Communication tower bird repelling device
By designing a bird-repelling device for communication towers that incorporates a hoisting flight mechanism, an energy-reducing bird-repelling mechanism, a wind-powered mechanism, and a self-locking clamping mechanism, the problems of existing equipment being unable to move flexibly and having poor repelling effects have been solved. This device effectively repels birds and nests in different locations, improving its applicability and repelling effect.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GUODONG TECH CO LTD
- Filing Date
- 2023-06-09
- Publication Date
- 2026-04-21
AI Technical Summary
Existing bird deterrence equipment on communication towers is not flexible enough to effectively drive away birds at different heights, and its deterrence effect is poor.
A bird-repelling device for communication towers was designed, comprising a hoisting flight mechanism, an energy-reducing bird-repelling mechanism, a wind-powered mechanism, a rotating sound-generating mechanism, and a self-locking clamping mechanism. By moving the hoisting flight mechanism and fixing it with the self-locking clamping mechanism, combined with wind power generation and rotating sound generation, birds and nests in different locations can be driven away.
It enables flexible dispersal of birds and nests at different locations on communication towers, improving the applicability and effectiveness of bird deterrence equipment and preventing birds from reappearing on the towers.
Smart Images

Figure CN116711710B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of bird deterrence equipment for communication towers, specifically a bird deterrence device for communication towers. Background Technology
[0002] With the development of society, communication has become increasingly important. In order to ensure the normal operation of wireless communication systems, communication antennas are usually placed at the highest point to increase the service radius and achieve the desired communication effect. Therefore, communication antennas must be supported by communication towers to increase their height. Thus, communication towers play an important role in communication network systems.
[0003] Communication towers are mainly used for the transmission and dissemination of microwave, ultra-shortwave, and wireless network signals. Common types include single-tube towers, three-tube towers, and angle steel towers. Birds frequently perch on communication towers and often build their nests there. When maintenance personnel climb these towers, they are easily disturbed by swarming birds, which can lead to falls. Therefore, bird deterrence equipment is needed. However, existing bird deterrence equipment for communication towers is often fixed on the tower and cannot be moved along the tower's height or to move bird nests. Consequently, it cannot effectively deter birds at different heights on the tower, nor can it guarantee that birds will not return to their nests. This results in poor applicability and ineffective bird deterrence. Summary of the Invention
[0004] The purpose of this invention is to provide a bird deterrent device for communication towers to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution:
[0006] A bird deterrent device for communication towers includes a connecting frame and further includes:
[0007] The hoisting flight mechanism is fixedly connected to the connecting frame;
[0008] A bird-repelling mechanism with reduced energy and fixedly connected to a connecting frame includes a box body fixedly connected to the connecting frame, a generator installed in the box body, a rectangular rod fixedly connected to the output shaft of the generator, a wind power mechanism connected to the rectangular rod, a rotating sound-generating mechanism connected to the wind power mechanism, a cover frame A slidably connected to the box body connected to the rotating sound-generating mechanism, the rotating sound-generating mechanism being mounted on the cover frame A, and a first electric telescopic rod installed between the cover frame A and the box body;
[0009] A self-locking clamping mechanism that is fixedly connected to the box body;
[0010] Speakers are fixedly installed on both sides of the box.
[0011] As a further improvement of the present invention: the hoisting flight mechanism includes a body fixedly connected to the connecting frame, at least four sets of electric telescopic arms are fixedly installed in the body, the electric telescopic arms are fixedly connected to a first motor, and the output shaft of the first motor is fixedly connected to a propeller.
[0012] As a further improvement of the present invention: a gimbal is fixedly installed on the body, and a camera is connected to the gimbal.
[0013] As a further improvement of the present invention: the electric telescopic arm is fixedly connected to a side baffle, and a cover frame B adapted to the side baffle is fixedly installed on the body.
[0014] As a further improvement of the present invention: the wind power mechanism includes a second electric telescopic rod fixedly installed in the box body, a limit frame fixedly installed at the moving end of the second electric telescopic rod, a sleeve shaft rotatably connected to a rectangular rod, a wind turbine blade fixedly connected to the sleeve shaft, a drive wheel fixedly connected to the rectangular rod, a driven wheel connected to the drive wheel via a transmission belt, the driven wheel connected to a rotating sound-generating mechanism, and a tensioner connected to the transmission belt installed on the cover frame A.
[0015] As a further improvement of the present invention: the rotating sound-generating mechanism includes a rotating seat fixedly connected to the cover frame A, a rotating frame rotatably connected to the rotating seat, the rotating frame being fixedly connected to the driven wheel, and a bell being connected to the rotating frame via a pull rope.
[0016] As a further improvement of the present invention: the self-locking clamping mechanism includes a guide rail frame fixedly connected to the box body, a dual-output shaft motor fixedly connected to the guide rail frame, a lead screw fixedly installed on the output shaft of the dual-output shaft motor, a linkage frame slidably connected to the lead screw and the guide rail frame, and a clamping arm fixedly connected to the linkage frame.
[0017] Compared with the prior art, the beneficial effects of the present invention are:
[0018] The hoisting flight mechanism lifts the box body via a connecting frame. As the hoisting flight mechanism moves, the box body moves towards the communication tower and approaches the bird perched on the tower. The self-locking clamping mechanism clamps the steel structure of the communication tower, thus allowing the energy-reducing bird deterrent mechanism to be clamped onto the tower and approach the bird. Then, the wind-powered mechanism is driven by the high-altitude airflow. On one hand, the wind-powered mechanism drives the output shaft of the generator to rotate via a rectangular rod, thereby generating electricity to power the invention. On the other hand, the wind-powered mechanism drives the rotating sound-emitting mechanism to rotate and emit sound. Driven by the first electric telescopic rod, the cover frame A slides out of the box body. At this time, the rotating sound-emitting mechanism disturbs the bird. When the bird has already built a nest on the communication tower, the rotating sound-emitting mechanism is used to disturb the bird and make it leave the tower. Then, the hoisting flight mechanism lifts the energy-reducing bird deterrent mechanism towards the nest via the connecting frame, and then uses the self-locking clamping mechanism to clamp the nest. As the hoisting flight mechanism descends, the nest lands, thus guiding the bird to the ground. This invention moves the invention via a hoisting and flying mechanism, allowing for flexible adjustment of its position. When only birds are present, the invention is secured to the communication tower using a self-locking clamping mechanism. Then, it is driven away by sound waves emitted from a rotating sound-generating mechanism and a speaker. When birds have already built nests, the nest is moved using the self-locking clamping mechanism to prevent birds from approaching the tower again. This invention is applicable to bird control in different locations and under different conditions, thus improving its applicability. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the structure of the present invention;
[0020] Figure 2 This is a side view of the present invention;
[0021] Figure 3 This is a three-dimensional structural diagram of the present invention;
[0022] Figure 4 This is a partially enlarged schematic diagram of point A in the present invention;
[0023] Figure 5 This is a partially enlarged schematic diagram of point B in the present invention.
[0024] In the diagram: 1. Connecting frame; 2. Hoisting flight mechanism; 3. Energy-reducing bird deterrent mechanism; 4. Box body; 5. Generator; 6. Rectangular rod; 7. Wind power mechanism; 8. Rotating sound generation mechanism; 9. First electric telescopic rod; 10. Self-locking clamping mechanism; 11. Body; 12. Electric telescopic arm; 13. First motor; 14. Propeller; 15. Gimbal; 16. Camera; 17. Side guard; 18. Cover frame B; 19. Second electric telescopic rod; 20. Limiting frame; 21. Sleeve shaft; 22. Wind turbine blade; 23. Drive wheel; 24. Transmission belt; 25. Driven wheel; 26. Tensioner; 27. Rotating seat; 28. Rotating frame; 29. Bell; 30. Guide rail frame; 31. Dual output shaft motor; 32. Lead screw; 33. Linkage frame; 34. Clamping arm; 35. Speaker. Detailed Implementation
[0025] The technical solution of this patent will be further described in detail below with reference to specific embodiments.
[0026] Example 1, see Figures 1-5 As shown, a bird-repelling device for communication towers includes a connecting frame 1, and further includes:
[0027] The hoisting flight mechanism 2 is fixedly connected to the connecting frame 1;
[0028] A bird-repelling mechanism 3 is fixedly connected to a connecting frame 1. The bird-repelling mechanism 3 includes a box 4 fixedly connected to the connecting frame 1. An energy storage module is fixedly installed inside the box 4. The energy storage module includes a battery and a transformer electrically connected to the battery. A controller is fixedly installed inside the box 4. A generator 5 is fixedly installed inside the box 4. The generator 5 is electrically connected to the energy storage module. The energy storage module is used to store the electricity generated by the generator 5. A rectangular rod 6 is fixedly connected to the output shaft of the generator 5. A wind power mechanism 7 is connected to the rectangular rod 6. A rotating sound-generating mechanism 8 is connected to the wind power mechanism 7. A cover frame A is slidably connected to the box 4. The rotating sound-generating mechanism 8 is mounted on the cover frame A. A first electric telescopic rod 9 is installed between the cover frame A and the box 4.
[0029] The self-locking clamping mechanism 10 is fixedly connected to the box body 4;
[0030] Speakers 35 are fixedly installed on both sides of the box body 4.
[0031] The hoisting flight mechanism 2 lifts the box body 4 via the connecting frame 1. As the hoisting flight mechanism 2 moves, the box body 4 moves towards the communication tower and approaches the bird perched on it. The self-locking clamping mechanism 10 clamps the steel structure of the communication tower, thereby allowing the energy-reducing bird-repelling mechanism 3 to clamp onto the communication tower and approach the bird. Then, the wind power mechanism 7 is driven by the high-altitude airflow. On one hand, the wind power mechanism 7 drives the output shaft of the generator 5 to rotate via the rectangular rod 6, thereby generating electricity to power the invention. On the other hand, the wind power mechanism 7 drives the rotating sound-generating mechanism 8 to rotate. Driven by the first electric telescopic rod 9, the cover A slides out of the box 4. At this time, the rotating sound-generating mechanism 8 is used to startle the birds. When the sound emitted by the rotating sound-generating mechanism 8 is not enough to scare away the birds, the sound 35 emits a sound to scare them away. When the birds have already built nests on the communication tower, the rotating sound-generating mechanism 8 is used to startle the birds away from the communication tower. Then, the hoisting flight mechanism 2 hoists the energy-reducing bird-repelling mechanism 3 to the nest through the connecting frame 1. Then, the self-locking clamping mechanism 10 clamps the nest. As the hoisting flight mechanism 2 descends, the nest lands, thus guiding the birds to the ground. This invention moves the invention via a hoisting flight mechanism 2, allowing for flexible adjustment of its position. When only birds are present, the invention is secured to the communication tower by a self-locking clamping mechanism 10. Then, the invention is driven away by sound waves emitted from the rotating sound-generating mechanism 8 and the speaker 35. When birds have already built nests, the nest is moved by the self-locking clamping mechanism 10 to prevent birds from approaching the tower again. This invention is applicable to bird control in different locations and under different conditions, thus improving its applicability.
[0032] In one embodiment, the hoisting flight mechanism 2 includes a body 11 fixedly connected to a connecting frame 1. A flight control module is housed within the body 11, and the antenna of the flight control module extends outside the body 11. At least four sets of electrically operated telescopic arms 12 are fixedly installed within the body 11. The electrically operated telescopic arms 12 are self-extending. A first motor 13 is fixedly installed at the extension end of each electrically operated telescopic arm 12. The first motor 13 can be either a servo motor or a stepper motor. The output shaft of the first motor 13 is fixedly connected to a propeller 14. When the hoisting flight mechanism 2 is not in flight, the electrically operated telescopic arms 12 reduce the overall volume of the hoisting flight mechanism 2 by driving the first motor 13 to move. The first motor 13 provides lift to the hoisting flight mechanism 2 by driving the propeller 14 to rotate.
[0033] In one embodiment, a gimbal 15 is fixedly mounted on the body 11. The gimbal 15 includes a first frame fixedly connected to the body 11, a second motor fixedly connected to the first frame, and a camera 16 fixedly connected to the output shaft of the second motor.
[0034] In one embodiment, the electric telescopic arm 12 is fixedly connected to a side baffle 17, and a cover frame B18 adapted to the side baffle 17 is fixedly installed on the body 11. By setting the side baffle 17 to provide lateral protection for the propeller 14, the side baffle 17 and the first motor 13 move together under the drive of the electric telescopic arm 12. As the side baffle 17 slides into contact with the cover frame B18, the cover frame B18 closes one end of the side baffle 17, thereby preventing the propeller 14 from being exposed to rain for a long time and preventing birds from directly feeding the propeller 14, thus protecting the propeller 14.
[0035] In one embodiment, the wind power mechanism 7 includes a second electric telescopic rod 19 fixedly installed inside the housing 4. A limit frame 20 is fixedly installed at the moving end of the second electric telescopic rod 19. The limit frame 20 is rotatably connected to a sleeve shaft 21 that is slidably connected to a rectangular rod 6. Wind turbine blades 22 are fixedly connected to the sleeve shaft 21. The number of wind turbine blades 22 can be four or eight sets. A drive wheel 23 is fixedly connected to the rectangular rod 6. The drive wheel 23 is connected to a driven wheel 25 via a transmission belt 24. The driven wheel 25 is connected to a rotating sound-generating mechanism 8. A tensioner 26 connected to the transmission belt 24 is installed on the cover frame A. Driven by the second electric telescopic rod 19, the limiting frame 20 moves downward, causing the wind turbine blade 22 to move into the external environment. Driven by the wind, the wind turbine blade 22 drives the sleeve shaft 21 to rotate, and the sleeve shaft 21 drives the rectangular rod 6 to rotate. Driven by the rectangular rod 6, the driving wheel 23 rotates, and the driving wheel 23 drives the driven wheel 25 to rotate through the transmission belt 24. Under the tension of the tensioner 26, the transmission belt 24 is in a taut state. Driven by the driven wheel 25, the rotating sound-generating mechanism 8 rotates to generate sound.
[0036] In one embodiment, the tensioner 26 includes an elastic telescopic structure connected to the cover frame A, and the elastic telescopic structure is rotatably connected to a roller body connected to the drive belt 24. The tensioner 26 is used to tension the drive belt 24.
[0037] In one embodiment, the rotating sound-generating mechanism 8 includes a rotating seat 27 fixedly connected to the cover frame A. A rotating frame 28 is rotatably connected to the rotating seat 27. The rotating frame 28 is fixedly connected to a driven wheel 25. A bell 29 is connected to the rotating frame 28 via a pull rope. The driven wheel 25 drives the rotating frame 28 to rotate, and the rotating frame 28 drives the bell 29 to move via the pull rope. The bell 29 vibrates and produces sound, and the rotating frame 28 and the rotating seat 27 rotate relative to each other.
[0038] Example 2, based on Example 1, see [link / reference] Figure 1 and Figure 3The self-locking clamping mechanism 10 includes a guide rail frame 30 fixedly connected to the housing 4. A dual-output shaft motor 31 is fixedly connected to the guide rail frame 30. A lead screw 32 is fixedly mounted on the output shaft of the dual-output shaft motor 31. The lead screw 32 is threadedly connected to a linkage frame 33 that is slidably connected to the guide rail frame 30. A clamping arm 34 is fixedly connected to the linkage frame 33. Driven by the dual-output shaft motor 31, the lead screw 32 rotates and drives the linkage frame 33 to slide along the guide rail frame 30, thereby adjusting the distance between the clamping arms 34. The clamping arms 34 can be used to clamp steel structures on communication towers or to clamp bird nests.
[0039] Working process: The hoisting flight mechanism 2 lifts the box body 4 through the connecting frame 1. As the hoisting flight mechanism 2 moves, the box body 4 moves towards the communication tower and approaches the bird perched on the tower. The self-locking clamping mechanism 10 clamps the steel structure of the communication tower, thereby allowing the energy-reducing bird deterrent mechanism 3 to clamp onto the communication tower and approach the bird. Driven by the second electric telescopic rod 19, the limiting frame 20 moves down, causing the wind turbine blades 22 to move into the external environment. Driven by wind power, the wind turbine blades 22 drive the sleeve shaft 21 to rotate, which in turn drives the rectangular rod 6 to rotate. The rectangular rod 6 then drives the output shaft of the generator 5 to rotate, thereby generating electricity to power the invention. Driven by the rectangular rod 6, the drive wheel 23 rotates, and the drive wheel 23... The driven belt 24 drives the driven wheel 25 to rotate, and under the tension of the tensioner 26, the driven belt 24 is in a taut state. The driven wheel 25 drives the rotating frame 28 to rotate. The rotating frame 28 drives the bell 29 to move through the pull rope, and the rotating frame 28 and the rotating seat 27 rotate relative to each other. Driven by the first electric telescopic rod 9, the cover frame A slides out of the box 4. At this time, the rotating sound-generating mechanism 8 is used to disturb the birds. When the birds have already built nests on the communication tower, the rotating sound-generating mechanism 8 is used to disturb the birds and make them leave the communication tower. Then, the hoisting flight mechanism 2 hoists the energy-reducing bird-repelling mechanism 3 to the bird's nest through the connecting frame 1. Then, the self-locking clamping mechanism 10 is used to clamp the bird's nest. As the hoisting flight mechanism 2 descends, the bird's nest lands, thereby guiding the birds to the ground.
[0040] Although embodiments of the invention have been shown and described, those skilled in the art will understand that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the claims and their equivalents.
Claims
1. A bird-repelling device for communication towers, comprising a connecting frame, characterized in that, Also includes: A hoisting flight mechanism fixedly connected to a connecting frame, the hoisting flight mechanism including a body fixedly connected to the connecting frame, at least four sets of electric telescopic arms fixedly installed in the body, a first motor fixedly connected to the electric telescopic arms, and a propeller fixedly connected to the output shaft of the first motor; A bird-repelling mechanism with reduced energy output is fixedly connected to a connecting frame. The mechanism includes a housing fixedly connected to the connecting frame, a generator installed inside the housing, a rectangular rod fixedly connected to the generator's output shaft, a wind-powered mechanism connected to the rectangular rod, a rotating sound-generating mechanism connected to the wind-powered mechanism, and a cover frame A slidably connected to the housing. The rotating sound-generating mechanism is mounted on the cover frame A. A first electric telescopic rod is installed between the cover frame A and the housing. The wind-powered mechanism includes a second electric telescopic rod fixedly installed inside the housing. A limit frame is fixedly installed at the moving end of the second electric telescopic rod. The limit frame rotates... A sleeve shaft is slidably connected to a rectangular rod, and a wind turbine blade is fixedly connected to the sleeve shaft. A drive wheel is fixedly connected to the rectangular rod, and a driven wheel is connected to the drive wheel via a transmission belt. The driven wheel is connected to a rotating sound-generating mechanism. A tensioner connected to the transmission belt is installed on the cover frame A. The tensioner includes an elastic telescopic structure connected to the cover frame A. A roller connected to the transmission belt is rotatably connected to the elastic telescopic structure. The rotating sound-generating mechanism includes a rotating seat fixedly connected to the cover frame A. A rotating frame is rotatably connected to the rotating seat. The rotating frame is fixedly connected to the driven wheel, and a bell is connected to the rotating frame via a pull rope. A self-locking clamping mechanism fixedly connected to the box body, the self-locking clamping mechanism includes a guide rail frame fixedly connected to the box body, a dual-output shaft motor fixedly connected to the guide rail frame, a lead screw fixedly installed on the output shaft of the dual-output shaft motor, a linkage frame slidably connected to the lead screw and the guide rail frame, and a clamping arm fixedly connected to the linkage frame. The clamping arm can be used to clamp the steel structure on the communication tower, and can also be used to clamp the Bird's Nest. Speakers are fixedly installed on both sides of the box.
2. The bird-repelling device for communication towers according to claim 1, characterized in that, A gimbal is fixedly mounted on the machine body, and a camera is connected to the gimbal.
3. The bird-repelling device for communication towers according to claim 1, characterized in that, The electric telescopic boom is fixedly connected to a side baffle, and a cover frame B adapted to the side baffle is fixedly installed on the machine body.
Citation Information
Patent Citations
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