Novel artificial intelligence data acquisition equipment
By introducing a rotating cleaning device and dust removal components into the new artificial intelligence data acquisition equipment, the problem of unclear images caused by camera contamination has been solved, achieving efficient cleaning and protection and ensuring the accuracy of data acquisition.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-25
- Publication Date
- 2026-04-14
AI Technical Summary
Cameras are easily contaminated by external impurities during long-term use, resulting in unclear image information and affecting the accuracy of data collection.
A novel artificial intelligence data acquisition device was designed, equipped with a rotating cleaning device, including moving wheels, cleaning components, dust removal components, and collection components. It uses an air pump to output gas to clean the surface of the camera, and combines it with a collection tank to collect impurities and prevent secondary pollution.
This ensures clear images from the camera every time it captures a picture, improves the accuracy of data collection, enhances cleaning efficiency, and protects the camera from damage after cleaning.
Smart Images

Figure CN121865072A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of data acquisition technology, and in particular, to a novel artificial intelligence data acquisition device. Background Technology
[0002] Artificial intelligence (AI) is a branch of computer science that attempts to understand the essence of intelligence and produce a new kind of intelligent machine that can react in a way similar to human intelligence. Research in this field includes robotics, speech recognition, image recognition, natural language processing, and expert systems. Since its inception, AI has matured in theory and technology and its application areas have continued to expand. It is conceivable that future AI-driven technological products will be "containers" of human wisdom. AI can simulate the information processes of human consciousness and thinking. AI is not human intelligence, but it can think like a human and may even surpass human intelligence.
[0003] When artificial intelligence collects image information data, it needs to use corresponding data acquisition devices. A data acquisition device is a device that can be used in conjunction with software to quickly collect and store the data to be collected. In data acquisition, especially in image acquisition, the most important component is the camera. However, with long-term use, cameras are easily contaminated by external impurities, resulting in unclear image information and affecting the accuracy of data acquisition. Summary of the Invention
[0004] To address the aforementioned problems, this invention provides a novel artificial intelligence data acquisition device.
[0005] To achieve the above objectives, the present invention is implemented through the following technical solution: a novel artificial intelligence data acquisition device, the structure of which includes a movable base, a support rod, a fixed base, and an acquisition camera. The bottom of the movable base is equipped with four casters, the support rod is vertically mounted on the movable base, the fixed base is mechanically connected to the support rod, and the acquisition camera is connected to the fixed base.
[0006] As a further improvement of the present invention, the acquisition camera includes a mounting base, an inner ring track, an outer slide track, a camera, and a rotating cleaning device. The camera and the outer slide track are respectively mounted on the mounting base. The outer circumference of the camera is provided with an inner ring track, and the rotating cleaning device is connected between the inner ring track and the outer slide track.
[0007] As a further improvement of the present invention, the rotating cleaning device includes a movable wheel, a connecting rod, and a cleaning component. The cleaning component is connected to the movable wheel through the connecting rod. The movable wheel rotates in a circular motion along the outer slide. The cleaning component contacts the inner track and fits onto the outer surface of the camera.
[0008] As a further improvement of the present invention, the cleaning component includes a collection component and a dust removal component, the collection component and the dust removal component are attached together, and the collection component is located near the surface of the camera.
[0009] As a further improvement of the present invention, the dust removal assembly includes an air pump, a connecting pipe, an output pipe, and a one-way closure member. The air pump is connected to the connecting pipe, and two or more output pipes are connected to the connecting pipe respectively. The gas output end of the output pipe is fitted with the surface of the camera, and a one-way closure member is installed on the gas output end of the output pipe.
[0010] As a further improvement of the present invention, the one-way closing member consists of a connecting spring, a connecting shaft, a closing cover, and a mounting port. The two ends of the closing cover are mechanically connected to the connecting shaft. The connecting shaft and the connecting spring are located inside the mounting port. The closing cover and the output tube are engaged in a movable closing manner.
[0011] As a further improvement of the present invention, the collection assembly includes a collection groove, a mounting cavity, an electric push rod, and a sealing cover. The collection groove is movably fitted into the mounting cavity by the electric push rod. The sealing cover is located at the bottom of the collection groove, and a sponge pad is provided at the end of the collection groove facing the camera.
[0012] The beneficial effects of this invention are: The present invention incorporates a rotating cleaning device between the inner ring track and the outer slide track. The dust removal component in the rotating cleaning device works in conjunction with the camera, using the gas output from the output pipe to clean and remove dust from the camera surface, thereby ensuring that the camera can maintain image clarity and data acquisition accuracy during each image acquisition.
[0013] The present invention has two dust removal components, which are symmetrically distributed. With the moving wheels rotating along the outer slide, the dust removal components can increase the comprehensive cleaning of the camera and improve the cleaning efficiency.
[0014] The dust removal component and the collection component of this invention work together. The collection component is positioned close to the camera. When gas is ejected from the symmetrical output pipes, some impurities will be dispersed into the air, while others will be collected through the collection tank. This avoids the dispersed impurities from adhering to the cleaning components and causing secondary pollution to the camera.
[0015] The present invention uses a collection slot in conjunction with an electric push rod. After cleaning the camera, the electric push rod can push the collection slot to the center of the camera surface. The sponge pad can reduce the contact friction between the collection slot and the camera. Opening the sealing cover can clean the impurities inside the collection slot. The whole operation is portable, and the collection slot pushed to the center of the camera can also play a certain protective role for the camera when the acquisition device is not in use, preventing the camera from being damaged by external impact. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the structure of a novel artificial intelligence data acquisition device according to the present invention.
[0017] Figure 2 This is a schematic diagram of the front planar structure of the camera of the present invention.
[0018] Figure 3 This is a three-dimensional structural diagram of the rotating cleaning device of the present invention.
[0019] Figure 4 This is a schematic diagram of the rotating cleaning device of the present invention moving along the surface of the camera.
[0020] Figure 5 This is a schematic diagram of the internal structure of the dust removal component of the present invention.
[0021] Figure 6 This is a schematic diagram of the structure of the unidirectional closure component of the present invention.
[0022] Figure 7 This is a schematic diagram of the internal structure of the component used in this invention.
[0023] In the diagram: 1. Movable base; 2. Support rod; 3. Fixed base; 4. Camera; 41. Mounting seat; 42. Inner ring track; 43. Outer slide track; 44. Camera; 45. Rotary cleaning device; 451. Moving wheel; 452. Connecting rod; 453. Cleaning component; 53a. Collection component; 53b. Dust removal component; 3b1. Air pump; 3b2. Connecting pipe; 3b3. Output pipe; 3b4. One-way closure component; 3b4. Connecting spring; 41. Connecting shaft; 42. Closing cover; 43. Mounting port; 44. Collection groove; 3a1. Mounting cavity; 3a2. Electric push rod; 3a3. Sealing cover; 3a4. Implementation
[0024] To make the technical means, creative features, objectives, and effects of this invention easily understandable, Figures 1 to 7 The structure of the artificial intelligence data acquisition device according to an embodiment of the present invention is illustrated schematically. The present invention will be further described below in conjunction with specific embodiments. Example
[0025] like Figures 1-7As shown, this invention provides a novel artificial intelligence data acquisition device, the structure of which includes a movable base 1, a support rod 2, a fixed base 3, and a data acquisition camera 4. The bottom of the movable base 1 is equipped with four casters. The support rod 2 is vertically mounted on the movable base 1, and the fixed base 3 is mechanically connected to the support rod 2. The data acquisition camera 4 is connected to the fixed base 3. The data acquisition camera 4 includes a mounting base 41, an inner ring track 42, an outer slide rail 43, a camera 44, and a rotating cleaning device 45. The camera 44 and the outer slide rail 43 are respectively mounted on the mounting base 41. The outer circumference of the camera 44 is provided with an inner ring track 42. A rotating cleaning device 45 is connected between the inner ring track 42 and the outer slide track 43. The rotating cleaning device 45 includes a moving wheel 451, a connecting rod 452, and a cleaning component 453. The cleaning component 453 is connected to the moving wheel 451 through the connecting rod 452. The moving wheel 451 rotates circumferentially along the outer slide track 43. The cleaning component 453 contacts the inner ring track 42 and fits on the outer surface of the camera 44. The cleaning component 453 includes a collection component 53a and a dust removal component 53b. The dust collection component 53a is positioned close to the surface of the camera 44, and the dust removal component 53b includes an air pump 3b1, a connecting pipe 3b2, an output pipe 3b3, and a one-way closure component 3b4. The air pump 3b1 is connected to the connecting pipe 3b2, and two or more output pipes 3b3 are connected to the connecting pipe 3b2. The gas output end of the output pipe 3b3 mates with the surface of the camera 44, and a one-way closure component 3b4 is installed at the gas output end of the output pipe 3b3. The one-way closure component 3b4 consists of a connecting spring b41, a connecting shaft b42, and a closing cover b43. The mounting port b44 is composed of a closing cover b43, the two ends of which are mechanically connected to the connecting shaft b42. The connecting shaft b42 and the connecting spring b41 are located inside the mounting port b44. The closing cover b43 and the output pipe 3b3 are engaged in a movable closing manner. The collecting assembly 53a includes a collecting groove 3a1, a mounting cavity 3a2, an electric push rod 3a3, and a sealing cover 3a4. The collecting groove 3a1 is movably engaged in the mounting cavity 3a2 via the electric push rod 3a3. The sealing cover 3a4 is located at the bottom of the collecting groove 3a1. A sponge pad is provided at the end of the collecting groove 3a1 facing the camera 44.
[0026] The working principle of the artificial intelligence data acquisition device in the above technical solution is explained below: Before data acquisition, the camera 44 needs to be cleaned. The air pump 3b1 and the moving wheel 451 are activated. The moving wheel 451 rotates along the outer slide rail 43, simultaneously rotating the cleaning component 453 along the surface of the camera 44. During rotation, the gas ejected from the output pipe 3b3 pushes the connecting spring b41 and connecting shaft b42 to extend, thereby opening the closing cover b43. The gas then passes through the gaps on both sides of the closing cover b43 and acts on the surface of the camera 44, thus cleaning the surface of the camera 44. Impurities or dust particles separated by the gas will partially diffuse into the air, while a small amount will re-adhere to the symmetrical cleaning component 453. Therefore, when the dust removal component 53b is working, the collection tank 3a1 is symmetrically positioned... The output tube 3b3 opens under the action of the gas sprayed, thereby collecting some impurities. The symmetrical output tubes are protected by the closed cover b43, which can effectively prevent impurities from entering the tube and causing blockage. The two cleaning components 453 work alternately, but after cleaning the surface of the camera 44, they stop working and begin data acquisition. After data acquisition is completed, the electric push rod 3a3 is activated, pushing the collection tank 3a1 along the center of the camera 44 until the two collection tanks 3a1 are in contact and then stop. The collection tank 3a1 is used to protect the surface of the camera 44 and avoid accidental collision damage. When the staff cleans the impurities in the collection tank 3a1, they only need to open the sealing cover 3a4. The whole operation process is simple and efficient.
Claims
1. A novel artificial intelligence data acquisition device, characterized in that: Its structure includes a movable base (1), a support rod (2), a fixed base (3), and a camera (4). The bottom of the movable base (1) is equipped with four casters. The support rod (2) is vertically mounted on the movable base (1). The fixed base (3) is mechanically connected to the support rod (2). The camera (4) is connected to the fixed base (3).
2. The novel artificial intelligence data acquisition device according to claim 1, characterized in that: The acquisition camera (4) includes a mounting base (41), an inner ring track (42), an outer slide track (43), a camera (44), and a rotating cleaning device (45). The camera (44) and the outer slide track (43) are respectively mounted on the mounting base (41). The outer circumference of the camera (44) is provided with an inner ring track (42), and the rotating cleaning device (45) is connected between the inner ring track (42) and the outer slide track (43).
3. The novel artificial intelligence data acquisition device according to claim 2, characterized in that: The rotating cleaning device (45) includes a moving wheel (451), a connecting rod (452), and a cleaning component (453). The cleaning component (453) is connected to the moving wheel (451) through the connecting rod (452). The moving wheel (451) rotates in a circular motion along the outer slide (43). The cleaning component (453) contacts the inner ring track (42). The cleaning component (453) fits on the outer surface of the camera (44).
4. The novel artificial intelligence data acquisition device according to claim 3, characterized in that: The cleaning component (453) includes a collection component (53a) and a dust removal component (53b), the collection component (53a) and the dust removal component (53b) being attached together, the collection component (53a) being located near the surface of the camera (44).
5. A novel artificial intelligence data acquisition device according to claim 4, characterized in that: The dust removal assembly (53b) includes an air pump (3b1), a connecting pipe (3b2), an output pipe (3b3), and a one-way closure (3b4). The air pump (3b1) is connected to the connecting pipe (3b2). Two or more output pipes (3b3) are connected to the connecting pipe (3b2). The gas output end of the output pipe (3b3) is fitted with the surface of the camera (44). The one-way closure (3b4) is installed on the gas output end of the output pipe (3b3).
6. The novel artificial intelligence data acquisition device according to claim 5, characterized in that: The one-way closure (3b4) consists of a connecting spring (b41), a connecting shaft (b42), a closing cover (b43), and a mounting port (b44). The two ends of the closing cover (b43) are mechanically connected to the connecting shaft (b42). The connecting shaft (b42) and the connecting spring (b41) are located inside the mounting port (b44). The closing cover (b43) and the output pipe (3b3) are engaged in a movable closing manner.
7. A novel artificial intelligence data acquisition device according to claim 4, characterized in that: The collection assembly (53a) includes a collection groove (3a1), a mounting cavity (3a2), an electric push rod (3a3), and a sealing cover (3a4). The collection groove (3a1) is movably fitted into the mounting cavity (3a2) via the electric push rod (3a3). The sealing cover (3a4) is located at the bottom of the collection groove (3a1). A sponge pad is provided at the end of the collection groove (3a1) facing the camera (44).