Farm ai camera fly repelling device

CN224761176UActive Publication Date: 2026-09-18SHENYANG XIMU INTERNET OF THINGS TECH CO LTD
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Patent Information

Application Number
CN202522294691.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-30
Publication Date
2026-09-18
Estimated Expiration
2035-10-30

AI Technical Summary

Technical Problem

本实用新型通过电机、定位座、旋转座、电动伸缩杆、铰接座、推块、旋转盘、弹簧、定位槽、卡接块、凹槽和定位块的作用,解决了现有的监控设备通过螺栓安装后,其监控角度和位置是固定的,进而造成监控范围较小,且螺栓安装后的监控设备维护拆卸时十分不便,不利人们使用的问题

Benefits of technology

[0020] This AI camera fly-repelling device for the farm uses a fly-repelling tube to drive away flies as it moves. The rotation of the fly-repelling tube causes a rotating ring to push a sliding disc within the first cylinder via a push rod, compressing the air inside the corresponding first and second cylinders. This allows the gas from the mixed pyrethroid particles to enter the fly-repelling tube through the air intake mechanism and be sprayed from multiple nozzles onto the lens area of ​​the AI ​​camera. The gas from the pyrethroid particles diffuses around the AI ​​camera, creating a temporary fly-repelling effect that keeps flies away for a short period.

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Abstract

The utility model relates to the technical field of intelligentization breeding, and disclose a farm AI camera dispels flies device, including AI camera body, the circumference of AI camera body fixed mounting has drive motor, the output of drive motor fixed mounting has dispels flies pipe, dispels flies pipe presents spoon type structure, and there is a gap between the lens area of AI camera body. This farm AI camera dispels flies device, through setting dispels flies pipe can drive in its movement process, flies are driven, and through the rotation of dispels flies pipe, make rotating ring through push rod push the sliding disc movement in first cylinder, and extrude the air inside corresponding first cylinder and second cylinder, make the gas air that mixed allyl chrysanthemum ester particle volatilizes enter dispels flies pipe through air intake mechanism, and from multiple paint injection hole injection to the lens area department of AI camera body, use the gas that allyl chrysanthemum ester particle volatilizes, spread to the surrounding of AI camera body, form the dispels flies effect of short time.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent aquaculture technology, specifically to an AI camera fly-repelling device for aquaculture farms. Background Technology

[0002] Intelligent farming is a new farming model that uses data as the core driving force and modern information technologies such as the Internet of Things and artificial intelligence to achieve precise management and decision-making in the entire process of farming production through visualization, digitalization, and intelligence. Ultimately, it aims to reduce costs, increase efficiency, improve quality and safety, and achieve sustainable development.

[0003] An existing patent (publication number: CN219588643U) discloses a monitoring device for aquaculture farms, including a mounting frame, a motor, and a camera. A rotating disk is fixedly connected to the output end of the motor, and a positioning seat is fixedly connected to the top of the rotating disk. A positioning groove is formed in the middle of the top of the positioning seat, and grooves are formed on both the front and rear sides of the upper end of the positioning groove. A spring is fixedly connected to one side of the groove, and a locking block is fixedly connected to the other end of the spring. A push block is fixedly connected to the top of the locking block. This invention, through the functions of the motor, positioning seat, rotating seat, electric telescopic rod, hinged seat, push block, rotating disk, spring, positioning groove, locking block, groove, and positioning block, solves the problem that existing monitoring equipment, after being bolted on, has a fixed monitoring angle and position, resulting in a small monitoring range, and is inconvenient for maintenance and disassembly, which is detrimental to user experience.

[0004] The aforementioned monitoring equipment can be easily disassembled and its angle adjusted. However, during use, due to the influence of the internal environment of the farm, there are usually many flies in the farm that will attach to the camera, thus obstructing the camera and affecting the all-round monitoring of the breeding area. This may lead to the omission of abnormal animal conditions or safety hazards. Utility Model Content

[0005] To address the shortcomings of existing technologies, this utility model provides an AI camera fly-repelling device for farms, which has advantages such as fly repellency and solves the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: an AI camera fly repelling device for a farm, comprising an AI camera body, a drive motor fixedly installed on the circumferential surface of the AI ​​camera body, a fly repelling tube fixedly installed at the output end of the drive motor, the fly repelling tube having a spoon-shaped structure, and a gap existing between the fly repelling tube and the lens area of ​​the AI ​​camera body.

[0007] A first cylinder and a second cylinder are provided on the side corresponding to the fly repelling tube. The first cylinder and the second cylinder are interference-fitted and connected. One end of the fly repelling tube is located in the first cylinder, and a rotating ring is fixedly connected to the end of the fly repelling tube located in the first cylinder. An air intake mechanism is provided between the rotating ring and the first cylinder and the second cylinder.

[0008] The end of the fly-repelling tube facing away from the drive motor is connected to the rotating ring, and multiple air jet holes are opened on the circumferential surface of the fly-repelling tube.

[0009] Furthermore, the air intake mechanism includes a sliding disc slidably connected inside the first cylinder, and a push rod is ball-connected between the sliding disc and the rotating ring.

[0010] With the above scheme, the ball-and-pin push rod structure can drive the push rod to move during the rotation of the rotating ring. When the push rod gradually moves to a horizontal state, it pushes the sliding disk to slide inside the first cylinder and compresses the air inside the first cylinder.

[0011] Furthermore, the air intake mechanism also includes a sliding disc and a notch at one end of the second cylinder. The two notches are coaxially arranged, and baffles are hinged to the inner walls of the two notches. The two baffles move inside the first cylinder and the second cylinder, respectively.

[0012] The above scheme allows the two gaps to be formed so that the compressed air can enter the fly-repelling tube and be sprayed out from multiple paint spray holes. The baffles are designed so that when the sliding plate is reset, the two baffles will close the corresponding gaps under the negative pressure inside the first and second cylinders.

[0013] Furthermore, two mesh screens are fixedly connected to the inner wall of the second cylinder, which are used to block particulate agents.

[0014] With the above scheme, one of the barriers can block the particulate agent, preventing it from entering the first cylinder and affecting the sliding of the sliding disc, while the other barrier can prevent the particulate agent from blocking the baffle on the second cylinder, allowing the baffle to open normally.

[0015] Furthermore, a medicine storage cylinder is threadedly connected to the circumferential surface of the second cylinder. The medicine storage cylinder is inclined downwards, and a buckle is fixedly installed on the circumferential surface of the AI ​​camera body, with the medicine storage cylinder located inside the buckle.

[0016] The above scheme allows the storage cylinder to store granular drugs, and the granular drugs inside will be replenished into the second cylinder under the influence of gravity.

[0017] Furthermore, the AI ​​camera body includes multiple fill lights mounted on its circumferential surface.

[0018] The above solution enables the supplementary lighting to automatically provide illumination when there is insufficient light.

[0019] Compared with the prior art, the technical solution of this utility model has the following beneficial effects:

[0020] This AI camera fly-repelling device for the farm uses a fly-repelling tube to drive away flies as it moves. The rotation of the fly-repelling tube causes a rotating ring to push a sliding disc within the first cylinder via a push rod, compressing the air inside the corresponding first and second cylinders. This allows the gas from the mixed pyrethroid particles to enter the fly-repelling tube through the air intake mechanism and be sprayed from multiple nozzles onto the lens area of ​​the AI ​​camera. The gas from the pyrethroid particles diffuses around the AI ​​camera, creating a temporary fly-repelling effect that keeps flies away for a short period. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the overall structure of this application. Figure 1 ;

[0022] Figure 2 This is a schematic diagram of the overall structure of this application. Figure 2 ;

[0023] Figure 3 This is a schematic diagram of the fly-repelling tube structure of this application;

[0024] Figure 4 This is a cross-sectional view of the first cylindrical structure of this application.

[0025] In the picture:

[0026] 1. AI camera body; 101. Fill light;

[0027] 2. Drive motor; 3. Fly repellent tube; 4. First cylinder; 5. Second cylinder; 6. Rotating ring; 7. Air intake mechanism;

[0028] 701. Sliding plate; 702. Push rod; 703. Notch; 704. Stop plate;

[0029] 8. Air jet; 9. Barrier net; 10. Medicine storage cylinder; 11. Buckle. Detailed Implementation

[0030] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0031] Please see Figures 1-4The fly-repelling device of the AI ​​camera in this embodiment includes an AI camera body 1. A drive motor 2 is fixedly installed on the circumferential surface of the AI ​​camera body 1. The AI ​​camera body 1 is signal-connected to the drive motor 2. A fly-repelling tube 3 is fixedly installed at the output end of the drive motor 2. The fly-repelling tube 3 has a spoon-shaped structure and a gap between it and the lens area of ​​the AI ​​camera body 1. The fly-repelling tube 3 can rotate around the lens area of ​​the AI ​​camera body 1 under the drive of the motor. The movement of the fly-repelling tube 3 drives away flies and prevents flies from attaching to the AI ​​camera body 1. The gap between the fly-repelling tube 3 and the AI ​​camera body 1 prevents the fly-repelling tube 3 from contacting the lens area of ​​the camera during rotation and prevents scratching the AI ​​camera body 1.

[0032] A first cylinder 4 and a second cylinder 5 are provided on one side corresponding to the fly repellent tube 3. Allyl pyrethroid particles are provided inside the second cylinder 5. The first cylinder 4 and the second cylinder 5 are interference-fitted and connected. One end of the fly repellent tube 3 is located inside the first cylinder 4, and a rotating ring 6 is fixedly connected to the end of the fly repellent tube 3 inside the first cylinder 4. An air intake mechanism 7 is provided between the rotating ring 6 and the first cylinder 4 and the second cylinder 5.

[0033] One end of the fly repellent tube 3, away from the drive motor 2, is connected to the rotating ring 6. Multiple air jet holes 8 are provided on the circumferential surface of the fly repellent tube 3. The pyrethroid particles can evaporate into the first cylinder 4 and the second cylinder 5 at room temperature. By rotating the fly repellent tube 3, the rotating ring 6 pushes the sliding disk 701 to move in the first cylinder 4 through the push rod 702, and squeezes the air inside the corresponding first cylinder 4 and second cylinder 5. The air enters the fly repellent tube 3 through the air intake mechanism 7 and is sprayed from multiple spray holes onto the lens area of ​​the AI ​​camera body 1, forming a temporary fly repellent effect, making it impossible for flies to approach for a short period of time.

[0034] The air intake mechanism 7 includes a sliding disc 701 slidably connected inside the first cylinder 4. A push rod 702 is ball-jointed between the sliding disc 701 and the rotating ring 6. The ball-joint push rod 702 structure allows the rotating ring 6 to rotate, causing the push rod 702 to move. When the push rod 702 gradually moves to a horizontal state, it pushes the sliding disc 701 to slide inside the first cylinder 4 and compresses the air inside the first cylinder 4. The air intake mechanism 7 also includes a notch 703 opened at one end of the sliding disc 701 and the second cylinder 5. The two notches 703 are coaxially arranged, and baffles 704 are hinged to the inner walls of the two notches 703. The two baffles 704 move inside the first cylinder 4 and the second cylinder 5 respectively. The two notches 703 formed allow the compressed air to enter the fly repellent tube 3 and be sprayed out from multiple paint spray holes. The baffles 704 are set so that when the sliding disc 701 is reset, the two baffles 704 are closed by the negative pressure inside the first cylinder 4 and the second cylinder 5.

[0035] Two meshes 9 are fixedly connected to the inner wall of the second cylinder 5. The meshes 9 are used to block granular agents. One mesh 9 can block the granular agents and prevent them from entering the first cylinder 4 and affecting the sliding of the sliding disc 701. The other mesh 9 can prevent the granular agents from blocking the baffle 704 on the second cylinder 5, so that the baffle 704 can be opened normally. A storage cylinder 10 is threadedly connected to the circumferential surface of the second cylinder 5. The storage cylinder 10 is set at an angle downward. A buckle 11 is fixedly installed on the circumferential surface of the AI ​​camera body 1. The storage cylinder 10 is located in the buckle 11. The storage cylinder 10 can store granular agents, and the granular agents inside will be replenished into the second cylinder 5 under the action of gravity. The AI ​​camera body 1 includes multiple supplementary lights 101 installed on its circumferential surface. The supplementary lights 101 automatically provide illumination when the light is insufficient.

[0036] The working principle of the above embodiment is as follows: The AI ​​camera body 1 first uses its image sensor to continuously monitor the surrounding environment. Its built-in AI algorithm can automatically identify whether there are flies near the lens. Once the conditions are met, the camera will send a start signal to the connected drive motor 2. After receiving the electrical signal from the AI ​​camera, the drive motor 2 starts to drive the fly-repelling tube 3 to rotate. The fly-repelling tube 3 will rotate around the lens area of ​​the AI ​​camera body 1, thereby driving away the flies.

[0037] When the fly repellent tube 3 rotates, it can activate the rotating ring 6 to rotate, so that the rotating ring 6 can drive the push rod 702 to move synchronously during the rotation. During the movement, the push rod 702 can change from an inclined state to a horizontal state and push the sliding disk 701 to slide inside the first cylinder 4, which increases the pressure inside the second cylinder 5. Subsequently, the baffle 704 on the second cylinder (5) is pushed open by the increased internal air pressure, allowing the air mixed with the volatile chemical odor inside the second cylinder 5 to enter the first cylinder 4. When the rotating ring 6 drives the sliding disk 701 to reset through the push rod 702, the air inside the first cylinder 4 can enter the fly repellent tube 3 and be sprayed from the multiple air jet holes 8 on the fly repellent tube 3 to the lens area of ​​the AI ​​camera body 1, thereby forming a short-term fly repellent effect, making flies unable to approach for a short period of time.

[0038] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitations, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes said element.

[0039] Although embodiments of this application have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of this application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A fly-repelling device using an AI camera in a livestock farm, comprising an AI camera body (1), characterized in that: A drive motor (2) is fixedly installed on the circumferential surface of the AI ​​camera body (1), and a fly repelling tube (3) is fixedly installed at the output end of the drive motor (2). The fly repelling tube (3) has a spoon-shaped structure and there is a gap between it and the lens area of ​​the AI ​​camera body (1). A first cylinder (4) and a second cylinder (5) are provided on the side corresponding to the fly repelling tube (3). The first cylinder (4) and the second cylinder (5) are interference-fitted and connected. One end of the fly repelling tube (3) is located inside the first cylinder (4), and a rotating ring (6) is fixedly connected to the end of the fly repelling tube (3) located inside the first cylinder (4). An air intake mechanism (7) is provided between the rotating ring (6) and the first cylinder (4) and the second cylinder (5). The end of the fly repellent tube (3) away from the drive motor (2) is connected to the rotating ring (6), and multiple air jet holes (8) are opened on the circumferential surface of the fly repellent tube (3).

2. The fly-repelling device for farms using AI cameras according to claim 1, characterized in that: The air intake mechanism (7) includes a sliding disc (701) slidably connected inside the first cylinder (4), and a push rod (702) is ball-connected between the sliding disc (701) and the rotating ring (6).

3. The fly-repelling device for farms using AI cameras according to claim 2, characterized in that: The air intake mechanism (7) also includes a sliding disc (701) and a notch (703) at one end of the second cylinder (5). The two notches (703) are coaxially arranged, and the inner walls of the two notches (703) are hinged with baffles (704). The two baffles (704) move inside the first cylinder (4) and the second cylinder (5) respectively.

4. The fly-repelling device for farms using AI cameras according to claim 1, characterized in that: The inner wall of the second cylinder (5) is fixedly connected with two nets (9), which are used to block particulate agents.

5. The fly-repelling device for farms using AI cameras according to claim 1, characterized in that: The second cylinder (5) is threadedly connected to a medicine storage cylinder (10), which is inclined downward. The AI ​​camera body (1) is fixedly installed with a buckle (11) on its circumferential surface, and the medicine storage cylinder (10) is located inside the buckle (11).

6. The fly-repelling device for farms using AI cameras according to claim 1, characterized in that: The AI ​​camera body (1) includes multiple fill lights (101) mounted on its circumference.

Citation Information

Patent Citations

  • Monitoring equipment for breeding factory

    CN219588643U