Smart catch cage

By coordinating the columnar body, movable frame module, and sensing module of the intelligent capture cage, combined with the drive module and control system, the problems of accuracy and ecological adaptability of existing capture devices are solved, achieving efficient and automated biological capture.

CN122228984APending Publication Date: 2026-06-19CHONGQING GUANGTIANTONG TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
CHONGQING GUANGTIANTONG TECH CO LTD
Filing Date
2026-04-27
Publication Date
2026-06-19

AI Technical Summary

Technical Problem

Existing trapping devices lack precision trapping capabilities and cannot be screened according to the species or size of organisms, resulting in the capture of non-target organisms, which affects the balance of the ecosystem. Furthermore, they require a large amount of human intervention and are difficult to adapt to environmental changes.

Method used

It employs the coordinated operation of a columnar body, a movable frame module, a drive module, and a sensing module, combined with an intelligent control system, to achieve efficient and precise capture of target organisms. This includes identification using optical imaging, ultrasonic, and radar wave modules, and automatic adjustment of the capture strategy through a bait device and a drive module.

Benefits of technology

It improves the accuracy and efficiency of capture, reduces the capture of non-target organisms, protects the ecological environment, adapts to various complex environments, and achieves automated operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a smart trapping cage for use in various spatial environments such as water, land, trees, or air. It comprises a columnar body, a movable frame module, a drive module, a sensing module, and a bait device. The columnar body consists of a first net cover, a second net cover, and multiple support columns, forming a containment space for trapping organisms. The movable frame module includes a sliding frame and a folding net, which can slide along the support columns to form a closed trapping space. The drive module controls the sliding of the movable frame, driving the folding net during trapping and resetting. The bait device is placed within the containment space, using bait and sound and light to lure target organisms into it. The sensing module captures images of the target organism and information about the surrounding environment, transmitting the data to the control module for processing, analysis, and identification to determine whether to trap. The drive module then acts according to instructions, either activating the movable frame module to form a closed net or restoring an open net area, or not activating it at all. This smart trapping cage is intelligently operated and effective for various trapping scenarios.
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Description

[0001] [Technical Field] This invention relates to a trapping device technology, and more particularly to a smart trapping cage for capturing organisms. [Previous Technology] There are various tools for catching creatures. For example, fish can be caught by hook or net. However, traditional fishing with hooks can injure the fish's mouth or the angler's hand due to the sharp hook, regardless of whether a fish is caught. Nets, on the other hand, often catch fish of all sizes, which is detrimental to the ecological environment. Therefore, the motivation for this invention is to improve upon the shortcomings of both methods. In existing technologies, most cages used for catching organisms are mechanically or manually operated. While their design is simple, they lack intelligent and environmentally friendly features, resulting in low catching efficiency and significant ecological problems. Specifically, traditional traps typically lack target identification capabilities and cannot select organisms based on species or size. This leads to the unnecessary capture of non-target organisms, especially juveniles and small creatures. This indiscriminate catching method poses a potential threat to the balance of the ecosystem. For example, traps capture fish regardless of size, which not only harms the populations of some species but may also damage their natural habitats, leading to long-term ecological shocks.

[0002] Currently, most catching devices are simply designed and can only meet basic catching functions; however, these devices have the following shortcomings in terms of catching efficiency and ecological adaptability: (1) Lacking the ability to accurately capture, it is unable to effectively capture specific creatures, causing a catastrophe for non-target creatures.

[0003] (2) Unable to flexibly adjust the capture strategy according to environmental changes.

[0004] (3) Existing devices are difficult to automate capture and require a large amount of manpower.

[0005] Furthermore, existing traps are mostly designed with simple mechanical structures in mind, failing to effectively integrate modern sensing or intelligent control technologies. This results in an inability to adapt to different fishing needs or environmental conditions. For example, in some waters, specific fish species need to be protected, but traditional traps cannot distinguish these species from the target fish, further exacerbating the negative environmental impact of the fishing process. To address the above technical problems, this invention proposes a smart trap that improves fishing efficiency and accuracy by using sensing technology and an automatic control system. Summary of the Invention

[0006] To address the aforementioned issues, this invention proposes a smart trapping cage, aiming to overcome the shortcomings of existing trapping devices in terms of trapping efficiency, accuracy, and ease of operation. This smart trapping cage combines multiple innovative structures and intelligent technologies, achieving efficient and precise trapping of target organisms through the coordinated operation of a columnar body, a movable frame module, a drive module, and a sensing module. It also significantly improves the intelligence level and applicability of the device, realizing the functions of accurate identification and efficient trapping.

[0007] This invention provides a structure for an intelligent capture cage, the main components of which are as follows: (1) A columnar body comprising a first mesh cover, a second mesh cover and multiple support columns, wherein the first mesh cover is located at the bottom of the columnar body and the second mesh cover is located at the top of the columnar body, both being composed of a mesh structure; the support columns connect the first mesh cover and the second mesh cover to form an accommodating space for accommodating and restricting the activity range of the target organism.

[0008] (2) A movable frame module, which is set on a support column and includes a slidable movable frame and a folding net. The movable frame surrounds the column body and can slide along the support column. The bottom edge of the folding net is connected to the first net cover. Through the sliding operation of the movable frame, the folding net can form a closed capture space.

[0009] (3) Limiting components, including a first limiting component and a second limiting component, are respectively set at the bottom and top of the support column to limit the starting and stopping positions of the movable frame and ensure the reliability of the capture process.

[0010] (4) Drive module, the first drive module is set on the first limiting member, and is used to release the first limiting member and drive the movable frame to slide along the support column to the second limiting member, thereby pulling the folding net to form a capture space.

[0011] Furthermore, this intelligent trap includes a second drive module for releasing the second limiting member, driving the movable frame back to the starting position and retracting the folded net to restore the initial state of the accommodating space. This design allows the trapping device to be reused repeatedly and simplifies the operation process.

[0012] Specifically, the drive module of the present invention includes any one or more combinations of an electric drive module, a pneumatic drive module, and a return spring drive module to adapt to different application scenarios and operational requirements.

[0013] In addition, this intelligent trap also includes a bait device located within the containment space, which includes a bait container and an acoustic and light-guided component to attract target organisms into the trapping space, thereby increasing the success rate of trapping.

[0014] Furthermore, the present invention provides a sensing module installed within an accommodating space, capable of capturing images, sound waves, or vibration signals from the environment (e.g., in water) and transmitting the data to a control module for analysis and processing.

[0015] Specifically, the sensing module of the present invention may consist of an optical imaging module, an ultrasonic module and a radar wave module to realize multiple detection functions and enhance the intelligence of the capture process.

[0016] Furthermore, the intelligent trapping cage of the present invention further includes a control module for electrically connecting and controlling the first drive module, the second drive module, the sensing module, and the bait device; the control module analyzes the signals captured by the sensing module and adjusts the trapping strategy to improve the trapping effect.

[0017] In some embodiments, the control module further includes a processing module with program processing and signal transmission functions, and can be further combined with a transmission module for transmitting sensing signals and control signals to realize data transmission and remote control with external devices.

[0018] In another embodiment of the invention, the first mesh cover further includes a through hole, thereby allowing organisms of a certain size to pass through freely, achieving the purpose of ecological conservation.

[0019] In another embodiment of the present invention, the sliding method of the active frame can be continuous or intermittent, and corresponding movement modes can be set for different target organisms to improve capture efficiency.

[0020] As mentioned above, users can communicate with the control module through electronic products to view the scene of the smart capture cage and operate it remotely, further improving the ease of use and intelligence of the device.

[0021] Furthermore, the smart trap described in this invention includes a fixed frame and a fishing line, wherein the two ends of the fishing line are respectively connected to the fixed frame and the smart trap. The fixed frame can be fixed on the shore or on a boat, and the fixed frame can be a fishing rod. In practical applications, it can further include a buoy, which is mainly used to adjust the height of the smart trap in the water, rather than to indicate whether aquatic creatures have bitten the bait or taken the hook.

[0022] By employing the aforementioned structure and technical means, this invention provides a comprehensive, efficient, and intelligent capture device. It not only improves the accuracy and efficiency of capture but also possesses excellent operability and adaptability, making it suitable for various capture scenarios. This provides a novel technical solution for the field of biological capture. Furthermore, this invention is designed with environmental friendliness in mind; for example, it captures only target species that meet certain criteria (organisms of suitable size or species), effectively avoiding interference with non-target organisms and enabling a sustainable, long-term capture method. Simultaneously, the intelligent features of this invention make it suitable for various complex environments, such as capture scenarios requiring real-time underwater monitoring and precise control, thereby further improving capture efficiency and compatibility with ecological protection.

[0023] [Simplified Explanation of the Diagram] Figure 1 This is a basic structural diagram of the present invention. Figure 2 This is a schematic diagram illustrating the enclosed capture space formed by the present invention. Figure 3 This is a schematic diagram of the bait device of the present invention. Figure 4 This is a schematic diagram of the sensing module of the present invention. Figure 5 This is a schematic diagram of the overall function of the present invention. Implementation

[0024] To enable those skilled in the art to understand and implement the present invention, appropriate embodiments are described below with reference to illustrations. Equivalent substitutions and modifications made based on the content of the present invention are all included within the scope of the present invention. Furthermore, it is stated that the quantifiers "a" or "an" used throughout the present invention are for the general meaning of expressing the scope of the present invention and should be interpreted as including one or at least one, and a single concept also includes plural cases, unless otherwise clearly intended in the present invention.

[0025] The first embodiment of this case utilizes the basic structure of an intelligent capture cage, such as... Figure 1 As shown, Figure 1 This is a basic structural diagram of the present invention. The intelligent capture cage 001 of the present invention is mainly composed of a columnar body 010, which includes a first mesh cover 011, a second mesh cover 012, and multiple support columns 013. The first mesh cover 011 is located at the bottom of the columnar body 010, and the second mesh cover 012 is located at the top of the columnar body 010. Both are made of durable and sturdy mesh structures. Figure 1Although the overall invention concept is presented as a circular net, the actual application is not limited to a circular shape to ensure overall stability and effective capture of organisms; wherein, multiple support columns 013 are respectively connected to the first net 011 and the second net 012. In this embodiment, there are at least 3 support columns 013 to form an accommodating space for restricting the activity range of the target organism.

[0026] In another embodiment of the present invention, the support column 013 may be made of stainless steel, reinforced plastic or composite material, and the number of support columns 013 may be 3 to 8, but is not limited thereto. They may be arranged around the column body 010 in an equidistant or unequal manner according to actual application requirements to ensure the stability of the overall structure.

[0027] Furthermore, the intelligent trap 001 further includes a movable frame module 020, wherein the movable frame 021 can slide along the support column 013 and surround the periphery of the columnar body 010, wherein a folded net 022 is fixed to the movable frame 021 and its bottom edge is connected to the periphery of the first net cover 011; this design allows the folded net 022 to form a closed trapping space when the movable frame 021 slides to the top, thereby confining the organism within the closed trapping space, such as... Figure 2 As shown, Figure 2 This is a schematic diagram of the enclosed trapping space formed by the present invention; it is worth emphasizing that the enclosed trapping space can have a small hole reserved in the middle of the first net cover 011, which can be round or other shapes, so that small fish can escape through it when the net is pulled in.

[0028] Furthermore, the holes of the first net cover 011 can be designed as a flip-top structure, which can be opened or closed as needed to control the use of the holes; for example, when catching eel fry, because the fry are too small, the holes need to be closed to prevent the fry from escaping; while in other cases, the holes can be opened to provide an escape function, realizing the adaptability and flexibility of the catching device to different organisms.

[0029] like Figure 3 As shown, Figure 3 This is a basic structural diagram of the present invention. This embodiment illustrates how to improve the capture efficiency using the bait device 050. In this embodiment, the columnar body 010, as described in the previous embodiment, forms a stable structure and encloses a receiving space for accommodating the target organism and the bait device 050. The bait device 050 includes a bait container and an acoustic-optical induction component (not shown in the diagram), and is located within the receiving space of the columnar body 010 below the second net cover 012. The bait device 050 can directly trigger the first drive module 040 to complete the capture of the target organism. In other embodiments, the bait device 050 may not directly trigger the first drive module 040, but may be triggered by another sensing module 060 or another control module 070.

[0030] Furthermore, the bait container can hold different baits according to the characteristics of the target. For example, the bait for fish can be fish food, while the bait for insects can be a sugary liquid. The sound and light induction component can emit sound and light of a specific frequency to attract target organisms into the container space. When the target organism comes into contact with the bait container, the triggering mechanism in the bait device 050 transmits a signal to the first drive module 040. After the first drive module 040 is activated, the movable frame module 020 starts to operate. The movable frame 021 slides under the guidance of the support column 013 and drives the folding net 022 to unfold, quickly covering the target organism and forming a closed capture space. The sliding range of the movable frame 021 is limited by the first limiting member 031 and the second limiting member 032 to ensure the stability and accuracy of the sliding range of the movable frame 021. In this embodiment, the bait device 050 has high flexibility, and the bait in the bait container can be replaced as needed to adapt to diverse capture requirements.

[0031] As described in the above embodiments, the bait device 050 can also adopt a design that combines a spice net bag with a straight rod-shaped bait hook, making the intelligent trap 001 more suitable for different scenarios and taking into account ecological balance. The spice net bag is fixed to the second net cover 012 and set inside the columnar body 010, located below the bait device 050. The spice net bag contains specific spices, such as roasted rice bran powder, fish bait powder, etc. These spices can slowly release fragrance in the water, simulating the foraging behavior of fish in the natural environment. The net cloth of the spice net bag can be made of corrosion-resistant materials to ensure that it will not be damaged after long-term use underwater. In addition, the function of the spice net bag is not only to attract target fish to approach the columnar body 010, but its slow-release spice design ensures that the fragrance can be evenly diffused, improving the capture efficiency.

[0032] Another embodiment involves suspending a straight rod-shaped bait hook above the spice net bag and below the second net cover 012. Specifically, one or more bait hooks can be suspended below the second net cover 012. The bait hooks are straight rod-shaped with rounded tips, which can be used to secure different types of bait. This design allows the bait to be easily bitten by fish or other creatures without harming their mouths. For example: 1. Earthworm bait: Earthworms can be inserted into the straight rod-shaped bait hook and fixed at the rounded end. This rounded end design effectively prevents the bait from slipping off.

[0033] 2. Small shrimp bait: Small shrimp can be directly tied to the rounded end of the straight rod with thin thread to ensure the bait is secure.

[0034] In addition, the round head structure of this straight rod-shaped bait hook can be adjusted according to user needs. The round head can be positioned above the bait hook, making it easier for fish or other creatures to pull the bait away, or positioned below the bait hook, making it less likely for fish or other creatures to pull the bait away, thereby satisfying the operating preferences of different users.

[0035] As mentioned above, the bait hook does not have a traditional barbed hook structure, the purpose of which is to avoid harming the fish; when a fish bites the bait, even if it is not caught, it can safely escape without causing additional damage to the fish; therefore, the entire catch process can be as follows: first attract the fish, the spices in the spice net bag diffuse with the water flow, attracting the fish to gather near the columnar body 010; when a large fish is attracted by the bait and bites the bait, it can trigger the bait device 050 to operate; after the bait device 050 senses the fish's movement, it triggers the first drive module 040, which drives the movable frame 021 in the movable frame module 020 to slide along the support column 013, causing the folding net 022 to unfold, forming a closed space, and successfully catching the target fish.

[0036] Furthermore, the rounded head design of the straight rod-shaped bait hook makes bait changing extremely convenient and safe, especially when changing baits such as earthworms or small shrimp. There is no need to worry about sharp barbs pricking fingers, achieving the effect of changing bait without injuring hands. Users can easily slide earthworms along the straight rod to the rounded head for fixation or use thin thread to firmly tie small shrimp to the rounded head structure, reducing the safety hazards that may be caused by traditional barb designs. This embodiment uses the fragrance of the spice net bag to attract fish, and at the same time, the straight rod-shaped bait hook design is simple, easy to install and change, which not only improves the fishing efficiency, but also protects the fish during the fishing process, feeds small fish, and promotes ecological balance and friendliness.

[0037] like Figure 4 As shown, Figure 4 This is a schematic diagram of the sensing module of the present invention. In this embodiment, the smart trap cage 001 has the same overall structure as described in the previous embodiment, forming a containment space to trap target organisms. The sensing module 060 is installed inside the columnar body 010 below the second net cover 012, and can monitor the dynamic behavior and environmental parameters of the target organisms in real time. The sensing module 060 has optical imaging, ultrasonic detection or radar wave detection functions. When a fish or a school of fish of a sufficiently large size is detected to enter the containment space 010, the sensing module 060 will directly trigger the first drive module 040. After the first drive module 040 is activated, it drives the movable frame 021 to slide and drives the folding net 022 to unfold, trapping the fish in the closed trapping space.

[0038] Furthermore, the bait device 050, fixed under the second net cover 012, includes a spice net bag and bait. As mentioned above, the spice net bag contains bait (such as roasted rice bran powder), which can emit fragrance to attract fish into the fishing space. The bait hook has a straight rod design with a rounded head structure at the top to fix bait such as earthworms or small shrimp, further improving the efficiency of attracting fish. When the sensing module 060 directly controls the fishing process, it can ensure the accuracy of operation at the same time. The overall design makes the intelligent fishing cage 001 more efficient in function and adaptable to different environmental needs.

[0039] like Figure 5 As shown, Figure 5 This is a schematic diagram of the overall function of the present invention. In this embodiment, the intelligent trapping cage 001 is further combined with the control module 070 to realize precise control and intelligent trapping functions. The intelligent trapping cage 001 described above includes a columnar body 010, which is composed of a first net cover 011, a second net cover 012 and multiple support columns 013, forming an internal accommodating space. A bait device 050 is installed inside the accommodating space. The bait device 050 has an audio-visual induction component inside, which is used to emit specific sounds or lights to induce the behavior of the target organism. The control module 070 is attached to the second net cover 012 and electrically connected to the sensing module 060 and the bait device 050. When the sensing module 060 detects that the target organism has entered the containment space, it will transmit a signal to the control module 070. The control module 070 analyzes the target organism's size, direction of movement, speed and other parameters, and automatically adjusts the induction mode of the bait device 050. At the same time, the control module 070 can trigger the first drive module 040 as needed to drive the movable frame 021 to slide, thereby driving the folding net 022 to complete the capture operation, realizing intelligent control function.

[0040] Furthermore, the control module 070 can embed a processor to execute intelligent algorithms, such as: 1. Automatically distinguish target organism types: Based on the data from the sensing module 060, automatically determine whether the target to be captured meets the default conditions.

[0041] 2. Dynamically adjust capture strategy: Adjust the speed and range of capture actions according to different target organisms.

[0042] 3. Data recording and remote monitoring: The control module 070 can connect to electronic products (such as mobile phones) through the transmission module (not shown in the figure) to upload the captured data to the electronic products for users to monitor in real time or store the data in the cloud and other information connections.

[0043] Specifically, this embodiment is applicable to scenarios requiring intelligent capture, such as fish management in aquaculture. Through the automatic judgment of the control module 070, users can achieve the following functions: 1. Target specific fish groups to avoid disturbing non-target fish groups.

[0044] 2. The bait device 050 automatically adjusts its induction mode to attract different types of fish into the capture range.

[0045] 3. Monitor capture efficiency and remotely modify the trapping strategy through electronic products to improve operational efficiency.

[0046] Furthermore, the sensing module 060 can continuously record the behavioral habits of the target organism and environmental data within the containment space, such as water temperature changes or oxygen concentration, and upload them to electronic products via a transmission module (not shown in the figure). Users can view real-time data via mobile phone or computer and adjust the induction mode or capture strategy of the bait device 050 according to environmental conditions.

[0047] Another embodiment mainly illustrates the application of the second drive module 041 in the intelligent capture cage 001, and combines the sensing module 060 and the control module 070 to achieve a high-efficiency reset function, such as... Figure 5 As shown, Figure 5 This is a schematic diagram of the overall function of the present invention. This embodiment focuses on how the intelligent capture cage 001 automatically releases non-target organisms during the reset process, so as to improve the intelligence and eco-friendliness of the equipment.

[0048] As described above, in the process of capturing a non-target organism, if a non-target organism enters the enclosed capturing space, the sensing module 060, located within the accommodating space of the columnar body 010, can be used to detect the type of organism being captured. The sensing module 060 will determine whether it is a target organism through image recognition or biometric detection technology. If it is determined to be a non-target organism, such as a small fish that has been accidentally captured or other unexpected organisms, the sensing module 060 will send a release signal to the control module 070.

[0049] Specifically, the automatic reset and release operation is as follows: 1. After the control module 070 determines that the target organism is not the target organism, it sends a release command signal and starts the second drive module 041. The second drive module 041 releases the second limit member 032, and the movable frame 021 slides along the support column 013 to the first limit member 031 under the action of the second drive module 041.

[0050] 2. During the gliding process, the folding net 022 gradually folds up to form an open structure, allowing captured non-target organisms to leave the containment space on their own.

[0051] The manual determination of reset and release operations is as follows: 1. If the sensing module 060 determines that the captured organism is the target organism, the reset procedure will not be started temporarily, the capture state will be maintained, and manual processing will be required.

[0052] 2. After the control signal is manually transmitted to the control module 070, the release operation is performed. The control module 070 sends a command signal to start the second drive module 041. The second drive module 041 releases the second limit member 032. Under the action of the second drive module 041, the movable frame 021 slides along the support column 013 to the first limit member 031. The movable frame 021 returns to its initial position, ready for the next capture.

[0053] As shown in the above embodiments, the drive module of the present invention includes any one or more combinations of an electric drive module, a pneumatic drive module, and a return spring drive module to adapt to different application scenarios and operational requirements.

[0054] This embodiment illustrates a non-target organism release mechanism that effectively avoids damage to the ecological environment. This intelligent reset operation combines the intelligent functions of the sensing module 060 and the control module 070. The device can automatically determine the capture status and release or hold the organism, reducing human intervention, improving operational efficiency, and ensuring that accidentally captured rare species or small fish are not harmed, further enhancing eco-friendliness.

[0055] Furthermore, the intelligent trap 001 described in this invention includes a fixing frame and a fishing line. The two ends of the fishing line are connected to the fixing frame and the intelligent trap 001, respectively. The fixing frame can be a structure fixed to the shore or a boat, or it can be a fishing rod as a fixing device. The length and material of the fishing line can be adjusted as needed to prevent the trap from deviating from the predetermined position, ensuring that the intelligent trap 001 can still operate stably under different water depths and current speeds to prevent accidental drifting. After the intelligent trap 001 completes the trapping process, it can be pulled back to the shore or a boat by the fishing line for processing.

[0056] In practical applications, the intelligent fishing cage 001 may further include a float (not shown in the illustration), which is positioned at an appropriate location on the fishing line of the intelligent fishing cage 001 to adjust the height of the intelligent fishing cage 001 in the water. Unlike traditional fishing floats, which mainly serve as indicators of whether aquatic creatures have taken the bait or hooked, the float described in this invention is only used to adjust the height of the intelligent fishing cage 001 in the water to adapt to different aquatic environments and fishing needs. For example, at different water depths, the user can adjust the position of the float to maintain the intelligent fishing cage 001 at an appropriate water layer to improve fishing efficiency.

[0057] The embodiments disclosed above are merely illustrative of the principles, features, and effects of the present invention and are not intended to limit the scope of implementation of the present invention. Those skilled in the art should understand that the decoy device 050, the first driving module 040, the second driving module 041, the sensing module 060, and the control module 070 of the present invention can be implemented by specific circuits or coding programs. The circuits include transistors or other circuit components, and the coding programs are completed by specific compilers and operate in coordination through software, hardware, and firmware. The software part includes modules such as image processing algorithms, machine learning models, and database management systems that work together to realize the various functions of the present invention. Anyone skilled in the art can modify and change the above embodiments without departing from the spirit and scope of the present invention. Any equivalent changes and modifications made using the content disclosed in the present invention should still be covered by the following patent application scope.

[0058] Another embodiment of the present invention is as follows. The difference between this embodiment and the technical solution provided by the above embodiment is that the above embodiment describes the situation where the folded net 022 and the movable frame 021 move upward when the net is closed, forming a sealed space with the second net cover 012. In this embodiment, the folded net 022 and the movable frame 021 are controlled to move downward to form a sealed space with the lower end. The movable frame 021 of the present invention can be installed at the lower end of the folded net 022. Its initial state is restricted by the second drive module 041. When the bait enters the capture cage from the single-sided cover of 011, the second drive module 041 can drive the folded net 022 to move downward to form a sealed space with the first net cover to achieve the trapping.

[0059] [Symbol Explanation] 001 Smart Capture Cage 010 Column body 011 First Net Cover 012 Second mesh cover 013 Support Column 020 Activity Frame Module 021 Activity Frame 022 Folding Net 030 Limiting component 031 First limiting component 032 Second limit component 040 First Drive Module 041 Second Drive Module 050 Decoy Device 060 Sensing Module 070 Control Module

Claims

1. A smart trapping cage, characterized in that: Include: A columnar body, comprising: A first mesh cover, located at the bottom of the columnar body, is composed of a mesh structure; A second mesh cover, located at the top of the columnar body, is composed of a mesh structure; and, A plurality of support columns are connected to the periphery of the first net and the second net respectively, forming an accommodating space to accommodate the captured organisms; A movable frame module, which is mounted on the support columns, includes: A movable frame, which is slidably disposed on the support columns and surrounds the periphery of the columnar body; and, A folded mesh is provided on the movable frame, and the bottom edge of the folded mesh is connected to the outer periphery of the first mesh cover; A plurality of limiting elements, located on the support columns, include: A first limiting member, disposed at the bottom of the support columns, is used to fix the starting position of the movable frame; and, A second limiting member, disposed at the top of the support columns, is used to fix the stop position of the movable frame; and, A first drive module is disposed on the first limiting member. It releases the first limiting member and drives the movable frame to slide along the support columns to the second limiting member, thereby pulling the folding net to form a closed capture space.

2. The intelligent trapping cage as described in claim 1, characterized in that: It also includes a second drive module disposed on the second limiting member, which releases the second limiting member and drives the movable frame to slide along the support columns to the first limiting member, thereby forming the receiving space by folding the folded net.

3. The intelligent trapping cage as described in claim 2, characterized in that: in, The first drive module and the second drive module are one of an electric drive module, a pneumatic drive module, and a return spring drive module.

4. The intelligent trapping cage as described in claim 3, characterized in that: It also includes a bait device located in the containment space and connected to the smart trap cage, which has a bait container and a sound and light guiding component.

5. The intelligent trapping cage as described in claim 4, characterized in that: It also includes a sensing module, which is installed in the containment space and connected to the smart capture cage, and has the function of capturing images, sound waves or vibration signals in the water.

6. The intelligent trapping cage as described in claim 5, characterized in that: in, The sensing module is a group consisting of an optical imaging module, an ultrasonic module, and a radar wave module.

7. The intelligent trapping cage as described in claim 6, characterized in that: It also includes a control module, which is located under the smart trap cage and electrically connected to the first drive module, the second drive module, the sensing module and the bait device. It has the function of controlling the first drive module, the second drive module, the sensing module and the bait device. The sensing signals captured by the sensing module can be transmitted to the control module for processing.

8. The intelligent trapping cage as described in claim 7, characterized in that: in, The control module further includes a processing module, which has the functions of program processing, execution, and transmission of control signals.

9. The intelligent capture cage as described in claim 8, characterized in that: It also includes a transmission module for transmitting sensing signals and control signals, wherein the transmission module is electrically connected to the control module.

10. The intelligent capture cage as described in claim 8, characterized in that: The movable frame is fixedly connected to the lower end of the folded net, and the folded net is initially restricted by the second drive module and located near the second mesh cover. After the restriction is lifted, the folded net can be driven by the second drive module to move downward and eventually form a sealed space with the first mesh cover.

11. The smart trap cage as described in any one of claims 1 to 9 further includes a mounting frame and a fishing line, wherein, The two ends of the fishing line are connected to the fixed frame and the smart capture cage, respectively.