Multifunctional fishery equipment

By integrating a float assembly, feeding system, dissolved oxygen sensor, and aeration device, this multifunctional fishery equipment solves the problem of limited functionality of fishing platforms, thereby enhancing the fishing experience and improving the overall utilization efficiency of water areas.

CN224139963UActive Publication Date: 2026-04-21HUNAN YINONGREN TECHNOLOGY CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN YINONGREN TECHNOLOGY CO LTD
Filing Date
2025-05-26
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

The Diaoyutai State Guesthouse currently has a single function and is difficult to adapt to diversified scenarios such as aquaculture, water quality monitoring, and fisheries management. This results in redundant construction of facilities, cumbersome operating procedures, and poor coordination, which affects the efficiency of comprehensive utilization of the water area.

Method used

Design a multifunctional fishery equipment, including a float assembly, a feeding system, a dissolved oxygen sensor, an oxygenation device, and a main control unit, integrated into one unit to achieve automatic control and intelligent fishery management.

Benefits of technology

Enhance the fishing experience, meet diverse fishery needs, reduce redundant construction of facilities, improve the comprehensive utilization efficiency of water areas, and achieve the intensification and synergy of facilities.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224139963U_ABST
    Figure CN224139963U_ABST
Patent Text Reader

Abstract

According to the multifunctional fishery equipment, by arranging the buoyancy tank assembly floating on the water surface, the situation that shoreside trees and the like affect rod casting can be avoided, the fishing condition and experience are improved, meanwhile, the buoyancy tank limiting assembly is additionally arranged, movement of the buoyancy tank assembly can be limited, and the situation that the buoyancy tank assembly floats too far away from the shoreside is avoided; meanwhile, due to the design of the movable platform capable of floating and changing along with the water level, the influence of water level change on fishermen can be reduced; in addition, the feeding system and the oxygenation device are additionally arranged, feeding and oxygenation can be achieved, the fishery requirement is met, the feeding system, the dissolved oxygen sensor and the oxygenation device are further electrically connected with the main control unit, a basis can be provided for automatic control, and intelligent fishery can be achieved conveniently. By means of the integrated structural design idea, various fishery equipment, entertainment equipment and the like are integrated, an integrated product is formed, and market-oriented application and popularization in the actual production, sales and use process are facilitated.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to pond equipment, and more particularly to a multifunctional fishery equipment. Background Technology

[0002] The current single-function fishing platforms have significant drawbacks. They are generally fixed and installed on the banks of ponds, meeting only the needs of fishing and failing to adapt to diverse scenarios such as aquaculture, water quality monitoring, and fisheries management. When fishing operations are required, dedicated platforms or independent equipment must be built, resulting in redundant construction of functional facilities within the same water area. This not only excessively occupies the limited area around the pond and disrupts the overall aquatic landscape, but also leads to cumbersome operating procedures, redundant investment of manpower and resources, and poor coordination between different functional modules, severely restricting the comprehensive utilization efficiency of the water area. This contradicts the development needs of modern smart fisheries for intensive and multifunctional development. Utility Model Content

[0003] This application aims to provide a multifunctional fishery equipment that can meet a variety of needs.

[0004] The multifunctional fishery equipment provided in this application includes:

[0005] The floating box assembly includes a movable platform, with a net cage at the center of the movable platform and a fence surrounding the movable platform;

[0006] A pontoon restraint assembly is used to limit the horizontal and vertical movement range of the pontoon assembly, and to connect the shore-based platform and the pontoon assembly;

[0007] A feeding system, installed on a shore-based platform, is used to feed the pond through a feeding pipe; the feeding pipe is arranged along the pontoon restraint assembly and / or the pontoon assembly.

[0008] Dissolved oxygen sensor, used to detect the dissolved oxygen level in pond water;

[0009] An oxygenation device, installed on the float assembly or the float restraint assembly, is used to oxygenate the pond.

[0010] The main control unit is electrically connected to the feeding system, the dissolved oxygen sensor, and the oxygenation device, respectively.

[0011] The multifunctional fishery equipment of this application, by incorporating a floating buoy assembly, avoids interference from trees on the shore when casting, improving fishing conditions and experience. The addition of a buoy restraint assembly limits the movement of the buoy assembly, preventing it from drifting too far from the shore. The movable platform design, which follows water level changes, also reduces the impact of water level fluctuations on anglers. Furthermore, the addition of a feeding system and an aeration device enables feeding and oxygenation to meet fishery needs. The electrical connection between the feeding system, dissolved oxygen sensor, aeration device, and main control unit provides a foundation for automatic control, facilitating smart fishery operations. This application, through an integrated structural design, integrates various fishery and recreational equipment into a single integrated product, facilitating market promotion and application in actual production, sales, and use.

[0012] Other features and advantages of this application will be set forth in the following description, and will be apparent in part from the description, or may be learned by practicing this application. Attached Figure Description

[0013] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:

[0014] Figure 1 This is an electrical system diagram of a multifunctional fishery equipment according to an embodiment of this application;

[0015] Figure 2 This is a schematic diagram of the structure of the multifunctional fishery equipment according to an embodiment of this application;

[0016] Figure 3 for Figure 2 Enlarged view of point A in the middle;

[0017] Figure 4 for Figure 2 A schematic diagram of the bottom structure of the mid-float box assembly.

[0018] Icon labels:

[0019] Frame structure 100, piles 110;

[0020] Limiting rod 200, second through hole 201, mounting structure 210, mounting hole 211;

[0021] Floating box assembly 300, movable platform 310, net cage 311, fence 312, sunshade 313, floating box unit 320, fastener 321, positioning rod 330, fish gutting mechanism 340, rinsing water pump 341, moth-attracting lamp 350;

[0022] 400 units of shore platform, 410 units of handrail stairs, and 420 units of sludge tank;

[0023] 500 oxygenation frame, 510 oxygenator;

[0024] Feeding system 600, feeding pipe 610;

[0025] 700 sludge pump, 710 conveying pipe;

[0026] Main control unit 800;

[0027] Dissolved oxygen sensor 910, water temperature sensor 920, pH sensor 930;

[0028] Human-computer interaction unit 1000;

[0029] Wireless communication module 1100;

[0030] Positioning module 1200;

[0031] Monitoring system 1300. Detailed Implementation

[0032] The embodiments of this application are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this application, and should not be construed as limiting this application.

[0033] In the description of this application, the use of terms such as "first," "second," etc., is for the purpose of distinguishing technical features only and should not be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated or the order of the technical features indicated.

[0034] In the description of this application, it should be understood that the orientation descriptions, such as up, down, etc., are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application.

[0035] In the description of this application, it should be noted that, unless otherwise explicitly defined, terms such as "setup," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this application in conjunction with the specific content of the technical solution.

[0036] The technical solution of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the embodiments described below are some embodiments of this application, not all embodiments.

[0037] like Figures 1 to 4As shown in the figure, the multifunctional fishery equipment of this application embodiment includes:

[0038] The floating box assembly 300 includes a movable platform 310, with a net cage 311 at the center of the movable platform 310 and a fence 312 around the perimeter of the movable platform 310.

[0039] The pontoon restraint assembly is used to limit the horizontal and vertical movement range of the pontoon assembly 300, and to connect the shore-based platform 400 and the pontoon assembly 300.

[0040] Feeding system 600 is installed on shore platform 400. Feeding system 600 is used to feed the pond through feeding pipe 610. Feeding pipe 610 is arranged along pontoon restraint assembly and / or pontoon assembly 300.

[0041] The dissolved oxygen sensor 910 is used to detect the dissolved oxygen level in pond water.

[0042] An oxygenation device, installed on the float assembly 300 or the float restraint assembly, is used to oxygenate the pond.

[0043] The main control unit 800 is electrically connected to the feeding system 600, the dissolved oxygen sensor 910, and the oxygenation device.

[0044] In this embodiment, by setting up a floating buoy assembly 300 on the water surface, the casting of rods can be avoided due to trees on the shore, improving fishing conditions and experience. The addition of a buoy restraint component limits the movement of the buoy assembly 300, preventing it from drifting too far from the shore. The design of the movable platform 310, which moves with the water level, also reduces the impact of water level changes on anglers. Furthermore, the addition of a feeding system 600 and an aeration device enables feeding and aeration to meet fishery needs. The feeding system 600, dissolved oxygen sensor 910, and aeration device are electrically connected to the main control unit 800, providing a foundation for automatic control and facilitating smart fisheries. This application, through an integrated structural design, integrates various fishery and recreational equipment into a single integrated product, facilitating market promotion and application in actual production, sales, and use.

[0045] The feeding pipe 610 of the feeding system 600 can be arranged along the float box limiting component or along the float box component 300, so that the feeding system 600 can put the feed closer to the center of the pond.

[0046] The aforementioned feeding system 600 is installed on the shore platform 400, which facilitates feeding by users and also makes subsequent maintenance and use easier.

[0047] The aforementioned feeding system 600 can achieve timed feeding through the main control unit 800. Specifically, the main control unit 800 can use an internal timer or an external timer to keep track of time, thereby enabling the feeding system 600 to start at fixed intervals or at fixed times every day to complete the feeding.

[0048] The aforementioned feeding system 600 may include a feeding motor and a feeding fan, and the main control unit 800 can start the feeding motor and feeding fan to feed the feed.

[0049] The dissolved oxygen sensor 910 can be fixed by the float box limiting component, and the dissolved oxygen sensor 910 can be set as close as possible to the center of the pond by the float box limiting component to better detect the dissolved oxygen concentration in the pond.

[0050] Multiple dissolved oxygen sensors 910 can be installed, and these sensors can be positioned at different locations on the float box limiting assembly to better detect dissolved oxygen in the pond.

[0051] The aforementioned aeration device can be installed on the float box assembly 300 or the float box restraint assembly. It is understood that the aeration device will be used in conjunction with the aeration pipeline during the aeration process. The aeration pipeline needs to be installed below the water surface to achieve a better aeration effect.

[0052] The aforementioned oxygenation device can be maintained on a timed basis through the main control unit 800. Specifically, the main control unit 800 can use an internal timer or an external timer to keep track of time, thereby enabling the oxygenation device to be started at fixed intervals or at fixed times every day to complete the oxygenation.

[0053] The aforementioned oxygenation device can also be used in conjunction with the dissolved oxygen sensor 910 to avoid situations where dissolved oxygen levels are too low when using only the timed oxygenation mode. Specifically, after the main control unit 800 obtains the dissolved oxygen concentration in the pond through the dissolved oxygen sensor 910, it compares it with a pre-set low dissolved oxygen concentration threshold. Then, when the dissolved oxygen is lower than the low dissolved oxygen concentration threshold, the main control unit 800 can directly control the oxygenation device to start.

[0054] In some implementations, reference Figure 2 A sunshade 313 is installed above the activity platform 310.

[0055] In this embodiment, the comfort of anglers can be improved by setting up a sunshade 313.

[0056] In some implementations, reference Figure 2 , Figure 4 The oxygenation device includes:

[0057] The 500mm aerator is installed below the water surface.

[0058] Aerator 510 is installed on float assembly 300 and connected to aerator frame 500 via pipeline. Aerator 510 is electrically connected to main control unit 800 and is used to supply air to aerator frame 500.

[0059] In this embodiment, the aerator 510 can be equipped with suitable feeding equipment according to the actual size of the pond, and the additional frame can be designed with appropriate size according to the actual size of the pond. In this embodiment, no limitation is made.

[0060] In some implementations, reference Figure 2 The oxygenation frame 500 is installed at one end of the floating box assembly 300 away from the feeding system 600.

[0061] The aforementioned aerator 500 can be installed at one end of the float assembly 300 away from the feeding system 600, that is, away from the handrail staircase 410, to ensure that the aerator 500 is as close as possible to the center of the pond. However, the aerator 500 can also be installed on both sides of the float assembly 300 depending on the actual situation.

[0062] In some implementations, reference Figure 2 The float assembly 300 is also equipped with a moth-attracting lamp 350 that is electrically connected to the main control unit 800. The moth-attracting lamp 350 is located above the oxygenation frame 500.

[0063] The moth-attracting lamp 350 can be started and stopped directly by a timer or by a timer start-up via the main control unit 800, thereby reducing power consumption. At the same time, the moths that fall into the water from the moth-attracting lamp 350 can also become food for the fish in the pond.

[0064] In some implementations, reference Figure 2 The moth-attracting lamp 350 can be placed above the aerator 500. When the aerator 500 is activated, it can increase the probability of moths falling into the water.

[0065] In some implementations, reference Figure 2 The shore platform 400 is equipped with a sludge tank 420, and the floating box assembly 300 is also equipped with a conveying pipe 710.

[0066] Multifunctional fishing equipment also includes:

[0067] The sludge pump 700 is electrically connected to the main control unit 800 and is used to transport sludge into the sludge tank 420 through the conveying pipe 710.

[0068] In this embodiment, the sludge from the pond is periodically pumped into the sludge tank 420 by the sludge pump 700, which can improve water quality, increase the water volume of the pond, and thus protect the health of the fish in the pond.

[0069] It is conceivable that the sludge pond 420 is only an example. In actual production, the shore platform 400 may not be equipped with a sludge pond 420. For example, the sludge pump 700 can directly deliver the sludge to the shore platform 400 for growing vegetables, etc.

[0070] In some implementations, reference Figure 1 Multifunctional fishery equipment also includes:

[0071] The water temperature sensor 920 is electrically connected to the main control unit 800 and is used to detect the water temperature in the pond.

[0072] In this embodiment, a water temperature sensor 920 is installed to detect the water temperature in the pond. The detected water temperature can be displayed on devices such as the human-machine interface unit 1000 and smart terminals via the main control unit 800, allowing users to monitor the water temperature status in real time. It can even issue timely alarms when the water temperature rises or falls excessively, enabling users to take prompt action. It should be noted that the growth of many fish species is affected by water temperature; therefore, effectively controlling the water temperature can promote the rapid growth of fish raised in the pond, improving economic benefits.

[0073] In some implementations, reference Figure 1 Multifunctional fishery equipment also includes:

[0074] The pH sensor 930 is electrically connected to the main control unit 800 and is used to detect the pH value of the water in the pond.

[0075] In this embodiment, a pH sensor 930 is installed to detect the pH value in the pond. The detected pH value can be displayed on devices such as the human-machine interface unit 1000 and smart terminals via the main control unit 800, allowing users to monitor the pH status in real time. It can even issue timely alarms when the pH value exceeds a set value or changes suddenly, enabling users to take prompt action. It should be noted that the growth of many fish species is affected by pH levels, and drastic pH changes can even lead to mass fish mortality; therefore, monitoring pH changes is particularly important.

[0076] In some implementations, reference Figure 1 Multifunctional fishery equipment also includes:

[0077] The temperature sensor, electrically connected to the main control unit 800, is used to detect the temperature of the area where the pond is located.

[0078] In this embodiment, a temperature sensor can be used to detect the temperature of the area where the pond is located, so that the user can adjust relevant measures accordingly when the temperature is too high or too low. For example, when the temperature is high, the frequency of the aerator 510's timed start-up can be appropriately increased.

[0079] In some implementations, reference Figure 1 Multifunctional fishery equipment also includes:

[0080] The human-computer interaction unit 1000 is electrically connected to the main control unit 800 and is set on the active platform.

[0081] The aforementioned human-computer interaction unit 1000 can adopt commercially available human-computer interaction devices, such as smart call terminals, smart video terminals, or even customized embedded system devices. Alternatively, it can adopt a touch screen, microphone, speaker, buttons, etc., to design its own human-computer interaction terminal. The specific form of the human-computer interaction unit 1000 is not specifically limited in this embodiment and can be flexibly designed by the designer according to customer needs.

[0082] The aforementioned human-computer interaction unit 1000 can be directly installed on the shore-based platform 400, the activity platform 310, or any other location that is convenient for users to view.

[0083] In this embodiment, the human-machine interaction unit 1000 allows users to better understand the pond's condition and facilitates local adjustments to parameters, such as the starting frequency of the aerator 510 and the alarm threshold for water temperature. It also allows users to manually start equipment such as the aerator 510, sludge pump 700, and feeding system 600 directly through the human-machine interaction unit 1000.

[0084] In some implementations, reference Figure 1 Multifunctional fishery equipment also includes:

[0085] The wireless communication module 1100 is electrically connected to the main control unit 800.

[0086] The aforementioned wireless communication module 1100 can be a 4G, 5G or other mobile communication module, or a WIFI module, or an IoT module, Bluetooth module, etc., designed to enable users to communicate with the main control unit 800 through a smart mobile terminal to understand the situation in the fishpond.

[0087] It is understandable that when using 4G, 5G and other mobile communication modules, the existing communication networks of major telecommunications companies can be directly utilized, which can reduce the cost of deploying the communication network to a certain extent.

[0088] In some implementations, reference Figure 1Multifunctional fishery equipment also includes:

[0089] The monitoring system 1300 is installed on the floating box restraint component.

[0090] In this embodiment, by installing a monitoring system 1300 on the floating box restraint component, users can easily view real-time video of the pond area to determine whether there is any danger (e.g., a person falling into the water) or malicious behavior (e.g., throwing objects into the pond). At the same time, the monitoring system 1300 can also store long-term video data so that when tracing is required, the video data can be used to reconstruct the event.

[0091] In some implementations, reference Figure 1 Multifunctional fishery equipment also includes:

[0092] The positioning module 1200 is electrically connected to the main control unit 800.

[0093] In this embodiment, the addition of the positioning module 1200 facilitates targeted remote services and management for customers. For example, users can directly remotely manage the equipment, and the server can directly determine the location of the equipment remotely through the remote positioning information to specifically detect the operating status of each part of the multi-functional fishery equipment and implement remote control. At the same time, it also facilitates better asset management when renting out the equipment in a leasing mode.

[0094] In some implementations, reference Figures 2 to 4 Float box restraint components, including:

[0095] Multiple piles 110 are installed at the bottom of the pool and extend upwards out of the water surface; the multiple piles 110 are arranged to form a frame structure 100;

[0096] The limiting rod 200 is movably and vertically sleeved on the pile rod 110; the float assembly 300 is connected to the limiting rod 200 and is set inside the frame structure 100, and the float assembly 300 can slide horizontally relative to the limiting rod 200.

[0097] Handrail staircase 410 is used to connect shore platform 400 and floating box assembly 300.

[0098] The tops of the aforementioned piles 110 are connected by connecting rods to form a frame structure 100.

[0099] A limiting rod 200 is fitted onto the aforementioned pile rod 110, so that the limiting rod 200 can move up and down relative to the pile rod 110;

[0100] The aforementioned pontoon assembly 300 is connected to the limiting rod 200 and is installed within the frame structure 100. As the water level changes, the pontoon assembly 300 will cause the limiting rod 200 to rise and fall relative to the pile rod 110.

[0101] The aforementioned handrail staircase 410 can be an automatic telescopic staircase. When the float box assembly 300 moves up and down vertically or slides horizontally, the handrail staircase 410 can always maintain a stable connection with the float box assembly 300.

[0102] In some embodiments, the pontoon assembly 300 includes a plurality of pontoon units 320, which surround the outer periphery of the cage 311;

[0103] Adjacent pontoon units 320 are connected by fasteners 321, and / or, pontoon units 320 and net cages 311 are connected by fasteners 321.

[0104] The fastener 321 mentioned above can be as follows: Figure 4 As shown, multiple float box units 320 are connected by bolts, or they can be welded to the float box units 320. The choice can be made according to the actual situation and is not limited in this embodiment. Fasteners 321 can also be used to seal the connection between adjacent float box units 320. The net cage 311 can be used to temporarily store fish caught by the user, or to temporarily store fish fry released into the pond. The shape of the net cage 311 can be designed according to actual needs, and can be as follows... Figure 2 , Figure 4 The rectangle shown can also be a circle or other shapes, and is not limited in this embodiment. The fasteners 321 connecting the cage 311 and the floating box unit 320 can be the same as or different from the fasteners 321 connecting the adjacent floating box units 320.

[0105] In some embodiments, the limiting rod 200 is provided with a mounting structure 210, and the mounting structure 210 is provided with a mounting hole 211 extending in the radial direction of the limiting rod 200.

[0106] The float assembly 300 is provided with a positioning rod 330, the length extension direction of the positioning rod 330 is the same as the length extension direction of the handrail staircase 410; the positioning rod 330 is movably inserted through the mounting hole 211.

[0107] The aforementioned installation structure 210 is fixedly connected to the limiting rod 200, for example, by welding or by means of snap-fit. The length extension direction of the positioning rod 330 is the same as the length extension direction of the handrail staircase 410, so that the float assembly 300 can only slide horizontally along the length extension direction of the handrail staircase 410, ensuring that the connection between the handrail staircase 410 and the shore platform 400 or the float assembly 300 will not deflect, thus improving the stability of the handrail staircase 410.

[0108] In some embodiments, the pile rod 110 is provided with a first through hole that radially penetrates the pile rod 110, and the limiting rod 200 is provided with a second through hole 201 that radially penetrates the limiting rod 200. The first through hole and the second through hole 201 are aligned and connected by a pin to fix the relative positions of the pile rod 110 and the limiting rod 200.

[0109] In this embodiment, refer to Figure 2 , Figure 3 As shown, since the float assembly 300 will sway when it is horizontal, the relative positions of the limit rod 200 and the pile rod 110 can be fixed by means of a structure such as a pin passing through the first through hole and the second through hole 201. This can level the float assembly 300, keep the movable platform 310 as horizontal as possible, and improve the stability of the float assembly 300 and the comfort of the user.

[0110] It is important to note that when the pond water level rises or falls, the pin needs to be removed to ensure that the float assembly 300 can rise and fall with the water level changes. To ensure that the pin can always fix the relative position of the limiting rod 200 and the pile rod 110 as the water level changes, multiple first and / or second through holes 201 are provided. Specifically, in actual production, there can be multiple first through holes, spaced apart along the axial direction of the pile rod 110; or multiple second through holes 201, spaced apart along the axial direction of the limiting rod 200; or as follows... Figure 3 As shown, both the first through hole and the second through hole 201 are provided with multiple holes.

[0111] In some implementations, refer to Figure 2 As shown, the limiting rod 200 has a certain length in the vertical direction. When the water level drops to the point where the bottom of the limiting rod 200 contacts the bottom of the pool, the limiting rod 200 can support the float assembly 300 to prevent the float assembly 300 from dropping too high and contacting the bottom of the pool, thus avoiding damage to the float assembly 300 or related equipment. The specific length of the limiting rod 200 can be set according to the actual situation.

[0112] In some embodiments, the float assembly 300 is provided with a fish-cleaning mechanism 340 and a flushing water pump 341 is installed on the float assembly 300. The flushing water pump 341 is used to supply water to the fish-cleaning mechanism 340 so that anglers can process the fish they have caught on the mobile platform 310.

[0113] The above are merely specific embodiments of this application. Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, modules, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here. It should be understood that the protection scope of this application is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this application, and these modifications or substitutions should all be covered within the protection scope of this application.

Claims

1. A multi-functional fishing device, characterized by, include: The floating box assembly includes a movable platform, with a net cage at the center of the movable platform and a fence surrounding the movable platform; A pontoon restraint assembly is used to limit the horizontal and vertical movement range of the pontoon assembly, and to connect the shore-based platform and the pontoon assembly; A feeding system is installed on the shore platform, and the feeding system is used to feed the pond through a feeding pipe; The feed pipe is arranged along the float box restraint assembly and / or the float box assembly; Dissolved oxygen sensor, used to detect the dissolved oxygen level in pond water; An oxygenation device, installed on the float assembly or the float restraint assembly, is used to oxygenate the pond. The main control unit is electrically connected to the feeding system, the dissolved oxygen sensor, and the oxygenation device, respectively.

2. The multi-purpose fishing apparatus according to claim 1, wherein The oxygenation device includes: Aerators are installed below the water surface; An aerator is installed on the float assembly and connected to the aerator frame via a pipeline. The aerator is electrically connected to the main control unit and is used to supply air to the aerator frame.

3. The multi-purpose fishing device according to claim 2, wherein The oxygenation frame is installed at the end of the float assembly away from the feeding system.

4. The multi-purpose fishing apparatus according to claim 1, wherein The shore-based platform is equipped with a sludge tank, and the floating box assembly is also equipped with a conveying pipe; The multi-functional fishery equipment also includes: A sludge pump, electrically connected to the main control unit, is used to transport sludge into the sludge tank through the conveying pipe.

5. The multi-purpose fishing device according to claim 1, wherein The multi-functional fishery equipment also includes: The water temperature sensor, electrically connected to the main control unit, is used to detect the water temperature in the pond.

6. The multi-purpose fishing device according to claim 1, wherein The multi-functional fishery equipment also includes: The pH sensor, electrically connected to the main control unit, is used to detect the pH value of the water in the pond.

7. The multi-purpose fishing apparatus according to claim 1, wherein The multi-functional fishery equipment also includes: The human-computer interaction unit is electrically connected to the main control unit and is disposed on the activity platform.

8. The multi-purpose fishing device according to claim 1, characterized in that, The multi-functional fishery equipment also includes: The wireless communication module is electrically connected to the main control unit.

9. The multi-purpose fishing device according to claim 1, characterized in that, The multi-functional fishery equipment also includes: The positioning module is electrically connected to the main control unit.

10. The multi-purpose fishing rig of claim 1, wherein, The float restraint assembly includes: Multiple piles are installed at the bottom of the pool and extend upwards out of the water surface; the multiple piles are arranged to form a frame structure; A limiting rod is movably and vertically fitted onto the pile; the pontoon assembly is connected to the limiting rod and is disposed within the frame structure, and the pontoon assembly can slide horizontally relative to the limiting rod; Handrail stairs are used to connect the shore-based platform and the floating box assembly.