A comprehensive wiring design method and system, electronic equipment, and storage medium
By compiling integrated wiring system diagrams and AI automatic layout technology, the problems of low efficiency and high cost of wiring design in the existing technology are solved, and efficient and optimized wiring path planning and quality improvement are achieved.
Patent Information
- Application Number
- CN202510733713.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2045-06-04
AI Technical Summary
In the existing integrated wiring design, there are problems such as large quantity statistics workload, easy omissions in manual calculations, large differences in drawing standards, and poor correlation and linkage between manual labeling equipment and cables.
The integrated wiring design method is adopted, and the wiring path is optimized by compiling the integrated wiring system diagram, equipment and facility layout rules, cable layout rules and engineering volume calculation rules, combined with AI automatic layout technology, the connection relationship between cables and facilities and equipment is automatically correlated, and the wiring path is optimized using the shortest path algorithm.
Improves wiring efficiency, saves costs, and continuously improves design quality and efficiency through automatic learning.
Smart Images

Figure CN120257934B_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of integrated wiring, and in particular relates to an integrated wiring design method and its system, electronic equipment, and storage medium. Background Art
[0002] Structured cabling design refers to the planning and design of a complete set of optical cables, related connecting cables, and hardware facilities within a single building or complex to meet the communication needs of various communication devices and application system equipment. The primary function of a structured cabling system is to connect voice, data, and image devices to each other, while also connecting to external communication networks, providing channels for the transmission of voice, data, and image information for various application systems. Currently, structured cabling design is achieved through manual drawing using computer-aided design (CAD). This presents challenges such as heavy statistical work, omissions in manual calculations, wide variations in drawing standards, manual annotation, and poor linkage between equipment and cables. Summary of the Invention
[0003] Aiming at the deficiencies of the prior art, the present invention discloses a comprehensive wiring design method and a system, electronic equipment and storage medium.
[0004] The present invention is achieved through the following technical solutions:
[0005] In a first aspect, a method for designing integrated wiring includes:
[0006] Prepare integrated wiring system diagrams, equipment and facility layout rules, cable laying rules, and engineering quantity calculation rules based on integrated wiring design plans and specifications;
[0007] Store and manage equipment and facility layout rules and cable layout rules;
[0008] Eliminate irrelevant content from architectural design drawings, extract layer information, and arrange cable ducts and cable trays on architectural design drawings;
[0009] According to the stored equipment and facility layout rules and cable layout rules, combined with the processed architectural design drawings, automatic wiring is performed, and AI automatic layout is performed to associate the connection relationship between cables and facilities and equipment;
[0010] Calculate the engineering quantity of the associated cables and equipment facilities according to the engineering quantity calculation rules, and output the integrated wiring design diagram.
[0011] In some embodiments, the integrated wiring system diagram includes: a workspace subsystem diagram, a wiring subsystem diagram, a trunk subsystem diagram, an equipment room subsystem diagram, an incoming line room subsystem diagram, a management subsystem diagram, and a building complex subsystem diagram.
[0012] In some embodiments, drawing the integrated wiring system diagram requires listing the installation locations of the information sockets, patch panels, switches, and power supply equipment of all subsystems and the cable connection relationships;
[0013] The legends of all subsystem diagrams must be standardized, and the legends of the same equipment and facilities must be consistent;
[0014] The legends of all equipment and facilities are stored in the form of blocks in the CAD file, where the legend names of the same equipment and facilities are consistent with the same equipment and facilities in the system diagram.
[0015] In some embodiments, the equipment and facility layout rules are compiled, including installation requirements for information sockets, patch panels, switches, power supply equipment, and terminal equipment;
[0016] The installation requirements of the information socket include installation location, height, and laying method, which are divided into pipe laying and cable trough laying;
[0017] The installation requirements of the patch panel include installation location and patch panel specifications;
[0018] The switch installation requirements include installation location and switch specifications;
[0019] The installation requirements of the power supply equipment include the installation location and power supply equipment specifications;
[0020] The installation requirements of the terminal equipment, including installation location and equipment specifications.
[0021] In some embodiments, compiling the cable routing rules includes:
[0022] Data cables and pigtail cables are laid in weak-current cable ducts or weak-current wiring racks;
[0023] Power cables and optical cables should be laid in power cable ducts or power cable racks;
[0024] Classify by information sockets and lay cables separately;
[0025] The cable path is calculated using the shortest path algorithm.
[0026] In some embodiments, the connection relationship between the associated cables and equipment facilities obtains input information from the stored equipment facility layout rules and cable layout rules and processed architectural design drawings to determine the layout order of the cables and equipment facilities, and then perform automatic layout processing.
[0027] In some embodiments, the input information includes:
[0028] The location information of the equipment and facility points in the corresponding building on the system diagram, including the building name, floor, equipment specifications, and equipment quantity;
[0029] Cable duct location information, including floor location and installation height;
[0030] The location information of the cable tray, including the floor and installation height;
[0031] Patch panels, switches and other terminal equipment are arranged according to the installation locations determined by the system diagrams of each subsystem.
[0032] In some embodiments, the AI automatic arrangement includes the following steps:
[0033] The first step is to locate the equipment and facility points on the building plan according to the location information corresponding to the equipment and facility points in the integrated wiring system diagram, including the building name, floor, equipment specifications, and equipment quantity. The wiring racks, switches, and power equipment are arranged in the corresponding positions according to the equipment layout rules, and corresponding information is generated, including the equipment name, equipment number, and equipment specifications.
[0034] The second step is to locate the equipment and facility points on the building plan according to the corresponding location information of the information socket in the integrated wiring system diagram, including the building name, floor, equipment type, and number of equipment. The information socket is arranged in the corresponding position according to the equipment layout rules, and the corresponding information is generated, including the equipment name and equipment type.
[0035] The third step is to locate the equipment and facility points on the building plan according to the corresponding location information of the terminal equipment in the integrated wiring system diagram, including the building name, floor, equipment type, and equipment quantity. The terminal equipment is arranged in the corresponding position according to the equipment layout rules, and the corresponding information is generated, including the equipment name, equipment number, and equipment type.
[0036] Step 4: Based on the association relationship between equipment and facilities and the corresponding location information of the equipment and facility points, information sockets and terminal equipment in the integrated wiring system diagram, use the shortest path algorithm, including the Dijkstra algorithm or the SPFA algorithm, to calculate the shortest cable path and automatically generate the connection between the cable and the facility equipment.
[0037] In some embodiments, the AI automatic layout also includes combining the stored equipment and facility layout rules and cable layout rules to determine whether the layout location and rules of the equipment and facilities comply with the design plan, and making corresponding corrections if there are any non-compliances.
[0038] In a second aspect, a comprehensive cabling design system includes:
[0039] The scheme design module is used to compile the integrated wiring system diagram, equipment and facility layout rules, cable layout rules and engineering quantity calculation rules according to the integrated wiring design scheme and specifications;
[0040] Automatic rule module, used to store and manage equipment and facility layout rules and cable layout rules;
[0041] Input module, used to filter out irrelevant content from architectural design drawings, extract layer information and arrange cable ducts and cable trays on architectural design drawings;
[0042] An AI automatic layout module is used to automatically perform wiring based on the equipment and facility layout rules and cable layout rules stored in the automatic rule module in combination with the architectural design drawings processed by the input module, and to associate the connection relationship between cables and facilities and equipment;
[0043] The processing module is used to calculate the engineering quantity of the cables associated with the AI automatic layout module and the equipment and facilities connections according to the engineering quantity calculation rules, and output the integrated wiring design diagram.
[0044] In some embodiments, the input module identifies and clears irrelevant layer information and design entities in the architectural design drawings, extracts each layer information and each type of design entity and corresponding descriptive information in the architectural design drawings, including floor elevation, building name and building area, and routes the cable ducts and wiring racks on the architectural design drawings.
[0045] In a third aspect, a computer-readable storage medium stores one or more programs, which can implement the above method when the one or more programs are executed.
[0046] In a fourth aspect, an electronic device includes a processor, a communication interface, a memory and a communication bus; the processor, the communication interface and the memory communicate with each other via the communication bus; the processor is used to execute the program stored in the above-mentioned computer-readable storage medium.
[0047] Compared with the prior art, the present invention has the following advantages:
[0048] 1. Automatic wiring is performed based on preset rules and architectural design drawings, which improves the efficiency of integrated wiring;
[0049] 2. Obtain the optimal wiring path through the shortest path algorithm, saving costs;
[0050] 3. The automatic rule module and AI automatic layout module can continuously learn wiring and equipment facility layout rules from other integrated wiring design drawings or during the modification and adjustment process, thereby improving design quality and efficiency.
[0051] Other features and advantages of the present invention will be described in the following description, and in part will become apparent from the description, or will be understood by practicing this application information. The purposes and other advantages of the present invention can be realized and obtained by the structures indicated in the description, claims and drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0052] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0053] Figure 1 This is a schematic diagram of a comprehensive cabling design method of this embodiment.
[0054] Figure 2 This is a schematic diagram of an integrated cabling design system of this embodiment.
[0055] Figure 3 Schematic diagram of an electronic device according to this embodiment. DETAILED DESCRIPTION
[0056] The accompanying drawings are for illustrative purposes only and are not to be construed as limiting the present application. To better illustrate the present embodiment, some components in the accompanying drawings may be omitted, enlarged, or reduced in size, and do not represent actual product dimensions. Those skilled in the art will understand that some well-known structures and their descriptions may be omitted from the accompanying drawings. The positional relationships depicted in the accompanying drawings are for illustrative purposes only and are not to be construed as limiting the present application.
[0057] In some embodiments, as Figure 1 A comprehensive cabling design method is shown, comprising the following steps:
[0058] S1. Prepare the integrated wiring system diagram, equipment and facility layout rules, cable layout rules and engineering quantity calculation rules according to the integrated wiring design plan and specifications;
[0059] Specifically, the integrated wiring system diagram includes a workspace subsystem diagram, a wiring (horizontal) subsystem diagram, a trunk (vertical) subsystem diagram, an equipment room subsystem diagram, an incoming line room subsystem diagram, a management subsystem diagram and a building complex subsystem diagram.
[0060] Furthermore, the preparation of the integrated wiring system diagram requires listing the installation locations and cable connection relationships of the information sockets, distribution frames, switches, and power equipment of all subsystem diagrams. In addition, the system diagram legends of all subsystems need to be standardized, and the legends of the same equipment and facilities must be consistent. The legends of all equipment and facilities are stored in the CAD file in the form of blocks, where the legend name of the same equipment and facility is consistent with the same equipment and facility in the system diagram.
[0061] Furthermore, the equipment and facility layout rules are compiled, including the installation requirements of information sockets, distribution frames, switches, power supply equipment and terminal equipment. The installation requirements of the information sockets include the installation position, height, and laying method, and the laying method is divided into pipe laying and cable trough; the installation requirements of the distribution frame include the installation position and distribution frame specifications; the installation requirements of the switch include the installation position and switch specifications; the installation requirements of the power supply equipment include the installation position and power supply equipment specifications; the installation requirements of the terminal equipment include the installation position and equipment specifications.
[0062] Furthermore, the laying rules of the cables are compiled, including: data cables and tail cables are laid in weak-current cable ducts or weak-current wiring racks; power cables and optical cables are laid in power cable ducts or power wiring racks; cables are laid separately according to the information socket classification, such as laying 1 data cable for a single-port information socket, 2 data cables for a dual-port information socket, 1 tail cable for a single-port optical fiber socket, 2 tail cables for a dual-port optical fiber socket, and power cables for a power socket; the cable path is calculated using the shortest path algorithm.
[0063] Furthermore, the engineering quantity calculation rules are compiled, including calculating the number of sockets and the cable length of each socket according to the type of information sockets, and the reserved cable and terminal length are calculated according to the design requirements; the steel pipe length is calculated according to the elevation of the cable duct or wiring rack, the installation height of the information socket, and the horizontal distance between the socket and the bridge, and the maximum number of cables laid per steel pipe is 2; the length of the cable duct and wiring rack is calculated according to the plan view, the cable duct on the vertical wall is calculated according to the floor height, and the material loss of the cable duct and wiring rack is calculated according to the design requirements; the number of equipment is calculated according to the number calculated according to the plan view.
[0064] S2. Storage and management equipment and facility layout rules and cable layout rules;
[0065] S3. Remove irrelevant content from the architectural design drawings, extract layer information, and arrange cable ducts and cable racks on the architectural design drawings;
[0066] Specifically, the irrelevant content is filtered out by identifying and clearing irrelevant layer information and design entities in the architectural design drawings, extracting each layer information and each type of design entity and corresponding descriptive information in the architectural design drawings, including floor elevation, building name and building area. In addition, the cable ducts and wiring racks are routed and arranged on the architectural design drawings.
[0067] Furthermore, the routing of the cable troughs and wiring racks is arranged, including classifying the cable troughs into weak-current cable troughs and power cable troughs, and indicating the installation height; classifying the wiring racks into weak-current wiring racks and power wiring racks, and indicating the installation height.
[0068] S4. Automatically route cables based on the stored equipment and facility layout rules and cable layout rules, combined with the processed architectural design drawings, and perform AI automatic layout to associate the connection relationship between cables and facilities and equipment.
[0069] Specifically, the connection relationship between the associated cables and equipment facilities is obtained by obtaining input information from the stored equipment facility layout rules and cable layout rules and the processed architectural design drawings, so as to determine the layout order of the cables and equipment facilities, and then perform automatic layout processing.
[0070] Furthermore, the input information includes: the location information of the equipment and facility points in the house corresponding to the system diagram, including the house name, the floor where it is located, the equipment specifications, and the number of equipment; the location information of the cable trough, including the floor where it is located and the installation height; the location information of the wiring rack, including the floor where it is located and the installation height; the wiring rack, switches and other terminal equipment are arranged according to the installation positions determined by the system diagram of each subsystem.
[0071] Furthermore, the arrangement sequence is to first arrange the distribution frame, switch, and power supply equipment, then arrange the information sockets by floor according to the system diagram, then arrange the terminal equipment according to the system diagram, and finally automatically generate cables according to the association relationship based on the routing of the cable trough and wiring rack.
[0072] Furthermore, the automatic arrangement includes the following steps:
[0073] The first step is to locate the equipment and facility points on the building plan according to the corresponding location information of the equipment and facility points on the integrated wiring system diagram, including the building name, floor, equipment specifications, and equipment quantity. The wiring racks, switches, and power equipment are arranged in the corresponding positions according to the equipment layout rules, and the corresponding information is generated, including the equipment name, equipment number, and equipment specifications.
[0074] The second step is to locate the equipment and facility points on the building plan according to the corresponding location information of the information socket in the integrated wiring system diagram, including the building name, floor, equipment type, and number of equipment. The information socket is arranged in the corresponding position according to the equipment layout rules, and the corresponding information is generated, including the equipment name and equipment type.
[0075] Step 3: Based on the location information of the terminal equipment in the integrated system diagram, including the building name, floor, equipment type, and number of equipment, locate the equipment facility points on the building plan, arrange the terminal equipment at the corresponding location according to the equipment layout rules, and generate corresponding information, including equipment name, equipment number, and equipment type;
[0076] Step 4: Based on the association relationship between equipment and facilities and the corresponding location information of the equipment and facility points, information sockets and terminal equipment in the integrated wiring system diagram, use the shortest path algorithm, including the Dijkstra algorithm or the SPFA algorithm, to calculate the shortest cable path and automatically generate the connection between the cable and the facility equipment.
[0077] In some embodiments, the associated cables automatically generated by the AI are reviewed, and the stored equipment and facility layout rules and cable layout rules are combined to determine whether the layout location and rules of the equipment and facilities comply with the design plan. If there are any non-compliances, corresponding corrections are made.
[0078] S5. Calculate the engineering quantity of the associated cables and equipment facilities according to the engineering quantity calculation rules, and output the integrated wiring design diagram.
[0079] In some embodiments, as Figure 2 The integrated cabling design system shown includes:
[0080] The scheme design module is used to compile the integrated wiring system diagram, equipment and facility layout rules, cable layout rules and engineering quantity calculation rules according to the integrated wiring design scheme and specifications;
[0081] Automatic rule module, used to store and manage equipment and facility layout rules and cable layout rules;
[0082] Input module, used to filter out irrelevant content from architectural design drawings, extract layer information and arrange cable ducts and cable trays on architectural design drawings;
[0083] An AI automatic layout module is used to automatically perform wiring based on the equipment and facility layout rules and cable layout rules stored in the automatic rule module in combination with the architectural design drawings processed by the input module, and to associate the connection relationship between cables and facilities and equipment;
[0084] The processing module is used to calculate the engineering quantity of the cables associated with the AI automatic layout module and the equipment and facilities connections according to the engineering quantity calculation rules, and output the integrated wiring design diagram.
[0085] Specifically, the automatic rule module stores the equipment and facility layout rules and cable layout rules compiled by the scheme design module.
[0086] The AI automatic layout module associates the connection relationship between cables and equipment facilities. The AI automatic layout module obtains input information from the automatic rule module and the input module to determine the layout order of cables and equipment facilities, and then performs automatic layout processing.
[0087] The AI automatic layout module also includes combining with the automatic rule module to determine whether the layout location and rules of equipment and facilities comply with the design plan, and making corresponding corrections if there are any non-compliances.
[0088] The embodiment of the present disclosure also provides an electronic device, such as Figure 3 As shown, it includes a processor, a communication interface, a memory and a communication bus, wherein the processor, the communication interface and the memory communicate with each other through the communication bus.
[0089] The memory is a computer-readable storage medium for storing one or more programs.
[0090] The processor is configured to execute a program stored in a computer-readable storage medium.
[0091] The computer-readable storage medium may be included in the device / apparatus described in the above embodiments; or may exist independently without being assembled into the device / apparatus.
[0092] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein; and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A method for designing integrated wiring, characterized in that: include: Prepare integrated wiring system diagrams, equipment and facility layout rules, cable laying rules, and engineering quantity calculation rules based on integrated wiring design plans and specifications; The integrated wiring system diagram includes: a work area subsystem diagram, a wiring subsystem diagram, a trunk subsystem diagram, an equipment room subsystem diagram, an incoming line room subsystem diagram, a management subsystem diagram and a building complex subsystem diagram; Store and manage equipment and facility layout rules and cable layout rules; Screening out irrelevant content from the architectural design drawings, extracting layer information, and arranging the cable ducts and cable racks on the architectural design drawings includes: identifying and removing irrelevant layer information and design entities from the architectural design drawings, extracting each layer information and each type of design entity and corresponding description information from the architectural design drawings, including floor elevations, building names, and building areas, and arranging the cable ducts and cable racks on the architectural design drawings; Automatic wiring is performed based on the stored equipment and facility layout rules and cable layout rules, combined with the processed architectural design drawings, to perform AI automatic layout and associate the connection relationship between the cables and the facilities and equipment; wherein the AI automatic layout includes the following steps: The first step is to locate the equipment and facility points on the building plan according to the location information corresponding to the equipment and facility points in the integrated wiring system diagram, including the building name, floor, equipment specifications, and equipment quantity. The wiring racks, switches, and power equipment are arranged in the corresponding positions according to the equipment layout rules, and corresponding information is generated, including the equipment name, equipment number, and equipment specifications. The second step is to locate the equipment and facility points on the building plan according to the corresponding location information of the information socket in the integrated wiring system diagram, including the building name, floor, equipment type, and number of equipment. The information socket is arranged in the corresponding position according to the equipment layout rules, and the corresponding information is generated, including the equipment name and equipment type. The third step is to locate the equipment and facility points on the building plan according to the corresponding location information of the terminal equipment in the integrated wiring system diagram, including the building name, floor, equipment type, and equipment quantity. The terminal equipment is arranged in the corresponding position according to the equipment layout rules, and the corresponding information is generated, including the equipment name, equipment number, and equipment type. Step 4: Based on the relationship between the equipment and facilities and the corresponding location information of the equipment and facility points, information sockets and terminal devices in the integrated wiring system diagram, a shortest path algorithm, including the Dijkstra algorithm or the SPFA algorithm, is used to calculate the shortest cable path and automatically generate connections between the cables and the facilities and equipment; Calculate the engineering quantity of the associated cables and equipment facilities according to the engineering quantity calculation rules, and output the integrated wiring design diagram.
2. A method for designing integrated wiring according to claim 1, characterized in that: The diagram of the integrated wiring system should clearly indicate the installation locations of the information sockets, patch panels, switches, power supply equipment of all subsystems and the cable connection relationships; The legends of all subsystem diagrams must be standardized, and the legends of the same equipment and facilities must be consistent; The legends of all equipment and facilities are stored in the form of blocks in the CAD file, where the legend names of the same equipment and facilities are consistent with the same equipment and facilities in the system diagram.
3. A comprehensive wiring design method according to claim 1, characterized in that: Prepare the layout rules for the equipment and facilities, including the installation requirements for information sockets, patch panels, switches, power supply equipment and terminal equipment; The installation requirements of the information socket include installation location, height, and laying method, which are divided into pipe laying and cable trough laying; The installation requirements of the patch panel include installation location and patch panel specifications; The switch installation requirements include installation location and switch specifications; The installation requirements of the power supply equipment include the installation location and power supply equipment specifications; The installation requirements of the terminal equipment, including installation location and equipment specifications.
4. A method for designing integrated wiring according to claim 1, characterized in that: Prepare the cable routing rules, including: Data cables and pigtail cables are laid in weak-current cable ducts or weak-current wiring racks; Power cables and optical cables should be laid in power cable ducts or power cable racks; Classify by information sockets and lay cables separately; The cable path is calculated using the shortest path algorithm.
5. A method for designing integrated wiring according to claim 1, characterized in that: The connection relationship between the associated cables and equipment facilities is obtained by obtaining input information from the stored equipment facility layout rules and cable layout rules and the processed architectural design drawings, thereby determining the layout order of the cables and equipment facilities, and then performing automatic layout processing.
6. A method for designing integrated wiring according to claim 5, characterized in that: The input information includes: The location information of the equipment and facility points in the corresponding building on the system diagram, including the building name, floor, equipment specifications, and equipment quantity; Cable duct location information, including floor location and installation height; The location information of the cable tray, including the floor and installation height; Patch panels, switches and other terminal equipment are arranged according to the installation locations determined by the system diagrams of each subsystem.
7. A method for designing integrated wiring according to claim 1, characterized in that: The AI automatic layout also includes combining the stored equipment and facility layout rules and cable layout rules to determine whether the layout location and rules of the equipment and facilities comply with the design plan, and making corresponding corrections if there are any non-compliances.
8. A comprehensive cabling design system, characterized in that: include: The scheme design module is used to compile the integrated wiring system diagram, equipment and facility layout rules, cable layout rules and engineering quantity calculation rules according to the integrated wiring design scheme and specifications; The integrated wiring system diagram includes: a work area subsystem diagram, a wiring subsystem diagram, a trunk subsystem diagram, an equipment room subsystem diagram, an incoming line room subsystem diagram, a management subsystem diagram and a building complex subsystem diagram; Automatic rule module, used to store and manage equipment and facility layout rules and cable layout rules; The input module is used to filter out irrelevant content from the architectural design drawings, extract layer information, and arrange the cable ducts and cable racks on the architectural design drawings, including: identifying and clearing irrelevant layer information and design entities in the architectural design drawings, extracting each layer information and each type of design entity and corresponding description information in the architectural design drawings, including floor elevation, building name and building area, and arranging the cable ducts and cable racks on the architectural design drawings; The AI automatic layout module is configured to automatically perform wiring based on the equipment and facility layout rules and cable layout rules stored in the automatic rule module in combination with the architectural design drawings processed by the input module, and associate the connection relationships between cables and facilities and equipment; wherein the AI automatic layout includes the following steps: The first step is to locate the equipment and facility points on the building plan according to the location information corresponding to the equipment and facility points in the integrated wiring system diagram, including the building name, floor, equipment specifications, and equipment quantity. The wiring racks, switches, and power equipment are arranged in the corresponding positions according to the equipment layout rules, and corresponding information is generated, including the equipment name, equipment number, and equipment specifications. The second step is to locate the equipment and facility points on the building plan according to the corresponding location information of the information socket in the integrated wiring system diagram, including the building name, floor, equipment type, and number of equipment. The information socket is arranged in the corresponding position according to the equipment layout rules, and the corresponding information is generated, including the equipment name and equipment type. The third step is to locate the equipment and facility points on the building plan according to the corresponding location information of the terminal equipment in the integrated wiring system diagram, including the building name, floor, equipment type, and equipment quantity. The terminal equipment is arranged in the corresponding position according to the equipment layout rules, and the corresponding information is generated, including the equipment name, equipment number, and equipment type. Step 4: Based on the relationship between the equipment and facilities and the corresponding location information of the equipment and facility points, information sockets and terminal devices in the integrated wiring system diagram, a shortest path algorithm, including the Dijkstra algorithm or the SPFA algorithm, is used to calculate the shortest cable path and automatically generate connections between the cables and the facilities and equipment; The processing module is used to calculate the engineering quantity of the cables associated with the AI automatic layout module and the equipment and facilities connections according to the engineering quantity calculation rules, and output the integrated wiring design diagram.
9. A computer-readable storage medium, characterized in that One or more programs are stored, and when the one or more programs are executed, the method described in any one of claims 1 to 7 can be implemented.
10. An electronic device comprising a processor, a communication interface, a memory, and a communication bus; the processor, the communication interface, and the memory communicate with each other via the communication bus; characterized in that: The processor is configured to execute the program stored in the computer-readable storage medium according to claim 9.
Citation Information
Patent Citations
Intelligent automatic design method and system for building wiring
CN115168942A