Aquatic product real-time monitoring mechanism based on Internet of Things

By designing an automatic cleaning component, the problem of dirt on the surface of water quality sensors affecting accuracy was solved, enabling automatic cleaning of water quality sensors, reducing the labor intensity of workers, and improving monitoring efficiency.

CN223471026UActive Publication Date: 2025-10-24BENGBU YUGE AGRI TECH CO LTD
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Patent Information

Application Number
CN202422448478.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-10-24
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

In existing technologies, water quality sensors become contaminated with dirt after prolonged underwater operation, leading to decreased accuracy and requiring regular cleaning by workers, which increases labor intensity.

Method used

An IoT-based real-time aquatic monitoring mechanism was designed, which utilizes a support plate, threaded rod, forward and reverse motors, and cleaning components. The motor drives a brush to automatically clean the surface of the water quality sensor, reducing human intervention.

Benefits of technology

It enables automatic cleaning of water quality sensors, reducing the labor intensity of workers and improving the monitoring accuracy and efficiency of the sensors.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an aquatic product real-time monitoring mechanism based on Internet of Things, which relates to the technical field of aquaculture and comprises a first supporting plate, and a T-shaped groove is formed in one side of the first supporting plate. According to the utility model, the positive and negative motor is started through the control terminal, and the movable plate can move up and down along with the threaded rod I, so that the movable plate moves upwards out of the water surface to facilitate workers to check the detection sensitivity of the water quality sensor; an underwater forward and reverse motor, a first underwater motor, a second underwater motor and an underwater electric telescopic rod are started through a control terminal, the output end of the underwater forward and reverse motor drives a second threaded rod to rotate, a driven gear drives a rotating pipe to rotate along with a driving gear, and a brush cleans the surface of the water quality sensor. And the brush plate rotates to clean the side surface of the water quality sensor, so that the water quality sensor in the aquatic product real-time monitoring mechanism does not need to be manually cleaned, and the labor intensity of workers is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to aquatic technology field especially relates to a real -time monitoring mechanism of aquatic product based on internet of things. BACKGROUND

[0002] With the improvement of people's living standards, the richness of diet is paid more and more attention by people. The supply of aquatic products has also been greatly improved than before. The original marine industry and other fishing industries have far failed to meet the needs of people's daily life; at the same time, the internet of things (English: Internet of Things, abbreviation: IoT) originates from the media field. The internet of things refers to connecting any object with network through information sensing device according to agreed protocol, and the object exchanges information and communicates through information transmission medium to realize intelligent identification, positioning, tracking, supervision and other functions. The internet of things is also used for aquaculture to monitor aquatic products in real time.

[0003] However, in the prior art, when using the real-time monitoring mechanism of aquatic product based on internet of things to monitor the water quality of aquaculture in real time, it is found that the water quality sensor is contaminated with dirt on the surface due to long time working under water, thereby affecting the accuracy of the water quality sensor, and the workers need to clean the surface regularly, which increases the labor intensity of the workers.

[0004] Therefore, a real-time monitoring mechanism of aquatic product based on internet of things is proposed to solve the above problems. CONTENT OF THE UTILITY MODEL

[0005] The utility model aims at solving the problems in the prior art.

[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme: a real-time monitoring mechanism of aquatic product based on internet of things, comprising: a support plate one, a T-shaped groove is formed on one side of the support plate one, bearing holes one are formed at both ends in the T-shaped groove, threaded rods one are embedded in the bearing holes one through bearings, a positive and negative motor is connected to one end of the threaded rod one, an up-down moving assembly is arranged on the surface of the threaded rod one, and a cleaning assembly is arranged in the up-down moving assembly;

[0007] The up-down moving assembly comprises a moving plate, an extension column is fixedly connected to one end of the moving plate, a water quality sensor is connected to the other end of the extension column, an n-shaped support arm is fixedly connected to one end of the top of the moving plate, a support plate two is fixedly connected to one end of the bottom of the moving plate, and a limiting rod is fixedly connected to one side of the bottom of the n-shaped support arm and the support plate two;

[0008] The cleaning assembly comprises a moving ring and a rotating shaft, the inside of the moving ring is embedded with a rotating pipe through a bearing, the surface of the rotating pipe is fixedly sleeved with a driven gear, one end of the rotating shaft is connected with an underwater motor two.

[0009] As a preferred implementation form, one side of the support plate one is fixedly connected with a control terminal, the other side of the support plate one is fixedly connected with a fixed plate, four through holes are formed through the surface of the fixed plate, the top of the support plate one is fixedly connected with a motor plate one, the output end of the reversible motor is fixedly connected at the center of one end of a threaded rod one, one side of the reversible motor is fixedly connected to the surface of the motor plate one.

[0010] As a preferred implementation form, the two sides of the n-shaped support arm are fixedly connected with a motor plate two and a motor plate three respectively, the two sides of the n-shaped support arm are both throughly formed with bearing holes two, the inside of the two bearing holes two is embedded with a threaded rod two through a bearing, one end of the threaded rod two is connected with an underwater reversible motor, the output end of the underwater reversible motor is fixedly connected at the center of one end of the threaded rod two, the bottom of the underwater reversible motor is fixedly connected to the surface of the motor plate two, one side of the n-shaped support arm is throughly formed with a bearing hole three.

[0011] As a preferred implementation form, the surface of one side of the driven gear is meshingly connected with a driving gear, one side of the driving gear is connected with an underwater motor one, the output end of the underwater motor one is fixedly connected at the center of one side of the driving gear, one side of the underwater motor one is fixedly connected to the surface of the moving ring, the inside of the rotating pipe is connected with a plurality of brushes, the output end of the underwater motor two is fixedly connected at the center of one end of the rotating shaft, the other end of the rotating shaft is fixedly connected with an underwater electric telescopic rod, the other end of the underwater electric telescopic rod is connected with a brush plate.

[0012] As a preferred implementation form, the inside of the moving plate is threadedly sleeved on the surface of the threaded rod one, the surface of the moving plate is movably embedded in the inside of the T-shaped groove.

[0013] As a preferred implementation form, one side of the surface of the moving ring is threadedly sleeved on the surface of the threaded rod two, the other side of the surface of the moving ring is movably sleeved on the surface of the limiting rod, the inside of the rotating pipe is movably sleeved on the surface of the extension column and the water quality sensor.

[0014] As a preferred implementation form, the surface of the rotating shaft is embedded in the inside of the bearing hole three through a bearing, the bottom of the underwater motor two is fixedly connected to the surface of the motor plate three.

[0015] Compared with the prior art, the utility model has the advantages and positive effects that:

[0016] 1. The utility model discloses a water product real -time monitoring mechanism is fixed in the fish pond edge of water product cultivation through four through -holes with expansion bolts, the lower end of support plate one is immersed into the water surface, then connects external power supply equipment, and external power supply equipment provides power supply to control terminal, positive and negative motor, water quality sensor, underwater positive and negative motor, underwater motor no. 1, underwater motor no. 2 and underwater electric telescopic rod. Control terminal and underwater positive and negative motor, underwater motor no. 1, underwater motor no. 2 and underwater electric telescopic rod electrically connected and are associated control, and control terminal and water quality sensor electrically connected, and water quality sensor can monitor water quality in real time and send signal to control terminal, and through control terminal starts positive and negative motor, and the output end of positive and negative motor drives screw rod no. 1 rotation, because screw rod no. 1 is connected with movable plate thread, and movable plate follows screw rod no. 1 and can move up and down, thereby realizing movable plate and moving out of the water surface and facilitating the inspection of the sensitivity of water quality sensor for worker.

[0017] 2. The utility model discloses a water product real -time monitoring mechanism is fixed in the fish pond edge of water product cultivation through four through -holes with expansion bolts, the lower end of support plate one is immersed into the water surface, then connects external power supply equipment, and external power supply equipment provides power supply to control terminal, positive and negative motor, water quality sensor, underwater positive and negative motor, underwater motor no. 1, underwater motor no. 2 and underwater electric telescopic rod. Control terminal and underwater positive and negative motor, underwater motor no. 1, underwater motor no. 2 and underwater electric telescopic rod electrically connected and are associated control, and control terminal and water quality sensor electrically connected, and water quality sensor can monitor water quality in real time and send signal to control terminal, and through control terminal starts positive and negative motor, and the output end of positive and negative motor drives screw rod no. 1 rotation, because screw rod no. 1 is connected with movable plate thread, and movable plate follows screw rod no. 1 and can move up and down, thereby realizing movable plate and moving out of the water surface and facilitating the inspection of the sensitivity of water quality sensor for worker. ACCURACY

[0018] Figure 1 The utility model provides a kind of overview schematic diagram of water product real -time monitoring mechanism based on internet of things;

[0019] Figure 2 The utility model provides a kind of overview schematic diagram of water product real -time monitoring mechanism based on internet of things;

[0020] Figure 3 The utility model provides a kind of overview schematic diagram of water product real -time monitoring mechanism based on internet of things;

[0021] Figure 4 The utility model provides a kind of overview schematic diagram of water product real -time monitoring mechanism based on internet of things;

[0022] Figure 5 The utility model provides a kind of overview schematic diagram of water product real -time monitoring mechanism based on internet of things.

[0023] Legend:

[0024] 1, support plate one; 101, control terminal; 102, fixed plate; 103, through hole; 104, motor plate one; 105, T-shaped groove; 106, bearing hole one; 107, threaded rod one; 108, positive and negative motor; 2, up and down moving assembly; 201, moving plate; 202, extension column; 203, water quality sensor; 204, n-shaped support arm; 205, support plate two; 206, limit rod; 207, motor plate two; 208, motor plate three; 209, bearing hole two; 210, threaded rod two; 211, underwater positive and negative motor; 212, bearing hole three; 3, cleaning assembly; 301, moving ring; 302, rotating pipe; 303, driven gear; 304, drive gear; 305, underwater motor one; 306, brush; 307, rotating shaft; 308, underwater motor two; 309, underwater electric telescopic rod; 310, brush plate. DETAILED DESCRIPTION

[0025] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0026] Please refer to Figures 1-5 The present application provides a technical solution: a real-time monitoring mechanism for aquatic products based on the Internet of Things, comprising: a support plate one 1, one side of the support plate one 1 is provided with a T-shaped groove 105, two ends inside the T-shaped groove 105 are provided with bearing holes one 106, the interiors of the two bearing holes one 106 are embedded with threaded rods one 107 through bearings, one end of the threaded rod one 107 is connected with a positive and negative motor 108, the surface of the threaded rod one 107 is provided with an up and down moving assembly 2, the interior of the up and down moving assembly 2 is provided with a cleaning assembly 3;

[0027] The up and down moving assembly 2 comprises a moving plate 201, one end of the moving plate 201 is fixedly connected with an extension column 202, the other end of the extension column 202 is connected with a water quality sensor 203, one end of the top of the moving plate 201 is fixedly connected with an n-shaped support arm 204, one end of the bottom of the moving plate 201 is fixedly connected with a support plate two 205, the bottom of the n-shaped support arm 204 and one side of the support plate two 205 are fixedly connected with a limit rod 206;

[0028] The cleaning assembly 3 comprises a moving ring 301 and a rotating shaft 307, the inside of the moving ring 301 is embedded with a rotating pipe 302 through a bearing, the surface of the rotating pipe 302 is fixedly sleeved with a driven gear 303, and one end of the rotating shaft 307 is connected with an underwater motor two 308.

[0029] Specifically, the moving plate 201 can move up and down by controlling the terminal 101 to start the positive and negative motor 108, so that the moving plate 201 moves out of the water surface upward, and the detection sensitivity of the water quality sensor 203 is convenient for workers to check; the underwater positive and negative motor 211, the underwater motor one 305, the underwater motor two 308 and the underwater electric telescopic rod 309 are started by the terminal 101, the output end of the underwater positive and negative motor 211 drives the threaded rod two 210 to rotate, the driven gear 303 drives the rotating pipe 302 to rotate with the driving gear 304, the brush 306 cleans the surface of the water quality sensor 203, and the brush plate 310 rotates to clean the side surface of the water quality sensor 203, so that the water quality sensor 203 in the aquatic real-time monitoring mechanism does not need to be cleaned manually, and the labor intensity of workers is reduced; the length of the water quality sensor 203 is extended by the extension column 202, so that the brush 306 is moved to the surface of the extension column 202 after the water quality sensor 203 is cleaned, and the real-time monitoring of the water quality sensor 203 is avoided from being affected by the brush 306.

[0030] In one embodiment, one side of the supporting plate one 1 is fixedly connected with a terminal 101, the other side of the supporting plate one 1 is fixedly connected with a fixed plate 102, four through holes 103 are formed in the surface of the fixed plate 102, the top of the supporting plate one 1 is fixedly connected with a motor plate one 104, the output end of the positive and negative motor 108 is fixedly connected at the center of one end of the threaded rod one 107, and one side of the positive and negative motor 108 is fixedly connected to the surface of the motor plate one 104.

[0031] Specifically, the terminal 101 can be connected with a local area network, workers can check real-time water quality data detected by the aquatic real-time monitoring mechanism in a monitoring room or through a mobile phone APP, and the terminal 101 is controlled in the monitoring room or through the mobile phone APP.

[0032] In one embodiment, the two sides of the n-shaped supporting arm 204 are fixedly connected with a motor plate two 207 and a motor plate three 208 respectively, the two sides of the n-shaped supporting arm 204 are both provided with bearing holes two 209, the inside of the two bearing holes two 209 is embedded with a threaded rod two 210 through a bearing, one end of the threaded rod two 210 is connected with an underwater positive and negative motor 211, the output end of the underwater positive and negative motor 211 is fixedly connected at the center of one end of the threaded rod two 210, the bottom of the underwater positive and negative motor 211 is fixedly connected to the surface of the motor plate two 207, and one side of the n-shaped supporting arm 204 is provided with a bearing hole three 212.

[0033] Specifically, the underwater motor 211 is fixed on the surface of the motor plate 207, so as to avoid shaking of the underwater motor 211 during operation and affect the normal operation of the mechanism.

[0034] In an embodiment, the surface on one side of the driven gear 303 is connected with the driving gear 304, one side of the driving gear 304 is connected with the underwater motor 305, the output end of the underwater motor 305 is fixedly connected at the center of one side of the driving gear 304, one side of the underwater motor 305 is fixedly connected to the surface of the moving ring 301, the inside of the rotating pipe 302 is connected with a plurality of brushes 306, the output end of the underwater motor 308 is fixedly connected at the center of one end of the rotating shaft 307, the other end of the rotating shaft 307 is fixedly connected with the underwater electric telescopic rod 309, the other end of the underwater electric telescopic rod 309 is connected with the brush plate 310.

[0035] Specifically, the underwater motor 305 is fixed on the surface of the moving ring 301, so as to avoid shaking of the underwater motor 305 during operation and affect the normal operation of the mechanism.

[0036] In an embodiment, the inside of the moving plate 201 is threadedly sleeved on the surface of the threaded rod 107, and the surface of the moving plate 201 is movably embedded in the inside of the T-shaped groove 105.

[0037] Specifically, the T-shaped groove 105 limits the movement of the moving plate 201, so that the moving plate 201 can only move up and down.

[0038] In an embodiment, one side of the surface of the moving ring 301 is threadedly sleeved on the surface of the threaded rod 210, the other side of the surface of the moving ring 301 is movably sleeved on the surface of the limiting rod 206, and the inside of the rotating pipe 302 is movably sleeved on the surfaces of the extension column 202 and the water quality sensor 203.

[0039] Specifically, the limiting rod 206 limits the movement of the moving ring 301, so that the moving plate 201 can only move in the direction of the threaded rod 210.

[0040] In an embodiment, the surface of the rotating shaft 307 is embedded in the inside of the bearing hole 212 through a bearing, and the bottom of the underwater motor 308 is fixedly connected to the surface of the motor plate 208.

[0041] Specifically, the underwater motor 308 is fixed on the surface of the motor plate 208, so as to avoid shaking of the underwater motor 308 during operation and affect the normal operation of the mechanism.

[0042] Working principle: use expansion bolt through four through holes 103 to fix the real-time monitoring mechanism of aquatic products on the edge of the fish pond for aquaculture, the lower end of the support plate 1 extends into the water surface, then connect the external power supply device, the external power supply device provides power for the control terminal 101, the reversible motor 108, the water quality sensor 203, the underwater reversible motor 211, the underwater motor 305, the underwater motor 308 and the underwater electric telescopic rod 309. The control terminal 101 is electrically connected with the reversible motor 108, the underwater reversible motor 211, the underwater motor 305, the underwater motor 308 and the underwater electric telescopic rod 309 and is associated with control, the control terminal 101 is electrically connected with the water quality sensor 203, the water quality sensor 203 can monitor the water quality in real time and send the signal to the control terminal 101; start the reversible motor 108 through the control terminal 101, the output end of the reversible motor 108 drives the threaded rod 107 to rotate, since the threaded rod 107 is threadedly connected with the moving plate 201, the moving plate 201 follows the threaded rod 107 and can move up and down, so as to realize that the moving plate 201 moves up out of the water surface, which is convenient for workers to check the detection sensitivity of the water quality sensor 203; start the underwater reversible motor 211, the underwater motor 305, the underwater motor 308 and the underwater electric telescopic rod 309 through the control terminal 101, the output end of the underwater reversible motor 211 drives the threaded rod 210 to rotate, since the threaded rod 210 is threadedly connected with the moving ring 301, the moving ring 301 can follow the threaded rod 210 and move along the threaded rod 210, the output end of the underwater motor 305 drives the driving gear 304 to rotate, since the driving gear 304 is meshed and connected with the driven gear 303, the driven gear 303 drives the rotating pipe 302 to rotate following the driving gear 304, the brush 306 in the rotating pipe 302 cleans the surface of the water quality sensor 203, the underwater electric telescopic rod 309 can be elongated to make the brush plate 310 with the brush side adhere to the side of the water quality sensor 203, the output end of the underwater motor 308 drives the brush plate 310 to rotate to clean the side of the water quality sensor 203, so the design makes the water quality sensor 203 in the real-time monitoring mechanism of aquatic products not need manual cleaning, which reduces the labor intensity of workers.

[0043] The above is only the preferred embodiment of the present application, not the other forms of the present application, any skilled in the art may use the above disclosed technical content to change or modify the equivalent embodiment applied to other fields, but any simple modification, equivalent change and modification made on the basis of the technical essence of the present application to the above embodiment still belongs to the protection scope of the present application technical scheme.

Claims

1. An Internet of Things based real-time monitoring mechanism for aquatic products, characterized in that, Include: Supporting plate one (1), one side of the supporting plate one (1) is provided with T type groove (105), both ends of the inside of the T type groove (105) are provided with bearing hole one (106), the inside of two bearing hole one (106) is embedded with threaded rod one (107) through bearing, one end of the threaded rod one (107) is connected with positive and negative motor (108), the surface of the threaded rod one (107) is provided with up and down moving assembly (2), the inside of the up and down moving assembly (2) is provided with cleaning assembly (3); The up and down moving assembly (2) includes a moving plate (201), one end of the moving plate (201) is fixedly connected with an extension column (202), the other end of the extension column (202) is connected with a water quality sensor (203), one end of the moving plate (201) is fixedly connected with an n-shaped support arm (204), one end of the moving plate (201) is fixedly connected with a support plate two (205), the bottom of the n-shaped support arm (204) and one side of the support plate two (205) are fixedly connected with a limiting rod (206); The cleaning assembly (3) includes a moving ring (301) and a rotating shaft (307), the inside of the moving ring (301) is embedded with a rotating pipe (302) through a bearing, the surface of the rotating pipe (302) is fixedly sleeved with a driven gear (303), one end of the rotating shaft (307) is connected with an underwater motor two (308).

2. The real-time monitoring mechanism for aquatic products based on the Internet of Things according to claim 1, characterized in that: One side of the supporting plate one (1) is fixedly connected with a control terminal (101), the other side of the supporting plate one (1) is fixedly connected with a fixed plate (102), the surface of the fixed plate (102) is provided with four through holes (103), the top of the supporting plate one (1) is fixedly connected with a motor plate one (104), the output end of the positive and negative motor (108) is fixedly connected at the center of one end of the threaded rod one (107), one side of the positive and negative motor (108) is fixedly connected on the surface of the motor plate one (104). 3.The real-time monitoring mechanism based on Internet of Things for aquatic products according to claim 1, characterized in that: Both sides of the n-shaped support arm (204) are fixedly connected with a motor plate two (207) and a motor plate three (208), both sides of the n-shaped support arm (204) are provided with bearing hole two (209), the inside of two bearing hole two (209) is embedded with threaded rod two (210) through bearing, one end of the threaded rod two (210) is connected with underwater positive and negative motor (211), the output end of the underwater positive and negative motor (211) is fixedly connected at the center of one end of the threaded rod two (210), the bottom of the underwater positive and negative motor (211) is fixedly connected on the surface of the motor plate two (207), one side of the n-shaped support arm (204) is provided with bearing hole three (212).

4. The real-time monitoring mechanism for aquatic products based on the Internet of Things according to claim 3, characterized in that: The surface of one side of the driven gear (303) is connected with the driving gear (304), one side of the driving gear (304) is connected with the underwater motor one (305), the output end of the underwater motor one (305) is fixedly connected at the center of one side of the driving gear (304), one side of the underwater motor one (305) is fixedly connected on the surface of the moving ring (301), the inside of the rotating pipe (302) is connected with a plurality of brushes (306), the output end of the underwater motor two (308) is fixedly connected at the center of one end of the rotating shaft (307), the other end of the rotating shaft (307) is fixedly connected with the underwater electric telescopic rod (309), the other end of the underwater electric telescopic rod (309) is connected with the brush plate (310).

5. The real-time monitoring mechanism for aquatic products based on Internet of Things according to claim 1, characterized in that: The inside of the moving plate (201) is threaded on the surface of the threaded rod one (107), and the surface of the moving plate (201) is movably embedded in the inside of the T-shaped groove (105).

6. The real-time monitoring mechanism for aquatic products based on the Internet of Things according to claim 1, characterized in that: The surface of one side of the moving ring (301) is threaded on the surface of the threaded rod two (210), the surface of the other side of the moving ring (301) is movably sleeved on the surface of the limiting rod (206), and the inside of the rotating pipe (302) is movably sleeved on the surface of the extension column (202) and the water quality sensor (203). 7.The real-time monitoring mechanism based on Internet of Things for aquatic products according to claim 1, wherein: The surface of the rotating shaft (307) is embedded in the inside of the bearing hole three (212) through the bearing, and the bottom of the underwater motor two (308) is fixedly connected on the surface of the motor plate three (208).