Intelligent parking apron for parking spaces
By installing pillars and landing pads above parking spaces, the intelligent landing pads solve the problems of drones occupying indoor space and the inconvenience of unified site access, enabling convenient take-off and landing of drones and direct access to goods, thus improving space utilization and operational efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-01
- Publication Date
- 2026-03-24
AI Technical Summary
Existing drone landing pads occupy indoor space and the unified site is inconvenient for storage and retrieval, making it difficult to meet the convenience requirements of express delivery.
A smart helipad is installed above the parking spaces, consisting of pillars, a helipad platform, and a lifting device. The pillars are connected to the helipad platform, and the lifting device is used for people or goods to move up or down. It is equipped with cameras and cleaning devices to enable real-time monitoring and service.
It solves the problems of drone landing pads occupying indoor space and the inconvenience of unified site access, improves living convenience and space utilization, and ensures the safety and operational efficiency of drone take-off and landing.
Smart Images

Figure CN224031507U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to unmanned plane supporting facility field, especially in parking space intelligence apron. BACKGROUND
[0002] With the rapid development of global informationization and e-commerce, the total amount of express trade in China continues to grow. In 2018, the total amount of express business in China broke through 5 billion, and the daily express volume reached 140 million, the newly added trade volume had a huge impact on the traditional logistics industry, and the existing logistics network could not meet the requirements of people on logistics speed due to the restriction of traffic environment and labor cost, and the urban low-altitude traffic resources could well solve the limitation of urban traffic network, so the intelligent logistics based on unmanned plane distribution appeared.
[0003] At present, when the logistics is distributed, the goods are usually placed in the express trolley, and the delivery personnel rides a bicycle to deliver the goods to the express station, and when people drive to the parking space, they need to walk to the express station to take the express, which is time-consuming and laborious.
[0004] In recent years, the practicality of express service using aircraft (hereinafter collectively referred to as "aircraft") such as drones or unmanned aerial vehicles (UAV: Unmanned Aerial Vehicle) has been developed. The aircraft (hereinafter collectively referred to as multi-rotor) commonly known as multi-rotor, which has multiple propellers, does not need a runway for takeoff and landing like a conventional fixed-wing aircraft, so it can be used in a relatively narrow place and is suitable for transportation services such as express delivery.
[0005] In the delivery realized by the aircraft, the existing design is to deliver to a residence, an apartment, a mansion, a hotel or a unified unmanned plane station. Delivering to a residence, an apartment, a mansion, a hotel or a unified unmanned plane station, it is known to deliver goods using a window or a balcony. However, this method requires indoor space resources, and the known window or balcony usually has a window frame or a handrail structure, which is difficult to believe that it is suitable for the entry of the aircraft. In addition, in the case where the aircraft contacts the structure, it is possible to cause damage to the structure or the aircraft; and the unified unmanned plane station delivery has the problem of inconvenient access.
[0006] Therefore, it is necessary to improve the unmanned plane distribution site to solve the problems of independent apron occupying indoor space and unified site access inconvenience existing in the existing unmanned plane apron. SUMMARY
[0007] Therefore, the utility model aims at providing a parking space intelligent apron to solve the problems of independent apron occupying indoor space and unified site access inconvenience existing in the existing unmanned plane apron. Therefore, the utility model aims at providing a parking space intelligent apron to solve the problems of independent apron occupying indoor space and unified site access inconvenience existing in the existing unmanned plane apron.
[0008] Parking space is an important part of modern urban infrastructure, which mainly serves the parking needs of motor vehicles, and is widely set in residential areas, commercial areas, office areas, hospitals, scenic spots and other places, and follows the guidance of "Urban Road In-parking Space Setting Specification". According to the new standard, the design of parking space is mainly divided into two sizes: large and small. The large parking space is 15.6 meters long and 3.25 meters wide, which is suitable for parking medium and large vehicles. The small parking space is 6 meters long and 2.5 meters wide, which is designed for small vehicles. In addition, there are three ways to layout the parking space: parallel, inclined (inclination angles include 30 degrees, 45 degrees and 60 degrees) and vertical. The standard type parking space size is 6 meters long and 2.5 meters wide. The inclined length of the inclined parking space is 6 meters, the width is 2.8 meters, and the vertical distance between the two inclined lines needs to be kept at the standard of 2.5 meters. The length of the vertical parking space should reach 5 meters or more, usually designed as 6 meters long and 2.5 meters wide. Such setting makes the parking space occupy a larger area in the city, and the upper space utilization rate of the parking space is not high, which causes serious waste of resources.
[0009] Therefore, setting an intelligent parking apron on the parking space for unmanned aerial vehicle landing can not only solve the problem of occupying indoor space resources of independent parking apron, but also solve the problem of inconvenient access to goods existing in unified site, can directly access goods before and after parking, and helps to improve the convenience of people's life and space utilization rate.
[0010] To achieve the above purpose, the technical scheme of the utility model is as follows:
[0011] An intelligent parking apron of a parking space is arranged above the parking space, comprising a plurality of columns, a parking board and a lifting device, the plurality of columns are vertically arranged on the boundary line of the parking space, one end of the column away from the parking space is connected with the parking board, and the lifting device is arranged on one side of the parking space and used for lifting the parking board.
[0012] Further, the cross section of the column is rectangular, square or circular, and the length of the column ranges from 1 to 5 m.
[0013] Further, the cross section of the parking board is one of rectangular, square, parallelogram, triangle, circle and ellipse, the parking board is provided with a parking platform, the parking platform is provided with an identifier, and the identifier is used to mark the position of the unmanned aerial vehicle landing.
[0014] Further, at least two parking platforms are arranged on the parking board.
[0015] Further, the area of the parking board accounts for 50%-200% of the area of the parking space, and the area of the parking platform accounts for 5%-80% of the area of the parking board.
[0016] Further, the lifting device is one of a staircase, an elevator, a hydraulic lifting platform or an electric lifting platform, and the lifting device is arranged at a side of the parking space away from the vehicle access.
[0017] Further, the lifting device is arranged at a side of the lifting device away from the column, and the guardrail is arranged at the side of the lifting device away from the column.
[0018] Further, the intelligent parking apron is arranged above two or more parking spaces.
[0019] Further, the parking apron is further provided with a camera, and the camera is used for monitoring the intelligent parking apron in real time.
[0020] Further, the parking apron is provided with a fence, and the fence is connected with the lifting device to enclose the parking apron.
[0021] Compared with the prior art, the intelligent parking apron of the parking space has the following advantages:
[0022] 1. The intelligent parking apron arranged on the parking space is used for unmanned aerial vehicle taking off and landing, which can solve the problem of occupying indoor space resources of independent parking apron and the problem of inconvenient access to articles of unified site, and can directly access articles before and after parking, which is helpful to improve the convenience of people's life and the space utilization rate.
[0023] 2. The monitoring device can monitor the use of the intelligent parking apron in real time, facilitate monitoring of the unmanned aerial vehicle taking off and landing and article storage, and improve safety, management and operation efficiency.
[0024] 3. The height-adjustable column and the foldable lifting device can expand the use occasions of the intelligent parking apron, facilitate people to adjust the intelligent parking apron according to the vehicle size and the environment around the parking space, and meet the diverse use requirements of people.
[0025] 4. The cleaning device arranged below the parking apron can provide convenient vehicle cleaning service, and fully utilize the space resources, so that the use efficiency of the intelligent parking apron can be improved, and more convenient service can be provided. BRIEF DESCRIPTION OF DRAWINGS
[0026] The accompanying drawings, which form a part of the present application, are included to provide a further understanding of the application, and are incorporated herein for purposes of illustrating the illustrative embodiments of the present application and the explanations provided herein. In the drawings:
[0027] Figure 1 is a product structure schematic view of the present application;
[0028] Figure 2 The utility model discloses a product structure schematic diagram with fence.
[0029] Mark explanation:
[0030] 1, post; 2, stop machine board; 3, lifting device; 4, guardrail; 5, parking space; 6, stop machine platform; 7, mark; 8, camera; 9, fence; 10, fence. DETAILED DESCRIPTION
[0031] In order to make the technical means and reach the purpose and effect of the utility model easy to understand, the embodiments of the utility model are described in detail below combined with specific drawings.
[0032] It should be noted that all the terms for indicating directionality and positional in the utility model, such as "up", "down", "left", "right", "front", "back", "vertical", "horizontal", "inner", "outer", "top", "low", "transverse", "longitudinal", "center" and the like, are only used to explain the relative positional relationship, connection condition and the like between components in a certain state, and are only for the convenience of describing the utility model, and thus cannot be understood as a limitation on the utility model. In addition, the description of "first", "second" and the like in the utility model is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features.
[0033] In the description of the utility model, unless otherwise explicitly specified and limited, the terms "mount", "connect", "connection" should be understood broadly, for example, can be fixed connection, can be detachable connection, or integrally connected; can be mechanical connection; can be directly connected, or indirectly connected through intermediate medium; can be the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0034] In the description of the specification, the description of the terms "one embodiment", "some embodiments", "illustrative embodiment", "example", "specific example" or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are contained in at least one embodiment or example of the utility model. In the specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0035] The utility model discloses a kind of intelligent parking apron of parking space, parking apron is set on the upper of parking space 5, including multiple columns 1, parking board 2 and lifting device 3, multiple columns 1 vertically set on the sideline of parking space 5, the end of column 1 away from parking space 5 is connected with parking board 2, lifting device 3 is set on the side of parking space 5, for personnel or object to go up and down parking board 2.
[0036] Multiple columns 1 can play the role of supporting parking board 2, ensure that parking board 2 is stably hung on the upper of parking space 5, avoid that partial pressure is too large that parking board 2 appears uneven stress, the problem of parking board 2 damage, while parking board 2 as the take-off and landing platform of unmanned aerial vehicle, can be used for temporary storage of unmanned aerial vehicle goods, and parking board 2 is located on the upper of parking space 5, does not affect the use of parking space 5, can make full use of the space of parking space 5, personnel can directly take goods after getting off, avoid the problem of taking goods by detour, personnel utilize lifting device 3 to go up and down parking board 2, convenient for the taking and placing of goods, the later maintenance of equipment.
[0037] The setting parking space intelligent parking apron makes full use of the space resources on the upper of existing parking space 5, without extra land occupation, does not affect the parking and taking of vehicle, improves space utilization.
[0038] Specifically, the cross section of column 1 can be rectangular, square or circular, and the length of column 1 ranges from 1 to 5 meters.
[0039] When the cross section of column 1 is rectangular or square, column 1 has good rigidity and can provide strong support in vertical and horizontal square, which is suitable for high stability scenarios and can be solid or hollow structure; when column 1 is circular, it has good torsional performance, can uniformly disperse load and reduce stress concentration, and is suitable for scenarios requiring good wind resistance and aesthetic appearance, and can select hollow steel pipe or solid steel bar.
[0040] The length of column 1 is selected between 1 and 5 meters, which can meet the height requirements of most parking spaces and facilitate wide range of use.
[0041] The setting can ensure the stability and safety of the parking space intelligent parking apron, meet the height requirements of most parking spaces for different mechanical properties and application scenarios.
[0042] Preferably, the height of column 1 can be adjusted by adjusting bolt or telescopic design, so that the application range is wider, and the horizontal of parking board 2 can be ensured.
[0043] The design height adjustment structure of column 1 can reduce the model specification of parking apron, so that the application range is wider, meet the installation requirements of various vehicles and environments, prevent the influence of unmanned aerial vehicle take-off and landing caused by uneven parking board 2, and ensure the safety of personnel and goods.
[0044] Preferably, the material of the column 1 can be steel, aluminum alloy or composite material.
[0045] Specifically, the cross section of the parking board 2 can be one of rectangular, square, parallelogram, triangle, circle and ellipse, and the parking board 2 is provided with a parking platform 6, and the parking platform 6 is provided with a mark 7, which is used to indicate the position of the UAV landing.
[0046] The parking board 2 is provided with various cross-sectional shapes, and the rectangular, square and parallelogram can better adapt to the shape of the parking space 5, facilitate manufacturing and installation, the triangle can save materials and reduce weight, and the circle and ellipse have better aesthetics and can be applied to specific occasions.
[0047] The parking platform 6 is arranged at the center or a proper position of the parking board 2, which can ensure the stable landing of the UAV, and the mark 7 arranged on the parking platform 6 can facilitate the identification of the UAV and remind personnel to avoid accidents.
[0048] The parking board 2 can be customized according to specific application scenarios and requirements to provide different structures and visual effects, and the design of the parking platform 6 and the mark 7 ensures the smooth take-off and landing of the UAV and facilitates the safety and accuracy of the UAV during take-off and landing.
[0049] Preferably, the parking platform 6 can be circular, rectangular or elliptical, and the mark 7 can be "V", "X" or "P".
[0050] Specifically, the parking board 2 is provided with at least two parking platforms 6.
[0051] By arranging multiple parking platforms 6, multiple UAVs can be simultaneously taken off and landed, supporting multiple UAVs to work cooperatively in the same area, covering a larger area in a short time, and in a long-time task, multiple UAVs can be rotated to perform tasks to ensure continuous operation. At the same time, in a limited space, multiple parking platforms 6 can be arranged reasonably to maximize the use of space.
[0052] The arrangement can greatly improve the speed and efficiency of task completion through the cooperative work of multiple UAVs, can flexibly allocate tasks, adjust the flight plan according to the actual situation, even if one UAV fails, other UAVs can still continue to perform tasks to ensure the continuity and reliability of the task, and through the cooperation of multiple UAVs, the labor cost can be reduced and the economic benefit can be improved.
[0053] Specifically, the area of the parking platform 6 accounts for 5%-80% of the area of the parking board 2, and the area of the parking board 2 accounts for 50%-200% of the area of the parking space 5.
[0054] The reasonable area ratio can ensure that the unmanned aerial vehicle has enough space when taking off and landing, and reduce the possibility of accidents. By adjusting the area ratio of the parking platform 6 and the parking board 2, the optimal space utilization can be achieved in a limited space. The larger area of the parking board 2 can provide a better support structure to ensure the stability of the parking platform 6.
[0055] The setting can achieve optimal space utilization in a limited space by optimizing the area ratio, which not only ensures the operation space but also does not waste resources. When the area of the parking board 2 is larger, it can provide a better support structure to ensure the stability of the parking platform 6 and improve the overall stability of the system. The flexible design can adapt to different application scenarios and meet diverse needs, improving the applicability and flexibility of the system.
[0056] Specifically, the parking board 2 is provided with a fence 9, and the fence 9 is connected with the lifting device 3 to enclose the parking board 2.
[0057] The fence 9 can prevent the unmanned aerial vehicle and personnel from sliding or falling on the parking board 2, isolate the external environment, and reduce the influence of external factors on the operation of the unmanned aerial vehicle.
[0058] The setting improves the safety of the unmanned aerial vehicle parking, taking off and landing, reduces the risk of operation failure or damage caused by external interference, and reduces the risk of accidental falling of personnel.
[0059] Preferably, the height of the fence 9 from the parking board 2 is not less than 1.2m.
[0060] Specifically, the fence 9 is provided with a fence 10 at the platform connected with the parking board 2, and the fence 10 is connected with the fence 9 and the guardrail 4 at both ends, respectively, for preventing personnel or objects from falling.
[0061] Specifically, the column 1 and the parking board 2 are connected by one of welding connection, screw connection or clamping connection.
[0062] The welding connection has the advantages of high strength and good reliability, and is suitable for scenes that need long-term stable support. The screw connection is a connection method that fixes two parts together by screws. This method has high flexibility, and is convenient for disassembly and maintenance. The clamping connection is a way of fixing parts together by buckles or other similar mechanisms. This method is suitable for scenes that need to be quickly installed and disassembled.
[0063] The setting selects the appropriate connection method to ensure the stability and reliability of the intelligent parking apron, while considering the convenience of installation and maintenance.
[0064] Specifically, the height of the fence 10 is greater than the height of the fence 9.
[0065] Specifically, four posts 1 are provided, and the four posts 1 are respectively arranged on the edges of the parking space 5, which can be located at the four corners, can be located on two parallel edges of the parking space 5, or can be located on three adjacent edges of the parking space 5.
[0066] The four posts 1 are respectively located at the four corners of the parking space, and the four posts 1 can evenly distribute the weight of the parking board 2, provide better stability, do not occupy too much central space of the parking space 5, facilitate vehicle parking, and the symmetrical layout looks more neat and beautiful, and is suitable for standard rectangular or square parking spaces 5.
[0067] The four posts 1 are respectively located at the four corners of the parking space, and the four posts 1 can evenly distribute the weight of the parking board 2, provide better stability, do not occupy too much central space of the parking space 5, facilitate vehicle parking, and the symmetrical layout looks more neat and beautiful, and is suitable for standard rectangular or square parking spaces 5.
[0068] The four posts 1 are respectively located at the four corners of the parking space, and the four posts 1 can evenly distribute the weight of the parking board 2, provide better stability, do not occupy too much central space of the parking space 5, facilitate vehicle parking, and the symmetrical layout looks more neat and beautiful, and is suitable for standard rectangular or square parking spaces 5.
[0069] The four posts 1 are respectively located at the four corners of the parking space, and the four posts 1 can evenly distribute the weight of the parking board 2, provide better stability, do not occupy too much central space of the parking space 5, facilitate vehicle parking, and the symmetrical layout looks more neat and beautiful, and is suitable for standard rectangular or square parking spaces 5.
[0070] Specifically, three posts 1 are provided, and the three posts 1 are respectively arranged on two edges or three edges of the parking space 5.
[0071] The distribution of the three posts 1 can adopt two ends diagonally, one post 1 is arranged on each of the two edges of the parking space 5, and the third post 1 is arranged between the two edges. The two ends can also be arranged in the middle, one post 1 is arranged on each of the two edges of the parking space 5, and the third post 1 is arranged in the middle of one of the edges. One side can also have two ends, and the other side can have a middle, two posts 1 are arranged on one edge of the parking space 5, and one post 1 is arranged in the middle of the other edge.
[0072] By reasonably arranging the three posts 1 and installing them on the two edges of the parking space 5, the stability and safety of the parking board 2 can be ensured. The specific positions of the posts 1 need to be determined according to the size and shape of the parking space 5, and the verticality and flatness of the posts 1 are ensured through accurate measurement and installation. In this way, the intelligent parking apron can effectively support the take-off and landing of the unmanned aerial vehicle and provide a safe and reliable parking environment.
[0073] Specifically, the lifting device 3 is one of a staircase, an elevator, a hydraulic or electric lifting platform.
[0074] The staircase has a fixed structure and relies on human power to climb, with the advantages of low cost and wide application range; the elevator has a closed cabin, is suitable for transporting personnel and goods, is safe and reliable, has high automation degree, saves time and effort; the hydraulic lifting platform realizes stable lifting through a hydraulic system, is stable and reliable, has large load capacity, and is suitable for frequent use; the electric drive realizes lifting, is easy to operate, is energy-saving and environmentally friendly, and is suitable for light load applications.
[0075] The setting of multiple forms of lifting device 3 can meet the needs of different user groups and working conditions in different environments, help to expand the use range of the parking apron, and achieve good use effect.
[0076] Specifically, the lifting device 3 is provided with a guardrail 4 on the side away from the stand column 1, and the guardrail 4 is used for preventing personnel from falling.
[0077] The setting of the guardrail 4 on the side of the lifting device 3 away from the stand column 1 can effectively prevent accidents such as falling when personnel are getting on or off the lifting device 3. The reasonable design of the lifting device 3 and the structure of the guardrail 4 not only improve the safety of the intelligent parking apron, but also provide convenience and comfort for the user and prevent accidents.
[0078] Specifically, the lifting device 3 can be provided on the side of the parking space 5 away from the vehicle access, and the lifting device 3 and the stand column 1 can be fixedly connected or foldably connected.
[0079] The setting of the lifting device 3 on the side of the parking space 5 away from the vehicle access and the selection of fixed or foldable connection mode can effectively improve the safety and practicality of the intelligent parking apron. The fixed lifting device 3 structure is stable and suitable for long-term use; the foldable lifting device 3 is flexible and convenient, suitable for scenarios that need to save space or temporary use. The reasonable design of the lifting device 3 and the connection mode not only improve the safety of the intelligent parking apron, but also provide convenience and comfort for the user.
[0080] Specifically, the lifting device 3 can be provided on the side of the parking space 5 adjacent to the vehicle access.
[0081] Although the setting of the lifting device 3 on the side of the parking space 5 adjacent to the vehicle access may increase the complexity of vehicle access, it may be a necessary choice in some application scenarios. For example, when the space of the parking space 5 is relatively limited or for design considerations, it may be reasonable to set the lifting device 3 on this side.
[0082] The setting expands the use range of the intelligent parking apron, making it adapt to more complex parking space 5 environments and facilitating better promotion and use.
[0083] Specifically, the parking apron 2 is further provided with a camera 8, and the camera 8 is used for real-time monitoring of the parking apron.
[0084] The setting can realize real-time monitoring of the intelligent parking apron by setting the camera 8 on the parking apron 2 and matching a complete monitoring system, so as to facilitate monitoring of the take-off and landing of the unmanned aerial vehicle and the storage of the goods, and improve the safety, management and operation efficiency. The reasonable position, type selection and installation mode of the camera 8, together with the efficient video transmission, storage and management system, ensure the clarity and reliability of the monitoring picture.
[0085] Specifically, the intelligent parking apron can be arranged above two or more parking spaces 5.
[0086] The intelligent parking apron is arranged above two or more parking spaces 5, so that the intelligent parking apron has a parking apron 2 with a larger area, can take off and land a larger size unmanned aerial vehicle, and a larger number of unmanned aerial vehicles, thereby improving the size range and capacity of the unmanned aerial vehicle goods transportation, and reserving sufficient space for later expansion of the function of the intelligent parking apron.
[0087] Specifically, the two or more parking spaces 5 can be adjacent or not adjacent.
[0088] Specifically, a cleaning device is arranged below the parking apron 2, and the cleaning device is used for cleaning the vehicle.
[0089] The cleaning device is installed below the parking apron 2, and when the vehicle is parked in the parking space 5, the cleaning device can clean the vehicle from below. The cleaning device can be a water spraying system, which sprays high-pressure water through a nozzle to clean the vehicle; or a foam system, which uses a foaming agent to clean the surface of the vehicle to improve the cleaning effect; or a brushing system, which installs a rotating brush to physically clean the surface of the vehicle.
[0090] The setting can provide convenient vehicle cleaning services for users by arranging the cleaning device below the parking apron 2, and fully utilizes the space resources. The design of the water spraying system, the foam system, the brushing system, the control system and the drainage system ensures the effectiveness and safety of the cleaning device, so as to not only improve the use efficiency of the intelligent parking apron, but also provide more convenient services for users.
[0091] Specifically, the parking apron further comprises a charging pile, a lighting system, a communication system and an emergency system, the charging pile is used for charging new energy vehicles, the lighting system is used to ensure the safety of night take-off and landing, the communication system is used to support the communication between the unmanned aerial vehicle and the ground control center, and the emergency system is used to improve the emergency response capability.
[0092] The setting can provide all-round services and supports for users by integrating charging piles, lighting systems, communication systems and emergency systems on the intelligent apron.
[0093] The above is only a preferred embodiment of the present application, and is not intended to limit the present application, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A smart helipad for parking spaces, wherein the smart helipad is installed above the parking space (5), characterized in that, It includes multiple columns (1), a parking plate (2) and a lifting device (3). The multiple columns (1) are vertically arranged on the edge line of the parking space (5). The end of the column (1) away from the parking space (5) is connected to the parking plate (2). The lifting device (3) is arranged on one side of the parking space (5) for allowing people or objects to get on and off the parking plate (2).
2. The intelligent helipad for parking spaces according to claim 1, characterized in that, The column (1) has a rectangular, square or circular cross section, and the length of the column (1) is between 1 and 5m.
3. The intelligent helipad for parking spaces according to claim 2, characterized in that, The landing plate (2) has a cross-section that is one of rectangle, square, parallelogram, triangle, circle, or ellipse. A landing platform (6) is provided on the landing plate (2), and a marker (7) is provided on the landing platform (6). The marker (7) is used to indicate the landing position of the UAV.
4. The intelligent helipad for parking spaces according to claim 3, characterized in that, At least two parking platforms (6) are provided on the parking plate (2).
5. The intelligent helipad for parking spaces according to claim 3, characterized in that, The area of the parking plate (2) accounts for 50%-200% of the area of the parking space (5), and the area of the parking platform (6) accounts for 5%-80% of the area of the parking plate (2).
6. The intelligent helipad for parking spaces according to claim 1, characterized in that, The lifting device (3) is one of a staircase, elevator, hydraulic lifting platform or electric lifting platform, and the lifting device (3) is located on the side of the parking space (5) away from the vehicle entry and exit.
7. The intelligent helipad for parking spaces according to claim 6, characterized in that, The lifting device (3) is provided with a guardrail (4) on the side away from the column (1), and the guardrail (4) is used to protect people from falling.
8. The intelligent helipad for parking spaces according to claim 1, characterized in that, The intelligent helipad is located above two or more of the aforementioned parking spaces (5).
9. The intelligent helipad for parking spaces according to claim 1, characterized in that, A camera (8) is installed on the helipad (2), and the camera (8) is used to monitor the helipad in real time.
10. The intelligent helipad for parking spaces according to claim 1, characterized in that, A fence (9) is provided on the stop plate (2), and the fence (9) is connected to the lifting device (3) to surround the stop plate (2).