A monitoring system based on 5G communication
Through a monitoring system based on 5G communication and using cameras connected by deformable rubber strips and articulated seats, the problem that cameras in the existing technology cannot perform multi-directional monitoring is solved, and simultaneous multi-directional monitoring and rapid transmission of multiple cameras are achieved.
Patent Information
- Application Number
- CN202210888261.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-07-27
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2042-07-27
AI Technical Summary
The cameras in the existing monitoring system cannot achieve multi-directional and simultaneous monitoring, which limits the monitoring range and efficiency.
A monitoring system based on 5G communication is adopted, which uses deformable rubber strips and articulated seats to connect cameras. The 5G wireless network module is used to achieve rapid transmission and direction adjustment of multiple cameras. Combined with the guide rod and motor drive system, multi-directional monitoring of multiple cameras is realized.
It realizes simultaneous multi-directional monitoring of multiple cameras, improves the monitoring range and efficiency, and realizes the rapid transmission of monitoring videos through the 5G network.
Smart Images

Figure CN115243013B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a monitoring system, and more particularly to a monitoring system based on 5G communication. Background Art
[0002] 5G refers to the fifth generation of mobile communication technology, which is a new generation of broadband mobile communication technology with the characteristics of high speed, low latency and large connection. 5G communication facilities are the network infrastructure for realizing the interconnection between people, machines and things.
[0003] By monitoring the areas that need to be monitored through the 5G communication network, the monitoring images can be quickly transmitted and analyzed. However, the monitoring module in the monitoring system in the existing technology is merely a camera that can adjust the direction. This camera can only monitor a certain area at the same time and cannot achieve simultaneous multi-directional monitoring. Summary of the Invention
[0004] In order to overcome the shortcomings of the existing technology, the present invention provides a monitoring system based on 5G communication, which has the beneficial effect of realizing multi-directional monitoring of multiple cameras through a rubber strip that is easy to deform.
[0005] A monitoring system based on 5G communication includes a 5G wireless network module and a monitoring module. The monitoring module is connected to the Internet through the 5G wireless network module. The monitoring module includes a cross plate, a rubber strip and a camera. The cross plate is provided with one above and one below, and there are multiple rubber strips. The upper parts of the multiple rubber strips are connected to the upper cross plate, and the lower parts of the multiple rubber strips are connected to the lower cross plate. Multiple cameras are set on each rubber strip from top to bottom.
[0006] There are four rubber strips.
[0007] It also includes hinged seats. Both ends of each rubber strip are provided with hinged seats, and the rubber strip is hinged to the corresponding cross plate through the hinged seats.
[0008] The utility model also comprises a guide rod, wherein the upper part of the guide rod is fixed on the cross plate located on the upper side, and the lower part of the guide rod is slidably connected to the cross plate located on the lower side. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.
[0010] Figure 1 A schematic diagram of a monitoring system based on 5G communication;
[0011] Figure 2 Schematic diagram of the monitoring module Figure 1 ;
[0012] Figure 3 Schematic diagram of the monitoring module Figure 2 ;
[0013] Figure 4 Schematic diagram of the monitoring module Figure 3 ;
[0014] Figure 5 Schematic diagram of the structure of the cross plate and rubber strip Figure 1 ;
[0015] Figure 6 Schematic diagram of the structure of the cross plate and rubber strip Figure 2 ;
[0016] Figure 7 Schematic diagram of the circular plate structure Figure 1 ;
[0017] Figure 8 Schematic diagram of the circular plate structure Figure 2 ;
[0018] Figure 9 A schematic diagram of the ring structure.
[0019] In the figure: cross plate 101; inclined plate 102; stop pin 103; electrical box 104; telescopic rod 105; guide rod 106; vertical rod 107; wiring hole 108;
[0020] Rubber strip 201; camera 202; hinge seat 203;
[0021] Circular plate 301; circular edge 302; friction wheel 303; motor I 304; motor II 305; upper frame 306; stopper 307; round seat 308; threaded column 309;
[0022] Circular ring 401; horizontal bar 402; square column 403; elastic rod 404; bristles 405. DETAILED DESCRIPTION
[0023] like Figure 1-6 As shown, this example can achieve the effect of multiple cameras 202 monitoring in multiple directions at the same time.
[0024] Since the monitoring system based on 5G communication is based on the monitoring system based on 5G communication, the monitoring module is connected to the Internet via the 5G wireless network module, thereby achieving rapid transmission of monitoring video. The monitoring module includes a cross plate 101, a rubber strip 201, and a camera 202. There are two cross plates 101, which are arranged one above the other. There are multiple rubber strips 201, and the upper ends of the multiple rubber strips 201 are connected to the upper cross plate 101, and the lower ends of the multiple rubber strips 201 are connected to the lower cross plate 101. Each rubber strip 201 is provided with multiple cameras 202 from top to bottom. The spacing between the two cross plates 101 can be controlled, thereby controlling the curvature of the multiple rubber strips 201. The smaller the spacing between the two cross plates 101, the greater the curvature of the multiple rubber strips 201. By controlling the curvature of the multiple rubber strips 201, the shooting direction of the multiple cameras 202 on each rubber strip 201 can be controlled, achieving simultaneous multi-directional monitoring of multiple cameras 202.
[0025] like Figure 5-6 As shown, this example can achieve the effect of multiple cameras 202 monitoring in multiple directions at the same time.
[0026] Since four rubber strips 201 are provided, multiple cameras 202 can be provided on each of the four rubber strips 201 . The cameras 202 are bonded to the rubber strips 201 , thereby achieving multi-directional monitoring by the multiple cameras 202 at the same time.
[0027] like Figure 5 As shown, this example can facilitate the bending and deformation of multiple rubber strips 201.
[0028] Since the monitoring module also includes a hinge seat 203, the hinge seats 203 are bonded to both ends of each rubber strip 201, and the rubber strip 201 is hinged to the corresponding cross plate 101 through the hinge seat 203, so that when the spacing between the two cross plates 101 changes, the multiple rubber strips 201 can rotate on the cross plate 101 through the hinge seats 203 thereon, thereby facilitating the bending and deformation of the multiple rubber strips 201.
[0029] like Figure 5-6 As shown, this example can achieve the effect of stabilizing the multiple rubber strips 201 when they are bent and deformed.
[0030] Since the monitoring module also includes a guide rod 106, the upper part of the guide rod 106 is welded to the cross plate 101 on the upper side, and the lower part of the guide rod 106 is slidably connected to the cross plate 101 on the lower side, so that the cross plate 101 on the lower side remains stable when sliding up and down through the guide rod 106, and the multiple rubber strips 201 are stable when bending and deforming.
[0031] like Figure 5-6As shown, this example can achieve the effect of adjusting the distance between the two cross plates 101.
[0032] Since the monitoring module also includes a telescopic rod 105, the lower part of the guide rod 106 is connected to the telescopic rod 105 through a flange, and the movable end of the telescopic rod 105 is connected to the cross plate 101 located on the lower side through a flange, and then the cross plate 101 located on the lower side can be driven to slide vertically on the guide rod 106 by the extension and contraction of the telescopic rod 105, thereby adjusting the distance between the two cross plates 101.
[0033] like Figure 5 As shown, this example can achieve the effect of powering multiple cameras 202 through wires.
[0034] Since the monitoring module also includes an electrical box 104, the electrical box 104 is connected to the cross plate 101 on the lower side by screws. The electrical box 104 is used to place various circuit components and supply power to the multiple cameras 202 through wires.
[0035] like Figure 5-6 As shown, this example can achieve the effect of arranging multiple wires.
[0036] Since the monitoring module also includes vertical rods 107 and wiring holes 108, vertical rods 107 corresponding to the number of rubber strips 201 are welded on the cross plate 101 on the lower side, and each vertical rod 107 is provided with a wiring hole 108 corresponding to the number of cameras 202. An opening is provided on the wiring hole 108, and the wires led out of each camera 202 can be placed on it through the opening on the wiring hole 108 to arrange multiple wires to prevent multiple wires from being arranged in a messy manner. The other end of the wire is connected to the electrical box 104.
[0037] like Figure 5 As shown, this example can prevent the multiple hinge seats 203 from rotating inwards and causing the rubber strip 201 to bend inwards.
[0038] Since the monitoring module also includes an inclined piece 102, multiple inclined pieces 102 are welded on the two cross plates 101, and the multiple inclined pieces 102 are respectively located on the inner sides of the multiple hinge seats 203. The inclined pieces 102 can limit the hinge seats 203, thereby preventing the multiple hinge seats 203 from rotating inward and causing the rubber strip 201 to bend inward. When the rubber strip 201 bends inward, the monitoring range of the multiple cameras 202 will be reduced.
[0039] like Figure 7-8 As shown, this example can achieve the effect of changing the shooting directions of multiple cameras 202 on multiple rubber strips 201.
[0040] Since the monitoring module also includes a circular plate 301, a motor II 305, an upper frame 306, a round seat 308 and a threaded column 309, the upper side of the circular plate 301 is connected to the upper frame 306 by screws, the upper frame 306 is connected to the motor II 305 by screws, the round seat 308 is set at the center of the lower side of the circular plate 301, the output shaft of the motor II 305 is fixed on the round seat 308, and a threaded column 309 is welded on the lower side of the round seat 308. The threaded column 309 is inserted into the center of the upper cross plate 101. The lower end of the threaded column 309 is threadedly connected with a nut, and the nut is pressed on the upper cross plate 101. The nut is removed After being removed, the two cross plates 101 and the multiple rubber strips 201 can be removed, which facilitates the disassembly of the two cross plates 101 and the multiple rubber strips 201; the motor II305 can drive the round seat 308 and the threaded column 309 to rotate with the axis of the output shaft of the motor II305 as the axis, and then drive the two cross plates 101 and the multiple rubber strips 201 to rotate with the axis of the output shaft of the motor II305 as the axis, thereby changing the shooting direction of the multiple cameras 202 on the multiple rubber strips 201; the rotation angle of the two cross plates 101 and the multiple rubber strips 201 should not be too large, and the rotation angle can be controlled within 45 degrees.
[0041] like Figure 7-8 As shown, this example can achieve the effect of fixing the rack 306 and the entire monitoring module at the required position.
[0042] Since a plurality of circular through holes are provided on the upper portion of the upper frame 306 , the plurality of circular through holes are used to connect screws, thereby fixing the upper frame 306 and the entire monitoring module at a desired position.
[0043] The monitoring module also includes a stop pin 103, a circular edge 302, a block 307, a circular ring 401, a horizontal bar 402, a square column 403, an elastic rod 404 and a brush 405. The circular plate 301 is welded with a circular edge 302 on the upper side, and a circular ring 401 is provided with one on the upper and lower sides. The upper circular ring 401 is rotatably connected to the circular edge 302, and a block 307 is screwed on the circular edge 302. The block 307 blocks the upper side of the circular ring 401. One side of the two circular rings 401 is integrally formed with a horizontal bar 402. The upper end of the square column 403 is welded with a Connected to the upper horizontal bar 402, the lower end of the square column 403 is slidably connected to the lower horizontal bar 402, and a compression spring is sleeved on the square column 403, and the compression spring is located between the two horizontal bars 402. The two ends of the elastic rod 404 are respectively bonded to the two horizontal bars 402, and a plurality of bristles 405 are bonded to the inner side of the elastic rod 404. The plurality of bristles 405 are located on the outside of the plurality of rubber strips 201. A stop pin 103 is fixedly connected to the cross plate 101 on the lower side, and the stop pin 103 is blocked under the circular ring 401 on the lower side.
[0044] like Figure 7-9As shown, this example can achieve the effect of cleaning dust on the camera 202 on the multiple rubber strips 201.
[0045] When the cross plate 101 on the lower side is raised or lowered, the stop pin 103 is driven to rise or fall, and the compression spring on the square column 403 applies downward force to the circular ring 401 and the horizontal bar 402 on the lower side, so that the circular ring 401 and the horizontal bar 402 on the lower side always have a tendency to move downward, and the stop pin 103 blocks the lower circular ring 401 and limits it, so that the distance between the two circular rings 401 can change according to the change of the distance between the two cross plates 101, so that the multiple rubber strips 201 and the elastic rod 404 maintain the same curvature, so that the multiple bristles 405 on the elastic rod 404 brush from the outside of the multiple rubber strips 201, and at this time the dust on the cameras 202 on the multiple rubber strips 201 is cleaned.
[0046] The monitoring module also includes a friction wheel 303 and a motor 1304. The upper frame 306 is connected to the motor 1304 by screws. The friction wheel 303 is fixedly connected to the output shaft of the motor 1304. The friction wheel 303 is frictionally driven with the ring 401 located on the upper side.
[0047] like Figure 7 As shown, this example can achieve the effect of driving the multiple bristles 405 to rotate in a circular motion and brush the outer sides of the multiple rubber strips 201 .
[0048] Motor I304 drives the friction wheel 303 to rotate, and then drives the two rings 401, the square column 403 and the elastic rod 404 to rotate in a circle, and then drives the multiple bristles 405 to rotate in a circle and brush through the outside of the multiple rubber strips 201, at this time cleaning the dust on the cameras 202 on the multiple rubber strips 201.
Claims
1. A monitoring system based on 5G communication, comprising a 5G wireless network module and a monitoring module, wherein the monitoring module is connected to the Internet via the 5G wireless network module, and characterized in that: The monitoring module includes a cross plate, a rubber strip and a camera. The cross plate is provided with one on each side, and a plurality of rubber strips are provided. The upper parts of the plurality of rubber strips are connected to the upper cross plate, and the lower parts of the plurality of rubber strips are connected to the lower cross plate. Each rubber strip is provided with a plurality of cameras from top to bottom. The monitoring module also includes a hinge seat, and each rubber strip is provided with a hinge seat at both ends, and the rubber strip is hinged to the corresponding cross plate through the hinge seat; The monitoring module further comprises a guide rod, the upper portion of the guide rod being fixed to the cross plate located on the upper side, and the lower portion of the guide rod being slidably connected to the cross plate located on the lower side; The monitoring module also includes a telescopic rod, the lower part of the guide rod is fixedly connected to the telescopic rod, and the movable end of the telescopic rod is fixedly connected to the cross plate located on the lower side; The monitoring module also includes vertical rods and wiring holes. The cross plate located on the lower side is fixedly connected to vertical rods corresponding to the number of rubber strips. Each vertical rod is provided with a wiring hole corresponding to the number of cameras, and the wiring hole is provided with an opening. The monitoring module further includes an inclined plate, and the two cross plates are fixedly connected to a plurality of inclined plates, and the plurality of inclined plates are respectively located on the inner sides of the plurality of hinge seats; The monitoring module also includes a circular plate, a motor II, an upper frame, a round seat and a threaded column. The upper side of the circular plate is fixedly connected to the upper frame, the upper frame is fixedly connected to the motor II, the round seat is arranged at the center of the lower side of the circular plate, the output shaft of the motor II is fixed on the round seat, the lower side of the round seat is fixedly connected to the threaded column, the threaded column is inserted into the center of the upper cross plate, the lower end of the threaded column is threadedly connected to a nut, and the nut is pressed on the upper cross plate; The monitoring module also includes a stop pin, a circular edge, a block, a circular ring, a horizontal bar, a square column, an elastic rod and bristles. A circular edge is welded on the upper side of the circular plate, and one is provided on the upper and lower sides of the circular ring. The circular ring on the upper side is rotatably connected to the circular edge, and a block is screwed on the circular edge. The block blocks the upper side of the circular ring. One side of the two circular rings is integrally formed with a horizontal bar. The upper end of the square column is welded to the horizontal bar on the upper side, and the lower end of the square column is slidably connected to the horizontal bar on the lower side. A compression spring is sleeved on the square column, and the compression spring is located between the two horizontal bars. The two ends of the elastic rod are respectively bonded to the two horizontal bars. A plurality of bristles are bonded to the inner side of the elastic rod, and the plurality of bristles are located on the outer sides of the plurality of rubber strips. A stop pin is fixedly connected to the cross plate on the lower side, and the stop pin blocks the bottom of the circular ring on the lower side; There are four rubber strips.
2. The 5G communication-based monitoring system according to claim 1, characterized in that: The monitoring module further includes an electrical box, which is connected to the cross plate at the lower side via screws.
3. The 5G communication-based monitoring system according to claim 2, characterized in that: The upper portion of the upper frame is provided with a plurality of circular through holes.
4. The 5G communication-based monitoring system according to claim 3, characterized in that: The monitoring module also includes a friction wheel and a motor 1. The upper frame is connected to the motor 1 by screws. The output shaft of the motor 1 is fixedly connected to the friction wheel, and the friction wheel is frictionally driven by the circular ring located on the upper side.
Citation Information
Patent Citations
Multi-point synchronous independent monitoring
CN209309616U