METHOD OF CONTROLLING DRONE WITH AIRBAG AND DRONE WITH AIRBAG
20210053691 ยท 2021-02-25
Inventors
Cpc classification
B64D2201/00
PERFORMING OPERATIONS; TRANSPORTING
B64C39/024
PERFORMING OPERATIONS; TRANSPORTING
B64U70/83
PERFORMING OPERATIONS; TRANSPORTING
B64D25/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
To provide a drone with an airbag that can eliminate the danger of the drone injuring a person in the event of the drone crashing mid-flight including during takeoff and landing. The present invention is equipped with an airbag 3 for reducing the impact of a crashed drone 2 colliding with a person. Prior to the drone 2 taking off, the airbag 3 can be inflated by being supplied with gas. Once the drone 2 has taken off and reached a required altitude, the airbag 3 deflates due to the gas being exhausted. When the drone 2 is mid-flight and in danger of crashing, the airbag 2 can be inflated instantly by being supplied with gas. Prior to the drone 2 landing, the airbag 3 can be inflated by being supplied with gas.
Claims
1. A method of controlling a drone with an airbag in which the drone is provided with the airbag for absorbing a shock when the drone is crashed and collides with the other things, the method comprising the steps of: making the airbag be inflated by supplying a gas to the airbag prior to the drone take off the ground; making the airbag in a deflated state by discharging the gas in the airbag after the drone reaches the predetermined attitude; making the airbag be inflated by supplying the gas to the airbag in the deflated state prior to the drone landing on the ground; and making the airbag be instantaneously inflated by supplying the gas to the airbag in the deflated state when a danger of the drone being crashed is generated during the flight of the drone.
2. A drone with an airbag, wherein the drone is provided with an airbag which absorbs a shock when the drone is crashed and collides with the other things, and a first inflation control portion and a second inflation control portion which control the inflation of the airbag, wherein the gas is supplied to the airbag and the airbag can be inflated on the basis of a control of the first inflation control portion prior to the drone taking off the ground, the gas in the airbag is discharged on the basis of the control of the first inflation control portion after the drone reaches the predetermined altitude, whereby the airbag is in the deflated state, and the gas is supplied to the airbag in the deflated state on the basis of the control of the first inflation control portion prior to the drone landing on the ground, whereby the airbag can be inflated, and wherein during the flight of the drone, the airbag in the deflated state can be inflated instantaneously by the gas supply on the basis of the control of the second inflation control portion, and the inflation on the basis of the control is performed before the drone collides with the other things.
3. A drone with an airbag, wherein the drone is provided with an airbag which absorbs a shock when the drone is crashed and collides with the other things, and a first inflation control portion and a second inflation control portion which control the inflation of the airbag, wherein the gas is supplied to the airbag and the airbag can be inflated on the basis of a control of the first inflation control portion prior to the drone taking off the ground, the gas in the airbag is discharged on the basis of the control of the first inflation control portion after the drone reaches the predetermined altitude, whereby the airbag is in the deflated state, and the gas is supplied to the airbag in the deflated state on the basis of the control of the first inflation control portion prior to the drone landing on the ground, whereby the airbag can be inflated, wherein during the flight of the drone, the airbag in the deflated state can be inflated instantaneously by the gas supply on the basis of the control of the second inflation control portion, and the inflation on the basis of the control is performed before the drone collides with the other things, wherein the drone further comprises a pressure regulating means for regulating a pressure so as to prevent a gas pressure of the airbag from going beyond an allowable value in a case where the second inflation control portion is activated during the period when the first inflation control portion is activated.
4. The drone with the airbag according to claim 2, wherein the first inflation control portion is constructed by a motor-driven pump, and is adapted to make the airbag be inflated on the basis of a gas supply action by the pump and make the airbag be deflated on the basis of a gas discharge action by the pump, and the second inflation control portion is constructed by including an inflator and a trigger device, and is adapted to make the airbag in the deflated state be instantaneously inflated on the basis of the gas supply from the inflator.
5. The drone with the airbag according to claim 2, wherein the airbag is constructed by a first airbag which surrounds the drone in a horizontal surface, and a second airbag which surrounds the drone in a vertical surface, the first airbag and the second airbag can be inflated simultaneously by the gas supply action on the basis of the control of the first inflation control portion or the second inflation control portion, and can be deflated simultaneously by the gas discharge action on the basis of the control of the first inflation control portion.
6. A drone with an airbag, wherein the drone is provided with an airbag which absorbs a shock when the drone is crashed and collides with the other things, and a first inflation control portion and a second inflation control portion which control the inflation of the airbag, wherein the gas is supplied to the airbag and the airbag can be inflated on the basis of a control of the first inflation control portion prior to the drone taking off the ground, the gas in the airbag is discharged on the basis of the control of the first inflation control portion after the drone reaches the predetermined altitude, whereby the airbag is in the deflated state, and the gas is supplied to the airbag in the deflated state on the basis of the control of the first inflation control portion prior to the drone landing on the ground, whereby the airbag can be inflated, and wherein during the flight of the drone, the airbag in the deflated state can be inflated instantaneously by the gas supply on the basis of the control of the second inflation control portion, the inflation on the basis of the control is performed before the drone collides with the other things, the airbag is constructed by a first airbag which surrounds the drone in a horizontal surface, and a second airbag which surrounds the drone in a vertical surface, the second airbag is arranged in each of right and left sides of the drone, and the right and left second airbags are rotatable in a clockwise direction or a counterclockwise direction around a vertical axis.
7. A drone with an airbag, wherein the drone is provided with an airbag which absorbs a shock when the drone is crashed and collides with the other things, and a first inflation control portion and a second inflation control portion which control the inflation of the airbag, wherein the gas is supplied to the airbag and the airbag can be inflated on the basis of a control of the first inflation control portion prior to the drone taking off the ground, the gas in the airbag is discharged on the basis of the control of the first inflation control portion after the drone reaches the predetermined altitude, whereby the airbag is in the deflated state, and the gas is supplied to the airbag in the deflated state on the basis of the control of the first inflation control portion prior to the drone landing on the ground, whereby the airbag can be inflated, and wherein during the flight of the drone, the airbag in the deflated state can be inflated instantaneously by the gas supply on the basis of the control of the second inflation control portion, the inflation on the basis of the control is performed before the drone collides with the other things, the airbag is constructed only by a first airbag which surrounds the drone in a horizontal surface, or includes the first airbag, and the first airbag is arranged in a plurality of stages at desired intervals in a vertical direction.
8. A drone with an airbag, wherein the drone is provided with an airbag which absorbs a shock when the drone is crashed and collides with the other things, and a first inflation control portion and a second inflation control portion which control the inflation of the airbag, wherein the gas is supplied to the airbag and the airbag can be inflated on the basis of a control of the first inflation control portion prior to the drone taking off the ground, the gas in the airbag is discharged on the basis of the control of the first inflation control portion after the drone reaches the predetermined altitude, whereby the airbag is in the deflated state, and the gas is supplied to the airbag in the deflated state on the basis of the control of the first inflation control portion prior to the drone landing on the ground, whereby the airbag can be inflated, and wherein during the flight of the drone, the airbag in the deflated state can be inflated instantaneously by the gas supply on the basis of the control of the second inflation control portion, the inflation on the basis of the control is performed before the drone collides with the other things, the airbag is constructed only by a second airbag which surrounds the drone in a vertical surface, or includes the second airbag, and the second airbag is arranged in a plurality of stages at desired intervals in a horizontal direction.
9. The drone with the airbag according to claim 3, wherein the pressure regulating means is adapted to stop the gas supply by the first inflation control portion.
10. The drone with the airbag according to claim 3, wherein the pressure regulating means is an automatic relief valve provided in the airbag.
11. The drone with the airbag according to claim 3, wherein the first inflation control portion is constructed by a motor-driven pump, and is adapted to make the airbag be inflated on the basis of a gas supply action by the pump and make the airbag be deflated on the basis of a gas discharge action by the pump, and the second inflation control portion is constructed by including an inflator and a trigger device, and is adapted to make the airbag in the deflated state be instantaneously inflated on the basis of the gas supply from the inflator.
12. The drone with the airbag according to claim 3, wherein the airbag is constructed by a first airbag which surrounds the drone in a horizontal surface, and a second airbag which surrounds the drone in a vertical surface, the first airbag and the second airbag can be inflated simultaneously by the gas supply action on the basis of the control of the first inflation control portion or the second inflation control portion, and can be deflated simultaneously by the gas discharge action on the basis of the control of the first inflation control portion.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
Embodiment 1
[0058]
[0059] Further, the gas is supplied to the airbag 3 in the deflated state on the basis of the control of the first control portion 5 prior to the drone 2 landing on the ground, and the airbag 3 can be accordingly inflated. Further, during the flight of the drone 2, the airbag 3 in the deflated state can be instantaneously inflated by the gas supply on the basis of the control of the second inflation control portion 6, and the inflation on the basis of the control is performed before the drone 2 collides with the other things.
[0060] Further, a pressure regulating means is provided for regulating the pressure so that a gas pressure of the airbag 3 does not go beyond an allowable value in a case where the second inflation control portion 6 is activated during the activation of the first inflation control portion 5. The airbag 3 is constructed by a first airbag 7 which surrounds the drone 2 in a horizontal surface, and second airbags 9 which surround the drone 2 in a vertical surface, as shown in
[0061] The drone 2 is provided with a rotary vane 10 which generates a lift force, as shown in
[0062] Four arm parts 13, 13, 13 and 13 are radially provided in a protruding manner in a side surface portion 12 of the central mounting part 11 at an angle pitch of about 90 degree in the horizontal surface, as shown in
[0063] Further, as shown in
[0064] Further, a first airbag 7 (one embodiment of the airbag 3) is accommodated in the accommodation part 25 as shown in
[0065] The first holding part 17 is arranged via a first support part 32 which is provided in a protruding manner in the central mounting part 11, as shown in
[0066] Further, in the present embodiment, as shown in
[0067] The accommodation part 45 has such a shape that an inlet part 49 arranged between a front side part 46 of the left side piece 42 and a front side part 47 of the right side piece 43 is somewhat narrowed. Further, the second airbag 9 (one embodiment of the airbag 3) which can be elastically inflated and elastically deflated is accommodated in the accommodation part 45 as shown in
[0068] The second holding part 37 is structured, as shown in
[0069] Further, as shown in
[0070] The first inflation control portion 5 makes the first and second airbags 7 and 9 be simultaneously inflated as shown in
[0071] When the first and second airbags 7 and 9 are in a desirably inflated state as mentioned above, it is not necessary to further supply the gas to the first and second airbags 7 and 9. Therefore, the second inflation control portion 6 is adapted to be not activated by a detection signal of a gas pressure detector (not shown) detecting a gas pressure of the first and second airbags 7 and 9.
[0072] Further, after the drone 2 rise safely and reaches a predetermined altitude, the gas in the first and second airbags 7 and 9 is sucked and discharged by the pump via the piping 65 on the basis of the control of the first inflation control portion 5, and the first and second airbags 7 and 9 simultaneously come to a deflated state as shown in
[0073] When the drone 2 comes to the uncontrollable state due to the trouble in the air frame and the influence of the abnormal weather and the radio disturbance and the risk of being crashed is generated in the drone 2 during the period when the drone 2 flies as mentioned above, the trigger device is activated on the basis of the control by the second inflation control portion 6, and the gas from the inflator is supplied to the first and second airbags 7 and 9 in the deflated state via the piping 65 coupled to the supply suction port 63. As a result, the first and second airbags 7 and 9 can be instantaneously inflated, and the inflation according to the control is performed before the drone 2 collides with the other things such as the person. Therefore, even if the crashed drone 2 collides with the other things such as the person, it is possible to effectively prevent the danger that the drone injures the person.
[0074] Further, when the drone 2 is ready for landing, the gas is supplied to the first airbag 7 and the second airbag 9 via the piping 65 coupled to the supply suction port 63 of the pump on the basis of the control of the first inflation control portion 5, whereby the first and second airbags 7 and 9 are simultaneously inflated. When inflating the first and second airbags 7 and 9 in this manner, the second inflation control portion 6 may be activated during the activation of the first inflation control portion 5. In this case, when the allowable pressures of the first and second airbags 7 and 9 are set, the pressure regulating means provided in the drone regulates pressure in such a manner that the gas pressure of the first and second airbags 7 and 9 does not go beyond the allowable values. After the drone 2 lands on the ground, the gas in the first and second airbags 7 and 9 is sucked and discharged by the pump via the piping 65 on the basis of the control of the first inflation control portion 5 as occasion demands, and the first and second airbags 7 and 9 simultaneously come to the deflated state as shown in
[0075] As one of the pressure regulating means, there can be employed a means which stops the gas supply by the first inflation control portion 5 and continues the gas supply by the second inflation control portion 6. This is because it is necessary to instantaneously inflate the first and second airbags 7 and 9 while giving high priority to the gas supply by the second inflation control portion 6.
[0076] Further, as the other of the pressure regulating means, there can be employs a means which automatically discharges the gas by an automatic relief valve provided in the first and second airbags 7 and 9 when the gas pressure in the first and second airbags 7 and 9 goes beyond the allowable value while continuing the gas supply by the first and second inflation control portions 5 and 6. Even in this structure, the first and second airbags 7 and 9 can be instantaneously inflated on the basis of the gas supply mainly achieved by the second inflation control portion 6.
[0077] In a case where the second inflation control portion 6 is activated during the, activation of the first inflation control portion 5 when inflating the first and second airbags 7 and 9, the pressure regulation is not required as long as the first and second airbags 7 and 9 can stand against the gas pressure which is simultaneously supplied by the activation of the first and second inflation control portion.
[0078] In
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[0080]
[0081] Since only one second airbag 9 is provided in the present embodiment, a width of the second airbag 9 in an inflated state is preferably set to be wider, for example, as shown in
[0082] For that reason, for example, as shown in
[0083] In the present embodiment, a lower end part 81 of the leg part 79 is constructed by a soft foamable resin, and the lower end 80 is structured such as to somewhat protrude to a lower side of a lower end part 82 of the second airbag 9 in the inflated state, in a state in which the second airbag 9 is inflated as shown in
[0084] Accordingly, although the drone 2 is provided with the leg part 79, it is possible to prevent the drone 2 from injuring the person as much as possible even if the lower end 80 hits against the person when the drone 2 is crashed.
Embodiment 3
[0085] The present invention is not limited to the structures shown by the embodiments mentioned above, but can be design changed variously within the scope of claims.
[0086] (1) The the second airbag 9 can be variously structured according to an intended use such as monitoring, transferring and spraying. For example, it is possible to freely set a shape of the central mounting part 11 and an arranged state and the number of the rotary vane 10.
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[0088] In a case where the protective frame 83 and the protective frame 84 are provided as mentioned above, the protective frames 83 and 84 may be used for constructing the first support part 32. In
[0089] (2) A shape and a magnitude of the airbag 3, an attached and arranged state to the drone 9 and an attaching means for the drone 9 can allow the drone 9 to take off and land on the ground even in a state in which the airbag 3 is inflated, and are desirably structured such as to effectively prevent the danger that the drone 9 injures the person in a case where the drone 9 is crashed and collides with the other things such as the person and the building.
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[0091] The first airbag 7 is provided so as to surround the drone 2 in the horizontal surface and is in the inflated state, and a shape of the first airbag 7 in a plan view is variously set according to the shape of the drone 2 in addition to the circular ring shape mentioned above. For example, in a case where the number of the arm part 13 is set to three in an angular pitch, the shape of the first airbag 7 in the inflated state in the plan view may be set to a triangular ring shape. Further, in a case where the number of the rotary vane 10 is intended to be increased for generating a greater lift force, the number of the arm part 13 protruded outward from the central mounting part 11 is increased. In a case where the number is, for example, five, six or eight, the shape of the first airbag 7 in the inflated state in the plan view may be set to a pentagonal ring shape, a hexagonal ring shape, an octagonal ring shape, and an oval ring shape in addition to the circular ring shape. Further, the shape may be set to a shape such as a quadrangular ring shape in a case where the number of the arm part 13 is four as mentioned above. In a case where the shape of the first airbag 7 in the inflated state in the plan view is set to the other shape than the circular ring shape, the shape of the first holding part 17 is set so, and the inflated state of each of the parts of the first airbag 7 is different, so that such a ring shape may be set. Same applies to the second airbag 9.
[0092] In the drone with the airbag 1 shown in
[0093] (3) As long as the first airbag 7 can effectively prevent the danger when the crashed drone collides with the other things such as the person, the first airbag 7 is not essentially provided continuously in the horizontal plane, but may be provided intermittently with spaces, for example, as shown in
[0094] (4) The distance between the upper and lower ends 85 (
[0095] For example, in a case where the degree of protrusion in the lower surface part of the central mounting part 2 is great, the distance for the lower part 89 can be set to be larger. On the contrary, in a case where the degree of protrusion in the upper surface part of the central mounting part 2 is great, the distance for the upper part 87 can be set to be larger.
[0096] The protruding state of the second airbag 9 as mentioned above can be set by deviating the center of the second holding part 37 to the lower side in relation to the center 86 of the central mounting part 11 or deviating the center of the second holding part 37 to the upper side, in a case where the second holding part 37 is formed into the oval ring shape, for example, as shown in
[0097] (5) The first airbag 7 may be structured, for example, as shown in
[0098] (6) The second airbag 9 may be structured, for example, as shown in
[0099] (7) As shown in
[0100] (8)
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[0102] (9) As the means for instantaneously inflating the first airbag 7 and the second airbag 9 in the folded state, it is possible to employ a means for inflating by using a simplified gas cylinder and a means for inflating by using an air feeding means constructed by a pump utilizing a motor, in addition to the means for inflating by using the inflator mentioned above.
[0103] (10) As a material of the airbag 3, it is possible to employ a sheet made of a resin material such as polyurethane, vinyl chloride and nylon, and a textile using the same and coated on an inner surface thereof with a resin for enhancing a gas tightness, in addition to the rubber mentioned above.
[0104] (11) In the first airbag 7, the first airbags 7 surrounding the drone 2 in the horizontal surface may be provided in plural stages at desired intervals in a vertical direction as long as the first airbag 7 allows the drone 2 to take off and land on the ground even in a state in which the airbag 3 is inflated, and can effectively prevent the danger that the drone 2 injures the person in a case where the drone 2 is crashed and collides with the other things such as the person and the building. Further, the second airbags 9 surrounding the drone in the vertical surface may be provided in plural columns at desired intervals in a horizontal direction.
[0105] (12) The control portion for inflating the first and second airbags 7 and 9 and the control portion for deflating them may be constructed by independent devices.
[0106] (13) The airbag 3 such as the first and second airbags 7 and 9 may be in an exposed state without being accommodated in the accommodation parts 25 and 45 in the deflated state thereof.
REFEERENCE SIGNS LIST
[0107] 1 drone with airbag
[0108] 2 drone
[0109] 3 airbag
[0110] 5 first inflation control portion
[0111] 6 second inflation control portion
[0112] 7 first airbag
[0113] 9 second airbag
[0114] 10 rotary vane
[0115] 11 central mounting part
[0116] 13 arm part
[0117] 17 first holding part
[0118] 25 accommodation part
[0119] 32 first support part
[0120] 37 second holding part
[0121] 45 accommodation part
[0122] 62 second support part