one of quantity information, type information and acquisition location information of the target object. For example, if 10 tons of sandstone is needed and is acquired from point A, it is determined whether the 10 tons of sandstone needs to be transported; or if 100 nails are needed and are acquired from point B, it is determined whether the 100 nails needs to be transported.

[0117] 205, determining whether the transportation correlation degree of the target object is greater than or equal to a preset correlation degree threshold.

[0118] In the embodiment of the present application, for example, when 10 tons of sandstone is needed and is acquired from point A, it is determined that the transportation correlation degree of the target object is greater than or equal to the preset correlation degree threshold; or when 100 nails are needed and are acquired from point B, it is determined that the transportation correlation degree of the target object is less than the preset correlation degree threshold.

[0119] 206, when it is determined that the transportation correlation degree is greater than or equal to the preset correlation degree threshold, it is determined that the type of the design parameter to be determined for the target project includes the project transportation type.

[0120] In the embodiment of the present application, further, when it is determined that the transportation correlation degree is less than the preset correlation degree threshold, it is determined that the type of the design parameter to be determined for the target project does not include the project transportation type.

[0121] 207, determining the design parameter of the target project according to the type of the design parameter to be determined for the target project.

[0122] In the embodiment of the present application, for example, when the type of the design parameter is the project transportation type, the labor transportation proportion, the labor transportation distance, the vehicle transportation proportion, the vehicle transportation distance, the ship transportation proportion, the ship transportation distance and the like of the target project can be determined. If 10 tons of sandstone needs to be transported, it can be determined that 20 people and 10 vehicles are needed to transport the sandstone from point A which is 30 kilometers away from the destination.

[0123] In the embodiment of the present application, other descriptions of steps 201, 202 and 207 can refer to the detailed descriptions of steps 101-103 in Embodiment One, and the embodiment of the present application will not be described again.

[0124] It can be seen that the embodiment of the present application can determine the type of the design parameter to be determined for the target project according to the project information of the target project, which is beneficial to improve the reliability and accuracy of the determined type of the design parameter, and is further beneficial to subsequently quickly and accurately determine the design parameter of the target project under the project transportation type according to the type of the design parameter, so as to better promote the material and machine transportation process of the power project.

[0125] In an optional embodiment, the step 207 of determining the engineering parameter of the target project according to the determined engineering parameter type of the target project comprises:

[0126] When the determined engineering parameter type of the target project comprises the engineering transportation type, the transportation type required by the target object is determined according to the object information of the target object;

[0127] The transportation condition of the target object under the transportation type is analyzed according to the transportation type required by the target object;

[0128] The engineering transportation parameter of the target project is determined according to the transportation condition of the target object under the transportation type.

[0129] In the optional embodiment, optionally, the transportation type required by the target object comprises the labor transportation type and / or the transportation tool type, wherein the transportation tool type comprises at least one of the land travel transportation type, the water travel transportation type and the air travel transportation type. Further optionally, the transportation condition of the target object under the transportation type comprises at least one of the transportation jolt condition, the object damage condition, the corresponding transportation tool wear condition, the transportation traffic condition and the environmental impact condition. Still further optionally, the engineering transportation parameter comprises at least one of the labor transportation proportion, the transportation tool transportation proportion, the labor transportation distance, the transportation tool transportation distance, the labor transportation amount, the transportation tool loading and unloading amount and the transportation rate. For example, if 10 tons of sandstone is transported by the land travel transportation type, whether the 10 tons of sandstone is too jolted in the transportation process from point A to point B (which may cause the vehicle to overturn) can be analyzed, and if not, how long the vehicle needs to travel, how many vehicles are needed for transportation and how much sandstone each vehicle needs to transport, etc. can be determined.

[0130] It can be seen that the optional embodiment can determine the engineering transportation parameter of the target project according to the analyzed transportation condition of the target object, realize the intelligent determination process of the engineering transportation parameter, improve the determination reliability and accuracy of the engineering transportation parameter, and thus better transport the target object, thereby smoothly promoting the execution process of the power engineering.

[0131] In another optional embodiment, the step of analyzing the transportation condition of the target object under the transportation type according to the transportation type required by the target object comprises:

[0132] When the transportation type required by the target object comprises the transportation tool type, the target type information corresponding to the transportation tool type is determined;

[0133] The basic parameter corresponding to the target type information is determined according to the target type information corresponding to the transportation tool type;

[0134] According to the basic parameter corresponding to the target type information, the transportation situation of the target object under the transportation type is analyzed.

[0135] In the optional embodiment, optionally, the target type information comprises at least one of terrain type information, water body type information and weather type information. Further optionally, the basic parameter corresponding to the target type information comprises at least one of soil type corresponding to the terrain type information, soil proportion corresponding to the terrain type information, water quality situation corresponding to the water body type information, biological activity situation corresponding to the water body type information, precipitation situation corresponding to the weather type information, condensation situation corresponding to the weather type information, air flow situation corresponding to the weather type information, photoelectric generation situation corresponding to the weather type information and visibility corresponding to the weather type information. For example, when it is determined that the vehicle will pass through a mountain during transportation, it can be determined that the soil types included in the mountain are hard soil, loose sandstone and rock, and the corresponding soil proportions are 50%, 30% and 20% respectively, so as to analyze the jolt situation of the transported material or the damage to the vehicle according to the determined soil types and corresponding soil proportions.

[0136] It can be seen that the optional embodiment can analyze the transportation situation of the target object according to the basic parameter corresponding to the target type information under the transportation type of the vehicle, which is beneficial to improve the analysis reliability and accuracy of the transportation situation of the target object, and thus is beneficial to reduce the occurrence of the target object damage, vehicle damage and the like during transportation, so as to better perform the transportation task under the condition of ensuring the transportation safety.

[0137] In yet another optional embodiment, before the step of analyzing the transportation situation of the target object under the transportation type according to the basic parameter corresponding to the target type information in the above-mentioned steps, the method further comprises:

[0138] determining whether the target object has corresponding packaging material;

[0139] when the determination result is yes, determining the packaging parameter of the packaging material.

[0140] Further, in the optional embodiment, analyzing the transportation situation of the target object under the transportation type according to the basic parameter corresponding to the target type information comprises:

[0141] analyzing the transportation situation of the target object under the transportation type according to the packaging parameter of the packaging material and the basic parameter corresponding to the target type information.

[0142] In the optional embodiment, optionally, the packaging parameter of the packaging material comprises at least one of a packaging material type, a packaging compactness, and a packaging protection condition. For example, the packaging material corresponding to the target object can form a buffering protection effect during the transportation of the target object, and therefore, the transportation condition of the target object can be further analyzed according to the material type, the compactness, the protection condition, and the like of the packaging.

[0143] It can be seen that the optional embodiment can further analyze the transportation condition of the target object according to the determined packaging material parameter, enriches the intelligent analysis manner of the transportation condition of the target object, and can further improve the analysis reliability and accuracy of the transportation condition of the target object, thereby improving the analysis effectiveness of the transportation condition of the target object, and thus being more conducive to subsequently accurately determining the engineering transportation parameter of the target engineering according to the transportation condition of the target object.

[0144] In yet another optional embodiment, the method further comprises:

[0145] When the type of the engineering parameter to be determined for the target engineering comprises an engineering coefficient type, the engineering execution difference condition of the target engineering is determined according to the engineering execution condition of the target engineering and the preset engineering execution condition, and the engineering coefficient parameter of the target engineering is determined according to the engineering execution difference condition of the target engineering.

[0146] In the optional embodiment, optionally, the engineering coefficient parameter of the target engineering comprises a first worker labor coefficient parameter and / or a first mechanical coefficient parameter of the target engineering. For example, if the mechanical operation time length of the target engineering needs to be 12 hours, but the mechanical operation time length of the preset engineering is 10 hours, i.e., needs to be overloaded, at this time, the first mechanical coefficient parameter of the target engineering can be determined according to the difference of 2 hours of working time length.

[0147] It can be seen that the optional embodiment can determine the engineering coefficient parameter of the target engineering according to the engineering execution difference condition of the target engineering, which is conducive to improving the determination reliability and accuracy of the engineering coefficient parameter, and further conducive to improving the overall determination reliability and accuracy of the engineering parameter, thereby being conducive to the smooth execution of the target engineering.

[0148] In yet another optional embodiment, the method further comprises:

[0149] When the type of the engineering parameter to be determined for the target engineering comprises an engineering coefficient type, the execution level difference condition of the target engineering is determined according to the engineering execution level of the target engineering and a preset level threshold, and the engineering coefficient parameter of the target engineering is determined according to the execution level difference condition of the target engineering.

[0150] In the optional embodiment, optionally, the engineering coefficient parameter of the target project includes at least one of a second worker labor coefficient parameter, a second machine coefficient parameter and a material coefficient parameter of the target project. For example, if the target project is a 500kV overhead line transformation project, the engineering execution level of the target project can be determined as level 5, and the preset level threshold is level 3, at this time, the man-machine coefficient parameter of the target project can be determined according to the difference of two execution levels.

[0151] It can be seen that the optional embodiment can determine the engineering coefficient parameter of the target project according to the execution level difference of the target project, enriches the intelligent determination process of the engineering coefficient parameter, is beneficial to improve the determination flexibility of the engineering coefficient parameter, and is further beneficial to improve the determination reliability and accuracy of the engineering coefficient parameter, so as to further promote the execution of the target project.

[0152] Embodiment three

[0153] Please refer to Figure 3 , Figure 3 is a structural schematic diagram of an intelligent determination device of an engineering parameter disclosed by the embodiment of the application. As shown in Figure 3 , the intelligent determination device of the engineering parameter can include:

[0154] The first determination module 301 is configured to determine the engineering information of the target project to be determined.

[0155] The judgment module 302 is configured to determine whether the engineering correlation degree between the target project and the preset project is greater than or equal to the preset correlation degree threshold according to the engineering information of the target project.

[0156] The second determination module 303 is configured to determine the type of the parameter to be determined by the target project according to the engineering information of the target project when the determination result of the judgment module 303 is yes.

[0157] The third determination module 304 is configured to determine the parameter of the target project according to the type of the parameter to be determined by the target project.

[0158] In the embodiment of the application, the engineering information of the target project includes the engineering action type of the target project and the engineering action object of the target project; the preset project includes at least one of a power distribution station project, an overhead line project, a cable line project and a communication automation project; the type of the parameter to be determined by the target project includes an engineering transportation type and / or an engineering coefficient type; and the parameter includes an engineering transportation parameter and / or an engineering coefficient parameter.

[0159] It can be seen that the embodiment Figure 3The described intelligent determination device of engineering design parameter can determine the engineering design parameter type corresponding to the target engineering according to the engineering information of the target engineering, so as to determine the engineering design parameter of the target engineering, realize the intelligent determination process of the engineering design parameter, and realize the intelligent determination process of the engineering design parameter without manually analyzing the data of the power engineering to determine the engineering design parameter one by one. Not only can the cumbersome process of determining the engineering design parameter be reduced, the determination rate of the engineering design parameter is improved, but also the reliability and accuracy of the determination of the engineering design parameter are improved, so as to smoothly promote the execution process of the power engineering.

[0160] In an optional embodiment, the second determination module 303 determines the type of engineering design parameter required to be determined by the target engineering according to the engineering information of the target engineering, and the determination manner is specifically:

[0161] According to the engineering type and the engineering object, the target object required to execute the target engineering is determined.

[0162] When the target object includes target materials and / or target machinery, the object information of the target object is determined, and the transportation correlation degree of the target object is determined according to the object information of the target object.

[0163] It is judged whether the transportation correlation degree of the target object is greater than or equal to the preset correlation degree threshold.

[0164] When it is judged that the transportation correlation degree is greater than or equal to the preset correlation degree threshold, it is determined that the type of engineering design parameter required to be determined by the target engineering includes the engineering transportation type.

[0165] In this optional embodiment, the engineering type includes the engineering installation type and / or the engineering building type, the engineering object includes at least one of the power distribution station, the overhead line, the cable line and the communication transmission line, and the target object includes at least one of the target execution personnel, the target material and the target machinery. The object information of the target object includes at least one of the quantity information, the type information and the acquisition location information of the target object.

[0166] It can be seen that the implementation Figure 4 The described intelligent determination device of engineering design parameter can determine the type of engineering design parameter required to be determined by the target engineering according to the engineering information of the target engineering, which is beneficial to improve the reliability and accuracy of the determined engineering design parameter type, and then is beneficial to subsequently quickly and accurately determine the engineering design parameter of the target engineering under the engineering transportation type according to the engineering design parameter type, so as to better promote the material and machinery transportation process of the power engineering.

[0167] In another optional embodiment, the second determination module 303 determines the type of engineering design parameter required to be determined by the target engineering according to the engineering information of the target engineering, and the determination manner is specifically:

[0168] determine the execution progress scheduling of the target project, and determine the project execution condition of the target project according to the execution progress scheduling of the target project;

[0169] determine whether the project execution condition is the preset project execution condition, and if not, determine that the type of the engineering design parameter to be determined for the target project includes the engineering coefficient type; or

[0170] determine the specific operation content of the engineering action type and the object parameter of the engineering action object, and determine the engineering execution level of the target project according to the specific operation content of the engineering action type and the object parameter of the engineering action object;

[0171] determine whether the engineering execution level of the target project is greater than or equal to the preset level threshold, and if so, determine that the type of the engineering design parameter to be determined for the target project includes the engineering coefficient type.

[0172] In this optional embodiment, the project execution condition includes at least one of a project execution time period, a project execution time length, and a project execution weather condition; the preset project execution condition includes at least one of a preset project execution time period, a preset project execution time length, and a preset project execution weather condition; and the object parameter of the engineering action object includes a physical parameter and / or a chemical parameter.

[0173] It can be seen that the implementation Figure 4 The described engineering design parameter intelligent determination device can flexibly determine the type of the engineering design parameter to be determined for the target project according to the engineering information of the target project, realize the intelligent determination of the type of the engineering design parameter, and further improve the reliability and accuracy of the determined type of the engineering design parameter, so as to further accelerate and accurately determine the engineering coefficient type of the target project according to the type of the engineering design parameter, thereby better promoting the execution process of the power project.

[0174] In yet another optional embodiment, the third determination module 304 includes:

[0175] The determination sub-module 3041 is configured to, when the type of the engineering design parameter to be determined for the target project includes the engineering transportation type, determine the transportation type required by the target object according to the object information of the target object.

[0176] The analysis sub-module 3042 is configured to analyze the transportation condition of the target object under the transportation type according to the transportation type required by the target object.

[0177] The determination sub-module 3041 is further configured to determine the engineering transportation parameter of the target project according to the transportation condition of the target object under the transportation type.

[0178] In this optional embodiment, the required transportation type for the target object includes labor transportation type and / or vehicle transportation type. The vehicle transportation type includes at least one of land transportation type, water transportation type, and air transportation type. Under the transportation type, the transportation conditions of the target object include at least one of transportation bumps, object damage, corresponding vehicle wear and tear, transportation traffic conditions, and environmental impact. The engineering transportation parameters include at least one of labor transportation ratio, vehicle transportation ratio, labor transportation distance, vehicle transportation distance, labor handling volume, vehicle loading and unloading volume, and transportation rate.

[0179] It is evident that implementation Figure 4 The intelligent device for determining engineering parameters described herein can determine the engineering transportation parameters of the target project based on the analyzed transportation situation of the target object. This realizes the intelligent determination process of engineering transportation parameters, improves the reliability and accuracy of the determination of engineering transportation parameters, and thus better transports the target object, thereby smoothly advancing the execution process of the power project.

[0180] In another optional embodiment, the analysis submodule 3042 analyzes the transportation situation of the target object under the required transportation type in the following specific way:

[0181] When the target object requires a transportation type including a vehicle transportation type, determine the target type information corresponding to the vehicle transportation type;

[0182] Based on the target type information corresponding to the transportation type, determine the basic parameters corresponding to the target type information;

[0183] Based on the basic parameters corresponding to the target type information, analyze the transportation status of the target object under the transportation type.

[0184] In this optional embodiment, the target type information includes at least one of terrain type information, water body type information, and meteorological type information; the basic parameters corresponding to the target type information include at least one of the following: soil type corresponding to terrain type information, soil proportion corresponding to terrain type information, water quality corresponding to water body type information, biological activity corresponding to water body type information, precipitation corresponding to meteorological type information, condensation corresponding to meteorological type information, airflow corresponding to meteorological type information, photoelectric generation corresponding to meteorological type information, and visibility corresponding to meteorological type information.

[0185] It is evident that implementation Figure 4The described intelligent determination device of engineering design parameter can analyze the transportation condition of the target object according to the basic parameter corresponding to the target type information under the transportation type of the vehicle, which is beneficial to improve the analysis reliability and accuracy of the transportation condition of the target object, and further beneficial to reduce the occurrence of target object loss, vehicle loss and the like of the target object in the transportation process, so as to better perform the transportation task under the condition of ensuring transportation safety.

[0186] In yet another optional embodiment, the third determination module 304 further includes:

[0187] The judgment submodule 3043 is configured to determine whether the target object has corresponding packaging material before the analysis submodule 3042 analyzes the transportation condition of the target object under the transportation type according to the basic parameter corresponding to the target type information.

[0188] The determination submodule 3041 is further configured to determine the packaging parameter of the packaging material when the judgment submodule 3043 determines that the result is yes.

[0189] The analysis submodule 3042 analyzes the transportation condition of the target object under the transportation type according to the basic parameter corresponding to the target type information in the following manner:

[0190] According to the packaging parameter of the packaging material and the basic parameter corresponding to the target type information, the transportation condition of the target object under the transportation type is analyzed.

[0191] In this optional embodiment, the packaging parameter of the packaging material includes at least one of the packaging material type, the packaging density and the packaging protection condition.

[0192] It can be seen that the implementation Figure 4 The described intelligent determination device of engineering design parameter can further analyze the transportation condition of the target object according to the determined packaging material parameter, enrich the intelligent analysis method of the transportation condition of the target object, and can further improve the analysis reliability and accuracy of the transportation condition of the target object, and further improve the analysis effectiveness of the transportation condition of the target object, so as to be more beneficial to accurately determine the engineering transportation parameter of the target engineering according to the transportation condition of the target object.

[0193] In yet another optional embodiment, the determination submodule 3041 is further configured to:

[0194] When the type of the design parameter to be determined by the target engineering includes the engineering coefficient type, the engineering execution difference condition of the target engineering is determined according to the engineering execution condition of the target engineering and the preset engineering execution condition, and the engineering coefficient parameter of the target engineering is determined according to the engineering execution difference condition of the target engineering.

[0195] In the optional embodiment, the engineering coefficient parameter of the target project includes a first worker labor coefficient parameter and / or a first machine coefficient parameter of the target project.

[0196] It can be seen that, by implementing the method Figure 4 The intelligent determination apparatus for the engineering design parameter described herein can determine the engineering coefficient parameter of the target project according to the execution difference of the target project, which is conducive to improving the determination reliability and accuracy of the engineering coefficient parameter, and further conducive to improving the reliability and accuracy of the overall determination of the design parameter, thereby facilitating the smooth execution of the target project.

[0197] In yet another optional embodiment, the determination sub-module 3041 is further configured to:

[0198] According to the execution level of the target project and the preset level threshold, determine the execution level difference of the target project, and according to the execution level difference of the target project, determine the engineering coefficient parameter of the target project.

[0199] In the optional embodiment, the engineering coefficient parameter of the target project includes at least one of a second worker labor coefficient parameter, a second machine coefficient parameter and a material coefficient parameter of the target project.

[0200] It can be seen that, by implementing the method Figure 4 The intelligent determination apparatus for the engineering design parameter described herein can determine the engineering coefficient parameter of the target project according to the execution level difference of the target project, which enriches the intelligent determination process of the engineering coefficient parameter, is conducive to improving the determination flexibility of the engineering coefficient parameter, and further conducive to improving the determination reliability and accuracy of the engineering coefficient parameter, thereby further promoting the execution of the target project.

[0201] Embodiment four

[0202] Please refer to Figure 5 , Figure 5 is another structural schematic diagram of the intelligent determination apparatus for the engineering design parameter disclosed by the embodiment of the present application. As Figure 5 shown, the intelligent determination apparatus for the engineering design parameter can include:

[0203] a memory 401 storing executable program codes;

[0204] a processor 402 coupled with the memory 401;

[0205] The processor 402 invokes the executable program codes stored in the memory 401 to execute the steps in the intelligent determination method for the engineering design parameter described in the embodiment one of the present application or the embodiment two of the present application.

[0206] Embodiment five

[0207] The embodiment of the present application discloses a computer storage medium, which stores computer instructions, and the computer instructions are used to execute the steps in the intelligent determination method of engineering design parameter described in the embodiment one or the embodiment two of the present application.

[0208] Embodiment six

[0209] The embodiment of the present application discloses a computer program product, which comprises a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to make a computer execute the steps in the intelligent determination method of engineering design parameter described in the embodiment one or the embodiment two.

[0210] The above described device embodiments are only schematic, wherein the modules described as separated components may or may not be physically separated, and the components displayed as modules may or may not be physical modules, i.e., may be located in one place, or may be distributed on multiple network modules. Some or all of the modules can be selected according to actual needs to achieve the purpose of the embodiment scheme. Those skilled in the art can understand and implement without creative labor.

[0211] Through the specific description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be realized by means of software and necessary general hardware platform, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of software product, and the computer software product can be stored in a computer readable storage medium, and the storage medium includes read-only memory (ROM), random access memory (RAM), programmable read-only memory (PROM), erasable programmable read-only memory (EPROM), one-time programmable read-only memory (OTPROM), electrically erasable programmable read-only memory (EEPROM), compact disc read-only memory (CD-ROM) or other optical disk storage, magnetic disk storage, magnetic tape storage, or any other computer readable medium capable of carrying or storing data.

[0212] Finally, it should be noted that: the embodiment of the application discloses an intelligent determination method and device for engineering design parameter, which is only a preferred embodiment of the application, and is used for describing the technical solutions of the application, but not limiting; although the application is described in detail with reference to the foregoing embodiments, those skilled in the art should understand that; the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced; and the modification or replacement does not make the essence of the corresponding technical solution deviate from the spirit and scope of the technical solutions of the embodiments of the application.

Claims

1. An intelligent method for determining the parameters of an engineering design, characterized in that, The method comprises: determining pending target engineering engineering information; the target engineering engineering information comprises the target engineering engineering type and the target engineering engineering object; determining whether the target engineering and the preset engineering have an engineering correlation degree greater than or equal to a preset correlation degree threshold according to the target engineering engineering information; the preset engineering comprises at least one of a power distribution station engineering, an overhead line engineering, a cable line engineering, and a communication automation engineering; when the determination result is yes, determining the target engineering required to be determined according to the target engineering engineering information, and determining the target engineering parameter according to the target engineering required to be determined; the target engineering required to be determined parameter type comprises engineering transportation type and / or engineering coefficient type, and the parameter comprises engineering transportation parameter and / or engineering coefficient parameter; wherein, according to the target engineering engineering information, determining whether the target engineering and the preset engineering have an engineering correlation degree greater than or equal to a preset correlation degree threshold, comprising: determining the engineering type and the engineering object of the preset engineering; determining the engineering similarity between the target engineering and the preset engineering according to the target engineering engineering type, the target engineering engineering object, the preset engineering engineering type, and the preset engineering engineering object, and determining whether the engineering similarity is greater than or equal to a preset similarity threshold; when the determination result is yes, determining that the target engineering and the preset engineering have an engineering correlation degree greater than or equal to a preset correlation degree threshold; when the determination result is no, determining that the target engineering and the preset engineering have an engineering correlation degree less than a preset correlation degree threshold. 2.The method for intelligently determining parameters of an engineering design according to claim 1, wherein, determining the target engineering required to be determined according to the target engineering engineering information, comprising: determining the target object required to execute the target engineering according to the target engineering engineering type and the engineering object; the engineering type comprises engineering installation type and / or engineering building type, the engineering object comprises at least one of a power distribution station, an overhead line, a cable line, and a communication transmission line, and the target object comprises at least one of a target execution personnel, a target material, and a target machine; when the target object comprises the target material and / or the target machine, determining the object information of the target object, and determining the transportation correlation degree of the target object according to the object information of the target object; the object information of the target object comprises at least one of the quantity information, the type information, and the acquisition location information of the target object; determining whether the transportation correlation degree of the target object is greater than or equal to a preset correlation degree threshold; when it is determined that the transportation correlation degree is greater than or equal to the preset correlation degree threshold, it is determined that the target engineering required to be determined parameter type comprises engineering transportation type.

3. The method of claim 2, wherein, determining the target engineering required to be determined according to the target engineering engineering information, comprising: determine an execution schedule of the target project, and determine a project execution condition of the target project according to the execution schedule of the target project; the project execution condition comprises at least one of a project execution time period, a project execution time length, and a project execution weather condition; determine whether the project execution condition is a preset project execution condition, and if not, determine that the type of the parameter to be determined for the target project comprises the engineering coefficient type; the preset project execution condition comprises at least one of a preset project execution time period, a preset project execution time length, and a preset project execution weather condition; or determine specific operation content of the engineering action type and object parameters of the engineering action object, and determine a project execution level of the target project according to the specific operation content of the engineering action type and the object parameters of the engineering action object; the object parameters of the engineering action object comprise physical parameters and / or chemical parameters; determine whether the project execution level of the target project is greater than or equal to a preset level threshold, and if so, determine that the type of the parameter to be determined for the target project comprises the engineering coefficient type.

4. The method of claim 3, wherein, The determining the parameter of the target project according to the type of the parameter to be determined for the target project comprises: when the type of the parameter to be determined for the target project comprises the engineering transportation type, determining a transportation type required by the target object according to the object information of the target object; the transportation type required by the target object comprises a labor transportation type and / or a transportation tool transportation type, and the transportation tool transportation type comprises at least one of a land travel transportation type, a water travel transportation type, and an upper air flight transportation type; analyzing a transportation condition of the target object under the transportation type according to the transportation type required by the target object; the transportation condition of the target object under the transportation type comprises at least one of a transportation bump condition, an object damage condition, a corresponding transportation tool wear condition, a transportation traffic condition, and an environmental impact condition; determining an engineering transportation parameter of the target project according to the transportation condition of the target object under the transportation type; the engineering transportation parameter comprises at least one of a labor transportation proportion, a transportation tool transportation proportion, a labor transportation distance, a transportation tool transportation distance, a labor carrying amount, a transportation tool loading and unloading amount, and a transportation rate.

5. The method of claim 4, wherein, The analyzing the transportation condition of the target object under the transportation type according to the transportation type required by the target object comprises: when the transportation type required by the target object comprises the transportation tool transportation type, determining target type information corresponding to the transportation tool transportation type; the target type information comprises at least one of a terrain type information, a water body type information, and a weather type information; determine a basic parameter corresponding to the target type information according to the target type information corresponding to the transportation type of the vehicle; the basic parameter corresponding to the target type information includes at least one of a soil type corresponding to the terrain type information, a soil ratio corresponding to the terrain type information, a water quality corresponding to the water body type information, a biological activity corresponding to the water body type information, a precipitation corresponding to the weather type information, a condensation corresponding to the weather type information, an airflow corresponding to the weather type information, a photoelectric generation corresponding to the weather type information, and a visibility corresponding to the weather type information; analyze the transportation of the target object under the transportation type according to the basic parameter corresponding to the target type information.

6. The method of claim 5, wherein, Before analyzing the transportation of the target object under the transportation type according to the basic parameter corresponding to the target type information, the method further includes: determine whether the target object has a corresponding packaging material; when the determination result is yes, determine a packaging parameter of the packaging material; the packaging parameter of the packaging material includes at least one of a packaging material type, a packaging density, and a packaging protection condition; wherein, analyzing the transportation of the target object under the transportation type according to the basic parameter corresponding to the target type information includes: analyzing the transportation of the target object under the transportation type according to the packaging parameter of the packaging material and the basic parameter corresponding to the target type information.

7. The method of intelligently determining parameters for engineering design according to any one of claims 4-6, wherein, The method further includes: when the determined parameter type of the target project includes the engineering coefficient type, determining an engineering execution difference of the target project according to the engineering execution of the target project and the preset engineering execution, and determining an engineering coefficient parameter of the target project according to the engineering execution difference of the target project; the engineering coefficient parameter of the target project includes a first worker labor coefficient parameter and / or a first mechanical coefficient parameter of the target project; or, determining an execution level difference of the target project according to the engineering execution level of the target project and the preset level threshold, and determining an engineering coefficient parameter of the target project according to the execution level difference of the target project; the engineering coefficient parameter of the target project includes at least one of a second worker labor coefficient parameter, a second mechanical coefficient parameter, and a material coefficient parameter of the target project.

8. An intelligent determination device of engineering design parameter, characterized in that, The device is used to execute the intelligent determination method of the engineering parameter of the project as claimed in any one of claims 1-7, and the device includes: a first determination module for determining engineering information of a target project to be determined; the engineering information of the target project includes an engineering action type of the target project and an engineering action object of the target project; a judgment module for determining whether an engineering correlation degree between the target project and a preset project is greater than or equal to a preset correlation degree threshold according to the engineering information of the target project; the preset project includes at least one of a power distribution station project, an overhead line project, a cable line project, and a communication automation project. A second determining module, configured to determine a type of the design parameter required to be determined by the target project according to the project information of the target project when the judging module judges that the result is yes; the type of the design parameter required to be determined by the target project includes a project transportation type and / or a project coefficient type; A third determining module, configured to determine the design parameter of the target project according to the type of the design parameter required to be determined by the target project; the design parameter includes a project transportation parameter and / or a project coefficient parameter.

9. An intelligent determination device of engineering design parameter, characterized in that, The device comprises: a memory storing executable program codes; a processor coupled with the memory; the processor invokes the executable program codes stored in the memory to execute the intelligent determination method of the design parameter of the project according to any one of claims 1-7.

10. A computer storage medium, characterized in that The computer storage medium stores computer instructions, and the computer instructions are invoked to execute the intelligent determination method of the design parameter of the project according to any one of claims 1-7.

Citation Information

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