Motorized fish searching platform system and motorized fishing method
Through the design of the mobile fish hunting platform system, the use of buoyancy body, marching power, fish hunting and fish lure devices, the problems of limited fishing position and dependence on luck in traditional fishing methods are solved, efficient and flexible water detection and fish school induction are achieved, and the fishing experience and fun are enhanced.
Patent Information
- Application Number
- CN202510492817.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2025-04-17
- Filing Date
- 2025-04-18
- Publication Date
- 2025-07-08
AI Technical Summary
The existing fishing methods have problems such as limited fishing space, relying on luck and technology, and being unable to effectively meet the participation of multiple people. Traditional fishing equipment and methods cannot achieve efficient and flexible water detection and fish cell induction.
A mobile fish hunting platform system is designed, including a buoyancy body assembly, a traveling power assembly, a fish hunting device and a fish hunting device. The fish hunting device assists in detecting the location of the fish camps and attracting the fish camps using the fish hunting device to realize the mobile and visual fish hunting and fish hunting functions.
It improves fishing efficiency and flexibility, realizes fish hunting and fish lure activities involving multiple people, enhances the fun and effectiveness of the fishing experience, adapts to complex water environments, and provides efficient net fishing and rod fishing conditions.
Smart Images

Figure CN120266818A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fishing equipment, and in particular, to a motorized fish-finding platform system and a motorized fishing method.
Background Art
[0002] In current fishing activities, the majority of fishing enthusiasts are mainly active on the shore of enclosed reservoirs, fish ponds and other waters, or by driving a boat to reach the predetermined water area, and then using a hand rod, fishing line and bait for blind fishing. This traditional fishing method has some obvious limitations.
[0003] First of all, when fishing on the shore using a hand rod and fishing line to feed bait, the fishing effect depends to a large extent on the selected shore fishing position. The traditional concept holds that the sharp tip of the shore is the best fishing position. However, the number of sharp tip fishing positions in a fishing area is limited, which makes it difficult for late-arriving fishing enthusiasts to obtain an ideal fishing position, thus affecting their fishing experience.
[0004] Secondly, even if there are boats available in the fishing ground, the number of boats is necessarily limited and cannot meet the needs of all enthusiasts. Therefore, for many fishing enthusiasts, this problem has not been fundamentally solved.
[0005] In addition, even if there is a boat that can reach a water area conducive to fishing, the angler still needs to rely on feeding bait to make a fish nest, and then use a hand rod and fishing line for blind fishing. In this case, the fishing effect is not only related to the angler's luck, but also closely related to their fishing skills. If there are no fish in the water area where the angler is located, then even if their fishing skills are superb, it is difficult to achieve any results.
[0006] In summary, the existing fishing methods have certain limitations and cannot effectively meet the needs of the majority of fishing enthusiasts. There is an urgent need for a more efficient, flexible and motorized platform and motorized fishing method that is not restricted by traditional fishing positions to improve the fishing experience and effect.
Summary of the Invention
[0007] The object of the present invention is to overcome the deficiencies of the prior art and provide a mobile fish-finding platform system. By detachably integrating one or more groups of the traveling power assembly, fish attracting device, and fish-finding device onto the buoyancy body assembly, the buoyancy body assembly can travel on the water accordingly. At the same time, when the fish-finding device detects that a fish school appears within a preset distance, the fish attracting device starts the fish attracting operation, causing the fish school to approach the fish attracting device and gather accordingly, realizing functions such as mobile and visual fish-finding and fish attracting. Therefore, the present invention has the characteristics of mobile fish-finding and fish attracting. Moreover, by adding the mobile function, the fish-finding and fish attracting operations are given the characteristics of flexibility and high efficiency, providing conditions for subsequent net fishing or rod fishing. And through the present invention, multiple people can participate in the fish-finding and fish attracting activities, thereby achieving the characteristic of sharing fishing pleasure, increasing the fun of the activity process, and making it more applicable and popularizable.
[0008] The present invention also provides a mobile fishing method for a mobile fish-finding platform system. By virtue of the flexible, quick-installation, and quick-disassembly characteristics of the mobile fish-finding platform, it can move to different fishing places, especially wild fishing places, to achieve efficient, accurate, flexible, and environmentally friendly fishing operations, significantly enhancing the fishing experience and the sharing of fishing results, and having broad application prospects and popularization value.
[0009] To solve the above technical problems, a mobile fish-finding platform system of the present invention includes:
[0010] A buoyancy body assembly 1, which can reliably float on the water;
[0011] A traveling power assembly 2, which is detachably hung on the bottom or side of the buoyancy body assembly 1 and is used to drive the buoyancy body assembly 1 to travel on the water accordingly;
[0012] A fish-finding device 3, which is used to detect the presence and absence of underwater fish schools. The fish-finding device 3 is provided on the buoyancy body assembly 1, or the fish-finding device 3 is arranged separately from the buoyancy body assembly 1 and can move relative to the buoyancy body assembly 1 to perform fish-finding work;
[0013] A fish attracting device 4, which is used to induce fish schools to approach the fish attracting device 4 and gather accordingly. The fish attracting device 4 is configured to start the fish attracting operation when the fish school detected by the fish-finding device 3 appears within a preset range, causing the fish school to gather towards the fish attracting device 4.
[0014] For the mobile fish-finding platform system as described above, the buoyancy body assembly 1 includes a first buoyancy body assembly 11 and a second buoyancy body assembly 12. The first buoyancy body assembly 11 and the second buoyancy body assembly 12 are both correspondingly provided with a traveling power assembly 2. The second buoyancy body assembly 12 is detachably connected to the front end or the rear end of the first buoyancy body assembly 11, and the second buoyancy body assembly 12 can travel on the water separately from the first buoyancy body assembly 11.
[0015] As described above, a motorized fish-finding platform system, wherein the fish-finding device 3 and the fish-attracting device 4 are arranged on the second buoyancy body assembly 12. When the second buoyancy body assembly 12 is separated from the first buoyancy body assembly 11, the fish-finding device 3 and the fish-attracting device 4 travel on the water relative to the first buoyancy body assembly 11 with the second buoyancy body assembly 12 to perform fish-finding and fish-attracting operations.
[0016] As described above, a motorized fish-finding platform system, wherein the fish-finding device 3 is connected by a wire harness to a drone 30 so that the drone 30 pulls the fish-finding device 3 to travel on the water. The drone 30 is configured to be dockable on the water surface or on the first buoyancy body assembly 11 or the second buoyancy body assembly 12; the fish-attracting device 4 is arranged on the second buoyancy body assembly 12, and the second buoyancy body assembly 12 is configured to travel according to the positioning coordinates sent by the fish-finding device 3 or the drone 30 to perform fish-attracting operations.
[0017] As described above, a motorized fish-finding platform system, wherein a sunshade top assembly 5 for the drone 30 to dock is arranged on the first buoyancy body assembly 11, and the sunshade top assembly 5 is configured to lock and limit the drone 30 docked thereon.
[0018] As described above, a motorized fish-finding platform system, wherein the buoyancy body assembly 1 is composed of an inflatable and deflatable airbag 111 and a buoyancy board 112 stacked up and down and connected in a composite manner through a force-bearing structure assembly 113. The force-bearing structure assembly 113 includes corner guards 1131, a front anti-collision bar group 1132, a rear anti-collision bar group 1133, a side anti-collision bar group 1134 and a restraint belt 1135. The corner guards 1131, the front anti-collision bar group 1132, the rear anti-collision bar group 1133 and the side anti-collision bar group 1134 are detachably connected correspondingly to form a restraint space 1130 to keep the airbag 111 and the buoyancy board 112 stacked up and down constrained within the restraint space 1130. The restraint belt 1135 is connected between two adjacent corner guards 1131; the fish-finding device 3 is arranged on the bottom side of the front anti-collision bar group 1132, and a flip locking mechanism 41 is arranged between the fish-attracting device 4 and the side anti-collision bar group 1134. The flip locking mechanism 41 is configured to flip the fish-attracting device 4 upwards to a preset angle and be positioned and locked so that the feeding port of the fish-attracting device 4 faces upwards, and the fish-attracting device 4 is flipped downwards to a preset angle and be positioned and locked.
[0019] As described above, a motorized fish-finding platform system, wherein the buoyancy body assembly 1 is composed of a plurality of hollow rigid buoyancy boxes 10 spliced together. The traveling power assembly 2 and the fish-attracting device 4 are detachably arranged at the bottom of the buoyancy boxes 10 respectively. The inner cavity of the buoyancy boxes 10 is filled with buoyancy foam 100 along the circumferential direction and a storage space is formed in the middle.
[0020] As described above, a motorized fish-finding platform system, wherein the fish-finding device 3 is connected to a drone 30 by a wire harness, so that the drone 30 pulls the fish-finding device 3 to travel on the water. The drone 30 is configured to be dockable on the water surface or on the buoyancy body assembly 1, and the buoyancy body assembly 1 is configured to travel according to the positioning coordinates sent by the fish-finding device 3 or the drone 30 for fish luring work.
[0021] As described above, a motorized fish-finding platform system, wherein the first buoyancy body assembly 11 is composed of an inflatable and deflatable airbag 111 and a buoyancy board 112 stacked up and down and compound-connected by a force-bearing structure assembly 113. The force-bearing structure assembly 113 includes corner guards 1131, a front anti-collision bar group 1132, a rear anti-collision bar group 1133, a side anti-collision bar group 1134, and a restraint belt 1135. The corner guards 1131, the front anti-collision bar group 1132, the rear anti-collision bar group 1133, and the side anti-collision bar group 1134 are detachably connected to form a restraint space 1130 to keep the stacked airbag 111 and buoyancy board 112 constrained within the restraint space 1130. The restraint belt 1135 is connected between two adjacent corner guards 1131; the second buoyancy body assembly 12 is composed of a single hollow rigid buoyancy box 10. The inner cavity of the buoyancy box 10 is filled with buoyant foam 100 along the circumference and a storage space is formed in the middle. The fish luring device 4 and the traveling power assembly 2 are detachably connected to the bottom of the buoyancy box 10 of the second buoyancy body assembly 12, and the fish-finding device 3 is detachably arranged on the side of the buoyancy box 10 of the second buoyancy body assembly 12.
[0022] As described above, a motorized fish-finding platform system, wherein a flipping and locking mechanism 41 is provided between the traveling power assembly 2 and the side anti-collision bar group 1134, and the flipping and locking mechanism 41 is configured to positionally lock the traveling power assembly 2 when it flips upward to a preset angle, and also to positionally lock the traveling power assembly 2 when it flips downward and submerges into the water to a preset angle.
[0023] As described above, a motorized fish-finding platform system, wherein the flipping and locking mechanism 41 includes a flipping connection seat 411 and a flipping arm 412. The flipping connection seat 411 is connected to the side anti-collision bar group 1134. One end of the flipping arm 412 is hinged to the middle of the flipping connection seat 411. The other end of the flipping arm 412 is provided with a flipping clamping mechanism 42 for detachably connecting to the traveling power assembly 2 or the fish luring device 4. A flipping locking mechanism 43 is provided between the flipping arm 412 and the flipping connection seat 411 for locking the flipping arm 412 to the flipping connection seat 411 when the flipping arm 412 flips downward and upward relative to the flipping connection seat 411 to a preset angle.
[0024] As described above, a motorized fish-finding platform system, wherein the first buoyancy body assembly 11 is composed of a plurality of hollow rigid buoyancy boxes 10 spliced together, and the traveling power assembly 2 is detachably connected to the bottom of the corresponding buoyancy box 10 of the first buoyancy body assembly 11; the second buoyancy body assembly 12 is composed of a single hollow rigid buoyancy box 10, the inner cavity of the buoyancy box 10 is filled with buoyant foam 100 along the circumference and a storage space is formed in the middle, the fish attracting device 4 and the traveling power assembly 2 are detachably connected to the bottom of the buoyancy box 10 of the second buoyancy body assembly 12, and the fish-finding device 3 is detachably arranged on the side of the buoyancy box 10 of the second buoyancy body assembly 12.
[0025] As described above, a motorized fish-finding platform system, wherein a detachable connection mechanism 7 is provided between the buoyancy box 10 of the second buoyancy body assembly 12 and the front end and / or the rear end of the first buoyancy body assembly 11, so that the second buoyancy body assembly 12 can be docked and connected to the first buoyancy body assembly 11.
[0026] As described above, a motorized fish-finding platform system, wherein a diversion groove 101 is provided at the bottom of the buoyancy box 10 along its traveling direction, and the diversion grooves 101 of the buoyancy boxes 10 spliced front and back along the traveling direction are mutually communicated.
[0027] As described above, a motorized fish-finding platform system, wherein a water diversion head 102 is detachably connected to the front part of the buoyancy box 10 of the second buoyancy body assembly 12.
[0028] As described above, a motorized fish-finding platform system, wherein a clamping through hole 13 is provided through the middle of the airbag 111 and the buoyancy plate 112, a flexible net trap 131 that can extend into the water is clamped in the clamping through hole 13, the flexible net trap 131 has upper and lower openings and is of an upper-wide and lower-narrow structure, and hard rings 132 are connected to the upper and lower openings of the flexible net trap 131. A plurality of pull belts 133 are connected circumferentially between the upper and lower hard rings 132 arranged up and down. Each pull belt 133 is provided with a plurality of pull belt fasteners 1331 at intervals from top to bottom that can be hooked to the hard ring 132 at the upper opening of the flexible net trap 131. The pull belt 133 is configured to enable the flexible net trap 131 to completely droop downward and open the lower opening, and when the pull belt 133 is lifted upward, the lower end of the flexible net trap 131 is turned inward and placed in the inner cavity of the flexible net trap 131, and a circular ring space 134 for storing counterweights is formed.
[0029] As described above, a motorized fish-finding platform system, wherein a hard baffle 135 is further arranged in the flexible net trap 131, the hard baffle 135 is connected with a baffle lifting rope 136 that can control its up and down movement in the flexible net trap 131, the baffle lifting rope 136 is hooked to the hard ring 132 at the upper opening of the flexible net trap 131, and a storage space is formed between the flexible net trap 131 and the hard baffle 135 placed therein.
[0030] As described above, in a motorized fish-finding platform system, a support assembly 14 is provided on the buoyancy body assembly 1. An end suspension support 15 extends from the front end and / or the rear end of the support assembly 14. An end winch assembly 16 is provided on the end suspension support 15. The end winch assembly 16 includes a lifting suspension rope 161. A multi-head suspension rope segment 162 is fork-connected to the lower end of each lifting suspension rope 161. The suspension rope segments 162 at the lower end of the same lifting suspension rope 161 are detachably connected to the suspended object, enabling the object to be lifted and lowered smoothly.
[0031] As described above, in a motorized fish-finding platform system, end winch assemblies 16 are provided on both the left and right sides of the end suspension support 15. A two-head suspension rope segment 162 is fork-connected to the lower end of each lifting suspension rope 161. The suspension rope segments 162 of different lifting suspension ropes 161 at the same end of the support assembly 14 are configured to be detachably connected to a suspended object simultaneously.
[0032] As described above, in a motorized fish-finding platform system, a support assembly 14 is provided on the buoyancy body assembly 1. A side suspension support 17 extends from the left side and / or the right side of the support assembly 14. A net trap assembly 6 that can move up and down relative to the buoyancy body assembly 1 is suspended on the side suspension support 17. A net trap winch assembly 18 for controlling the up and down movement of the net trap assembly 6 relative to the buoyancy body assembly 1 is provided on the side suspension support 17; and / or, a rod fishing assembly is provided on the buoyancy body assembly 1.
[0033] As described above, in a motorized fish-finding platform system, the net trap assembly 6 includes a rigid net trap section 61 and a flexible net trap section 62 connected to the lower end of the rigid net trap section 61. The upper end of the rigid net trap section 61 is directly or indirectly connected to the net trap winch assembly 18. A net trap rigid support ring 63 is connected to the lower port of the flexible net trap section 62; the net trap assembly 6 is configured such that at least the lower end of the flexible net trap section 62 is lifted out of the water during the movement of the buoyancy body assembly 1.
[0034] As described above, in a motorized fish-finding platform system, a support assembly 14 is provided on the buoyancy body assembly 1. The support assembly 14 includes a vertical column 141 detachably connected to the buoyancy body assembly 1 at the lower end. A column expansion connection part 1411 for extended connection is provided vertically on the side surface of the vertical column 141. A sunshade top assembly 5 is provided at the top of the vertical column 141.
[0035] As described above, in a motorized fish-finding platform system, the sunshade top assembly 5 includes a sunshade panel 51 provided at the top of the vertical column 141 and arranged in a hollow manner. A sunshade cloth assembly 52 that can cover the upper surface of the sunshade panel 51 is provided at the front end or the rear end of the sunshade top assembly 5 and between the tops of the two vertical columns 141.
[0036] As described above, a motorized fish-finding platform system, a bracket assembly 14 is provided on the buoyancy body assembly 1. The bracket assembly 14 includes a vertical column 141 whose lower end is detachably connected to the buoyancy body assembly 1. A column extension connection part 1411 for extended connection is provided vertically on the side of the vertical column 141. A lift-adjustable perimeter assembly 19 is detachably provided between two adjacent vertical columns 141. The perimeter assembly 19 includes a flexible and foldable perimeter body 191. A perimeter connection block 192 is connected to the end of the perimeter body 191, and the perimeter connection block 192 is connected and matched with the column extension connection part 1411.
[0037] The present invention also provides a motorized fishing method for a motorized fish-finding platform system. Using the motorized fish-finding platform system as described above, it includes the following steps:
[0038] S1. Control the traveling power assembly 2 to drive the second buoyancy body assembly 12 to drive the fish-finding device 3 and the fish attracting device 4 to travel to detect the appearance and disappearance of underwater fish schools and attract fish. When a fish school is detected, the second buoyancy body assembly 12 marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly 11. At the same time, start the fish attracting device 4 to send out a fish attracting signal to attract the attention of the fish school and induce the fish school to approach the fish attracting device 4 and gather accordingly;
[0039] S2. Control the traveling power assembly 2 of the first buoyancy body assembly 11 to drive the first buoyancy body assembly 11 to travel to the fish school coordinate position in S1. Then, the angler on the first buoyancy body assembly 11 conducts fishing operations on the fish school approaching the fish attracting device 4 through the net trap assembly 6 or the rod fishing assembly;
[0040] Alternatively, control the traveling power assembly 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish attracting device 4 to travel towards the fishing area of the first buoyancy body assembly 11. During the traveling process, the fish attracting device 4 continuously sends out a fish attracting signal to induce the fish school to follow to the fishing area. When the fish school reaches the fishing area, the angler on the first buoyancy body assembly 11 conducts fishing operations on the fish school in the fishing area through the net trap assembly 6 or the rod fishing assembly.
[0041] The present invention also provides a motorized fishing method for a motorized fish-finding platform system. Using the motorized fish-finding platform system as described above, it includes the following steps:
[0042] S1. Control the drone 30 to drag the fish-finding device 3 to travel on the water to detect the appearance and disappearance of underwater fish schools. When a fish school is detected, the drone 30 or the fish-finding device 3 marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly 11 or the second buoyancy body assembly 12;
[0043] S2. Control the traveling power assembly 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish attracting device 4 to travel to the fish school coordinate position in S1. Then, start the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly.
[0044] S3. Control the traveling power assembly 2 of the first buoyancy body assembly 11 to drive the first buoyancy body assembly 11 to travel to the fish school coordinate position in S2. Then, the angler on the first buoyancy body assembly 11 performs fishing operations on the fish school at the coordinate position through the net trap assembly 6 or the rod fishing assembly.
[0045] Alternatively, control the traveling power assembly 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish attracting device 4 to travel towards the fishing area of the first buoyancy body assembly 11. During the traveling process, the fish attracting device 4 continuously or intermittently emits a fish attracting signal to induce the fish school to follow to the fishing area. When the fish school arrives at the fishing area, the angler on the first buoyancy body assembly 11 performs fishing operations on the fish school in the fishing area through the net trap assembly 6 or the rod fishing assembly.
[0046] As described above, in the mobile fishing method of a mobile fish finding platform system, in S1, control the drone 30 to drag the fish finding device 3 to travel on the water to detect the presence of underwater fish schools. When a fish school is detected, the drone 30 or the fish finding device 3 marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly 11 or the second buoyancy body assembly 12. Then, the drone 30 continues to drag the fish finding device 3 to travel on the water to detect the presence of fish schools at other positions. When the next fish school is detected, the drone 30 or the fish finding device 3 marks the coordinate position of the fish school and sends the corresponding coordinate position information to the first buoyancy body assembly 11 or the other second buoyancy body assembly 12.
[0047] As described above, in the mobile fishing method of a mobile fish finding platform system, in S2, control the traveling power assembly 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish attracting device 4 to travel close to the fish school coordinate position. Then, start the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly. Then, after the first buoyancy body assembly 11 travels close to the second buoyancy body assembly 12, the second buoyancy body assembly 12 continues to travel to the next fish school coordinate position.
[0048] Alternatively, in step S2, the traveling power assembly 2 of the second buoyancy body assembly 12 is controlled to drive the second buoyancy body assembly 12 to drive the fish attracting device 4 to travel to the fish school coordinate position in S1. Then, the fish attracting device 4 is activated to emit a fish attracting signal to attract the attention of the fish school, and the fish school is induced to approach the fish attracting device 4 and gather accordingly. Then, the first buoyancy body assembly 11 travels close to the second buoyancy body assembly 12, and at the same time, another second buoyancy body assembly 12 travels to another fish school coordinate position to induce fish.
[0049] The present invention also provides a motorized fishing method for a motorized fish searching platform system. Using the above-mentioned motorized fish searching platform system, it includes the following steps:
[0050] S1. Control the traveling power assembly 2 of the buoyancy body assembly 1 to drive the buoyancy body assembly 1 to drive the fish searching device 3 and the fish attracting device 4 to travel to detect the presence of underwater fish schools.
[0051] S2. When the fish searching device 3 detects the appearance of a fish school, activate the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting
[0052] S3. Then, the angler on the buoyancy body assembly 1 conducts fishing operations on the fish school in the fishing area through the net trap assembly 6 or the rod fishing assembly.
[0053] The present invention further provides a motorized fishing method for a motorized fish searching platform system. Using the above-mentioned motorized fish searching platform system, it includes the following steps:
[0054] S1. Control the drone 30 to drag the fish searching device 3 to travel on the water to detect the presence of underwater fish schools. When a fish school is detected, the drone 30 or the fish searching device 3 marks the fish school coordinate position and sends the coordinate position information to the first buoyancy body assembly 11.
[0055] S2. Control the traveling power assembly 2 of the buoyancy body assembly 1 to drive the buoyancy body assembly 1 to travel close to the fish school coordinate position in S1, activate the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly.
[0056] S3. Then, the angler on the buoyancy body assembly 1 conducts fishing operations on the fish school in the fishing area through the net trap assembly 6 or the rod fishing assembly.
[0057] Compared with the prior art, the present invention has the following advantages:
[0058] 1. Through the traveling power component, the buoyancy body component of the present invention can quickly and maneuverably move to different waters, adapt to various complex fishing environments, improve the flexibility of fishing. Secondly, through the fish finding device, it can detect the presence of fish schools in the surrounding waters, quickly and accurately locate the position of the fish school, avoid wasting time in fishless areas, and achieve the functions of maneuverable and visual fish finding, significantly improving the fishing efficiency. At the same time, through the fish attracting device, it can effectively attract and stabilize the fish school, and enable the fish school to gather in the target area where it can follow the fish attracting device, realizing the functions of maneuverable and visual fish finding and fish attracting. Therefore, the present invention has the characteristics of maneuverable fish finding and fish attracting, and by adding the maneuverable function, the fish finding and fish attracting operations are endowed with the characteristics of flexibility and high efficiency, providing conditions for subsequent net fishing or rod fishing. Moreover, through the present invention, multiple people can participate in the fish finding and fish attracting activities, thereby achieving the characteristic of sharing fishing pleasure, increasing the interest in the activity process, and making it more applicable and popularizable.
[0059] 2. The buoyancy body component of the platform main body of the present invention can be separately arranged corresponding to the fish attracting device and the fish finding device, and the fish attracting device and the fish finding device can travel independently relative to the buoyancy body component of the platform main body. Users can, according to different scenario requirements, make the buoyancy body component of the platform main body, the fish attracting device, and the fish finding device travel and operate separately in different water area environments to achieve the functions of maneuverable fish finding, fish attracting, and fishing, further increasing the maneuverable and flexible characteristics of the present invention.
[0060] 3. The present invention uses a drone to tow the fish finding device to travel on the water to detect the presence of underwater fish schools, which can quickly reach the designated detection area, greatly shortening the response time, not only improving the detection efficiency and accuracy, but also enhancing the flexibility and safety of the operation.
[0061] 4. The maneuverable fish finding platform system of the present invention, through the maneuverably arranged fish finding device, plays a pioneering role in net fishing and rod fishing, effectively improving the efficiency and effect of net fishing and rod fishing, increasing the fun therein, and being more popular among people.
[0062] 5. The present invention detachably composes the buoyancy body component of the platform main body by compounding and connecting an inflatable and deflatable airbag and a buoyancy board through a force-bearing structure component, which can effectively optimize the load distribution of the buoyancy body component, increase the stability and reliability of the connection of the buoyancy body component, and through the detachable connection, it is convenient for people to carry out and store when going out. Moreover, through the compound superposition and cooperation of the buoyancy board and the airbag, it has the functions of anti-collision, anti-bottom scraping, and anti-sinking, ensuring safety and reliability during the use on the water.
[0063] 6. The fish attracting device is connected to the side anti-collision bar group through a flipping and locking mechanism, so that the fish attracting device can be locked when it is flipped upward or downward to a preset angle. Therefore, the fish attracting device can be positioned by flipping it upward relative to the side anti-collision bar group without disassembly to replace the bait, thus having the characteristic of convenient operation.
[0064] 7. The inner cavity of the buoyancy box is filled with buoyancy foam along the circumferential direction. Whether the buoyancy box is damaged or punctured, it can still provide reliable buoyancy for support, thus enhancing its safety and durability, and having the characteristics of anti-collision and anti-sinking.
[0065] 8. Since the buoyancy box is made of hard material, when the user goes ashore, it can be directly dragged ashore, so it has the characteristic of convenient use; and the buoyancy box can be manufactured in a standardized way, which not only facilitates assembly, but also can reduce the overall manufacturing cost.
[0066] 9. In the present invention, a diversion groove is provided at the bottom of the buoyancy box along its traveling direction, which can effectively guide the water flow along a specific path, reduce the water resistance suffered by the buoyancy box during the traveling process, and further reduce energy consumption, so that it has strong endurance, and makes the buoyancy box travel more smoothly and stably in the water.
[0067] 10. A motorized fishing method for the motorized fish finding platform system of the present invention, by virtue of the characteristics of being motorized, flexible, quick to install and disassemble of the motorized fish finding platform, can go to different fishing waters motorized and selectively separated, especially open waters, to realize efficient, precise and flexible fish finding, fish attracting and fishing operations. Moreover, through the method of the present invention, it can increase people's desire to share the fun and effectiveness of fishing, enrich people's activities, and has broad application prospects and promotion value.
Description of the Drawings
[0068] The following further details the specific embodiments of the present invention with reference to the drawings, wherein:
[0069] Figure 1 is a perspective view of an embodiment of the present invention.
[0070] Figure 2 is a side view of an embodiment of the present invention.
[0071] Figure 3 is a bottom view of an embodiment of the present invention.
[0072] Figure 4 is an exploded view of an embodiment of the present invention.
[0073] Figure 5 is a perspective view of the buoyancy box in the present invention.
[0074] Figure 6 Explosion view of the buoyancy box body in the present invention.
[0075] Figure 7 Side view of the second buoyancy body assembly in an embodiment of the present invention.
[0076] Figure 8 Rear view of the second buoyancy body assembly in an embodiment of the present invention.
[0077] Figure 9 Bottom view of the second buoyancy body assembly in an embodiment of the present invention.
[0078] Figure 10 Cross-sectional view of the second buoyancy body assembly in an embodiment of the present invention.
[0079] Figure 11 Stereogram of the fish attracting device in an embodiment of the present invention.
[0080] Figure 12 Explosion view of the fish attracting device in an embodiment of the present invention.
[0081] Figure 13 Stereogram of the traveling power assembly in an embodiment of the present invention.
[0082] Figure 14 Stereogram of the fish searching device in an embodiment of the present invention.
[0083] Figure 15 One of the stereograms when a drone is docked on the second buoyancy body assembly in an embodiment of the present invention.
[0084] Figure 16 Rear view when a drone is docked on the second buoyancy body assembly in an embodiment of the present invention.
[0085] Figure 17 Explosion view when a drone is docked on the second buoyancy body assembly in an embodiment of the present invention.
[0086] Figure 18 It is Figure 16 Enlarged schematic diagram of A in
[0087] Figure 19 Another stereogram when a drone is docked on the second buoyancy body assembly in an embodiment of the present invention.
[0088] Figure 20 One of the stereograms when the drone drags the fish searching device in an embodiment of the present invention.
[0089] Figure 21 It is Figure 20 Explosion view of the drone in
[0090] Figure 22This is the second perspective view of the unmanned aerial vehicle dragging the fish-finding device in an embodiment of the present invention.
[0091] Figure 23 It is Figure 22 the exploded view of the unmanned aerial vehicle in
[0092] Figure 24 This is the third perspective view of the unmanned aerial vehicle dragging the fish-finding device in an embodiment of the present invention.
[0093] Figure 25 This is the fourth perspective view of the unmanned aerial vehicle dragging the fish-finding device in an embodiment of the present invention.
[0094] Figure 26 This is the perspective view of another embodiment of the present invention.
[0095] Figure 27 This is the rear view of another embodiment of the present invention.
[0096] Figure 28 This is one of the exploded views of another embodiment of the present invention.
[0097] Figure 29 This is the second exploded view of another embodiment of the present invention.
[0098] Figure 30 This is the cross-sectional view of the flip-locking mechanism in another embodiment of the present invention.
[0099] Figure 31 This is one of the exploded views of the flip-locking mechanism in another embodiment of the present invention.
[0100] Figure 32 This is the second exploded view of the flip-locking mechanism in another embodiment of the present invention.
[0101] Figure 33 This is the cross-sectional view of the flexible net trap in another embodiment of the present invention.
Detailed Embodiments
[0102] The following will Figures 1 - 33 describe the embodiments of the present invention in detail with reference to the accompanying
[0103] As Figures 1 - 33As shown in the figure, a motorized fish-finding platform system of the present invention includes a buoyancy body assembly 1, a traveling power assembly 2, a fish-finding device 3, and a fish-attracting device 4. The buoyancy body assembly 1 can reliably float on the water; the traveling power assembly 2 is detachably hung on the bottom or side of the buoyancy body assembly 1 and is used to drive the buoyancy body assembly 1 to travel correspondingly on the water; the fish-finding device 3 is used to detect the presence and absence of underwater fish schools. The fish-finding device 3 is arranged on the buoyancy body assembly 1 or the fish-finding device 3 is arranged separately relative to the buoyancy body assembly 1 and can move relative to the buoyancy body assembly 1 to perform fish-finding work; the fish-attracting device 4 is used to induce fish schools to approach the fish-attracting device 4 and gather correspondingly. The fish-attracting device 4 is arranged on the buoyancy body assembly 1 and is configured to start the fish-attracting working condition when the fish schools detected by the fish-finding device 3 appear within a preset range, so that the fish schools gather towards the fish-attracting device 4. Through the traveling power assembly, the present invention can enable the buoyancy body assembly to quickly and maneuverably move to different waters, adapt to various complex fishing environments, improve the flexibility of fishing. Secondly, through the fish-finding device, the presence and absence of fish schools in the surrounding waters can be detected, and the position of the fish schools can be found quickly and accurately, avoiding wasting time in fishless areas, realizing the functions of motorized and visual fish-finding, significantly improving the fishing efficiency. At the same time, through the fish-attracting device, fish schools can be effectively attracted and induced to follow to the target waters, increasing the aggregation degree of fish schools in the target area, realizing the function of motorized fish attraction. Therefore, the present invention has the characteristics of motorized fish-finding and fish attraction, and by adding the motorized function, the fish-finding and fish-attracting operations are given the characteristics of flexibility and high efficiency, providing conditions for subsequent net fishing or rod fishing. And through the present invention, multiple people can participate in the fish-finding and fish-attracting activities, thereby achieving the characteristic of sharing fishing pleasure, increasing the interest of the activity process, and making it more applicable and popularizable.
[0104] To improve the fish-attracting effect, the fish-attracting device 4 includes one or more combinations of a bait feeding component, a sonic fish attractor, a fish aggregating lamp, and a fish-attracting sachet.
[0105] As Figure 12 shown, the bait feeding component preferably adopts a horizontal structure to reduce the resistance during traveling. It includes a feeding housing 40 with an installation opening at one end and a feeding outlet 406 at the other end. The installation opening end of the feeding housing 40 is detachably connected to an installation seat body 404. A feeding drive motor 401 is arranged on the installation seat body 404. A feeding drive shaft 402 that can be driven to move by the feeding drive motor 401 is arranged in the feeding housing 40. An extrusion feeding member 403 is arranged at one end of the feeding drive shaft 402 in the inner cavity of the feeding housing 40. During the feeding process, the feeding drive motor drives the feeding drive shaft to rotate correspondingly, so that the extrusion feeding member extrudes the bait in the feeding housing towards the feeding outlet and scatters the bait outward.
[0106] As Figure 11As shown, a feeding port 407 is provided at the bottom side of the feeding housing 40, and a feeding cover body for opening or closing the feeding port 407 is provided at the feeding port 407.
[0107] In order to improve the detection accuracy and visual fishing entertainment effect, the fish finding device 3 includes one or more combinations of a sonar detector, a fish school detector, and a camera.
[0108] In the present invention, the traveling power assembly 2 is an electric thruster. The structure of the electric thruster can refer to the technical solutions of the thrusters in Chinese Patent Application No. CN202120572860.8 and CN202120570961.1, which will not be elaborated here.
[0109] The buoyancy body assembly 1 can either be used alone as the platform main body or be divided into a mother-child structure form of one large and one small or one large and multiple small ones. Whether the buoyancy body assembly 1 is used alone as the platform main body or the buoyancy body assembly 1 is in the mother-child structure form and the mother structure is used as the platform main body. As Figure 1 、 26 As shown, a bracket assembly 14 is provided on the platform main body. Side suspension brackets 17 extend from the left side and / or the right side of the bracket assembly 14. A net trap assembly 6 that can move up and down relative to the buoyancy body assembly 1 is hung on the side suspension brackets 17. A net trap winch assembly 18 for controlling the up and down movement of the net trap assembly 6 relative to the buoyancy body assembly 1 is provided on the side suspension brackets 17. The net trap assembly 6 includes a rigid net trap section 61 and a flexible net trap section 62 connected to the lower end of the rigid net trap section 61. The upper end of the rigid net trap section 61 is directly or indirectly connected to the net trap winch assembly 18. A net trap rigid support ring 63 is connected to the lower port of the flexible net trap section 62. The net trap assembly 6 is configured such that at least the lower end of the flexible net trap section 62 is lifted out of the water during the movement of the buoyancy body assembly 1.
[0110] As Figures 26 - 28 As shown, a rod fishing assembly is also provided on the platform main body. The rod fishing assembly includes a rod fishing seating part provided on the buoyancy body assembly 1, and a rod fishing storage space for storing rod fishing items is provided on the rod fishing seating part. People can choose net fishing or rod fishing according to their needs.
[0111] As Figure 1 、 26 As shown, in order to enable the platform main body to have strong function expansion ability and scene adaptability, the bracket assembly 14 includes a vertical column 141 whose lower end is detachably connected to the buoyancy body assembly 1. A column expansion connection part 1411 for expansion connection is provided vertically on the side surface of the vertical column 141. A sunshade top assembly 5 is provided at the top of the vertical column 141. Preferably, the column expansion connection part 1411 is a T-shaped connection groove provided in the height direction of the vertical column.
[0112] AsFigures 26 - 28 As shown, in order to facilitate the user to adjust the height of the surrounding edge component according to different usage scenarios and to expand and connect using the vertical column 141 as needed, a liftable and adjustable surrounding edge component 19 is detachably provided between two adjacent vertical columns 141. The surrounding edge component 19 includes a flexible and foldable surrounding edge main body 191, and a surrounding edge connection block 192 is connected to the end of the surrounding edge main body 191. The surrounding edge connection block 192 is connected and cooperated with the column expansion connection part 1411. Among them, the column expansion connection part 1411 includes, but is not limited to, a T-shaped connection groove, and the surrounding edge connection block 192 is a T-shaped connection block connected and cooperated with the T-shaped connection groove.
[0113] When the buoyancy body component 1 is in the form of a mother-and-child structure, it includes a first buoyancy body component 11 and a second buoyancy body component 12. The first buoyancy body component 11 is the mother structure and serves as the platform main body and can carry people, while the second buoyancy body component 12 serves as the child structure and cannot carry people. Specifically, the second buoyancy body component 12 is detachably connected to the front end or the rear end of the first buoyancy body component 11. The first buoyancy body component 11 and the second buoyancy body component 12 are both correspondingly provided with a traveling power component 2, so that the second buoyancy body component 12 can travel on the water separately relative to the first buoyancy body component 11; when the second buoyancy body component 12 is connected to the front end of the first buoyancy body component 11, the second buoyancy body component 12 acts as a water divider to reduce the resistance during traveling and plays a role in stabilizing the traveling direction; as a fish-finding solution, the fish-finding device 3 and the fish-attracting device 4 are provided on the second buoyancy body component 12. When the second buoyancy body component 12 is separated from the first buoyancy body component 11, the fish-finding device 3 and the fish-attracting device 4 travel on the water relative to the first buoyancy body component 11 with the second buoyancy body component 12 to perform fish-finding and fish-attracting work, as Figures 7 - 10 shown.
[0114] As another fish-finding solution, the fish-finding device 3 is connected by a wire harness to a drone 30, so that the drone 30 drags the fish-finding device 3 to travel on the water. The drone 30 is configured to be able to dock on the water surface or the buoyancy body component 1, and the buoyancy body component 1 is configured to be able to travel according to the positioning coordinates sent by the fish-finding device 3 or the drone 30 to perform fish-attracting work.
[0115] As Figures 15 - 25As shown, the drone 30 is configured to be dockable on the water surface, or on the first buoyancy body assembly 11 or the second buoyancy body assembly 12; an interface for the drone 30 to dock and charge is provided on the first buoyancy body assembly 11 and / or the second buoyancy body assembly 12, and the interface is configured to have the functions of charging and discharging, which can timely charge the drone to improve the endurance, and provide more possibilities for the functional expansion of the buoyancy body assembly. The fish attracting device 4 is provided on the second buoyancy body assembly 12, and the second buoyancy body assembly 12 is configured to travel according to the positioning coordinates sent by the fish finding device 3 or the drone 30 to perform the fish attracting work. In the present invention, the drone drags the fish finding device to travel on the water to detect the presence of underwater fish schools, and can quickly reach the designated detection area, greatly shortening the response time, not only improving the detection efficiency and accuracy, but also enhancing the flexibility and safety of the operation. In this embodiment, the drone can be selected as the DJI M300 RTK drone, which is equipped with functions such as satellite positioning communication and the main control unit recording satellite coordinate positioning, automatic cruise function, and automatic return function when out of power.
[0116] As Figures 20 - 25 shown, the bottom of the drone 30 is connected with support foot rods 302, the two support foot rods 302 are arranged in an outward V shape, and the lower end of each support foot rod 302 is connected with a support cross bar 303, and a buoyancy body 304 is detachably connected to the support cross bar 303. The buoyancy body 304 is made of polyurethane foam material or EPS buoyancy foam, etc. This buoyancy body can provide buoyancy for the drone, enabling it to remain floating when falling into the water, avoiding sinking to the bottom, protecting the drone from water immersion damage, improving the safety reliability and service life of the equipment; at the same time, it can also enable the drone to stably dock on the water surface.
[0117] As Figures 20 - 23 shown, the buoyancy body 304 is provided with a mounting boss, the mounting boss is provided with a cross bar through hole 3041 for the support cross bar 303 to pass through, and mounting lock holes for the connecting rod member to pass through simultaneously are respectively provided on the mounting boss and the support cross bar 303 to relatively lock the two, which has the characteristics of convenient disassembly and replacement.
[0118] As Figure 1 、 2 As shown in FIGS. 4, 22 - 28, whether the buoyancy body assembly 1 alone serves as the platform main body, or the buoyancy body assembly 1 is in the form of a mother - child structure and the mother structure - the first buoyancy body assembly serves as the platform main body, a sunshade top assembly 5 for the drone 30 to dock is provided on the platform main body, and the sunshade top assembly 5 is configured to lock and limit the drone 30 docked on it. As Figure 1 、 26As shown, the sunshade top assembly 5 includes a sunshade panel 51 provided at the top end of the vertical column 141 and arranged in a hollow manner. The upper surface of the sunshade panel 51 is arranged in a flat surface. A plug-in positioning rod 301 is detachably connected to the drone 30. As Figure 23 shown, the upper end of the plug-in positioning rod 301 is threadedly connected to the drone 30. The lower end of the plug-in positioning rod 301 passes through the sunshade panel 51 and is provided with a connecting rod section 3011 that can rotate relative to the lower end of the plug-in positioning rod 301. A connecting opening groove for inserting and avoiding the lower end of the plug-in positioning rod 301 is formed on the connecting rod section 3011. When it is necessary to park the drone, the flexible sunshade cloth on the upper surface of the sunshade panel 51 is retracted. After the drone is parked on the sunshade panel 51, the plug-in positioning rod 301 penetrates through the hollow positioning hole of the sunshade panel 51, so that the upper end of the plug-in positioning rod 301 is stably connected to the drone. Then, the connecting rod section 3011 is operated to rotate relative to the plug-in positioning rod 301, so that the connecting rod section 3011 is horizontally stuck under the hollow positioning hole to limit the upward movement of the plug-in positioning rod 301, thereby locking and positioning the parked drone.
[0119] As Figure 1 、 26 shown, a sunshade cloth assembly 52 for covering the upper surface of the sunshade panel 51 is provided at the front end or the rear end of the sunshade top assembly 5 and between the top ends of the two vertical columns 141. The sunshade cloth assembly 52 includes, but is not limited to, a sunshade cloth winding rod shaft provided at the front end or the rear end of the sunshade top assembly 5 and a flexible sunshade cloth wound around the sunshade cloth winding rod shaft. A pulling rope is connected to the free end of the flexible sunshade cloth for the angler to pull so that the flexible sunshade cloth is unfolded to cover the upper surface of the sunshade panel 51. When it is necessary to park the drone on the sunshade panel 51, the sunshade cloth winding rod shaft rotates by an electric method or the elastic force of a coil spring to automatically retract the flexible sunshade cloth, thereby removing the cover of the upper surface of the sunshade panel 51.
[0120] As Figures 26 - 29 shown, when the buoyancy body assembly 1 is used alone as a manned platform main body, as a first specific embodiment, it is composed of an inflatable and deflatable airbag 111 and a buoyancy plate 112 stacked up and down and compounded and connected by a force-bearing structure assembly 113. The force-bearing structure assembly 113 includes corner guards 1131, a front anti-collision bar group 1132, a rear anti-collision bar group 1133, a side anti-collision bar group 1134, and a restraint belt 1135. The corner guards 1131, the front anti-collision bar group 1132, the rear anti-collision bar group 1133, and the side anti-collision bar group 1134 are detachably connected correspondingly to form a restraint space 1130 to keep the stacked airbag 111 and buoyancy plate 112 constrained in the restraint space 1130. The restraint belt 1135 is connected between two adjacent corner guards 1131. In the present invention, the inflatable and deflatable airbag and the buoyancy plate are compounded and connected by the force-bearing structure assembly to form the buoyancy body assembly, which can effectively optimize the load distribution of the buoyancy body assembly and increase the stability and reliability of the connection between the buoyancy body assemblies.
[0121] Furthermore, the airbag 111 is at least composed of two independent structures stacked up and down. Preferably, the height of the upper airbag is significantly larger than that of the lower airbag. When the lower airbag is damaged and leaks air, the upper airbag can still be used continuously and provide sufficient buoyancy to effectively achieve the anti-sinking function and ensure safe and reliable use.
[0122] The present invention is provided with a buoyancy plate at the bottom of the airbag. After the airbag is inflated, the buoyancy plate is constrained and tied by the force-bearing structure assembly and fixed to the bottom of the airbag. On the one hand, it can effectively protect the bottom of the airbag and prevent air leakage caused by rubbing during use. When the platform comes ashore, the user can directly drag and pull it ashore with the support and protection of the buoyancy plate. On the other hand, when the buoyancy plate has a certain thickness and volume, it can maximize the provision of buoyancy to support the airbag to meet the needs of a larger load.
[0123] Through the connection and cooperation of the corner guards and the anti-collision bar group, the airbag is effectively protected circumferentially, avoiding the risk of air leakage during collision, further improving safety. And since the corner guards, the anti-collision bar group and the airbag are all detachably connected, it is convenient for the user to disassemble, assemble and carry out.
[0124] In the present invention, through the pulling of the restraint belt 1135 between the corresponding corner guards and the top support of the anti-collision bar group, the corner guards can be stably and reliably constrained to the sides of the airbag and the buoyancy plate, and at the same time, the airbag and the buoyancy plate are reliably constrained within the restraint space. Among them, the corner guards not only play the role of anti-collision and anti-sinking, but also play the role of connecting and bearing force.
[0125] As Figures 29 - 31 shown, for the convenience of operation, use and feeding, the fish searching device 3 is arranged at the bottom side of the front anti-collision bar group 1132. A flipping and locking mechanism 41 is provided between the fish attracting device 4 and the side anti-collision bar group 1134. The flipping and locking mechanism 41 is configured to flip the fish attracting device 4 upwards to a preset angle and be positioned and locked, so that the feeding port 407 of the fish attracting device 4 faces upwards, and the fish attracting device 4 flips downwards to a preset angle and is positioned and locked. When adding bait is needed, the locking state of the flipping and locking mechanism 41 is released to flip upwards, so that the feeding port 407 of the fish attracting device 4 faces upwards. After the feeding is completed and covered, the locking state of the flipping and locking mechanism 41 is released, and it automatically flips downwards under the action of gravity, so that the fish attracting device 4 sinks into the water and is automatically locked.
[0126] As Figures 1 - 5As shown in FIGS. 9 and 10, when the buoyancy body assembly 1 alone serves as a manned platform main body, as a second specific embodiment, the buoyancy body assembly 1 is composed of a plurality of hollow rigid buoyancy boxes 10 spliced together. The buoyancy boxes can be made of HDPE material. The traveling power assembly 2 and the fish attracting device 4 are detachably arranged at the bottom of the buoyancy box 10 respectively. The inner cavity of the buoyancy box 10 is filled with buoyancy foam along the circumference and a storage space is formed in the middle. Filling the hollow rigid buoyancy box with buoyancy foam can ensure that sufficient and reliable buoyancy support can still be provided after the buoyancy box is damaged, and also enhances its safety and durability. The storage space can be used to store relevant substances and play a certain protective role for the stored substances. Among them, for some buoyancy boxes 10 with functions such as charging and discharging and control, before the inner cavity is filled with buoyancy foam along the circumference, a battery pack with charging and discharging functions, a control unit with control and processing functions, a wireless remote control unit with signal receiving and transmitting functions, etc. are placed in the inner cavity of the buoyancy box 10, and then the buoyancy foam is filled. After filling the material, the various functional components in the buoyancy box are relatively fixed and have a good waterproof effect. Further, buoyancy boxes 10 with functional components such as rechargeable battery packs can be symmetrically spliced along the front-rear and / or left-right directions of the platform main body, providing more electric energy storage and supply while ensuring the stable force of the platform main body.
[0127] As Figures 26 - 29As shown in the figure, when the buoyancy body assembly 1 is in the form of a mother - son structure, it includes a first buoyancy body assembly 11 and a second buoyancy body assembly 12. The first buoyancy body assembly 11 is the mother structure and serves as the platform main body and can carry people, while the second buoyancy body assembly 12 serves as the son structure and cannot carry people. Specifically, the structure of the first buoyancy body assembly 11 is the same as that of the first specific embodiment in which the above - mentioned buoyancy body assembly 1 alone serves as the manned platform main body. Specifically, the first buoyancy body assembly 11 is composed of an inflatable and deflatable airbag 111 and a buoyancy board 112 stacked up and down and compound - connected through a force - bearing structure assembly 113. The force - bearing structure assembly 113 includes corner guards 1131, a front anti - collision bar group 1132, a rear anti - collision bar group 1133, a side anti - collision bar group 1134, and a restraint belt 1135. The corner guards 1131, the front anti - collision bar group 1132, the rear anti - collision bar group 1133, and the side anti - collision bar group 1134 are detachably connected to form a restraint space 1130 to keep the stacked - up airbag 111 and buoyancy board 112 constrained within the restraint space 1130, and the restraint belt 1135 is connected between two adjacent corner guards 1131. The second buoyancy body assembly 12 is composed of a single hollow rigid buoyancy box 10. The inner cavity of the buoyancy box 10 is pre - installed with functional components such as a rechargeable battery assembly, a control unit, and a wireless remote control unit, and is filled with buoyant foam along the circumference and forms a storage space in the middle or is integrally filled with buoyant foam. The fish - attracting device 4 and the traveling power assembly 2 are detachably connected to the bottom of the buoyancy box 10 of the second buoyancy body assembly 12, and the fish - finding device 3 is detachably installed on the side of the buoyancy box 10 of the second buoyancy body assembly 12. The second buoyancy body assembly 12 is equipped with functions such as satellite positioning communication and a main control unit for recording satellite coordinate positioning, an automatic cruise function, and an automatic return function when power is lacking.
[0128] As Figure 32 shown, a flip - locking mechanism 41 is provided between the traveling power assembly 2 and the side anti - collision bar group 1134, and the flip - locking mechanism 41 is configured such that the traveling power assembly 2 flips upward to a preset angle and is positioned and locked, and the traveling power assembly 2 flips downward into the water to a preset angle and is positioned and locked. In this embodiment, through the flip - locking mechanism 41, the traveling power assembly 2 can be flipped downward or upward for use to meet the requirements of different usage scenarios. For example, during replacement and disassembly, the flip - locking mechanism 41 flips upward, causing the traveling power assembly 2 to rise above the water surface, facilitating disassembly and replacement; when used on water, the flip - locking mechanism 41 is actuated to flip downward, causing the traveling power assembly 2 to sink into the water under the action of gravity and automatically lock, which has the characteristics of a clever design structure and convenient use.
[0129] As Figures 30 - 32As shown, specifically, the above-mentioned flipping and locking mechanism 41 includes a flipping connection base 411 and a flipping arm 412. The flipping connection base 411 is connected to the side anti-collision bar group 1134. One end of the flipping arm 412 is hinged to the middle of the flipping connection base 411. The other end of the flipping arm 412 is provided with a flipping clamping mechanism 42 for detachably connecting to the traveling power assembly 2 or the fish attracting device 4. A flipping locking mechanism 43 is provided between the flipping arm 412 and the flipping connection base 411 for locking the flipping arm 412 to the flipping connection base 411 when the flipping arm 412 flips downward and upward relative to the flipping connection base 411 to a preset angle.
[0130] As Figure 3 , 16 , as shown in FIG. 18, the bottom parts of the first buoyancy body assembly 11 and the second buoyancy body assembly 12 are respectively provided with a flipping clamping mechanism 42 for detachably connecting to the traveling power assembly 2 or the fish attracting device 4. In this embodiment, the traveling power assembly or the fish attracting device can be quickly replaced through the flipping clamping mechanism to adapt to different application scenarios, providing high flexibility, enabling the platform main body to quickly adjust the configuration according to the task requirements. At the same time, the flipping clamping mechanism 42 is configured to be able to at least compatibly connect the traveling power assembly and the fish attracting device, thereby improving the versatility of the extended connection of the platform main body.
[0131] As Figures 30 - 32 shown, whether the buoyancy body assembly 1 is in the form of a mother-daughter structure or a single-body structure, the structure of the flipping locking mechanism 43 on the platform main body is the same, including a lower locking hole 431 provided on the flipping connection base 411 and a lower locking rod 432 that can be elastically provided on the flipping arm 412 and inserted into the lower locking hole 431 when the flipping arm 412 flips downward relative to the flipping connection base 411 to a preset angle; an unlocking operation member 433 for linking the unlocking action of the lower locking rod 432 is further provided on the flipping arm 412. The flipping locking mechanism 43 further includes an upper locking clamping member 434 provided on the flipping connection base 411 and an upper locking clamping portion 435 provided on the unlocking operation member 433 for clamping and locking cooperation with the upper locking clamping member 434 when the flipping arm 412 flips upward relative to the flipping connection base 411 to a preset angle. During the unlocking process, only by operating the unlocking operation member 433 to move relative to the flipping arm 412 can the corresponding locking state be released, which has the characteristic of convenient unlocking operation. In this embodiment, the unlocking operation member 433 and the lower locking rod 432 can be fixedly connected, so only one set of elastic members is needed to reliably lock the flipping arm 412 in the downward use state or the upward use state.
[0132] As Figures 30 - 32As shown in the figure, the flipping and clamping mechanism 42 includes a clamping chute 421 provided at the other end of the flipping arm 412. Both the traveling power assembly 2 and the fish attracting device 4 are provided with clamping slide rails 422 for clamping and cooperating with the clamping chute. At the other end of the flipping arm 412, there is a clamping and locking assembly for locking the two when the clamping slide rail 422 and the clamping chute 421 are in clamping cooperation. The clamping and locking assembly includes a locking recess and a locking protrusion provided at the other end of the flipping arm 412 and capable of elastic locking cooperation. As Figure 31 shown, the clamping and locking assembly is a connection of male and female snap fits.
[0133] As Figures 1 - 4 shown, when the buoyancy body assembly 1 is in the form of a mother-and-son structure, it includes a first buoyancy body assembly 11 and a second buoyancy body assembly 12. The first buoyancy body assembly 11 is the mother structure and serves as the platform main body and can carry people, while the second buoyancy body assembly 12 serves as the son structure and cannot carry people. Specifically, the structure of the first buoyancy body assembly 11 is the same as the second specific implementation manner in which the above-mentioned buoyancy body assembly 1 alone serves as a manned platform main body, that is, the first buoyancy body assembly 11 is composed of a plurality of hollow rigid buoyancy boxes 10 spliced together, and the traveling power assembly 2 is detachably connected to the bottom of the corresponding buoyancy box 10 of the first buoyancy body assembly 11. The fish attracting device 4 and the traveling power assembly 2 are detachably connected to the bottom of the buoyancy box 10 of the second buoyancy body assembly 12, and the fish searching device 3 is detachably provided on the side of the buoyancy box 10 of the second buoyancy body assembly 12.
[0134] For the platform main body of the present invention, a main control unit and a display unit are provided, and wireless frequency automatic pairing communication is established between the wireless remote control unit on the second buoyancy body assembly 12 or the wireless remote control unit on the unmanned aerial vehicle. It can receive the fish searching video signal transmitted back by the second buoyancy body assembly 12 or the unmanned aerial vehicle, and can effectively control the start and stop of the second buoyancy body assembly 12 and the unmanned aerial vehicle for patrol working conditions, and control the fish attracting device 4 connected to the second buoyancy body assembly 12 to start the fish attracting mode, etc.
[0135] As Figures 1 - 4 shown, a detachable connection docking mechanism 7 is provided between the buoyancy box 10 of the second buoyancy body assembly 12 and the front end and / or the rear end of the first buoyancy body assembly 11, so that the second buoyancy body assembly 12 can be docked and connected to the first buoyancy body assembly 11. In this embodiment, through the docking mechanism 7, devices such as the second buoyancy body assembly 12 or the fish protection assembly can be quickly docked to the first buoyancy body assembly 11 to adapt to different application scenarios, providing high flexibility, enabling the platform to quickly adjust the configuration according to the task requirements. At the same time, the docking mechanism 7 is configured to be able to compatibly connect devices such as the second buoyancy body assembly 12 or the fish protection assembly, thereby improving the versatility of the expansion connection of the platform main body.
[0136] AsFigures 1 - 4 As shown, in order to achieve convenient connection and reliable joint, the connection mechanism 7 includes, but is not limited to, a connection slot and a connection block that are arranged between the second buoyancy body assembly 12 and the first buoyancy body assembly 11 and can be engaged with each other. The connection slot is a T-shaped slot, and the connection block is a T-shaped block or an I-shaped block.
[0137] Adjacent buoyancy boxes are spliced together through a box body splicing component. As Figures 1 - 5 shown, in order to improve the stress strength between adjacent buoyancy boxes and facilitate positioning and splicing, the box body splicing component includes, but is not limited to, box body splicing concave and convex surfaces 103 arranged on the side of the buoyancy box body. The box body splicing concave and convex surfaces 103 of adjacent two buoyancy boxes are spliced and matched with each other.
[0138] As Figures 1 - 5 shown, the box body splicing component includes a plurality of box body connection ears 104 arranged on the buoyancy box body and staggered in the vertical direction. Each box body connection ear 104 is provided with a box body connection hole 1041 for the box body connecting rod to pass through.
[0139] In order to achieve convenient splicing and reliable connection, the box body splicing component includes, but is not limited to, a splicing slot and a splicing block that are arranged between adjacent buoyancy boxes and can be engaged with each other. The splicing slot is a T-shaped slot, and the splicing block is a T-shaped block or an I-shaped block.
[0140] As Figure 3 、 8 -10 shown, a diversion groove 101 is arranged at the bottom of the buoyancy box body 10 along its traveling direction, and the diversion grooves 101 of the buoyancy box bodies 10 spliced front and back along the traveling direction are mutually communicated, which can effectively guide the water flow to flow along a specific path, reduce the traveling resistance, lower the energy consumption, make the buoyancy box body travel more smoothly in the water and the direction more stable.
[0141] As Figure 3 、 8 -10 shown, the traveling power assembly 2 and the fish attracting device 4 are respectively arranged inside the corresponding diversion groove 101, which can make the structure more compact, reduce the traveling resistance, and make the water flow formed before and after the traveling power assembly 2 be introduced and discharged by the corresponding diversion groove 101, further making the traveling more stable.
[0142] As Figure 1 、 3 、7、15、17、19、26 shown, in order to effectively reduce the resistance of the water flow to the buoyancy box body and facilitate traveling, a water diversion head 102 is detachably connected to the front part of the buoyancy box body 10 of the second buoyancy body assembly 12. The water diversion head 102 is connected to the front part of the buoyancy box body 10 of the second buoyancy body assembly 12 through the connection mechanism 7.
[0143] As Figures 26 - 28As shown in Fig. 33, a clamping through-hole 13 is provided through the middle of the airbag 111 and the buoyancy plate 112. A flexible net trap 131 that can extend into the water is clamped in the clamping through-hole 13. The flexible net trap 131 has upper and lower openings and is of a structure that is wider at the top and narrower at the bottom. Hard rings 132 are connected to the upper and lower openings of the flexible net trap 131. A plurality of pulling straps 133 are circumferentially connected between the hard rings 132 arranged vertically. A plurality of pulling strap fasteners 1331 that can be hooked to the hard ring 132 at the upper opening of the flexible net trap 131 are arranged at intervals from top to bottom on each pulling strap 133. The pulling strap 133 is configured to enable the flexible net trap 131 to droop completely downward to open the lower opening, and when the pulling strap 133 is lifted upward, the lower end of the flexible net trap 131 is turned inward and placed in the inner cavity of the flexible net trap 131, forming an annular space 134 for placing counterweights. The counterweights can be pre-prepared sandbags in bags on the shore. When the platform main body needs to stop stably on the water surface, counterweights are loaded into the annular space 134 to lower the center of gravity of the platform main body; when the platform main body needs to move forward, the pulling strap 133 is controlled to relax downward to cancel the pulling force on the lower end of the flexible net trap 131, so that the flexible net trap 131 droops completely downward to open the lower opening, and the counterweights in the annular space 134 fall into the water.
[0144] As Figure 33 shown, a hard baffle 135 is further arranged in the flexible net trap 131. The hard baffle 135 is connected with a baffle suspension rope 136 that can control its up and down movement in the flexible net trap 131. The baffle suspension rope 136 is hooked to the hard ring 132 at the upper opening of the flexible net trap 131. The flexible net trap 131 and the hard baffle 135 placed therein form a storage space. This storage space can be used to store items or can also be used as a fish guard. When a fisherman needs to salvage the fish in the storage space, the fisherman can operate the baffle suspension rope 136 to control the hard baffle 135 to rise to drive the fish towards the upper opening direction of the flexible net trap 131, facilitating the fisherman to scoop the fish.
[0145] As Figure 1 、 26 shown, in order to hang the fish guard assembly or the second buoyancy body assembly, a bracket assembly 14 is provided on the buoyancy body assembly 1. The front end and / or the rear end of the bracket assembly 14 extends an end suspension bracket 15. An end winch assembly 16 is provided on the end suspension bracket 15. The end winch assembly 16 includes a lifting and hanging pull rope 161. A multi-head hanging rope segment 162 is fork-connected to the lower end of each lifting and hanging pull rope 161. The hanging rope segments 162 at the lower end of the same lifting and hanging pull rope 161 are detachably connected to the object to be hung, enabling the object to move up and down smoothly.
[0146] As Figure 1 、 26As shown in the figure, in order to lift and lower smoothly during the hanging process, end hoisting assemblies 16 are provided on both the left and right sides of the end suspension bracket 15. The lower end of each lifting and hanging rope 161 is forked with two hanging rope segments 162. The hanging rope segments 162 of different lifting and hanging ropes 161 located at the same end of the bracket assembly 14 are configured to be detachably connected to a hanging object simultaneously. In this embodiment, the object to be hung can be the buoyancy box body of the second buoyancy body assembly. Two hanging connection ears are provided on both sides of the buoyancy box body at intervals in the front-rear direction. The two hanging rope segments 162 at both ends of the same lifting and hanging rope 161 are correspondingly connected and matched with the two hanging connection ears on the same side. During use, the two hanging rope segments 162 at both ends of a lifting and hanging rope 161 are connected and matched with the two hanging connection ears on the same side, and at the same time, the two hanging rope segments 162 at both ends of another lifting and hanging rope 161 are connected and matched with the two hanging connection ears on the other same side, as Figure 1 , 26 shown. Then, the end hoister of the end hoisting assembly 16 retracts the lifting and hanging rope 161 to lift the buoyancy box body upward. At this moment, the user can turn the buoyancy box body to the working condition with the bottom upward according to the needs, so as to hang the fish finding device, the fish attracting device, the traveling power assembly, etc. on the bottom of the buoyancy box body, which is convenient and safe to operate.
[0147] Among them, the fish holding assembly can be connected to the front end and / or the rear end of the platform main body. The fish holding assembly is a rigid and hollow buoyancy box body 10, and the fish holding assembly is controlled by the end hoisting assembly 16 to move up and down relative to the buoyancy body assembly. When the buoyancy body assembly is close to the shore, first control the fish holding assembly to rise through the end hoisting assembly 16, and the heavier fish holding assembly filled with fish can be easily sent to the shore.
[0148] A motorized fish finding platform system of the present invention provides the following 4 embodiments according to the combined configuration of the system:
[0149] Embodiment 1: When the buoyancy body assembly 1 is in a single-body structure form as the platform main body, the traveling power assembly 2, the fish finding device 3, and the fish attracting device 4 are all detachably arranged on the buoyancy body assembly - the platform main body. Working principle: Control the traveling power assembly 2 of the buoyancy body assembly 1 to drive the buoyancy body assembly 1 to drive the fish finding device 3 and the fish attracting device 4 to travel to detect the appearance and disappearance of underwater fish schools; when the fish finding device 3 detects the appearance of fish schools, start the fish attracting device 4 to send out fish attracting signals to attract the attention of the fish schools and induce the fish schools to approach the fish attracting device 4 and gather accordingly; then the angler on the buoyancy body assembly 1 performs fishing operations on the fish schools approaching the fish attracting device 4 through the net trap assembly 6 or the rod fishing assembly.
[0150] Embodiment 2: When the buoyancy body assembly 1 is in a single-body structure form and serves as the platform main body, the fish attracting device 4 is arranged on the buoyancy body assembly - the platform main body, and the fish searching device 3 is connected to the unmanned aerial vehicle 30 through a wire harness, so that the unmanned aerial vehicle 30 drags the fish searching device 3 to travel on the water. Working principle: Control the unmanned aerial vehicle 30 to drag the fish searching device 3 to travel on the water to detect the presence and absence of underwater fish schools. When a fish school is detected, the unmanned aerial vehicle 30 or the fish searching device 3 marks the coordinate position of the fish school and sends the coordinate position information to the buoyancy body assembly 1 - the platform main body; then control the traveling power assembly 2 of the buoyancy body assembly 1 to drive the buoyancy body assembly 1 to drive the fish attracting device 4 to travel to the coordinate position of the fish school, start the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly; afterwards, the angler on the buoyancy body assembly 1 performs fishing operations on the fish school approaching the fish attracting device 4 through the net trap assembly 6 or the rod fishing assembly.
[0151] Embodiment 3: When the buoyancy body assembly 1 is in a mother-child structure form, the first buoyancy body assembly 11 serves as the platform main body and is the mother structure, and the second buoyancy body assembly 12 serves as the child structure. A plurality of second buoyancy body assemblies 12 can be configured, and a fish searching device 3 and a fish attracting device 4 are arranged on each second buoyancy body assembly 12. Working principle: Control the traveling power assembly 2 to drive the second buoyancy body assembly 12 to drive the fish searching device 3 and the fish attracting device 4 to travel to detect the presence and absence of underwater fish schools. When a fish school is detected, start the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly; at the same time, the second buoyancy body assembly 12 marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly 11. Then, control the traveling power assembly 2 of the first buoyancy body assembly 11 to drive the first buoyancy body assembly 11 to travel to the coordinate position of the fish school, or the second buoyancy body assembly 12 induces the fish school to travel close to the first buoyancy body assembly 11. Afterwards, the angler on the first buoyancy body assembly 11 performs fishing operations on the fish school approaching the fish attracting device 4 through the net trap assembly 6 or the rod fishing assembly.
[0152] Embodiment 4: When the buoyancy body assembly 1 is in the form of a mother - and - son structure, the first buoyancy body assembly 11 serves as the platform main body and is the mother structure, and the second buoyancy body assemblies 12 serve as the son structures. There can be multiple second buoyancy body assemblies 12. The fish attracting device 4 is arranged on the second buoyancy body assembly 12, and the fish searching device 3 is connected to the unmanned aerial vehicle 30 through a wire harness. Working principle: Control the unmanned aerial vehicle 30 to drag the fish searching device 3 to move on the water to detect the presence of underwater fish schools. When a fish school is detected, the unmanned aerial vehicle 30 or the fish searching device 3 marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly 11 and the corresponding second buoyancy body assembly 12. At this time, the unmanned aerial vehicle 30 can continue to drag the fish searching device 3 to move on the water to detect the presence of another underwater fish school; then, control the traveling power assembly 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish attracting device 4 to move to the coordinate position of the fish school, start the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly; afterwards, control the traveling power assembly 2 of the first buoyancy body assembly 11 to drive the first buoyancy body assembly 11 to move to the corresponding fish school coordinate position, or the second buoyancy body assembly 12 induces the fish school to move closer to the first buoyancy body assembly 11. After that, the angler on the first buoyancy body assembly 11 conducts fishing operations on the fish school close to the fish attracting device 4 through the net trap assembly 6 or the rod fishing assembly.
[0153] For Embodiment 1 of a motorized fish searching platform system of the present invention, its motorized fishing method, the steps include:
[0154] S1. Control the traveling power assembly 2 of the buoyancy body assembly 1 to drive the buoyancy body assembly 1 to drive the fish searching device 3 and the fish attracting device 4 to move to detect the presence of underwater fish schools.
[0155] S2. When the fish searching device 3 detects the appearance of a fish school, start the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly.
[0156] S3. Finally, the angler on the buoyancy body assembly 1 conducts fishing operations on the fish school in the fishing area through the net trap assembly 6 or the rod fishing assembly.
[0157] For Embodiment 2 of a motorized fish searching platform system of the present invention, its motorized fishing method, the steps include:
[0158] S1. The unmanned aerial vehicle 30 drags the fish searching device 3 to move on the water to detect the presence of underwater fish schools. When a fish school is detected, the unmanned aerial vehicle 30 or the fish searching device 3 marks the coordinate position of the fish school and sends the fish school coordinate position information to the buoyancy body assembly 1.
[0159] S2. Control the propulsion component 2 of the buoyancy body assembly 1 to drive the buoyancy body assembly 1 to drive the fish attracting device 4 to travel to the fish school coordinate position, activate the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly;
[0160] S3. The angler on the buoyancy body assembly 1 conducts fishing operations on the fish school approaching the fish attracting device 4 through the net trap assembly 6 or the rod fishing assembly.
[0161] For Embodiment 3 of a motorized fish finding platform system of the present invention, its motorized fishing method includes the following steps:
[0162] S1. First, control the propulsion component 2 to drive the first buoyancy body assembly 11 to drive the second buoyancy body assembly 12 to travel to the corresponding water area; then, separate the second buoyancy body assembly 12 from the first buoyancy body assembly 11, and then control the propulsion component 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish finding device 3 and the fish attracting device 4 to travel to detect the presence and absence of the underwater fish school; when the fish school is detected, activate the fish attracting device 4 to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device 4 and gather accordingly; at the same time, the second buoyancy body assembly 12 marks the fish school coordinate position and sends the coordinate position information to the first buoyancy body assembly 11;
[0163] S2. Control the propulsion component 2 of the first buoyancy body assembly 11 to drive the first buoyancy body assembly 11 to travel to the corresponding fish school coordinate position in S1; or, control the propulsion component 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish attracting device 4 to travel towards the fishing area of the first buoyancy body assembly 11. During the travel, the fish attracting device 4 continuously emits a fish attracting signal to induce the fish school to follow to the fishing area;
[0164] S3. The angler on the first buoyancy body assembly 11 conducts fishing operations on the fish school in the fishing area through the net trap assembly 6 or the rod fishing assembly.
[0165] For Embodiment 4 of a motorized fish finding platform system of the present invention, its motorized fishing method includes the following steps:
[0166] S1. First, control the traveling power assembly 2 to drive the first buoyancy body assembly 11 to drive the second buoyancy body assembly 12 to travel to the corresponding water area; then, control the drone 30 to drag the fish-finding device 3 to travel on the water to detect the presence of underwater fish schools. When a fish school is detected, the drone 30 or the fish-finding device 3 marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly 11 or the second buoyancy body assembly 12. At this time, the drone 30 can continue to drag the fish-finding device 3 to travel on the water to detect the presence of another underwater fish school. And when the next fish school is detected, the drone 30 or the fish-finding device 3 marks the coordinate position of the fish school and sends the corresponding coordinate position information to the first buoyancy body assembly 11 or the corresponding second buoyancy body assembly 12.
[0167] S2. Separate the second buoyancy body assembly 12 from the first buoyancy body assembly 11, control the traveling power assembly 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish-attracting device 4 to travel to the corresponding fish school coordinate position in S1, and activate the fish-attracting device 4 to emit a fish-attracting signal to attract the attention of the fish school, so that the induced fish school approaches the fish-attracting device 4 and gathers accordingly.
[0168] S3. Control the traveling power assembly 2 of the first buoyancy body assembly 11 to drive the first buoyancy body assembly 11 to travel to the fish school coordinate position in S2. When the first buoyancy body assembly 11 travels close to the second buoyancy body assembly 12, at this time, the second buoyancy body assembly 12 can continue to travel to the next fish school coordinate position; or, control the traveling power assembly 2 of the second buoyancy body assembly 12 to drive the second buoyancy body assembly 12 to drive the fish-attracting device 4 to travel towards the fishing area of the first buoyancy body assembly 11. During the traveling process, the fish-attracting device 4 continuously emits a fish-attracting signal to induce the fish school to follow to the fishing area. At this time, the second buoyancy body assembly 12 can continue to travel to the next fish school coordinate position; finally, the angler on the first buoyancy body assembly 11 performs fishing operations on the fish school in the fishing area through the net trap assembly 6 or the rod fishing assembly.
[0169] In summary, for a mobile fish-finding platform system and a mobile fishing method of the present invention, by adding a mobile function, the fish-finding and fish-attracting operations are given the characteristics of flexibility and high efficiency, providing conditions for carrying out net fishing or rod fishing, significantly differentiating from the traditional fishing method. Moreover, multiple people can participate in the fish-finding and fish-attracting activities when the present application is used, thereby achieving the characteristic of sharing fishing pleasure, further increasing the fun of the activity process, and enriching people's entertainment and sports life. In addition, the following contents should be included in the above-mentioned various embodiments and their specific implementation processes:
[0170] 1. During the fish-finding detection process, it includes collecting hydrological information of the appearance of different fish species, that is, one or more of water temperature, water depth, fish species, fish size, and position coordinates, to provide data analysis and reference for subsequent fishing.
[0171] 2. The fish attracting device 4 can intermittently or continuously emit fish attracting signals according to a preset fish attracting mode, and the fish attracting signals include one or a combination of bait feeding amounts, fish attracting sound waves, and fish attracting lights for adapting to the behavioral habits of different types of fish schools.
[0172] 3. When fishing with the net trap assembly 6, it is necessary to lower the net trap assembly 6 to a preset depth in the water. Preferably, it is also necessary to turn off the fish attracting device 4 and turn on the net trap fish attracting assembly of the net trap assembly 6 to induce fish into the enclosed space of the net trap assembly 6. Then, close the entrance of the enclosed space, and finally control the net trap assembly 6 to rise to complete the collection of fish catches. For the structure of the net trap fish attracting assembly, a fish attracting device or a similar structure can be adopted, which will not be elaborated here.
Claims
1. A motorized fish-finding platform system, characterized in that Comprising: A buoyancy body assembly (1), which can reliably float on water; A traveling power assembly (2), the traveling power assembly (2) is detachably hung on the bottom or side of the buoyancy body assembly (1) for driving the buoyancy body assembly (1) to travel correspondingly on water; A fish finding device (3) for detecting the presence of fish schools underwater, the fish finding device (3) is arranged on the buoyancy body assembly (1), or the fish finding device (3) is arranged separately relative to the buoyancy body assembly (1) and can move relative to the buoyancy body assembly (1) to perform fish finding work; A fish attracting device (4) for attracting fish schools to approach the fish attracting device (4) and gather correspondingly, the fish attracting device (4) is configured to start the fish attracting working condition when the fish schools detected by the fish finding device (3) appear within a preset range, so that the fish schools gather towards the fish attracting device (4).
2. The mobile fish-finding platform system according to claim 1, wherein The buoyancy body assembly (1) includes a first buoyancy body assembly (11) and a second buoyancy body assembly (12), the first buoyancy body assembly (11) and the second buoyancy body assembly (12) are both correspondingly provided with a traveling power assembly (2), the second buoyancy body assembly (12) is detachably connected to the front end or the rear end of the first buoyancy body assembly (11), and the second buoyancy body assembly (12) can travel separately relative to the first buoyancy body assembly (11) on water correspondingly.
3. The motorized fish-finding platform system according to claim 2, characterized in that The fish finding device (3) and the fish attracting device (4) are arranged on the second buoyancy body assembly (12). When the second buoyancy body assembly (12) is separated from the first buoyancy body assembly (11), the fish finding device (3) and the fish attracting device (4) travel on water relative to the first buoyancy body assembly (11) along with the second buoyancy body assembly (12) to perform fish finding and fish attracting work.
4. The mobile fish-finding platform system according to claim 2, wherein The fish finding device (3) is connected with a drone (30) through a wire harness, so that the drone (30) drags the fish finding device (3) to travel on water, and the drone (30) is configured to be able to dock on the water surface or the first buoyancy body assembly (11) or the second buoyancy body assembly (12); the fish attracting device (4) is arranged on the second buoyancy body assembly (12), and the second buoyancy body assembly (12) is configured to be able to travel according to the positioning coordinates sent by the fish finding device (3) or the drone (30) to perform fish attracting work.
5. The motorized fish-finding platform system according to claim 4, wherein A sunshade top assembly (5) for the drone (30) to dock is arranged on the first buoyancy body assembly (11), and the sunshade top assembly (5) is configured to lock and limit the drone (30) docked on it.
6. The motorized fish-finding platform system according to claim 1, wherein The buoyancy body assembly (1) is composed of an inflatable and deflatable airbag (111) and a buoyancy board (112) stacked up and down and compoundly connected through a force-bearing structure assembly (113). The force-bearing structure assembly (113) includes corner guards (1131), a front anti-collision bar group (1132), a rear anti-collision bar group (1133), a side anti-collision bar group (1134), and a restraint belt (1135). The corner guards (1131), the front anti-collision bar group (1132), the rear anti-collision bar group (1133), and the side anti-collision bar group (1134) are detachably connected correspondingly to form a restraint space (1130) to keep the stacked-up and -down airbag (111) and buoyancy board (112) restrained within the restraint space (1130). The restraint belt (1135) is connected between two adjacent corner guards (1131). The fish-finding device (3) is arranged at the bottom side of the front anti-collision bar group (1132). A flip-locking mechanism (41) is arranged between the fish-attracting device (4) and the side anti-collision bar group (1134). The flip-locking mechanism (41) is configured such that the fish-attracting device (4) flips upward to a preset angle and is positioned and locked, so that the feeding port of the fish-attracting device (4) faces upward, and the fish-attracting device (4) flips downward to a preset angle and is positioned and locked.
7. The mobile fish-finding platform system according to claim 1, characterized in that The buoyancy body assembly (1) is composed of a plurality of hollow rigid buoyancy boxes (10) spliced together. The traveling power assembly (2) and the fish-attracting device (4) are detachably arranged at the bottom of the buoyancy boxes (10). The inner cavity of the buoyancy boxes (10) is filled with buoyant foam along the circumferential direction, and a storage space is formed in the middle.
8. The motorized fish-finding platform system according to claim 6 or 7, characterized in that The fish-finding device (3) is connected by a wire harness to a drone (30) so that the drone (30) drags the fish-finding device (3) to travel on the water. The drone (30) is configured to be able to dock on the water surface or the buoyancy body assembly (1). The buoyancy body assembly (1) is configured to be able to travel according to the positioning coordinates sent by the fish-finding device (3) or the drone (30) to carry out fish-attracting work.
9. The mobile fish-finding platform system according to claim 2, characterized in that The first buoyancy body assembly (11) is composed of an inflatable and deflatable airbag (111) and a buoyancy plate (112) stacked one above the other and compound-connected through a force-bearing structure assembly (113). The force-bearing structure assembly (113) includes corner guards (1131), a front anti-collision bar group (1132), a rear anti-collision bar group (1133), a side anti-collision bar group (1134), and a restraint strap (1135). The corner guards (1131), the front anti-collision bar group (1132), the rear anti-collision bar group (1133), and the side anti-collision bar group (1134) are detachably connected correspondingly to form a restraint space (1130) to keep the airbag (111) and the buoyancy plate (112) stacked one above the other restrained within the restraint space (1130). The restraint strap (1135) is connected between two adjacent corner guards (1131). The second buoyancy body assembly (12) is composed of a single hollow rigid buoyancy box body (10). The inner cavity of the buoyancy box body (10) is filled with buoyant foam along the circumferential direction, and a storage space is formed in the middle. The fish attracting device (4) and the traveling power assembly (2) are detachably connected to the bottom of the buoyancy box body (10) of the second buoyancy body assembly (12), and the fish searching device (3) is detachably arranged on the side of the buoyancy box body (10) of the second buoyancy body assembly (12).
10. The mobile fish-finding platform system according to claim 6 or 9, characterized in that A flipping and locking mechanism (41) is provided between the traveling power assembly (2) and the side anti-collision bar group (1134), and the flipping and locking mechanism (41) is configured such that the traveling power assembly (2) flips upward to a preset angle and is positioned and locked, and the traveling power assembly (2) flips downward into the water to a preset angle and is positioned and locked.
11. The mobile fish-finding platform system according to claim 10, characterized in that The flipping and locking mechanism (41) includes a flipping connection seat (411) and a flipping arm (412). The flipping connection seat (411) is connected to the side anti-collision bar group (1134). One end of the flipping arm (412) is hinged to the middle of the flipping connection seat (411). The other end of the flipping arm (412) is provided with a flipping clamping mechanism (42) for detachably connecting to the traveling power assembly (2) or the fish attracting device (4). A flipping locking mechanism (43) is provided between the flipping arm (412) and the flipping connection seat (411) for locking the flipping arm (412) to the flipping connection seat (411) when the flipping arm (412) flips downward and upward relative to the flipping connection seat (411) to a preset angle.
12. The mobile fish-finding platform system according to claim 2, characterized in that The first buoyancy body assembly (11) is composed of a plurality of hollow rigid buoyancy box bodies (10) spliced together. The traveling power assembly (2) is detachably connected to the bottom of the corresponding buoyancy box body (10) of the first buoyancy body assembly (11). The second buoyancy body assembly (12) is composed of a single hollow rigid buoyancy box body (10). The inner cavity of the buoyancy box body (10) is filled with buoyant foam along the circumferential direction, and a storage space is formed in the middle. The fish attracting device (4) and the traveling power assembly (2) are detachably connected to the bottom of the buoyancy box body (10) of the second buoyancy body assembly (12), and the fish searching device (3) is detachably arranged on the side of the buoyancy box body (10) of the second buoyancy body assembly (12).
13. The mobile fish-finding platform system according to claim 9 or 12, characterized in that A connecting mechanism (7) for detachable connection is provided between the buoyancy box body (10) of the second buoyancy body assembly (12) and the front end and / or the rear end of the first buoyancy body assembly (11), so that the second buoyancy body assembly (12) can be docked and connected to the first buoyancy body assembly (11).
14. A motorized fish-finding platform system according to claim 7 or 9 or 12, characterized in that A diversion groove (101) is provided at the bottom of the buoyancy box body (10) along its traveling direction, and the diversion grooves (101) of the buoyancy box bodies (10) spliced front and rear along the traveling direction are mutually penetrated.
15. The mobile fish-finding platform system according to claim 9 or 12, characterized in that A water diversion head (102) is detachably connected to the front part of the buoyancy box body (10) of the second buoyancy body assembly (12).
16. The mobile fish-finding platform system according to claim 6 or 9, characterized in that A clamping through hole (13) is provided through the middle of the airbag (111) and the buoyancy plate (112). A flexible net trap (131) that can extend into the water is clamped in the clamping through hole (13). The flexible net trap (131) has upper and lower openings and is of an upper-wide and lower-narrow structure. Hardened rings (132) are connected to the upper and lower openings of the flexible net trap (131). A plurality of stay ropes (133) are circumferentially connected between the hardened rings (132) arranged up and down. A plurality of stay rope fasteners (1331) that can be hooked to the hardened ring (132) at the upper opening of the flexible net trap (131) are arranged at intervals from top to bottom on each stay rope (133). The stay ropes (133) are configured to enable the flexible net trap (131) to completely droop downward to open the lower opening, and when the stay ropes (133) are lifted upward, the lower end of the flexible net trap (131) is turned inward and placed in the inner cavity of the flexible net trap (131), and a ring space (134) for storing counterweights is formed.
17. The motorized fish-finding platform system according to claim 16, wherein A hardened baffle (135) is further arranged in the flexible net trap (131). The hardened baffle (135) is connected with a baffle lifting rope (136) that can control its up and down lifting in the flexible net trap (131). The baffle lifting rope (136) is hooked to the hardened ring (132) at the upper opening of the flexible net trap (131). The flexible net trap (131) and the hardened baffle (135) placed therein form a storage space.
18. The mobile fish-finding platform system according to claim 1, wherein A bracket assembly (14) is provided on the buoyancy body assembly (1). End suspension brackets (15) extend from the front end and / or the rear end of the bracket assembly (14). An end hoisting assembly (16) is provided on the end suspension brackets (15). The end hoisting assembly (16) includes a lifting hanging rope (161). The lower end of each lifting hanging rope (161) is fork-connected with a multi-head hanging rope segment (162). The hanging rope segments (162) at the lower end of the same lifting hanging rope (161) are detachably connected to the object to be hung, so that the object can be lifted and lowered smoothly.
19. The mobile fish-finding platform system according to claim 18, wherein End hoisting assemblies (16) are provided on both the left and right sides of the end suspension brackets (15). The lower end of each lifting hanging rope (161) is fork-connected with a two-head hanging rope segment (162). The hanging rope segments (162) of different lifting hanging ropes (161) at the same end of the bracket assembly (14) are configured to be simultaneously detachably connected to a hanging object.
20. The mobile fish-finding platform system according to claim 1, characterized in that A support assembly (14) is provided on the buoyancy body assembly (1). A side suspension support (17) extends from the left side and / or the right side of the support assembly (14). A net trap assembly (6) that can move up and down relative to the buoyancy body assembly (1) is suspended on the side suspension support (17). A net trap winch assembly (18) for controlling the up and down movement of the net trap assembly (6) relative to the buoyancy body assembly (1) is provided on the side suspension support (17); and / or, a pole fishing assembly is provided on the buoyancy body assembly (1).
21. The motorized fish-finding platform system according to claim 20, wherein The net trap assembly (6) includes a rigid net trap section (61) and a flexible net trap section (62) connected to the lower end of the rigid net trap section (61). The upper end of the rigid net trap section (61) is directly or indirectly connected to the net trap winch assembly (18). A net trap rigid support ring (63) is connected to the lower port of the flexible net trap section (62); the net trap assembly (6) is configured such that at least the lower end of the flexible net trap section (62) is lifted out of the water during the movement of the buoyancy body assembly (1).
22. The motorized fish-finding platform system according to claim 1, characterized in that A support assembly (14) is provided on the buoyancy body assembly (1). The support assembly (14) includes a vertical column (141) whose lower end is detachably connected to the buoyancy body assembly (1). A column expansion connection part (1411) for extended connection is provided vertically on the side surface of the vertical column (141). A sunshade top assembly (5) is provided at the top of the vertical column (141).
23. The mobile fish-finding platform system according to claim 22, wherein The sunshade top assembly (5) includes a sunshade panel (51) provided at the top of the vertical column (141) and arranged in a hollow manner. A sunshade cloth assembly (52) that can cover the upper surface of the sunshade panel (51) is provided at the front end or the rear end of the sunshade top assembly (5) and between the tops of the two vertical columns (141).
24. The mobile fish-finding platform system according to claim 22, wherein A lift-adjustable perimeter assembly (19) is detachably provided between two adjacent vertical columns (141). The perimeter assembly (19) includes a flexible and foldable perimeter main body (191). A perimeter connection block (192) is connected to the end of the perimeter main body (191). The perimeter connection block (192) is connected and cooperated with the column expansion connection part (1411).
25. A maneuverable fishing method for a maneuverable fish-finding platform system, which uses a maneuverable fish-finding platform system as described in claim 2, characterized in that It includes the following steps: S1. Control the traveling power assembly (2) of the second buoyancy body assembly (12) to drive the second buoyancy body assembly (12) to drive the fish finding device (3) and the fish attracting device (4) to travel to detect the presence of underwater fish schools. When a fish school is detected, the second buoyancy body assembly (12) marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly (11). At the same time, start the fish attracting device (4) to emit a fish attracting signal to attract the attention of the fish school and induce the fish school to approach the fish attracting device (4) and gather accordingly; S2. Control the traveling power assembly (2) of the first buoyancy body assembly (11) to drive the first buoyancy body assembly (11) to travel to the fish school coordinate position in S1. Then, the angler on the first buoyancy body assembly (11) performs fishing operations on the fish school approaching the fish attracting device (4) through the net trap assembly (6) or the pole fishing assembly. Alternatively, control the traveling power assembly (2) of the second buoyancy body assembly (12) to drive the second buoyancy body assembly (12) to drive the fish attracting device (4) to travel towards the fishing area of the first buoyancy body assembly (11). During the traveling process, the fish attracting device (4) continuously emits fish attracting signals to induce the fish school to follow to the fishing area. When the fish school reaches the fishing area, the angler on the first buoyancy body assembly (11) conducts fishing operations on the fish school in the fishing area through the net trap assembly (6) or the rod fishing assembly.
26. A motorized fishing method for a motorized fish-finding platform system, which uses a motorized fish-finding platform system as described in claim 4, characterized in that Including the following steps: S1. Control the drone (30) to drag the fish finding device (3) to travel on the water to detect the presence of underwater fish schools. When a fish school is detected, the drone (30) or the fish finding device (3) marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly (11) or the second buoyancy body assembly (12). S2. Control the traveling power assembly (2) of the second buoyancy body assembly (12) to drive the second buoyancy body assembly (12) to drive the fish attracting device (4) to travel to the coordinate position of the fish school in S1. Then start the fish attracting device (4) to emit fish attracting signals to attract the attention of the fish school and induce the fish school to approach the fish attracting device (4) and gather accordingly. S3. Control the traveling power assembly (2) of the first buoyancy body assembly (11) to drive the first buoyancy body assembly (11) to travel to the coordinate position of the fish school in S2. Then the angler on the first buoyancy body assembly (11) conducts fishing operations on the fish school at the coordinate position through the net trap assembly (6) or the rod fishing assembly. Alternatively, control the traveling power assembly (2) of the second buoyancy body assembly (12) to drive the second buoyancy body assembly (12) to drive the fish attracting device (4) to travel towards the fishing area of the first buoyancy body assembly (11). During the traveling process, the fish attracting device (4) continuously or intermittently emits fish attracting signals to induce the fish school to follow to the fishing area. When the fish school reaches the fishing area, the angler on the first buoyancy body assembly (11) conducts fishing operations on the fish school in the fishing area through the net trap assembly (6) or the rod fishing assembly.
27. The motorized fishing method of a motorized fish-finding platform system according to claim 26, characterized in that In S1, control the drone (30) to drag the fish finding device (3) to travel on the water to detect the presence of underwater fish schools. When a fish school is detected, the drone (30) or the fish finding device (3) marks the coordinate position of the fish school and sends the coordinate position information to the first buoyancy body assembly (11) or the second buoyancy body assembly (12). Then the drone (30) continues to drag the fish finding device (3) to travel on the water to detect the presence of fish schools in other positions. When the next fish school is detected, the drone (30) or the fish finding device (3) marks the coordinate position of the fish school and sends the corresponding coordinate position information to the first buoyancy body assembly (11) or another second buoyancy body assembly (12).
28. The motorized fishing method of a motorized fish-finding platform system according to claim 27, characterized in that In S2, control the traveling power assembly (2) of the second buoyancy body assembly (12) to drive the second buoyancy body assembly (12) to drive the fish attracting device (4) to travel to a position close to the fish school coordinate position. Then, start the fish attracting device (4) to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device (4) and gather accordingly. Then, after the first buoyancy body assembly (11) travels to a position close to the second buoyancy body assembly (12), the second buoyancy body assembly (12) continues to travel to the next fish school coordinate position; Alternatively, in S2, control the traveling power assembly (2) of the second buoyancy body assembly (12) to drive the second buoyancy body assembly (12) to drive the fish attracting device (4) to travel to the fish school coordinate position in S1. Then, start the fish attracting device (4) to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device (4) and gather accordingly. Then, the first buoyancy body assembly (11) travels to a position close to the second buoyancy body assembly (12), and at the same time, another second buoyancy body assembly (12) travels to another fish school coordinate position to induce the fish.
29. A motorized fishing method for a motorized fish-finding platform system, which uses a motorized fish-finding platform system as described in claim 6 or 7, characterized in that The method includes the following steps: S1. Control the traveling power assembly (2) of the buoyancy body assembly (1) to drive the buoyancy body assembly (1) to drive the fish searching device (3) and the fish attracting device (4) to travel to detect the presence and absence of underwater fish schools; S2. When the fish searching device (3) detects the appearance of a fish school, start the fish attracting device (4) to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device (4) and gather accordingly; S3. Then, the angler on the buoyancy body assembly (1) performs fishing operations on the fish school in the fishing area through the net trap assembly (6) or the rod fishing assembly.
30. A maneuverable fishing method for a maneuverable fish-finding platform system, using a maneuverable fish-finding platform system as described in claim 8, characterized in that The method includes the following steps: S1. Control the drone (30) to drag the fish searching device (3) to travel on the water to detect the presence and absence of underwater fish schools. When the appearance of a fish school is detected, the drone (30) or the fish searching device (3) marks the fish school coordinate position and sends the coordinate position information to the first buoyancy body assembly (11); S2. Control the traveling power assembly (2) of the buoyancy body assembly (1) to drive the buoyancy body assembly (1) to travel close to the fish school coordinate position in S1, start the fish attracting device (4) to emit a fish attracting signal to attract the attention of the fish school, and induce the fish school to approach the fish attracting device (4) and gather accordingly; S3. Then, the angler on the buoyancy body assembly (1) performs fishing operations on the fish school in the fishing area through the net trap assembly (6) or the rod fishing assembly.
Citation Information
Patent Citations
Propeller with detachable protective mesh enclosure
CN215098192U
Split type underwater propeller
CN215098199U
Full-automatic fish detecting and luring aircraft
CN110422287A
Fishing platform with floating artificial fish reef
CN111543372A
Autonomous power fish centralized transportation experiment platform and centralized transportation method
CN111674517A
Cited By
Net trap fishing device
CN120240408A
Layered feeding and adult fish trapping system, leisure platform and fishing fun method
CN121100850A
Net trap device capable of being automatically opened and closed and fishing equipment and fishing method thereof
CN122056261A
A layered feeding and fish trapping system
CN224747272U