Highway road safety intelligent monitoring system

By designing an open-closable box, L-plate structure and a motor-driven power block system, the protection and heat dissipation of highway surveillance cameras is achieved, and the problem of surveillance camera protection in bad weather is solved, and the safety and stability of monitoring are improved.

CN120017944APending Publication Date: 2025-05-16SHANDONG GAOSU LOAD & BRIDGE MAINTENANCE CO LTD +1
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Patent Information

Application Number
CN202510263076.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-06
Publication Date
2025-05-16

AI Technical Summary

Technical Problem

The prior art is difficult to effectively protect surveillance cameras under severe weather conditions, resulting in the impact of monitoring safety and stability.

Method used

An intelligent monitoring system for road safety of highways is designed, using an openable and closure area composed of square frames and L plates. The motor drives the power block to move in the straight groove, realizes the synchronous movement of the square frames and L plates, forms a sealed or open protection area, and quickly moves the shield through the double-trough rod and connecting rod structure on rainy days to prevent rainwater from invading.

Benefits of technology

Effectively protect the monitoring camera in bad weather, improve the safety and stability of monitoring, avoid the impact of rain on the camera, and provide heat dissipation in high temperature weather.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an intelligent monitoring system for highway road safety. The intelligent monitoring system comprises a mounting box assembly, a protection assembly and a camera assembly, the installation box body assembly comprises a box body, the box body is provided with a set of straight grooves and a set of inclined grooves, each straight groove is internally provided with a first guide round rod, each first guide round rod is connected with the box body, each inclined groove is internally provided with a second guide round rod, and each second guide round rod is connected with the box body. Each second guide round rod is connected with the box body; the protection assembly comprises a set of square blocks and a set of inclined square blocks, and each square block is arranged in the corresponding straight groove. The invention relates to the technical field of monitoring, in particular to an intelligent monitoring system for highway road safety. Aiming at the defects in the prior art, the highway road safety intelligent monitoring system is developed, under the severe weather condition, the monitoring camera is protected, and the monitoring safety and stability are improved.
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Description

Technical Field

[0001] The present invention relates to the field of monitoring technology, and in particular to an intelligent highway road safety monitoring system. Background Art

[0002] By developing and optimizing the AI ​​intelligent detection and analysis system for highways, and using advanced artificial intelligence and deep learning technologies, we can achieve automatic detection, identification and alarm of various traffic conditions on highways, thereby improving the management and operation capabilities of highways. Specific goals include improving the timeliness and accuracy of traffic incident detection, enhancing the initiative and response speed of road management, and ultimately improving the safety level and traffic efficiency of roads. Combined with real-time detection and alarm by surveillance cameras, we can promptly detect and handle emergencies such as spilled objects, construction, abnormal parking, and traffic accidents, effectively reducing the occurrence of traffic accidents and improving road driving safety.

[0003] The prior art, for example, invented a highway speed monitoring device, the authorization announcement number is CN114708735B. By setting a shooting tube, a light-transmitting tube, a camera module, a polyhedron column, a lamp body, etc., when a vehicle passes through the speed measurement area of ​​the device, the radar speed sensor detects the vehicle's speed, and the lamp body emits a light band to the ground. According to the vehicle's speed, the rotation speed of the polyhedron column inside the light-transmitting tube on the left and right sides of the shooting tube is adjusted, thereby adjusting the light-emitting angle of the lamp body.

[0004] At present, there is still a lack of an intelligent monitoring system that can protect surveillance cameras under severe weather conditions and improve the safety and stability of monitoring.

[0005] Therefore, in view of the above problems, a highway road safety intelligent monitoring system is proposed to solve the above problems. Summary of the invention

[0006] In view of the deficiencies of the prior art, the present invention develops an intelligent highway road safety monitoring system, which can protect monitoring cameras under adverse weather conditions and improve the safety and stability of monitoring.

[0007] The technical solution to the technical problem solved by the present invention is as follows: the present invention provides an intelligent monitoring system for highway road safety, including: an installation box assembly, a protection assembly and a camera assembly; the installation box assembly includes a box, the box is provided with a group of straight grooves and a group of inclined grooves, each of the straight grooves is respectively provided with a first guide round rod, each of the first guide round rods is respectively connected to the box, each of the inclined grooves is respectively provided with a second guide round rod, each of the second guide round rods is respectively connected to the box; the protection assembly includes a group of blocks and a group of inclined blocks, each of the blocks is respectively provided in the corresponding straight grooves, each of the first guide round rods is respectively provided with a second guide round rod, each of the second guide round rods is respectively connected to the box; The two guide rods are connected to the corresponding square blocks, and each of the oblique square blocks is respectively arranged in the corresponding oblique grooves, and each of the second guide round rods passes through the corresponding oblique square blocks; each of the square blocks is respectively connected to the square frame, and each of the oblique square blocks is respectively connected to the L plate, and each of the L plates matches the square grooves of the corresponding square frames, and the square frames on both sides are respectively connected to the mounting seats, and the two mounting seats are respectively connected to the guide vertical rods, and each of the L plates is respectively connected to the guide blocks, and the two guide vertical rods pass through the corresponding guide blocks; the camera assembly includes a monitoring camera, and the monitoring camera is located on the upper side of the lower square frame, and the monitoring camera is connected to the base. By adopting the openable area composed of the square frame and the L plate, the protection and heat dissipation of the monitoring camera are realized. In hot weather, the square frame and the L plate are dispersed from each other. In bad weather, the square frame and the L plate form a relatively sealed area to realize the protection of the monitoring camera. The front end of the lower square frame is made of transparent material. By adopting the guide vertical rod to pass through the guide block, when the square frames on both sides move, the four L plates are driven to move synchronously, so as to realize the opening and closing of the area composed of the square frame and the L plate.

[0008] As an optimization, a protective cover can be installed at the rear end of the box corresponding to the frame and L-board to protect the rear end when the frame and L-board form a closed area.

[0009] As an optimization, it also includes a shielding component, the shielding component includes a shielding plate, the shielding plate is connected to the round frame, the box is connected to the upper U-shaped shaft, the upper side of the square frame is connected to the symmetrical first mounting plate, the first circular shaft and the second circular shaft, the upper part of the symmetrical first mounting plate is respectively connected to the symmetrical third guide circular rod, the lower part of the symmetrical first mounting plate is respectively connected to the symmetrical fourth guide circular rod, the upper U-shaped shaft is rotatably connected to the first swing arm, the first swing arm is rotatably connected to the power slide, the symmetrical third guide circular rods respectively pass through the power slide, the symmetrical fourth guide circular rods The rods pass through the circular frame respectively, the second circular shaft is rotatably connected to the double-grooved rod, the symmetrical fourth guide circular rods pass through the slides respectively, the power slide is fixedly connected to the active circular block, the slide is fixedly connected to the driven circular block, the driven circular block and the active circular block are respectively arranged in the corresponding grooves of the double-grooved rod, the first circular shaft is rotatably connected to one end of the limit arm, the slide is rotatably connected to the power arm, the other end of the limit arm is rotatably connected to one end of the power arm, the other end of the power arm is rotatably connected to one end of the execution arm, and the other end of the execution arm is rotatably connected to the circular frame. By adopting the double-grooved rod, the active circular block and the driven circular block are arranged in the two grooves of the double-grooved rod, the center of the double-grooved rod is rotatably connected to the second circular shaft, so that the active circular block and the driven circular block move relative to each other, when the square frame and the L-plate are aggregated, the driven circular block moves backward and the active circular block moves forward, and then the connecting rod is rotatably connected to realize the rapid forward movement of the shielding plate, and the front end protection of the area composed of the square frame and the L-plate is realized, especially in rainy days, to avoid the influence of rain on the surveillance camera.

[0010] As an optimization, the box is connected to the lower U-shaped shaft, the lower U-shaped shaft is rotatably connected to one end of the second swing arm, the lower side of the square frame is connected to two second mounting plates, the two second mounting plates are respectively connected to symmetrical fifth guide round bars, the symmetrical fifth guide round bars respectively pass through the I-beam, the other end of the second swing arm is rotatably connected to the round bar of the I-beam, the round bar of the I-beam is rotatably connected to the symmetrical third swing arm, the symmetrical third swing arm is respectively rotatably connected to the U frame, the U frame is connected to the base, and the base is rotatably connected to the second mounting plate on the front side. By using the second swing arm and the third swing arm, when the square frames are close to each other, the base drives the surveillance camera to tilt downward, and close monitoring is performed on rainy days.

[0011] As an optimization, the base is connected to the frame at the lower side.

[0012] As an optimization, the upper frame is connected to the protective glass, and a group of the L plates and a group of the frames match the protective glass. By adopting the protective glass, when the frame and the L plate are aggregated, a group of the L plates and a group of the frames respectively protect the glass and close the front end.

[0013] As an optimization, it also includes a power assembly, which includes a motor, the housing is connected to the motor, the output shaft of the motor is connected to a driving gear, the driving gear meshes with a driven gear, the driven gear is connected to a turntable, the turntable bearing is connected to the housing, the turntable is provided with a group of straight grooves, each of the square blocks is respectively connected to a power round block, and each of the power round blocks is respectively arranged in the corresponding straight groove. By arranging the power round block in the straight groove, when the motor rotates, a group of square frames and a group of L plates can be synchronously moved.

[0014] The effects provided in the content of the invention are only the effects of the embodiments, rather than all the effects of the invention. The above technical solution has the following advantages or beneficial effects: 1. This device uses an openable area composed of a square frame and an L-plate to achieve protection and heat dissipation for surveillance cameras. In hot weather, the square frame and the L-plate are dispersed from each other. In bad weather, the square frame and the L-plate form a relatively sealed area to protect the surveillance camera. By setting the power round block in the straight groove, when the motor rotates, a group of square frames and a group of L-plates can move synchronously. By using a guide vertical rod to pass through the guide block, when the square frames on both sides move, the four L-plates are driven to move synchronously to achieve the opening and closing of the area composed of the square frame and the L-plate. When the square frame and the L-plate are aggregated, a group of L-plates and a group of square frames respectively protect the glass and close the front end.

[0015] 2. The center of the double-slot rod of the device is rotated to connect the second circular axis. By adopting the double-slot rod, the active circular block and the driven circular block are set in the two grooves of the double-slot rod, so that the active circular block and the driven circular block can move relative to each other. When the square frame and the L-plate are aggregated, the driven circular block moves backward and the active circular block moves forward. Then, the connecting rod is used to rotate and connect to realize the rapid forward movement of the shielding plate, thereby realizing the front-end protection of the area composed of the square frame and the L-plate, especially on rainy days, to avoid the influence of rain on the surveillance camera.

[0016] 3. This device uses the second swing arm and the third swing arm. When the frames are close to each other, the base drives the surveillance camera to tilt downward. The front end of the lower frame is made of transparent material to facilitate monitoring. On rainy days, the vehicle speed is low, and close monitoring is carried out, and the monitoring results are more accurate. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] The accompanying drawings are used to provide further understanding of the present invention and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention and do not constitute a limitation of the present invention.

[0018] Figure 1 This is a schematic diagram of the normal use state of the present invention.

[0019] Figure 2 This is a schematic diagram of the protection state of the present invention. Figure 1 .

[0020] Figure 3 It is a schematic diagram of a partial three-dimensional structure of the installation box assembly of the present invention.

[0021] Figure 4 It is a schematic diagram of the partial three-dimensional structure of the protection component of the present invention.

[0022] Figure 5 It is a schematic diagram of the local three-dimensional structure of the present invention.

[0023] Figure 6 It is a schematic diagram of the partial three-dimensional structure of the camera assembly of the present invention.

[0024] Figure 7 It is a partially cutaway three-dimensional structural schematic diagram of the present invention.

[0025] Figure 8 This is a schematic diagram of the protection state of the present invention. Figure 2 .

[0026] Fig. 9 The partial three-dimensional structure of the protection component and the shielding component of the present invention is shown in FIG. Figure 1 .

[0027] Fig.10 The partial three-dimensional structure of the protection component and the shielding component of the present invention is shown in FIG. Figure 2 .

[0028] Fig.11 It is a schematic diagram of a partial three-dimensional structure of a shielding component of the present invention.

[0029] In the figure: 1. Install the box assembly, 11. box, 12. inclined slot, 13. second guide round rod, 14. straight slot, 15. first guide round rod, 16. upper U-shaped shaft, 17. lower U-shaped shaft; 2. Protective assembly, 21. Frame, 22. L-plate, 23. Protective glass, 24. Mounting seat, 25. Vertical guide rod, 26. Guide block, 27. First mounting plate, 28. First circular shaft, 29. Third guide circular rod, 210. Fourth guide circular rod, 211. Second circular shaft, 212. Second mounting plate, 213. Fifth guide circular rod, 214. Oblique square block, 215. Square block, 216. Power circular block; 3. camera assembly, 31. surveillance camera, 32. base, 33. third swing arm, 34. I-beam, 35. second swing arm, 36. U-frame; 4. power assembly, 41. turntable, 42. straight slot, 43. driving gear, 44. motor, 45. driven gear; 5. Shielding assembly, 51. Reciprocating frame, 52. Actuating arm, 53. Power arm, 54. Limiting arm, 55. Shielding plate, 56. Slide plate, 57. Driven round block, 58. Power slide, 59. Active round block, 510. Double-slot rod, 511. First swing arm. DETAILED DESCRIPTION

[0030] In order to clearly illustrate the technical features of the present solution, the present invention is described in detail below through specific implementation methods and in combination with the accompanying drawings. The disclosure below provides many different embodiments or examples for realizing different structures of the present invention. In order to simplify the disclosure of the present invention, the components and settings of specific examples are described below. In addition, the present invention may repeat reference numbers and / or letters in different examples. This repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between the various embodiments and / or settings discussed. It should be noted that the components illustrated in the accompanying drawings are not necessarily drawn to scale. The present invention omits the description of known components and processing technologies and processes to avoid unnecessary limitations on the present invention. The orientation or position relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inside", "outside", etc. is based on the orientation or position relationship shown in the accompanying drawings, which is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention. In addition, the terms "first", "second", and "third" are used only for descriptive purposes and cannot be understood as indicating or implying relative importance. In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0031] like Figures 1 to 11As shown, embodiment 1: an intelligent highway road safety monitoring system, comprising: an installation box assembly 1, a protection assembly 2 and a camera assembly 3; the installation box assembly 1 comprises a box 11, the box 11 is provided with a group of straight grooves 14 and a group of inclined grooves 12, each of the straight grooves 14 is respectively provided with a first guide round rod 15, each of the first guide round rods 15 is respectively connected to the box 11, each of the inclined grooves 12 is respectively provided with a second guide round rod 13, each of the second guide round rods 13 is respectively connected to the box 11; the protection assembly 2 comprises a group of blocks 215 and a group of inclined blocks 214, each of the blocks 215 is respectively provided in the corresponding straight grooves 14, each of the first guide round rods 15 respectively passes through the corresponding blocks 21 5. Each of the oblique square blocks 214 is respectively arranged in the corresponding oblique groove 12, and each of the second guide round rods 13 passes through the corresponding oblique square blocks 214; each of the blocks 215 is respectively connected to the square frame 21, and each of the oblique square blocks 214 is respectively connected to the L-plate 22, and each of the L-plates 22 matches the square groove of the corresponding square frame 21. The square frames 21 on both sides are respectively connected to the mounting seats 24, and the two mounting seats 24 are respectively connected to the guide vertical rods 25, and each of the L-plates 22 is respectively connected to the guide blocks 26, and the two guide vertical rods 25 pass through the corresponding guide blocks 26; the camera assembly 3 includes a monitoring camera 31, and the monitoring camera 31 is located on the upper side of the lower side of the square frame 21, and the monitoring camera 31 is connected to the base 32. By using the openable area composed of the square frame 21 and the L plate 22, the protection and heat dissipation of the monitoring camera 31 are realized. In hot weather, the square frame 21 and the L plate 22 are dispersed from each other. In bad weather, the square frame 21 and the L plate 22 form a relatively sealed area to realize the protection of the monitoring camera 31. The front end of the lower square frame 21 is made of transparent material. By using the guide vertical rod 25 to pass through the guide block 26, when the square frames 21 on both sides move, the four L plates 22 are driven to move synchronously, so as to realize the opening and closing of the area composed of the square frame 21 and the L plate 22.

[0032] A protective cover may be installed at the rear end of the box body 11 corresponding to the square frame 21 and the L plate 22 to protect the rear end when the square frame 21 and the L plate 22 form a closed area.

[0033] The upper side of the square frame 21 is connected to the protective glass 23, and a group of the L plates 22 and a group of the square frames 21 match the protective glass 23. By adopting the protective glass 23, when the square frame 21 and the L plate 22 are aggregated, a group of the L plates 22 and a group of the square frames 21 respectively protect the glass 23 to close the front end.

[0034] It also includes a power assembly 4, which includes a motor 44. The housing 11 is connected to the motor 44. The output shaft of the motor 44 is connected to a driving gear 43. The driving gear 43 meshes with a driven gear 45. The driven gear 45 is connected to a turntable 41. The turntable 41 is connected to the housing 11 by a bearing. The turntable 41 is provided with a group of straight-mouthed grooves 42. Each of the blocks 215 is respectively connected to a power round block 216, and each of the power round blocks 216 is respectively arranged in the corresponding straight-mouthed groove 42. By arranging the power round block 216 in the straight-mouthed groove 42, when the motor 44 rotates, a group of blocks 21 and a group of L-plates 22 can be synchronously moved.

[0035] Embodiment 1: The base 32 is connected to the lower frame 21 .

[0036] The workflow of this embodiment is: When encountering bad weather, the motor 44 is controlled to rotate, the motor 44 drives the driving gear 43 to rotate, the driving gear 43 drives the driven gear 45 and the turntable 41 to rotate, the turntable 41 drives the power round block 216 to move along the straight groove 42, the power round block 216 drives the block 215 to move along the first guide round rod 15 in the straight groove 14, the block 215 drives the frame 21, the mounting seat 24 and the guide vertical rod 25 to move, the guide vertical rod 25 drives the guide block 26 to move, the guide block 26 drives the L plate 22 to move, the L plate 22 drives the oblique block 24 to move along the second guide round rod 13 in the oblique groove 12, the lower side frame 21 drives the camera assembly 3 to move, so that the L plate 22 is inserted into the groove of the frame 21, and the upper side frame 21 drives the protective glass 23 to move, so that a group of frames 21 and a group of L plates 22 contact the protective glass 23. Protection of the surveillance camera 31 is achieved.

[0037] Embodiment 2: The box 11 is connected to the lower U-shaped shaft 17, and the lower U-shaped shaft 17 is rotatably connected to one end of the second swing arm 35. The lower side of the square frame 21 is connected to two second mounting plates 212, and the two second mounting plates 212 are respectively connected to symmetrical fifth guide round rods 213, and the symmetrical fifth guide round rods 213 respectively pass through the I-shaped rod 34, and the other end of the second swing arm 35 is rotatably connected to the round rod of the I-shaped rod 34, and the round rod of the I-shaped rod 34 is rotatably connected to the symmetrical third swing arm 33, and the symmetrical third swing arm 33 is respectively rotatably connected to the U frame 36, and the U frame 36 is connected to the base 32, and the base 32 is rotatably connected to the second mounting plate 212 on the front side. By using the second swing arm 35 and the third swing arm 33, when the square frames 21 are close to each other, the base 32 drives the monitoring camera 31 to tilt downward, and close monitoring is performed on rainy days.

[0038] The workflow of this embodiment is: The lower side frame 21 drives the second mounting plate 212 and the fifth guide round rod 213 to move, the fifth guide round rod 213 drives the I-beam 34 to move, the I-beam 34 drives the second swing arm 35 to swing, the second swing arm 35 drives the I-beam 34 to move along the fifth guide round rod 213, the I-beam 34 drives the third swing arm 33 to swing, the third swing arm 33 drives the U-frame 36 to swing, the U-frame 36 drives the base 32 to swing, and the base 32 drives the surveillance camera 31 to swing.

[0039] Embodiment 3: This embodiment is further elaborated on the basis of embodiment 1 or 2, and also includes a shielding component 5, the shielding component 5 includes a shielding plate 55, the shielding plate 55 is connected to the circular frame 51, the box body 11 is connected to the upper U-shaped shaft 16, the upper side of the square frame 21 is connected to the symmetrical first mounting plate 27, the first circular shaft 28 and the second circular shaft 211, the upper part of the symmetrical first mounting plate 27 is respectively connected to the symmetrical third guide circular rod 29, the lower part of the symmetrical first mounting plate 27 is respectively connected to the symmetrical fourth guide circular rod 210, the upper U-shaped shaft 16 is rotatably connected to the first swing arm 511, the first swing arm 511 is rotatably connected to the power slide 58, the symmetrical third guide circular rod 29 passes through the power slide 58 respectively, and the symmetrical The fourth guide round rod 210 passes through the circular frame 51 respectively, the second circular shaft 211 is rotatably connected to the double-grooved rod 510, the symmetrical fourth guide round rod 210 passes through the slide plate 56 respectively, the power slide plate 58 is fixedly connected to the active round block 59, the slide plate 56 is fixedly connected to the driven round block 57, the driven round block 57 and the active round block 59 are respectively arranged in the corresponding grooves of the double-grooved rod 510, the first circular shaft 28 is rotatably connected to one end of the limiting arm 54, the slide plate 56 is rotatably connected to the power arm 53, the other end of the limiting arm 54 is rotatably connected to one end of the power arm 53, the other end of the power arm 53 is rotatably connected to one end of the execution arm 52, and the other end of the execution arm 52 is rotatably connected to the circular frame 51. By adopting a double-slot rod 510, the active round block 59 and the driven round block 57 are set in the two grooves of the double-slot rod 510, and the center of the double-slot rod 510 is rotated to connect the second circular shaft 211, so that the active round block 59 and the driven round block 57 can move relative to each other. When the frame 21 and the L plate 22 are assembled, the driven round block 57 moves backward and the active round block 59 moves forward. Then, the connecting rod is used to rotate and connect to achieve rapid forward movement of the baffle plate 55, thereby realizing front-end protection of the area composed of the frame 21 and the L plate 22, especially on rainy days, to avoid the influence of rain on the surveillance camera 31.

[0040] The workflow of this embodiment is: The upper square frame 21 drives the first mounting plate 27, the third guide round rod 29 and the fourth guide round rod 210 to move, the third guide round rod 29 drives the power slide 58 to move, the power slide 58 drives the first swing arm 511 to swing, the first swing arm 511 drives the power slide 58 to move along the third guide round rod 29, the power slide 58 drives the active round block 59 to move along the groove of the double-grooved rod 510, the active round block 59 drives the double-grooved rod 510 to swing, the double-grooved rod 510 drives the driven round block 57 to move, the driven round block 57 drives the slide plate 56 to move along the fourth guide round rod 210, the slide plate 56 drives the power arm 53 to swing, the power arm 53 drives the limit arm 54 to swing, the power arm 53 drives the execution arm 52 to swing, the execution arm 52 drives the circular frame 51 to move along the fourth guide round rod 210, and the circular frame 51 drives the shielding plate 55 to move.

[0041] This device achieves protection and heat dissipation of the surveillance camera 31 by using an openable area composed of a square frame 21 and an L plate 22. In hot weather, the square frame 21 and the L plate 22 are dispersed from each other. In bad weather, the square frame 21 and the L plate 22 form a relatively sealed area to protect the surveillance camera 31. By setting the power round block 216 in the straight groove 42, when the motor 44 rotates, a group of square frames 21 and a group of L plates 22 can move synchronously. By using a guide vertical rod 25 to pass through the guide block 26, when the square frames 21 on both sides move, the four L plates 22 are driven to move synchronously to achieve the opening and closing of the area composed of the square frame 21 and the L plate 22. When the square frame 21 and the L plate 22 are aggregated, a group of L plates 22 and a group of square frames 21 protect the glass 23 respectively and close the front end.

[0042] The double-grooved rod 510 of the device is centrally connected to the second circular shaft 211 by rotation. By adopting the double-grooved rod 510, the active circular block 59 and the driven circular block 57 are arranged in the two grooves of the double-grooved rod 510, so that the active circular block 59 and the driven circular block 57 can move relative to each other. When the frame 21 and the L plate 22 are assembled, the driven circular block 57 moves backward and the active circular block 59 moves forward. Then, the connecting rod is used for rotation connection to realize the rapid forward movement of the shielding plate 55, thereby realizing the front end protection of the area composed of the frame 21 and the L plate 22, especially on rainy days, to avoid the influence of rain on the monitoring camera 31.

[0043] The device adopts the second swing arm 35 and the third swing arm 33. When the frames 21 are close to each other, the base 32 drives the monitoring camera 31 to tilt downward. The front end of the lower frame 21 is made of transparent material to facilitate monitoring. On rainy days, the vehicle speed is low, and close monitoring is carried out, and the monitoring result is more accurate.

[0044] Although the above describes the specific implementation mode of the invention in conjunction with the drawings, it is not intended to limit the scope of protection of the invention. Based on the technical solution of the present invention, various modifications or variations that can be made by those skilled in the art without creative work are still within the scope of protection of the present invention.

Claims

1. An intelligent highway safety monitoring system, characterized in that: include: Install the box assembly (1), the protection assembly (2) and the camera assembly (3); The mounting box assembly (1) comprises a box (11), the box (11) being provided with a group of straight grooves (14) and a group of inclined grooves (12), each of the straight grooves (14) being provided with a first guide round rod (15), each of the first guide round rods (15) being connected to the box (11), each of the inclined grooves (12) being provided with a second guide round rod (13), each of the second guide round rods (13) being connected to the box (11); The protection component (2) comprises a group of square blocks (215) and a group of oblique square blocks (214); each of the square blocks (215) is respectively arranged in the corresponding straight groove (14); each of the first guide round rods (15) passes through the corresponding square block (215); each of the oblique square blocks (214) is respectively arranged in the corresponding oblique groove (12); and each of the second guide round rods (13) passes through the corresponding oblique square block (214); Each of the square blocks (215) is respectively connected to the square frame (21), each of the oblique square blocks (214) is respectively connected to the L-plate (22), each of the L-plates (22) matches the square groove of the corresponding square frame (21), the square frames (21) on both sides are respectively connected to the mounting seats (24), the two mounting seats (24) are respectively connected to the guide vertical rods (25), each of the L-plates (22) is respectively connected to the guide block (26), and the two guide vertical rods (25) pass through the corresponding guide block (26); The camera assembly (3) comprises a monitoring camera (31), wherein the monitoring camera (31) is located on the upper side of the lower frame (21), and the monitoring camera (31) is connected to a base (32).

2. The intelligent highway safety monitoring system according to claim 1 is characterized in that: The device also comprises a shielding assembly (5), wherein the shielding assembly (5) comprises a shielding plate (55), the shielding plate (55) is connected to the circular frame (51), the box body (11) is connected to the upper U-shaped shaft (16), the upper square frame (21) is connected to a symmetrical first mounting plate (27), a first circular shaft (28) and a second circular shaft (211), the upper part of the symmetrical first mounting plate (27) is respectively connected to a symmetrical third guide circular rod (29), the lower part of the symmetrical first mounting plate (27) is respectively connected to a symmetrical fourth guide circular rod (210), the upper U-shaped shaft (16) is rotatably connected to a first swing arm (511), the first swing arm (511) is rotatably connected to a power slide (58), the symmetrical third guide circular rods (29) respectively pass through the power slide (58), the symmetrical fourth guide circular rods (210) respectively pass through the power slide (58), and the symmetrical third guide circular rods (29) respectively pass through the power slide (58), and the symmetrical fourth guide circular rods (210) respectively pass through the power slide (58). The second circular shaft (211) passes through the circular frame (51), and is rotatably connected to the double-grooved rod (510). The symmetrical fourth guide circular rods (210) respectively pass through the slide plates (56). The power slide plate (58) is fixedly connected to the active circular block (59). The slide plate (56) is fixedly connected to the driven circular block (57). The driven circular block (57) and the active circular block (59) are respectively arranged in corresponding grooves of the double-grooved rod (510). The first circular shaft (28) is rotatably connected to one end of the limit arm (54). The slide plate (56) is rotatably connected to the power arm (53). The other end of the limit arm (54) is rotatably connected to one end of the power arm (53). The other end of the power arm (53) is rotatably connected to one end of the execution arm (52). The other end of the execution arm (52) is rotatably connected to the circular frame (51).

3. The intelligent highway safety monitoring system according to claim 1 is characterized in that: The box body (11) is connected to a lower U-shaped shaft (17), the lower U-shaped shaft (17) is rotatably connected to one end of a second swing arm (35), the lower square frame (21) is connected to two second mounting plates (212), the two second mounting plates (212) are respectively connected to symmetrical fifth guide round rods (213), the symmetrical fifth guide round rods (213) respectively pass through the I-shaped rod (34), the other end of the second swing arm (35) is rotatably connected to the round rod of the I-shaped rod (34), the round rod of the I-shaped rod (34) is rotatably connected to the symmetrical third swing arm (33), the symmetrical third swing arm (33) is respectively rotatably connected to a U-frame (36), the U-frame (36) is connected to the base (32), and the base (32) is rotatably connected to the second mounting plate (212) at the front side.

4. The intelligent highway safety monitoring system according to claim 1 is characterized by: The base (32) is connected to the lower frame (21).

5. The intelligent highway safety monitoring system according to claim 1 is characterized by: The upper square frame (21) is connected to the protective glass (23), and a group of the L-plates (22) and a group of the square frames (21) match the protective glass (23).

6. The intelligent highway safety monitoring system according to claim 1 is characterized by: The invention also comprises a power assembly (4), wherein the power assembly (4) comprises a motor (44), the housing (11) is connected to the motor (44), the output shaft of the motor (44) is connected to a driving gear (43), the driving gear (43) meshes with a driven gear (45), the driven gear (45) is connected to a rotating disk (41), the rotating disk (41) is connected to the housing (11) via a bearing, the rotating disk (41) is provided with a group of straight-mouthed grooves (42), each of the square blocks (215) is respectively connected to a power round block (216), and each of the power round blocks (216) is respectively arranged in a corresponding straight-mouthed groove (42).

Citation Information

Patent Citations

  • A highway speed monitoring system

    CN114708735B