Unmanned aerial vehicle driving simulation training cabin
By designing a drone piloting simulation training cabin, utilizing simulation software and LED lights to simulate lighting conditions, and providing a structure for quickly storing VR glasses, the problems of VR glasses damage and insufficient lighting simulation are solved, improving the safety and realism of training.
Patent Information
- Application Number
- CN202422958260.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-12-02
AI Technical Summary
In existing drone pilot training cabins, VR glasses are easily damaged during ordinary drone flight training, and existing training cabins cannot effectively simulate training environments under different lighting conditions.
A drone piloting simulation training cabin was designed, comprising a base, mounting frame, display screen, light-blocking curtain, light strip, and storage components. It simulates different lighting conditions using simulation software and LED lights, and can quickly store VR glasses to avoid collisions when not in use, using elastic clips and hinge structures to fix the glasses in place.
It effectively simulates different lighting conditions during training, protects VR glasses from damage, and improves the safety and realism of training.
Smart Images

Figure CN223471363U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to training cabin technical field especially relates to unmanned plane driving simulation training cabin. BACKGROUND
[0002] With the development of unmanned plane industry, the application of unmanned plane has penetrated into all walks of life, and the application of unmanned plane involves the driving problem of unmanned plane, and the current operation teaching of unmanned plane driving generally first masters the flight operation through software simulation and then goes to the outdoor operation of real unmanned plane.
[0003] The inventor found in daily work that the people training unmanned plane now are often divided into ordinary unmanned plane flight training and crossing unmanned plane flight training, the crossing unmanned plane transmits the image to VR glasses in order to improve the experience, and the unmanned plane training cabin is mixed, and the VR glasses are directly placed on the operation table and are easy to knock the glasses in the process of ordinary unmanned plane flight training, thereby causing damage. UTILITY MODEL CONTENT
[0004] The utility model aims at solving the shortcomings in the prior art and provides an unmanned plane driving simulation training cabin.
[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme: the unmanned plane driving simulation training cabin, including training cabin, the training cabin includes pedestal, the upper end of base is installed with mounting bracket, the inside installation of mounting bracket has display screen, the display screen is integrated host computer, still including unmanned plane simulation continuous handle with the data transmission of integrated host computer, the side surface of mounting bracket is installed with sunshade curtain, the inside of mounting bracket is provided with lamp strip, the inside top wall of mounting bracket is installed with storage component, wherein the storage component includes storage box installed in the inside of mounting bracket, the opening of storage box faces downward, the inside of storage box is installed with two buckles, wherein the buckle is elastic plastic sheet, the VR glasses are clamped between the buckle and storage box.
[0006] The effect achieved by the above-mentioned components is that when the unmanned aerial vehicle needs to be trained, the trainer enters the training cabin and pulls up the blackout curtain to form a relatively closed training cabin, the integrated main machine is internally provided with unmanned aerial vehicle simulation software, the handheld unmanned aerial vehicle simulation continuous handle simulates the flight of the unmanned aerial vehicle, and then the display screen displays the flight state of the unmanned aerial vehicle, the lamp strip is composed of a plurality of individually controlled LED lights, the lighting of the LED lights at different positions is controlled by the switch to simulate the illumination of light at different angles to simulate the trainer to simulate different outdoor light, the VR glasses are often used when the unmanned aerial vehicle is simulated to transmit image signals with the integrated main machine, thereby simulating outdoor unmanned aerial vehicle training, and when the VR glasses are not needed, the VR glasses can be clamped between the clamping pieces and stored in the storage box, the clamping pieces made of elastic plastic can clamp the VR glasses to fix them, thereby enabling the VR glasses to be quickly stored.
[0007] Preferably, the side of the base is provided with a step, the inside of the base is provided with a seat, and the side of the mounting frame is provided with a ventilation window.
[0008] The effect achieved by the above-mentioned components is that the step facilitates entry into the training cabin, and the ventilation window ensures ventilation inside the training cabin.
[0009] Preferably, the two clamping pieces are arc-shaped and curved upward.
[0010] The effect achieved by the above-mentioned components is that the arc-shaped clamping pieces can clamp the VR glasses.
[0011] Preferably, the bottom of the storage box is provided with a mounting frame, the inner cavity of the mounting frame is rotatably provided with two baffles, and the baffles are rotatably connected to the mounting frame by means of spring hinges.
[0012] The effect achieved by the above-mentioned components is that the spring hinges can ensure that the baffles are in a closed state to prevent the VR glasses from falling out of the storage box.
[0013] Preferably, the upper end of one of the baffles is fixedly connected to a limiting buckle, the upper end of the other baffle is fixedly connected to a limiting seat, the inside of the limiting seat is slidably connected to a plug-in plate, and the plug-in plate is inserted into the limiting buckle.
[0014] The effect achieved by the above-mentioned components is that the plug-in plate can be slid to pass through the limiting buckle above the other baffle from the limiting seat above one baffle to fix the two baffles, thereby preventing the two baffles from being opened to leak the VR glasses.
[0015] Preferably, a sliding slot is arranged on the baffle, a push block is slidably connected in the sliding slot, the push block is fixed with an insertion plate, one side of the insertion plate is fixedly connected with a sliding rod, the upper end of the baffle is provided with a protrusion, the sliding rod is slidably connected in the protrusion, the surface of the sliding rod is sleeved with a spring, and both ends of the spring are fixedly connected with the insertion plate and the protrusion.
[0016] The above-mentioned components achieve the effect that the insertion plate is clamped in the limiting buckle by pulling the push block, and then driving the insertion plate by the push block, and the elastic force of the spring always promotes the insertion plate to be clamped in the limiting buckle.
[0017] Compared with the prior art, the utility model has the advantages and positive effects that,
[0018] In the utility model, the handheld unmanned plane simulation continuous handle simulates unmanned plane flight and then the display screen displays unmanned plane flight state, the lamp strip is composed of a plurality of individually controlled LED lamps, and the light irradiation at different angles is simulated by controlling the LED light at different positions to be bright through the switch, so that the trainee can simulate different outdoor light, image signal transmission is carried out through VR glasses and integrated host in the process of crossing the unmanned plane simulation, and then the outdoor crossing unmanned plane training is simulated, when the VR glasses are not needed, the VR glasses can be clamped between the clamping pieces and stored in the storage box, the clamping pieces made of elastic plastic can clamp and fix the VR glasses, and then the VR glasses can be quickly stored to avoid collision damage. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 A three-dimensional structure schematic view of the unmanned plane driving simulation training cabin is provided for the utility model;
[0020] Figure 2 An internal structure schematic view of the unmanned plane driving simulation training cabin is provided for the utility model;
[0021] Figure 3 A partial disassembly schematic view of the storage member in the unmanned plane driving simulation training cabin is provided for the utility model;
[0022] Figure 4 Another angle schematic view of the unmanned plane driving simulation training cabin is provided for the utility model; Figure 3
[0023] Legend: 1, base; 2, mounting frame; 3, lamp strip; 4, air vent; 5, light curtain; 6, step; 7, storage member; 71, storage box; 72, clamping piece; 73, VR glasses; 74, mounting frame; 75, baffle; 76, sliding slot; 77, push block; 78, limiting buckle; 79, sliding rod; 710, spring; 711, limiting seat; 712, insertion plate; 8, display screen; 9, seat. DETAILED DESCRIPTION
[0024] Embodiment 1, asFigures 1-4As shown, the unmanned aerial vehicle driving simulation training cabin comprises a training cabin, the training cabin comprises a base 1, the upper end of the base 1 is provided with a mounting frame 2, the inside of the mounting frame 2 is provided with a display screen 8, the display screen 8 is an integrated host, and the unmanned aerial vehicle simulation continuous handle for data transmission with the integrated host is further included, the side of the mounting frame 2 is provided with a light curtain 5, the inside of the mounting frame 2 is provided with a lamp strip 3, the inside top wall of the mounting frame 2 is provided with a storage component 7, the storage component 7 comprises a storage box 71 mounted in the inside of the mounting frame 2, the opening of the storage box 71 faces downward, two clamping pieces 72 are mounted in the inside of the storage box 71, the clamping pieces 72 are elastic plastic pieces, the VR glasses 73 are clamped between the clamping pieces 72 and the storage box 71, when the unmanned aerial vehicle training is needed, the trainer enters the training cabin and pulls up the light curtain 5, the light curtain 5 forms a relatively closed training cabin, the unmanned aerial vehicle simulation software is mounted in the integrated host (since the computer downloads the unmanned aerial vehicle simulation software to connect the handle for training, this is the conventional operation of the unmanned aerial vehicle training, therefore, the specific software and simulation method are not described in detail here), the unmanned aerial vehicle simulation continuous handle is held to simulate the unmanned aerial vehicle flight, then the display screen 8 displays the unmanned aerial vehicle flight state, the lamp strip 3 is composed of a plurality of individually controlled LED lamps, the different positions of the LED lamps are controlled by switches to simulate different angle light irradiation to simulate the outdoor different light for the trainer, the VR glasses 73 are often used for image signal transmission with the integrated host when the unmanned aerial vehicle simulation is crossed, thereby simulating the outdoor crossing unmanned aerial vehicle training, when the VR glasses 73 are not needed, the VR glasses 73 can be clamped between the clamping pieces 72 and stored in the storage box 71, the clamping pieces 72 made of elastic plastic can clamp and fix the VR glasses 73, thereby the VR glasses 73 can be quickly stored. The side of the base 1 is provided with a step 6, the inside of the base 1 is provided with a seat 9, and the side of the mounting frame 2 is provided with a ventilation window 4. The step 6 facilitates entering the training cabin, and the ventilation window 4 can ensure that the inside of the training cabin is ventilated. The two clamping pieces 72 are arc-shaped structures, and the clamping pieces 72 are curved upward, the arc-shaped clamping pieces 72 can clamp the VR glasses 73. The bottom of the storage box 71 is provided with a mounting frame 74, the inside of the mounting frame 74 is rotatably provided with two baffles 75, the baffles 75 are rotatably connected with the mounting frame 74 by means of spring hinges, the spring hinges can ensure that the baffles 75 are in a closed state to avoid the VR glasses 73 falling from the storage box 71. The upper end of one of the baffles 75 is fixedly connected with a limiting buckle 78, the upper end of the other baffle 75 is fixedly connected with a limiting seat 711, the inside of the limiting seat 711 is slidably connected with a plug plate 712, the plug plate 712 is inserted in the limiting buckle 78, the plug plate 712 can be slid to pass through the limiting buckle 78 above the other baffle 75 from above the one baffle 75 to fix the two baffles 75, thereby avoiding the two baffles 75 being opened to leak the VR glasses 73.The chute 76 is provided through the baffle 75, the push block 77 is slidably connected in the chute 76, the push block 77 is fixed with the plug plate 712, one side of the plug plate 712 is fixedly connected with the slide rod 79, the upper end of the baffle 75 is provided with a protrusion, the slide rod 79 is slidably connected in the protrusion, the surface of the slide rod 79 is sleeved with the spring 710, and both ends of the spring 710 are fixedly connected with the plug plate 712 and the protrusion. The push block 77 can be pulled, and then the plug plate 712 is driven by the push block 77. The elastic force of the spring 710 always makes the plug plate 712 clamped in the limiting buckle 78.
[0025] The working principle is that when the unmanned plane training is needed, the trainer enters the training cabin to pull up the sunshade 5, the sunshade 5 forms a relatively closed training cabin, the integrated host is internally provided with unmanned plane simulation software, the unmanned plane simulation continuous handle is held to simulate the unmanned plane flight, and then the display screen 8 displays the unmanned plane flight state. The lamp strip 3 is composed of a plurality of individually controlled LED lamps, and the different positions of the LED lamps can be controlled by the switch to simulate different angle light irradiation to simulate the outdoor different light. The VR glasses 73 are often used for image signal transmission with the integrated host when the unmanned plane simulation is crossed, so as to simulate the outdoor crossing unmanned plane training. When the VR glasses 73 are not needed, the VR glasses 73 can be clamped between the buckles 72 and stored in the storage box 71. The buckles 72 made of elastic plastic can clamp the VR glasses 73 to be fixed, so that the VR glasses 73 can be quickly stored. The spring hinge can ensure that the baffle 75 is in a closed state, so that the VR glasses 73 cannot fall from the storage box 71. The plug plate 712 can be slid to make the plug plate 712 pass through the limiting buckle 78 above the other baffle 75 in the limiting position above the baffle 75 to fix the two baffles 75, so that the two baffles 75 cannot be opened to leak the VR glasses 73. The plug plate 712 can be pulled by the push block 77, and then the plug plate 712 is driven by the push block 77. The elastic force of the spring 710 always makes the plug plate 712 clamped in the limiting buckle 78.
[0026] The above merely describes preferred embodiments of the present application, and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and alteration of the above embodiments without departing from the technical content of the present application, according to the technical essence of the present application, still belong to the protection scope of the present application. In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection" and "connection" should be understood in a broad sense. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be connected inside two elements. For ordinary skilled persons in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
Claims
1. A drone pilot simulation training pod comprising a training pod, characterized in that: The training cabin includes a base (1), the upper end of the base (1) is provided with a mounting rack (2), the inside of the mounting rack (2) is provided with a display screen (8), the display screen (8) is an integrated host, further comprising a drone simulation continuous handle for data transmission with the integrated host, the side of the mounting rack (2) is provided with a sunshade (5), the inside of the mounting rack (2) is provided with a lamp strip (3), the inside top wall of the mounting rack (2) is provided with a storage member (7), the storage member (7) includes a storage box (71) mounted in the inside of the mounting rack (2), the opening of the storage box (71) faces downward, the inside of the storage box (71) is provided with two buckles (72), the buckle (72) is an elastic plastic sheet, the buckle (72) and the storage box (71) are clamped with a VR glasses (73).
2. The unmanned drone simulation training pod of claim 1, wherein: The side of the base (1) is provided with a step (6), the inside of the base (1) is provided with a seat (9), the side of the mounting rack (2) is provided with a ventilation window (4).
3. The unmanned drone simulation training pod of claim 1, wherein: The two buckles (72) are arc-shaped structures, and the buckle (72) is curved upward.
4. The unmanned drone simulation training pod of claim 1, wherein: The bottom of the storage box (71) is provided with a mounting frame (74), the inside of the mounting frame (74) is rotatably provided with two baffles (75), the baffle (75) is rotatably connected with the mounting frame (74) by means of a spring hinge.
5. The unmanned drone simulation training pod of claim 4, wherein: The upper end of one of the baffles (75) is fixedly connected with a limiting buckle (78), the upper end of the other baffle (75) is fixedly connected with a limiting seat (711), the inside of the limiting seat (711) is slidably connected with a plug plate (712), the plug plate (712) is inserted into the limiting buckle (78).
6. The unmanned drone simulation training pod of claim 5, wherein: The baffle (75) is provided with a sliding groove (76) penetratingly arranged on the baffle (75), the inside of the sliding groove (76) is slidably connected with a push block (77), the push block (77) and the plug plate (712) are fixed.
7. The unmanned drone simulation training pod of claim 6, wherein: One side of the plug plate (712) is fixedly connected with a sliding rod (79), the upper end of the baffle (75) is provided with a protrusion, the sliding rod (79) is slidably connected in the protrusion, the surface of the sliding rod (79) is sleeved with a spring (710), the both ends of the spring (710) and the plug plate (712) and the protrusion are fixedly connected.