CN201540484U - Infrastructure construction on-site construction state management system - Google Patents

Infrastructure construction on-site construction state management system Download PDF

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Publication number
CN201540484U
CN201540484U CN2009202774622U CN200920277462U CN201540484U CN 201540484 U CN201540484 U CN 201540484U CN 2009202774622 U CN2009202774622 U CN 2009202774622U CN 200920277462 U CN200920277462 U CN 200920277462U CN 201540484 U CN201540484 U CN 201540484U
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China
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model
camera
project
coordinate
input interface
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Expired - Fee Related
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CN2009202774622U
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Chinese (zh)
Inventor
战秀河
袁敬中
万明忠
蒋荣安
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BEIJING NORTH-STAR TECHNOLOGY DEVELOPMENT Co Ltd
Hua Lian Beijing Power Engineering Supervision Cos
State Grid Corp of China SGCC
North China Grid Co Ltd
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BEIJING NORTH-STAR TECHNOLOGY DEVELOPMENT Co Ltd
North China Grid Co Ltd
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Priority to CN2009202774622U priority Critical patent/CN201540484U/en
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Abstract

The utility model provides an infrastructure construction on-site construction state management system which is characterized by comprising a video capture network, a video transmission network, a camera coordinate list, a schedule data input interface, a system database, a coordinate data input interface, a model coordinate integrating module, a monitor message integrating module and a control console. The management system can be used for integrating on-site monitoring data in multiple aspects such as on-site real-time video, project schedule data, project model drawing, mapping coordinate parameters and the like, thus forming comprehensive monitor signals to be output outside. By adopting the monitor management way, a manager can more visually and completely obtain real-time monitor information and is beneficial to enhancing macroscopic cognition of a manager on line construction, thus improving the efficiency of project management.

Description

Infrastructure project site operation system for managing state
Technical field
The utility model relates to a kind of management system of infrastructure project site operation state, and is particularly a kind of at the management system that can carry out the real-time visual monitoring in the power grid construction work progress to the construction state, belongs to the electricity power engineering technical field of construction.
Background technology
Build under the situation in national information, the information work of power grid construction launches gradually.Some designing institutees, universities and colleges, Utilities Electric Co. have made a lot of research work at the information work of transmission line construction and transformer substation construction both at home and abroad, and various software systems of serving the power construction industry have appearred, relate to units such as engineering management all departments and design, management, construction, formed many application systems that project progress, quality, cost, equipment etc. are managed.But the ladder of management of at present domestic power information management system is more single, can't satisfy the imagery requirement that the user increases day by day.For the construction management of engineering, the report data that generally is based on constituent parts is carried out data preparation and statistics.So data exhibiting provides perception, comprehensively cognitive can't for supvr and builder.And the technology of three-dimensional visualization is incorporated into the electricity power engineering construction field, then can reach the effect of visualized management and visualize cognition.
At present, existing relevant enterprise has been released " digital sand table " technology.This technology is that extra large Bearing score technology is applied to new technology in the engineering management of line project, allows the user can see on-the-spot landform, landforms in interface, three-dimensional visualization ground, thereby has realized the three-dimensional visualization management of line project.The three-dimensional visualization management of line project makes managerial personnel stronger for the macroscopic view understanding of line project, and the efficient of engineering management is improved.Yet infrastructure project not only comprises line project, has also comprised Other Engineering construction such as substation project.The line project management that only relies on above-mentioned " digital sand table " technology to realize can't be satisfied the management expectancy of monitoring is in real time realized in each working-yard, lacks integration management and fan-out capability to various monitor messages in the whole infrastructure project.Therefore, we are necessary to improve on the basis of this management system.
Summary of the invention
Fundamental purpose of the present utility model is to solve problems of the prior art, provides a kind of at the management system that can carry out the real-time visual monitoring in the power grid construction work progress to the construction state.
The purpose of this utility model is achieved by following technical proposals:
A kind of infrastructure project site operation system for managing state is characterized in that: comprise video acquisition network, video delivery network, camera list of coordinates, progress data input interface, system database, coordinate data input interface, model coordinate integrate module, monitor message integrate module and control desk;
Described video acquisition network reaches the some cameras that are connected with this video server by some video servers and constitutes; Described each camera is installed in each working-yard and catches the construction picture in real time; Described each camera links to each other with video server, and by video delivery network vision signal is transmitted back to described camera list of coordinates by video server;
Described progress data input interface is uploaded engineering progress data for each unit in charge of construction; This progress data input interface and system database are sent to system database with the engineering progress data of being uploaded;
Described system database includes the engineering model database; Store the illustraton of model in the engineering construction in this project model database in advance; This project model database is exported the pairing illustraton of model group of current project progress to model coordinate integrate module according to the engineering progress data that the progress data input interface sends;
Described coordinate data input interface is for the position coordinate data of surveying and mapping unit's input in the whole works scope that mapping obtains; Riches all the way delivers to model coordinate integrate module for the position coordinate data of this coordinate data input interface input, and another road is sent to the camera list of coordinates;
Vision signal and position coordinate data that described camera list of coordinates is caught according to each camera of import generate the corresponding lists of each camera and its position coordinate, call for the monitor message integrate module;
Pairing illustraton of model group of current project progress and position coordinate data that described model coordinate integrate module will be imported are integrated, and the illustraton of model group after will integrating is sent to the monitor message integrate module;
The camera of required supervision and the illustraton of model after the coordinate integration are called in controlled control of described monitor message integrate module from camera list of coordinates and model coordinate integrate module, and vision signal and illustraton of model that camera is caught are integrated output.
Also be provided with the project progress plan database in the described system database; Store the planning data of construction speed in this project schedule database in advance; This project schedule database will be compared by progress data input interface engineering progress data that sends and the engineering construction schedule data of storing in advance, generate corresponding comparison data and export.
Realize video signal transmission by wired and/or wireless communication modes between described camera and the video server.
Described wire communication mode adopts the LAN net to realize; Described wireless communication mode adopts the WIFI net to realize.
The beneficial effects of the utility model are: this management system is externally exported thereby form comprehensive pilot signal by many-sided on-site supervision data such as on-the-spot real-time video, engineering progress data, engineering model figure and mapping coordinate parameters are integrated.By such monitoring management mode, the supvr can more intuitively, comprehensively obtain real-time monitor message, helps the supvr and strengthens the macroscopic view of line project is familiar with, and improves the efficient of engineering management.
Description of drawings
Fig. 1 is the system construction drawing of infrastructure project site operation system for managing state.
Embodiment
Below in conjunction with drawings and Examples the utility model is further described.
Fig. 1 is the system construction drawing of this infrastructure project site operation system for managing state.As shown in the figure, this system comprises: video acquisition network, video delivery network, camera list of coordinates, progress data input interface, system database, coordinate data input interface, model coordinate integrate module, monitor message integrate module and control desk.
Described video acquisition network reaches the some cameras that are connected with this video server by some video servers and constitutes.Described each camera is installed in each working-yard and catches the construction picture in real time.Described each camera is sent to the video server place nearest with it with the vision signal of being caught, and by video delivery network this vision signal is transmitted back to camera list of coordinates in the management system terminal by this video server.Described camera is connected with communication between the video server and can adopts LAN net to wait the cable network mode to realize, can also adopt mode such as wireless network such as WIFI net grade to realize.Wherein, adopt the wireless network mode to realize that communication connects and be more suitable for to overcome the problem of difficult wiring under this environment like this, reach and simplify construction, the purpose of fast construction at some landform complex environment comparatively.This video delivery network can adopt general communication network to realize, here just introduces no longer especially.
Described progress data input interface externally provides an interface for management system terminal, uploads engineering progress data for each unit in charge of construction.This progress data input interface and system database are sent to system database with the engineering progress data of being uploaded.
Described system database includes the engineering model database.Store the partial model figure that draws good engineering construction each equipment in the schematic model figure in each stage and the engineering in this project model database in advance.This project model database is exported the pairing illustraton of model group of current project progress to model coordinate integrate module according to the engineering progress data that the progress data input interface sends.
Described coordinate data input interface externally provides another interface for management system terminal, for the position coordinate data of surveying and mapping unit's input in the whole works scope that mapping obtains.This position coordinate data is the longitude and latitude coordinate of each working-yard normally.Riches all the way delivers to model coordinate integrate module for position coordinate data by the input of this coordinate data input interface, and another road is sent to the camera list of coordinates.
Two input ends of described camera list of coordinates are imported vision signal that each camera of being sent by video delivery network catches and the position coordinate data that is sent by the coordinate data input interface respectively.Vision signal and position coordinate data that this camera list of coordinates is caught according to each camera of import generate the corresponding lists of each camera and its position coordinate, call for the monitor message integrate module.
Pairing illustraton of model group of current project progress and position coordinate data that described model coordinate integrate module will be imported are integrated, and make each illustraton of model and position coordinates in this illustraton of model group set up corresponding relation.Illustraton of model group after this model coordinate integrate module will be integrated is sent to the monitor message integrate module.
The informix integrate module that described monitor message integrate module is this management system.The camera of required supervision and the illustraton of model after the coordinate integration are called in controlled control of this module from camera list of coordinates and model coordinate integrate module, and vision signal and illustraton of model that camera is caught are integrated output.
As seen, the infrastructure project site operation system for managing state of forming according to said structure, by many-sided on-site supervision data such as on-the-spot real-time video, engineering progress data, engineering model figure and mapping coordinate parameters are integrated, externally export thereby form comprehensive pilot signal.The comprehensively monitoring signal of this output can simulate the virtual scene of working-yard according to the position and the construction state of equipment.The user clicks a certain equipment in the scene, and the with it related camera network address is searched by contingency table by system, and according to pre-configured camera presetting bit, and the real-time video of camera is inserted and is presented in the video window of ejection.Meanwhile, the user also can obtain the control of camera, the direct control camera, and the visual angle and the focal length of change camera are checked the construction speed in the practice of construction scene.For near a plurality of cameras the equipment, can open a plurality of video windows, check the working-yard with different angles.By such monitoring management mode, the supvr can more intuitively, comprehensively obtain real-time monitor message, helps the supvr and strengthens the macroscopic view of line project is familiar with, and improves the efficient of engineering management.
Except said structure, this management system also can be provided with a project progress plan database in described system database.Store the planning data of whole engineering construction progress in this project schedule database in advance.This project schedule database will be by being compared by progress data input interface engineering progress data that sends and the engineering construction schedule data of storing in advance, automatically carry out project progress hysteresis and quantitative analysis in advance, and generate histogram, cake chart and/or detailed data form, directly externally export.
By above-mentioned analysis export structure mechanism, this system not only can export signal directly perceived such as the real-time video of each engineering equipment and engineering model figure, can also as the traditional circuit project management system, export corresponding progress comparative analysis data, so that the supvr of traditional custom management mode obtains the comparative analysis data.
In sum, it is a kind of at the management system that can carry out the real-time visual monitoring in the power grid construction work progress to the construction state that this patent provides, this system externally exports thereby form comprehensive pilot signal by many-sided on-site supervision data such as on-the-spot real-time video, engineering progress data, engineering model figure and mapping coordinate parameters are integrated.Persons skilled in the art any not creative transformation of doing under the design philosophy of this patent all should be considered as within protection domain of the present utility model.

Claims (4)

1. an infrastructure project site operation system for managing state is characterized in that: comprise video acquisition network, video delivery network, camera list of coordinates, progress data input interface, system database, coordinate data input interface, model coordinate integrate module, monitor message integrate module and control desk;
Described video acquisition network reaches the some cameras that are connected with this video server by some video servers and constitutes; Described each camera is installed in each working-yard and catches the construction picture in real time; Described each camera links to each other with video server, and by video delivery network vision signal is transmitted back to described camera list of coordinates by video server;
Described progress data input interface is uploaded engineering progress data for each unit in charge of construction; This progress data input interface and system database are sent to system database with the engineering progress data of being uploaded;
Described system database includes the engineering model database; Store the illustraton of model in the engineering construction in this project model database in advance; This project model database is exported the pairing illustraton of model group of current project progress to model coordinate integrate module according to the engineering progress data that the progress data input interface sends;
Described coordinate data input interface is for the position coordinate data of surveying and mapping unit's input in the whole works scope that mapping obtains; Riches all the way delivers to model coordinate integrate module for the position coordinate data of this coordinate data input interface input, and another road is sent to the camera list of coordinates;
Vision signal and position coordinate data that described camera list of coordinates is caught according to each camera of import generate the corresponding lists of each camera and its position coordinate, call for the monitor message integrate module;
Pairing illustraton of model group of current project progress and position coordinate data that described model coordinate integrate module will be imported are integrated, and the illustraton of model group after will integrating is sent to the monitor message integrate module;
The camera of required supervision and the illustraton of model after the coordinate integration are called in controlled control of described monitor message integrate module from camera list of coordinates and model coordinate integrate module, and vision signal and illustraton of model that camera is caught are integrated output.
2. infrastructure project site operation system for managing state as claimed in claim 1 is characterized in that: also be provided with the project progress plan database in the described system database; Store the planning data of construction speed in this project schedule database in advance; This project schedule database will be compared by progress data input interface engineering progress data that sends and the engineering construction schedule data of storing in advance, generate corresponding comparison data and export.
3. infrastructure project site operation system for managing state as claimed in claim 1 is characterized in that: realize video signal transmission by wired and/or wireless communication modes between described camera and the video server.
4. infrastructure project site operation system for managing state as claimed in claim 3 is characterized in that: described wire communication mode adopts the LAN net to realize; Described wireless communication mode adopts the WIFI net to realize.
CN2009202774622U 2009-12-01 2009-12-01 Infrastructure construction on-site construction state management system Expired - Fee Related CN201540484U (en)

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Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104166892A (en) * 2014-06-19 2014-11-26 国家电网公司 Engineering management and control method and system based on three-dimensional design system
CN105117318A (en) * 2015-08-18 2015-12-02 北京恒华伟业科技股份有限公司 Method and device for monitoring equipment production progress
CN106296133A (en) * 2016-08-19 2017-01-04 北京戴纳实验科技有限公司 Schedule monitoring device for laboratory engineering construction
CN106845941A (en) * 2017-01-23 2017-06-13 国网山东省电力公司电力科学研究院 Electricity transmitting and converting construction process environmental practice implements comparative analysis method and system
CN107016506A (en) * 2017-04-07 2017-08-04 贺州学院 A kind of engineering management drilling method, apparatus and system
CN107194578A (en) * 2017-05-19 2017-09-22 河北省电力勘测设计研究院 The digitizing solution of construction management
CN107809611A (en) * 2017-09-28 2018-03-16 福建四创软件有限公司 A kind of 720 ° of Panoramic Warping method for real-time monitoring of hydraulic engineering and system
CN108089445A (en) * 2018-01-17 2018-05-29 湖北师范大学 A kind of mating communication engineering entire process monitoring system of capital construction
CN109716381A (en) * 2016-08-16 2019-05-03 金英大 Construction and maintenance incorporated management method based on video
CN110197118A (en) * 2019-04-19 2019-09-03 北京戴纳实验科技有限公司 A kind of Schedule monitoring system for laboratory engineering construction
CN111143459A (en) * 2019-12-26 2020-05-12 晶晨半导体(深圳)有限公司 Ground construction event detection system and detection method
CN114140999A (en) * 2021-11-16 2022-03-04 广东重工建设监理有限公司 Engineering supervision system based on communication of Internet of things

Cited By (16)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104166892A (en) * 2014-06-19 2014-11-26 国家电网公司 Engineering management and control method and system based on three-dimensional design system
CN105117318A (en) * 2015-08-18 2015-12-02 北京恒华伟业科技股份有限公司 Method and device for monitoring equipment production progress
CN109716381A (en) * 2016-08-16 2019-05-03 金英大 Construction and maintenance incorporated management method based on video
CN106296133A (en) * 2016-08-19 2017-01-04 北京戴纳实验科技有限公司 Schedule monitoring device for laboratory engineering construction
CN106845941A (en) * 2017-01-23 2017-06-13 国网山东省电力公司电力科学研究院 Electricity transmitting and converting construction process environmental practice implements comparative analysis method and system
CN107016506A (en) * 2017-04-07 2017-08-04 贺州学院 A kind of engineering management drilling method, apparatus and system
CN107016506B (en) * 2017-04-07 2020-10-23 贺州学院 Engineering management drilling method, device and system
CN107194578A (en) * 2017-05-19 2017-09-22 河北省电力勘测设计研究院 The digitizing solution of construction management
CN107809611A (en) * 2017-09-28 2018-03-16 福建四创软件有限公司 A kind of 720 ° of Panoramic Warping method for real-time monitoring of hydraulic engineering and system
CN108089445A (en) * 2018-01-17 2018-05-29 湖北师范大学 A kind of mating communication engineering entire process monitoring system of capital construction
CN110197118A (en) * 2019-04-19 2019-09-03 北京戴纳实验科技有限公司 A kind of Schedule monitoring system for laboratory engineering construction
CN110197118B (en) * 2019-04-19 2020-04-14 北京戴纳实验科技有限公司 Progress monitoring system for laboratory engineering construction
CN111143459A (en) * 2019-12-26 2020-05-12 晶晨半导体(深圳)有限公司 Ground construction event detection system and detection method
CN111143459B (en) * 2019-12-26 2024-05-14 晶晨半导体(深圳)有限公司 Ground construction event detection system and detection method
CN114140999A (en) * 2021-11-16 2022-03-04 广东重工建设监理有限公司 Engineering supervision system based on communication of Internet of things
CN114140999B (en) * 2021-11-16 2022-05-10 广东重工建设监理有限公司 Project supervision system based on communication of Internet of things

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Patentee after: Hua Lian, Beijing power engineering supervision companies

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