CN108460834A - A kind of method and relevant device of the design of wind power plant digital Platform - Google Patents
A kind of method and relevant device of the design of wind power plant digital Platform Download PDFInfo
- Publication number
- CN108460834A CN108460834A CN201810268706.4A CN201810268706A CN108460834A CN 108460834 A CN108460834 A CN 108460834A CN 201810268706 A CN201810268706 A CN 201810268706A CN 108460834 A CN108460834 A CN 108460834A
- Authority
- CN
- China
- Prior art keywords
- model
- target
- source
- design
- dimensional terrain
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T17/00—Three dimensional [3D] modelling, e.g. data description of 3D objects
- G06T17/05—Geographic models
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F30/00—Computer-aided design [CAD]
- G06F30/10—Geometric CAD
- G06F30/13—Architectural design, e.g. computer-aided architectural design [CAAD] related to design of buildings, bridges, landscapes, production plants or roads
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F30/00—Computer-aided design [CAD]
- G06F30/20—Design optimisation, verification or simulation
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T2210/00—Indexing scheme for image generation or computer graphics
- G06T2210/04—Architectural design, interior design
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A90/00—Technologies having an indirect contribution to adaptation to climate change
- Y02A90/10—Information and communication technologies [ICT] supporting adaptation to climate change, e.g. for weather forecasting or climate simulation
Landscapes
- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Geometry (AREA)
- Theoretical Computer Science (AREA)
- General Physics & Mathematics (AREA)
- Computer Hardware Design (AREA)
- Software Systems (AREA)
- Evolutionary Computation (AREA)
- General Engineering & Computer Science (AREA)
- Remote Sensing (AREA)
- Computer Graphics (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Computational Mathematics (AREA)
- Mathematical Analysis (AREA)
- Mathematical Optimization (AREA)
- Pure & Applied Mathematics (AREA)
- Management, Administration, Business Operations System, And Electronic Commerce (AREA)
Abstract
The embodiment of the present application discloses a kind of method and relevant device of the design of wind power plant digital Platform, for facilitating user to carry out more intuitive and accurate understanding to wind field design project, to improve the design efficiency of user.The embodiment of the present application method includes:Acquisition source three-dimensional terrain model;Design software of the source three-dimensional terrain model based on target profession is modeled, the corresponding Building Information Model of each target profession is obtained, forms Building Information Model database;By each target profession corresponding Building Information Model importing source three-dimensional terrain model, to obtain the virtual farm model of target simulator;The virtual farm model of the target simulator is preserved to geographical information management platform, to obtain the wind power plant digital Platform.
Description
Technical field
A kind of designed this application involves technical field of power systems more particularly to wind power plant digital Platform method and
Relevant device.
Background technology
Currently, engineering design field is faced with the innovation that three-dimensional information technology is turned to by two dimensional surface, it is original to survey
Survey, design, draw, calculate etc. means have been unable to meet the technology under new development requirement, it is therefore desirable to original technology route into
Row innovation.
Such as in terms of the wind-power electricity generation in new energy, in the exploitation of wind power plant big data, user gathers around that there are one suitable
Wind power plant digital Platform it is particularly important.
However, find in practical applications, due to need again to each technology specialty with software interconnect,
And the software that each technology specialty has itself exclusive, the professional span that digitlization element faces is big, lacks a kind of by multi-specialized, multidimensional
Spatial digitalized cycling of elements, unified technology, therefore the design efficiency of user has not only been influenced, also inconvenience sets wind power plant
Meter project carries out intuitive and accurate understanding.
Invention content
The embodiment of the present application provides a kind of method and relevant device of the design of wind power plant digital Platform, for convenient
User carries out more intuitive and accurate understanding to wind field design project, to improve the design efficiency of user.
The application first aspect provides a kind of method of wind power plant digital Platform design, including:
Acquisition source three-dimensional terrain model;Design software of the source three-dimensional terrain model based on target profession is built
Mould obtains the corresponding three-dimensional terrain model of each target profession;The professional corresponding Building Information Model of each target is led
Enter the source three-dimensional terrain model, to obtain and the virtual farm model of target simulator;By the virtual wind power plant of the target simulator
Model is preserved to geographical information management platform, to obtain the wind power plant digital Platform.
In a kind of possible design, in the first realization method of the embodiment of the present application first aspect, the acquisition
Source three-dimensional terrain model includes:The aerial photograph of target location is acquired by unmanned plane;According to the photograph of taking photo by plane of the target location
Piece carries out aerial triangulation resolving, to make the source three-dimensional terrain model.
In a kind of possible design, in second of realization method of the embodiment of the present application first aspect, when the mesh
When mark profession includes civil engineering, electrical and wind energy, it is described by design software of the source three-dimensional terrain model based on target profession into
Row modeling, obtaining the corresponding target structures information model of each target profession includes:The source three-dimensional terrain model is distributed
To the design software of the civil engineering, the design software of the electrical design software and the wind energy, to respectively obtain the soil
The Building Information Model of the Building Information Model, the electrical Building Information Model and the wind energy built.
In a kind of possible design, in the third realization method of the embodiment of the present application first aspect, the method
Further include:The simulation virtual farm model that the target structures information model and three-dimensional terrain model are formed is subjected to attribute volume
Server is collected and is uploaded to, to carry out online management.
In a kind of possible design, in the 4th kind of realization method of the embodiment of the present application first aspect, the method
Further include:Receive object run of the user to the wind power plant digital Platform;To user displaying and the object run
Corresponding result.
The application second aspect provides a kind of execution equipment, including:Acquiring unit, for obtaining source dimensional topography mould
Type;Modeling unit obtains described each for modeling design software of the source three-dimensional terrain model based on target profession
The corresponding Building Information Model of target profession;Import unit, for leading the professional corresponding Building Information Model of each target
Enter the source three-dimensional terrain model, to obtain the virtual farm model of target simulator;Storage unit is used for the target simulator
Virtual farm model is preserved to geographical information management platform, to obtain the wind power plant digital Platform.
In a kind of possible design, in the first realization method of the embodiment of the present application first aspect, the acquisition
Unit is specifically used for:
The aerial photograph of target location is acquired by unmanned plane;According to the aerial photograph of the target location, carry out aerial
Triangulation, to make the source three-dimensional terrain model.
In a kind of possible design, in second of realization method of the embodiment of the present application first aspect, when the mesh
When mark profession includes civil engineering, electrical and wind energy, the modeling unit is specifically used for:The source three-dimensional terrain model is distributed to institute
The design software of civil engineering, the design software of the electrical design software and the wind energy are stated, to respectively obtain the civil engineering
The Building Information Model of Building Information Model, the electrical Building Information Model and the wind energy.
In a kind of possible design, in the third realization method of the embodiment of the present application first aspect, the execution
Equipment further includes:
Uploading unit, for the virtual farm model of the target simulator to be carried out attributes edit and is uploaded to server,
To carry out online management.
In a kind of possible design, in the 4th kind of realization method of the embodiment of the present application first aspect, the execution
Equipment further includes:
Transmit-Receive Unit, for receiving object run of the user to the wind power plant digital Platform;
Display unit, for showing result corresponding with the object run to the user.
As can be seen from the above technical solutions, the embodiment of the present application has the following advantages:Acquisition source three-dimensional terrain model;It will
Design software of the source three-dimensional terrain model based on target profession is modeled, and the corresponding building of each target profession is obtained
Information model;By each target profession corresponding Building Information Model importing source three-dimensional terrain model, to obtain target
Simulation virtual farm model;The virtual farm model of the target simulator is preserved to geographical information management platform, to obtain
The wind power plant digital Platform.In the embodiment of the present application so that relevant design personnel from repeat, inefficient conventional two-dimensional drawing
It is freed in design, while improving the efficiency and design accuracy of engineering design by three dimensional design, and the wind power plant of three dimensional stress
Digital Platform can also carry out deisgn product preferably showing, analyze, and be easy to implement the design and progress of wisdom wind power plant
The Continuous optimization of wind power plant.
Description of the drawings
It, below will be to institute in embodiment and description of the prior art in order to illustrate more clearly of the embodiment of the present application technical solution
Attached drawing to be used is needed to be briefly described, it should be apparent that, the accompanying drawings in the following description is only some implementations of the application
Example, can also be obtained according to these attached drawings other attached drawings.
Fig. 1 is a kind of flow signal of the method for possible wind power plant digital Platform design provided by the embodiments of the present application
Figure;
Fig. 2 is a kind of possible structural schematic diagram for executing equipment provided by the embodiments of the present application.
Specific implementation mode
The embodiment of the present application provides a kind of method and relevant device of the design of wind power plant digital Platform, for convenient
User carries out more intuitive and accurate understanding to wind field design project, to improve the design efficiency of user.
In order to make those skilled in the art more fully understand application scheme, below in conjunction in the embodiment of the present application
The embodiment of the present application is described in attached drawing.
Term " first ", " second ", " third " in the description and claims of this application and above-mentioned attached drawing, "
The (if present)s such as four " are for distinguishing similar object, without being used to describe specific sequence or precedence.It should manage
The data that solution uses in this way can be interchanged in the appropriate case, so that the embodiments described herein can be in addition to illustrating herein
Or the sequence other than the content of description is implemented.In addition, term " comprising " or " having " and its any deformation, it is intended that covering is not
Exclusive includes, for example, contain the process of series of steps or unit, method, system, product or equipment be not necessarily limited to it is clear
Step or unit those of are listed in ground, but may include not listing clearly or for these processes, method, product or set
Standby intrinsic other steps or unit.
In the prior art, designer uses repetition, inefficient conventional two-dimensional layout design, but is set by three-dimensional
Meter improves the efficiency and design accuracy of engineering design, and to deisgn product preferably show, analyze.Meanwhile digitlization is flat
Platform is also the basis for carrying out wind power plant big data exploitation, is the object realized wisdom wind field design, carry out wind power plant Continuous optimization
Reason basis.
Be exactly first again to each technology specialty with software interconnect.Lack a kind of by multi-specialized, multidimensional
Spatial digitalized cycling of elements, unified technology are badly in need of being integrated into be managed collectively by each professional software and Three-dimensional Design Software putting down
On platform, and realize respective correlation function.Now in industry there is no related ripe integrated system solutions.
Secondly, wisdom wind power plant is that earth's surface, empty day, more elements of underground local space are integrated, and GIS-Geographic Information System can be with
More Space Elements are included in, and realize the visualization of Space Elements, solve the multielement integration problem of wisdom wind power plant.In view of
This, the embodiment of the present application proposes a kind of method of wind power plant digital Platform design, makes designer from repetition, inefficient tradition
It is freed in two-dimentional layout design, the efficiency and design accuracy of engineering design is improved by three dimensional design, and to deisgn product
Preferably show, analyze.Meanwhile digital Platform is also to carry out the basis of wind power plant big data exploitation, is to realize wisdom
Wind field design, the physical basis for carrying out wind power plant Continuous optimization.
Referring to Fig. 1, being a kind of method of possible wind power plant digital Platform design provided by the embodiments of the present application
Flow chart, including:
101, source three-dimensional terrain model is obtained.
In the embodiment of the present application, to realize the design of wind power plant digital Platform, execution equipment need to obtain and target location
Corresponding source three-dimensional terrain model.So-called target location, it can be understood as the place that user selectes, the target location and user's
The design object of wind power plant digital Platform is corresponding.
It should be noted that in the embodiment of the present application, data processing work(can be had for computer, server etc. by executing equipment
The equipment of energy.Further, execute equipment be also understood that for one work independently equipment or more share out the work and help one another set
It is standby, to realize the design method of wind power plant digital Platform provided herein.Therefore the execution equipment in the present embodiment is specific
It does not limit herein.
There are many modes for executing equipment acquisition source three-dimensional terrain model, for example, unmanned plane is outgoing, it is existing to obtain target location
The transformational relation of field plane mapping and global measuring system (world geodetic system, WGS) 1984 coordinate systems, is carried out
Control point is surveyed and drawn, is taken photo by plane according to engineer's scale, range and acquires photo.The photo that unmanned plane acquires back is imported aerial triangle of taking photo by plane to survey
In amount (can referred to as sky three) software, set parameter and photo control point, carry out sky three resolve, modeling, generate a point cloud, earth's surface elevation letter
Cease model (digital surface model, DSM), digital elevation model (digital elevation model, DEM) etc.
Surveying and mapping result data, wherein DSM refers to the ground elevation model for containing the height such as surface buildings, bridge and trees, DEM
It is to be realized to the digitized simulation of ground surface or terrain, i.e. the digitlization table of topographical surface form by limited terrain elevation data
It reaches.After obtaining surveying and mapping result data, according to these surveying and mapping result data creating digital adventure appearances (digital line
Graphic, DLG) model, DLG models can be understood as drawing the vector data collection of almost the same each map elements with existing line,
And save the spatial relationship information between each element and relevant attribute information.Therefore, in the embodiment of the present application, pass through unmanned plane
The three-dimensional geographic information environment is switched to the dedicated vector of three dimensional design by fast construction three-dimensional geographic information environment after aerial survey is gathered and edited
Change terrain data.In addition, execute equipment obtain source three-dimensional terrain model mode further include with the connecting of other equipment, manually record
Enter, the source three-dimensional terrain model that modes get target location such as is built in scene.For example, other equipment prestores targetedly
The source three-dimensional terrain model of point, therefore can be by the source three-dimensional terrain model export that other equipment stores, and set mounted on executing
In standby.Therefore the mode for executing equipment acquisition source three-dimensional terrain model does not limit specifically herein.
Wherein, the three-dimensional geographic information environment of target location includes the geographic coordinate information of target location, executes equipment and obtains
After getting source three-dimensional terrain model, the three of target location can be also shown to user by the display device of itself or other equipment
Geographic information environment is tieed up, so that user checks the progress of work of simultaneously supervision and handling equipment design wind power plant digital Platform, is understood
The three-dimensional geographic information environment of target location and can also check the three-dimensional geographic information environment of target location whether have it is abnormal or
Person lacks.
102, design software of the source three-dimensional terrain model based on target profession is modeled, obtains each target profession and corresponds to
Building Information Model.
Equipment is executed after getting the corresponding source three-dimensional terrain model of target location, source three-dimensional terrain model is distributed to
The Three-dimensional Design Software of target profession, and based on the Three-dimensional Design Software of target profession, obtain the corresponding target of each target profession
Building Information Model.It should be noted that the target profession may include one or more profession.For ease of understanding, this reality
It applies in example, if target profession includes civil engineering, electrical and wind energy, then executes the design that the source threedimensional model is distributed to civil engineering by equipment
The design software of software, the electrical design software and the wind energy obtains the architecture information mould of civil engineering to be modeled
The Building Information Model of type, electrical Building Information Model and wind energy forms each common model database of profession, with convenient
Future Projects design is called.It is to be understood that source three-dimensional terrain model is distributed to civil engineering, electrical and wind energy, and in each profession
Collaborative design is carried out in corresponding Three-dimensional Design Software, while each profession makes meter in the scope of business using respective professional environment
Calculate the work such as book, economic evaluation, numerical simulation.
103, the corresponding Building Information Model of each target profession is imported into source three-dimensional terrain model, to obtain target simulator void
Quasi- farm model.
After obtaining the corresponding Building Information Model of each target profession, as Building Information Model, the electrical building of civil engineering are believed
These models are imported source three-dimensional terrain model, obtain the virtual wind-powered electricity generation of target simulator by the Building Information Model for ceasing model and wind energy
Field model.
It should be understood that source three-dimensional terrain model and the virtual farm model of target simulator include not only relevant
Threedimensional model may also include relevant two dimensional model, to meet the use demand of the two dimensional model in certain application scenarios.
104, the virtual farm model of target simulator is preserved to geographical information management platform, to obtain wind power plant digitlization
Platform.
The virtual farm model of obtained target simulator is preserved to GIS-Geographic Information System (geographic
Information system, GIS) i.e. geosystem management platform, and obtain wind power plant digital Platform.In practical application,
It can be understood as the model with geographic coordinate information and building information importeding into geographical information management platform virtually
Among ball, file based database application is established to the result of design of the wind power plant and is stored among server.
105, by the virtual farm model upload server of target simulator, to carry out online management.
Further, after executing equipment and can also carrying out attributes edit processing to destination virtual farm model, then by target
Three-dimensional terrain model is uploaded to server.
Wherein, attributes edit is specifically as follows the processing sides such as projection matching, scene editor, layout, static and dynamic analysis
Formula, after being handled by attributes edit, destination virtual farm model has more bandwagon effect, facilitates the presentation of content, Yi Jiyong
Family is checked.
It is understood that user can login service device end, the destination virtual farm model of upload is carried out online
Data management, such as permission, load buffer setting can be carried out to web terminal data access, manage anemometer tower, the power generation of real-time reception
Amount big data is simultaneously analyzed.
It is appreciated that in GIS, processing equipment can be to wind power plant digital Platform by the GIS management platforms of exploitation
Design work visually browse, inquires and optimization, can also real-time reception anemometer tower, operation/maintenance data, and can also be
The analysis of big data and visual displaying are carried out in the management platform;It may also be combined with the digitlization fitting technique of wind energy simultaneously,
The output of all facilities of wind power plant, the economic index of load and project alternative are automatically analyzed in real time, and are formed and regularly united
Meter, early warning and guidance.
User can log in web terminal platform by internet, and display wind power plant digital Platform engineering is in virtual earth
Positioning, is dragged by modes such as mouse, touch-control, voices, is rotated, scale etc. to operate and visualized to entire wind power plant;
Also it can determine object, highlight and show its attribute information;Can also be by retrieving column retrieval, list display target object is simultaneously quickly fixed
Position;Subject object can also be screened by statistical analysis module, inquire, count, and with visual image or report
Exhibition method exports.
It should be understood that having no the restriction in sequential in this application, between step 104 and step 105, actually answering
In, step 104 can be first carried out by executing equipment, then execute step 105;Alternatively, can also first carry out step 105, then execute step
104;Alternatively, step 104 and step 105 can also be performed simultaneously, do not limit herein specifically.
In this application, processing equipment by by earth's surface in region, empty day, locally under more elements be digitized and carry
Take, obtain the wind power plant digital Platform of three dimensional stress so that relevant design personnel from repeat, inefficient conventional two-dimensional layout design
In free, realize that the data management, inquiry, virtual roaming of the more elements in space and deisgn product visualize by GIS,
And real-time return data can also be counted, be analyzed, Intelligent Optimal Design scheme instructs operation management, to realize wind
Digitlization, visualization, the intelligence of electric field Project design element to deisgn product preferably show, analyze, realize wisdom
The design of wind power plant and the Continuous optimization for carrying out wind power plant, substantially increase the working efficiency of design, while also improving item
Intuitive, the accuracy of mesh decision.
In addition, the method for the wind power plant digital Platform design that the embodiment of the present application is provided, is not losing professional technique
On the basis of calculating, the not high wind power plant of the professional degree of association originally can be digitized into element, pass through software interconnection, 3S technology (
Information system (GIS), global position system (GPS) are managed, telemetering surveying and mapping technology (RS) realizes the unification of positioning spatially;It is logical
Cross software interconnection get through, the barrier of each professional software data-interface of platform intergration, ensure the lossless output of design information;In conjunction with wind energy
Digitlization fitting technique, the economy for automatically analyzing the outputs of all facilities of wind power plant, load and project alternative in real time refers to
Mark, and form regularly statistics, early warning and guidance.
It is the embodiment of the method explanation of the method designed wind power plant digital Platform provided by the present application above, below then
Start the device embodiment explanation provided by the present application for executing equipment.
It please be referring to Fig. 2, being a kind of possible structural schematic diagram for executing equipment provided by the embodiments of the present application, such as Fig. 2
Shown, execution equipment provided by the present application specifically includes:
Acquiring unit 201, for obtaining source three-dimensional terrain model;
Modeling unit 202 is obtained for modeling design software of the source three-dimensional terrain model based on target profession
To the professional corresponding Building Information Model of each target;
Import unit 203, for the professional corresponding Building Information Model of each target to be imported the source dimensional topography
Model, to obtain the virtual farm model of target simulator;
Storage unit 204, for preserving the virtual farm model of the target simulator to geographical information management platform, with
Obtain the wind power plant digital Platform.
In one possible implementation, the acquiring unit 201 is specifically used for:
The aerial photograph of target location is acquired by unmanned plane;According to the aerial photograph of the target location, carry out aerial
Triangulation resolves, to make the source three-dimensional terrain model.
In one possible implementation, when the target profession includes civil engineering, electrical and wind energy, the modeling is single
Member 202 is specifically used for:The source three-dimensional terrain model is distributed to the design software of the civil engineering, the electrical design software
With the design software of the wind energy, with the Building Information Model for respectively obtaining the civil engineering, the electrical Building Information Model
With the Building Information Model of the wind energy.
In one possible implementation, the execution equipment further includes:
Uploading unit 205, for the virtual farm model of the target simulator to be carried out attributes edit and is uploaded to service
Device, to carry out online management.
In one possible implementation, the execution equipment further includes:
Transmit-Receive Unit 206, for receiving object run of the user to the wind power plant digital Platform;
Display unit 207, for showing result corresponding with the object run to the user.
It is appreciated that in GIS, processing equipment can be to wind power plant digital Platform by the GIS management platforms of exploitation
Design work visually browse, inquires and optimization, can also real-time reception anemometer tower, operation/maintenance data, and can also be
The analysis of big data and visual displaying are carried out in the management platform;It may also be combined with the digitlization fitting technique of wind energy simultaneously,
The output of all facilities of wind power plant, the economic index of load and project alternative are automatically analyzed in real time, and are formed and regularly united
Meter, early warning and guidance.
User can log in web terminal platform by internet, and display wind power plant digital Platform engineering is in virtual earth
Positioning, is dragged by modes such as mouse, touch-control, voices, is rotated, scale etc. to operate and visualized to entire wind power plant;
Also it can determine object, highlight and show its attribute information;Can also be by retrieving column retrieval, list display target object is simultaneously quickly fixed
Position;Subject object can also be screened by statistical analysis module, inquire, count, and with visual image or report
Exhibition method exports.
In this application, processing equipment by by earth's surface in region, empty day, locally under more elements be digitized and carry
Take, obtain the wind power plant digital Platform of three dimensional stress so that relevant design personnel from repeat, inefficient conventional two-dimensional layout design
In free, realize that the data management, inquiry, virtual roaming of the more elements in space and deisgn product visualize by GIS,
And real-time return data can also be counted, be analyzed, Intelligent Optimal Design scheme instructs operation management, to realize wind
Digitlization, visualization, the intelligence of electric field Project design element to deisgn product preferably show, analyze, realize wisdom
The design of wind power plant and the Continuous optimization for carrying out wind power plant, substantially increase the working efficiency of design, while also improving item
Intuitive, the accuracy of mesh decision.
The embodiment of the present application also provides a kind of computer readable storage medium, computer readable storage medium includes referring to
It enables, when the instruction is run on a processing device so that processing equipment is executed such as the wind power plant digitlization in Fig. 1 corresponding embodiments
Flow in the method for Platform Designing.
The embodiment of the present application also provides a kind of computer program product, which includes computer software
Instruction, when computer software instructions are run on a processing device so that processing equipment is executed such as the wind in Fig. 1 corresponding embodiments
Flow in the method for electric field digital Platform design.
The computer program product includes one or more computer instructions.Load and execute on computers the meter
When calculation machine program instruction, entirely or partly generate according to the flow or function described in the embodiment of the present application.The computer can
To be all-purpose computer, special purpose computer, computer network or other programmable devices.The computer instruction can be deposited
Storage in a computer-readable storage medium, or from a computer readable storage medium to another computer readable storage medium
Transmission, for example, the computer instruction can pass through wired (example from a web-site, computer, server or data center
Such as coaxial cable, optical fiber, Digital Subscriber Line (digital subscriber line, DSL)) or wireless (such as infrared, wireless,
Microwave etc.) mode is transmitted to another web-site, computer, server or data center.It is described computer-readable to deposit
Storage media can be the clothes that any usable medium that computer can store either is integrated comprising one or more usable mediums
The data storage devices such as business device, data center.The usable medium can be magnetic medium, (for example, floppy disk, hard disk, tape),
Optical medium (for example, DVD) or semiconductor medium (such as solid state disk (solid state disk, SSD)) etc..
It is apparent to those skilled in the art that for convenience and simplicity of description, the system of foregoing description,
The specific work process of device and unit, can refer to corresponding processes in the foregoing method embodiment, and details are not described herein.
In several embodiments provided herein, it should be understood that disclosed system, device and method can be with
It realizes by another way.For example, the apparatus embodiments described above are merely exemplary, for example, the unit
It divides, only a kind of division of logic function, formula that in actual implementation, there may be another division manner, such as multiple units or component
It can be combined or can be integrated into another system, or some features can be ignored or not executed.Another point, it is shown or
The mutual coupling, direct-coupling or communication connection discussed can be the indirect coupling by some interfaces, device or unit
It closes or communicates to connect, can be electrical, machinery or other forms.
The unit illustrated as separating component may or may not be physically separated, aobvious as unit
The component shown may or may not be physical unit, you can be located at a place, or may be distributed over multiple
In network element.Some or all of unit therein can be selected according to the actual needs to realize the mesh of this embodiment scheme
's.
In addition, each functional unit in each embodiment of the application can be integrated in a processing unit, it can also
It is that each unit physically exists alone, it can also be during two or more units be integrated in one unit.Above-mentioned integrated list
The form that hardware had both may be used in member is realized, can also be realized in the form of SFU software functional unit.
If the integrated unit is realized in the form of SFU software functional unit and sells or use as independent product
When, it can be stored in a computer read/write memory medium.Based on this understanding, the technical solution of the application is substantially
The all or part of the part that contributes to existing technology or the technical solution can be in the form of software products in other words
It embodies, which is stored in a storage medium, including some instructions are used so that a computer
Equipment (can be personal computer, server or the network equipment etc.) executes the complete of each embodiment the method for the application
Portion or part steps.And storage medium above-mentioned includes:USB flash disk, mobile hard disk, read-only memory (ROM, Read-Only
Memory), random access memory (RAM, Random Access Memory), magnetic disc or CD etc. are various can store journey
The medium of sequence code.
The above, above example are only to illustrate the technical solution of the application, rather than its limitations;Although with reference to before
Embodiment is stated the application is described in detail, it will be understood by those of ordinary skill in the art that:It still can be to preceding
The technical solution recorded in each embodiment is stated to modify or equivalent replacement of some of the technical features;And these
Modification or replacement, the spirit and scope of each embodiment technical solution of the application that it does not separate the essence of the corresponding technical solution.
Claims (10)
1. a kind of method of wind power plant digital Platform design, which is characterized in that including:
Acquisition source three-dimensional terrain model;
Design software of the source three-dimensional terrain model based on target profession is modeled, each target profession is obtained and corresponds to
Building Information Model;
By each target profession corresponding Building Information Model importing source three-dimensional terrain model, to obtain target simulator void
Quasi- farm model;
The virtual farm model of the target simulator is preserved to geographical information management platform, is digitized with obtaining the wind power plant
Platform.
2. according to the method described in claim 1, it is characterized in that, acquisition source three-dimensional terrain model includes:
The aerial photograph of target location is acquired by unmanned plane;
According to the aerial photograph of the target location, aerial triangulation resolving is carried out, to make the source three-dimensional terrain model.
3. according to the method described in claim 1, it is characterized in that, when the target profession includes civil engineering, electrical and wind energy when,
It is described to model design software of the source three-dimensional terrain model based on target profession, it obtains each target profession and corresponds to
Building Information Model include:
The source three-dimensional terrain model is distributed to the design software, the electrical design software and the wind energy of the civil engineering
Design software, to respectively obtain the Building Information Model, the electrical Building Information Model and the wind energy of the civil engineering
Building Information Model.
4. according to the method described in claim 1, it is characterized in that, the method further includes:
The virtual farm model of the target simulator is subjected to attributes edit and is uploaded to server, to carry out online management.
5. method according to claim 1 to 4, which is characterized in that the method further includes:
Receive object run of the user to the wind power plant digital Platform;
Result corresponding with the object run is shown to the user.
6. a kind of execution equipment, which is characterized in that including:
Acquiring unit, for obtaining source three-dimensional terrain model;
Modeling unit obtains described for modeling design software of the source three-dimensional terrain model based on target profession
The professional corresponding Building Information Model of each target;
Import unit, for the professional corresponding Building Information Model of each target to be imported the source three-dimensional terrain model, with
Obtain the virtual farm model of target simulator;
Storage unit, for preserving the virtual farm model of the target simulator to geographical information management platform, to obtain
State wind power plant digital Platform.
7. execution equipment according to claim 6, which is characterized in that the acquiring unit is specifically used for:
The aerial photograph of target location is acquired by unmanned plane;According to the aerial photograph of the target location, aerial triangle is carried out
It measures and resolves, to make the source three-dimensional terrain model.
8. execution equipment according to claim 6, which is characterized in that when the target profession includes civil engineering, electrical and wind
When energy, the modeling unit is specifically used for:The source three-dimensional terrain model is distributed to the design software of the civil engineering, the electricity
The design software of the design software of gas and the wind energy, to respectively obtain the Building Information Model, described electrical of the civil engineering
The Building Information Model of Building Information Model and the wind energy.
9. execution equipment according to claim 6, which is characterized in that the execution equipment further includes:
Uploading unit, for the virtual farm model of the target simulator to be carried out attributes edit and is uploaded to server, with into
Row online management.
10. the execution equipment according to any one of claim 6 to 9, which is characterized in that the execution equipment further includes:
Transmit-Receive Unit, for receiving object run of the user to the wind power plant digital Platform;
Display unit, for showing result corresponding with the object run to the user.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201810268706.4A CN108460834A (en) | 2018-03-28 | 2018-03-28 | A kind of method and relevant device of the design of wind power plant digital Platform |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201810268706.4A CN108460834A (en) | 2018-03-28 | 2018-03-28 | A kind of method and relevant device of the design of wind power plant digital Platform |
Publications (1)
Publication Number | Publication Date |
---|---|
CN108460834A true CN108460834A (en) | 2018-08-28 |
Family
ID=63237676
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201810268706.4A Pending CN108460834A (en) | 2018-03-28 | 2018-03-28 | A kind of method and relevant device of the design of wind power plant digital Platform |
Country Status (1)
Country | Link |
---|---|
CN (1) | CN108460834A (en) |
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111177814A (en) * | 2018-10-24 | 2020-05-19 | 国网浙江省电力有限公司 | Transformer substation engineering three-dimensional modeling method and system based on DEM data |
CN111177815A (en) * | 2018-10-24 | 2020-05-19 | 国网浙江省电力有限公司 | Method and system for temporarily building three-dimensional digital automatic layout of engineering construction |
CN111540044A (en) * | 2020-05-25 | 2020-08-14 | 上海宝冶市政工程有限公司 | Integration method and device for multi-professional comprehensive three-dimensional model and related equipment |
CN111832104A (en) * | 2020-06-24 | 2020-10-27 | 万翼科技有限公司 | Method for establishing three-dimensional equipment model and related equipment |
CN113936513A (en) * | 2021-05-06 | 2022-01-14 | 国家电投集团电站运营技术(北京)有限公司 | Three-dimensional visualization-based wind power plant training method, device and equipment |
Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102736593A (en) * | 2012-06-05 | 2012-10-17 | 吴光军 | Integrated platform system for remote management and control of wind power field cluster |
CN103699731A (en) * | 2013-12-19 | 2014-04-02 | 中铁第一勘察设计院集团有限公司 | Method for constructing real scene model collaborative design platform of railway engineering |
CN106528914A (en) * | 2016-09-21 | 2017-03-22 | 中国葛洲坝集团电力有限责任公司 | Montanic photovoltaic power station layout platform and layout method |
-
2018
- 2018-03-28 CN CN201810268706.4A patent/CN108460834A/en active Pending
Patent Citations (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102736593A (en) * | 2012-06-05 | 2012-10-17 | 吴光军 | Integrated platform system for remote management and control of wind power field cluster |
CN103699731A (en) * | 2013-12-19 | 2014-04-02 | 中铁第一勘察设计院集团有限公司 | Method for constructing real scene model collaborative design platform of railway engineering |
CN106528914A (en) * | 2016-09-21 | 2017-03-22 | 中国葛洲坝集团电力有限责任公司 | Montanic photovoltaic power station layout platform and layout method |
Non-Patent Citations (1)
Title |
---|
张小诺: "基于三维可视化技术的电厂地理信息系统设计与应用", 《工程勘察》 * |
Cited By (8)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111177814A (en) * | 2018-10-24 | 2020-05-19 | 国网浙江省电力有限公司 | Transformer substation engineering three-dimensional modeling method and system based on DEM data |
CN111177815A (en) * | 2018-10-24 | 2020-05-19 | 国网浙江省电力有限公司 | Method and system for temporarily building three-dimensional digital automatic layout of engineering construction |
CN111177815B (en) * | 2018-10-24 | 2023-11-03 | 国网浙江省电力有限公司 | Method and system for three-dimensional digital automatic layout of engineering construction temporary construction |
CN111177814B (en) * | 2018-10-24 | 2023-11-03 | 国网浙江省电力有限公司 | Transformer substation engineering three-dimensional modeling method and system based on DEM data |
CN111540044A (en) * | 2020-05-25 | 2020-08-14 | 上海宝冶市政工程有限公司 | Integration method and device for multi-professional comprehensive three-dimensional model and related equipment |
CN111832104A (en) * | 2020-06-24 | 2020-10-27 | 万翼科技有限公司 | Method for establishing three-dimensional equipment model and related equipment |
CN111832104B (en) * | 2020-06-24 | 2023-07-28 | 深圳市万翼数字技术有限公司 | Method for establishing three-dimensional equipment model and related equipment |
CN113936513A (en) * | 2021-05-06 | 2022-01-14 | 国家电投集团电站运营技术(北京)有限公司 | Three-dimensional visualization-based wind power plant training method, device and equipment |
Similar Documents
Publication | Publication Date | Title |
---|---|---|
US11302072B2 (en) | System for constructing urban design digital sand table | |
CN108460834A (en) | A kind of method and relevant device of the design of wind power plant digital Platform | |
CN112035983A (en) | Urban medium-voltage power grid planning and designing platform based on three-dimensional real scene | |
CN106779417A (en) | The collection of engineering investigation information digitalization, management and integrated application method | |
JP2004523832A (en) | Methods and systems for modeling and managing terrain, buildings, and infrastructure | |
CN108765567A (en) | A kind of system for building urban design digitlization sand table | |
CN108491649A (en) | A kind of design method and processing equipment of wind power plant digital Platform | |
CN102708587A (en) | Method and system for acquiring three-dimensional building information rapidly | |
CN110362895B (en) | Land acquisition removal application management system based on BIM + GIS technology | |
CN116486025A (en) | Urban geological data processing platform based on big data cloud computing technology | |
CN104006805A (en) | Electric power engineering field reconnaissance method based on mobile GIS | |
CN106412526A (en) | Police oblique-photography real 3D platform system and interface system thereof | |
CN113570275A (en) | Water resource real-time monitoring system based on BIM and digital elevation model | |
CN106874567A (en) | A kind of WLAN project planning Visual Design Systems based on CAD diagram shape | |
CN113887939A (en) | BIMGIS-based cloud rendering energy storage hydraulic power plant digital delivery implementation method, system, storage medium and equipment | |
CN105261067A (en) | Overground and underground integrated modeling method based on true 3D volumetric display technique and system | |
CN116385693A (en) | Offshore wind power visual display method, offshore wind power visual display system and computer-readable storage medium | |
CN108492367A (en) | A kind of wind power plant methods of exhibiting and wind power plant display systems | |
Teng et al. | Extraction and Analysis of Spatial Feature Data of Traditional Villages Based on the Unmanned Aerial Vehicle (UAV) Image | |
CN118094196B (en) | Land utilization planning method and planning system based on data analysis | |
CN108491530A (en) | A kind of Spatial GIS | |
CN112907732A (en) | Three-dimensional modeling based cooperative working method and device, storage medium and computer equipment | |
CN117371949B (en) | Three-dimensional visual model-based power transmission line construction safety monitoring method and system | |
CN112328666A (en) | Intelligent building supervision operation and maintenance system based on cloud platform technology | |
CN109542062A (en) | Resource environment dynamic digital monitor control system and method, information data processing terminal |
Legal Events
Date | Code | Title | Description |
---|---|---|---|
PB01 | Publication | ||
PB01 | Publication | ||
SE01 | Entry into force of request for substantive examination | ||
SE01 | Entry into force of request for substantive examination | ||
RJ01 | Rejection of invention patent application after publication |
Application publication date: 20180828 |
|
RJ01 | Rejection of invention patent application after publication |