CN211827323U - On-site operation real-time supervision system based on data fusion processing - Google Patents

On-site operation real-time supervision system based on data fusion processing Download PDF

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CN211827323U
CN211827323U CN201922076989.5U CN201922076989U CN211827323U CN 211827323 U CN211827323 U CN 211827323U CN 201922076989 U CN201922076989 U CN 201922076989U CN 211827323 U CN211827323 U CN 211827323U
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mobile terminal
video
digital mobile
wireless communication
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丘浩
林翔宇
张炜
黄维
朱明增
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Electric Power Research Institute of Guangxi Power Grid Co Ltd
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Electric Power Research Institute of Guangxi Power Grid Co Ltd
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Abstract

The utility model provides a field operation real-time supervision system based on data fusion handles, including interface server, main website system, scene record appearance, digital mobile terminal, video monitoring system, SMS sending device, through the switch of deployment in provincial level electric wire netting information center's information computer lab and a plurality of video monitoring system interactive data of deployment at different transformer substations, through the wireless communication basic station of deployment in provincial level electric wire netting information center's information computer lab and a plurality of digital mobile terminal interactive data of deployment at different job sites, prevent that the field operation from breaking away from the supervision. The utility model discloses establish reliable, unified, the electric power operation real-time supervision system who possesses the data fusion ability earlier, realized long-range visual supervision field operation, cracked the difficult problem that job site point is many-sided wide, the on-the-spot supervision is careless, is showing the management and control efficiency that has improved violation and operation risk.

Description

On-site operation real-time supervision system based on data fusion processing
Technical Field
The utility model relates to a technical field of electric power safety production risk management and control, concretely relates to field operation real-time supervision system based on data fusion handles.
Background
The electric power operation covers the contents of capital construction, electric power dispatching, power transmission and transformation maintenance, maintenance and the like. In recent years, with the continuous expansion of the range of substations governed by power grid enterprises, the increase of power grid equipment, the obvious increase of the workload of power operators, the obvious enhancement of the working strength, the obvious increase of cross-professional operation and cross operation, the influence of various factors such as personnel skill level, physical state, meteorological conditions and the like, and the risks existing in the power operation show a more and more complex trend. Aiming at the important problems that a construction unit is not familiar with an installation process, a design supervision unit fails to work, an operation unit is not responsible for daily operation and maintenance, safety basic management is weak and the like in the current electric power operation, a comprehensive means is needed to be adopted under multiple conditions, a remote visual supervision field is realized, operation is prevented from being separated from supervision, and personal risks, illegal behaviors and the like in safety production are controlled.
The artificial intelligence technology is one of the key technologies for the development of the modern information society. Artificial intelligence is the theory, method, technology and application system for simulating, extending and expanding human intelligence, which is researched and developed, and comprises key technologies such as image recognition, text recognition, intelligent speech semantic processing, face recognition and the like. Task requirements such as strengthening key technology innovation and industrialization application of high-end intelligent remanufacturing, promoting research and development and industrialization application of intelligent remanufacturing equipment, implementing high-end intelligent remanufacturing demonstration engineering and the like are proposed by the Ministry of industry and communications, "high-end intelligent remanufacturing action plan (2018) 2020)" (Ministry of industry and communications [ 2017 ] 265 ]. The intelligent technology of the southern power grid company in the technical field of production application route scheme (southern power grid biotechnology [ 2018 ] 16) specifically indicates that the field operation based on artificial intelligence and mobile internet needs to be developed, and mainly means that Beidou positioning, RFID and face recognition technical means are fully utilized in the aspects of operation, inspection, overhaul, live working and the like, so that the qualification management and the operation behavior control of power operators are realized, the error entering into the live position is prevented, the safety distance is prevented from being insufficient, the error operation is prevented, habitual violation is prevented, the operation efficiency is improved, the operation quality is improved, the operation risk is reduced and the like, and the inspection intellectualization, the operation programming, the overhaul less humanization and the operation zero risk are realized. Therefore, the artificial intelligence technology is an effective way to manage the risk problem of the operation. Because in the whole process of electric power operation, risk management and control information is various in variety, information source channels are complex and diverse, information management and control condition transformation is not constant, and a series of complex conditions make risk management and control data difficult to be effectively docked and converted, effective information among various data (structured and unstructured) is difficult to accurately extract, and a real-time supervision system has the problems that management and control information is difficult to be effectively fused and the like.
In view of this, aiming at the difficult pain point problem of the intensive application electric power operation real-time monitoring system, based on a data fusion processing technology, an electric power operation real-time monitoring system which can be deployed in a provincial-level power grid emergency command center is developed, so that timely pre-control and processing of operation risks are realized, the excavation efficiency of mass data needs to be improved, the time complexity of an algorithm is reduced, the good response speed of the system to the risks is met, and further technical support is provided for managing and controlling the operation risks.
SUMMERY OF THE UTILITY MODEL
In order to realize real-time supervision, an infrastructure needs to be constructed, the utility model provides a field operation real-time supervision system based on data fusion handles, concrete technical scheme is as follows:
a field operation real-time monitoring system based on data fusion processing comprises an interface server, a main station system, a scene recorder, a digital mobile terminal, a video monitoring system and a short message sending device;
the interface server, the master station system and the short message sending device are respectively deployed in a provincial power grid information center machine room, and the interface server and the short message sending device are respectively connected with the master station system; the scene recorder, the digital mobile terminal and the video monitoring system are all deployed on an operation site, and are transferred to be applied among different operation sites managed by a provincial power grid emergency command center, the scene recorder is connected with the digital mobile terminal, and the digital mobile terminal and the video monitoring system are respectively connected with the master station system;
the video monitoring system is used for acquiring video images of equipment running in a working site and transmitting the acquired video images of the equipment running in the working site to the master station system in real time; the scene recorder is used for collecting the video stream and the key frame image of the equipment operation of the operation site and transmitting the collected video stream and the key frame image of the equipment operation of the operation site to the digital mobile terminal; the digital mobile terminal is used for receiving the video stream and the key frame image transmitted by the scene recorder and transmitting the video stream and the key frame image to the master station system; and the master station system is used for collecting video stream, key frame images and video image information acquired and managed by the digital mobile terminal and the video monitoring system.
Further, the interface server comprises an asset management system interface server, a dispatching automation system interface server, a 4A platform interface server, a geographic information system interface server, a meteorological system interface server and an enterprise normative document library interface server.
Further, the master station system comprises a switch, a database server, a directory server, an application server and a wireless communication base station;
the switch is deployed in an information machine room of a provincial power grid emergency command center and is respectively connected with a database server, a directory server, an application server, a fixed terminal and a mobile terminal; the database server is deployed in an information machine room of a provincial power grid information center;
the directory server is deployed in an information machine room of a provincial power grid information center;
the application server is deployed in an information machine room of a provincial power grid information center
(ii) a The wireless communication base station is deployed in an information machine room of a provincial power grid information center and performs data and instruction interaction with the digital mobile terminal through a wireless communication private network based on an LTE technology;
the application server is respectively connected with the switch, the database server, the directory server and the wireless communication base station through optical fibers, and the database server and the directory server are respectively connected with the switch through the optical fibers.
Furthermore, the database server, the directory server and the application server are respectively provided with a CPU.
Further, the wireless communication base station selects an LTE230 type wireless communication base station device.
Further, the video monitoring system comprises a video processing unit and a camera, wherein the video processing unit is connected with the camera, and the camera adopts 64 paths of cameras; the video processing unit adopts a DS-8516EH type or iVP4000 type station end video processing unit, and the DS-8516EH type or iVP4000 type station end video processing unit performs data interaction with the main station system through an electric power integrated data network.
Further, the scene recorder employs an eosens TS3 or X2 type mobile camera.
Further, the digital mobile terminal adopts a 6-core processor with a Denver IIA 57 architecture as a main control chip, the digital mobile terminal is loaded with a wireless communication terminal, and the wireless communication terminal selects a CPE type or an embedded CPE type wireless communication terminal and exchanges data with the scene recorder; the main control chip takes Tegra Parker as a core.
Furthermore, the short message sending device adopts an ME45 type CDMA short message module or a GM-82 type GPS short message module.
The utility model has the advantages that: the utility model provides a field operation real-time supervision system based on data fusion handles, including main website system, digital mobile terminal, scene record appearance, video monitoring system, SMS transmitting device, through the switch of deployment in provincial power grid information center's information computer lab and a plurality of video monitoring system interactive data of deployment at different transformer substations, through the wireless communication basic station of deployment in provincial power grid information center's information computer lab and a plurality of digital mobile terminal interactive data of deployment at different job sites, prevent that the field operation from breaking away from the supervision. The utility model discloses establish reliable, unified, the electric power operation real-time supervision system who possesses the data fusion ability earlier, realized long-range visual supervision field operation, cracked the difficult problem that job site point is many-sided wide, the on-the-spot supervision is careless, is showing the management and control efficiency that has improved violation and operation risk, is suitable for popularization and application in the electric wire netting enterprise.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Detailed Description
For a better understanding of the present invention, the following further description is made in conjunction with the accompanying drawings and the specific embodiments:
example 1:
as shown in fig. 1, a real-time monitoring system for field operation based on data fusion processing includes an interface server, a master station system, a scene recorder, a digital mobile terminal, a video monitoring system and a short message sending device;
the interface server, the master station system and the short message sending device are respectively deployed in a provincial power grid information center machine room, and the interface server and the short message sending device are respectively connected with the master station system; the system comprises a scene recorder, a digital mobile terminal and a video monitoring system, wherein the scene recorder, the digital mobile terminal and the video monitoring system are all deployed at an operation site, and are transferred and applied among different operation sites governed by a provincial power grid emergency command center;
the video monitoring system is used for acquiring video images of equipment running in a working site and transmitting the acquired video images of the equipment running in the working site to the master station system in real time; the scene recorder is used for collecting the video stream and the key frame image of the equipment operation of the operation site and transmitting the collected video stream and the key frame image of the equipment operation of the operation site to the digital mobile terminal; the digital mobile terminal is used for receiving the video stream and the key frame image transmitted by the scene recorder and transmitting the video stream and the key frame image to the master station system; and the master station system is used for collecting video stream, key frame images and video image information acquired and managed by the digital mobile terminal and the video monitoring system.
The interface server in embodiment 1 includes an asset management system interface server, a scheduling automation system interface server, a 4A platform interface server, a geographic information system interface server, a meteorological system interface server, and an enterprise normative document repository interface server;
the interface server comprises an asset management system interface server, a dispatching automation system interface server, a 4A platform interface server, a geographic information system interface server, a meteorological system interface server and an enterprise normative document library interface server, and adopts the prior art, and the interface servers are respectively provided with 6 4-core E31231V 3 series CPUs, support hyper-threading, buffer memory is not less than 20 megabytes, and original dominant frequency is not less than 1.7 gigahertz; the memory type is ECC type, the memory is configured to be DDR4 type memory with no less than 128 gigabytes, and the maximum total number of memory slots is no less than 24; the hard disk is configured as 2 blocks of 600 gigabytes, 10000 rpm, serial connection SSD type hard disks.
The master station system in embodiment 1 includes a switch, a database server, a directory server, an application server, and a wireless communication base station;
the switch is deployed in a provincial power grid emergency command center information machine room, is provided with 24 10/100/1000 Mbytes self-adaptive ports, has a switching capacity not less than 150 Mbits/second, has a second-layer and third-layer packet forwarding capacity not less than 95 Mbits/second, and is connected with a database server, a directory server, an application server and a video monitoring system through an electric power comprehensive data network;
the number of the database servers is 1, the database servers are deployed in an information machine room of a provincial power grid information center, data collected by a scene recorder and a video monitoring system are collected and stored through a switch, and data services are provided for application servers according to the requirements of a technical framework of first registration of technical specifications of a remote mobile security access platform of Q/CSG 1210027 and a data transmission safety standard of Q/CSG 1210007.
The number of the directory servers is 1, and the directory servers are deployed in an information machine room of a provincial power grid information center.
In embodiment 1, the database server and the directory server of the master station system are respectively configured with 4 10-core Xeon E7V4 series CPUs, support hyper-threading, cache no less than 20 megabytes, and original master frequency no less than 2.0 gigahertz; the memory is configured into a DDR4 type memory with the maximum number of memory slots being not less than 64 and being not less than 128 gigabytes; the hard disk is configured as a serial attached SCSI hard disk with 2 blocks of 600 gigabytes and 10000 rpm.
In embodiment 1, the number of application servers is 2, and the application servers are deployed in an information machine room of a provincial power grid information center and run in a redundant and mutually standby mode; the application servers of the master station system are all provided with 4 8-core Xeon E7V4 series CPUs, support hyper-threading, cache is not less than 25 megabytes, and original master frequency is not less than 1.9 GHz; the memory is configured into a DDR4 type memory with the maximum number of memory slots being not less than 64 and being not less than 128 gigabytes; the hard disk is configured into 4 serial connection SCSI hard disks with 600 gigabytes and 10000 rpm; the network card is provided with 8 independent 10/100/1000M-BaseT Ethernet ports; the application server is used for monitoring and managing the digital mobile terminal, the scene recorder and the video monitoring system in a centralized manner; as human-computer interaction Web application equipment, the system is used for remotely monitoring and controlling personal risks and illegal behaviors in safety production, is used for inquiring and analyzing tasks, data, reports, data historical curves and the like of jobs, and is used for centrally monitoring and managing a digital mobile terminal, a scene recorder and a video monitoring system.
In embodiment 1, the number of wireless communication base stations is 1, the wireless communication base stations are deployed in an information machine room of a provincial power grid information center, and data and instruction interaction is performed between a wireless communication private network based on an LTE technology and 1000 sets of scene recorders; the wireless communication base station selects TD-LTE type wireless communication base station equipment with a 1.8 gigahertz frequency band or LTE230 type wireless communication base station equipment with a 230 megahertz frequency band. The differences in the specific selection are as follows:
when the wireless communication Base station of the master station system adopts a TD-LTE type wireless communication Base station device which selects a frequency Band of 1.8 ghz, an indoor baseband processing Unit (BBU) + Remote radio Unit (RPU) distributed architecture is adopted, the supported frequency Band is 1785 to 1805 mhz, the subcarrier interval is 15 khz, and the Base station needs to support working bandwidths of 1.4 mhz, 3 mhz, 5 mhz, 10 mhz and 20 mhz. The single-channel normal operation transmitting power of the wireless communication base station is not lower than 12 watts (36-channel configuration) or 20 watts (18 channels) at most, and the transmitting power is adjusted with the granularity of 1 dB.
When the wireless communication Base station of the master station system selects LTE 230-type wireless communication Base station equipment with a 230 mhz frequency Band, an indoor baseband processing Unit (Base Band Unit, BBU) + Remote radio Unit (RPU) distributed architecture is adopted, the supported frequency Band is 223.025 to 235 mhz, and the frequency interval is 25 khz. The maximum normal working transmitting power of a single channel of the wireless communication base station is not lower than 6 watts.
In embodiment 1, the application server is connected to the switch, the database server, the directory server, and the wireless communication base station via optical fibers, and the database server and the directory server are connected to the switch via optical fibers.
The scene recorder in embodiment 1 uses an eosens TS3 or X2 mobile camera, the focal length of the lens is 4.5 to 140 mm, the focal length of the lens is 30 times optically variable, the internal storage space is not less than 256 gigabytes, the light sensitivity is 6 to 15 lux degrees, the frame frequency for capturing the number of complete images per unit time reaches 400 to 2000 frames/second, the color reduction error should not exceed 35CIE L a b color error unit, the nominal total number of pixels is greater than or equal to 2000 ten thousand pixels and is greater than 60% of the theoretical limit resolution, the digital mobile terminal uses data line, infrared, bluetooth peripheral interfaces to exchange data (data synchronization and file transmission) with the scene recorder, and the physical entity of the peripheral interface at the digital mobile terminal is a hardware interface or a chip.
The scene recorder in embodiment 1 uses a 6-core processor of a Tegra Parker series Denver iia 57 architecture produced by NVIDIA as a main control chip, the scene recorder is loaded with a wireless communication terminal, and transmits a video image of equipment operation of an electric power operation field acquired by a mobile terminal to a main station system in real time according to the requirements of Q/CSG1204022 technical specification of electric power wireless private network, the wireless communication terminal selects a 1.8 gigahertz CPE type or 230 megahertz embedded CPE type wireless communication terminal, and selects a data line, an infrared or bluetooth peripheral interface to realize data exchange, data synchronization and file transmission with the scene recorder, and the peripheral interface is represented as a hardware interface or a chip in a physical entity of the scene recorder; the main control chip takes Tegra Parker as a core, and is matched with an LPDDR4 type memory with 8 gigabytes and 50 gigabit/second bandwidth and an e MMC flash memory with 32 gigabyte capacity to serve as an edge computing platform of the Soc framework.
The video monitoring system in this embodiment 1 includes a video processing unit and a video camera, where the video camera adopts 64 paths of video cameras, a focal length of a lens of the video camera is 4.5 to 140 mm, and 30 times of optical zoom, the video processing unit adopts a DS-8516EH type or iVP4000 type station side video processing unit, and supports connection of an input signal and a 720P coding format of the 64 paths of video cameras through 4 to 20 ma and RS-485/232 serial ports to interact data, and interacts data with a master station system through an electric power integrated data network.
In embodiment 1, the scene recorder is an eosens TS3 or X2 mobile camera, the internal storage space is not less than 256 gigabytes, the sensitivity is 6 to 15 lux degrees, the frame frequency of capturing the complete image frames per unit time reaches 400 to 2000 frames/second, and the color reproduction error should not exceed 35CIE L*a*b*A color error unit, the nominal total number of pixels being greater than or equal to 2000 ten thousand pixels and greater than 60% of the image high resolution (theoretical limit resolution); the digital mobile terminal selects the data line, infrared and Bluetooth peripheral interfaces to realize data exchange (data synchronization and file transmission) with the scene recorder, and the peripheral interfaces are represented as physical entities of the digital mobile terminalA hardware interface or a chip.
In embodiment 1, the digital mobile terminal uses a 6-core processor of a Tegra Parker series Denver iia 57 architecture produced by NVIDIA as a main control chip, and exchanges video streams, key frame images and coordinate information of field operation with 1 to 10 sets of scene recorders in real time in a wireless connection manner according to YD/T1760 "technical requirement for peripheral interface data exchange of digital scene recorders"; the main control chip takes Tegra Parker as a core, and is matched with an LPDDR4 type memory with 8 gigabytes and 50 gigabit/second bandwidth and an e MMC flash memory with 32 gigabyte capacity to serve as an edge computing platform of a Soc framework; the wireless communication terminal carried by the digital mobile terminal selects a 1.8 GHz CPE type or a 230 MHz embedded CPE type wireless communication terminal.
In the embodiment 1, the short message sending device is deployed in the information machine room of the provincial power grid information center, and the ME45 CDMA short message module or the GM-82 GPS short message module is used to send the reminding message, where the message transmission rate is greater than 300 kbits/s. The short message sending device informs the security supervision related personnel of the violation behaviors and the operation risks discovered by the master station system through the short message, and the in-place supervision standard is implemented.
In the implementation, the data interaction relationship between the master station system and the digital mobile terminal and the expansion interface conform to the specification of Q/CSG1204022-2017 technical Specification for electric Wireless private network, the data interaction relationship between the master station system and the interface server and the expansion interface conform to the specification of GB/T36345 and 2018 information technology general data import interface, GB/T36960 and 2018 information safety technology identification and authorized access control middleware framework and interface, the data interaction relationship between the master station system and the digital mobile terminal and the expansion interface conform to the specification of Q/CSG1204016.2 data network technical Specification part 2 comprehensive data network technical requirement of south China Power grid Limited liability company and Q/CSG 1204012 communication network production application interface technical Specification of south China Power grid Limited company, the data interaction relation and the expansion interface between the digital mobile terminal and the scene recorder conform to the provision of YD/T1760 data exchange technical requirement of peripheral interface of the digital scene recorder.
The main performance indexes of the master station system conform to GB/T16260.2 software engineering production quality part 2: internal quality, GB/T16260.3 software engineering Productivity quality part 3: the external quality and Q/CSG1204016.3 stipulate the technical requirements of data network equipment in part 3 of the data network technical Specification of the southern Power grid, China, the main functions and performance indexes of the digital mobile terminal and the scene recorder conform to the stipulations of GB/T36481 general Specification of the information technology scene recorder, and the main functions and performance indexes of the video monitoring system conform to the stipulations of GB/T28181 information transmission, exchange and control technical requirements of the safety and protection video monitoring networking system. The safety function requirements of the main station system and the video monitoring system meet the requirements of GB/T20271 general safety technical requirements of information safety technology information systems, and the safety function requirements of the digital mobile terminal and the scene recorder meet the requirements of GB/T35278 safety protection technical requirements of information safety technology scene recorders.
In the specific installation and deployment process of the master station system, firstly, an application switch, a database server, a directory server and an application server are deployed in a screen cabinet in a provincial power grid information center machine room, the number of the application servers is 2, and the number of the switch, the database server, the directory server, the application server and a wireless communication base station is one or only one. And secondly, deploying the wireless communication base station in a communication machine room screen cabinet of the provincial power grid emergency command center, remotely collecting the data acquired by the digital mobile terminal after identity authentication and data encryption, and performing remote monitoring. And thirdly, according to the management and control requirements, the digital mobile terminal and the scene recorder are matched and applied to the electric power operation field (the fields of power transmission, power transformation, power distribution and infrastructure construction), the video information of the operation field is collected, and the data is uploaded to the main station system.
In the specific installation and deployment process of the interface server and the short message sending device, firstly, an asset management system, a dispatching automation system, a 4A platform, a geographic information system, a meteorological system and an enterprise normative document library are deployed in a screen cabinet in a provincial power grid information center machine room, and the number of equipment is only one. Secondly, the short message sending device is deployed in a screen cabinet of a communication machine room of the provincial power grid emergency command center, and sends early warning short messages and task assignment short messages about illegal behaviors and operation risks to established safety supervision personnel and field operation personnel after identity authentication and data encryption. And thirdly, pushing the operation plan, the work ticket and the equipment ledger information to the master station system according to the management and control and analysis requirements.
In the specific installation and deployment process of the digital mobile terminal, the scene recorder and the video monitoring system are firstly deployed in a substation equipment area, the video monitoring system collects video images of equipment operation of an operation site, the scene recorder collects video streams and key frame images of the equipment operation of the operation site, and data are uploaded to a main station system. And finally, the master station system collects the video images, the video streams and the key frame images of the operation site to obtain the risk control video information of the whole process for statistics, analysis and warning, and provides management and control functions of statistical analysis, site survey, operation plan management, video image remote supervision, task assignment, violation/risk identification management, qualification management and the like for security supervisors related to the Guangxi power grid according to the requirements of Q/CSG 210001' rule on the safety production risk management work of the southern China Power grid Limited company).
The safety supervisor logs in the master station system, checks the video information of the operation site, records the coordinates of the site supervisor in a certain period (month/week/day and the like) of the unit (the professional and the field), and confirms that the site all has the supervision of the supervisor in place, including the situation that the general site operation supervisor arrives at the site, the situation that the leader arrives at the site related to large-scale test operation, important activities and power supply work in special periods, and the like. When arriving personnel arrive at the site, the digital mobile terminal can be used for recording the implementation situation of each safety measure and transmitting the situation back to the system in real time. Specifically, safety monitoring personnel monitor images or videos, electronic forms and other information of all field operation monitoring personnel in the district through a master station system, a video monitoring system, a digital mobile terminal and a scene recorder, so that operation monitoring and safety measures are achieved in a double-in-place mode, and field operation is prevented from being separated from a monitoring range. Safety supervision personnel mainly manage and control personal risks and equipment risks such as falling, external force foreign object injury, electric shock, burning (scalding), equipment damage, equipment performance reduction, forced outage and the like through an electric power operation real-time supervision system with edge computing capability.
The present invention is not limited to the above-described embodiments, but only to the preferred embodiments of the present invention, and the present invention is not limited thereto, and any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (9)

1. A field operation real-time supervision system based on data fusion processing is characterized in that: the system comprises an interface server, a master station system, a scene recorder, a digital mobile terminal, a video monitoring system and a short message sending device;
the interface server, the master station system and the short message sending device are respectively deployed in a provincial power grid information center machine room, and the interface server and the short message sending device are respectively connected with the master station system; the scene recorder, the digital mobile terminal and the video monitoring system are all deployed on an operation site, and are transferred to be applied among different operation sites managed by a provincial power grid emergency command center, the scene recorder is connected with the digital mobile terminal, and the digital mobile terminal and the video monitoring system are respectively connected with the master station system;
the video monitoring system is used for acquiring video images of equipment running in a working site and transmitting the acquired video images of the equipment running in the working site to the master station system in real time; the scene recorder is used for collecting the video stream and the key frame image of the equipment operation of the operation site and transmitting the collected video stream and the key frame image of the equipment operation of the operation site to the digital mobile terminal; the digital mobile terminal is used for receiving the video stream and the key frame image transmitted by the scene recorder and transmitting the video stream and the key frame image to the master station system; and the master station system is used for collecting video stream, key frame images and video image information acquired and managed by the digital mobile terminal and the video monitoring system.
2. The field operation real-time supervision system based on data fusion processing according to claim 1, characterized in that: the interface server comprises an asset management system interface server, a scheduling automation system interface server, a 4A platform interface server, a geographic information system interface server, a meteorological system interface server and an enterprise normative document library interface server.
3. The field operation real-time supervision system based on data fusion processing according to claim 1, characterized in that: the master station system comprises a switch, a database server, a directory server, an application server and a wireless communication base station;
the switch is deployed in an information machine room of a provincial power grid emergency command center and is respectively connected with a database server, a directory server and an application server;
the database server is deployed in an information machine room of a provincial power grid information center;
the directory server is deployed in an information machine room of a provincial power grid information center;
the application server is deployed in an information machine room of a provincial power grid information center, and the wireless communication base station is deployed in the information machine room of the provincial power grid information center and performs data and instruction interaction with the digital mobile terminal through a wireless communication private network based on an LTE technology;
the application server is respectively connected with the switch, the database server, the directory server and the wireless communication base station through optical fibers, and the database server and the directory server are respectively connected with the switch through the optical fibers.
4. The system according to claim 3, wherein the real-time supervision system for field operation based on data fusion processing comprises: and the database server, the directory server and the application server are respectively provided with a CPU.
5. The system according to claim 3, wherein the real-time supervision system for field operation based on data fusion processing comprises: the wireless communication base station selects LTE230 type wireless communication base station equipment.
6. The field operation real-time supervision system based on data fusion processing according to claim 1, characterized in that: the video monitoring system comprises a video processing unit and a camera, wherein the video processing unit is connected with the camera, and the camera adopts 64 paths of cameras; the video processing unit adopts a DS-8516EH type or iVP4000 type station end video processing unit, and the DS-8516EH type or iVP4000 type station end video processing unit performs data interaction with the main station system through an electric power integrated data network.
7. The field operation real-time supervision system based on data fusion processing according to claim 1, characterized in that: the scene recorder adopts an eosens TS3 type or an X2 type movable camera.
8. The field operation real-time supervision system based on data fusion processing according to claim 1, characterized in that: the digital mobile terminal adopts a 6-core processor with a Denver IIA 57 architecture as a main control chip, the digital mobile terminal is provided with a wireless communication terminal, and the wireless communication terminal selects a CPE type or embedded CPE type wireless communication terminal and exchanges data with the scene recorder; the main control chip takes Tegra Parker as a core.
9. The field operation real-time supervision system based on data fusion processing according to claim 1, characterized in that: the short message sending device adopts an ME45 type CDMA short message module or a GM-82 type GPS short message module.
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