Unmanned aerial vehicle balcony take-off and landing platform
By installing a support frame and telescopic components on the balcony, the problems of drones hitting debris and being difficult to operate when taking off and landing on the balcony are solved, enabling safe and convenient take-off and landing of drones and improving the user experience.
Patent Information
- Application Number
- CN202520255480.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-18
AI Technical Summary
In the current technology, drones lack the necessary conditions for take-off and landing on balconies. The design of a balcony take-off and landing platform makes it easy for drones to collide with debris during take-off and landing, resulting in complex operation and poor safety.
A drone balcony take-off and landing platform is provided, including a support frame, a telescopic component, and a drone platform. The drone platform can be moved away from or closer to the balcony by the telescopic movement of the telescopic component. A protective structure is set to prevent the drone from slipping, reducing the difficulty of operation and improving safety.
The drone platform can land away from the balcony without being affected by clutter, is easy to operate, improves the user experience, reduces the risk of damage, and enhances safety and ease of operation.
Smart Images

Figure CN223672834U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to unmanned plane field especially, it relates to a unmanned plane balcony landing platform. BACKGROUND
[0002] Unmanned plane is the inoperated aircraft of using radio remote control equipment and self -provided program control device, in recent years, remote control unmanned plane appears more and more, for example: multi -rotor unmanned plane, by its small and nimble characteristics are widely used in photography, take the evidence, remote exploration even military field.
[0003] In the use process of domestic unmanned plane, the operator generally selects the balcony to take off and land unmanned plane when flying at home, but the domestic balcony of general user lacks the take-off and landing condition of unmanned plane, and the balcony railing and so on of the potted plant, the clothes of sunning on the balcony can limit the take-off and landing of unmanned plane, and when taking off and landing unmanned plane on the balcony, the distance between the operator and unmanned plane is usually close, taking off and landing unmanned plane on the balcony not only can easily cause unmanned plane to hit sundries and damage, even has certain security risk to the operator, in addition, unmanned plane is easy to search for satellite signal in the process of taking off and landing in the room or the balcony, and an accident occurs, taking off and landing unmanned plane on the balcony has higher technical requirements to the operator, and the operator is more complex, and the experience of the operator is poor. UTILITY MODEL CONTENT
[0004] The utility model aims at providing a unmanned plane balcony landing platform, and aims at at least solving one of the technical problems in the prior art.
[0005] In order to realize the above-mentioned purpose, the technical scheme of the utility model provides a unmanned plane balcony landing platform, which comprises:
[0006] A support frame;
[0007] A telescopic assembly, the telescopic assembly comprises a fixed end and a telescopic end, the fixed end is connected with the support frame; and
[0008] An unmanned plane platform, the unmanned plane platform is connected with the telescopic end, so that the unmanned plane platform is extended to a first position away from the balcony or is retracted to a second position close to the balcony through the extension or retraction movement of the telescopic assembly, wherein the first position is farther away from the balcony than the second position.
[0009] Further, the telescopic direction of the telescopic assembly is substantially parallel to the horizontal plane, so that the unmanned plane platform moves along the horizontal direction to the first position when the telescopic assembly extends, and the unmanned plane platform moves along the horizontal direction to the second position when the telescopic assembly retracts.
[0010] Further, a protection structure is arranged on the unmanned plane platform, and the protection structure comprises:
[0011] a support claw, which is arranged on the UAV platform;
[0012] a surrounding net, which is arranged on the support claw to at least partially cover the outer peripheral area of the UAV platform.
[0013] Further, a plurality of the support claws are arranged on the UAV platform in a circumferential direction.
[0014] Further, the length direction of the support claw is arranged to extend substantially radially outwardly from the UAV platform.
[0015] Further, the support claw and the UAV platform are detachable.
[0016] Further, the support claw comprises a fixed portion, a middle portion and a free end, the fixed portion and the free end are both bent upwardly relative to the middle portion, and the height of the free end is higher than that of the fixed portion.
[0017] Further, the UAV platform is of a hollow structure to form a plurality of wind holes on the UAV platform.
[0018] Further, the center of the bottom of the UAV platform is connected to the end of the telescopic end through a support structure.
[0019] Further, the telescopic assembly comprises:
[0020] a telescopic frame, which is capable of being extended or retracted;
[0021] a driving member, which is drivingly connected to the telescopic frame to automatically extend or retract the telescopic frame through the driving of the driving member.
[0022] From the above technical scheme can be seen, the utility model discloses a unmanned aerial vehicle balcony landing platform, through the support frame fixed mounting on the balcony, and the support frame provides stable support for telescopic component and unmanned aerial vehicle platform, telescopic component can be in the extension or contraction movement, to move unmanned aerial vehicle platform at the side away from the balcony or to the side close to the balcony, when the unmanned aerial vehicle needs to be landed, control telescopic component extension makes it in the extension state, and unmanned aerial vehicle platform is in the first position, when unmanned aerial vehicle platform is away from the balcony, and unmanned aerial vehicle landing will not be influenced by other sundries, reduced the difficulty of user operation unmanned aerial vehicle, improved user experience, and after unmanned aerial vehicle parking is completed, through control telescopic component contraction movement to make telescopic component in the contraction state, and unmanned aerial vehicle platform is in the second position, when unmanned aerial vehicle platform is close to the balcony, and it is convenient for user to take back unmanned aerial vehicle, and the same reason, the unmanned aerial vehicle balcony landing platform thus arranged improves the safety of unmanned aerial vehicle landing, reduces the risk of unmanned aerial vehicle damage, reduces the operation difficulty of user unmanned aerial vehicle on the balcony, improves the experience of user unmanned aerial vehicle.
[0023] In order to make the technical concept and other purposes, advantages, features and effects of the utility model more clear and easy to understand, the preferred embodiments will be described in the following specific embodiments, and the detailed description will be made in the following specific embodiments, and the detailed description will be made in the following specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0024] In order to more clearly illustrate the technical scheme in the embodiments of the utility model, the drawings needed in the embodiment description will be briefly introduced below, and obviously, the drawings in the following description are only some embodiments of the utility model, and those skilled in the art can obtain other drawings according to these drawings without creating labor.
[0025] Figure 1 It is a perspective view of a unmanned aerial vehicle balcony landing platform provided by the embodiment of the application.
[0026] Figure 2 It is a structural exploded view of a unmanned aerial vehicle balcony landing platform provided by the embodiment of the application.
[0027] Figure 3 It is a perspective view of another view of a unmanned aerial vehicle balcony landing platform provided by the embodiment of the application.
[0028] Figure 4 It is a top view of a unmanned aerial vehicle balcony landing platform provided by the embodiment of the application.
[0029] Figure 5 It is a front view of a unmanned aerial vehicle balcony landing platform provided by the embodiment of the application.
[0030] Figure 6is another perspective view of another embodiment of the unmanned aerial vehicle balcony take-off and landing platform provided in the present application;
[0031] Figure 7 is another perspective view of another embodiment of the unmanned aerial vehicle balcony take-off and landing platform provided in the present application;
[0032] Among them, the above drawings include the following reference signs:
[0033] 100, support frame; 110, base; 120, telescopic rod; 121, first component; 122, second component; 130, containing box; 140, frame body; 150, first rod; 160, second rod; 200, telescopic assembly; 210, fixed end; 220, telescopic end; 230, telescopic frame; 231, fixed rod; 232, moving rod; 232a, first sliding rod; 232b, second sliding rod; 240, driving member; 300, unmanned aerial vehicle platform; 311, support claw; 311a, fixed part; 311b, middle part; 311c, free end; 320, wind hole; 330, support structure; 410, support; 411, sliding groove; 413, fixed support shaft; 420, sliding support shaft. DETAILED DESCRIPTION
[0034] In order for those skilled in the art to better understand the technical solutions of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0035] Please refer to Figures 1 to 5 The present embodiment provides an unmanned aerial vehicle balcony take-off and landing platform, the key points of the scheme include a support frame 100, a telescopic assembly 200 and an unmanned aerial vehicle platform 300. The telescopic assembly 200 includes a fixed end 210 and a telescopic end 220. The fixed end 210 is connected with the support frame 100. The unmanned aerial vehicle platform 300 is connected with the telescopic end 220. The unmanned aerial vehicle platform 300 is extended to a first position away from the balcony or retracted to a second position close to the balcony through the extension or retraction movement of the telescopic assembly 200. The first position is farther away from the balcony than the second position. In this way, the unmanned aerial vehicle platform 300 is extended to the open area outside the balcony for unmanned aerial vehicle take-off and landing, effectively solving the problem of searching for satellite signals during indoor take-off and landing of the unmanned aerial vehicle.
[0036] It can be seen that the unmanned aerial vehicle balcony landing platform, by fixing and installing the support frame 100 on the balcony, the support frame 100 provides stable support for the telescopic assembly 200 and the unmanned aerial vehicle platform 300, the telescopic assembly 200 can be in extension or contraction movement to move the unmanned aerial vehicle platform 300 away from the balcony or towards the balcony, when the unmanned aerial vehicle needs to land, the telescopic assembly 200 is controlled to extend so as to be in an extended state, and the unmanned aerial vehicle platform 300 is in the first position, at this time, the unmanned aerial vehicle platform 300 is away from the balcony, and the unmanned aerial vehicle landing will not be affected by other sundries, thereby reducing the difficulty of the user in operating the unmanned aerial vehicle, improving the user experience, and after the unmanned aerial vehicle is parked, the telescopic assembly 200 is controlled to contract to make the telescopic assembly 200 be in a contracted state, and the unmanned aerial vehicle platform 300 is in the second position, at this time, the unmanned aerial vehicle platform 300 is close to the balcony, thereby facilitating the user in taking and recycling the unmanned aerial vehicle, and the same applies to the take-off of the unmanned aerial vehicle, the unmanned aerial vehicle balcony landing platform thus arranged improves the safety of the landing unmanned aerial vehicle, reduces the risk of damage of the unmanned aerial vehicle, reduces the operation difficulty of the user in landing the unmanned aerial vehicle on the balcony, and improves the user experience in landing the unmanned aerial vehicle.
[0037] Preferably, when the unmanned aerial vehicle platform 300 is in the first position, the unmanned aerial vehicle platform 300 is in the balcony, and when the unmanned aerial vehicle platform 300 is in the second position, the unmanned aerial vehicle platform 300 is outside the balcony.
[0038] In the embodiment, as shown in the drawings, Figures 1 to 5 The support frame 100 includes a frame body 140, a first rod 150 and a second rod 160, wherein the second rod 160 can move in the first rod 150 towards the side close to the frame body 140 or away from the frame body 140 to form an installation space between the second rod 160 and the frame body 140, the support frame 100 can be installed on the balcony wall through the installation space, a plurality of fixing holes are formed on the first rod 150 and are arranged at intervals along the length direction of the first rod 150, a plurality of matching holes corresponding to the fixing holes are formed on the second rod 160, the second rod 160 is fixed and installed on the first rod 150 by passing a pin shaft through the fixing holes and the matching holes, so as to adjust and fix the size of the installation space to match the thickness of the balcony wall, and the installation of the support frame 100 on the balcony wall can reduce the occupied space of the unmanned aerial vehicle balcony landing platform.
[0039] In another embodiment, as shown in the drawings, Figures 6 to 7As shown, the support frame 100 comprises a base 110, a telescopic rod 120 and a receiving box 130, the base 110 can be placed on the balcony, the telescopic rod 120 comprises a first member 121 and a second member 122, the first member 121 is provided with a plurality of first positioning holes in the length direction, the second member 122 is provided with a second positioning hole, the first member 121 is connected with the base 110, and the second member 122 is connected with the receiving box 130 so that the receiving box 130 can move up and down, the receiving box 130 is used to accommodate the telescopic assembly 200 by penetrating the shaft into the first positioning hole and the second positioning hole to fix the height of the receiving box 130.
[0040] Further, please refer to Figures 1 to 5 , the telescopic direction of the telescopic assembly 200 is substantially parallel to the horizontal plane, so that when the telescopic assembly 200 is extended, the UAV platform 300 moves horizontally to the first position, and when the telescopic assembly is contracted, the UAV platform 300 moves horizontally to the second position.
[0041] Among them, the telescopic direction of the telescopic assembly 200 is substantially parallel to the horizontal plane, which ensures that the UAV platform 300 remains horizontal during telescoping, avoiding shaking or instability of the UAV during take-off and landing due to platform inclination, thereby improving the safety of UAV take-off and landing.
[0042] Preferably, please refer to Figures 2 to 5 , the UAV platform 300 is provided with a protection structure, the protection structure comprises a support claw 311 and a surrounding net, the support claw 311 is arranged on the UAV platform 300, and the surrounding net is arranged on the support claw 311 to at least partially cover the outer peripheral area of the UAV platform 300.
[0043] In this embodiment, the support claw 311 is provided with a buckle structure, and the outer peripheral edge of the surrounding net is installed on the support claw 311 through the buckle structure, wherein the buckle structure is a prior art which will not be described in detail here, and in other embodiments, the surrounding net can also be installed on the support claw 311 by binding, pasting and hooking.
[0044] Among them, the protection structure composed of the support claw 311 and the surrounding net can effectively prevent the UAV from accidentally sliding or falling during take-off and landing, thereby reducing the risk of UAV damage, especially in the environment of limited space such as balcony and possible wind disturbance, the protection structure provides additional safety guarantee.
[0045] Preferably, please refer to Figures 1 to 5 , the support claw 311 is provided with a plurality of support claws 311, and the plurality of support claws 311 are arranged on the UAV platform 300 in a circumferential direction.
[0046] The support claws 311 are arranged along the circumference of the unmanned aerial vehicle platform 300 and combined with the encircling net to form a stable protection frame, which not only enhances the overall structural strength of the unmanned aerial vehicle platform 300, but also provides better support and stability during take-off and landing of the unmanned aerial vehicle.
[0047] Further, please refer to Figures 1 to 5 The length direction of the support claw 311 is arranged to extend outward along the radial direction of the unmanned aerial vehicle platform 300.
[0048] The support claw 311 extends outward along the radial direction of the unmanned aerial vehicle platform 300, which can cover a larger area and provide more comprehensive protection for the unmanned aerial vehicle, preventing the unmanned aerial vehicle from sliding out of the platform range due to deviation or wind force during take-off and landing, and further reducing the risk of damage to the unmanned aerial vehicle.
[0049] Preferably, the support claw 311 and the unmanned aerial vehicle platform 300 are detachable.
[0050] The support claw 311 and the unmanned aerial vehicle platform 300 are detachable, and the user can flexibly install or detach the support claw 311 according to actual needs. The detachable design makes it more convenient to maintain and replace the support claw 311, and the detachable structure enables the unmanned aerial vehicle balcony landing platform to adapt to different use scenarios. For example, in the case of small wind force or a relatively safe environment, the user can detach the support claw 311 to simplify the structure; in the case of large wind force or a complex environment, the user can quickly install the support claw 311 to enhance the protection function. During packaging and transportation, the detachable support claw 311 can occupy less packaging space, saving packaging and transportation costs and improving efficiency.
[0051] In this embodiment, please refer to Figures 1 to 5 The support claw 311 includes a fixed part 311a, a middle part 311b and a free end 311c. The fixed part 311a and the free end 311c are both bent upward relative to the middle part 311b, and the height of the free end 311c is higher than the height of the fixed part 311a.
[0052] The fixed part 311a and the free end 311c are bent upward to form a structure similar to a fence, which can effectively prevent the unmanned aerial vehicle from accidentally falling or deviating during take-off and landing, especially in the case of large wind force or improper operation, further reducing the risk of damage to the unmanned aerial vehicle.
[0053] Further, please refer to Figures 1 to 5 The unmanned aerial vehicle platform 300 is a hollow structure to form a plurality of wind holes 320 on the unmanned aerial vehicle platform 300.
[0054] Wherein, in the process of UAV landing, the wind will produce force on the UAV. The wind passage hole 320 formed by the hollow structure can make the wind pass through the UAV platform 300 more smoothly, reduce the platform's obstruction to the wind, reduce the turbulence generated by the wind on the platform surface, thereby reducing the interference of the wind on the attitude of the UAV during landing, improving the stability and safety of the UAV landing. Compared with the solid structure, the hollow structure reduces the material usage of the UAV platform 300, thereby reducing the weight of the platform itself. The lighter UAV platform 300 facilitates the extension and contraction movement of the telescopic assembly 200, reduces the load requirement of the telescopic assembly 200, prolongs the service life of the telescopic assembly 200, and also reduces the energy consumption of the entire UAV balcony landing platform.
[0055] Further, as shown in Figure 3 , the center position of the bottom of the UAV platform 300 is connected with the end of the telescopic end 220 through the support structure 330.
[0056] Wherein, by connecting the center position of the bottom of the UAV platform 300 with the end of the telescopic end 220 through the support structure 330, the risk of the UAV platform 300 overturning is reduced, and the stability of the UAV platform 300 is improved.
[0057] In this embodiment, please refer to Figures 1 to 5 , the telescopic assembly 200 includes a telescopic frame 230 and a driving member 240, the telescopic frame 230 can be extended or contracted, and the driving member 240 is drivingly connected with the telescopic frame 230 to drive the telescopic frame 230 to extend or contract through the driving member 240.
[0058] Wherein, the driving member 240 is an electric push rod, which is an existing functional component, the telescopic frame 230 includes a fixed rod 231 and a moving rod 232, to drive the moving rod 232 to extend or contract in the fixed rod 231 through the electric push rod, wherein the moving rod 232 includes a first sliding rod 232a and a second sliding rod 232b, another electric push rod is arranged on the first sliding rod 232a and the second sliding rod 232b, so that the second sliding rod 232b can extend or contract on the first sliding rod 232a, and the electric drive of the telescopic frame 230 to extend or contract makes the operation of the user more relaxed, and the multi-section moving rod 232 makes the telescopic frame 230 can extend longer.
[0059] In another embodiment, as shown in Figures 6 to 7As shown, the driving member 240 is an electric push rod, the telescopic frame 230 comprises a pair of supports 410 and a folding member, one support 410 is installed on the bottom of the unmanned aerial vehicle platform 300, and the other support 410 is installed on the support frame 100, sliding grooves 411 are formed in the supports 410, fixed support shafts 413 and sliding support shafts 420 are arranged on the supports 410, the sliding support shafts 420 are slidably installed in the sliding grooves 411, the folding member is connected with the two supports 410 at two ends, the folding member is connected with the fixed support shafts 413 and the sliding support shafts 420 at two sides of one end, and the electric push rod is drivingly connected with the sliding support shafts 420, so that the sliding support shafts 420 are slid in the sliding grooves 411 by the electric push rod, and the folding member is unfolded or folded, the scissor structure of the folding member is prior art and will not be described in detail, of course, other existing drawer type folding structures can also be used.
[0060] It should be noted that the telescopic assembly 200 of the embodiment can also use other existing length telescopic structures, and any equivalent replacement of the function and structure of the telescopic assembly 200 is within the protection scope of the utility model.
[0061] From the above description, it can be seen that the above-mentioned embodiments of the utility model realize the following technical effects: the support frame 100 is fixedly installed on the balcony, the support frame 100 provides stable support for the telescopic assembly 200 and the unmanned aerial vehicle platform 300, the telescopic assembly 200 can be in extension or contraction movement to move the unmanned aerial vehicle platform 300 away from the balcony or towards the balcony; when the unmanned aerial vehicle needs to be landed, the telescopic assembly 200 is controlled to be in the extension state, and the unmanned aerial vehicle platform 300 is in the first position, at this time, the unmanned aerial vehicle platform 300 is away from the balcony, and the unmanned aerial vehicle landing will not be affected by other sundries, the difficulty of the user operating the unmanned aerial vehicle is reduced, and the user experience is improved, after the unmanned aerial vehicle is parked, the telescopic assembly 200 is controlled to be in the contraction state through contraction movement, and the unmanned aerial vehicle platform 300 is in the second position, at this time, the unmanned aerial vehicle platform 300 is close to the balcony, and the user can conveniently take the recovered unmanned aerial vehicle, and the same is true for the take-off unmanned aerial vehicle, the unmanned aerial vehicle balcony landing platform thus arranged improves the safety of the unmanned aerial vehicle landing and taking off, reduces the risk of damage of the unmanned aerial vehicle, reduces the operation difficulty of the user landing and taking off the unmanned aerial vehicle on the balcony, and improves the user experience of landing and taking off the unmanned aerial vehicle.
[0062] It should be noted that the terms used herein are only for describing specific embodiments and are not intended to limit the exemplary embodiments according to the present application. As used herein, the singular form is intended to include the plural form, unless the context clearly indicates otherwise, and it should also be understood that, when the terms "comprise" and / or "include" are used in the specification, there is a presence of a feature, step, operation, device, component and / or a combination thereof.
[0063] The foregoing merely illustrates the principles of the application. It will be apparent to those skilled in the art that the application can be practiced with modifications and alterations, and embodiments incorporating the principles of the application can be used in diverse formats within the scope of the application as recited in the following claims. Thus, the foregoing description is by way of example only, and is not intended to be limiting. The following claims are intended to be construed to include one or more embodiments alike.
[0064] The above is the preferred embodiment of the present application, it should be pointed out that, for those skilled in the ordinary technical personnel in the art, without departing from the principles of the present application, under the premise of, can make a number of improvements and refinements, these improvements and refinements also as the protection scope of the present application.
Claims
1. A drone balcony landing pad, characterized by, The utility model relates to a balcony unmanned aerial vehicle platform, which comprises: a support frame (100); a telescopic assembly (200) comprising a fixed end (210) and a telescopic end (220), the fixed end (210) being connected with the support frame (100); and an unmanned aerial vehicle platform (300) connected with the telescopic end (220) to extend to a first position away from the balcony or retract to a second position close to the balcony through the extension or retraction of the telescopic assembly (200), wherein the first position is further away from the balcony than the second position.
2. The drone balcony landing pad of claim 1, wherein, The telescopic direction of the telescopic assembly (200) is substantially parallel to the horizontal plane, so that the unmanned aerial vehicle platform (300) moves horizontally to the first position when the telescopic assembly (200) extends, and moves horizontally to the second position when the telescopic assembly (200) retracts.
3. The drone balcony landing pad of claim 1, wherein, The unmanned aerial vehicle platform (300) is provided with a protection structure, which comprises: a support claw (311) arranged on the unmanned aerial vehicle platform (300); a surrounding net arranged on the support claw (311) to at least partially cover the outer peripheral area of the unmanned aerial vehicle platform (300).
4. The drone balcony landing pad of claim 3, wherein, The support claw (311) is arranged in multiple, and the multiple support claws (311) are arranged on the unmanned aerial vehicle platform (300) in a circumferential direction.
5. The drone balcony landing pad of claim 3, wherein, The length direction of the support claw (311) extends outward along the radial direction of the unmanned aerial vehicle platform (300).
6. The drone balcony landing pad of claim 3, wherein, The support claw (311) and the unmanned aerial vehicle platform (300) are detachable structures.
7. The drone balcony landing pad of claim 3, wherein, The support claw (311) comprises a fixed part (311a), a middle part (311b) and a free end (311c), the fixed part (311a) and the free end (311c) are both bent upward relative to the middle part (311b), and the height of the free end (311c) is higher than that of the fixed part (311a).
8. The drone balcony landing pad of any one of claims 1 to 7, wherein, The unmanned aerial vehicle platform (300) is a hollow structure to form a plurality of wind holes (320) on the unmanned aerial vehicle platform (300).
9. The drone balcony landing pad of any one of claims 1 to 7, wherein, The center of the bottom of the unmanned aerial vehicle platform (300) is connected with the end of the telescopic end (220) through a support structure (330).
10. The drone balcony landing pad of any one of claims 1-7, wherein, The telescopic assembly (200) comprises: a telescopic frame (230) capable of extending or retracting; a driving member (240) drivingly connected with the telescopic frame (230) to automatically extend or retract the telescopic frame (230) through the driving of the driving member (240).