A device for monitoring the protection of biodiversity of animals and plants
The design of the lifting frame and monitoring frame structure solves the problem of limited monitoring range of traditional monitoring equipment in the field environment, realizes automatic height adjustment of the camera and all-round protection, ensures the comprehensiveness and accuracy of monitoring data, and enhances the adaptability and durability of the equipment.
Patent Information
- Application Number
- CN202511879361.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-12
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2045-12-12
AI Technical Summary
Traditional fixed monitoring equipment is easily obscured by vegetation in the field, resulting in a limited monitoring range and making it difficult to achieve comprehensive and continuous monitoring of plants and animals, especially for highly mobile animals, where it is difficult to capture their dynamic information.
The system employs a lifting frame and monitoring frame structure, combined with motor-driven track transmission and electric push-pull rods, to achieve automatic height and position adjustment of the camera. It also provides all-round protection through vertical and horizontal baffles to prevent plants from blocking the view and external damage.
To ensure the comprehensiveness and accuracy of monitoring data, extend the service life of equipment, enhance field adaptability, provide all-round protection, and improve monitoring efficiency and data transmission convenience.
Smart Images

Figure CN121346135B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of animals and plants, more specifically, the present application relates to an animal and plant diversity protection monitoring device. BACKGROUND
[0002] Animals and plants refer to a wide variety of biological groups on earth, covering various different groups from tiny bacteria, fungi and other microorganisms, to large mammals, complex higher plants and other organisms, these animals and plants are not only an important part of nature, but also an indispensable element in the ecological system, the diversity of animals and plants plays an extremely important and irreplaceable role in maintaining the balance of the ecological system, promoting the circulation of matter and energy flow in nature, and providing various ecological services for humans and other organisms, in order to better monitor and protect these valuable and diverse animal and plant resources, the present application relates to an animal and plant diversity protection monitoring device, which is specially designed to monitor and effectively protect these animal and plant resources in real time, to ensure their healthy reproduction in the natural environment, so as to maintain the stability and sustainable development of the ecological system.
[0003] According to CN116248837A, a wild animal and plant biodiversity protection monitoring device is disclosed. The monitoring device comprises a monitoring camera, a fixing ring for installing the monitoring camera, and a floating body for suspending the monitoring camera, from bottom to top. The fixing ring is provided with a driving mechanism for moving the monitoring camera. The driving mechanism comprises a gear ring arranged on the fixing ring, and a driving motor arranged on the fixing ring and capable of rotating circumferentially along the fixing ring. The driving motor is a double-headed motor. The present application uses a floating object to drive the monitoring camera to move in the wild, which can observe and monitor wild animals and plants for a long time and at close range. This not only expands the monitoring range, but also improves the monitoring effect of wild animals and plants, bringing great convenience to the protection of wild animals and plants.
[0004] In a wide field environment, in order to deeply understand and master the survival state, activity rule and dynamic change of population quantity and other important information of plants and animals, it is usually necessary to continuously and comprehensively monitor plants and animals. However, the complexity and variability of the field environment bring great challenges to the monitoring work. The terrain is often rugged and the vegetation grows densely. These natural factors make the traditional fixed monitoring equipment face the problem of serious limitation of monitoring range in the application process. Specifically, in the field environment, the monitoring equipment is usually placed in the grass or other areas with dense vegetation. With the passage of time, the natural growth of plants may gradually shield the monitoring camera, so that the monitoring field of view is seriously affected, and it is difficult to realize comprehensive and continuous monitoring of plants and animals. In addition, for some animals with strong mobility and wide activity range, the fixed monitoring equipment is more difficult to effectively capture and record the dynamic information of these animals due to its fixed position and limited view, which greatly reduces the integrity and accuracy of the monitoring data. SUMMARY
[0005] In order to overcome the above-mentioned defects of the prior art, the present application provides a plant and animal diversity protection monitoring device, and the technical problems to be solved by the present application are that the traditional fixed monitoring equipment may have limited monitoring range, and in the field, the monitoring equipment is usually placed in the grass, which may be shielded by the growth of plants, making it difficult to comprehensively and continuously monitor plants and animals. At the same time, for some animals with strong mobility, it is more difficult for the fixed monitoring equipment to capture their dynamic information.
[0006] To solve the above technical problems, the technical scheme adopted by the present application is:
[0007] A plant and animal diversity protection monitoring device, comprising a lifting frame, wherein the front side inner wall of the lifting frame is provided with a monitoring frame;
[0008] The lifting frame comprises a vertical plate, the bottom of the vertical plate is fixedly connected with a bottom plate, the left and right sides of the front side of the vertical plate are fixedly connected with L-shaped connecting blocks, and the top and bottom inner walls of the vertical plate are rotatably connected with columnar horizontal rotating rods; the left and right ends of the two columnar horizontal rotating rods extend to the left and right sides of the outer wall of the vertical plate.
[0009] The monitoring frame comprises a control base frame, and the top of the control base frame is provided with a protective plate connecting frame.
[0010] As a further scheme of the present application: the left and right ends of the two columnar transverse rods are fixedly connected with rotating discs, the outer walls of the left and right groups of rotating discs are sleeved with caterpillar belts, the top of the rear side of the vertical plate is fixedly connected with a motor placing plate, the top of the motor placing plate is fixedly connected with a motor, the output end of the motor is fixedly connected with the right end of the top columnar transverse rod, the bottom front sides of the two L-shaped connecting blocks away from each other are fixedly connected with vertical rods, the bottoms of the outer walls of the two caterpillar belts are fixedly connected with lifting plates, the outer sides of the two lifting plates are slidingly connected with the bottoms of the inner sides of the two vertical rods, and the front sides of the two vertical rods are fixedly connected with semicircular protective shells.
[0011] As a further scheme of the present application: the control chassis comprises a chassis, the bottoms of the two sides of the chassis are fixedly connected with the tops of the two lifting plates, the four edges of the top of the chassis are fixedly connected with rectangular rods, the top of the side of the four rectangular rods close to each other is fixedly connected with a rectangular connecting bottom block, the top of the middle of the rectangular connecting bottom block is fixedly connected with an electric push-pull rod, the sides of the top of the four rectangular rods away from the rectangular connecting bottom block are fixedly connected with hinge blocks, and the inner walls of the hinge blocks are rotatably connected with rotating rods.
[0012] As a further scheme of the present application: the top of the electric push-pull rod is fixedly connected with a columnar lifting vertical rod, the bottom of the outer wall of the columnar lifting vertical rod is fixedly connected with a lifting disc, the bottom of the lifting disc is fixedly connected with columnar vertical rods in an annular array, and the bottom ends of the columnar vertical rods are fixedly connected with columnar vertical rod connecting blocks.
[0013] As a further scheme of the present application: the inner sides of the columnar vertical rod connecting blocks are fixedly connected with circular lifting rings, the outer walls of the circular lifting rings are rotatably connected with Y-shaped rotating rods in an annular array, the sides of the Y-shaped rotating rods away from the circular lifting rings are rotatably connected with the outer walls of the rotating rods, and the top end of the columnar lifting vertical rod is fixedly connected with a lightning rod.
[0014] As a further scheme of the present application: the top of the outer wall of the rotating rod is fixedly connected with a monitoring camera connecting block, the front and back sides of the monitoring camera connecting block are fixedly connected with monitoring camera connecting side blocks, and the inner sides of the monitoring camera connecting side blocks are fixedly connected with monitoring cameras.
[0015] As a further scheme of the present application: the protective plate connecting frame comprises a guide disc, the inner wall of the guide disc is slidingly connected with the top of the outer wall of the columnar lifting vertical rod, the outer wall of the guide disc is fixedly connected with Z-shaped supporting vertical rods in an annular array, the outer wall of the guide disc is fixedly connected with second hinge blocks on the inner sides of the Z-shaped supporting vertical rods, and the bottoms of the Z-shaped supporting vertical rods are fixedly connected with the four edges of the top of the chassis.
[0016] As a further scheme of the present application: the inner wall of each of the plurality of second hinge blocks is rotationally connected with a baffle rotating block, the bottom of each of the plurality of baffle rotating blocks is fixedly connected with a vertical baffle, the outer middle part of each of the plurality of vertical baffles is fixedly connected with a horizontal baffle, and the inner middle part of each of the plurality of vertical baffles is provided with a vertical baffle sliding groove.
[0017] As a further scheme of the present application: the inner wall of each of the plurality of second hinge blocks is rotationally connected with a baffle rotating block, the bottom of each of the plurality of baffle rotating blocks is fixedly connected with a vertical baffle, the outer middle part of each of the plurality of vertical baffles is fixedly connected with a horizontal baffle, and the inner middle part of each of the plurality of vertical baffles is provided with a vertical baffle sliding groove.
[0018] As a further scheme of the present application: the bottom of the outer wall of each of the plurality of rotating support rods is rotationally connected with a circular lifting block, and the inner wall of the circular lifting block is fixedly connected to the outer wall of the columnar lifting vertical rod.
[0019] The present application has the advantages that:
[0020] The present application has the advantages that: BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a schematic diagram of the main body of the present application;
[0022] Figure 2 It is a schematic diagram of the main body of the present application;
[0023] Figure 3 It is a schematic diagram of the main body of the present application;
[0024] Figure 4 It is a schematic diagram of the main body of the present application;
[0025] Figure 5 It is a schematic diagram of the main body of the present application;
[0026] Figure 6 It is a schematic diagram of the main body of the present application;
[0027] Figure 7 It is a schematic diagram of the main body of the present application;
[0028] Figure 8 It is a schematic diagram of the control chassis three-dimensional separation structure of the application.
[0029] Figure 9 It is a schematic diagram of the protective plate connecting frame three-dimensional structure of the application.
[0030] Figure 10 It is a schematic diagram of the protective plate connecting frame three-dimensional separation structure of the application.
[0031] In the figure: 1, lifting frame; 11, vertical plate; 12, bottom plate; 13, L-shaped connecting block; 14, vertical rod; 15, columnar horizontal rotating rod; 16, rotating disc; 17, track; 18, motor placement plate; 19, motor; 110, lifting plate; 111, semicircular protective shell; 2, monitoring frame; 21, control chassis; 211, bottom disc; 212, square rod; 213, square connecting bottom block; 214, electric push-pull rod; 215, hinged block; 216, rotating rod; 217, circular lifting ring; 218, columnar vertical rod connecting block; 219, columnar vertical rod; 2110, Y-shaped rotating rod; 2111, lifting disc; 2112, columnar lifting vertical rod; 2113, lightning rod; 2114, monitoring camera connecting block; 2115, monitoring camera connecting side block; 2116, monitoring camera; 22, protective plate connecting frame; 221, guide disc; 222, Z-shaped supporting vertical rod; 223, second hinged block; 224, baffle rotating block; 225, vertical baffle; 226, horizontal baffle; 227, vertical baffle sliding groove; 228, concave sliding block; 229, rotating support rod; 2210, circular lifting block. DETAILED DESCRIPTION
[0032] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the application.
[0033] As shown in the figure, Figures 1-2 The application provides a plant and animal diversity protection monitoring device, which comprises a lifting frame 1.
[0034] As shown in the figure, Figures 3-4As shown, the lifting frame 1 comprises a vertical plate 11, the bottom of the vertical plate 11 is fixedly connected with a bottom plate 12, the left and right sides of the front side of the vertical plate 11 are fixedly connected with L-shaped connecting blocks 13, the top and bottom inner walls of the vertical plate 11 are rotatably connected with columnar horizontal rotating rods 15, the left and right ends of the two columnar horizontal rotating rods 15 extend to the left and right sides of the outer wall of the vertical plate 11, the left and right ends of the two columnar horizontal rotating rods 15 are fixedly connected with rotating discs 16, the outer walls of the left and right groups of rotating discs 16 are sleeved with caterpillar belts 17, the top rear side of the vertical plate 11 is fixedly connected with a motor placing plate 18, the top of the motor placing plate 18 is fixedly connected with a motor 19, the output end of the motor 19 is fixedly connected with the right end of the top columnar horizontal rotating rod 15, the bottom front sides of the two L-shaped connecting blocks 13 which are away from each other are fixedly connected with vertical rods 14, the bottoms of the outer walls of the two caterpillar belts 17 are fixedly connected with lifting plates 110, the outer sides of the two lifting plates 110 are slidably connected with the bottoms of the inner sides of the two vertical rods 14, and the front sides of the two vertical rods 14 are fixedly connected with semicircular protective shells 111.
[0035] When monitoring animals and plants in the wild, first, the motor 19 is started, and after the motor 19 is started, the output end drives the top columnar horizontal rotating rod 15 to rotate, since the left and right ends of the two columnar horizontal rotating rods 15 are fixedly connected with rotating discs 16, and the outer walls of the left and right groups of rotating discs 16 are sleeved with caterpillar belts 17, therefore, the rotation of the top columnar horizontal rotating rod 15 drives the caterpillar belts 17 to drive the bottom columnar horizontal rotating rod 15 to rotate synchronously, along with the transmission of the caterpillar belts 17, the lifting plates 110 fixedly connected with the bottoms of the outer walls of the caterpillar belts 17 are driven to slide up and down along the vertical rods 14, so that the height of the monitoring frame 2 is adjusted, when the monitoring frame 2 is adjusted to a suitable height, monitoring animals and plants can be started, through various monitoring equipment equipped on the monitoring frame 2, relevant data of animals and plants can be obtained in real time, which provides strong support for the protection of animal and plant diversity.
[0036] As Figures 5-10As shown, the monitoring frame 2 comprises a control chassis 21, the top of the control chassis 21 is provided with a protective plate connecting frame 22, the control chassis 21 comprises a chassis 211, both sides of the bottom of the chassis 211 are fixedly connected to the top of the two lifting plates 110, the four edges of the top of the chassis 211 are fixedly connected with square rods 212, one side of the top of the four square rods 212 close to each other is fixedly connected with a square connecting bottom block 213, the top middle of the square connecting bottom block 213 is fixedly connected with an electric push-pull rod 214, one side of the top of the four square rods 212 away from the square connecting bottom block 213 is fixedly connected with a hinge block 215, the inner wall of the plurality of hinge blocks 215 is rotatably connected with a rotating rod 216, the top of the electric push-pull rod 214 is fixedly connected with a columnar lifting vertical rod 2112, the outer wall bottom of the columnar lifting vertical rod 2112 is fixedly connected with a lifting disc 2111, the bottom of the lifting disc 2111 is fixedly connected with a columnar vertical rod 219 in an annular array, the bottom end of the plurality of columnar vertical rods 219 is fixedly connected with a columnar vertical rod connecting block 218, the inner side of the plurality of columnar vertical rod connecting blocks 218 is fixedly connected with a circular lifting ring 217, the outer wall of the circular lifting ring 217 is rotatably connected with a Y-shaped rotating rod 2110 in an annular array, one side of the plurality of Y-shaped rotating rods 2110 away from the circular lifting ring 217 is rotatably connected to the outer wall of the plurality of rotating rods 216, the top end of the columnar lifting vertical rod 2112 is fixedly connected with a lightning rod 2113, the outer wall top of the plurality of rotating rods 216 is fixedly connected with a monitoring camera connecting block 2114, the front and rear sides of the plurality of monitoring camera connecting blocks 2114 are fixedly connected with monitoring camera connecting side blocks 2115, the inner side of the plurality of monitoring camera connecting side blocks 2115 is fixedly connected with monitoring cameras 2116, the protective plate connecting frame 22 comprises a guide disc 221, the inner wall of the guide disc 221 is slidably connected to the outer wall top of the columnar lifting vertical rod 2112, the outer wall of the guide disc 221 is fixedly connected with Z-shaped support vertical rods 222 in an annular array, the outer wall of the guide disc 221 is fixedly connected with second hinge blocks 223 inside the plurality of Z-shaped support vertical rods 222, the bottom of the plurality of Z-shaped support vertical rods 222 is fixedly connected to the four edges of the top of the chassis 211, the inner wall of the plurality of second hinge blocks 223 is rotatably connected with baffle rotating blocks 224, the bottom of the plurality of baffle rotating blocks 224 is fixedly connected with vertical baffles 225, the outer side middle of the plurality of vertical baffles 225 is fixedly connected with horizontal baffles 226, the inner side middle of the plurality of vertical baffles 225 is provided with vertical baffle sliding grooves 227, the inner side of the plurality of concave sliding blocks 228 is rotatably connected with rotating support rods 229, the outer wall bottom of the plurality of rotating support rods 229 is rotatably connected with circular lifting blocks 2210, the inner wall of the circular lifting blocks 2210 is fixedly connected to the outer wall of the columnar lifting vertical rod 2112;
[0037] In the case of plant growth shielding multiple monitoring cameras 2116, at this time, the electric push-pull rod 214 is started, and the columnar lifting vertical rod 2112 is moved to the top by the power action, specifically, the columnar lifting vertical rod 2112 is driven by the electric push-pull rod 214 to move upward, driving the lifting disc 2111 connected thereto to rise synchronously, the lifting disc 2111 is pulled upward by the linkage action of the columnar vertical rod 219 and the columnar vertical rod connecting block 218, the circular lifting ring 217 is pulled upward, in the process of the circular lifting ring 217 rising, the rotating rod 216 is rotated around the hinge block 215 by the pushing action of the Y-shaped rotating rod 2110, the top of the rotating rod 216 thus expands outward, thereby driving the monitoring camera connecting block 2114 and the monitoring camera 2116 to move upward and outward as a whole, effectively avoiding the shielding area of the plant;
[0038] At the same time, when the columnar lifting vertical rod 2112 rises, the guide disc 221 slides smoothly along its outer wall, maintains the stability of the whole, and drives the circular lifting block 2210 to move upward together, in the process of the circular lifting block 2210 moving upward, the concave sliding block 228 slides in the vertical baffle sliding groove 227 by the pushing action of the rotating support rod 229, thereby making the horizontal baffle 226 and the vertical baffle 225 rotate around the baffle rotating block 224, multiple vertical baffles 225 and horizontal baffles 226 thus expand outward, forming a larger protection range, providing more comprehensive protection for the monitoring camera 2116, preventing external factors such as birds, branches, etc. from causing damage to the monitoring camera 2116;
[0039] When the monitoring camera 2116 is adjusted to the appropriate position, successfully avoids the plant shielding, and the vertical baffle 225 and the horizontal baffle 226 are expanded to the appropriate angle, the electric push-pull rod 214 is turned off, at this time, the monitoring frame 2 as a whole maintains a stable state, continuously monitors the diversity of plants and animals, at this time, multiple vertical baffles 225 and horizontal baffles 226 present V-shaped form at the top, this design not only effectively guides the rainwater to slide off, prevents rainwater from accumulating, but also blocks the possible flying debris in the wild to a certain extent, avoids damage to the camera, multiple monitoring cameras 2116 after adjusting to the appropriate position, the field of view range is optimized, can more comprehensively and clearly capture the activity of plants and animals, provides accurate and reliable image data for subsequent data analysis;
[0040] In addition, the unfolding of the vertical baffle 225 and the horizontal baffle 226 not only provides protection for the monitoring camera 2116, but also to some extent reduces the impact of direct sunlight on the camera, prolonging the service life of the device. In the monitoring process, if it encounters bad weather such as strong winds and heavy rain, the V-shaped structure of the vertical baffle 225 and the horizontal baffle 226 can play a certain buffering and blocking role, reducing the impact of bad weather on the device, ensuring that the monitoring frame 2 can still operate stably in complex environments, and providing strong support for the protection and monitoring of animal and plant diversity.
[0041] The animal and plant diversity protection and monitoring device also has intelligent data collection and transmission functions. The animal and plant image data captured by the multiple monitoring cameras 2116 on the monitoring frame 2 are transmitted in real time to the data processing module in the control chassis 21. The data processing module performs preliminary analysis and arrangement on these image data, extracts key information such as the species, quantity, and behavior patterns of animals and plants, and then sends these processed data to the remote monitoring center in the form of wireless signals. In the monitoring center, staff can receive data from various monitoring points in real time and conduct further in-depth analysis. Through long-term accumulation and analysis of a large amount of data, staff can timely grasp the changing trend of animal and plant diversity, discover potential problems and risks, and thus develop more scientific and reasonable protection measures. At the same time, the device also supports remote control functions. Staff can operate various components on the monitoring frame 2 according to actual needs, such as adjusting the angle of the monitoring camera 2116 and controlling the extension of the electric push-pull rod 214, to achieve flexible management of the monitoring device, greatly improving the efficiency and convenience of monitoring work.
[0042] The working principle of the present application is: when monitoring animals and plants in the field, first start the motor 19. After the motor 19 is started, the output end drives the top columnar horizontal rotating rod 15 to rotate. Since the left and right ends of the two columnar horizontal rotating rods 15 are fixedly connected with the rotating discs 16, and the outer walls of the left and right groups of rotating discs 16 are sleeved with the caterpillar tracks 17, the rotation of the top columnar horizontal rotating rod 15 drives the caterpillar tracks 17 to transmit power, thereby driving the bottom columnar horizontal rotating rod 15 to rotate synchronously. With the transmission of the caterpillar tracks 17, the lifting plate 110 fixedly connected to the outer wall of the front side of the caterpillar tracks 17 bottom will slide up and down along the stand 14, thereby achieving the adjustment of the height of the monitoring frame 2. When the monitoring frame 2 is adjusted to the appropriate height, at this time, the electric push-pull rod 214 is started to push the columnar lifting stand 2112 to move upward, which drives the lifting disc 2111 to rise synchronously. The lifting disc 2111 pulls the circular lifting ring 217 upward through the columnar stand 219 and the columnar stand connecting block 218. In the process of rising, the circular lifting ring 217 drives the rotating rod 216 to rotate around the hinge block 215 through the Y-shaped rotating rod 2110, so that the top of the rotating rod 216 expands outward, thereby driving the monitoring camera connecting block 2114 and the monitoring camera 2116 to move upward and outward as a whole, avoiding the plant blocking area. At the same time, when the columnar lifting stand 2112 rises, the guide disc 221 slides along the outer wall thereof to keep stable and drives the circular lifting block 2210 to move upward together. In the process of upward movement of the circular lifting block 2210, the concave sliding block 228 is driven to slide in the vertical stop plate sliding groove 227 through the rotating support rod 229, thereby making the horizontal stop plate 226 and the vertical stop plate 225 rotate around the stop plate rotating block 224. The multiple vertical stop plates 225 and horizontal stop plates 226 expand outward to form a larger protection range, providing more comprehensive protection for the monitoring camera 2116, preventing external factors such as birds, branches, etc. from damaging the monitoring camera 2116. When the monitoring camera 2116 is adjusted to the appropriate position to avoid plant blocking and the vertical stop plate 225 and the horizontal stop plate 226 are expanded to the appropriate angle, the electric push-pull rod 214 is turned off. At this time, the monitoring frame 2 keeps stable as a whole, continuously monitoring the diversity of animals and plants. At this time, the multiple vertical stop plates 225 and horizontal stop plates 226 present a V-shaped form at the top, effectively guiding the rainwater to slide off, preventing the camera from being damaged by the possible flying debris in the field. After the multiple monitoring cameras 2116 are adjusted to the appropriate position, the field of view range is optimized, which can more comprehensively and clearly capture the activity of animals and plants, providing accurate and reliable image data for subsequent data analysis. At the same time, the expansion of the vertical stop plate 225 and the horizontal stop plate 226 provides protection for the monitoring camera 2116, and also reduces the influence of direct sunlight on the camera to some extent, prolonging the service life of the equipment.
[0043] The above shows and describes the basic principles and main features of the present application and the advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above embodiments, and the above embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A device for monitoring the protection of biodiversity of animals and plants, comprising a lifting frame (1), characterized in that: The front side inner wall of the lifting frame (1) is provided with a monitoring frame (2); The lifting frame (1) comprises a vertical plate (11), the bottom of the vertical plate (11) is fixedly connected with a bottom plate (12), the left and right sides of the front side of the vertical plate (11) are fixedly connected with L-shaped connecting blocks (13), the top and bottom inner walls of the vertical plate (11) are rotatably connected with columnar horizontal rotating rods (15), the left and right ends of the two columnar horizontal rotating rods (15) extend to the left and right sides of the outer wall of the vertical plate (11); The monitoring frame (2) comprises a control chassis (21), the top of the control chassis (21) is provided with a protective plate connecting frame (22); The left and right ends of the two columnar horizontal rotating rods (15) are fixedly connected with rotating discs (16), the outer walls of the left and right groups of rotating discs (16) are sleeved with caterpillar belts (17), the top of the rear side of the vertical plate (11) is fixedly connected with a motor placing plate (18), the top of the motor placing plate (18) is fixedly connected with a motor (19), the output end of the motor (19) is fixedly connected with the right end of the top columnar horizontal rotating rod (15), the bottom front sides of the two L-shaped connecting blocks (13) away from each other are fixedly connected with vertical rods (14), the bottoms of the outer walls of the two caterpillar belts (17) are fixedly connected with lifting plates (110), the outer sides of the two lifting plates (110) are slidably connected to the bottoms of the inner sides of the two vertical rods (14), the front sides of the two vertical rods (14) are fixedly connected with semicircular protective shells (111); The control chassis (21) comprises a bottom disc (211), the bottoms of the two sides of the bottom disc (211) are fixedly connected to the tops of the two lifting plates (110), the four edges of the top of the bottom disc (211) are fixedly connected with square rods (212), the top sides of the four square rods (212) close to each other are fixedly connected with square connecting bottom blocks (213), the top middle part of the square connecting bottom block (213) is fixedly connected with an electric push-pull rod (214), the top sides of the four square rods (212) away from the square connecting bottom block (213) are fixedly connected with hinge blocks (215), the inner walls of the multiple hinge blocks (215) are rotatably connected with rotating rods (216); The protective plate connecting frame (22) comprises a guide disc (221), the inner wall of the guide disc (221) is slidably connected to the top outer wall of the columnar lifting vertical rod (2112), the outer wall of the guide disc (221) is fixedly connected with Z-shaped supporting vertical rods (222) in an annular array, the outer wall of the guide disc (221) is fixedly connected with second hinge blocks (223) inside the multiple Z-shaped supporting vertical rods (222), the bottoms of the multiple Z-shaped supporting vertical rods (222) are fixedly connected to the four edges of the top of the bottom disc (211).
2. A device for monitoring animal and plant diversity according to claim 1, characterized in that: The top of the electric push-pull rod (214) is fixedly connected with a columnar lifting vertical rod (2112), the bottom of the outer wall of the columnar lifting vertical rod (2112) is fixedly connected with a lifting disc (2111), the bottom of the lifting disc (2111) is fixedly connected with an annular array of columnar vertical rods (219), and the bottom ends of the plurality of columnar vertical rods (219) are fixedly connected with columnar vertical rod connecting blocks (218).
3. A device for monitoring animal and plant diversity according to claim 2, characterised in that: The inner sides of the plurality of columnar vertical rod connecting blocks (218) are fixedly connected with circular lifting rings (217), the outer wall of the circular lifting ring (217) is rotatably connected with an annular array of Y-shaped rotating rods (2110), and the sides of the plurality of Y-shaped rotating rods (2110) away from the circular lifting ring (217) are rotatably connected to the outer walls of a plurality of rotating rods (216). The top of the columnar lifting vertical rod (2112) is fixedly connected with a lightning rod (2113).
4. A device for monitoring animal and plant diversity according to claim 3, characterised in that: The outer wall top of the plurality of rotating rods (216) is fixedly connected with a monitoring camera connecting block (2114), the front and rear sides of the plurality of monitoring camera connecting blocks (2114) are fixedly connected with monitoring camera connecting side blocks (2115), and the inner sides of the plurality of monitoring camera connecting side blocks (2115) are fixedly connected with monitoring cameras (2116).
5. The device for monitoring of animal and plant diversity protection according to claim 1, characterized in that: The inner walls of the plurality of second hinge blocks (223) are rotatably connected with baffle rotating blocks (224), the bottoms of the plurality of baffle rotating blocks (224) are fixedly connected with vertical baffles (225), the outer sides of the plurality of vertical baffles (225) are fixedly connected with horizontal baffles (226), and the inner sides of the plurality of vertical baffles (225) are provided with vertical baffle sliding grooves (227).
6. A device for monitoring animal and plant diversity according to claim 5, characterized in that: The inner walls of the vertical baffle sliding grooves (227) of the plurality of horizontal baffles (226) are slidably connected with concave sliding blocks (228), and the inner sides of the plurality of concave sliding blocks (228) are rotatably connected with rotating support rods (229).
7. A device for monitoring animal and plant diversity according to claim 6, characterized in that: The outer wall bottoms of the plurality of rotating support rods (229) are rotatably connected with circular lifting blocks (2210), and the inner walls of the circular lifting blocks (2210) are fixedly connected to the outer wall of the columnar lifting vertical rod (2112).
Citation Information
Patent Citations
Wild animal and plant biodiversity protection monitoring equipment
CN116248837A
Environmental protection monitoring equipment convenient to install
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Marking device for insect diversity monitoring
CN117441693A