Rotary omnibearing insect identification device
The rotating omnidirectional insect identification device, which combines a rotating motor and a camera, solves the problem that existing devices cannot capture images of insects crawling, and achieves the effect of simultaneous identification and efficient collection of multiple insects.
Patent Information
- Application Number
- CN202520365605.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-03-04
AI Technical Summary
Existing insect identification devices can only capture a single image when the insect is dead or motionless, and cannot capture images when the insect is crawling, which affects the quality and accuracy of identification.
Design a rotating omnidirectional insect identification device. A rotating motor drives a partition plate and an identification camera. The partition plate divides the space inside the identification box into multiple areas. The camera rotates with the rotating platform to capture multiple postures and crawling processes of the insects. Combined with a suction device, the identified insects are collected.
It improves the image quality and efficiency of insect identification, enhances the identification quality and accuracy, and enables efficient collection for simultaneous identification of multiple insects.
Smart Images

Figure CN223799107U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to insect feeding technical field, specifically is a kind of rotating all-around insect identification device. BACKGROUND
[0002] In prior art, customs usually intercept some insects that cannot enter the country, and need to identify these insects, since insect identification itself is a more professional work, the staff of customs can not necessarily truly understand the intercepted insect species and name and other detailed information, thus there is a need to design an insect identification device.
[0003] And the existing insect identification device basically uses camera device to photograph insects, and the photographed photo and video data stream information are uploaded to cloud, compared with the data information in the database in cloud, so that the name and species of insects can be directly determined.
[0004] And the specific structure of the existing insect identification device is set, for example: the "insect identification device" disclosed in publication (announcement) No.CN212290949U;For example: the "multifunctional rotating insect identification table" disclosed in publication (announcement) No.CN222093401U;For example: the "360-degree surround shooting table for insect identification" disclosed in publication (announcement) No.CN218599252U and other technical solutions are all insect identification by shooting image.
[0005] However, in the above technical solutions, when photographing insects, if insects are dead or still, only single image can be photographed, and the image of insects in crawling condition cannot be photographed, so that the photographed image is relatively single, which will seriously affect the identification quality of insects and affect the identification accuracy.
[0006] Therefore, in order to solve the above problems, a rotating all-around insect identification device for improving the shooting quality is needed. UTILITY MODEL CONTENT
[0007] The utility model aims at the deficiency existing in prior art, provides a kind of rotating all-around insect identification device;Its technical scheme is as follows:
[0008] A kind of rotating omnidirectional insect identification device, including base, which is provided with a circular identification box, and the base is also installed with a rotating motor, the rotating motor is located at the middle position of identification box, the main shaft of rotating motor extends upward and the shaft end is correspondingly installed with rotating column, and the outer wall of rotating column is also installed with the partitioning plate that extends to outside, the partitioning plate is evenly spaced and is arranged in divergent shape, the end of partitioning plate is correspondingly attached to the inner wall of identification box, and identification area is formed between adjacent partitioning plates, and when rotating motor rotates, partitioning plate follows rotation, and identification area also changes accordingly.
[0009] The upper end of the rotating column is also installed with a support column, the upper end of the support column is installed with a rotating platform, the lower end surface of the rotating platform is installed with an identification camera, the number of identification camera is same with the number of identification area, and the position of identification camera corresponds with the position of identification area below, and identification camera is always aligned with the middle position of corresponding identification area below.
[0010] When rotating motor rotates, partitioning plate follows rotation at the same time, and the rotating platform above also follows rotation, and corresponding identification camera follows rotation, and one identification camera is aligned with one identification area.
[0011] Further, the partitioning plate is provided with four, and the corresponding identification area is provided with four, and the identification camera is provided with four.
[0012] Further, the side wall of the identification box is also installed with four discharge pipes, and the four discharge pipes are arranged at equal intervals.
[0013] Further, the electromagnetic valve is installed on each discharge pipe, and the air suction device is also installed on each discharge pipe, and the insects in corresponding identification area are sucked into the discharge pipe through the air suction device.
[0014] Further, the lower end of each discharge pipe is also placed with a collection frame, and the position of discharge pipe corresponds with the collection frame, and the insects sucked into the discharge pipe fall into the collection frame.
[0015] Further, the edge of the plate body of partitioning plate is correspondingly coated with wear-resistant pad, and the partitioning plate follows the rotation of rotating column and rubs the wear-resistant pad.
[0016] Further, the identification camera is connected to the processor, and the photographed information data can be transmitted to the processor for comparison and identification of insects.
[0017] Beneficial effects: the utility model has the following beneficial effects:
[0018] 1) The space in the identification box is divided into four areas by the four partitioning plates installed on the rotating column in the device, and multiple groups of insects can be placed in the identification box for identification at the same time, which effectively improves the identification efficiency in the case of a large number of insects to be identified;
[0019] 2) The insects in the identification area are identified by the identification camera, and the rotating column can rotate with the rotating motor, and the upper end is installed with a rotating platform through a support column and a corresponding identification camera on the rotating platform, the identification camera rotates, and the camera of the identification camera is always located at the center position of the identification area below, so that the insects can be placed in the identification area, and the identification camera above can be used for shooting, effectively identifying the insects;
[0020] 3) The identification camera in the device can only shoot an image of one position of the insect, at which time the rotating motor can be started to drive the rotating column to rotate, and the partitioning plate is correspondingly rotated to drive the insects in the identification area to crawl, and the identification camera above is rotated together, at which time the identification camera above is used for shooting, so that the crawling image of the insect can be shot, and the shooting quality of the image is improved;
[0021] 4) The insects can also be prompted to change their body positions when the partitioning plate rotates, such as being knocked down and turned over, at which time the identification camera can be used for shooting to shoot the images of the insects in various postures and directions, which is more conducive to the identification of the insects and effectively improves the quality and efficiency of the identification of the insects;
[0022] 5) After the identification is completed, the insects in the identification area need to be collected, and the discharge pipe is provided in the application, and the air suction device and the electromagnetic valve are installed on the discharge pipe, after the identification is completed, the air suction device is started to suck the air of the discharge pipe, the insects are sucked into the discharge pipe, and then fall into the collection frame below, so that the insects are collected. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1 It is a structural drawing of the utility model;
[0024] Figure 2 It is Figure 1 A-A sectional view in the middle;
[0025] Figure 3 It is Figure 1 B-B sectional view in the middle;
[0026] Figure 4 It is a schematic view of the simultaneous rotation of the partitioning plate and the identification camera;
[0027] Wherein, base 1; Identification box 2; Rotary motor 3; Main shaft 4; Rotary column 5; Partition plate 6; Identification area 7; Support column 8; Rotary platform 9; Identification camera 10; Discharge pipe 11; Solenoid valve 12; Suction device 13; Collection frame 14. DETAILED DESCRIPTION
[0028] The utility model will be further illustrated below in combination with the drawings and specific embodiments. The embodiments are implemented on the premise of the technical scheme of the utility model and should be understood as being used for illustrating the utility model only but not for limiting the scope of the utility model.
[0029] As shown in Figure 1 and Figure 2 , a rotary omnidirectional insect identification device comprises a base 1, a circular identification box 2 is arranged on the base 1, and a rotary motor 3 is further installed in the base 1, the rotary motor 3 is located at the middle position of the identification box 2, the main shaft 4 of the rotary motor 3 extends upward and the shaft end is correspondingly provided with a rotary column 5, and a partition plate 6 extending outward is further installed on the outer wall of the rotary column 5, the partition plates 6 are evenly spaced and arranged in a diverging manner, the end of the partition plate 6 is tightly attached to the inner wall of the identification box 2, and the identification area 7 is formed between the adjacent partition plates 6, and when the rotary motor 3 rotates, the partition plate 6 rotates, and the identification area 7 changes accordingly.
[0030] The upper end of the rotary column 5 is further provided with a support column 8, the upper end of the support column 8 is provided with a rotary platform 9, the lower end surface of the rotary platform 9 is provided with an identification camera 10, the number of the identification cameras 10 is the same as that of the identification areas 7, and the position of the identification camera 10 corresponds to that of the identification area 7 below, and the identification camera 10 is always aligned with the middle position of the corresponding identification area 7 below.
[0031] As shown in Figure 3 and Figure 4 , when the rotary motor 3 rotates, the partition plate 6 rotates at the same time, the rotary platform 9 above also rotates, and the corresponding identification camera 10 rotates, and one identification camera 10 is aligned with one identification area 7.
[0032] The four partition plates 6 are provided, and the corresponding four identification areas 7 and four identification cameras 10 are provided; four discharge pipes 11 are further installed on the side wall of the identification box 2, and the four discharge pipes 11 are arranged at equal intervals.
[0033] The electromagnetic valve 12 is installed on each discharge pipe 11, and the suction device 13 is further installed on each discharge pipe 11, and the insects in the corresponding identification area 7 are sucked into the discharge pipe 11 through the suction device 13.
[0034] The lower end of each discharge pipe 11 is also provided with a collecting frame 14, and the discharge pipe 11 corresponds to the position of the collecting frame 14, and the insects sucked into the discharge pipe 11 fall into the collecting frame 14.
[0035] The plate body edge of the partitioning plate 6 is correspondingly covered with a wear-resistant pad, and the partitioning plate 6 rubs against the wear-resistant pad when it rotates with the rotating column 5; the identification camera 10 is connected to the processor and can transmit the photographed information data to the processor for comparison and identification of insects.
[0036] The specific working principle and working process of the device are as follows: in the device, the space in the identification box is divided into four areas by the four partitioning plates installed on the rotating column, and the rotating column can rotate with the rotating motor, and the upper end is installed with a rotating platform through a support column and corresponding identification cameras on the rotating platform.
[0037] On the one hand, the number of identification cameras is the same as that of the identification areas, and the device is provided with four identification cameras; on the other hand, the camera of the identification camera is located at the middle position of the identification area which is always located below, so that the insects can be placed in the identification area, and then the above identification camera can be used for shooting, at this time, only the image of one position of the insects can be shot, then the rotating motor can be started to drive the rotating column to rotate, the rotating column drives the partitioning plate to rotate correspondingly, so as to drive the insects in the identification area to crawl, and the above identification camera rotates at the same time, at this time, the above identification camera is used for shooting, so that the crawling image of the insects can be shot, and the shooting quality of the image is improved.
[0038] When the partitioning plate rotates, it can also promote the insects to turn over and change the position of the body, for example, through collision to make the insects turn over, at this time, the identification camera is used for shooting again, so that the images of the insects in various postures and directions can be shot, which is more conducive to the identification of the insects and effectively improves the quality and efficiency of the identification of the insects.
[0039] After the identification is completed, the insects in the identification area need to be collected, in the application, a discharge pipe is arranged, and a suction device and an electromagnetic valve are arranged on the discharge pipe, after the identification is completed, the suction device is started to perform suction treatment on the discharge pipe, the insects are sucked into the discharge pipe, and then fall into the collecting frame below, so that the insects are collected.
[0040] The above specific embodiment is only a preferred embodiment of the present application, and is not used to limit the implementation and the scope of claims of the present application, and any equivalent changes and modifications made according to the application scope of the present application should be included in the application scope of the present application.
Claims
1. A rotary omnidirectional insect identification device, characterized by: The utility model provides a kind of identification device for insect, including base (1), a circular identification box (2) is provided on the base (1), and a rotating motor (3) is further installed in the base (1), the rotating motor (3) is located at the middle position of identification box (2), the main shaft (4) of rotating motor (3) is stretched upwards and the shaft end is correspondingly installed with rotating column (5), and the outer wall of rotating column (5) is further installed with the partitioning plate (6) that stretches out to outside, the partitioning plate (6) is evenly spaced and is arranged in divergent shape, the end of partitioning plate (6) is correspondingly attached to the inner wall of identification box (2), and identification area (7) is formed between adjacent partitioning plate (6), and when rotating motor (3) rotates, partitioning plate (6) follows rotation, and identification area (7) also changes accordingly. The upper end of rotating column (5) is further installed with a support column (8), the upper end of support column (8) is installed with rotating platform (9), the lower end surface of rotating platform (9) is installed with identification camera (10), the number of identification camera (10) is same with the number of identification area (7), and the position of identification camera (10) corresponds with the position of identification area (7) below, and identification camera (10) is always aligned with the middle position of corresponding identification area (7) below. When rotating motor (3) rotates, partitioning plate (6) follows rotation, and the rotating platform (9) above also follows rotation, and corresponding identification camera (10) follows rotation, and one identification camera (10) is aligned with one identification area (7).
2. A rotary omnidirectional insect identification device according to claim 1, characterized in that: The number of partitioning plate (6) is four, and the number of identification area (7) is four, and the number of identification camera (10) is four.
3. A rotary omnidirectional insect identification device according to claim 2, wherein: Four discharge pipes (11) are further installed on the side wall of identification box (2), and the four discharge pipes (11) are equally spaced.
4. A rotary omnidirectional insect identification device according to claim 3, wherein: An electromagnetic valve (12) is installed on each discharge pipe (11), and a suction device (13) is also installed on each discharge pipe (11), and the insects in corresponding identification area (7) are sucked into the discharge pipe (11) through the suction device (13).
5. A rotary omnidirectional insect identification device according to claim 4, wherein: A collection frame (14) is placed at the lower end of each discharge pipe (11), and the position of discharge pipe (11) corresponds with the position of collection frame (14), and the insects sucked into the discharge pipe (11) fall into the collection frame (14).
6. A rotary omnidirectional insect identification device according to claim 1, wherein: The edge of the plate body of partitioning plate (6) is correspondingly covered with wear-resistant pad, and the partitioning plate (6) rubs the wear-resistant pad when rotating with rotating column (5).
7. The rotary omnidirectional insect identification device of claim 1, wherein: The identification camera (10) is connected to the processor, and the photographed information data can be transmitted to the processor for comparison and identification of insects.
Citation Information
Patent Citations
Insect identification device
CN212290949U
360-degree surrounding shooting table for insect identification
CN218599252U
Multifunctional rotary insect identification table
CN222093401U