VR live-action flight training simulation device for unmanned aerial vehicle
By designing an adjustable and folding mechanism for a drone VR real-scene flight training simulation device, the problems of VR glasses wearing comfort and storage convenience have been solved, achieving higher wearing comfort and convenience.
Patent Information
- Application Number
- CN202520174668.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-26
- Publication Date
- 2026-01-23
- Estimated Expiration
- 2035-01-26
AI Technical Summary
Existing VR glasses for drone VR real-scene flight training simulation devices are uncomfortable to wear and inconvenient for long-term use and storage.
A drone VR real-scene flight training simulation device was designed, which includes a VR glasses body, side plates, side straps, adjustment mechanism and folding mechanism. The side strap length can be adjusted and folded through the adjustment mechanism and folding mechanism, which increases breathability and comfort and facilitates storage.
It improves the wearing comfort and breathability of VR glasses, making them suitable for long-term use and easy to store.
Smart Images

Figure CN223828138U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to unmanned plane equipment technical field, concretely is a kind of unmanned plane VR real scene flight training simulation device. BACKGROUND
[0002] The development and popularity of unmanned plane make more and more people keen on learning unmanned plane driving skill, but safe flight is crucial. Unmanned plane driver needs to be trained professionally, and simulator training is particularly important. The training scene is displayed using VR glasses, which can realize 3D real scene training. The set of equipment includes unmanned plane operation remote controller, unmanned plane simulation flight controller, unmanned plane flight data operation memory, display, panoramic image technology processor, VR glasses. After the above-mentioned devices are connected, the trainee only needs to wear VR glasses, which can present 3D real scene training scene, and the trainee operates flight by unmanned plane operation remote controller to train flight skill.
[0003] The existing patent with application number CN 202220434133.X discloses a kind of unmanned plane VR real scene flight training simulation device, by setting top interface pull plate, the gravity of VR glasses can be converted to human head top, to significantly reduce the oppression of VR glasses to nasal arch, then, in combination with the design of binding belt, it can be connected with fixed ring body integrally, and is tightly fixed, play the role of balanced stability. However, the headgear type structure wearing piece is used, and the ventilation and comfort are poor, which is not suitable for long-term wearing by operator, and when not in use, it is inconvenient to store.
[0004] It should be noted that the above content belongs to the technical cognition of the inventor and does not necessarily constitute prior art. UTILITY MODEL CONTENT
[0005] In view of the above defects, the utility model provides a kind of unmanned plane VR real scene flight training simulation device to solve the problem of unmanned plane VR real scene flight training.
[0006] To achieve the above purpose, the utility model adopts the following technical solutions:
[0007] A kind of unmanned plane VR real scene flight training simulation device, including VR glasses body and the side plate of VR glasses body both sides, a group of side straps is connected to a group of side straps by folding mechanism, a group of side straps rear end is connected with wearing piece by adjusting mechanism;
[0008] Adjusting mechanism includes a group of fixed shell, a group of pressing block, a group of spring one and a group of limit head, a group of fixed shell is installed in the rear end both sides of wearing piece, a group of pressing block is movably inserted in the top of a group of fixed shell, a group of spring one is connected to the bottom of a group of pressing block, a group of limit head is installed in the side of the bottom of a group of pressing block.
[0009] Further, the folding mechanism comprises a set of limiting grooves, a set of limiting rods and a set of springs two, the set of limiting grooves are opened at the rear end of the set of side plates, the set of limiting rods are movably inserted at the front end of the set of side belts and the bottom is located in the set of limiting grooves, and the set of springs two are sleeved on the outer surface of the bottom of the set of limiting rods.
[0010] Further, the upper end of the set of limiting rods is respectively provided with a pulling block.
[0011] Further, the rear end of the set of side belts is respectively provided with a limiting tooth corresponding to the limiting head.
[0012] Further, the wearing part is provided with a rear pillow cover.
[0013] The utility model provides a kind of unmanned plane VR real scene flight training simulation device, with following beneficial effects, by being located in the rear end of the set of side belts adjusting mechanism, adopt pressing a set of pressing block, the length of the set of side belts can be adjusted, cooperate with the rear pillow cover in wearing part, increase the air permeability and comfort, it is convenient for operator to wear VR glasses, it plays auxiliary role to the flight training of long time needing, when not using, the set of side belts can be folded by folding mechanism, it is convenient to store. ACCOUT OF DRAWINGS
[0014] Figure 1 It is a kind of unmanned plane VR real scene flight training simulation device schematic view described in the utility model.
[0015] Figure 2 It is the utility model Figure 1 Middle A place local amplification diagram.
[0016] Figure 3 It is the fixed shell sectional view described in the utility model.
[0017] Figure 4 It is the limiting tooth schematic view described in the utility model.
[0018] Figure 5 It is the rear pillow cover installation schematic view described in the utility model.
[0019] Figure 6 It is the set of side belts folding schematic view described in the utility model.
[0020] In the drawing: 1, VR glasses body;2, side plate;3, side belt;4, wearing part;5, fixed shell;6, pressing block;7, spring one;8, limiting head;9, limiting groove;10, limiting rod;11, spring two;12, pulling block;13, limiting tooth;14, rear pillow cover. SPECIFIC EMBODIMENT
[0021] The utility model is specifically described below in conjunction with the drawings, such as Figures 1-6As shown: a unmanned aerial vehicle VR real scene flight training simulation device, including VR glasses body 1 and a group of side plate 2 located in VR glasses body 1 both sides, a group of side plate 2 is connected with a group of side band 3 through folding mechanism, a group of side band 3 rear end is connected with wearing piece 4 through adjusting mechanism; adjusting mechanism includes a group of fixed shell 5, a group of pressing block 6, a group of spring one 7 and a group of limit head 8, a group of fixed shell 5 is installed in the rear end of wearing piece 4 both sides, a group of pressing block 6 is movably inserted in the top of a group of fixed shell 5, a group of spring one 7 is connected in the bottom of a group of pressing block 6, a group of limit head 8 is installed in the bottom of a group of pressing block 6 one side; folding mechanism includes a group of limit slot 9, a group of limit rod 10 and a group of spring two 11, a group of limit slot 9 is opened in the rear end of a group of side plate 2, a group of limit rod 10 is movably inserted in the front end of a group of side band 3, and the bottom is located in a group of limit slot 9, a group of spring two 11 is sleeved on the outer surface of the bottom of a group of limit rod 10; the upper end of a group of limit rod 10 is respectively installed with pull block 12; the rear end of a group of side band 3 is respectively provided with limit slot tooth 13 corresponding to limit head 8; the wearing piece 4 is provided with rear pillow cover 14.
[0022] The working principle of the present embodiment: the unmanned aerial vehicle operation remote controller connects the unmanned aerial vehicle simulation flight controller through 4G wireless transmission control signal, controls the unmanned aerial vehicle model simulation data, connects the unmanned aerial vehicle flight data operation storage through USB3.0 transmission digital signal, outputs high-definition digital image to the display through HDMI, outputs ultra-high-definition digital image to panoramic image technology processor through DisplayPort / USB3.0 data interface, performs image synthesis processing, and outputs to VR glasses body 1 through 30pin HDMI connection line port to achieve real scene flight simulation;
[0023] When adjusting: a group of fixed shell 5 is installed in the rear end of wearing piece 4 both sides, a group of pressing block 6 is movably inserted in the top of a group of fixed shell 5, a group of spring one 7 is connected in the bottom of a group of pressing block 6, a group of limit head 8 is installed in the bottom of a group of pressing block 6 one side, a group of side band 3 rear end is respectively provided with limit tooth 13 corresponding to limit head 8, wearing piece 4 is provided with rear pillow cover 14, as Figure 3 — Figure 5 As shown, a group of side band 3 is in strip shape, made of plastic material, has the advantages of light weight, durability, easy processing, etc., a group of side band 3 rear end is inserted in a group of fixed shell 5, the user presses a group of pressing block 6 downward, so that a group of limit head 8 is separated from limit tooth 13, at this time, a group of spring one 7 is compressed, then adjust the length of a group of side band 3, release a group of pressing block 6, a group of spring one 7 resets, drives a group of limit head 8 to reinsert in limit tooth 13, completes the limit fixing of a group of side band 3, cooperates with the rear pillow cover 14 in wearing piece 4, increases the air permeability and comfort, is convenient for the operator to wear VR glasses, plays an auxiliary role for the flight training that needs to be carried out for a long time;
[0024] When folded: a set of limiting grooves 9 are opened inside the rear end of a set of side plates 2; a set of limiting rods 10 are movably inserted into the front end of a set of side straps 3, with their bottoms located within a set of limiting grooves 9; a set of springs 11 are fitted onto the outer surface of the bottom of a set of limiting rods 10; and pull blocks 12 are respectively installed on the upper ends of a set of limiting rods 10. Figure 2 and Figure 6 As shown, when the user pulls a set of pull blocks 12, a set of springs 11 is compressed, and the front end of a set of side straps 3 is separated from a set of side plates 2. Then, the set of side straps 3 is flipped over to fold the set of side straps 3 for easy storage. The user can also adjust the angle of the wearing piece 4 and the back pillowcase 14 through the folding mechanism to make the wearing more comfortable. The back pillowcase 14 is filled with sponge, making the head soft and comfortable, achieving a full wrap effect.
[0025] The above technical solution only embodies the preferred technical solution of this utility model. Any changes that may be made by those skilled in the art to certain parts of it embody the principle of this utility model and fall within the protection scope of this utility model.
Claims
1. A VR real-scene flight training simulation device for unmanned aerial vehicles, comprising a VR glasses body (1) and a set of side plates (2) located on both sides of the VR glasses body (1), characterized in that, A set of side panels (2) is connected to a set of side straps (3) via a folding mechanism, and a wearing piece (4) is connected to the rear end of the set of side straps (3) via an adjustment mechanism. The adjustment mechanism includes a set of fixed shells (5), a set of pressing blocks (6), a set of springs (7), and a set of limiting heads (8). The set of fixed shells (5) is installed on both sides of the rear end of the wearer (4). The set of pressing blocks (6) is movably inserted into the top of the set of fixed shells (5). The set of springs (7) is connected to the bottom of the set of pressing blocks (6). The set of limiting heads (8) is installed on one side of the bottom of the set of pressing blocks (6).
2. The UAV VR real-scene flight training simulation device according to claim 1, characterized in that, The folding mechanism includes a set of limiting grooves (9), a set of limiting rods (10), and a set of springs (11). The set of limiting grooves (9) is opened in the rear end of a set of side plates (2). The set of limiting rods (10) is movably inserted into the front end of a set of side straps (3), and the bottom is located in the set of limiting grooves (9). The set of springs (11) is fitted on the outer surface of the bottom of the set of limiting rods (10).
3. The UAV VR real-scene flight training simulation device according to claim 2, characterized in that, A set of limit rods (10) are each equipped with a pull block (12) at the upper end.
4. The UAV VR real-scene flight training simulation device according to claim 1, characterized in that, A set of side belts (3) have corresponding limiting grooves (13) at their rear ends, which correspond to the limiting head (8).
5. The UAV VR real-scene flight training simulation device according to claim 1, characterized in that, The wearing piece (4) has a back pillowcase (14) installed inside.
Citation Information
Patent Citations
VR live-action flight training simulation device for unmanned aerial vehicle
CN216696882U