CN218868323U - Electric power operation on-site video monitoring device - Google Patents
Electric power operation on-site video monitoring device Download PDFInfo
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- CN218868323U CN218868323U CN202222809023.XU CN202222809023U CN218868323U CN 218868323 U CN218868323 U CN 218868323U CN 202222809023 U CN202222809023 U CN 202222809023U CN 218868323 U CN218868323 U CN 218868323U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y04—INFORMATION OR COMMUNICATION TECHNOLOGIES HAVING AN IMPACT ON OTHER TECHNOLOGY AREAS
- Y04S—SYSTEMS INTEGRATING TECHNOLOGIES RELATED TO POWER NETWORK OPERATION, COMMUNICATION OR INFORMATION TECHNOLOGIES FOR IMPROVING THE ELECTRICAL POWER GENERATION, TRANSMISSION, DISTRIBUTION, MANAGEMENT OR USAGE, i.e. SMART GRIDS
- Y04S10/00—Systems supporting electrical power generation, transmission or distribution
- Y04S10/50—Systems or methods supporting the power network operation or management, involving a certain degree of interaction with the load-side end user applications
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Abstract
The utility model discloses an on-spot video monitoring device of electric power operation for no dead angle control, including cloud platform camera module, computer module, 5G communication module and annular fortune merit module, cloud platform camera module with computer module install in the control main part, cloud platform camera module includes camera and camera cloud platform, the camera install in the camera cloud platform. The utility model discloses a field video monitoring device of electric power operation, it passes through slider module and slide rail linkage, can 360 around the branch motion, does not have the control blind area, and possesses automatic identification and pursuit function, promotes video monitoring's degree of automation, promotes field data's accuracy.
Description
Technical Field
The utility model belongs to the technical field of the video monitoring, concretely relates to on-spot video monitoring device of electric power operation.
Background
The faults caused by external force damage to the power line are more and more, the situation is more complex, and the distribution range is wide. In mountainous areas, the insulator is easily damaged by blasting stone and the lead is easily broken by blasting; crops are burnt under the line, and the line is easily tripped due to flame and dense smoke; large cranes and excavators constructed in the line protection area sometimes break wires, damage tower poles and the like; some lawbreakers are driven by economic benefits to steal power facilities such as tower materials, pull wires and the like; and fishing, construction against regulations and the like under the power transmission line. At present, a visual field blind area exists in video monitoring equipment aiming at an electric power operation site, and an automatic tracking function is lacked, so that the site cannot be comprehensively monitored. The main drawbacks of the prior art include:
1. the movable range of the camera is small, the visual field is limited, and a monitoring blind area exists;
2. the camera is not adjusted by manual operation because of no automatic image tracking capability.
Therefore, the above problems are further improved.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a main aim at provides an on-spot video monitoring device of electric power operation, it passes through slider module and slide rail linkage, can 360 around the branch motion, does not have the control blind area, and possesses automatic identification and tracks the function, promotes video monitoring's degree of automation, promotes the accuracy of site data.
Another object of the utility model is to provide an on-spot video monitoring device of electric power operation, 360 motions of supervisory equipment have been realized through the annular motion module, image automatic identification has been realized with the help of (marginal) computer module, autotracking, and utilize the real-time passback site conditions of 5G communication module, the field of vision that exists among the on-the-spot video monitoring system of electric power has been solved to very big degree is limited, degree of automation hangs down the scheduling problem, the device is at equipment integration, function integration, the innovation has been carried out in aspects such as automatic monitoring, also pass through the technical layer simultaneously, the accuracy of site data has been promoted.
In order to achieve the above object, the utility model provides an on-spot video monitoring device of electric power operation for no dead angle control, including cloud platform camera module, computer module, 5G communication module and annular fortune merit module, cloud platform camera module with computer module install in the control main part, wherein:
the holder camera module comprises a camera and a camera holder, and the camera is arranged on the camera holder;
the computer module comprises a shell and a computing unit, the computing unit is arranged in the shell, the shell is fixedly connected with the camera holder and is electrically connected with the camera, and the computer module is arranged on the annular motion module through a sliding block module;
the 5G communication module is arranged on the sliding block module and is electrically connected with the computing unit;
the annular motion module comprises a slide rail and a fixed assembly (arranged on a support rod), and the fixed assembly is connected to the slide rail through a plurality of connecting assemblies;
the slider module comprises a motor, a (rubber) pulley and a slider, the motor is mounted on the slider and the slider is mounted on the slide rail, and the driving end of the motor is connected with the pulley and the pulley is in contact with the slide rail.
As a further preferable technical solution of the above technical solution, the slide rail includes a slide rail mounting groove portion and an edge portion, the slider includes a slide rail mounting groove portion and a hook portion, the edge portion is mounted to the slide rail mounting groove portion and the hook portion is mounted to the slide rail portion (so that the slider is stably mounted to the slide rail, when the slider slides on the slide rail, namely, the slide rail mounting groove portion moves relative to the edge portion, a gap is provided between the mounting groove portion and the edge portion so as to facilitate sliding).
As a further preferable mode of the above mode, the slider is further provided with a pulley mounting groove portion which communicates with the slide rail mounting groove portion and through which the pulley contacts the edge portion.
As a further preferable aspect of the above technical means, the housing is attached to the 5G communication module by a connection rod.
As a further preferable technical solution of the above technical solution, the 5G communication module is provided with an antenna.
The beneficial effects of the utility model reside in that:
enough solve traditional supervisory equipment's dead angle problem, realize 360 control through the cloud platform cooperation annular movement module of making a video recording, and built-in edge computing terminal can calculate the discernment people in real time and track, degree of automation is high, and built-in 5G communication module, image data real-time is better.
Drawings
Fig. 1 is a schematic structural diagram of the electric power operation site video monitoring apparatus of the present invention.
Fig. 2 is a schematic structural diagram of the video monitoring apparatus for electric power operation site of the present invention (the circular motion module is hidden).
Fig. 3 is a schematic structural diagram of the circular motion module of the video monitoring apparatus for electric power operation site of the present invention.
The reference numerals include: 100. a holder camera module; 110. a camera; 120. a camera shooting cloud deck; 200. a computer module; 210. a housing; 220. a connecting rod; 300. 5G communication module; 310. an antenna; 400. a circular motion module; 410. a slide rail; 411. a slide groove portion; 412. an edge portion; 420. a fixing assembly; 430. a connection assembly; 500. a slider module; 510. a motor; 520. a pulley; 530. a slider; 531. a slide rail mounting groove part; 532. a hook part; 533. the pulley mounting groove portion.
Detailed Description
The following description is presented to disclose the invention so as to enable any person skilled in the art to practice the invention. The preferred embodiments described below are by way of example only, and other obvious variations will occur to those skilled in the art. The underlying principles of the invention, as defined in the following description, may be applied to other embodiments, variations, modifications, equivalents, and other technical solutions without departing from the spirit and scope of the invention.
The utility model discloses an on-spot video monitoring device of electric power operation combines preferred embodiment below, further describes utility model's concrete embodiment.
In the embodiments of the present invention, those skilled in the art will note that the support rod and the camera etc. related to the present invention can be regarded as the prior art.
Preferred embodiments.
The utility model discloses an on-spot video monitoring device of electric power operation for no dead angle control, including cloud platform camera module 100, computer module 200, 5G communication module 300 and annular fortune merit module 400, cloud platform camera module 100 with computer module 200 install in the control main part, wherein:
the pan-tilt camera module 100 comprises a camera 110 and a camera pan-tilt 120, wherein the camera 110 is mounted on the camera pan-tilt 120 (can acquire real-time image data and is controlled to adjust a shooting direction);
the computer module 200 comprises a housing 210 and a computing unit (not shown, a built-in edge computing terminal, which can complete image recognition tracking computation), the computing unit is built in the housing 210, the housing 210 is fixedly connected with the camera head 120 and the computing unit is electrically connected with the camera 110, the computer module 200 is mounted on the circular motion module 400 through a slider module 500;
the 5G communication module 300 (responsible for remote monitoring and data transmission) is installed on the slider module 500 and the 5G communication module 300 is electrically connected with the computing unit;
the circular motion module 400 comprises a slide rail 410 and a fixing component 420 (the whole set is arranged on a support rod, and the shooting direction adjustment capability in a 360-degree circular visual field range is provided), wherein the fixing component 420 is connected to the slide rail 410 through a plurality of connecting components 430;
the slider module 500 includes a motor 510, a (rubber) pulley 520, and a slider 530, the motor 510 being mounted to the slider 530 and the slider 530 being mounted to the slide rail 520, a driving end of the motor 510 being connected to the pulley 520 and the pulley 520 being in contact with the slide rail 410.
Specifically, the slide rail 410 includes a slide rail mounting groove portion 411 and an edge portion 412, the slider 430 includes a slide rail mounting groove portion 531 and a hook portion 532, the edge portion 412 is mounted on the slide rail mounting groove portion 531, and the hook portion 532 is mounted on the slide rail 411 (so that the slider is stably mounted on the slide rail, when the slider slides on the slide rail, i.e., the slide rail mounting groove portion moves relative to the edge portion, a gap is provided between the mounting groove portion and the edge portion, so as to facilitate sliding).
More specifically, the slider 530 further has a pulley installation groove portion 533, the pulley installation groove portion 533 is communicated with the slide rail installation groove portion 531, and the pulley 520 contacts the edge portion 412 through the pulley installation groove portion 533 (when the motor receives a rotation command from the computing unit, the pulley is driven to rotate, so as to roll on the edge portion through friction, and finally the slider is driven to move 360 degrees).
Further, the housing 210 is mounted to the 5G communication module 300 by a connection rod 220.
Further, the 5G communication module 300 is provided with an antenna 310.
Preferably, the principle of the utility model is that:
the external tripod head camera module can horizontally rotate for 360 degrees without limit (through a slide rail) and vertically rotate for +/-90 degrees (through a camera tripod head), and is used for acquiring a real-time image video; the device is internally provided with a computer module which is carried with an edge computing terminal, can carry out computing processing on real-time image video data, identifies people in a picture, and can send instructions to a holder camera module and an annular motion mechanism to keep tracking the people in the picture; the device is attached with a 5G communication module, can transmit a real-time picture to a remote terminal for watching, and can remotely control the device to shoot (comprising a motor and a shooting pan-tilt head) through a 5G network; the annular motion module of the device can enable the whole tripod head camera to move 360 degrees around the mounting support rod so as to realize dead-angle-free monitoring shooting.
The device is started to automatically shoot real-time field conditions, the edge computing terminal computes image data in real time and identifies people in the picture, and meanwhile, the edge computing terminal sends instructions to the camera pan-tilt and the motor to adjust shooting directions and track an identified object in real time.
It is worth mentioning that the technical features such as the support rod and the camera related to the present invention should be regarded as the prior art, and the specific structure and the operation principle of these technical features and the control mode and the spatial arrangement mode that may be related to are all conventional choices in the field, and should not be regarded as the invention point of the present invention, and the present invention does not further expand the detailed description.
It will be appreciated by those skilled in the art that changes may be made in the embodiments described above, or equivalents may be substituted for some of the features thereof.
Claims (5)
1. The utility model provides an on-spot video monitoring device of electric power operation for no dead angle control, its characterized in that, including cloud platform camera module, computer module, 5G communication module and annular fortune merit module, cloud platform camera module with computer module install in the control main part, wherein:
the holder camera module comprises a camera and a camera holder, and the camera is mounted on the camera holder;
the computer module comprises a shell and a computing unit, the computing unit is arranged in the shell, the shell is fixedly connected with the camera holder and electrically connected with the camera, and the computer module is arranged on the annular motion module through a sliding block module;
the 5G communication module is arranged on the sliding block module and is electrically connected with the computing unit;
the annular motion module comprises a slide rail and a fixed assembly, and the fixed assembly is connected to the slide rail through a plurality of connecting assemblies;
the sliding block module comprises a motor, a pulley and a sliding block, the motor is installed on the sliding block, the sliding block is installed on the sliding rail, the driving end of the motor is connected with the pulley, and the pulley is in contact with the sliding rail.
2. The video monitor apparatus for electric power operation site according to claim 1, wherein the slide rail includes a slide rail mounting groove portion and an edge portion, the slide rail includes a slide rail mounting groove portion and a hook portion, the edge portion is mounted to the slide rail mounting groove portion and the hook portion is mounted to the slide rail mounting groove portion.
3. The video monitor apparatus for electric power operation site according to claim 2, wherein the slider is further provided with a pulley mounting groove portion, the pulley mounting groove portion communicates with the slide rail mounting groove portion and the pulley contacts the edge portion through the pulley mounting groove portion.
4. The video monitoring device for electric power operation sites of claim 3, wherein the housing is mounted to the 5G communication module through a connecting rod.
5. The video monitoring device for the electric power operation field according to claim 4, wherein the 5G communication module is provided with an antenna.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202222809023.XU CN218868323U (en) | 2022-10-24 | 2022-10-24 | Electric power operation on-site video monitoring device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202222809023.XU CN218868323U (en) | 2022-10-24 | 2022-10-24 | Electric power operation on-site video monitoring device |
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Publication Number | Publication Date |
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CN218868323U true CN218868323U (en) | 2023-04-14 |
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CN202222809023.XU Active CN218868323U (en) | 2022-10-24 | 2022-10-24 | Electric power operation on-site video monitoring device |
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2022
- 2022-10-24 CN CN202222809023.XU patent/CN218868323U/en active Active
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