Multi-person low-altitude flight simulation drilling platform
By designing a multi-person low-altitude flight simulation training platform, the problems of multi-person drone simulation use and parts storage and protection in existing technologies have been solved. It enables multiple people to conduct simultaneous training and protects aerial photography drones, improving the platform's practicality and the convenience of parts.
Patent Information
- Application Number
- CN202520236946.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2035-02-14
AI Technical Summary
Existing simulation platforms are not convenient for multi-person drone simulation and are not convenient for parts storage and protection, thus reducing their practicality.
A multi-person low-altitude flight simulation training platform was designed, including a training platform mechanism, a simulation mechanism, a first protection mechanism, an adsorption mechanism, a second protection mechanism, and a fixing mechanism. These mechanisms enable multiple people to conduct simultaneous training, protect aerial photography drones, and store and fix parts.
It enables simultaneous low-altitude flight simulation exercises for multiple users, improves the platform's practicality, protects aerial drones and components, and enhances the convenience and safety of components.
Smart Images

Figure CN223624668U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of simulation training platforms, and in particular to a multi-person low-altitude flight simulation training platform. Background Technology
[0002] With the rapid development and widespread application of low-altitude aircraft such as drones, the importance of low-altitude airspace management is becoming increasingly prominent. In order to cultivate professional talents with skills in low-altitude airspace management and drone operation, it is necessary to build a ground station training room for low-altitude airspace management.
[0003] Existing simulation platforms, such as the prior art with application number CN202021776546.3, include a base, a six-axis motion platform, an electric cylinder, a mounting base, a fisheye bearing, a simulated cockpit, a windshield, side doors, a simulated propeller, a sunroof, a front window, and a simulated instrument panel, etc. The shape of the simulated cockpit is as similar as possible to that of a real private aircraft, possessing a realistic appearance and a realistic cockpit, allowing players to have a perfect experience and free play.
[0004] However, the existing technology is not convenient for multi-person drone simulation, and it is also not convenient for storing and protecting parts, which reduces its practicality. Utility Model Content
[0005] To solve the above-mentioned technical problems, this utility model provides a multi-person low-altitude flight simulation training platform that facilitates the storage and protection of parts, protects aerial drones, and allows multiple people to practice simultaneously, thus improving its practicality.
[0006] This utility model discloses a multi-person low-altitude flight simulation training platform, comprising a training platform mechanism; it also includes the training platform mechanism, a simulation mechanism, a first protection mechanism, multiple sets of adsorption mechanisms, multiple sets of second protection mechanisms, and multiple sets of fixing mechanisms. The simulation mechanism, the first protection mechanism, the adsorption mechanism, the second protection mechanism, and the fixing mechanisms are all mounted on the training platform mechanism. The training platform mechanism and the simulation mechanism facilitate simultaneous low-altitude flight simulation training for multiple people. The first protection mechanism facilitates the parking and dust protection of aerial photography drones. The adsorption mechanism facilitates the placement of parts, the second protection mechanism facilitates the protection of parts on the adsorption mechanism, and the fixing mechanism facilitates the fixing of the second protection mechanism. The training platform mechanism and the simulation mechanism facilitate multiple people to conduct low-altitude flight simulation training at the same time. The training platform mechanism also facilitates the parking of multiple assembled drones, improving practicality. The first protection mechanism facilitates the parking and dust protection of aerial photography drones, improving the protection of aerial photography drones. The adsorption mechanism facilitates the placement of parts, improving convenience. The second protection mechanism facilitates the protection of parts on the adsorption mechanism, and the fixing mechanism facilitates the fixing of the second protection mechanism.
[0007] Preferably, the training platform includes a base, multiple practice platforms, and multiple assembly drone landing pads. The multiple practice platforms are mounted around the base, and the multiple assembly drone landing pads are respectively mounted on the multiple practice platforms. The practice platforms provide a platform for the adsorption mechanism, and the assembly drone landing pads facilitate the parking of the assembly drones.
[0008] Preferably, the simulation mechanism includes multiple main simulation displays and multiple auxiliary simulation displays. The main simulation displays are respectively installed on various surfaces of the base, and the auxiliary simulation displays are also installed on various surfaces of the base. A wide-angle camera is set between the main simulation displays and the auxiliary simulation displays. The multiple main simulation displays and auxiliary simulation displays facilitate multiple people to conduct low-altitude flight simulation exercises simultaneously, improving practicality. The main simulation displays and auxiliary simulation displays can also improve training quality.
[0009] Preferably, the first protection mechanism includes a drone landing pad and a dust cover. The drone landing pad is installed on the top of the base, and the dust cover can cover the drone landing pad. The drone can be parked on the drone landing pad, and the dust cover can protect the drone on the drone landing pad.
[0010] Preferably, the adsorption mechanism includes a magnetic suction plate and fixing bolts. Multiple adsorption mechanisms are installed on the worktable, and each worktable is equipped with an assembly table. The magnetic suction plate is installed in the assembly table of the worktable by fixing bolts. The magnetic suction plate can magnetically adsorb parts, which facilitates the storage and fixation of parts and improves practicality.
[0011] Preferably, the second protection mechanism includes a slide groove, a sliding protection plate, and an observation window. Multiple sets of the second protection mechanism are installed on multiple operating tables. The operating table is provided with a slide groove, and the sliding protection plate is slidably installed in the slide groove. Limiting plates are provided at both ends of the sliding protection plate, and the observation window is installed on the sliding protection plate. The sliding protection plate slides on the slide groove, which facilitates opening and closing the sliding protection plate. The sliding protection plate protects the parts on the magnetic plate. The limiting plates at both ends of the sliding protection plate prevent the sliding protection plate from slipping out of the slide groove. The observation window facilitates locating the parts on the magnetic plate when the sliding protection plate is closed.
[0012] Preferably, the fixing mechanism includes a fixing box, a fixing block, a spring, and fixing holes. Multiple sets of adsorption mechanisms are installed on multiple operating tables and a sliding protective plate. The fixing box is installed on the operating table, and the fixing block is slidably installed inside the fixing box. The top surface of the fixing block is inclined. The spring connects the inner wall of the fixing box to the fixing block. Fixing holes are installed on the sliding protective plate. When the sliding protective plate is closed, it slides in the groove. Then, the inclined surface of the sliding protective plate and the fixing block are pressed together, causing the fixing block to slide into the fixing box. When the fixing hole aligns with the fixing block, the elasticity of the spring pushes the fixing block into the fixing hole, thereby completing the fixing of the sliding protective plate.
[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: the training platform mechanism and the simulation mechanism facilitate multiple people to conduct low-altitude flight simulation training at the same time, and the training platform mechanism facilitates the parking of multiple assembled drones, improving practicality; the first protection mechanism facilitates the parking and dust protection of aerial photography drones, improving the protection of aerial photography drones; the adsorption mechanism facilitates the placement of parts, improving convenience; the second protection mechanism facilitates the protection of parts on the adsorption mechanism; and the fixing mechanism facilitates the fixing of the second protection mechanism. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the first isometric structure of this utility model;
[0015] Figure 2 This is a schematic diagram of the second isometric structure of this utility model;
[0016] Figure 3 This is a schematic diagram of the third isometric structure of this utility model;
[0017] Figure 4 This is a cross-sectional axonometric structural schematic diagram of this utility model;
[0018] Figure 5 This is the utility model Figure 4 Enlarged structural diagram at point A;
[0019] The attached diagram is labeled as follows: 01, Training platform mechanism; 11, Base; 12, Operating platform; 13, Assembly drone landing pad; 02, Simulation mechanism; 21, Simulation main display; 22, Simulation auxiliary display; 03, First protection mechanism; 31, Aerial photography drone landing pad; 32, Dustproof protective cover; 04, Adsorption mechanism; 41, Magnetic suction plate; 42, Fixing bolt; 05, Second protection mechanism; 51, Slide groove; 52, Sliding protective plate; 53, Observation window; 06, Fixing mechanism; 61, Fixing box; 62, Fixing block; 63, Spring; 64, Fixing hole. Detailed Implementation
[0020] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.
[0021] Example 1
[0022] like Figures 1 to 3 As shown, a multi-person low-altitude flight simulation training platform includes a training platform mechanism 01, and also includes the training platform mechanism 01, a simulation mechanism 02, a first protection mechanism 03, multiple sets of adsorption mechanisms 04, multiple sets of second protection mechanisms 05, and multiple sets of fixing mechanisms 06. The simulation mechanism 02 is installed on the training platform mechanism 01, the first protection mechanism 03 is installed on the training platform mechanism 01, the adsorption mechanism 04 is installed on the training platform mechanism 01, the second protection mechanism 05 is installed on the training platform mechanism 01, and the fixing mechanism 06 is installed on the second protection mechanism 05.
[0023] The training platform mechanism 01 and simulation mechanism 02 facilitate multiple people to conduct low-altitude flight simulation training at the same time. The first protection mechanism 03 facilitates the stopping and dust protection of the aerial photography drone. The adsorption mechanism 04 facilitates the placement of parts. The second protection mechanism 05 facilitates the protection of parts on the adsorption mechanism 04. The fixing mechanism 06 facilitates the fixing of the second protection mechanism 05.
[0024] The training platform structure 01 includes a base 11, multiple practice platforms 12 and multiple assembly drone landing pads 13. The multiple practice platforms 12 are mounted on the base 11 in a ring, and the multiple assembly drone landing pads 13 are mounted on the multiple practice platforms 12 respectively.
[0025] The simulation mechanism 02 includes multiple main simulation displays 21 and multiple auxiliary simulation displays 22. The multiple main simulation displays 21 are respectively installed on each surface of the base 11, and the multiple auxiliary simulation displays 22 are also installed on each surface of the base 11. A wide-angle camera is provided between the main simulation displays 21 and the auxiliary simulation displays 22.
[0026] The first protection mechanism 03 includes a drone landing pad 31 and a dust cover 32. The drone landing pad 31 is installed on the top of the base 11, and the dust cover 32 can cover the drone landing pad 31.
[0027] The practical platform 12 provides a platform for the adsorption mechanism 04. The assembly drone landing pad 13 facilitates the parking of the assembled drone. Multiple simulated main displays 21 and simulated auxiliary displays 22 facilitate multiple users. The aerial photography drone landing pad 31 allows the aerial photography drone to be parked. The dustproof protective cover 32 protects the aerial photography drone on the aerial photography drone landing pad 31, improving the protection of the aerial photography drone. The adsorption mechanism 04 facilitates the placement of parts, improving convenience. The second protection mechanism 05 facilitates the protection of parts on the adsorption mechanism 04. The fixing mechanism 06 facilitates the fixing of the second protection mechanism 05.
[0028] Example 2
[0029] like Figures 1 to 5 As shown, a multi-person low-altitude flight simulation training platform includes a training platform mechanism 01, and also includes the training platform mechanism 01, a simulation mechanism 02, a first protection mechanism 03, multiple sets of adsorption mechanisms 04, multiple sets of second protection mechanisms 05, and multiple sets of fixing mechanisms 06. The simulation mechanism 02 is installed on the training platform mechanism 01, the first protection mechanism 03 is installed on the training platform mechanism 01, the adsorption mechanism 04 is installed on the training platform mechanism 01, the second protection mechanism 05 is installed on the training platform mechanism 01, and the fixing mechanism 06 is installed on the second protection mechanism 05.
[0030] The training platform mechanism 01 and simulation mechanism 02 facilitate multiple people to conduct low-altitude flight simulation training at the same time. The first protection mechanism 03 facilitates the stopping and dust protection of the aerial photography drone. The adsorption mechanism 04 facilitates the placement of parts. The second protection mechanism 05 facilitates the protection of parts on the adsorption mechanism 04. The fixing mechanism 06 facilitates the fixing of the second protection mechanism 05.
[0031] The training platform structure 01 includes a base 11, multiple practice platforms 12 and multiple assembly drone landing pads 13. The multiple practice platforms 12 are mounted on the base 11 in a ring, and the multiple assembly drone landing pads 13 are mounted on the multiple practice platforms 12 respectively.
[0032] The simulation mechanism 02 includes multiple main simulation displays 21 and multiple auxiliary simulation displays 22. The multiple main simulation displays 21 are respectively installed on each surface of the base 11, and the multiple auxiliary simulation displays 22 are also installed on each surface of the base 11. A wide-angle camera is provided between the main simulation displays 21 and the auxiliary simulation displays 22.
[0033] The adsorption mechanism 04 includes a magnetic suction plate 41 and a fixing bolt 42. Multiple adsorption mechanisms 04 are respectively installed on the operating table 12. Each operating table 12 is equipped with an assembly table. The magnetic suction plate 41 is installed in the assembly table of the operating table 12 by the fixing bolt 42.
[0034] The second protection mechanism 05 includes a slide 51, a sliding protection plate 52, and an observation window 53. Multiple sets of the second protection mechanism 05 are installed on multiple operating tables 12. The operating table 12 is provided with a slide 51. The sliding protection plate 52 is slidably installed in the slide 51. Limit plates are provided at both ends of the sliding protection plate 52. The observation window 53 is installed on the sliding protection plate 52.
[0035] The fixing mechanism 06 includes a fixing box 61, a fixing block 62, a spring 63, and a fixing hole 64. Multiple sets of adsorption mechanisms 04 are installed on multiple operating tables 12 and sliding protection plates 52. The fixing box 61 is installed on the operating table 12. The fixing block 62 is slidably installed inside the fixing box 61. The top surface of the fixing block 62 is an inclined surface. The spring 63 connects the inner wall of the fixing box 61 to the fixing block 62. The sliding protection plate 52 is equipped with a fixing hole 64.
[0036] The magnetic suction plate 41 can magnetically attract and hold parts, making it easier to store and fix them, thus improving practicality. The sliding protective plate 52 slides on the slide groove 51, making it easy to open and close. The sliding protective plate 52 protects the parts on the magnetic suction plate 41. The limiting plates at both ends of the sliding protective plate 52 prevent it from slipping out of the slide groove 51. The observation window 53 makes it easy to find the parts on the magnetic suction plate 41 when the sliding protective plate 52 is closed. When the sliding protective plate 52 is closed, it slides in the slide groove 51. Then, the sliding protective plate 52 presses against the inclined surface of the fixing block 62, causing the fixing block 62 to slide into the fixing box 61. Then, when the fixing hole 64 is aligned with the fixing block 62, the elasticity of the spring 63 pushes the fixing block 62 into the fixing hole 64, thus completing the fixation of the sliding protective plate 52.
[0037] like Figures 1 to 5As shown, this utility model discloses a multi-person low-altitude flight simulation training platform. During operation, the operating platform 12 provides a platform for the adsorption mechanism 04. The assembly drone landing pad 13 facilitates the parking of assembled drones. Multiple main and auxiliary simulation displays 21 facilitate multi-person operation. The aerial photography drone landing pad 31 allows for the parking of aerial photography drones. A dustproof protective cover 32 protects the drones on the landing pad 31. Magnetic suction plates 41 magnetically attract and hold parts, improving practicality. A sliding protective plate 52 slides on a groove 51, facilitating the movement of the sliding protective plate 52. 2. Opening and closing: The sliding protective plate 52 protects the parts on the magnetic suction plate 41. The limiting plates at both ends of the sliding protective plate 52 prevent the sliding protective plate 52 from slipping out of the slide groove 51. The observation window 53 facilitates the search for the parts on the magnetic suction plate 41 when the sliding protective plate 52 is closed. When the sliding protective plate 52 is closed, it slides in the slide groove 51. Then, the sliding protective plate 52 is pressed against the inclined surface of the fixing block 62, causing the fixing block 62 to slide into the fixing box 61. Then, when the fixing hole 64 is aligned with the fixing block 62, the elasticity of the spring 63 pushes the fixing block 62 into the fixing hole 64, thereby completing the fixing of the sliding protective plate 52.
[0038] The analog main display 21, analog auxiliary display 22 and magnetic plate 41 of this utility model are commercially available. Technical personnel in this industry only need to install and operate them according to the accompanying instruction manual, without requiring any creative work from those skilled in the art.
[0039] The main functions achieved by this utility model are: to facilitate the storage and protection of parts during the operation of the simulation training platform, to facilitate the protection of aerial drones, and to facilitate simultaneous training by multiple people, thereby improving practicality.
[0040] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.
Claims
1. A multi-person low-altitude flight simulation training platform, comprising a training platform mechanism (01); characterized in that, It also includes a training platform mechanism (01), a simulation mechanism (02), a first protection mechanism (03), multiple adsorption mechanisms (04), multiple second protection mechanisms (05), and multiple fixing mechanisms (06). The simulation mechanism (02) is installed on the training platform mechanism (01), the first protection mechanism (03) is installed on the training platform mechanism (01), the adsorption mechanism (04) is installed on the training platform mechanism (01), the second protection mechanism (05) is installed on the training platform mechanism (01), and the fixing mechanism (06) is installed on the second protection mechanism (05). The training platform mechanism (01) and simulation mechanism (02) facilitate multiple people to conduct low-altitude flight simulation training at the same time. The first protection mechanism (03) facilitates the shutdown and dust protection of the aerial photography drone. The adsorption mechanism (04) facilitates the placement of parts. The second protection mechanism (05) facilitates the protection of parts on the adsorption mechanism (04). The fixing mechanism (06) facilitates the fixing of the second protection mechanism (05).
2. The multi-person low-altitude flight simulation training platform as described in claim 1, characterized in that, The training platform (01) includes a base (11), multiple practice platforms (12) and multiple assembly drone landing pads (13). The multiple practice platforms (12) are installed around the base (11), and the multiple assembly drone landing pads (13) are installed on the multiple practice platforms (12).
3. The multi-person low-altitude flight simulation training platform as described in claim 2, characterized in that, The simulation mechanism (02) includes multiple analog main displays (21) and multiple analog auxiliary displays (22). The multiple analog main displays (21) are respectively installed on each surface of the base (11), and the multiple analog auxiliary displays (22) are also installed on each surface of the base (11). A wide-angle camera is provided between the analog main displays (21) and the analog auxiliary displays (22).
4. A multi-person low-altitude flight simulation training platform as described in claim 2, characterized in that, The first protection mechanism (03) includes a drone landing pad (31) and a dust cover (32). The drone landing pad (31) is installed on the top of the base (11), and the dust cover (32) can cover the drone landing pad (31).
5. A multi-person low-altitude flight simulation training platform as described in claim 2, characterized in that, The adsorption mechanism (04) includes a magnetic suction plate (41) and a fixing bolt (42). Multiple adsorption mechanisms (04) are installed on the operating table (12). Each operating table (12) is equipped with an assembly table. The magnetic suction plate (41) is installed in the assembly table of the operating table (12) by the fixing bolt (42).
6. A multi-person low-altitude flight simulation training platform as described in claim 5, characterized in that, The second protection mechanism (05) includes a slide groove (51), a sliding protection plate (52), and an observation window (53). Multiple sets of the second protection mechanism (05) are installed on multiple operating tables (12). The operating table (12) is provided with a slide groove (51). The sliding protection plate (52) is slidably installed in the slide groove (51). Limit plates are provided at both ends of the sliding protection plate (52). The observation window (53) is installed on the sliding protection plate (52).
7. A multi-person low-altitude flight simulation training platform as described in claim 6, characterized in that, The fixing mechanism (06) includes a fixing box (61), a fixing block (62), a spring (63), and a fixing hole (64). Multiple sets of adsorption mechanisms (04) are installed on multiple operating tables (12) and sliding protection plates (52). The fixing box (61) is installed on the operating table (12). The fixing block (62) is slidably installed inside the fixing box (61). The top surface of the fixing block (62) is an inclined surface. The spring (63) connects the inner wall of the fixing box (61) with the fixing block (62). The sliding protection plate (52) is equipped with a fixing hole (64).
Citation Information
Patent Citations
Six-person or multi-person flight VR simulation device
CN212933836U