Three-dimensional Design Digital Handover and Three-dimensional Visualization Display System for Smart Grid Resources
Through the digital handover and three-dimensional visual display system for smart grid resources, the inconvenience of data transmission and model establishment during the three-dimensional design is solved, and the intuitive display and high-precision visualization of data are realized, and the rapid acquisition of equipment assets and operation and maintenance data is supported.
Patent Information
- Application Number
- CN202210525065.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-05-14
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2042-05-14
AI Technical Summary
It is difficult for existing smart grids to undergo digital handover and visual display at the same time during the three-dimensional design, resulting in inconvenient data transmission and model establishment, making it difficult for operators to understand data intuitively.
The digital handover and three-dimensional visual display system of smart grid resources are adopted, including a data management platform, an interface conversion platform, a three-dimensional design result database and a handover display system. Data verification and handover are carried out through the digital handover unit, and the three-dimensional visual display unit is modeled, rendered and displayed. The three-dimensional model is built using PhotoScan and 3DMax software to optimize scene rendering to improve visual accuracy.
The synchronization of digital handover and visual presentation during the three-dimensional design is realized. The establishment of a data model is convenient for operators to understand intuitively, improves the accuracy and visual accuracy of data transmission, and supports one-click call of equipment assets and operation and maintenance data.
Smart Images

Figure CN114970060B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of 3D design, and particularly to a 3D digital handover and 3D visualization display system for intelligent power grid resources. Background Technique
[0002] After the technical means of power grid design transitioned from the original manual drawing to a 2D CAD design system, it is now shifting towards a 3D digital design system. The greatest advantage of digital power grid design lies in ensuring the availability and accuracy of power grid operation and maintenance data. By adopting digital design solutions, the accuracy, reliability, and integrity of data can be guaranteed, thus also ensuring the sustainable development of power grid design. Therefore, 3D digital power grid design is the general trend.
[0003] However, during the 3D design of existing intelligent power grids, it is difficult to simultaneously perform digital handover and visualization display, which is not convenient for digitally transmitting data and establishing corresponding data models, and is not convenient for operators to intuitively understand. Summary of the Invention
[0004] Aiming at the deficiencies of the prior art, the present invention provides a 3D digital handover and 3D visualization display system for intelligent power grid resources, which solves the problems raised in the above background technique.
[0005] To achieve the above objectives, the present invention is realized through the following technical solutions: A 3D digital handover and 3D visualization display system for intelligent power grid resources, including a data management platform, one end of the data management platform is electrically connected to an interface conversion platform, the output end of the interface conversion platform is electrically connected to a 3D design result database, and the other end of the data management platform is electrically connected to a handover and display system. The handover and display system includes:
[0006] A digital handover unit, the input end of the digital handover unit is electrically connected to the connection end of the data management platform and is used for checking and handing over 3D design data;
[0007] A 3D visualization display unit, the input end of the 3D visualization display unit is electrically connected to the connection end of the data management platform and is used for modeling and rendering the 3D design data for display;
[0008] A storage unit, the connection end of the storage unit is electrically connected to the connection end of the data management platform.
[0009] Preferably, the digital handover unit and the 3D visualization display unit are both synchronously electrically connected to the distribution network equipment service unit and the visualization platform service unit in the business middle platform. The visualization platform service unit includes an asset module, a 3D information module, a distribution network single-line diagram module, and an operation and maintenance data module, enabling the retrieval of the visualization platform service in the business middle platform to obtain equipment asset details, 3D information, distribution network single-line diagram information, and operation and maintenance data.
[0010] Preferably, the distribution network equipment service unit includes an operation and maintenance status tracking module and an equipment asset module, realizing functions such as tracking the operation and maintenance status of distribution network equipment and one-key retrieval and display of equipment asset resource information.
[0011] Preferably, the digital handover unit includes a data verification module and a data handover module. The data verification module is used to verify the 3D design data, and the data handover module is used to hand over the 3D design data. The connection ends of the storage unit are electrically connected to the connection ends of the 3D visualization display unit and the digital handover unit respectively, and are used to store data for the digital handover unit and the 3D visualization display unit.
[0012] Preferably, the 3D visualization display unit includes a data acquisition module, a 3D model establishment module, a rendering module, a scene rendering optimization module, and a visualization display module. The data acquisition module is used to acquire display data.
[0013] Preferably, the 3D model establishment module is used to establish a 3D model, using PhotoScan and 3DMax software to build a complete 3D model. The rendering module arranges and renders the 3D design model. The scene rendering optimization module optimizes the model to improve the visualization accuracy. The visualization display module is used to finally display the model.
[0014] From the above technical solutions, it can be seen that the intelligent power grid resource 3D design digital handover and 3D visualization display system provided by the embodiments of this specification has at least the following beneficial effects:
[0015] (1). In the present invention, the data verification module verifies the 3D design data, the data handover module is used to hand over the 3D design data, and the 3D visualization display unit models and renders the 3D design data for display. Further, it is convenient for digital handover and visualization display during 3D design, digitally transmits the data and establishes corresponding data models, facilitating intuitive understanding by operators. The data acquisition module acquires display data, the 3D model establishment module completely establishes the 3D model, the rendering module arranges and renders the 3D design model, the scene rendering optimization module optimizes the model to improve the visualization accuracy, and the visualization display module is used to finally display the model.
[0016] (2) The present invention realizes the retrieval of visualization platform services in the business middle platform, thereby obtaining device asset details, three-dimensional information, single-line diagram information of power distribution network, and operation and maintenance data, and realizing functions such as tracking the operation and maintenance status of distribution network devices and one-key retrieval and display of device asset resource information. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] The drawings described herein are used to provide a further understanding of the present invention and form a part of this application:
[0018] Figure 1 It is a block diagram of the overall structural principle of the present invention;
[0019] Figure 2 It is a block diagram of the internal structure of the digital handover unit in the present invention;
[0020] Figure 3 It is a block diagram of the internal structure of the three-dimensional visualization display unit in the present invention;
[0021] Figure 4 It is a block diagram of the internal structure of the visualization platform service unit in the present invention;
[0022] Figure 5 It is a block diagram of the internal structure of the distribution network device service unit in the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0024] Please refer to Figures 1-5 as shown, the technical solution provided by the present invention:
[0025] A three-dimensional design digital handover and three-dimensional visualization display system for smart grid resources, including a data management platform, one end of the data management platform is electrically connected to an interface conversion platform, the output end of the interface conversion platform is electrically connected to a three-dimensional design result database, the other end of the data management platform is electrically connected to a handover and display system, and the handover and display system includes:
[0026] A digital handover unit, the input end of the digital handover unit is electrically connected to the connection end of the data management platform and is used for checking and handing over three-dimensional design data;
[0027] A three-dimensional visualization display unit, the input end of the three-dimensional visualization display unit is electrically connected to the connection end of the data management platform and is used for modeling and rendering display of three-dimensional design data;
[0028] A storage unit, the connection end of the storage unit is electrically connected to the connection end of the data management platform.
[0029] In this embodiment, the digital handover unit and the three-dimensional visualization display unit are both synchronously electrically connected to the distribution network equipment service unit and the visualization platform service unit in the business middle platform. The visualization platform service unit includes an asset module, a three-dimensional information module, a distribution network single-line diagram module, and an operation and maintenance data module, which realizes retrieving the visualization platform service in the business middle platform, so as to obtain equipment asset details, three-dimensional information, distribution network single-line diagram information, and operation and maintenance data. The distribution network equipment service unit includes an operation and maintenance status tracking module and an equipment asset module, which realizes functions such as tracking the operation and maintenance status of distribution network equipment and one-key retrieval and display of equipment asset resource information.
[0030] Furthermore, the digital handover unit includes a data verification module and a data handover module. The data verification module is used to verify the three-dimensional design data, and the data handover module is used to hand over the three-dimensional design data. The connection end of the storage unit is electrically connected to the connection ends of the three-dimensional visualization display unit and the digital handover unit respectively, and is used to store data for the digital handover unit and the three-dimensional visualization display unit.
[0031] Even further, the three-dimensional visualization display unit includes a data acquisition module, a three-dimensional model establishment module, a rendering module, a scene rendering optimization module, and a visualization display module. The data acquisition module is used to acquire display data.
[0032] It should be noted that the three-dimensional model establishment module is used to establish a three-dimensional model, and the PhotoScan and 3DMax software are used to build a complete three-dimensional model. The rendering module places and renders the three-dimensional design model. The scene rendering optimization module optimizes the model to improve the visualization accuracy. The visualization display module is used to finally display the model.
[0033] When the three-dimensional design digital handover and three-dimensional visualization display system of the smart grid resources of the present invention is in use, one end of the data management platform is electrically connected to an interface conversion platform, and the output end of the interface conversion platform is electrically connected to a three-dimensional design result database. The other end of the data management platform is electrically connected to a handover display system. The three-dimensional design data is checked and handed over through a digital handover unit. The digital handover unit includes a data check module and a data handover module. The data check module is used to check the three-dimensional design data, and the data handover module is used to hand over the three-dimensional design data. The three-dimensional visualization display unit performs modeling and rendering display on the three-dimensional design data. The three-dimensional visualization display unit includes a data acquisition module, a three-dimensional model establishment module, a rendering module, a scene rendering optimization module, and a visualization display module. The data acquisition module is used to acquire the display data. The three-dimensional model establishment module is used to establish a three-dimensional model, and the PhotoScan and 3DMax software are used to build a complete three-dimensional model. The rendering module places and renders the three-dimensional design model. The scene rendering optimization module optimizes the model to improve the visualization accuracy. The visualization display module is used to finally display the model. The storage unit stores the data of the digital handover unit and the three-dimensional visualization display unit. The digital handover unit and the three-dimensional visualization display unit are both synchronously electrically connected to the distribution network equipment service unit and the visualization platform service unit in the business middle platform. The visualization platform service unit includes an asset module, a three-dimensional information module, a distribution network single-line diagram module, and an operation and maintenance data module, realizing the retrieval of the visualization platform service in the business middle platform, so as to obtain equipment asset details, three-dimensional information, distribution network single-line diagram information, and operation and maintenance data. The distribution network equipment service unit includes an operation and maintenance status tracking module and an equipment asset module, realizing functions such as tracking the operation and maintenance status of distribution network equipment and one-key retrieval and display of equipment asset resource information, corresponding to the three-dimensional model and the two-dimensional model in the business middle platform.
[0034] The above embodiments are only used to illustrate the embodiments of the present invention, rather than limiting the embodiments of the present invention. Those of ordinary skill in the relevant art can make various changes and modifications without departing from the spirit and scope of the embodiments of the present invention. Therefore, all equivalent technical solutions also belong to the scope of the embodiments of the present invention. The patent protection scope of the embodiments of the present invention shall be defined by the claims.
Claims
1. A three-dimensional design digital handover and three-dimensional visualization display system for smart grid resources, comprising a data management platform. One end of the data management platform is electrically connected to an interface conversion platform, and the output end of the interface conversion platform is electrically connected to a three-dimensional design result database. The other end of the data management platform is electrically connected to a handover display system, characterized in that: The handover display system includes: A digital handover unit, the input end of which is electrically connected to the connection end of the data management platform and is used for verifying and handing over three-dimensional design data; A three-dimensional visualization display unit, the input end of which is electrically connected to the connection end of the data management platform and is used for modeling and rendering the three-dimensional design data for display; A storage unit, the connection end of which is electrically connected to the connection end of the data management platform; The digital handover unit and the three-dimensional visualization display unit are both synchronously electrically connected to the distribution network equipment service unit and the visualization platform service unit in the business middle platform. The visualization platform service unit includes an asset module, a three-dimensional information module, a distribution network single-line diagram module, and an operation and maintenance data module, realizing the retrieval of the visualization platform service in the business middle platform so as to obtain equipment asset details, three-dimensional information, distribution network single-line diagram information, and operation and maintenance data; The distribution network equipment service unit includes an operation and maintenance status tracking module and an equipment asset module, realizing functions such as tracking the operation and maintenance status of distribution network equipment and one-key retrieval and display of equipment asset resource information; 2. The 3D design digital handover and 3D visualization display system for smart grid resources according to claim 1, wherein: The digital handover unit includes a data verification module and a data handover module. The data verification module is used for verifying the three-dimensional design data, and the data handover module is used for handing over the three-dimensional design data. The connection end of the storage unit is electrically connected to the connection ends of the three-dimensional visualization display unit and the digital handover unit respectively, and is used for storing data for the digital handover unit and the three-dimensional visualization display unit; 3. The three-dimensional design digital handover and three-dimensional visualization display system for smart grid resources according to claim 1, characterized in that: The three-dimensional visualization display unit includes a data acquisition module, a three-dimensional model establishment module, a rendering module, a scene rendering optimization module, and a visualization display module. The data acquisition module is used for acquiring display data; 4. The three-dimensional design digital handover and three-dimensional visualization display system for smart grid resources according to claim 3, wherein: The three-dimensional model establishment module is used for establishing a three-dimensional model, using PhotoScan and 3DMax software to build a complete three-dimensional model. The rendering module arranges and renders the three-dimensional design model. The scene rendering optimization module optimizes the model to improve the visualization accuracy. The visualization display module is used for finally displaying the model.