Monitoring system
By combining the camera unit and security unit of the monitoring system with components such as the overhead platform, friction stripes, anti-escape rollers and baffles, the security problem of forced entry into vehicles in the existing technology has been solved, and safety control and escape prevention have been achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 季田田
- Filing Date
- 2023-12-28
- Publication Date
- 2026-04-17
AI Technical Summary
Existing surveillance systems lack the capability to protect against vehicles that forcibly enter premises.
A monitoring system was designed, including a control unit, a camera unit, a drive unit, and a security unit. The system identifies vehicle information through the camera and uses components such as an inclined traveling platform, friction stripes, anti-escape rollers, and baffles, combined with the use of lubricating oil, to prevent vehicles from entering or escaping.
It achieves safety control over vehicles that forcibly enter, prevents vehicle damage, and effectively prevents their escape.
Smart Images

Figure CN121887952A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of surveillance technology, and in particular to a surveillance system. Background Technology
[0002] A surveillance system consists of a front-end section and a control section. It uses a complete set of surveillance equipment, including cameras, video recorders, monitors, switches, and network cables, to form a video system for monitoring purposes. As surveillance systems have evolved, in addition to continuous technological innovation, surveillance products have begun to integrate with other products to form powerful security monitoring systems. Once an intrusion occurs, the system activates an alarm, and the surveillance system simultaneously monitors the situation and sends the intrusion signal to the security department's monitoring equipment, ensuring that management personnel can promptly understand the situation in the alarm area and take rapid action. However, current technology lacks a surveillance system specifically designed to monitor vehicles that forcibly enter the premises. Summary of the Invention
[0003] In view of this, the technical problem to be solved by the present invention is to provide a monitoring system that can provide security for vehicles that forcibly enter a premises.
[0004] A monitoring system includes a control unit, a camera unit, a drive unit, and a security unit. The control unit is connected to the camera unit and the drive unit via wires. The control unit is used to control the drive unit, the camera unit is used to capture and identify vehicle information, and the security unit is used to prevent vehicles from entering or escaping.
[0005] The control unit is mounted on the camera unit.
[0006] The camera unit is mounted on the protection unit.
[0007] The drive unit is connected to the security unit.
[0008] The drive unit is installed below the security unit.
[0009] The drive unit is used to drive the security unit to produce changes.
[0010] The control unit is a host computer.
[0011] The security unit includes a traveling platform, which is inclinedly set on the ground. The traveling platform has two traveling grooves, each with multiple friction stripes. Two first anti-escape rollers are rotatably connected in the middle of the traveling platform. A cavity is opened in the middle of the traveling platform, and multiple first cotton blocks are slidably connected in the cavity. One end of each first cotton block is in contact with the first anti-escape roller. A spring is fixedly connected between every two first cotton blocks. The camera unit includes a support frame, on which a camera is fixedly connected. An alarm light is fixedly connected to the upper end of the camera and is connected to the control unit.
[0012] Two sets of baffles are rotatably connected to the overhead crane platform. The two sets of baffles are symmetrically arranged. A second anti-escape roller is rotatably connected to each baffle. An oil storage chamber is provided in each baffle. A second cotton block is fixedly connected in the oil storage chamber. One end of the second cotton block is in contact with the second anti-escape roller. A connecting pipe is fixedly connected to the lower end of each baffle. The connecting pipe communicates with the cavity. Attached Figure Description
[0013] The present invention will now be described in further detail with reference to the accompanying drawings and specific implementation methods.
[0014] Figure 1-3 A flowchart of a monitoring system;
[0015] Figure 4-5 This is a schematic diagram of the overall structure of a monitoring system;
[0016] Figure 6 This is a schematic diagram of the slide bar structure;
[0017] Figure 7-8 This is a structural sectional view of the overhead crane platform;
[0018] Figure 9 This is a structural sectional view of the baffle;
[0019] Figure 10 This is a schematic diagram of the structure of the second anti-escape roller. Detailed Implementation
[0020] The present invention will be described in detail with reference to the accompanying drawings in the embodiments of the present invention.
[0021] A monitoring system includes a control unit, a camera unit, a drive unit, and a security unit. The control unit is connected to the camera unit and the drive unit via wires. The control unit is used to control the drive unit, the camera unit is used to capture and identify vehicle information, and the security unit is used to prevent vehicles from entering or escaping.
[0022] The control unit is mounted on the camera unit.
[0023] The camera unit is mounted on the protection unit.
[0024] The drive unit is connected to the security unit.
[0025] The drive unit is installed below the security unit.
[0026] The drive unit is used to drive the security unit to produce changes.
[0027] The control unit is a host computer.
[0028] See Figure 4 and Figure 7-10This illustrates an embodiment of the invention for implementing security control of unfamiliar vehicles. Further,
[0029] The security unit includes a traveling platform 101, which is inclinedly set on the ground. The traveling platform 101 is provided with two traveling grooves 102, and each of the two traveling grooves 102 is provided with multiple friction stripes 103. Two first anti-escape rollers 201 are rotatably connected in the middle of the traveling platform 101 via bearings. A cavity 104 is opened in the middle of the traveling platform 101, and multiple first cotton blocks 202 are slidably connected in the cavity 104. One end of the first cotton block 202 is in contact with the first anti-escape roller 201, and a spring 203 is fixedly connected between every two first cotton blocks 202.
[0030] The camera unit includes a support frame 501, on which a camera 502 is fixedly connected by bolts. An alarm light 503 is fixedly connected to the upper end of the camera 502 by bolts. The alarm light 503 is connected to the control unit.
[0031] Before using the monitoring system, install it in the location that needs to be monitored. When a vehicle needs to enter the location, first drive the vehicle onto the vehicle platform 101, and then the camera 502 captures the vehicle's information. The camera 502 transmits the vehicle's information to the control unit. After the control unit recognizes the information and approves it, it sends a signal to the warning light 503, causing the warning light 503 to display green, indicating that the vehicle can pass normally. If the information is not recognized, the warning light 503 displays red, indicating that the vehicle is not allowed to pass, thus achieving the function of security control for unfamiliar vehicles.
[0032] Because the traveling platform 101 is tilted, the vehicle will automatically slow down when it travels on the traveling platform 101 to prevent the vehicle from being impacted by inertia. In addition, the multiple friction stripes 103 increase the friction between the tires and the traveling platform 101 to prevent the tires from slipping and rolling away.
[0033] See Figure 6-10 This illustrates an embodiment of the invention that prevents a forcibly entered vehicle from escaping without damage. Further,
[0034] The cavity 104 is used to store lubricating oil. When the operator injects lubricating oil into the cavity 104, the lubricating oil in the cavity 104 is absorbed by multiple first cotton blocks 202. At the same time, under pressure, the lubricating oil enters multiple oil storage chambers 303 through the connecting pipe 304, so that the lubricating oil in the oil storage chamber 303 comes into contact with the second cotton block 305.
[0035] When a vehicle forcibly enters the premises, the vehicle moves forward on the traveling platform 101. The position of the vehicle will exceed the shooting position of the camera 502. At this time, the camera 502 transmits a signal to the control unit, and the control unit transmits a signal to the drive unit. The drive unit drives the security unit to change, and then both sets of baffles 301 on the security unit rotate upward. The two sets of baffles 301 can block the front and rear wheels of the vehicle respectively.
[0036] As the vehicle continues to move forward, the front wheels of the vehicle come into contact with the second anti-escape roller 302. When the front wheels rotate, they drive the second anti-escape roller 302 to rotate as well. This causes the surface of the second anti-escape roller 302 to be covered with lubricating oil from the second cotton block 305, thereby reducing the friction between the front wheels and the second anti-escape roller 302 and causing the front wheels to slip. Similarly, when the vehicle reverses, the rear wheels come into contact with the second anti-escape roller 302 and slip, keeping the vehicle on the traveling platform 101 and preventing vehicles that force their way in from escaping.
[0037] When a vehicle that has forcibly entered tries to escape by turning, the two first anti-escape rollers 201 slip when they come into contact with the wheels, preventing the vehicle from escaping from the left or right. The spring 203, under the action of elasticity, can make the two first cotton blocks 202 slide outward, thereby ensuring that the first cotton blocks 202 are always in close contact with the first anti-escape rollers 201, and the surface of the first anti-escape rollers 201 is coated with lubricating oil.
[0038] Once security personnel arrive at the scene, the two sets of barriers 301 can be lowered via the control unit. The security unit in the main monitoring system can ensure that vehicles that force their way in are not damaged and prevent them from escaping.
[0039] See Figure 5-6 This illustrates an embodiment of the invention capable of driving two sets of baffles 301 to rotate upwards simultaneously. Further,
[0040] The drive unit includes a cylinder 401. The moving end of the cylinder 401 is fixedly connected to a push plate 402 by bolts. Two slide rods 403 are fixedly connected to the push plate 402 by bolts. The lower end of each baffle 301 is fixedly connected to a slot frame 404 by bolts. The two slide rods 403 are slidably connected to the two slot frames 404 on the same side.
[0041] When the security unit needs to be activated, the control unit controls the moving end of the cylinder 401 to extend. The moving end of the cylinder 401 drives the push plate 402 to move upward. The push plate 402 pushes the two slide rods 403 to slide in the two slots 404 on the same side, thereby driving the two sets of baffles 301 to rotate upward at the same time to realize the security function.
Claims
1. A monitoring system, characterized by: It includes a control unit, a camera unit, a drive unit, and a security unit. The control unit is connected to the camera unit and the drive unit via wires. The control unit is used to control the drive unit, the camera unit is used to capture and identify vehicle information, and the security unit is used to prevent the vehicle from entering or escaping.
2. The monitoring system of claim 1, wherein: The control unit is mounted on the camera unit.
3. The monitoring system of claim 1, wherein: The camera unit is mounted on the protection unit.
4. The monitoring system of claim 1, wherein: The drive unit is connected to the security unit.
5. The monitoring system of claim 1, wherein: The drive unit is installed below the security unit.
6. The monitoring system of claim 4, wherein: The drive unit is used to drive the security unit to produce changes.
7. The monitoring system of claim 1, wherein: The control unit is a host computer.
8. The monitoring system of claim 1, wherein: The security unit includes a traveling platform (101), which is inclinedly set on the ground. The traveling platform (101) has two traveling grooves (102), and each of the two traveling grooves (102) has multiple friction stripes (103). Two first anti-escape rollers (201) are rotatably connected in the middle of the traveling platform (101). A cavity (104) is opened in the middle of the traveling platform (101), and multiple first cotton blocks (202) are slidably connected in the cavity (104). One end of the first cotton block (202) is in contact with the first anti-escape roller (201). A spring (203) is fixedly connected between every two first cotton blocks (202). The camera unit includes a support frame (501), and a camera (502) is fixedly connected on the support frame (501). An alarm light (503) is fixedly connected to the upper end of the camera (502), and the alarm light (503) is connected to the control unit.
9. A monitoring system according to claim 8, characterised in that: Two sets of baffles (301) are rotatably connected to the overhead crane (101). The two sets of baffles (301) are symmetrically arranged. A second anti-escape roller (302) is rotatably connected to each baffle (301). An oil storage chamber (303) is provided in each baffle (301). A second cotton block (305) is fixedly connected in the oil storage chamber (303). One end of the second cotton block (305) is in contact with the second anti-escape roller (302). A connecting pipe (304) is fixedly connected to the lower end of each baffle (301). The connecting pipe (304) is connected to the cavity (104).
10. The monitoring system of claim 8, wherein: The drive unit includes a cylinder (401), a push plate (402) is fixedly connected to the moving end of the cylinder (401), two slide rods (403) are fixedly connected to the push plate (402), and a slot frame (404) is fixedly connected to the lower end of each baffle (301). The two slide rods (403) are slidably connected in the two slot frames (404) on the same side.