CN105117982A - Visual display method of business data on the basis of tower entity - Google Patents
Visual display method of business data on the basis of tower entity Download PDFInfo
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- CN105117982A CN105117982A CN201510534495.0A CN201510534495A CN105117982A CN 105117982 A CN105117982 A CN 105117982A CN 201510534495 A CN201510534495 A CN 201510534495A CN 105117982 A CN105117982 A CN 105117982A
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Abstract
The invention discloses a visual display method of business data on the basis of a tower entity. The method comprises the following steps: according to line information, through the logic judgment of .Net, determining that equipment model elements associated with a line tower comprise a component model, a geographical environment characteristic model, and a monitoring equipment model or scene; and then, combining .Net with a Unity 3D technology, obtaining relevant data through an interface, and realizing the visual display of the business data on the basis of the tower entity. The visual display method visually reflects the morphological characteristics of the business entity, the geographical environment of the entity, and the current state information, including production, management and the like, of the entity on the basis of the existing environment, also realizes information expression based on the scene and more visual, accurate and comprehensive information visualization expression and application, improves an information use ratio and effectively supports the diversity and the efficiency of management tools.
Description
Technical field
The present invention relates to electric power line pole tower equipment control field, specifically a kind of business datum visual presentation method based on shaft tower entity.
Background technology
More existing operation systems are purchased and have been installed certain on-line monitoring equipment, realize monitoring, have in production and administration process some history precipitate and Real-time Collection be born data; Meanwhile, also there is the application being supported site work by mobile terminal.But based on the limitation of technical merit, the representing to rest on application level of these data carries and expressing information in the mode of design drawing, plain text, graphical diagrams always.Make information directly perceived not, not accurate enough, comprehensive not in expression; Make the people of different age brackets, the people of different knowledge hierarchy, the people of different functional role, can deviation be produced to the understanding of same information; And then information is lacked gradually in the process transmitted, weaken the quantity of information that data itself carry.Finally, have impact on the utilization factor to information entirety and application level, the degree of depth causes the waste of information assets, make to jeopardize safe operation of electric network, outwardness and implicit factor is hidden, and progressively diffusion is come, and gradually affects power grid security.
Summary of the invention
The object of the present invention is to provide a kind of business datum visual presentation method based on shaft tower entity, the present invention is based on the business datum of electric power line pole tower Business Entity, merge .Net and Unity3D technology, obtain related data by interface, realize the business datum visual presentation based on shaft tower entity; Directly perceived, accurate, the most complete Informational Expression is achieved to business datum, for electric power line pole tower equipment control provides effective decision support.
For achieving the above object, the invention provides following technical scheme:
Based on a business datum visual presentation method for shaft tower entity, concrete steps are:
(1) Data acquisition, is to regular: collect, arrange the existing basic data relevant with shaft tower and information; On-the-spot at shaft tower and monitoring equipment installation position, gather, collect the landform circle of equal altitudes of current location, and relevant topographical surface feature, the photo of corridor and video data;
(2) 3dmax builds model element: with reference to collecting and regular data, use 3dmax to carry out modeling to the model element of scene, then uniform packing forms FBX file and derives;
(3) Unity3D makes scape and customizes with interactive: in Unity3D, the three-dimensional scenic of the model element tectonic line line pole tower adopting step (2) to set up, and the feature of model element, scene composition and position are corrected, define simultaneously based on scene lens zoom, move up and down, the interface of scene walkthrough, and monitoring equipment, personnel's model click event interface, shaft tower body line corresponding to wire A, B, C and conductor temperature, shaft tower inclination Monitoring Data realize interactive application interface; And adopt Unity3D to read FBX file, formulate the interactive application interface of open scene monitoring equipment and model element, then derive binary sc based on Unity3D, binary scene information stored in database, and realize relationship maps with shaft tower; For the space multistory scene of the overhead line structures dynamic load association of formulating;
(4) data channel is constructed: based on the data acquisition interface of existing business system, by .NetWebService technology, obtain the data-interface to the arrangement of path monitoring equipment and monitoring information, and the data-interface of staff's real time job information of handheld mobile device site work; And then realize constructing the passage that overhead line structures entity obtains business datum from existing system;
(5) business datum is visual: merge .Net and Unity3D technology, obtain related data, realize the business datum visual presentation based on shaft tower entity by data-interface; Concrete steps are: according to certain line information, first by the Logic judgment of .Net, determine the device model element associated with these overhead line structures, specifically comprise: component model, Characters of Geographical Environment model, monitoring equipment model or scene, and Monitoring Data information, the site work information of association; Then load the morphological feature of the shaft tower entity of this circuit and its load monitoring equipment in conjunction with Unity3D Technique dynamic and there is the spatial three-dimensional virtual scene of geographical environment; And automatically start data acquisition interface, at interval of the Monitoring Data of the 3-7 second of active obtaining current shaft tower load monitoring equipment at least one times, and present online monitoring data based on scene at monitoring equipment installation site dynamically interactive type; For the information of type of alarm, then use .Net and DirectX call operation system sounds assembly to carry out there is acoustic alarm, and tower bar reflect the dynamic tilt of Monitoring Data state based on scene, the animation flicker of the corresponding line temperature overheating of wire is played up to use .Net, Unity3D and JavaScript to realize; Simultaneously, staff's online assignment information of the current shaft tower position of Dynamic Acquisition, present operating personnel 3D model, name and head portrait characteristic information, service line and shaft tower positional information based on scene at shaft tower position dynamic similation, and the operational data collection of text, photo and video and submit to information; Finally, based on business or management entity form and the space multistory virtual environment that there is environment, realize reflection Business Entity production status and the data visualization of supervisor status information, and realize moving based on the visual angle of scene, rotate, the interacting sexual experience application function of convergent-divergent.
As the further scheme of the present invention: in step (1), existing basic data and information comprise existing bar position detail list, KML file, pole and tower design drawing and CAD topomap.
As the further scheme of the present invention: the concrete steps of step (2) are: a) established model element: according to height, width, structure, parts, the material of shaft tower, and topographic contour or satellite mapping, use 3dmax to set up the model element of shaft tower, shaft tower line, landform, soil, vegetation, sky; B) material is composed: true material is composed to above model element; C) built-up pattern element: by one, above element combinations city overall scenario; D) simulating nature light source: effect of shadow process is carried out to scene; E) FBX file is derived: by dividing element with a whole shaft tower, the vegetation of a type derives .FBX file separately.
As the further scheme of the present invention: in step (3), interactive application interface comprises: by the installation site of monitoring equipment at overall scenario, to the click event DLL (dynamic link library) that monitoring equipment is formulated, for realizing dynamic interaction function for remote scene staff based on shaft tower three-dimensional scenic, for tower and conductor A, B, C line realizes visual representing function based on the Monitoring Data of shaft tower scene; Also comprise based on monitoring equipment formulate the interactive functional interface of scene rotation, scene moves interactive functional interface and scene shrinks interactive functional interface.
Compared with prior art, the invention has the beneficial effects as follows:
The present invention not only achieves morphological feature that reflection Business Entity directly perceived exists and the geographical environment that entity exists, and entity based on exist environment current residing for the status information of the aspect such as production and administration; Also achieve the information representation based on scene, and more directly perceived, accurately, comprehensively information visualization performance and application, improve the utilization factor of information, can the effectively diversity of support and management means and high efficiency.
Accompanying drawing explanation
Fig. 1 is the treatment scheme schematic diagram of the business datum visual presentation method based on shaft tower entity.
Embodiment
Be described in more detail below in conjunction with the technical scheme of embodiment to this patent.
Somewhere circuit shaft tower is provided with shaft tower and tilts online monitoring equipment, conductor temperature on-line monitoring equipment, and device security is reliable, steady in a long-term to be run, after input application, create certain data.According to line management code, staff need periodically and routine tour work is carried out to overhead line structures scene, and be equipped with hand-held mobile intelligence terminal, to carry out data record to tour and to report for staff.So the present situation of combined circuit shaft tower management, by adopting this method and technology, realizes " the business datum visual presentation based on shaft tower entity ", the pattern of innovation line management and means.
Refer to Fig. 1, a kind of business datum visual presentation method based on shaft tower entity, concrete steps are:
(1) Data acquisition, is to regular: collect, arrange the existing basic data relevant with shaft tower and information; At shaft tower and monitoring equipment installation position scene, the relevant topographical surface feature of collection, the photo of corridor and video data; Wherein, existing basic data and information comprise existing bar position detail list, KML file, pole and tower design drawing and CAD topomap.
(2) 3dmax builds model element: with reference to collecting and regular data, use 3dmax to carry out modeling to the model element of scene, then uniform packing forms FBX file and derives; Concrete steps are: a) established model element: according to height, width, structure, parts, the material of shaft tower, and topographic contour or satellite mapping, use 3dmax to set up the model element of shaft tower (comprise all gold utensils on it, tilt monitoring and conductor temperature monitoring equipment etc.), shaft tower line, landform, soil, vegetation, sky; B) material is composed: true material is composed to above model element; C) built-up pattern element: by one, above element combinations city overall scenario; D) simulating nature light source: effect of shadow process is carried out to scene; E) FBX file is derived: by dividing element with a whole shaft tower, the vegetation of a type derives .FBX file separately.
(3) Unity3D makes scape and customizes with interactive: in Unity3D, the three-dimensional scenic of the model element tectonic line line pole tower adopting step (2) to produce, and the feature of model element, scene composition and position are corrected, define based on the lens zoom of scene, the interface that moves up and down simultaneously, and monitoring equipment, personnel's model click event interface; And adopt Unity3D to read FBX file, formulate the interactive application interface of open scene monitoring equipment and model element, then derive binary sc based on Unity3D, binary scene information stored in database, and realize relationship maps with shaft tower; For the space multistory scene of the overhead line structures dynamic load association of formulating.Wherein, interactive application interface comprises: by the installation site of monitoring equipment at overall scenario, to the click event DLL (dynamic link library) (for Dynamic Acquisition and displaying monitoring equipment monitoring information realize path) that monitoring equipment is formulated, and the interactive functional interface of scene rotation to formulate based on monitoring equipment, scene moves interactive functional interface and scene shrinks interactive functional interface, and based on the interaction interface that the Monitoring Data of scene has acoustic alarm, the dynamic tilt of shaft tower, wire phase line temperature dynamic play up performance.
(4) data channel is constructed: based on the data acquisition interface of existing business system, by .NetWebService technology, obtain the data-interface to the arrangement of path monitoring equipment and monitoring information, and the data-interface of staff's real time job information of handheld mobile device site work; And then realize constructing the passage that overhead line structures entity obtains business datum from existing system.
(5) business datum is visual: merge .Net and Unity3D technology, obtain related data, realize the business datum visual presentation based on shaft tower entity by data-interface; Concrete steps are: according to certain line information, first by the Logic judgment of .Net, determine the device model element associated with these overhead line structures, specifically comprise: component model, Characters of Geographical Environment model, monitoring equipment model or scene; Then load the morphological feature of the shaft tower entity of this circuit and its load monitoring equipment in conjunction with Unity3D Technique dynamic and there is the spatial three-dimensional virtual scene of geographical environment; And automatically start data acquisition interface, at interval of 3-7 second (the being preferably 5 seconds) monitoring of active obtaining current shaft tower load monitoring equipment and work data at least one times, and present online monitoring data based on scene at monitoring equipment installation site dynamically interactive type; For the information of type of alarm, then use .Net and DirectX call operation system sounds assembly to carry out there is acoustic alarm, and shaft tower reflect the dynamic tilt of Monitoring Data state based on scene, the animation flicker of wire phase line temperature overheating is played up to use .Net, Unity3D and JavaScript to realize; Simultaneously, staff's online assignment information of the current shaft tower position of Dynamic Acquisition, present operating personnel 3D model, name and head portrait characteristic information, service line and shaft tower positional information based on scene at shaft tower position dynamic similation, and the operational data collection of text, photo and video and submit to information; Finally, based on business or management entity form and the space multistory virtual environment that there is environment, realize reflection Business Entity production status and the data visualization of supervisor status information, and realize moving based on the visual angle of scene, rotate, the interacting sexual experience application function of convergent-divergent.
In the present invention, the concrete methods of realizing of step (5) is as follows:
(5.1) the public Web page organization and management of Html is set up based on the data display of shaft tower scene and interaction;
(5.2) realize loading Unity3d shaft tower scene based on (5.1), loading method is as follows:
varconfig={params:{enableDebugging:"0",logoimage:"logo.png",disableContextMenu:true}};
varu=newUnityObject2(config);
jQuery(function(){
var$missingScreen=jQuery("#unityPlayer").find(".missing");
var$brokenScreen=jQuery("#unityPlayer").find(".broken");
$missingScreen.hide();
$brokenScreen.hide();
u.observeProgress(function(progress){
switch(progress.pluginStatus){
case"broken":
$brokenScreen.find("a").click(function(e){
e.stopPropagation();
e.preventDefault();
u.installPlugin();
returnfalse;
});
$brokenScreen.show();
break;
case"missing":
$missingScreen.find("a").click(function(e){
e.stopPropagation();
e.preventDefault();
u.installPlugin();
returnfalse;
});
$missingScreen.show();
break;
case"installed":
$missingScreen.remove();
break;
case"first":
break;
}
});
u.initPlugin(jQuery("#unityPlayer")[0],"publish.unity3d");
});
(5.3) based on interactive event and the response results of (5.1) definition and shaft tower scene and load monitoring equipment;
Technical method is:
A) SaySomethingToWeb (pid, gtId) is defined;
B) when specific monitoring equipment is clicked, Unity3d imports device id (pid), shaft tower ID(gtId into method), the web page of HTML judges concrete equipment according to pid, accesses specific .Net and realizes page loading corresponding data.As, work as pid==0, then:
$ (" #xjInfo ") .html (" <IFRAMEsrc='PatrolInfo.aspx gtid="+gtId+ " ' ></IFRAME> "); (add timing please peek, fixed position);
(5.4) simulation and the displaying of Monitoring Data is realized based on (5.1); According to conductor temperature Monitoring Data analog conducting wire temperature variation, according to shaft tower inclination Monitoring Data simulation shaft tower inclination conditions.Temperature variation analogue technique method:
A) temp=JsonMapper.ToObject<TemperatureGreatT. GreaT.GT (www.text), serializing conductor temperature object;
B) according to different conductor temperature data, dynamically replace the material of shaft tower wire gameobject object, green expression is normal, yellow represents early warning, red for alarm.Implementation algorithm is as follows:
if(temp.Degree<30)
{
GameObject.Find(temp.Name).GetComponent<Renderer>().material.color=Color.red;
}
elseif(temp.Degree>=30&&temp.Degree<=60)
{
GameObject.Find(temp.Name).GetComponent<Renderer>().material.color=Color.green;
}
else
{
GameObject.Find(temp.Name).GetComponent<Renderer>().material.color=Color.yellow;
};
Shaft tower tilts to simulate technical method:
A) obtain landform, specify the normal on topographical position
Vector3vect=terrain.terrainData.GetInterpolatedNormal(x/terrain.terrainData.size.x,terrain.terrainData.size.z)
B) angle of inclination is set
Vector3rotaion=Vector3.zero
rotation.x=Mathf.Rad2Deg*Mathf.Atan2(normal.z,normal.y)
rotation.z=360-Mathf.Rad2Deg*Mathf.Atan2(normal.x,normal.y)
C) shaft tower is set the anglec of rotation is set in x-axis He in z-axis
gameObj.transform.localRotation=Quaternion.Euler(rotation)
(5.5) realize based on (5.1) simulation and the displaying of making an inspection tour bit data;
A) tour personnel GPS location is obtained
Stringprovider=loctionManager.getBestProvider(criteria,true);
Locationlocation=loctionManager.getLastKnownLocation(provider);
B) obtain mobile phone string number, association identifies personal information
TelephonyManagertelephonemanage=(TelephonyManager)context.getSystemService(Context.TELEPHONY_SERVICE);
C) according to a), b) loading personnel characteristics's model identification in shaft tower scene dynamics;
D) realize click personnel model by (5.3), show relevant tour operational data.
The present invention is based on shaft tower scene, show tour operational data that is current and history.If there is tour staff at shaft tower scene, dynamically represent staff in scene; In monitoring equipment installation site, when clicking shaft tower reclining device, conductor temperature monitoring equipment, the Monitoring Data of the corresponding current and history of Dynamic Display.When shaft tower inclination Monitoring Data arrives pre-set threshold value, the shaft tower in scene, by the orientation that reflects according to Monitoring Data and angular slope, reappears on-the-spot shaft tower sight.When transmission pressure temperature reaches the threshold values of monitoring and presetting, conductor part A, B, C three phase dynamic will play up transmission pressure color in shaft tower scene, to illustrate temperature over-range, concrete yellow expression early warning, red for alarm, green represent normal; When clicking the tour personnel in scene, the operational data of the current and history of Dynamic Display personnel.
The present invention not only achieves morphological feature that reflection Business Entity directly perceived exists and the geographical environment that entity exists, and entity based on exist environment current residing for the status information of the aspect such as production and administration; Also achieve the information representation based on scene, and more directly perceived, accurate, comprehensively information visualization performance and application; Improve the utilization factor of information, can the effectively diversity of support and management means and high efficiency.
Above the better embodiment of this patent is explained in detail, but this patent is not limited to above-mentioned embodiment, in the ken that one skilled in the relevant art possesses, can also makes a variety of changes under the prerequisite not departing from this patent aim.
Claims (4)
1. based on a business datum visual presentation method for shaft tower entity, it is characterized in that, concrete steps are:
(1) Data acquisition, is to regular: collect, arrange the existing basic data relevant with shaft tower and information; On-the-spot at shaft tower and monitoring equipment installation position, gather, collect the landform circle of equal altitudes of current location, and relevant topographical surface feature, the photo of corridor and video data;
(2) 3dmax builds model element: with reference to collecting and regular data, use 3dmax to carry out modeling to the model element of scene, then uniform packing forms FBX file and derives;
(3) Unity3D makes scape and customizes with interactive: in Unity3D, the three-dimensional scenic of the model element tectonic line line pole tower adopting step (2) to set up, and the feature of model element, scene composition and position are corrected, define simultaneously based on scene lens zoom, move up and down, the interface of scene walkthrough, and monitoring equipment, personnel's model click event interface, shaft tower body line corresponding to wire A, B, C and conductor temperature, shaft tower inclination Monitoring Data realize interactive application interface; And adopt Unity3D to read FBX file, formulate the interactive application interface of open scene monitoring equipment and model element, then derive binary sc based on Unity3D, binary scene information stored in database, and realize relationship maps with shaft tower; For the space multistory scene of the overhead line structures dynamic load association of formulating;
(4) data channel is constructed: based on the data acquisition interface of existing business system, by .NetWebService technology, obtain the data-interface to the arrangement of path monitoring equipment and monitoring information, and the data-interface of staff's real time job information of handheld mobile device site work; And then realize constructing the passage that overhead line structures entity obtains business datum from existing system;
(5) business datum is visual: merge .Net and Unity3D technology, obtain related data, realize the business datum visual presentation based on shaft tower entity by data-interface; Concrete steps are: according to certain line information, first by the Logic judgment of .Net, determine the device model element associated with these overhead line structures, specifically comprise: component model, Characters of Geographical Environment model, monitoring equipment model or scene, and Monitoring Data information, the site work information of association; Then load the morphological feature of the shaft tower entity of this circuit and its load monitoring equipment in conjunction with Unity3D Technique dynamic and there is the spatial three-dimensional virtual scene of geographical environment; And automatically start data acquisition interface, at interval of the Monitoring Data of the 3-7 second of active obtaining current shaft tower load monitoring equipment at least one times, and present online monitoring data based on scene at monitoring equipment installation site dynamically interactive type; For the information of type of alarm, then use .Net and DirectX call operation system sounds assembly to carry out there is acoustic alarm, and tower bar reflect the dynamic tilt of Monitoring Data state based on scene, the animation flicker of the corresponding line temperature overheating of wire is played up to use .Net, Unity3D and JavaScript to realize; Simultaneously, staff's online assignment information of the current shaft tower position of Dynamic Acquisition, present operating personnel 3D model, name and head portrait characteristic information, service line and shaft tower positional information based on scene at shaft tower position dynamic similation, and the operational data collection of text, photo and video and submit to information; Finally, based on business or management entity form and the space multistory virtual environment that there is environment, realize reflection Business Entity production status and the data visualization of supervisor status information, and realize moving based on the visual angle of scene, rotate, the interacting sexual experience application function of convergent-divergent.
2. the business datum visual presentation method based on shaft tower entity according to claim 1, is characterized in that, in step (1), existing basic data and information comprise existing bar position detail list, KML file, pole and tower design drawing and CAD topomap.
3. the business datum visual presentation method based on shaft tower entity according to claim 1 and 2, it is characterized in that, the concrete steps of step (2) are: a) established model element: according to height, width, structure, parts, the material of shaft tower, and topographic contour or satellite mapping, use 3dmax to set up the model element of shaft tower, shaft tower line, landform, soil, vegetation, sky; B) material is composed: true material is composed to above model element; C) built-up pattern element: by one, above element combinations city overall scenario; D) simulating nature light source: effect of shadow process is carried out to scene; E) FBX file is derived: by dividing element with a whole shaft tower, the vegetation of a type derives .FBX file separately.
4. the business datum visual presentation method based on shaft tower entity according to claim 3, it is characterized in that, in step (3), interactive application interface comprises: by the installation site of monitoring equipment at overall scenario, to the click event DLL (dynamic link library) that monitoring equipment is formulated, for realizing dynamic interaction function for remote scene staff based on shaft tower three-dimensional scenic, for tower and conductor A, B, C line realizes visual representing function based on the Monitoring Data of shaft tower scene; Also comprise based on monitoring equipment formulate the interactive functional interface of scene rotation, scene moves interactive functional interface and scene shrinks interactive functional interface.
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Cited By (5)
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CN105955230A (en) * | 2016-07-19 | 2016-09-21 | 南京航空航天大学 | Intelligent manufacturing workshop real-time monitoring method based on Unity 3D |
CN108960553A (en) * | 2017-05-27 | 2018-12-07 | 中国石油化工股份有限公司 | A kind of visualizing monitor method of drillng operation information and risk |
CN110709891A (en) * | 2017-12-26 | 2020-01-17 | 深圳市柔宇科技有限公司 | Virtual reality scene model establishing method and device, electronic equipment and storage medium |
CN113408572A (en) * | 2021-05-11 | 2021-09-17 | 华建数创(上海)科技有限公司 | Unreal engine-based data model fusion method capable of being configured remotely |
CN115379192A (en) * | 2022-08-12 | 2022-11-22 | 甘肃送变电工程有限公司 | Panoramic 3D display system and method for monitoring iron tower inclination |
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN105955230A (en) * | 2016-07-19 | 2016-09-21 | 南京航空航天大学 | Intelligent manufacturing workshop real-time monitoring method based on Unity 3D |
CN105955230B (en) * | 2016-07-19 | 2020-05-12 | 南京航空航天大学 | Real-time monitoring method of intelligent manufacturing workshop based on Unity3D |
CN108960553A (en) * | 2017-05-27 | 2018-12-07 | 中国石油化工股份有限公司 | A kind of visualizing monitor method of drillng operation information and risk |
CN110709891A (en) * | 2017-12-26 | 2020-01-17 | 深圳市柔宇科技有限公司 | Virtual reality scene model establishing method and device, electronic equipment and storage medium |
CN113408572A (en) * | 2021-05-11 | 2021-09-17 | 华建数创(上海)科技有限公司 | Unreal engine-based data model fusion method capable of being configured remotely |
CN115379192A (en) * | 2022-08-12 | 2022-11-22 | 甘肃送变电工程有限公司 | Panoramic 3D display system and method for monitoring iron tower inclination |
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Application publication date: 20151202 |