CN215224267U - Unmanned aerial vehicle laser bird repellent device - Google Patents
Unmanned aerial vehicle laser bird repellent device Download PDFInfo
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- CN215224267U CN215224267U CN202121110092.0U CN202121110092U CN215224267U CN 215224267 U CN215224267 U CN 215224267U CN 202121110092 U CN202121110092 U CN 202121110092U CN 215224267 U CN215224267 U CN 215224267U
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Abstract
The utility model relates to an unmanned aerial vehicle laser bird repellent device relates to unmanned aerial vehicle's field, which comprises a bod, the organism upper surface is provided with the laser box, the laser box is cavity and one end and is the opening setting, laser box inner chamber is provided with a plurality of lasers, laser box open end is provided with and is used for closed open-ended apron, a plurality of launching holes have been seted up to laser box lateral wall, the launching hole sets up with laser box inner chamber intercommunication, the laser beam of laser instrument transmission sees through the launching hole and shines to the organism all around. This application has the effect that can drive the bird at unmanned aerial vehicle flight in-process.
Description
Technical Field
The application relates to the field of unmanned aerial vehicles, especially, relate to an unmanned aerial vehicle laser bird repellent device.
Background
The unmanned plane is called unmanned plane for short, and is an unmanned aerial vehicle operated by radio remote control equipment and a self-contained program control device.
The chinese patent that bulletin number is CN207791181U discloses a many rotor unmanned aerial vehicle, its structure includes that rotary wing, unmanned aerial vehicle drive seat, supporting leg, connecting rod, unmanned aerial vehicle descending damper constitute, and unmanned aerial vehicle drive seat's internal surface is equipped with unmanned aerial vehicle descending damper, and the supporting leg is connected in unmanned aerial vehicle drive seat's lower extreme surface, and rotary wing is connected with unmanned aerial vehicle drive seat through connecting rod.
With respect to the related art among the above, the inventors consider that the following drawbacks exist: when the unmanned aerial vehicle executes high-altitude flight tasks in the bird migration active period, the accident that the flying birds strike the unmanned aerial vehicle easily occurs, and therefore the loss of the unmanned aerial vehicle is caused.
SUMMERY OF THE UTILITY MODEL
In order to improve the problem that unmanned aerial vehicle collided with the flying bird at the flight in-process, this application provides an unmanned aerial vehicle laser bird repellent device.
The application provides a pair of unmanned aerial vehicle laser bird repellent device adopts following technical scheme:
the utility model provides an unmanned aerial vehicle laser bird repellent device, includes the organism, the organism upper surface is provided with the laser box, the laser box is cavity and one end and is the opening setting, laser box inner chamber is provided with a plurality of lasers, laser box open end is provided with and is used for closed open-ended apron, a plurality of launching holes have been seted up to laser box lateral wall, the launching hole communicates the setting with laser box inner chamber, the laser beam of laser instrument transmission sees through the launching hole and shines to the organism all around.
Through adopting above-mentioned technical scheme, at unmanned aerial vehicle flight in-process, the laser beam of laser instrument transmission is launched from the launching hole, make the laser beam shine to the organism all around, because the bird's eye is higher than people's eye to the sensitive degree of light, and the nervous system and the visual system of the birds in the flight are very developed, thereby produced strong stimulation to the bird's eye after shining, can make birds produce the sense of fear and leave rapidly, thereby reduce the probability of bird striking on unmanned aerial vehicle, make unmanned aerial vehicle can fly smoothly, reduce the accident rate.
Optionally, the cross section of the laser box is circular, the plurality of emission holes are circumferentially arranged and distributed along the side wall of the laser box, and the laser is radially arranged along the laser box.
Through adopting above-mentioned technical scheme, be circularly through setting up the laser box, and launch the hole along its circumference distribution to make the laser beam of laser instrument transmission can be on a wider scale shine to unmanned aerial vehicle all around, make fly to unmanned aerial vehicle all around birds can be because laser irradiation and keep away from unmanned aerial vehicle.
Optionally, the laser adopts a starry light source.
By adopting the technical scheme, the laser irradiation coverage of the laser is wider due to the divergence effect of the gypsophila laser beams, so that the bird repelling effect is better.
Optionally, the laser emits green laser light, and has a wavelength of 532nm and an output power of 400 mw.
Through adopting above-mentioned technical scheme, through many times of experiments, 532 nm's green laser beam is the most sensitive to the bird eye, and the green glow is difficult to make birds produce the habituation to make the laser beam can be more smooth carry out the expulsion to the flying bird, prevent that the flying bird striking from causing the unmanned aerial vehicle loss on unmanned aerial vehicle.
Optionally, a screw is threaded through the cover plate, and the screw is in threaded connection with the open end of the laser box.
Through adopting above-mentioned technical scheme, apron and the fixed mode that laser box adopted the screw, make unmanned aerial vehicle flight in-process, the closed laser box opening that the apron can be stable prevents that the laser instrument from falling out, when needs adjustment laser instrument, can conveniently dismantle the screw get off simultaneously to can open the apron fast, adjust the laser instrument, improve work efficiency.
Optionally, a plurality of fixed blocks of laser box inner chamber fixedly connected with, the fixed block sets up the direction along the launching hole, the holding tank that is used for holding the laser instrument is offered to the fixed block, just the holding tank is the opening setting towards the one end in launching hole, the laser instrument is placed in the holding tank, just the transmitting end of laser instrument is towards the open end of holding tank, the apron inner wall pastes in the laser instrument lateral wall.
Through adopting above-mentioned technical scheme, place the laser instrument in the holding tank, restricted the removal of laser instrument, prevent that the laser instrument from removing at will in the laser box, influence driving bird effect of laser instrument, simultaneously when needs take out the laser instrument from the laser box in, also can directly take out the laser instrument from the holding tank, secondly when the apron is closed when laser box opening, the apron inner wall laminates in the laser instrument lateral wall, thereby make unmanned aerial vehicle at the flight in-process, the laser instrument can not shift out from the holding tank.
Optionally, holding tank inner wall fixedly connected with silica gel pad, the laser instrument laminates in silica gel pad.
Through adopting above-mentioned technical scheme, through setting up the silica gel pad, when making the laser instrument place in the holding tank, the silica gel pad can laminate in the laser instrument lateral wall, what make the laser instrument can be stable lies in the holding tank, is difficult to fall out.
Optionally, a sponge pad is fixedly connected to the inner wall of the cover plate, and the sponge pad abuts against the side wall of the laser.
Through adopting above-mentioned technical scheme, when will lapping closed in laser box opening, the foam-rubber cushion can butt in the laser lateral wall to at unmanned aerial vehicle lift in-process, make the foam-rubber cushion play absorbing effect, prevent the laser instrument collision, play the effect of protection laser instrument simultaneously, secondly can make the laser instrument stably be located the holding tank, prevent to remove.
In summary, the present application includes at least one of the following beneficial technical effects:
at unmanned aerial vehicle flight in-process, the laser beam of laser instrument transmission is launched from the launching hole, make the laser beam shine to the organism all around, because the bird's eye is higher than people's eye to the sensitive degree of light, and the nervous system and the visual system of the birds in the flight are very developed, thereby produced strong stimulation to the bird's eye after shining, can make birds produce the sense of fear and leave rapidly, thereby reduce the probability of bird striking on unmanned aerial vehicle, make unmanned aerial vehicle can fly smoothly, reduce the accident rate.
The fixed mode that apron and laser box adopted the screw makes unmanned aerial vehicle flight in-process, and the closed laser box opening that the apron can be stable prevents that the laser instrument from falling out, when needs adjustment laser instrument simultaneously, can conveniently dismantle the screw get off to can open the apron fast, adjust the laser instrument, improve work efficiency.
Through setting up the silica gel pad, when making the laser instrument place in the holding tank, the silica gel pad can laminate in the laser instrument lateral wall, what make the laser instrument can be stable lies in the holding tank, is difficult to fall out.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present application.
Fig. 2 is an exploded view of the laser box and cover plate in the embodiment of the present application.
Fig. 3 is a schematic structural diagram of an inner cavity of a laser box in the embodiment of the present application.
Description of reference numerals: 1. a body; 2. a laser box; 3. a cover plate; 31. a screw; 4. an emission aperture; 5. a fixed block; 51. accommodating grooves; 52. a laser; 53. a silica gel pad; 6. a spongy cushion.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses unmanned aerial vehicle laser bird repellent device. Referring to fig. 1 and 2, an unmanned aerial vehicle laser bird repellent device includes organism 1, and 1 upper surface welding of organism has and is hollow laser box 2, and 2 cross-sections of laser box are circular setting, and 2 upper ends of laser box are the opening. But 2 upper ends of laser box are provided with closed 2 open-ended apron 3 of laser box, and apron 3 is circular setting, and apron 3 wears to be equipped with a plurality of screws 31 along vertical screw thread, and 3 and threaded connection in the open end of laser box 2 are worn to locate by screw 31. A plurality of emission holes 4 have been seted up along its radial to the 2 lateral walls of laser box, and a plurality of emission holes 4 are arranged along 2 circumference equidistance of laser box and are set up, and emission holes 4 and 2 inner chambers of laser box intercommunication.
Referring to fig. 2 and 3, the bottom of the inner cavity of the laser box 2 is welded with a plurality of horizontal fixing blocks 5, the fixing blocks 5 are radially arranged along the laser box 2, and the fixing blocks 5 are equidistantly arranged along the circumferential direction of the laser box 2. Holding tank 51 has been seted up along vertically to fixed block 5, and the one end that holding tank 51 deviates from 2 axle centers of laser box is the opening setting, makes holding tank 51 open end and launch hole 4 align, can place laser instrument 52 in the holding tank 51, and laser instrument 52 is cylindric setting, and the launch end of laser instrument 52 aligns towards holding tank 51 open end and with launch hole 4.
Referring to fig. 2 and 3, a silicone pad 53 is adhered to the accommodating groove 51, and the silicone pad 53 is adhered to the laser 52, so that the laser 52 can be stably placed in the accommodating groove 51. Meanwhile, the sponge pad 6 is bonded on the side wall of the cover plate 3 facing the inner cavity of the laser box 2, so that when the cover plate 3 is closed in the opening of the laser box 2, the sponge pad 6 can abut against the upper surface of the laser 52, and the laser 52 can be located in the accommodating groove 51 more stably.
Referring to fig. 1 and 2, because the structure of bird's eye and the structure of human eye are basically the same, but the bird's eye is more sensitive to light than the human eye, the convergence ability is stronger, and the nervous system and the visual system of birds in flight are developed, the reaction speed is very acute, so through the experiment, the laser 52 emits green laser, adopt 532nm of wavelength, output power 400mw, make the laser beam that the laser 52 emits can be launched out through the launching hole 4, and illuminate around the organism 1, the birds are most sensitive to 532nm of wavelength green laser beam, will not produce the habituation to the green laser, the strong stimulation effect that this kind of laser produced after illuminating bird's eye can make birds produce the sense of fear and leave rapidly. In order to expand the irradiation range of the laser beam, the laser 52 uses a starry light source, so that birds can be repelled in a wider range.
The implementation principle of the unmanned aerial vehicle laser bird repellent device in the embodiment of the application is as follows: unmanned aerial vehicle flight in-process, the laser beam of laser instrument 52 transmission can be followed emission hole 4 and launched, make the starry sky laser beam shine to organism 1 all around, thereby the bird's eye is shone the back by the laser beam, can produce strong stimulation, make birds produce the sense of fear and leave rapidly, thereby reduce the probability of bird striking on unmanned aerial vehicle, make unmanned aerial vehicle can fly smoothly, secondly when needs adjustment laser instrument 52, can dismantle screw 31, thereby can take off apron 3, take out laser instrument 52 from accommodating groove 51, and convenient operation is swift.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides an unmanned aerial vehicle laser bird repellent device which characterized in that: including organism (1), organism (1) upper surface is provided with laser box (2), laser box (2) are cavity and one end and are the opening setting, laser box (2) inner chamber is provided with a plurality of lasers (52), laser box (2) open end is provided with and is used for closed open-ended apron (3), a plurality of emission holes (4) have been seted up to laser box (2) lateral wall, emission hole (4) and laser box (2) inner chamber intercommunication set up, the laser beam of laser (52) transmission sees through emission hole (4) and shines around organism (1).
2. The unmanned aerial vehicle laser bird repellent device of claim 1, characterized in that: the cross-section of the laser box (2) is circular, the emission holes (4) are distributed along the circumferential direction of the side wall of the laser box (2), and the laser (52) is radially arranged along the laser box (2).
3. The unmanned aerial vehicle laser bird repellent device of claim 1, characterized in that: the laser (52) employs a starry light source.
4. The unmanned aerial vehicle laser bird repellent device of claim 1, characterized in that: the laser (52) emits green laser light, and has the wavelength of 532nm and the output power of 400 mw.
5. The unmanned aerial vehicle laser bird repellent device of claim 1, characterized in that: the cover plate (3) is provided with a screw (31) in a threaded manner, and the screw (31) is connected to the opening end of the laser box (2) in a threaded manner.
6. The unmanned aerial vehicle laser bird repellent device of claim 1, characterized in that: laser box (2) inner chamber fixedly connected with a plurality of fixed blocks (5), direction setting is seted up along launching hole (4) in fixed block (5), holding tank (51) that are used for holding laser instrument (52) are seted up in fixed block (5), just holding tank (51) are the opening setting towards the one end of launching hole (4), place in holding tank (51) laser instrument (52), just the transmitting end of laser instrument (52) is towards the open end of holding tank (51), apron (3) inner wall laminating in laser instrument (52) lateral wall.
7. The unmanned aerial vehicle laser bird repellent device of claim 6, characterized in that: holding tank (51) inner wall fixedly connected with silica gel pad (53), laser instrument (52) laminate in silica gel pad (53).
8. The unmanned aerial vehicle laser bird repellent device of claim 1, characterized in that: the inner wall of the cover plate (3) is fixedly connected with a sponge pad (6), and the sponge pad (6) abuts against the side wall of the laser (52).
Priority Applications (1)
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CN202121110092.0U CN215224267U (en) | 2021-05-21 | 2021-05-21 | Unmanned aerial vehicle laser bird repellent device |
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CN202121110092.0U CN215224267U (en) | 2021-05-21 | 2021-05-21 | Unmanned aerial vehicle laser bird repellent device |
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