Community matching communication resource three-dimensional model construction system, method, electronic equipment and storage medium
Patent Information
- Application Number
- CN202211144846.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-20
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2042-09-20
AI Technical Summary
[0003]由此可见,如今对通信配套设备设施的使用和管理的过程中,存在信息表达不直观、资源信息获取效率低,资源状态和使用情况不明确等情况;造成日常的管理维护成本高、资源使用不合理等问题日益突出
[0039]根据本发明的又一个方面,采用如下技术方案:一种电子设备,包括存储器、处理器及存储在存储器上并可在处理器上运行的计算机程序,所述处理器执行所述计算机程序时实现上述方法的步骤。
Smart Images

Figure CN115546434B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of electronic information technology and relates to a resource management system, particularly to a three-dimensional model construction system, method, electronic device and storage medium for community supporting communication resources. Background Technology
[0002] Urban residential community communication infrastructure projects include various equipment and facilities such as pipelines, optical cables, equipment rooms, optical distribution racks, and optical distribution boxes. These facilities are widely distributed, scattered, and have complex wiring. Currently, the management of community communication resources is mainly done manually, with staff regularly inspecting and recording the operational status of the facilities.
[0003] It is evident that the current use and management of communication equipment and facilities suffer from several problems, including unintuitive information presentation, low efficiency in acquiring resource information, and unclear resource status and usage. These issues lead to increasingly prominent problems such as high daily management and maintenance costs and unreasonable resource utilization.
[0004] In view of this, there is an urgent need to design a new community-supported communication resource management method in order to overcome at least some of the aforementioned shortcomings of the existing community-supported communication resource management methods. Summary of the Invention
[0005] This invention provides a system, method, electronic device, and storage medium for constructing a three-dimensional model of community supporting communication resources, which can quickly construct a three-dimensional model of community supporting communication resources and facilitate intuitive acquisition of the status of communication resources in the corresponding building area.
[0006] To solve the above-mentioned technical problems, according to one aspect of the present invention, the following technical solution is adopted:
[0007] A system for constructing a 3D model of community-supporting communication resources, the system comprising:
[0008] The building information acquisition module is used to acquire building information of the corresponding building where the communication resource is located; the building includes the building and / or the ground of the area where the building is located.
[0009] A 3D building model construction module is used to construct a corresponding 3D building model based on the building information obtained by the building information acquisition module.
[0010] A communication resource data acquisition module, used to acquire communication resource data of a designated building; and
[0011] The communication resource 3D model construction module is used to construct 3D models of each communication resource based on the communication resource data obtained by the communication resource data acquisition module, and can display them in a set position in the 3D building model with a set posture.
[0012] As one embodiment of the present invention, the communication resources include at least one of the following: communication pipelines, optical cables, equipment rooms, optical distribution racks, and optical distribution boxes;
[0013] The communication resource data includes at least one of the following: category, model, size, shape, color, setting location, and orientation of the communication resource.
[0014] As one embodiment of the present invention, the three-dimensional model construction system further includes:
[0015] The reference area generation module is used to generate reference areas corresponding to each communication resource. The reference area is used to identify the area where the corresponding communication resource is located.
[0016] The communication resource location adjustment module is used to adjust the location of the set communication resource in the corresponding reference area.
[0017] As one embodiment of the present invention, the three-dimensional model construction system further includes:
[0018] The communication resource capacity display module is used to display the capacity of the set communication resources;
[0019] The communication resource usage display module is used to display the usage of the set communication resources.
[0020] As one embodiment of the present invention, the three-dimensional model construction system further includes:
[0021] A communication resource expansion and maintenance requirement generation module is used to generate expansion and / or maintenance requirements for communication resources.
[0022] The communication resource expansion and maintenance suggestion module is used to generate suggested solutions for communication resource expansion and / or maintenance based on the expansion and / or maintenance requirements generated by the communication resource expansion and maintenance requirement generation module, combined with the corresponding building communication resource capacity and occupancy; if it is determined that the remaining capacity of the communication resources does not meet the new expansion requirements, a warning sign is provided at the corresponding location.
[0023] According to another aspect of the present invention, the following technical solution is adopted: a method for constructing a three-dimensional model of community supporting communication resources, the method comprising:
[0024] Building information acquisition steps: Acquire the building information of the corresponding building where the communication resource is located; the building includes the building and / or the ground of the area where the building is located;
[0025] Three-dimensional building model construction steps: Construct the corresponding three-dimensional building model based on the building information obtained in the building information acquisition step;
[0026] Steps for acquiring communication resource data; acquiring communication resource data for a specified building; and
[0027] The steps for constructing a 3D model of communication resources are as follows: Based on the communication resource data obtained in the communication resource data acquisition step, a 3D model of each communication resource is constructed, which can be displayed in a set position in a 3D building model with a set posture.
[0028] As one embodiment of the present invention, the communication resources include at least one of the following: communication pipelines, optical cables, equipment rooms, optical distribution racks, and optical distribution boxes;
[0029] The communication resource data includes at least one of the following: category, model, size, shape, color, setting location, and orientation of the communication resource.
[0030] As one embodiment of the present invention, the three-dimensional model construction method further includes:
[0031] Reference area generation steps: A reference area is generated for each communication resource, and the reference area is used to identify the area where the corresponding communication resource is located.
[0032] Communication resource location adjustment steps: Adjust and set the location of the communication resource in the corresponding reference area.
[0033] As one embodiment of the present invention, the three-dimensional model construction method further includes:
[0034] The steps for displaying communication resource capacity include: displaying the capacity of the configured communication resources;
[0035] The steps for displaying communication resource usage include: displaying the set communication resource usage.
[0036] As one embodiment of the present invention, the three-dimensional model construction method further includes:
[0037] Steps for generating extended maintenance requirements for communication resources; generating extended and / or maintenance requirements for communication resources;
[0038] Recommended steps for communication resource expansion and maintenance: Based on the expansion and / or maintenance requirements generated by the communication resource expansion and maintenance requirement generation module, and in conjunction with the corresponding building's communication resource capacity and occupancy, a recommended solution for communication resource expansion and / or maintenance is generated; if it is determined that the remaining capacity of the communication resources does not meet the new expansion requirements, a warning sign is provided at the corresponding location.
[0039] According to another aspect of the present invention, the following technical solution is adopted: an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the steps of the above method.
[0040] According to another aspect of the present invention, the following technical solution is adopted: a storage medium storing computer program instructions thereon, which, when executed by a processor, implement the steps of the above-described method.
[0041] The beneficial effects of the present invention are as follows: The community supporting communication resource three-dimensional model construction system, method, electronic device and storage medium proposed in the present invention can quickly construct a community supporting communication resource three-dimensional model, and make it easy to intuitively obtain the status of communication resources in the corresponding building area. Attached Figure Description
[0042] Figure 1 This is a schematic diagram of the composition of a three-dimensional model construction system for community supporting communication resources in one embodiment of the present invention.
[0043] Figure 2 This is a flowchart of a method for constructing a three-dimensional model of community supporting communication resources in one embodiment of the present invention.
[0044] Figure 3 This is a schematic diagram of the composition of an electronic device according to an embodiment of the present invention. Detailed Implementation
[0045] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0046] To further understand the present invention, preferred embodiments of the present invention are described below in conjunction with examples. However, it should be understood that these descriptions are only for further illustrating the features and advantages of the present invention, and not for limiting the scope of the claims of the present invention.
[0047] The description in this section pertains to only a few typical embodiments, and the present invention is not limited to the scope of the embodiments described. Substitution of identical or similar prior art methods with some technical features in the embodiments is also within the scope of the description and protection of this invention.
[0048] The steps described in the various embodiments in the specification are for illustrative purposes only, and the implementation of this application is not limited by the order of the steps.
[0049] The term "connection" in the instruction manual includes both direct and indirect connections.
[0050] This invention discloses a three-dimensional model construction system for community supporting communication resources. Figure 1 This is a schematic diagram of the composition of a 3D model construction system for community supporting communication resources in one embodiment of the present invention; please refer to... Figure 1 The community-supporting communication resource 3D model construction system includes: building information acquisition module 1, 3D building model construction module 2, communication resource data acquisition module 3, and communication resource 3D model construction module 4.
[0051] The building information acquisition module 1 is used to acquire building information of the corresponding building where the communication resource is located; the building includes the building and / or the ground of the area where the building is located. In one embodiment of the present invention, the communication resource includes at least one of the following: communication pipeline, optical cable, equipment room, optical distribution rack, and optical distribution box.
[0052] The 3D building model construction module 2 is used to construct a corresponding 3D building model based on the building information acquired by the building information acquisition module 1. The specific modeling method of the 3D building model construction module 2 may include: setting a plane (which can also be an inclined plane) as the plane supporting the designated building, and establishing a standard coordinate system; forming a 3D building model on the plane according to the dimensions of each building and the distance between them, following the set standards. The constructed 3D building model can be a model outlined with simple lines; and a standard building model can be pre-set. For example, a building may not be a simple cuboid, but may have parts protruding from the whole and parts recessed into the whole, but can be generally represented by a cuboid shape. Of course, it can also be represented as a relatively complex model, reflecting some details of the building in the model.
[0053] The communication resource data acquisition module 3 is used to acquire communication resource data of a designated building. In one embodiment, the communication resource data includes at least one of the following: category, model, size, shape, color, location, and orientation of the communication resource. The communication resource data acquisition module 3 can acquire the data from a designated standard database or through other methods.
[0054] The communication resource 3D model construction module 4 is used to construct 3D models of each communication resource based on the communication resource data acquired by the communication resource data acquisition module 3, and can display them in a predetermined position within a 3D building model. The communication resource 3D model construction module 4 can form a 3D model of the corresponding communication resource within the corresponding building based on communication resource data within each building (such as the shape, size, and location of communication pipes, the number and location of cables, the size and location of the equipment room, etc.). The methods for forming the 3D model of the communication resource may include: acquiring information such as the shape, size, and location of the communication resource within the building; the shape of the communication resource can be preset as a standard model; and the location of the communication resource can be converted into its coordinates in a standard coordinate system.
[0055] In one embodiment of the present invention, the three-dimensional model construction system further includes a reference area generation module 5 and a communication resource position adjustment module 6. The reference area generation module 5 generates reference areas corresponding to each communication resource. These reference areas are used to identify the areas where the corresponding communication resources are located; for example, it can generate general areas for setting up communication pipelines on buildings, general areas for setting up optical cables, etc., facilitating manual adjustment of the positions of communication resources by subsequent staff. The communication resource position adjustment module 6 adjusts the position of the set communication resources within the corresponding reference areas. Because general areas for setting up communication pipelines, cables, and other communication resources are set, staff can adjust the corresponding communication resources according to their reference areas.
[0056] If no communication resource data is set within the building, default data can be generated through the communication resource data acquisition module 3; however, this data may differ from the actual situation, and staff can adjust the position of the corresponding communication resource through the reference area generation module 5 and the communication resource position adjustment module 6.
[0057] The 3D model construction system may further include a communication resource capacity presentation module 7 and a communication resource occupancy presentation module 8. The communication resource capacity presentation module 7 is used to present the capacity of the set communication resources; the communication resource occupancy presentation module 8 is used to present the occupancy of the set communication resources. This facilitates understanding of the capacity data, usage, and remaining status of the communication resources.
[0058] In one embodiment of the present invention, the three-dimensional model construction system further includes a communication resource expansion and maintenance requirement generation module 9 and a communication resource expansion and maintenance suggestion module 10. The communication resource expansion and maintenance requirement generation module 9 is used to generate expansion and / or maintenance requirements for communication resources. The communication resource expansion and maintenance suggestion module 10 is used to generate suggested solutions for communication resource expansion and / or maintenance based on the expansion and / or maintenance requirements generated by the communication resource expansion and maintenance requirement generation module, combined with the corresponding building communication resource capacity and occupancy; if it is determined that the remaining capacity of the communication resources does not meet the new expansion requirements, a warning sign is provided at the corresponding location.
[0059] For example, when relevant personnel are planning community communication resources, they can send their needs data to the system. After receiving the needs information, the system can determine the communication resources required for the corresponding needs based on the data (such as whether there is sufficient spare communication bandwidth or whether there is a lack of equipment resources to implement the corresponding functions). If some areas have insufficient remaining capacity, lines or markers of a set color can be displayed in the corresponding areas.
[0060] In one application scenario of the present invention, the three-dimensional model building system presents information through data visualization; the data visualization module includes a visualization engine component, a visualization presentation component, a data access component, a large screen display control component, a visualization application editor, and a visualization component editor.
[0061] (1) Visualization Engine Components
[0062] The visualization engine component is the fundamental building block of the visualization platform, responsible for the fusion and display of various types of data, facilitating efficient access and display of data resources. The visualization engine component primarily implements the following functions:
[0063] ①GIS data integration and control publishing, including GIS data integration, GIS data layer control, and GIS data rendering and display.
[0064] ②Scene-based rendering engine, including real-time scene rendering, rendering and switching of multi-color models, real-time rendering of scene roaming, and switching between virtual and real scenes.
[0065] ③ Model data integration and publishing, including the integration of various general model data, the publishing and management of the integrated data, etc.
[0066] ④ Application operation control and management, including large-screen navigation control, touch system interaction and other functions.
[0067] (2) Visualization components
[0068] The data presentation and application components for charts and graphs include dynamic presentation of indicators and gauges, clustered presentation and drill-down of indicators, and 3D visualization and interaction of indicators. The visualization components include:
[0069] Visualization components for linear and point data include basic components such as display components for water system vector data, POI vector data, and road vector data.
[0070] Multi-data dynamic enhancement effect components, including spatial geographic information display components, scene ripple effect components, dynamic light and shadow effect components, etc.
[0071] The scene operation tool supports the system's professional plotting functions, multi-dimensional query and statistics functions, basic measurement functions, and spatiotemporal attribute query functions.
[0072] System extension tools include visual script display and editing tools, and interface services for secondary development.
[0073] (3) Data access component
[0074] A visualization platform needs to display various types of information, and providing good data integration and presentation methods is crucial for the flexible application and configuration of the platform. Generally speaking, the current planned integration methods fall into two main categories: one is the integration of third-party components, and the other is the integration of third-party data.
[0075] (4) Large screen display control components
[0076] The large-screen resource publishing and control component allocates multiple display resources to the corresponding display areas as needed and enables multi-screen interaction.
[0077] The large-screen operation component touch screen version replaces the mouse to operate and control the content on the large screen.
[0078] (5) Visual application editor
[0079] The Visual Application Editor is a dedicated editor for defining and configuring visual applications. It features page customization capabilities, a basic visual page library, and visual object integration capabilities. It supports multiple themes (effects) for configuration, multiple voice controls, and adaptive scaling to large screen resolutions. The Visual Application Editor includes the following components:
[0080] The chart editing tool includes a variety of tools such as basic chart tools, chart layout and editing tools, chart detail editing tools, chart interactive editing tools, interactive setting tools, legend editing tools, and drawing and editing tools to assist in the creation and editing of new charts;
[0081] The framework editing tools for thematic instruments include title editing tools, menu editing tools, data source configuration tools, etc.
[0082] Engineering component library management tools, including engineering component library management tools, engineering management tools, and engineering construction tools;
[0083] Management and maintenance tools provide functional applications for the overall system maintenance of the tools, including user management, role management, log management, and other related functions.
[0084] (6) Visual component editor
[0085] A visual component editor is a dedicated editor for defining and configuring visual components. Visual component editors include:
[0086] Visualization components consist of various charts and layers that make up a visualization page, such as statistical charts, distribution charts, and scatter plots.
[0087] The editor integration component includes multiple functions such as configuration project management, visual component editing, multi-source data access, efficient analysis and intelligent optimization, etc. It can quickly generate the basic elements of visual components for integration and calling by visual application editors, and provides a library of common chart control controls for system design, supporting resolution adaptation.
[0088] This invention's 3D model building system allows for a comprehensive overview of business operations through a single diagram. It expands upon existing data resources across multiple dimensions, such as the number of users in a community, user status, device status, and user usage data.
[0089] The 3D model building system of this invention may also include a BI reporting intelligent system, which can be used by internal business personnel of the company, and to a certain extent reduces the heavy dependence on the IT department; it realizes business exploration through autonomous analysis, realizes business early warning through real-time tracking, and some AI-oriented intelligent applications.
[0090] Digital transformation phase
[0091] Excel stage: This stage is purely labor-intensive data analysis. Excel is indeed powerful, but its limitations in data analysis are also very obvious. When the amount of data reaches 50,000 or 100,000, it will become very slow and cannot handle data cleaning tasks such as multi-table joins.
[0092] Reporting system stage: Reporting systems typically involve model design, applying data to corresponding templates, and displaying it through front-end charts. They can automate the generation of fixed reports, such as repetitive reports like daily, weekly, and monthly reports. However, they lack effective support for adjusting the underlying model in response to business changes and for obtaining real-time, relevant information.
[0093] Traditional BI primarily targets IT professionals and data analysts; only about 5% of enterprise professionals can perform independent analysis. Furthermore, deployment and development cycles are long, requiring overall architecture design and technical development for each module. Even after acquiring data, it struggles to provide business guidance, focusing mainly on analyzing historical data and unable to support dynamic updates.
[0094] The intelligent BI stage: geared towards business personnel without an IT background, it is more flexible and easier to use than traditional BI, reducing reliance on the IT department to a certain extent. It enables business exploration through autonomous analysis, provides business alerts through real-time tracking, and offers AI-driven intelligent applications, truly realizing the vision of "everyone is a data analyst."
[0095] This shows that reporting systems for data analysis are outdated and require more productive BI, or even intelligent BI, to achieve a "business-driven autonomous analysis model".
[0096] This invention further discloses a method for constructing a three-dimensional model of community supporting communication resources, the method comprising:
[0097]
Step S1
[0098]
Step S2
[0099] [Step S3] Communication resource data acquisition step; acquire the communication resource data of the designated building; and
[0100]
Step S4
[0101] In one embodiment of the present invention, the communication resources include at least one of the following: communication pipes, optical cables, equipment rooms, optical distribution racks, and optical distribution boxes; the communication resource data includes at least one of the following: type, model, size, shape, color, installation location, and orientation of the communication resources.
[0102] In one embodiment of the present invention, the three-dimensional model construction method further includes:
[0103] Reference area generation steps: A reference area is generated for each communication resource, and the reference area is used to identify the area where the corresponding communication resource is located.
[0104] Communication resource location adjustment steps: Adjust and set the location of the communication resource in the corresponding reference area.
[0105] In one embodiment of the present invention, the three-dimensional model construction method further includes:
[0106] The steps for displaying communication resource capacity include: displaying the capacity of the configured communication resources;
[0107] The steps for displaying communication resource usage include: displaying the set communication resource usage.
[0108] Steps for generating extended maintenance requirements for communication resources; generating extended and / or maintenance requirements for communication resources;
[0109] Recommended steps for communication resource expansion and maintenance: Based on the expansion and / or maintenance requirements generated by the communication resource expansion and maintenance requirement generation module, and in conjunction with the corresponding building's communication resource capacity and occupancy, a recommended solution for communication resource expansion and / or maintenance is generated; if it is determined that the remaining capacity of the communication resources does not meet the new expansion requirements, a warning sign is provided at the corresponding location.
[0110] This invention also discloses an electronic device, Figure 3 This is a schematic diagram of the composition of an electronic device according to an embodiment of the present invention; please refer to [link / reference]. Figure 3 At the hardware level, the electronic device includes a memory, a processor, and at least one network interface; the processor may be a microprocessor, and the memory may include main memory, such as random access memory (RAM) or non-volatile memory. Of course, the electronic device may also include other hardware as needed.
[0111] The processor, network interface, and memory are interconnected via an internal bus, which can be an ISA (Industry Standard Architecture) bus, a PCI (Peripheral Component Interconnect) bus, or an EISA (Extended Industry Standard Architecture) bus, etc. The bus may include an address bus, a data bus, a control bus, etc. The memory stores programs (including operating system programs and application programs); the programs may include program code, which may include computer operation instructions. The memory may include main memory and non-volatile memory, and provides instructions and data to the processor.
[0112] In one embodiment, the processor can read the corresponding program from non-volatile memory into memory and then run it; the processor can execute the program stored in memory and specifically perform the following operations (e.g. Figure 2 As shown):
[0113]
Step S1
[0114]
Step S2
[0115] [Step S3] Communication resource data acquisition step; acquire the communication resource data of the designated building; and
[0116]
Step S4
[0117] This invention further discloses a storage medium storing computer program instructions, which, when executed by a processor, implement the following steps of the image edge super-resolution enhancement method of this invention (e.g., ...). Figure 2 As shown):
[0118]
Step S1
[0119]
Step S2
[0120] [Step S3] Communication resource data acquisition step; acquire the communication resource data of the designated building; and
[0121]
Step S4
[0122] In summary, the community-supporting communication resource 3D model construction system, method, electronic device and storage medium proposed in this invention can quickly construct a 3D model of community-supporting communication resources, making it easy to intuitively obtain the status of communication resources in the corresponding building area.
[0123] Based on the "digital" and "intelligent" systems to be built, as well as technical expertise and experience in big data applications, this invention comprehensively creates a "big data + BI" solution, effectively helping Jiantong Company to awaken dormant data.
[0124] This invention has a comprehensive industry indicator library that can support diverse analytical scenarios for customers. It can be applied to various scenarios, including single-line business analysis, cross-analysis of various themes, principal component analysis, multi-dimensional cluster analysis, and data decision tree analysis combined with actual business scenarios.
[0125] The overall solution of this invention is formulated according to business needs, with agile development, rapid iteration, and small-step, quick progress, delivering solution results in stages, and solidly accelerating and improving the efficiency of production and operation.
[0126] Maintenance personnel can generate simple reports within hours. This ease of use significantly shortens project development cycles, facilitates later maintenance, and helps manage the risks associated with staff turnover, saving businesses time, reducing costs, and improving efficiency.
[0127] While reports can display data across multiple dimensions, they cannot support arbitrary combinations of dimensions. Creating N reports for N dimensions is barely feasible, but the workload increases exponentially. Even without considering future maintenance costs, configuring data permissions for each report leads to an exponential increase in workload, often N*N.
[0128] It should be noted that this application can be implemented in software and / or a combination of software and hardware; for example, it can be implemented using an application-specific integrated circuit (ASIC), a general-purpose computer, or any other similar hardware device. In some embodiments, the software program of this application can be executed by a processor to implement the steps or functions described above. Similarly, the software program of this application (including related data structures) can be stored in a computer-readable recording medium; for example, RAM memory, magnetic or optical drives, floppy disks, and similar devices. In addition, some steps or functions of this application can be implemented in hardware; for example, as circuitry that cooperates with a processor to perform the various steps or functions.
[0129] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.
[0130] The description and application of the present invention herein are illustrative and not intended to limit the scope of the invention to the embodiments described above. Effects or advantages involved in the embodiments may not be apparent due to various factors, and the description of effects or advantages is not intended to limit the embodiments. Variations and modifications of the embodiments disclosed herein are possible, and various substitutions and equivalents of the components in the embodiments are well known to those skilled in the art. It should be apparent to those skilled in the art that the invention can be implemented in other forms, structures, arrangements, proportions, and with other components, materials, and parts without departing from the spirit or essential characteristics of the invention. Other variations and modifications can be made to the embodiments disclosed herein without departing from the scope and spirit of the invention.
Claims
1. A three-dimensional model construction system for community supporting communication resources, characterized in that, The community-supporting communication resource 3D model construction system includes: The building information acquisition module is used to acquire building information of the corresponding building where the communication resource is located; the building includes the building and / or the ground of the area where the building is located. A 3D building model construction module is used to construct a corresponding 3D building model based on the building information obtained by the building information acquisition module. A communication resource data acquisition module, used to acquire communication resource data of a designated building; and The communication resource 3D model construction module is used to construct a 3D model of each communication resource based on the communication resource data obtained by the communication resource data acquisition module, and can display it in a set position in the 3D building model with a set posture. The 3D model construction system further includes: The communication resource capacity display module is used to display the capacity of the set communication resources; The communication resource usage display module is used to display the usage of the set communication resources; A communication resource expansion and maintenance requirement generation module is used to generate expansion and / or maintenance requirements for communication resources. The communication resource expansion and maintenance suggestion module is used to generate suggested solutions for communication resource expansion and / or maintenance based on the expansion and / or maintenance requirements generated by the communication resource expansion and maintenance requirement generation module, combined with the corresponding building communication resource capacity and occupancy; if it is determined that the remaining capacity of the communication resources does not meet the new expansion requirements, a warning sign is provided at the corresponding location.
2. The community supporting communication resource three-dimensional model construction system according to claim 1, characterized in that: The communication resources include at least one of the following: communication pipelines, optical cables, equipment rooms, optical distribution racks, and optical distribution boxes; The communication resource data includes at least one of the following: category, model, size, shape, color, setting location, and orientation of the communication resource.
3. The community supporting communication resource three-dimensional model construction system according to claim 1, characterized in that: The 3D model construction system further includes: The reference area generation module is used to generate reference areas corresponding to each communication resource. The reference area is used to identify the area where the corresponding communication resource is located. The communication resource location adjustment module is used to adjust the location of the set communication resource in the corresponding reference area.
4. A method for constructing a three-dimensional model of community supporting communication resources, characterized in that, The method for constructing the three-dimensional model of the community's supporting communication resources includes: Building information acquisition steps: Acquire the building information of the corresponding building where the communication resource is located; the building includes the building and / or the ground of the area where the building is located; Three-dimensional building model construction steps: Construct the corresponding three-dimensional building model based on the building information obtained in the building information acquisition step; Steps for acquiring communication resource data; acquiring communication resource data for a specified building; and The steps for constructing a 3D model of communication resources are as follows: A 3D model of each communication resource is constructed based on the communication resource data obtained in the communication resource data acquisition step, and the resource can be displayed in a set position within a 3D building model with a set posture. The three-dimensional model construction method further includes: The steps for displaying communication resource capacity include: displaying the capacity of the configured communication resources; The steps for displaying communication resource usage include: displaying the set communication resource usage. Steps for generating extended maintenance requirements for communication resources; generating extended and / or maintenance requirements for communication resources; Recommended steps for communication resource expansion and maintenance: Based on the expansion and / or maintenance requirements generated by the communication resource expansion and maintenance requirement generation module, and in conjunction with the corresponding building's communication resource capacity and occupancy, a recommended solution for communication resource expansion and / or maintenance is generated; if it is determined that the remaining capacity of the communication resources does not meet the new expansion requirements, a warning sign is provided at the corresponding location.
5. The method for constructing a three-dimensional model of community supporting communication resources according to claim 4, characterized in that: The communication resources include at least one of the following: communication pipelines, optical cables, equipment rooms, optical distribution racks, and optical distribution boxes; The communication resource data includes at least one of the following: category, model, size, shape, color, setting location, and orientation of the communication resource.
6. The method for constructing a three-dimensional model of community supporting communication resources according to claim 4, characterized in that: The three-dimensional model construction method further includes: Reference area generation steps: Generate a reference area corresponding to each communication resource. The reference area is used to identify the area where the corresponding communication resource is located. Communication resource location adjustment steps: Adjust and set the location of the communication resource in the corresponding reference area.
7. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the computer program, it implements the steps of the method according to any one of claims 4 to 6.
8. A storage medium storing computer program instructions thereon, characterized in that, When executed by a processor, the computer program instructions implement the steps of the method according to any one of claims 4 to 6.
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