Intelligent monitoring device and intelligent monitoring management system

By combining the support plate and semi-hoop structure with the rotary motor and pitch structure, the problem of unstable and slow installation of existing intelligent monitoring equipment is solved. It enables stable and quick installation on the crossbar above the road and adjustment of the monitoring angle, improving installation safety and equipment functionality.

CN121408601BActive Publication Date: 2026-03-24LIYAO INTELLIGENT TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-12-26
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing methods for installing intelligent monitoring equipment are unstable and inconvenient, especially when installing it on overhead bars, which can increase the risk of working at height and cause it to loosen after prolonged use.

Method used

The installation structure uses a support plate and a semi-hoop. By opening a strip hole on the mounting rod, the combination of the support plate and the semi-hoop is connected to the slot and thread. Combined with a rotary motor and a tilting structure, the camera can be installed stably and quickly.

Benefits of technology

It enables stable and quick installation of cameras on overhead crossbars, reducing the risks of working at heights and improving the safety and efficiency of installation. Furthermore, the monitoring angle can be adjusted through rotation and tilt mechanisms, enhancing the functionality of the monitoring equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a kind of intelligent monitoring equipment and intelligent monitoring management system, it is related to intelligent monitoring field.The intelligent monitoring equipment, including: mounting structure, the mounting structure includes support plate and two half hoops, one end of two half hoops is respectively rotatably installed on the upper and lower sides of one end of the support plate, the other end of the support plate is provided with slot;Rotary structure, the rotary structure includes mounting plate and driving element, one end of the mounting plate is provided with plug block, the driving element is installed on the other end of the mounting plate, the plug block, the support plate and the horizontal part of two half hoops are all provided with assembly hole.The intelligent monitoring equipment provided by the application can quickly install the monitoring equipment on the mounting rod;And use support plate to cooperate with slot, limit the monitoring equipment in vertical direction and axial direction, so that the camera can be stably installed, realize relatively stable, fast installation of monitoring equipment.
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Description

Technical Field

[0001] This invention relates to the field of intelligent monitoring, and more particularly to an intelligent monitoring device and an intelligent monitoring management system. Background Technology

[0002] Intelligent monitoring systems, through intelligent perception, efficient transmission, and digital management, achieve a shift from passive monitoring to proactive early warning and intelligent decision-making. These systems are widely used in various fields, including industrial production, transportation and logistics, agriculture and animal husbandry, and energy infrastructure. In the transportation sector, monitoring equipment is installed above roads to monitor the dynamics of pedestrians and vehicles. Intelligent networks are then used to send alerts to onboard terminals, thus providing early warnings to pedestrians and vehicles and reducing the occurrence of traffic accidents.

[0003] In the transportation sector, surveillance equipment is typically installed on horizontal poles above roads. Common installation methods for surveillance equipment such as cameras in existing technologies include:

[0004] Drill holes in the crossbar, and then fix the camera mounting bracket to the crossbar with bolts;

[0005] Alternatively, supports can be welded onto the crossbar, and the camera mounting bracket can be installed with bolts. However, drilling and welding supports is cumbersome, and it requires workers to climb to heights and use tools, increasing the time spent working at heights and raising the risk.

[0006] Alternatively, it can be installed using a clamp structure. During installation, the mounting base is installed on the crossbar using two clamp structures, and the clamps are locked onto the crossbar. Then, the camera is installed on the mounting base. The connection between the clamps and the crossbar is mainly through friction. The clamps are made of deformable metal, which can easily damage the anti-corrosion protective layer on the surface of the crossbar during the locking process. During long-term use, due to corrosion from the external environment, when the crossbar and clamps rust, they are prone to loosening axially under the weight of the camera and wind, causing the monitoring position to shift.

[0007] There is still room for improvement in achieving more stable and faster installation.

[0008] Therefore, it is necessary to provide an intelligent monitoring device to solve the above-mentioned technical problems. Summary of the Invention

[0009] This invention provides an intelligent monitoring device and an intelligent monitoring management system, which solves the problem that there is still room for improvement in how to achieve more stable and faster installation of existing intelligent monitoring devices.

[0010] To solve the above-mentioned technical problems, the present invention provides an intelligent monitoring device, comprising:

[0011] The mounting structure includes a support plate and two half-hoops. One end of each half-hoop is rotatably mounted on the upper and lower sides of one end of the support plate, and the other end of the support plate is provided with a slot.

[0012] A rotating structure, comprising a mounting plate and a driving component, wherein a plug is provided at one end of the mounting plate and the driving component is mounted at the other end of the mounting plate, and assembly holes are provided on the horizontal portions of the plug, the support plate, and the two semi-hoops;

[0013] A camera, which is mounted on the output end of the drive unit via a tilting structure;

[0014] The mounting structure is mounted on a mounting rod, and a horizontal through-hole is provided on the mounting rod.

[0015] During installation, the other end of the support plate passes through the strip hole. After the two half-hoops are fitted onto the upper and lower sides of the mounting rod, the two horizontal parts fit against the upper and lower sides of the insert block, and the insert block is inserted into the slot. At this time, the multiple assembly holes are aligned, and a fixing pin is used to pass through the multiple assembly holes and threadedly connected to the threaded structure on one of the half-hoops.

[0016] Preferably, the fixing pin includes a positioning plate, a drive cap, and a pin shaft. The drive cap is installed on the top of the positioning plate, the pin shaft is installed on the bottom of the positioning plate, and the bottom end of the pin shaft is provided with a threaded surface.

[0017] Preferably, a stop arm is installed at one end of the mounting plate, above and below the insert block. When the opposite sides of the two stop arms abut against the two horizontal parts, the two horizontal parts respectively fit against the upper and lower sides of the support plate.

[0018] Preferably, the driving component includes a rotary motor, a mounting frame, a rotating shaft, and a square shaft. The rotary motor is slidably mounted on the mounting plate via the mounting frame. The rotating shaft passes through and is rotatably mounted on the mounting plate. A square groove is provided at the top of the rotating shaft, and one side of the square groove is open. The square shaft is mounted on the output shaft of the rotary motor and inserted into the square groove.

[0019] The drive cap has a square cavity, one side of which is open. The drive cap and the rotating shaft are located on the same plane, and the pitching structure is installed at the bottom end of the rotating shaft.

[0020] Preferably, the intelligent monitoring device further includes a positioning frame and a positioning mechanism, wherein the positioning frame is mounted on the mounting plate and located on one side of the assembly frame;

[0021] The positioning mechanism includes a mounting shell, an elastic element, and a positioning block. The mounting shell is mounted on the assembly frame. One end of the positioning block passes through the mounting shell and the assembly frame in sequence and is inserted into the positioning frame. One end of the positioning block is set as an arc surface. The other end of the positioning block is connected to the mounting shell through the elastic element.

[0022] Preferably, the number of the positioning frame and the positioning mechanism are both set to two, and they are set in a one-to-one correspondence. The two positioning frames are installed on the mounting plate and located on both sides of the assembly frame, and the two positioning mechanisms are respectively installed on both sides of the assembly frame.

[0023] Preferably, the pitch structure includes a U-shaped frame and a pitch motor. The U-shaped frame is installed at the bottom end of the rotation shaft, and the pitch motor is installed on the side of the U-shaped frame. One side of the camera is connected to the output end of the pitch motor, and the other side is rotatably connected to the U-shaped frame.

[0024] Preferably, the threaded structure is a nut, which is installed on the lower half-hoop and aligned with the mounting hole.

[0025] Preferably, the intelligent monitoring device further includes a cleaning mechanism for cleaning the mirror surface of the camera.

[0026] The present invention also provides an intelligent monitoring and management system, comprising: the aforementioned intelligent monitoring device, a transmission module, a communication interaction module, a control module, and a display module. The intelligent monitoring device is used to collect pedestrian data and vehicle driving data on the road. The transmission module transmits the data collected by the intelligent monitoring device to the control module. The control module is used to process and analyze the data collected by the intelligent monitoring device. The communication interaction module is used to transmit information sent by the control module to an in-vehicle terminal. The display module is used to display the monitoring screen collected by the intelligent monitoring device.

[0027] Compared with related technologies, the intelligent monitoring device provided by the present invention has the following beneficial effects:

[0028] This invention provides an intelligent monitoring device. By setting a support plate and opening a strip hole on the mounting rod, during installation, the support plate is passed through the strip hole, two half-hoops are joined together and correspondingly fitted on the upper and lower sides of the mounting rod, and the horizontal parts of the two half-hoops are aligned with the upper and lower sides of the support plate. Then, the insert on the mounting plate is inserted into the slot. At this time, the two half-hoops, the insert, and the assembly holes on the support plate are all aligned. After the fixing pin passes through the assembly hole in sequence, it is threadedly connected to the threaded structure at the bottom of the lower half-hoop to realize the installation of the camera. Thus, only the fixing pin is used for fixing, which can simultaneously complete the connection between the mounting structure and the mounting rod, as well as the connection between the rotating structure and the mounting structure, so that the monitoring device can be quickly installed on the mounting rod.

[0029] Furthermore, by utilizing the support plate and the slotted holes, the entire monitoring equipment is vertically and axially limited, thus enabling the camera to be installed securely and achieving a relatively stable and quick installation of the monitoring equipment. Attached Figure Description

[0030] Figure 1 This is a schematic diagram of the intelligent monitoring device provided by the present invention installed on the mounting bracket;

[0031] Figure 2 This is a schematic diagram of the structure of the first embodiment of the intelligent monitoring device provided by the present invention;

[0032] Figure 3 for Figure 2 A partial cross-sectional view of the intelligent monitoring device shown.

[0033] Figure 4 A schematic diagram of the installation structure provided by the present invention;

[0034] Figure 5 This is a schematic diagram illustrating the installation steps of the intelligent monitoring device provided by the present invention, wherein... Figure 5 Image (a) shows a schematic diagram of the insertion block and the slot being aligned. Figure 5 (b) is a schematic diagram of the insert block being inserted into the slot. Figure 5 Image (c) is a schematic diagram showing the fixing pin passing through the assembly hole and abutting against the threaded structure. Figure 5 (d) is a schematic diagram of the connection between the rotating motor drive fixing pin and the threaded structure.

[0035] Figure 6 This is a schematic diagram of the assembly of the positioning mechanism and the positioning frame provided by the present invention;

[0036] Figure 7 This is a schematic diagram of the structure of the second embodiment of the intelligent monitoring device provided by the present invention;

[0037] Figure 8 for Figure 7A partial cross-sectional view of the intelligent monitoring device shown.

[0038] Figure 9 This is a schematic diagram illustrating the principle of assembling the cleaning mechanism and clamping structure provided by the present invention, wherein... Figure 9 (a) is a schematic diagram of assembling the connecting pipe into the clamping groove of the first clamping plate. Figure 9 (b) is a schematic diagram of the first clamping plate and the second clamping plate clamping the connecting pipe together;

[0039] Figure 10 A schematic diagram of the nozzle used in this invention for cleaning the lens of a camera;

[0040] Figure 11 The schematic diagram of the intelligent monitoring and management system provided by the present invention.

[0041] Numbering on the map:

[0042] 1. Installation structure; 11. Support plate; 12. Half hoop; 13. Threaded structure;

[0043] 111. Slot; 121. Horizontal section; 122. Mounting hole;

[0044] 2. Rotating structure; 21. Mounting plate; 22. Driving component;

[0045] 211. Insert block; 212. Stop arm; 221. Rotary motor; 222. Assembly frame; 223. Rotary shaft; 224. Square shaft; 220. Square groove;

[0046] 3. Pitch structure; 31. U-shaped frame; 32. Pitch motor;

[0047] 4. Camera;

[0048] 5. Fixing pin; 51. Positioning plate; 52. Drive cap; 53. Pin shaft;

[0049] 6. Positioning mechanism; 61. Mounting housing; 62. Elastic element; 63. Positioning block;

[0050] 7. Positioning frame;

[0051] 8. Cleaning mechanism; 81. Hoses; 82. Connecting pipes; 83. Spray nozzles; 84. Water inlet pipes;

[0052] 821. Flange;

[0053] 9. Clamping structure; 91. First clamping plate; 92. Second clamping plate; 93. Clamping groove;

[0054] 911. Convex shaft;

[0055] 10. Mounting bracket; 101. Column; 102. Mounting rod; 100. Strip hole. Detailed Implementation

[0056] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0057] This invention provides an intelligent monitoring device.

[0058] In the first embodiment

[0059] Please refer to the following: Figure 2 and Figure 3 In one embodiment of the present invention, the intelligent monitoring device includes:

[0060] Mounting structure 1 includes a support plate 11 and two half-hoops 12. One end of each half-hoop 12 is rotatably mounted on the upper and lower sides of one end of the support plate 11, and the other end of the support plate 11 is provided with a slot 111.

[0061] Rotating structure 2, the rotating structure 2 includes mounting plate 21 and driving component 22, one end of mounting plate 21 is provided with insert block 211, driving component 22 is installed at the other end of mounting plate 21, and mounting holes 122 are provided on the insert block 211, the support plate 11 and the horizontal part 121 of the two half hoop 12.

[0062] Camera 4 is mounted on the output end of the drive unit 22 via a pitch structure 3;

[0063] The mounting structure 1 is mounted on the mounting rod 102, and the mounting rod 102 has a horizontal through-hole 100.

[0064] During installation, the other end of the support plate 11 passes through the strip hole 100. After the two half-hoops 12 are fitted onto the upper and lower sides of the mounting rod 102, the two horizontal parts 121 fit against the upper and lower sides of the insert block 211, and the insert block 211 is inserted into the slot 111. At this time, the multiple assembly holes 122 are aligned, and the fixing pin 5 passes through the multiple assembly holes 122 and is threadedly connected to the threaded structure 13 on one of the half-hoops 12.

[0065] In this invention, the thickness of the support plate 11 is the same as the width of the slot 100. The inner walls of the two half-hoops 12 are provided with anti-slip pads, which can be made of rubber, leather, etc., to increase friction while protecting the surface of the mounting rod 102 from wear.

[0066] By setting a support plate 11 and opening a strip hole 100 on the mounting rod 102, during installation, the support plate 11 passes through the strip hole 100, the two half-hoops 12 are closed together and correspondingly fitted on the upper and lower sides of the mounting rod 102, and the horizontal part 121 of the two half-hoops 12 is attached to the upper and lower sides of the support plate 11. Then, the insert block 211 on the mounting plate 21 is inserted into the slot 111. At this time, the two half-hoops 12, the insert block 211, and the assembly hole 122 on the support plate 11 are all aligned. After the fixing pin 5 passes through the assembly hole 122 in sequence, it is threadedly connected to the threaded structure 13 at the bottom of the lower half-hoop 12 to realize the installation of the camera 4. Thus, only the fixing pin 5 is used for fixing operation, which can simultaneously complete the connection between the mounting structure 1 and the mounting rod 102, as well as the connection between the rotating structure 2 and the mounting structure 1, so that the monitoring equipment can be quickly installed on the mounting rod 102.

[0067] Furthermore, by using the support plate 11 in conjunction with the strip hole 100, the entire monitoring equipment is limited in the vertical and axial directions, thereby enabling the camera 4 to be installed securely and achieving a relatively stable and quick installation of the monitoring equipment.

[0068] In this invention, the monitoring equipment is mainly used for monitoring traffic roads. Please refer to [link / reference needed]. Figure 1 The monitoring equipment is installed on the mounting rod 102 of the mounting bracket 10 set on the road. The mounting bracket 10 also includes a column 101, which is installed on one side of the road. The mounting rod 102 is installed horizontally on the top of the column 101 and located above the road. The mounting rod 102 is preferably a hollow structure, and the end away from the column 101 is sealed. Both the inner and outer surfaces of the mounting rod 102 are coated with anti-corrosion coating, and the entire monitoring equipment is also coated with anti-corrosion coating. A drainage hole (not shown) is opened at the bottom of the mounting rod 102 to drain some of the rainwater that enters through the strip hole 100.

[0069] As an optional embodiment, the strip hole 100 is an integral hole, and its length covers the range on the mounting rod 102 where the monitoring equipment is installed, so that the installation position of the monitoring equipment can be flexibly adjusted.

[0070] As another optional embodiment, the strip holes 100 include multiple ones, which are opened at intervals on the mounting rod 102 according to the conventional installation position of the camera 4, and the size of each strip hole 100 is the same as the cross-sectional size of the support plate 11.

[0071] Please see Figure 2 and Figure 3 In this embodiment, the fixing pin 5 includes a positioning plate 51, a drive cap 52, and a pin 53. The drive cap 52 is installed on the top of the positioning plate 51, and the pin 53 is installed on the bottom of the positioning plate 51. The bottom end of the pin 53 is provided with a threaded surface.

[0072] By setting the positioning plate 51, the contact area between the fixing pin 5 and the horizontal part 121 of the upper half hoop 12 is increased, thereby improving the stability of the connection.

[0073] The horizontal portion 121 of the semi-hoop 12 is rectangular, and preferably the diameter of the positioning disk 51 is the same as the short side value of the horizontal portion 121.

[0074] Among them, the pin 53 passes through multiple assembly holes 122 and is threadedly connected to the threaded structure 13 at the bottom end of the lower half hoop 12;

[0075] The setting of the drive cap 52 makes it easy to use tools to turn the pin 53 to achieve a threaded connection.

[0076] In other embodiments, the fixing pin 5 may also consist only of a pin shaft 53 and a drive cap 52, with the pin shaft 53 connected to the bottom of the drive cap 52.

[0077] Please see Figure 2 and Figure 5 In a preferred embodiment, a stop arm 212 is installed at one end of the mounting plate 21, above and below the insert block 211. When the opposite sides of the two stop arms 212 abut against the two horizontal parts 121 respectively, the two horizontal parts 121 respectively fit the upper and lower sides of the support plate 11.

[0078] By setting abutment arms 212 at both the top and bottom of one end of the mounting plate 21, when inserting the insert block 211 into the square groove 220, firstly, two half-hoops 12 are fitted on the upper and lower sides of the mounting rod 102. During the process of inserting the insert block 211 into the square groove 220, the abutment arms 212 on the upper and lower sides act with the horizontal parts 121 of the two half-hoops 12 respectively, so that the horizontal parts 121 are in contact with the upper and lower sides of the support plate 11. At this time, the two half-hoops 12 hold the mounting rod 102 tightly, thereby avoiding the elastic potential energy of the anti-slip pad on the inner wall of the half-hoops 12 from making it difficult for the horizontal parts 121 to completely fit the support plate 11. The operator needs to press the two horizontal parts 121 to keep them in contact with the support plate 11.

[0079] The stop arm 212 is used to limit the movement of the fixing pin 5, which is convenient for subsequent installation. At the same time, the stop arm 212 can be used to limit the movement of the two half-hoops 12, further improving the stability of the installation.

[0080] Preferably, two stop arms 212 are installed on both the upper and lower sides of one end of the mounting plate 21. After acting with the horizontal part 121, the two stop arms 212 at the same height are located on both sides of the positioning plate 51.

[0081] Preferably, the ends of the horizontal portions 121 of the two semi-hoops 12 are both set as arc surfaces, and the bottom of the corresponding stop arm 212 facing the horizontal portion 121 is set as an arc surface, so that the stop arms 212 on the upper and lower sides can clamp the two horizontal portions 121, so that the two horizontal portions 121 fit against the upper and lower sides of the support plate 11.

[0082] Please see Figure 2 and Figure 3 In this embodiment, the driving component 22 includes a rotary motor 221, an assembly frame 222, a rotating shaft 223, and a square shaft 224. The rotary motor 221 is slidably mounted on the mounting plate 21 via the assembly frame 222. The rotating shaft 223 passes through and is rotatably mounted on the mounting plate 21. A square groove 220 is provided at the top end of the rotating shaft 223, and one side of the square groove 220 is open. The square shaft 224 is mounted on the output shaft of the rotary motor 221 and inserted into the square groove 220.

[0083] The drive cap 52 has a square cavity, one side of which is open. The drive cap 52 and the rotation shaft 223 are located on the same plane. The pitch structure 3 is installed at the bottom end of the rotation shaft 223.

[0084] Please refer to the following: Figure 5 When installing monitoring equipment, such as Figure 5 In step (a), first insert the support plate 11 through the strip hole 100, and then put the two half hoops 12 on the upper and lower sides of the mounting rod 102.

[0085] like Figure 5 In step (b), insert the plug 211 on the mounting plate 21 into the slot 111. At this time, the two half-hoops 12, the support plate 11 and the mounting holes 122 on the plug 211 are aligned. At the same time, the upper and lower abutment arms 212 clamp the two horizontal parts 121, so that the two horizontal parts 121 fit against the upper and lower sides of the support plate 11.

[0086] like Figure 5 In the middle (c), the fixing pin 5 is passed through multiple assembly holes 122 in sequence, and the bottom end abuts against the threaded structure 13, and the side of the upper cavity opening of the drive cap 52 faces the square shaft 224 of the rotary motor 221.

[0087] like Figure 5In step (d), the moving assembly frame 222 drives the rotary motor 221 to move toward the fixed pin 5, so that the square shaft 224 is assembled into the square cavity of the drive cap 52 and at the same time separates from the rotating shaft 223. Subsequently, the rotary motor 221 drives the fixed pin 5 to rotate through the square shaft 224. The fixed pin 5 is threadedly connected to the threaded structure 13 and moves downward. When the threaded connection is complete, the upper end of the drive cap 52 is still partially sleeved on the square shaft 224.

[0088] When the installation is complete, move the assembly frame 222 again so that the rotary motor 221 moves toward the rotary shaft 223, so that the square shaft 224 enters the square groove 220 at the top of the rotary shaft 223 again, which will be used to adjust the horizontal position of the camera 4 later.

[0089] Thus, the staff only needs to move the position of the rotary motor 221 to complete the installation, without having to carry auxiliary tools such as electric screwdrivers, making the installation more convenient, reducing the number of operation steps for the staff, shortening the operation time, and improving the safety of the operation.

[0090] Thus, the rotary motor 221 is used in one state to drive the fixing pin 5 to install and fix the monitoring equipment, and in another state to drive the rotation of the rotating shaft 223 to adjust the orientation of the camera 4.

[0091] In this embodiment, the rotary motor 221 is used to drive the fixed pin 5 to rotate an integer number of revolutions, so that the square shaft 224 can remain aligned with the opening side of the square groove 220.

[0092] The mounting plate 21 has sliding grooves on both sides of its top, and the sliding grooves extend to the two abutment arms 212 located above. The mounting frame 222 has sliders on both sides of its bottom, and the sliders slide into the sliding grooves to form a sliding connection.

[0093] Furthermore, the cross-section of the groove is convex, and the shape of the slider is set accordingly.

[0094] In this invention, a rotating structure 2 is used to adjust the horizontal position of the camera 4, and a subsequent tilting structure 3 is used to adjust the tilt angle of the camera 4. This facilitates the adjustment of the monitoring angle of the camera 4 and enables the camera 4 to track abnormal traffic events, such as pedestrians running red lights, vehicles running red lights, or traffic accidents at intersections. By tracking abnormal traffic events, the information can be transmitted to the vehicle terminal using subsequent control modules and communication interaction modules, thereby reducing the occurrence of accidents or further accidents.

[0095] Among them, staff can actively control the rotating motor 221 to drive the fixing pin 5 to rotate continuously to complete the installation through the application APP of the intelligent monitoring and management system. The position of the camera 4 can be adjusted by active adjustment and intelligent adjustment by the system.

[0096] In other embodiments, a prism groove, slotted groove, or Phillips head groove can be provided on the drive cap 52 to be installed with tools such as an electric screwdriver. The drive shaft of the rotary motor 221 and the rotary shaft 223 are directly connected by a coupling.

[0097] Please see Figure 2 and Figure 6 As a preferred embodiment, the intelligent monitoring device further includes a positioning frame 7 and a positioning mechanism 6. The positioning frame 7 is mounted on the mounting plate 21 and located on one side of the assembly frame 222.

[0098] The positioning mechanism 6 includes a mounting shell 61, an elastic element 62, and a positioning block 63. The mounting shell 61 is mounted on the assembly frame 222. One end of the positioning block 63 passes through the mounting shell 61 and the assembly frame 222 in sequence and is inserted into the positioning frame 7. One end of the positioning block 63 is set as an arc surface, and the other end of the positioning block 63 is connected to the mounting shell 61 through the elastic element 62.

[0099] By setting up the positioning frame 7 and the positioning mechanism 6, when the rotary motor 221 is fully installed with the fixing pin 5, the moving assembly frame 222 drives the square shaft 224 at the output end of the rotary motor 221 to be inserted into the square groove 220 again. During this process, the arc surface of the positioning block 63 interacts with the positioning frame 7. The positioning block 63 is compressed by the positioning frame 7 to the elastic element 62 and enters the mounting shell 61. When the square shaft 224 is fully assembled with the square groove 220, the positioning block 63 is aligned with the center hole of the positioning frame 7. At this time, the elastic element 62 pushes the positioning block 63 into the positioning frame 7. At the same time, the assembly frame 222 slides to its maximum stroke, thereby achieving a limit and preventing the assembly frame 222 from sliding due to outdoor environmental factors such as wind force, which would cause the square shaft 224 to move out of the square groove 220. This allows the rotary motor 221 to be used more stably to adjust the position of the camera 4.

[0100] Among them, the elastic element 62 is a spring, or it can be an elastic component such as a leaf spring.

[0101] In a preferred embodiment, the number of positioning frames 7 and positioning mechanisms 6 are both set to two, and they are arranged in a one-to-one correspondence. The two positioning frames 7 are installed on the mounting plate 21 and located on both sides of the assembly frame 222, and the two positioning mechanisms 6 are respectively installed on both sides of the assembly frame 222.

[0102] By setting two positioning frames 7 and positioning mechanisms 6, the assembly frame 222 is limited from both sides, further improving the stability of the limiting.

[0103] Please see Figure 2In this embodiment, the pitch structure 3 includes a U-shaped frame 31 and a pitch motor 32. The U-shaped frame 31 is installed at the bottom end of the rotating shaft 223, and the pitch motor 32 is installed on the side of the U-shaped frame 31. One side of the camera 4 is connected to the output end of the pitch motor 32, and the other side is rotatably connected to the U-shaped frame 31.

[0104] When it is necessary to adjust the angle of camera 4, the pitch motor 32 drives camera 4 to rotate by a preset angle, thereby adjusting the angle of camera 4.

[0105] In other embodiments, the pitch structure 3 includes a U-shaped frame 31, a rotating shaft, and a threaded pin. The U-shaped frame 31 is installed at the bottom end of the rotating shaft 223. The camera 4 is rotatably installed inside the U-shaped frame 31 via the rotating shaft. The threaded pin is threadedly connected to the U-shaped frame 31, with its end facing the camera 4. After the position of the camera 4 is adjusted, the threaded pin is tightened to abut against the camera 4 and limit its position.

[0106] Please see Figure 4 As an optional embodiment, the threaded structure 13 is a nut, which is installed on the lower half-hoop 12 and aligned with the mounting hole 122.

[0107] After the pin 53 passes through multiple assembly holes 122 in sequence, it is threadedly connected to the threaded structure 13 (nut);

[0108] As another optional embodiment, the thread structure 13 is an internal thread surface, which is disposed on the inner wall of the assembly hole 122 located in the lower half hoop 12, so that the assembly hole 122 forms a threaded hole.

[0109] Second Embodiment

[0110] Please refer to the following: Figure 7 and Figure 8 Based on the intelligent monitoring device provided in the first embodiment, the intelligent monitoring device provided in the second embodiment differs from the first embodiment in that the intelligent monitoring device further includes a cleaning mechanism 8, which is used to clean the mirror surface of the camera 4.

[0111] Since this monitoring equipment is used for road monitoring, there is a lot of dust on the road, and the lens of camera 4 is prone to dust accumulation. The cleaning mechanism 8 can clean the lens of camera 4 regularly to ensure monitoring quality.

[0112] Cleaning should ideally be done at night or in the early morning when there are fewer vehicles.

[0113] In this embodiment, the cleaning mechanism 8 includes a water inlet pipe 84, multiple hoses 81, multiple connecting pipes 82, and multiple nozzles 83;

[0114] The water inlet pipe 84 is installed inside the mounting rod 102. Each hose 81, each connecting pipe 82, each nozzle 83 and each camera 4 are arranged in a one-to-one correspondence. One end of the hose 81 is connected to the water inlet pipe 84, and the other end passes through the strip hole 100 and then through the mounting rod 102 to be connected to the connecting pipe 82. The nozzle 83 is installed on the connecting pipe 82.

[0115] The intelligent monitoring device also includes a clamping structure 9, which is used to support the installation of the connecting pipe 82. When the connecting pipe 82 is installed on the clamping structure 9, the nozzle 83 is tilted above the camera 4.

[0116] In this embodiment, the other end of the water inlet pipe 84 is sealed. The cleaning mechanism 8 also includes a water supply pipe, a water pump and a water storage tank (not shown in the figure). One end of the water supply pipe is connected to one end of the water inlet pipe 84, and the other end is connected to the output end of the water pump. The input end of the water pump is connected to the water storage tank through a pipe. The water storage tank contains cleaning liquid and can be added periodically.

[0117] The water supply pipe runs along the inside of the column 101, and then passes through the bottom opening of the column 101 to connect with the water pump. The water storage tank is installed on the ground or underground.

[0118] Alternatively, the inlet pipe 84 can be connected to the municipal water supply network via a water supply pipe, and the water input can be controlled by a valve.

[0119] In this embodiment, by setting a flexible hose 81, the nozzle 83 can be adjusted within a certain range, and its length can meet the installation position of the monitoring equipment within a certain range, thereby flexibly adapting to the installation position of the monitoring equipment within a certain range.

[0120] When camera 4 needs to be cleaned, such as Figure 10 The camera 4 is driven to rotate upward by the pitch motor 32 so that the lens of the camera 4 faces the nozzle 83. The nozzle 83 sprays cleaning fluid onto the lens of the camera 4 to clean the lens of the camera 4. During the cleaning process, the pitch motor 32 can adjust the angle of the camera 4 within a preset range so that the cleaning fluid can clean the lens of the camera 4 more thoroughly. After cleaning, the pitch motor 32 drives the camera 4 to the monitoring angle.

[0121] Among them, nozzle 83 is a fan-shaped nozzle, and the sprayed liquid is in a fan shape, so that the cleaning liquid has sufficient width to function with the lens of camera 4.

[0122] The upper end of the connecting pipe 82 is a branch pipe and the lower end is a curved pipe with a certain degree of curvature. The nozzle 83 is installed on the curved part, so that it is tilted above the camera 4, which makes it easy to clean the mirror surface of the camera 4.

[0123] Multiple water outlet heads are provided on the water inlet pipe 84. The selection of the appropriate head depends on the number of cameras 4 installed. A sealing cap is threaded onto the water outlet head. When in use, remove the sealing cap and thread the end of the hose 81 away from the nozzle 83 onto the water outlet head.

[0124] In other embodiments, the cleaning mechanism 8 may also use a cleaning cotton brush or the like, suspended at a certain angle above the camera 4.

[0125] Please see Figure 7 and Figure 9 In this embodiment, the clamping structure 9 includes a first clamping plate 91 and a second clamping plate 92. The first clamping plate 91 is mounted on the mounting plate 21, and the second clamping plate 92 is mounted on the assembly frame 222. The first clamping plate 91 and the second clamping plate 92 are provided with clamping grooves 93 on opposite sides. A plurality of convex shafts 911 are installed on the first clamping plate 91 at intervals on the outside of the clamping grooves 93.

[0126] The connecting pipe 82 is provided with a flange 821, and the flange 821 is provided with an assembly hole 122.

[0127] When the first clamping plate 91 and the second clamping plate 92 are closed, the two clamping grooves 93 form a circular groove with the same diameter as the connecting pipe 82, and each clamping groove 93 has a rubber pad on its inner wall to improve the clamping effect.

[0128] The clamping structure 9 is set on the mounting plate 21 and the assembly frame 222 of the rotating structure 2, and is not set on the mounting rod 102, thereby reducing the process requirements of the mounting rod 102.

[0129] Please refer to the following: Figure 9 (a) and Figure 9 In (b), during the installation of the monitoring equipment, after the plug 211 on the mounting plate 21 is inserted into the slot 111, the connecting pipe 82 is assembled to the first clamping plate 91, so that the flange 821 is sleeved on multiple convex shafts 911, and the multiple convex shafts 911 cooperate with the flange 821 to keep the connecting pipe 82 vertical.

[0130] Subsequently, after the fixing pin 5 and the threaded structure 13 are installed, the drive assembly frame 222 drives the rotary motor 221 to move to the assembly process of the square shaft 224 and the square groove 220. At the same time, the assembly frame 222 drives the second clamping plate 92 to move towards the first clamping plate 91. When the square shaft 224 and the square groove 220 are assembled and the positioning mechanism 6 and the positioning frame 7 are engaged, the second clamping plate 92 and the first clamping plate 91 close together to fix and limit the connecting pipe 82, that is, to fix and limit the nozzle 83. The operation of fixing and limiting the nozzle 83 is simple and convenient, so that it is tilted and set above the camera 4.

[0131] Thus, the rotating motor 221 switches from the state of fixing the monitoring equipment by driving the fixing pin 5 to the state of driving the rotation shaft 223 to adjust the position of the camera 4. During this process, the nozzle 83 can be fixed and limited, so that it can be suspended above the camera 4.

[0132] In this embodiment, preferably, when the intelligent monitoring device is not installed with the mounting rod 102, the positioning mechanism 6 is not assembled with the positioning frame 7; at this time, the square shaft 224 is not assembled with the square groove 220.

[0133] The number of convex shafts 911 is not less than two, and in this embodiment there are two.

[0134] The working principle of the intelligent monitoring device provided by this invention is as follows:

[0135] By setting a support plate 11 and opening a strip hole 100 on the mounting rod 102, during installation, the support plate 11 passes through the strip hole 100, the two half-hoops 12 are closed together and correspondingly fitted on the upper and lower sides of the mounting rod 102, and the horizontal part 121 of the two half-hoops 12 is attached to the upper and lower sides of the support plate 11. Then, the insert block 211 on the mounting plate 21 is inserted into the slot 111. At this time, the two half-hoops 12, the insert block 211, and the assembly hole 122 on the support plate 11 are all aligned. After the fixing pin 5 passes through the assembly hole 122 in sequence, it is threadedly connected to the threaded structure 13 at the bottom of the lower half-hoop 12 to realize the installation of the camera 4. Thus, only the fixing pin 5 is used for fixing operation, which can simultaneously complete the connection between the mounting structure 1 and the mounting rod 102, as well as the connection between the rotating structure 2 and the mounting structure 1, so that the monitoring equipment can be quickly installed on the mounting rod 102.

[0136] Furthermore, by using the support plate 11 in conjunction with the strip hole 100, the entire monitoring equipment is limited in the vertical and axial directions, thereby enabling the camera 4 to be installed securely and achieving a relatively stable and quick installation of the monitoring equipment.

[0137] For details, please refer to the following: Figure 5 When installing monitoring equipment, such as Figure 5 In step (a), first insert the support plate 11 through the strip hole 100, and then put the two half hoops 12 on the upper and lower sides of the mounting rod 102.

[0138] like Figure 5 In step (b), insert the plug 211 on the mounting plate 21 into the slot 111. At this time, the two half-hoops 12, the support plate 11 and the mounting holes 122 on the plug 211 are aligned. At the same time, the upper and lower abutment arms 212 clamp the two horizontal parts 121, so that the two horizontal parts 121 fit against the upper and lower sides of the support plate 11.

[0139] like Figure 5 In the middle (c), the fixing pin 5 is passed through multiple assembly holes 122 in sequence, and the bottom end abuts against the threaded structure 13, and the side of the upper cavity opening of the drive cap 52 faces the square shaft 224 of the rotary motor 221.

[0140] like Figure 5 In the middle (d), the moving assembly frame 222 drives the rotary motor 221 to move toward the fixed pin 5, so that the square shaft 224 is assembled into the square cavity of the driving cap 52 and at the same time separates from the rotating shaft 223. Subsequently, the rotary motor 221 drives the fixed pin 5 to rotate through the square shaft 224. The fixed pin 5 is threadedly connected to the threaded structure 13 and moves downward. When the threaded connection is complete, the upper end of the driving cap 52 is still partially sleeved on the square shaft 224.

[0141] When the installation is complete, move the assembly frame 222 again so that the rotary motor 221 moves toward the rotary shaft 223, so that the square shaft 224 enters the square groove 220 at the top of the rotary shaft 223 again, which will be used to adjust the horizontal position of the camera 4 later.

[0142] Thus, the staff only needs to move the position of the rotary motor 221 to complete the installation, without having to carry auxiliary tools such as electric screwdrivers, making the installation more convenient, reducing the number of operation steps for the staff, shortening the operation time for the staff, and improving the safety of the operation.

[0143] Furthermore, the rotary motor 221 is used in one state to drive the fixing pin 5 to install and fix the monitoring equipment, and in another state to drive the rotation of the rotating shaft 223 to adjust the orientation of the camera 4.

[0144] The present invention also provides an intelligent monitoring and management system.

[0145] Please see Figure 11 An intelligent monitoring and management system includes: the aforementioned intelligent monitoring device, a transmission module, a communication interaction module, a control module, and a display module. The intelligent monitoring device is used to collect pedestrian data and vehicle driving data on the road. The transmission module transmits the data collected by the intelligent monitoring device to the control module. The control module is used to process and analyze the data collected by the intelligent monitoring device. The communication interaction module is used to transmit information sent by the control module to an in-vehicle terminal. The display module is used to display the monitoring screen collected by the intelligent monitoring device.

[0146] In this embodiment, the number of intelligent monitoring devices is at least two. During the regular monitoring phase, one intelligent monitoring device faces the sidewalk and mainly monitors pedestrians and non-motorized vehicles, while the other intelligent monitoring device faces the road where vehicles travel and mainly monitors the driving status of vehicles.

[0147] Among them, when monitoring pedestrians and non-motorized vehicles, if a pedestrian or non-motorized vehicle runs a red light, or if a pedestrian has not crossed the intersection after the green light ends; at the same time, when another camera 4 detects that a vehicle is about to enter the intersection, the above information is transmitted to the control module through the transmission module. The control module then transmits the information that a pedestrian is on the sidewalk to the vehicle terminal through the communication interaction module, reminding the vehicle to slow down.

[0148] Additionally, voice announcements can be set up at intersections to remind pedestrians that vehicles are approaching quickly and not to run red lights.

[0149] Simultaneously, if road construction or traffic accidents occur within the monitoring range, information can be sent to the vehicle terminal to alert drivers of the corresponding abnormal events, prompting them to slow down. Accident information can also be sent to the traffic department, enabling them to quickly arrive at the scene for handling.

[0150] The display module includes a screen set in the background and a screen set at the intersection. The screen in the background is used by staff to view the situation on site. The screen at the intersection is integrated with the voice broadcast system and can be used to display pedestrians or non-motorized vehicles running red lights in real time. With the voice broadcast, it can reduce pedestrians' red light running behavior by using their sense of shame.

[0151] The angle of the camera 4 can be adjusted by the rotary motor 221 and the pitch motor 32. It can be used to track pedestrians who run red lights and display them on the intersection display screen, as well as to adjust the orientation to collect images of abnormal events such as traffic accidents.

[0152] Therefore, the use of intelligent monitoring and management systems can reduce traffic accidents and improve road safety.

[0153] The intelligent monitoring and management system obtains vehicle information by relying on roadside sensing devices (i.e., camera 4 collects vehicle license plate information, etc.), vehicle-mounted terminals actively report information, and combines data fusion and cloud verification to determine the information of upcoming vehicles. For example, the vehicle-mounted GPS / BeiDou positioning module can generate multiple high-precision location data per second, which is reported to the roadside equipment to help predict the vehicle's driving trajectory; by binding the license plate information with the vehicle identity information reported by the vehicle-mounted terminal, and comparing it with the vehicle management database, etc.

[0154] The specific structure of the intelligent monitoring device is as described in the above embodiments. Since the intelligent monitoring management system adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be elaborated here.

[0155] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural or procedural transformations made based on the content of the present invention specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present invention.

Claims

1. An intelligent monitoring device, characterized by, The utility model relates to a kind of intelligent monitoring equipment, including: mounting structure, the mounting structure includes support plate and two half hoops, one end of two half hoops is rotatably mounted in the upper and lower sides of the one end of the support plate respectively, and the other end of the support plate is provided with slot;Rotary structure, the rotary structure includes mounting plate and driving element, one end of the mounting plate is provided with insert block, and the driving element is installed in the other end of the mounting plate, and the insert block, the support plate and the horizontal part of two half hoops are all provided with assembly hole;Camera, the camera is installed in the output end of the driving element by pitch structure;Wherein, the mounting structure is installed on mounting rod, and strip-shaped hole is horizontally and through in the mounting rod;When installation, the other end of the support plate is through the strip-shaped hole, and after two half hoops are sleeved with the upper and lower sides of the mounting rod, the upper and lower sides of the insert block are attached to the horizontal part, and the insert block is inserted into slot;At this time, multiple assembly holes are aligned, and fixed pin is used to pass through multiple assembly holes and is threadedly connected with the threaded structure on one half hoop. The fixed pin includes positioning disc, driving cap and pin shaft, the driving cap is installed on the top of the positioning disc, the pin shaft is installed on the bottom of the positioning disc, and the bottom end of the pin shaft is provided with threaded face. One end of the mounting plate and above and below the insert block are both installed with stop arm, when the opposite sides of the upper and lower stop arms are respectively abutted on two horizontal parts, the upper and lower sides of two horizontal parts are respectively attached to the support plate. The driving element includes rotary motor, assembly frame, rotating shaft and square shaft, the rotary motor is slidably installed on the mounting plate by the assembly frame, the rotating shaft is through and rotatably installed on the mounting plate, the top end of the rotating shaft is provided with square slot, one side of the square slot is provided with opening, the square shaft is installed on the output shaft of the rotary motor and is inserted into the square slot; The driving cap is provided with square cavity, one side of the square cavity is provided with opening, the driving cap is located in the same plane with the rotating shaft, and the pitch structure is installed on the bottom end of the rotating shaft. The intelligent monitoring equipment further includes positioning frame and positioning mechanism, the positioning frame is installed on the mounting plate and is located on one side of the assembly frame; 2. The intelligent monitoring device of claim 1, wherein, The positioning mechanism includes mounting shell, elastic member and positioning block, the mounting shell is installed on the assembly frame, one end of the positioning block is inserted into the positioning frame after sequentially through the mounting shell and the assembly frame, and one end of the positioning block is provided with arc surface, and the other end of the positioning block is connected with the mounting shell by the elastic member.

3. The intelligent monitoring device of claim 1, wherein, The number of the positioning frame and the positioning mechanism is both set to two, and is one-to-one correspondence, two positioning frames are installed on the mounting plate and are located on both sides of the assembly frame, and two positioning mechanisms are respectively installed on both sides of the assembly frame.

4. The intelligent monitoring device of claim 2, wherein, The pitch structure includes U-shaped frame and pitch motor, the U-shaped frame is installed on the bottom end of the rotating shaft, the pitch motor is installed on the side of the U-shaped frame, one side of the camera is connected with the output end of the pitch motor, and the other side is rotatably connected with the U-shaped frame. ​ 5. The intelligent monitoring device of claim 4, wherein, ​ ​ 6. The intelligent monitoring device of claim 5, wherein, ​ 7. The intelligent monitoring device of claim 4, wherein, ​ 8. The intelligent monitoring device of claim 1, wherein, The threaded structure is a nut, which is installed on the lower half-hoop and aligned with the mounting hole.

9. The intelligent monitoring device of claim 1, wherein, The intelligent monitoring device also includes a cleaning mechanism for cleaning the mirror surface of the camera.

10. An intelligent monitoring management system, characterized by, include: The intelligent monitoring device, transmission module, communication interaction module, control module, and display module as described in any one of claims 1-9; The intelligent monitoring device is used to collect pedestrian data and vehicle driving data on the road. The transmission module transmits the data collected by the intelligent monitoring device to the control module. The control module is used to process and analyze the data collected by the intelligent monitoring device. The communication interaction module is used to transmit the information sent by the control module to the vehicle terminal. The display module is used to display the monitoring screen collected by the intelligent monitoring device.

Citation Information

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