MR element universe landscape vehicle

By projecting virtual reality images on the front baffle and roof of the landscape car, the problem that existing scenic spot sightseeing cars cannot integrate reality and virtual scenes is solved, and a wider viewing angle and interactive experience is achieved, the tourists' immersive tour effect is enhanced, and the picture and field of view are protected under strong light conditions.

CN223116477UActive Publication Date: 2025-07-18ZHEJIANG DAFENG SHUYI TECH CO LTD
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Patent Information

Application Number
CN202422577289.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-07-18
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

Existing scenic spot sightseeing cars cannot achieve the integration of real scenes and virtual scenes, and cannot provide tourists with an immersive experience.

Method used

A projection system is provided on the front baffle and top plate of the landscape car body. The projection system includes the first and second projectors. The projection area covers the front baffle and top plate, outputs a virtual reality image and superimposes the real image, and controls the image output through an infrared touch box and an MR handle.

Benefits of technology

It realizes the integration of real scenes and virtual scenes, increases the viewing angle and interactive experience of tourists, provides an immersive tour experience, and protects picture quality and tourists' safety under strong light conditions through light shading components.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223116477U_ABST
Patent Text Reader

Abstract

The utility model discloses an MR element universe landscape vehicle, and belongs to the technical field of landscape vehicles. An MR element universe landscape vehicle comprises a landscape vehicle body and a projection system. The landscape vehicle body comprises a front baffle and a top plate. The front baffle is obliquely arranged on the front side of the landscape vehicle body, and the top plate is arranged on the upper side of the landscape vehicle body. The front baffle and the top plate are made of transparent materials, and holographic projection films are arranged on the surfaces of the front baffle and the top plate. The projection system comprises a first projector and a second projector, the projection area of the first projector at least covers the plane where the front baffle is located, and the projection area of the second projector at least covers the plane where the top plate is located; the projection system is used for outputting a virtual reality image, and the virtual reality image is overlapped with a real image outside the landscape vehicle; according to the invention, fusion of a real scene and a virtual scene can be realized, more and wider film watching angles of tourists are increased, interaction between the tourists and a fixed scene is enhanced, and immersive sightseeing experience is provided for the tourists.
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Description

Technical Field

[0001] The utility model belongs to the technical field of landscape vehicles, and more specifically, relates to an MR metaverse landscape vehicle. Background Technique

[0002] With the development of the tourism industry, especially the continuous development of scenic area tourism, scenic areas are constantly expanding and tourism infrastructure is constantly improving. Correspondingly, the popularity rate of scenic area sightseeing vehicles as tourist transportation tools is getting higher and higher, which not only brings a more comfortable sightseeing experience for tourists, but also can improve the tourist reception capacity of scenic areas.

[0003] For example, a self-driving electric sightseeing vehicle disclosed in a patent document with the patent announcement number CN215883391U (the application date is July 14, 2021). The sightseeing seat inside the self-driving electric sightseeing vehicle can rotate and adjust the angle. By turning the sliding rheostat to reduce its resistance, the electromagnetic force between the fixed magnet and the electromagnet increases and the electromagnet rises, releasing the fixed state between the rotation adjustment box and the support partition. Turning the rotation handle drives the sightseeing seat to rotate to a suitable direction, and then adjusting back the resistance of the sliding rheostat can achieve the effect of conveniently adjusting the tourist's viewing angle. Although it can adjust the tourist's viewing angle, the tourist's observation range is limited to the actual scene and cannot create an immersive experience effect for users, still unable to meet the needs of tourists. Content of the Utility Model

[0004] The technical problem to be solved by the utility model is to provide an MR metaverse landscape vehicle, which can realize the integration of the real scene and the virtual scene, increase more and wider viewing angles for tourists, enhance the interaction between tourists and the fixed scene, and provide an immersive tour experience for tourists.

[0005] An MR metaverse landscape vehicle of the utility model includes a landscape vehicle body and a projection system. The landscape vehicle body includes a front baffle and a top plate. The front baffle is inclined and arranged on the front side of the landscape vehicle body, and the top plate is arranged on the upper side of the landscape vehicle body. Both the front baffle and the top plate are made of transparent materials, and holographic projection films are respectively arranged on their surfaces. The projection system includes a first projector and a second projector. The projection area of the first projector at least covers the plane where the front baffle is located, and the projection area of the second projector at least covers the plane where the top plate is located. The projection system is used to output virtual reality images, and the virtual reality images coincide and overlap with the real images outside the landscape vehicle.

[0006] As a further improvement of the present utility model, the landscape vehicle body includes a central control console. The central control console is arranged at the front end of the landscape vehicle body and is located below the front baffle. An infrared touch frame, an MR handle and a speaker are respectively arranged on the central control console. Both the infrared touch frame and the MR handle are electrically connected to the projection system, and the projection system can be controlled through the infrared touch frame and the MR handle to output different virtual reality images. The speaker is electrically connected to the audio module of the projection system and is used to synchronously output the audio information of the projection system.

[0007] As a further improvement of the present utility model, the landscape vehicle body further includes a camera. At least one camera is arranged inside and outside the landscape vehicle body respectively. The camera arranged inside the landscape vehicle body is used to collect image data inside the vehicle in real time, and the camera arranged outside the landscape vehicle body is used to collect image data of the external surrounding environment in real time. The image data collected by the camera is transmitted from the mobile terminal to the cloud database.

[0008] As a further improvement of the present utility model, it further includes a top shading component. The top shading component is at least arranged at one end of the upper side of the top plate. The top shading component includes a winding shaft and a shading cloth. The winding shaft is located at any end of the top plate and there is a gap between the winding shaft and the top plate. The length of the winding shaft matches the width of the top plate. The winding shaft is connected to the output end of an external winding motor so that the winding shaft can rotate around its axis. A sleeve is symmetrically arranged at both ends of the winding shaft respectively, and a corresponding side column is arranged on the outer side of the sleeve. The lower end of the side column is fixedly connected to the upper side of the top plate. One side of the sleeve is rotatably connected to the outer side of the winding shaft, and the other side of the sleeve is rotatably connected to the upper end of the corresponding side column so that the winding shaft can drive the sleeve to rotate synchronously. The shading cloth is wound around the outer side of the winding shaft, and the tail end of the shading cloth is fixedly connected to the outer side of the winding shaft. The winding shaft can drive the shading cloth to unfold or wind up.

[0009] As a further improvement of the present utility model, the top shading component further includes a housing. The housing is fixedly arranged on the outer side of the winding shaft, the lower end of the housing is fixedly connected to the upper side of the top plate, and the upper part of the housing surrounds above the winding shaft to shield the winding shaft.

[0010] As a further improvement of the present utility model, the top shading component further includes a guide post. The guide post is arranged on one side of the shading cloth in the unfolding direction. There is a gap between the guide post and the top plate and the height of the guide post is lower than the height of the winding shaft. Side columns are symmetrically arranged at both ends of the guide post, and both ends of the guide post are fixedly connected to the upper ends of the side columns respectively. The lower ends of the side columns are fixedly connected to the upper side of the top plate. When the shading cloth unfolds, it is in contact with the lower side of the guide post. Hooks are symmetrically arranged at both sides of the leading edge of the shading cloth respectively. When the shading cloth is wound up, the hooks are hooked to the guide post.

[0011] As a further improvement of the present utility model, a set of top light-shielding components are symmetrically arranged on both sides of the top plate respectively. The length of the light-shielding cloth does not exceed half of the length of the top plate. When unfolded, the light-shielding cloths on both sides move towards the middle of the top plate respectively, so that the light-shielding cloth can completely cover the upper side of the top plate.

[0012] As a further improvement of the present utility model, it further includes a front light-shielding component. The front light-shielding component is arranged at the upper part inside the front baffle. The front light-shielding component includes a light-shielding shell and a light-shielding plate. The light-shielding shell is located under the top plate. The outer side surface of the light-shielding shell is fixedly connected to the inner side surface of the front baffle. The light-shielding shell is a hollow structure. The light-shielding plate is embedded in the light-shielding shell. A sliding guide rail is arranged inside the hollow part of the light-shielding shell. The light-shielding plate is slidably connected to the light-shielding shell through the sliding guide rail. The light-shielding plate is connected to the output end of an external telescopic motor, so that the light-shielding plate can telescopically move inside the light-shielding shell.

[0013] As a further improvement of the present utility model, the shapes of the light-shielding plate and the light-shielding shell match the shape of the front baffle, and the light-shielding plate and the light-shielding shell are arc-shaped structures.

[0014] As a further improvement of the present utility model, the front light-shielding component includes a light-shielding state and a normal state. When in the normal state, the light-shielding plate retracts and hides inside the light-shielding shell. When in the light-shielding state, the light-shielding plate extends downward to the outside of the light-shielding shell, and the projection area of the first projector is transferred to the surface of the light-shielding plate.

[0015] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0016] 1. By arranging a projection system inside the sightseeing vehicle body, the projection system projects virtual reality images onto the front baffle and the top plate. The virtual reality images overlap with the real images outside the sightseeing vehicle, realizing the integration of the real scene and the virtual scene, increasing more and wider viewing angles for tourists, enhancing the interaction between tourists and the fixed scene, and providing tourists with an immersive tour experience.

[0017] 2. By arranging the top light-shielding component, in the case of strong direct sunlight in the afternoon and other times, the light-shielding cloth on the top plate is unfolded to block the sunlight directly shining on the top plate and control the amount of light entering. This can not only weaken the influence of light on the picture projected on the top, avoid the interference of strong light on the picture color and the phenomenon of the picture turning white, restore the color of the picture as much as possible and improve the saturation, so that the picture effect maintains a good effect; but also play a role in shading and sun protection, enabling tourists to still have a good tour experience when the temperature is relatively high.

[0018] 3. By setting up the front windshield light-shielding component, in the case of strong direct sunlight in the afternoon or the like, the light-shielding plate is extended downward to the outside of the light-shielding shell, and at the same time, the projection area of the first projector can be transferred to the surface of the light-shielding plate. This can not only maintain the quality of the projection image on the front baffle, providing passengers with a better viewing experience, but also not affect the driver's driving vision, enabling the driver to avoid the stimulation of strong light. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a schematic diagram of the overall structure of the first specific embodiment of the present invention;

[0020] Figure 2 is a schematic diagram of the structure of the top light-shielding component of the present invention;

[0021] Figure 3 is a schematic diagram of the structure when the light-shielding cloth of the present invention is wound up;

[0022] Figure 4 is an enlarged view of the top light-shielding component of the present invention;

[0023] Figure 5 is a working schematic diagram when the light-shielding cloths on both sides of the present invention are unfolded;

[0024] Figure 6 is a schematic diagram of the structure of the front windshield light-shielding component of the present invention;

[0025] Figure 7 is an enlarged view of the front windshield light-shielding component of the present invention.

[0026] Explanation of the reference numerals in the drawings:

[0027] Scenic car body 1, front baffle 11, top plate 12, projection system 2, first projector 21, second projector 22, top light-shielding component 3, winding shaft 31, light-shielding cloth 32, sleeve 33, support column 34, guiding column 35, side column 36, hook 37, housing 38, front windshield light-shielding component 4, light-shielding shell 41, light-shielding plate 42, sliding guide rail 43. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] Specific Embodiment 1: Please refer to Figure 1An MR metaverse landscape vehicle, which includes a landscape vehicle body 1 and a projection system 2. The landscape vehicle body 1 includes a front baffle 11 and a top plate 12. The front baffle 11 is inclined and arranged on the front side of the landscape vehicle body 1, and the top plate 12 is arranged on the upper side of the landscape vehicle body 1. Both the front baffle 11 and the top plate 12 are made of transparent materials, and holographic projection films are respectively arranged on their surfaces. The projection system 2 includes a first projector 21 and a second projector 22. The projection area of the first projector 21 at least covers the plane where the front baffle 11 is located, and the projection area of the second projector 22 can at least cover the plane where the top plate 12 is located. The projection system 2 is used to output virtual reality images, and the virtual reality images coincide and overlap with the real images outside the landscape vehicle to achieve the scene effect of mixed reality.

[0029] Among them, the data of virtual reality images is pre-stored in the projection system 2 and directly selected and called when outputting images. In the landscape vehicle body 1 of this embodiment, there are at least two seats, one of which is the driver's seat. It should be noted that when using the landscape vehicle, the landscape vehicle body 1 includes a manual driving mode and an automatic driving mode. The tourists are divided into drivers and passengers. In the manual driving mode, projection is only carried out on the top plate 12 to prevent affecting the driver's operation; in the automatic driving mode, projection can be arbitrarily selected on the front baffle 11 and the top plate 12. The driving speed is slower in the automatic driving mode, and automatic obstacle avoidance can be achieved. It should be noted that the route planning and obstacle avoidance movement of the automatic driving of the landscape vehicle belong to existing conventional technical means, and their specific working principles will not be elaborated here.

[0030] The landscape vehicle body 1 includes a console and a camera. The console is arranged at the front end of the landscape vehicle body 1 and below the front baffle 11. An infrared touch frame, an MR handle and a speaker are respectively arranged on the console. Both the infrared touch frame and the MR handle are electrically connected to the projection system 2, and the projection system 2 can be controlled through the infrared touch frame and the MR handle to output different virtual reality images. The speaker is electrically connected to the audio module of the projection system 2 and is used to synchronously output the audio information of the projection system 2.

[0031] At least one camera is arranged inside and outside the landscape vehicle body 1. The camera arranged inside the landscape vehicle body 1 is used to collect image data inside the vehicle in real time, and the camera arranged outside the landscape vehicle body 1 is used to collect image data of the external surrounding environment in real time. The image data collected by the camera is transmitted from the mobile terminal to the cloud database.

[0032] By setting up a projection system 2 inside the landscape vehicle body 1, the projection system 2 projects virtual reality images onto the front baffle 11 and the top plate 12. The virtual reality images coincide and overlap with the real images outside the landscape vehicle, enabling the integration of the real scene and the virtual scene, increasing the viewing angles of tourists more widely, enhancing the interaction between tourists and the fixed scene, and providing tourists with an immersive tour experience.

[0033] Specific Embodiment 2: Please refer to Figures 2 - 5 an MR metaverse landscape vehicle, which is the same as Specific Embodiment 1 and will not be described in detail here. The differences are as follows: It further includes a top light-shielding component 3.

[0034] The top light-shielding component 3 is at least provided at one end of the upper side of the top plate 12. The top light-shielding component 3 includes a winding shaft 31 and a light-shielding cloth 32. As Figure 2 shown, in this embodiment, a set of top light-shielding components 3 (the light-shielding cloth 32 of one set is not drawn) are symmetrically arranged on both sides of the top plate 12 respectively. The length of the light-shielding cloth 32 does not exceed half of the length of the top plate 12. When unfolded, the light-shielding cloths 32 on both sides move towards the middle of the top plate 12 respectively, so that the light-shielding cloth 32 can completely cover the upper side of the top plate 12. The light-shielding cloth 32 has a certain elasticity and can unfold naturally. There are frames with a certain rigidity and flexibility on both sides, so that it can maintain a horizontal state when unfolded.

[0035] The winding shaft 31 is located at any end of the top plate 12 and there is a gap between the winding shaft 31 and the top plate 12. The length of the winding shaft 31 matches the width of the top plate 12. The winding shaft 31 is connected to the output end of an external winding motor, so that the winding shaft 31 can rotate around its axis. A set of bushings 33 are symmetrically arranged at both ends of the winding shaft 31 respectively, and corresponding side columns 36 are arranged on the outer sides of the bushings 33. The lower ends of the side columns 36 are fixedly connected to the upper side of the top plate 12. One side of the bushing 33 is rotatably connected to the outer side of the winding shaft 31, and the other side of the bushing 33 is rotatably connected to the upper end of the corresponding side column 36, so that the winding shaft 31 can drive the bushing 33 to rotate synchronously. The light-shielding cloth 32 is wound around the outside of the winding shaft 31, and the tail end of the light-shielding cloth 32 is fixedly connected to the outer side of the winding shaft 31. The winding shaft 31 can drive the light-shielding cloth 32 to unfold or wind up.

[0036] It should be noted that the central control console of the landscape vehicle is electrically connected to the external winding motor, so that the rotation of the winding shaft 31 can be controlled through the central control console, so that the light-shielding cloth 32 can be unfolded or wound up, and the degree of covering the top plate 12 by the light-shielding cloth 32 can be adjusted according to the intensity of sunlight irradiation. When the sunlight irradiation intensity is strong, the unfolded area of the light-shielding cloth 32 is large; when the sunlight irradiation intensity is weak, the unfolded area of the light-shielding cloth 32 is small.

[0037] The top light-shielding assembly 3 further includes a housing 38 and guide columns 35. The housing 38 is fixedly arranged outside the take-up reel 31. The lower end of the housing 38 is fixedly connected to the upper side surface of the top plate 12. The upper part of the housing 38 surrounds the take-up reel 31 above to shield the take-up reel 31 and for storage when the top light-shielding assembly 3 is not in use, preventing the light-shielding cloth 32 from being invaded by rain and dust.

[0038] The guide columns 35 are arranged on one side in the outward unfolding direction of the light-shielding cloth 32. There is a gap between the guide columns 35 and the top plate 12 and the height thereof is lower than the height of the take-up reel 31. Side columns 36 are symmetrically arranged at both ends of the guide columns 35. The two ends of the guide columns 35 are respectively fixedly connected to the upper ends of the side columns 36. The lower ends of the side columns 36 are fixedly connected to the upper side surface of the top plate 12. When the light-shielding cloth 32 unfolds, it fits against the lower side surface of the guide columns 35 to guide the unfolding of the light-shielding cloth 32. Hooks 37 are symmetrically arranged at both sides of the leading edge of the light-shielding cloth 32. When the light-shielding cloth 32 is wound up, the hooks 37 are hooked to the guide columns 35.

[0039] Working principle:

[0040] In the case of strong direct sunlight in the afternoon or the like, the take-up reel 31 is controlled to rotate through the panel of the central control console to unfold the light-shielding cloth 32 on the top plate 12 to block the sunlight directly irradiating on the top plate 12; after that, the light-shielding cloth 32 is wound up; by controlling the amount of light entering, it can not only weaken the influence of light on the projected image at the top, avoid the interference of strong light on the image color and the phenomenon of the image turning white, restore the color of the image as much as possible and improve the saturation, so that the image effect maintains a good effect; but also play a role in light shielding and sun protection, enabling tourists to still have a good tour experience when the temperature is relatively high.

[0041] Specific Embodiment Three: Please refer to Figures 6 - 7 an MR metaverse landscape vehicle, which is the same as that in Specific Embodiment Two and will not be elaborated here. The differences are as follows: It further includes a front windshield light-shielding assembly 4. The front windshield light-shielding assembly 4 is arranged at the upper part inside the front baffle 11. The front windshield light-shielding assembly 4 includes a light-shielding shell 41 and a light-shielding plate 42. The light-shielding shell 41 is located below the top plate 12. The outer side surface of the light-shielding shell 41 is fixedly connected to the inner side surface of the front baffle 11. The light-shielding shell 41 is a hollow structure. The light-shielding plate 42 is embedded in the light-shielding shell 41. A sliding guide rail 43 is arranged in the hollow part of the light-shielding shell 41. The light-shielding plate 42 is slidably connected to the light-shielding shell 41 through the sliding guide rail 43. The light-shielding plate 42 is connected to the output end of an external telescopic motor so that the light-shielding plate 42 can telescopically move in the light-shielding shell 41.

[0042] The shapes of the light-shielding plate 42 and the light-shielding shell 41 match the shape of the front baffle 11, and the light-shielding plate 42 and the light-shielding shell 41 are arc-shaped structures.

[0043] The front windshield shading component 4 includes a shading state and a normal state. When in the normal state, the sunshade panel 42 retracts and hides inside the sunshade housing 41. When in the shading state, the sunshade panel 42 extends downward to the outside of the sunshade housing 41, and the projection area of the first projector 21 is transferred to the surface of the sunshade panel 42.

[0044] Extending the sunshade panel 42 downward to the outside of the sunshade housing 41 and at the same time being able to transfer the projection area of the first projector 21 to the surface of the sunshade panel 42 can not only maintain the quality of the projected image on the front baffle 11, enabling passengers to have a better viewing experience, but also not affect the driving vision obtained by the driver, allowing them to avoid the stimulation of strong light.

Claims

1. An MR metaverse landscape vehicle, characterized in that: It includes a landscape vehicle body (1) and a projection system (2); the landscape vehicle body (1) includes a front baffle (11) and a top plate (12); the front baffle (11) is inclined and arranged on the front side of the landscape vehicle body (1), and the top plate (12) is arranged on the upper side of the landscape vehicle body (1); both the front baffle (11) and the top plate (12) are made of transparent materials, and holographic projection films are respectively arranged on their surfaces; the projection system (2) includes a first projector (21) and a second projector (22), the projection area of the first projector (21) at least covers the plane where the front baffle (11) is located, and the projection area of the second projector (22) at least covers the plane where the top plate (12) is located; the projection system (2) is used to output virtual reality images, and the virtual reality images coincide and overlap with the real images outside the landscape vehicle.

2. The MR metaverse landscape vehicle according to claim 1, characterized in that: The landscape vehicle body (1) includes a console; the console is arranged at the front end of the landscape vehicle body (1) and is located below the front baffle (11); an infrared touch frame, an MR handle and a speaker are respectively arranged on the console; both the infrared touch frame and the MR handle are electrically connected to the projection system (2), and the projection system (2) can be controlled through the infrared touch frame and the MR handle to output different virtual reality images; the speaker is electrically connected to the audio-visual module of the projection system (2) and is used to synchronously output the audio information of the projection system (2).

3. The MR metaverse landscape vehicle according to claim 1, characterized in that: The landscape vehicle body (1) further includes a camera; at least one camera is arranged inside and outside the landscape vehicle body (1) respectively. The camera arranged inside the landscape vehicle body (1) is used to collect image data inside the vehicle in real time, and the camera arranged outside the landscape vehicle body (1) is used to collect image data of the external surrounding environment in real time; The image data collected by the camera is transmitted from the mobile terminal to the cloud database.

4. The MR metaverse landscape vehicle according to claim 1, wherein: It further includes a top light-shielding component (3); the top light-shielding component (3) is at least arranged at one end of the upper side surface of the top plate (12); the top light-shielding component (3) includes a winding shaft (31) and a light-shielding cloth (32); the winding shaft (31) is located at any end of the top plate (12) and there is a gap between the winding shaft (31) and the top plate (12), and the length of the winding shaft (31) matches the width of the top plate (12); the winding shaft (31) is connected to the output end of an external winding motor so that the winding shaft (31) can rotate around its axis; two sleeves (33) are symmetrically arranged at both ends of the winding shaft (31), and corresponding side columns (36) are arranged on the outer sides of the sleeves (33); the lower ends of the side columns (36) are fixedly connected to the upper side surface of the top plate (12); one side of the sleeve (33) is rotatably connected to the outer side surface of the winding shaft (31), and the other side of the sleeve (33) is rotatably connected to the upper end of the corresponding side column (36) so that the winding shaft (31) can drive the sleeve (33) to rotate synchronously; the light-shielding cloth (32) is wound around the outside of the winding shaft (31), and the tail end of the light-shielding cloth (32) is fixedly connected to the outer side surface of the winding shaft (31), and the winding shaft (31) can drive the light-shielding cloth (32) to unfold or wind up.

5. The MR metaverse landscape vehicle according to claim 4, characterized in that: The top light-shielding assembly (3) further includes a housing (38); the housing (38) is fixedly arranged outside the winding shaft (31), the lower end of the housing (38) is fixedly connected to the upper side surface of the top plate (12), and the upper part of the housing (38) surrounds above the winding shaft (31) to shield the winding shaft (31).

6. The MR metaverse landscape vehicle according to claim 4, wherein: The top light-shielding assembly (3) further includes guide columns (35); the guide columns (35) are arranged on one side in the outward unfolding direction of the light-shielding cloth (32), there is a gap between the guide columns (35) and the top plate (12) and the height thereof is lower than the height of the winding shaft (31); side columns (36) are symmetrically arranged at both ends of the guide columns (35), the two ends of the guide columns (35) are respectively fixedly connected to the upper ends of the side columns (36), and the lower ends of the side columns (36) are fixedly connected to the upper side surface of the top plate (12); when the light-shielding cloth (32) unfolds, it is in contact with the lower side surface of the guide columns (35); hooks (37) are symmetrically arranged at both sides of the leading edge of the light-shielding cloth (32), and when the light-shielding cloth (32) is wound, the hooks (37) are hooked to the guide columns (35).

7. The MR metaverse landscape vehicle according to claim 4, wherein: A set of top light-shielding assemblies (3) are symmetrically arranged on both sides of the top plate (12); the length of the light-shielding cloth (32) does not exceed half of the length of the top plate (12), and when unfolded, the light-shielding cloth (32) on both sides moves towards the middle of the top plate (12) respectively so that the light-shielding cloth (32) can completely shield the upper side surface of the top plate (12).

8. The MR metaverse landscape vehicle according to claim 1, characterized in that: It further includes a front light-shielding assembly (4); the front light-shielding assembly (4) is arranged at the upper part inside the front baffle (11), and the front light-shielding assembly (4) includes a light-shielding housing (41) and a light-shielding plate (42); the light-shielding housing (41) is located below the top plate (12), the outer side surface of the light-shielding housing (41) is fixedly connected to the inner side surface of the front baffle (11), and the light-shielding housing (41) is a hollow structure; the light-shielding plate (42) is embedded in the light-shielding housing (41), and a sliding guide rail (43) is arranged in the hollow part of the light-shielding housing (41); the light-shielding plate (42) is slidably connected to the light-shielding housing (41) through the sliding guide rail (43); the light-shielding plate (42) is connected to the output end of an external telescopic motor so that the light-shielding plate (42) can telescopically move in the light-shielding housing (41).

9. The MR metaverse landscape vehicle according to claim 8, characterized in that: The shapes of the light-shielding plate (42) and the light-shielding housing (41) match the shape of the front baffle (11), and the light-shielding plate (42) and the light-shielding housing (41) are arc-shaped structures.

10. The MR metaverse landscape vehicle according to claim 8, wherein: The front light-shielding assembly (4) includes a light-shielding state and a normal state; when in the normal state, the light-shielding plate (42) retracts and hides inside the light-shielding housing (41); when in the light-shielding state, the light-shielding plate (42) extends downward to the outside of the light-shielding housing (41), and the projection area of the first projector (21) is transferred to the surface of the light-shielding plate (42).

Citation Information

Patent Citations

  • Automatic driving electric sightseeing vehicle

    CN215883391U