Waterproof shoe sleeving and wearing device for intelligent cabin and use method of waterproof shoe sleeving and wearing device

Through the waterproof shoe covering device in the smart cockpit, the shoe coverings are automatically put on using a self-rebounding hydraulic cylinder and a linear motor, which solves the problem of shoes polluting the car environment on rainy days, improves the hygiene in the car and the comfort of passengers. It is suitable for a variety of models and has energy-saving advantages.

CN120678327APending Publication Date: 2025-09-23重庆蓝鲸智联科技有限公司
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Patent Information

Application Number
CN202510371462.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-27
Publication Date
2025-09-23

AI Technical Summary

Technical Problem

On rainy days, shoes dragging mud into the car may pollute the interior environment, causing air pollution and health problems.

Method used

A waterproof shoe cover donning device for smart cockpits is designed. It includes a shoe cover donning shell, a shoe cover film, a conveying unit, and a drive mechanism. A self-rebounding hydraulic cylinder and a linear motor are used to automatically don the shoe cover. Combined with the intelligent control of the vehicle computer system, the cover can be automatically opened or closed according to weather conditions.

Benefits of technology

It effectively prevents shoes from contaminating the vehicle interior, reduces disease transmission, and improves passenger comfort. It is suitable for different vehicle models, energy-saving, and has a long structural life.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of intelligent cabins, in particular to a waterproof shoe sleeving device for an intelligent cabin and a using method thereof.The waterproof shoe sleeving device comprises a shoe sleeving shell installed in the intelligent cabin, a shoe sleeving film is arranged at the upper end of the interior of a groove formed in the middle of the shoe sleeving shell, and the lower ends of the two sides of the shoe sleeving film are tightly attached to a conveying unit; a driving mechanism is installed on one side of the conveying unit and connected with a self-rebounding hydraulic oil cylinder, a square shell is installed on the outer side of the self-rebounding hydraulic oil cylinder, linear motors are installed at the lower ends of the outer sides of the two ends of the square shell, and cutting welding knives are installed at the upper ends of the linear motors; according to the vehicle-mounted intelligent reminding device, the interior of a vehicle can be effectively prevented from being stained by wet or dirty shoes, the interior of the vehicle is kept clean and tidy, disease transmission is reduced to a certain degree, meanwhile, intelligent reminding is provided according to the weather condition, the comfortable perception of passengers to the environment in the vehicle is improved, and the comfort of the passengers is improved. In addition, the passenger can wear the shoe bag only through simple key operation.
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Description

Technical Field

[0001] The present invention relates to the technical field of smart cockpits, and in particular to a waterproof shoe-over device used in a smart cockpit and a method of using the same. Background Art

[0002] An automatic shoe cover donning device uses automated technology to quickly don shoe covers. When a user places their foot close to the device, a sensor detects the foot's presence and automatically triggers the dispensing and donning of the shoe covers. A robotic arm or pneumatic device within the device precisely applies the shoe covers to the user's shoes, requiring no human intervention. This fast and convenient process is widely used in healthcare, food processing, laboratories, and hotels, effectively reducing the risk of cross-infection, improving work efficiency, and maintaining a hygienic and clean environment. On rainy days or when the weather is bad, shoes will drag a lot of mud (which may cause chemical reactions and produce irritating odors). Directly entering the car may pollute the interior environment, cause air pollution in the car, and lead to a series of diseases that affect health. Therefore, to address the above problems, a waterproof shoe-wearing device for a smart cockpit and a method of using the same are proposed. Summary of the Invention

[0003] The purpose of the present invention is to provide a waterproof shoe-over device for use in a smart cockpit and a method for using the same, so as to solve the problem that on rainy days or in bad weather, shoes will drag a lot of mud (which may cause chemical reactions and produce irritating odors) and directly enter the car, which may pollute the interior environment and cause air pollution in the car, leading to a series of diseases that affect health.

[0004] To achieve the above object, the present invention provides the following technical solutions: A waterproof shoe cover wearing device for an intelligent cockpit and a method for using the same, comprising a shoe cover wearing shell installed in the intelligent cockpit, a shoe cover film provided at the upper end of a groove provided in the middle of the shoe cover wearing shell, the lower ends of both sides of the shoe cover film being in close contact with a conveying unit, a driving mechanism being installed on one side of the conveying unit, the driving mechanisms being connected to a self-rebounding hydraulic cylinder, a square shell being installed on the outer side of the self-rebounding hydraulic cylinder, a linear motor being installed at the lower end of both outer sides of the square shell, a cutting and welding knife being installed at the upper end of the linear motor; the conveying unit comprising a conveyor belt surface, a plurality of anti-skid grooves being provided on the conveyor belt surface, the conveyor belt The inner sides of both ends of the surface are rotatably connected to the rotating wheels, and the middle of the rotating wheels is fixedly connected to the rotating shaft, and the inner side of the conveyor belt surface is annularly and equidistantly fixed with fixed blocks, a rotating plate is installed between the fixed blocks, and a baffle is installed on one side of the fixed block; the driving mechanism includes a multi-stage telescopic rod, and the moving end of the multi-stage telescopic rod is fixedly connected to an elastic rod, and the elastic rod is arranged on the outside of a part of the square shell and is slidably connected to the guide cover, and the upper side of the end of the elastic rod away from the multi-stage telescopic rod is fixedly connected to a movable vertical plate, and the movable vertical plate is arranged on the upper end of the inner side of the conveyor belt surface, and the movable vertical plate is slidably connected to the positioning groove opened inside the positioning plate.

[0005] As a further optimized content of the present invention, one side of the shoe cover wearing shell is connected to a physical button through a wire, and the shoe cover wearing shell is installed on the inner side of a mounting groove with a smart cover opened at the lower end of the passenger seat in the smart cockpit.

[0006] As a further optimized content of the present invention, the shoe cover film includes a film body, the inner sides of both ends of the film body are fixedly connected with elastic ropes, one end of the film body is wound inside the winding roller, and the winding roller is arranged on the inner side of one end of the shoe cover wearing shell.

[0007] As a further optimization of the present invention, there are two cutting and welding knives arranged at either end of the square shell, the cutting and welding knives correspond one to one with the linear motors, and the cutting and welding knives are hidden inside the shoe cover wearing shell.

[0008] As a further optimization of the present invention, there are two conveying units, which are parallel to each other, the lateral projection of the rotating wheel is H-shaped, fixed blocks are provided on both sides of any rotating plate, the fixed blocks, rotating plate and baffle are all arranged in the middle of the rotating wheel, and the two sides of the end of the rotating plate away from the conveyor belt surface are arc-shaped.

[0009] As a further optimization of the present invention, there are two driving mechanisms, which are arranged in a self-rebounding hydraulic cylinder. The interior of the multi-stage telescopic rod is connected to the interior of the self-rebounding hydraulic cylinder through an oil pipe. The elastic rod is slidably connected to the square shell, and the guide cover is fixedly connected to the square shell.

[0010] As a further optimized content of the present invention, the cutting and welding knife and the linear motor arranged inside the shoe cover wearing shell and the smart cover arranged at the lower end of the smart cockpit passenger seat installed on the shoe cover wearing shell communicate with the vehicle system through modules and lines.

[0011] As a further optimized content of the present invention, the vehicle system includes a human-computer interaction device, and a pop-up prompt system is provided inside the human-computer interaction device.

[0012] As a further optimized content of the present invention, the following steps are included: Step 1: Equipment installation: The shoe cover wearing shell is installed in the installation groove with the lower end of the smart cover provided at the lower end of the passenger seat of the smart cabin. Before installation, the shoe cover film needs to be installed in the shoe cover wearing shell through a winding roller; Step 2: Rainy Day Device Activation: When the vehicle system installed inside the smart cockpit detects rain, it automatically opens the smart cover to expose the shoe cover; Step 3: Passengers put on shoe covers: After getting on the bus, passengers place their feet on the upper end of the self-rebound hydraulic cylinder, which is then pressed down. During the downward pressure of the self-rebound hydraulic cylinder, the linear motor works synchronously to cut and glue the film bodies at both ends of the passenger's feet. After cutting is completed, the elastic rope drives the cut film bodies to the outside of the passenger's shoes under the elastic action to complete the wearing of the shoe covers; After the wearing is completed, the passenger's feet leave, and the multi-stage telescopic rod is driven by the self-rebounding hydraulic cylinder to retract. During the retraction process, the elastic rod is driven to move in the direction of the vertical plate, and the rotating plate is driven to move. During the movement of the rotating plate, it is blocked by the baffle and cannot rotate. Then, the rotating plate drives the conveyor belt surface to move. During the movement of the conveyor belt surface, a new film body is laid on the upper end of the self-rebounding hydraulic cylinder; During this process, the physical button can be used to control whether the smart cover is opened or not; Step 4: Automatically close the smart cover on sunny days: On sunny days, the car system installed inside the smart cockpit detects that it is sunny and automatically closes the smart cover.

[0013] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention, through the provision of a shoe cover film, shoe cover wearing shell, conveying unit, and drive mechanism, can effectively prevent damp or dirty shoes from soiling the interior of the vehicle, keeping the vehicle clean and tidy, and reducing the spread of disease to a certain extent. At the same time, it provides intelligent prompts based on weather conditions, improving passengers' perception of the vehicle's interior comfort. Furthermore, passengers can put on the shoe cover with a simple button operation. 2. In the present invention, during actual use, the waste generated by unsuccessful wearing will be stored between the new shoe cover film and the self-rebound hydraulic cylinder, which can reduce the impact on the environment. At the same time, the device is applicable to different types of vehicles, especially for parking and online car-hailing, providing better travel services for passengers, making vehicles with this function more competitive in the market. 3. In the present invention, by adapting the conveyor belt surface and the driving mechanism, no external power source is required during the process of traction of the shoe cover film to move. It can be achieved only by the downward pressure of the passenger's feet, which is more energy-saving. In addition, in actual application, it is achieved through the mechanical structure and has a longer service life. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the internal structure of the shoe cover wearing shell of the present invention; Figure 3 For the present invention Figure 2 Schematic diagram of the structure at A in the middle; Figure 4 This is a schematic diagram of the shoe cover film structure of the present invention; Figure 5 Schematic diagram of the driving mechanism structure of the present invention; Figure 6 For the present invention Figure 5 Schematic diagram of the structure at B in the middle; Figure 7 For the present invention Figure 5 Schematic diagram of the structure at C in the middle; Figure 8 For the present invention Figure 5 Schematic diagram of the structure at D in the middle; Figure 9 This is a schematic diagram of the oil pipe installation position structure of the present invention.

[0015] In the picture: 1. Shoe cover wearing shell; 2. Shoe cover film; 21. Film body; 22. Elastic cord; 3. Winding roller; 4. Square shell; 5. Self-rebounding hydraulic cylinder; 6. Cutting and welding knife; 7. Linear motor; 8. Conveying unit; 81. Conveyor belt surface; 82. Anti-skid groove; 83. Rotating wheel; 84. Rotating shaft; 85. Fixed block; 86. Rotating plate; 87. Baffle; 9. Driving mechanism; 91. Multi-stage telescopic rod; 92. Elastic rod; 93. Guide cover; 94. Positioning plate; 95. Positioning slot; 96. Moving vertical plate; 97. Oil pipe; 10. Physical buttons; 11. Wires. DETAILED DESCRIPTION

[0016] See also Figure 1-9 , the present invention provides a technical solution: A waterproof shoe cover wearing device for a smart cockpit and a method of using the same, comprising a shoe cover wearing shell 1 installed in the smart cockpit, a shoe cover film 2 provided at the upper end of a groove in the middle of the shoe cover wearing shell 1, the lower ends of both sides of the shoe cover film 2 being in close contact with a conveying unit 8, a driving mechanism 9 installed on one side of the conveying unit 8, the driving mechanism 9 being connected to a self-rebounding hydraulic cylinder 5, a square shell 4 being installed on the outside of the self-rebounding hydraulic cylinder 5, a linear motor 7 being installed at the lower end of both ends of the outer side of the square shell 4, a cutting and welding knife 6 being installed at the upper end of the linear motor 7; the conveying unit 8 comprising a conveyor belt surface 81, a plurality of anti-skid grooves 82 being provided on the conveyor belt surface 81, and the inner sides of both ends of the conveyor belt surface 81 being rotatably connected The rotating wheel 83 has a rotating shaft 84 fixedly connected in the middle of the rotating wheel 83, and fixed blocks 85 are fixedly connected in a circular shape and equidistantly on the inner side of the conveyor belt surface 81. A rotating plate 86 is installed between the fixed blocks 85, and a baffle 87 is installed on one side of the fixed block 85; the driving mechanism 9 includes a multi-stage telescopic rod 91, and the moving end of the multi-stage telescopic rod 91 is fixedly connected to an elastic rod 92, and the elastic rod 92 is arranged on the outside of a part of the square shell 4 and is slidably connected to the guide cover 93. The upper side of the end of the elastic rod 92 away from the multi-stage telescopic rod 91 is fixedly connected to a movable vertical plate 96, and the movable vertical plate 96 is arranged on the upper end of the inner side of the conveyor belt surface 81, and the movable vertical plate 96 is slidably connected to the positioning groove 95 opened inside the positioning plate 94.

[0017] As a further technical solution for implementing this solution, a physical button 10 is connected to one side of the shoe cover wearing shell 1 through a wire 11. The shoe cover wearing shell 1 is installed inside the installation slot with a smart cover opened at the lower end of the smart cabin passenger seat. Through the above arrangement, the passenger can actively control whether the smart cover is opened or not as needed; As a further technical solution for implementing this solution, the shoe cover film 2 includes a film body 21, with elastic ropes 22 fixedly connected to the inner sides of both ends of the film body 21. One end of the film body 21 is wound inside a winding roller 3, which is arranged inside one end of the shoe cover wearing shell 1. Through the above arrangement, the cut film body 1 can be stably installed on the outside of the passenger's shoes, and the film body 21 can be stably stored. As a technical solution for further implementing this solution, two cutting and welding knives 6 are provided at either end of the square shell 4, and the cutting and welding knives 6 correspond one to one with the linear motor 7. The cutting and welding knives 6 are hidden inside the shoe cover wearing shell 1. Through the above arrangement, the film body 21 can be stably cut; As a technical solution for further implementing this scheme, two conveying units 8 are provided, and the conveying units 8 are parallel to each other. The transverse projection of the rotating wheel 83 is H-shaped. A fixed block 85 is provided on both sides of each rotating plate 86. The fixed block 85, the rotating plate 86 and the baffle 87 are all arranged in the middle of the rotating wheel 83. The two sides of the end of the rotating plate 86 away from the conveyor belt surface 81 are arc-shaped. Through the above arrangement, it is possible to effectively prevent the fixed block 85, the rotating plate 86 and the baffle 87 fixedly connected inside the conveyor belt surface 81 from being blocked by the rotating wheel 83; As a further technical solution for implementing this scheme, two drive mechanisms 9 are provided. The drive mechanisms 9 are arranged in the self-rebounding hydraulic cylinder 5. The interior of the multi-stage telescopic rod 91 is connected to the interior of the self-rebounding hydraulic cylinder 5 through the oil pipe 97. The elastic rod 92 is slidably connected to the square shell 4, and the guide cover 93 is fixedly connected to the square shell 4. Through the above arrangement, the stability of the elastic rod 92 during movement can be ensured; As a technical solution further implemented in this scheme, the cutting and welding knife 6 and the linear motor 7 provided inside the shoe cover wearing shell 1 and the smart cover provided at the lower end of the smart cabin passenger seat installed on the shoe cover wearing shell 1 communicate with the vehicle system through modules and lines. The vehicle system includes a human-computer interaction device, and a pop-up prompt system is provided inside the human-computer interaction device. Through the above settings, the smart cover can be automatically opened and the passenger can automatically wear shoe covers on rainy days. As a technical solution for further implementation of this solution, step 1: equipment installation: install the shoe cover wearing shell 1 in the installation groove with the lower end of the smart cover set at the lower end of the smart cabin passenger seat. Before installation, the shoe cover film 2 needs to be installed inside the shoe cover wearing shell 1 through the winding roller 3; Step 2: Rainy day device activation: When the vehicle system installed inside the smart cockpit detects rainy days, it automatically opens the smart cover to expose the shoe cover wearing shell 1; Step 3: Passengers put on shoe covers: After boarding the bus, passengers place their feet on the upper end of the self-rebounding hydraulic cylinder 5, which is then pressed downward. During the downward pressure of the self-rebounding hydraulic cylinder 5, the linear motor 7 operates synchronously to cut and glue the film bodies 21 at both ends of the passenger's feet. After cutting, the elastic rope 22, under the elastic action, drives the cut film bodies 21 to the outside of the passenger's shoes to complete the shoe cover wearing; After the wearing is completed, the passenger's feet leave, and the multi-stage telescopic rod 91 is driven by the self-rebounding hydraulic oil cylinder 5 to retract. During the retraction process, the elastic rod 92 is driven to move in the direction, and the movable vertical plate 96 drives the rotating plate 86 to move. During the movement of the rotating plate 86, it is blocked by the baffle 87 and cannot rotate. Then, the rotating plate 86 drives the conveyor surface 81 to move. During the movement of the conveyor surface 81, a new film body 21 is laid on the upper end of the self-rebounding hydraulic oil cylinder 5; During this process, the physical button 10 can be used to control whether the smart cover is opened or not; Step 4: Automatically close the smart cover on sunny days: On sunny days, the vehicle system installed inside the smart cockpit detects that it is sunny and automatically closes the smart cover; In addition, during actual use, the film body 21 that has not been worn is stored inside the shoe cover wearing shell 1, and the driver can handle it according to the situation later.

[0018] This article uses specific examples to illustrate the principles and implementation methods of the present invention. The above examples are only used to help understand the method of the present invention and its core ideas. The above is only a preferred implementation method of the present invention. It should be pointed out that due to the limitations of textual expression, there are objectively infinite specific structures. For ordinary technicians in this technical field, without departing from the principles of the present invention, they can make several improvements, modifications or changes, and can also combine the above technical features in an appropriate manner; these improvements, modifications, changes or combinations, or the direct application of the inventive concept and technical solution to other occasions without improvement, should be regarded as the scope of protection of the present invention.

Claims

1. A waterproof shoe cover wearing device for a smart cockpit, comprising a shoe cover wearing shell (1) installed in the smart cockpit, characterized in that: A shoe cover film (2) is provided at the upper end of the inner portion of the groove provided in the middle of the shoe cover wearing shell (1), and the lower ends of both sides of the shoe cover film (2) are in close contact with the conveying unit (8). A driving mechanism (9) is installed on one side of the conveying unit (8), and the driving mechanism (9) is connected to the self-rebounding hydraulic oil cylinder (5). A square shell (4) is installed on the outer side of the self-rebounding hydraulic oil cylinder (5), and a linear motor (7) is installed at the lower end of both ends of the outer side of the square shell (4), and a cutting and welding knife (6) is installed on the upper end of the linear motor (7); The conveying unit (8) includes a conveyor belt surface (81), a plurality of anti-skid grooves (82) are provided on the conveyor belt surface (81), the inner sides of both ends of the conveyor belt surface (81) are rotatably connected to rotating wheels (83), the middle of the rotating wheel (83) is fixedly connected to a rotating shaft (84), the inner side of the conveyor belt surface (81) is annularly and equidistantly fixed to fixed blocks (85), a rotating plate (86) is installed between the fixed blocks (85), and a baffle (87) is installed on one side of the fixed block (85); The driving mechanism (9) includes a multi-stage telescopic rod (91), a movable end of the multi-stage telescopic rod (91) is fixedly connected to an elastic rod (92), the elastic rod (92) is arranged on the outside of a portion of the square shell (4) and is slidably connected to the guide cover (93), and the upper side of one end of the elastic rod (92) away from the multi-stage telescopic rod (91) is fixedly connected to a movable vertical plate (96), the movable vertical plate (96) is arranged on the upper end of the inner side of the conveyor belt surface (81), and the movable vertical plate (96) is slidably connected to a positioning groove (95) opened inside the positioning plate (94).

2. The waterproof shoe-over device for a smart cockpit according to claim 1, characterized in that: One side of the shoe cover wearing shell (1) is connected to a physical button (10) via a wire (11), and the shoe cover wearing shell (1) is installed inside a mounting groove with a smart cover plate opened at the lower end of the passenger seat in the smart cabin.

3. The waterproof shoe-over device for a smart cockpit according to claim 1, characterized in that: The shoe cover film (2) comprises a film body (21), the inner sides of both ends of the film body (21) are fixedly connected with elastic ropes (22), one end of the film body (21) is wound inside a reel (3), and the reel (3) is arranged on the inner side of one end of the shoe cover wearing shell (1).

4. The waterproof shoe-over device for a smart cockpit according to claim 1, characterized in that: Two cutting and welding knives (6) are provided at either end of the square shell (4), and there is a one-to-one correspondence between the cutting and welding knives (6) and the linear motors (7). The cutting and welding knives (6) are hidden inside the shoe cover wearing shell (1).

5. The waterproof shoe-over device for a smart cockpit according to claim 1, characterized in that: There are two conveying units (8), which are parallel to each other. The transverse projection of the rotating wheel (83) is H-shaped. Fixed blocks (85) are provided on both sides of any rotating plate (86). The fixed blocks (85), the rotating plate (86) and the baffle (87) are all arranged in the middle of the rotating wheel (83). Both sides of the rotating plate (86) away from the conveyor belt surface (81) are arc-shaped.

6. The waterproof shoe-over device for a smart cockpit according to claim 1, characterized in that: The driving mechanism (9) is provided with two, and the driving mechanism (9) is arranged in the self-rebounding hydraulic oil cylinder (5). The interior of the multi-stage telescopic rod (91) is connected to the interior of the self-rebounding hydraulic oil cylinder (5) through the oil pipe (97). The elastic rod (92) is slidably connected to the square shell (4), and the guide cover (93) is fixedly connected to the square shell (4).

7. The waterproof shoe-over device for a smart cockpit according to claim 1, characterized in that: The cutting and welding knife (6) and the linear motor (7) provided inside the shoe cover wearing shell (1) and the intelligent cover provided at the lower end of the intelligent cabin passenger seat installed on the shoe cover wearing shell (1) communicate with the vehicle system through modules and lines.

8. The waterproof shoe-over device for a smart cockpit according to claim 7, characterized in that: The vehicle system includes a human-computer interaction device, and a pop-up prompt system is provided inside the human-computer interaction device.

9. A method for using the waterproof shoe over-shoe device in a smart cabin according to any one of claims 1 to 8, characterized in that: Step 1: Equipment installation: Install the shoe cover wearing shell (1) inside the installation slot with the lower end of the smart cover plate provided at the lower end of the smart cabin passenger seat. Before installation, the shoe cover film (2) needs to be installed inside the shoe cover wearing shell (1) through the winding roller (3); Step 2: Rainy day device activation: When the vehicle system installed inside the smart cockpit detects rainy days, the smart cover is automatically opened, and the shoe cover wearing shell (1) is exposed; Step 3: Passengers wear shoe covers: After getting on the bus, passengers place their feet on the upper end of the self-rebounding hydraulic cylinder (5), and then press the self-rebounding hydraulic cylinder (5) downward. During the process of the self-rebounding hydraulic cylinder (5) pressing downward, the linear motor (7) works synchronously to cut and glue the film bodies (21) at both ends of the passenger's feet. After the cutting is completed, the elastic rope (22) drives the cut film bodies (21) under the elastic action to complete the wearing of the shoe covers on the outside of the passenger's shoes; After the wearing is completed, the passenger's feet leave, and the multi-stage telescopic rod (91) is retracted under the drive of the self-rebounding hydraulic oil cylinder (5). During the retraction process, the elastic rod (92) is driven to move in the direction, and the movable vertical plate (96) drives the rotating plate (86) to move. During the movement of the rotating plate (86), it is blocked by the baffle (87) and cannot rotate. Then, the rotating plate (86) drives the conveyor belt surface (81) to move. During the movement of the conveyor belt surface (81), a new film body (21) is laid on the upper end of the self-rebounding hydraulic oil cylinder (5); During this process, the opening or closing of the smart cover can be controlled by the physical button (10); Step 4: Automatically close the smart cover on sunny days: On sunny days, the car system installed inside the smart cockpit detects that it is sunny and automatically closes the smart cover.