An ai visual portrait photographing device supporting multi-payment and multi-language interaction
The AI visual portrait photography device with a triangular prism structure, incorporating a lifting unit and a photovoltaic unit, solves the problem of inconvenience for users with shorter stature, improves the device's versatility and safety, and possesses green energy-saving and high-quality shooting capabilities.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- GUANGXI HUAYUN BIG DATA CO LTD
- Filing Date
- 2026-06-16
- Publication Date
- 2026-07-31
AI Technical Summary
Existing self-service photo booths cannot meet the needs of users with shorter stature. Traditional adjustment methods are cumbersome or structurally complex, affecting the versatility and safety of the equipment.
The AI visual portrait photography device adopts a triangular prism structure, with three sets of lifting units and photovoltaic units embedded in it. It uses inflatable airbags and servo motors to achieve flexible height adjustment, generates electricity in combination with photovoltaic panels, and integrates multi-language interaction and payment functions.
It achieves automatic adaptation to users of different heights, improves the versatility and safety of the device, simplifies operation, and has green energy-saving and high-quality shooting capabilities.
Smart Images

Figure CN122496718A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of intelligent photography equipment technology, and in particular to an AI visual portrait photography equipment that supports multiple payment methods and multilingual interaction. Background Technology
[0002] Currently, with the rapid development of artificial intelligence and imaging technology, various self-service photo and photo album generation devices are widely used in public places, commercial areas, scenic spots and other scenarios. These devices usually integrate cameras, displays, AI interaction systems and processing modules, allowing users to complete functions such as taking photos, image processing and photo album printing through independent operation.
[0003] Most existing autonomous photo-taking devices are designed primarily for adult users of average height. The height of the devices is usually set within the comfort zone for adults, without fully considering special groups of people with shorter stature, such as children, teenagers, or users whose height is insufficient due to illness, age, or other factors. When using traditional fixed-height photo-taking devices, these users often find it difficult to reach a suitable eye level and operating position, resulting in the inability to properly complete facial recognition, image acquisition, or interactive operations, which seriously affects the versatility of the devices and the user experience.
[0004] While some devices on the market use manual height adjustment, they often require external assistance or additional tools, making operation cumbersome. Furthermore, the exposed adjustment structure affects the overall aesthetics and safety. Some devices use electric lifting columns, but their structure is complex, their cost is high, and they are mostly used in professional photography or medical equipment, making it difficult to meet the actual needs of public places for durability, ease of maintenance, and minimal space occupation.
[0005] Therefore, there is an urgent need for an AI-powered visual portrait photography device that supports multiple payment methods and multilingual interaction, and an autonomous photography device that can automatically adapt to the needs of users of different heights, in order to solve the technical problem of existing devices being inconvenient for users of shorter stature. Summary of the Invention
[0006] The purpose of this invention is to provide an AI visual portrait photography device that supports multiple payment methods and multilingual interaction, aiming to solve the technical problem that existing devices are inconvenient for users with shorter stature.
[0007] To achieve the above objectives, the present invention employs an AI visual portrait photography device that supports multiple payment methods and multiple language interactions, including a photography device. The photography device has a triangular prism structure, and three sets of lifting units are embedded inside the photography device. Three sets of photovoltaic units are provided at the upper end of the photography device. Each lifting unit includes a translation component, the upper end of which is provided with multiple sets of inflatable airbags, and the upper end of the multiple sets of inflatable airbags is provided with a support plate assembly.
[0008] The translation component includes an inflatable base plate, with two sets of guide support sliders at the lower end of the inflatable base plate, two sets of drive wheels at the lower end of the inflatable base plate, two sets of first telescopic electric cylinders on one side of the inflatable base plate, an air supply hose on one side of the inflatable base plate, an inflatable pump at one end of the air supply hose, and multiple sets of guide columns at the upper end of the inflatable base plate.
[0009] The bearing plate assembly includes a first bearing plate, and a second bearing plate is hinged to one side of the first bearing plate.
[0010] Each photovoltaic unit includes a flipping component, a photovoltaic mounting plate on one side of the flipping component, a first photovoltaic panel on one side of the photovoltaic mounting plate, and two sets of mirror-arranged photovoltaic extension components inside the photovoltaic mounting plate.
[0011] The flipping assembly includes an L-shaped flipping block, with mounting ears on both sides of the L-shaped flipping block, and a first servo motor on one side of any set of mounting ears.
[0012] Each photovoltaic extension component includes a shaped plate, a second photovoltaic panel is provided inside the shaped plate, a rotating shaft is provided at one end of the shaped plate, a second servo motor is provided at one end of the rotating shaft, and the output end of the second servo motor is adapted to the rotating shaft.
[0013] The photographing device includes a main body, which has three sets of photographing units. Each set of photographing units includes an interactive panel, a lifting control panel, and an advertising panel. A third photovoltaic panel is provided at the top of the main body.
[0014] The camera body is also equipped with three sets of discharge barriers around its perimeter.
[0015] The subject being photographed has multiple sets of supplementary lighting units around its perimeter. Each set of supplementary lighting units consists of multiple sets of supplementary lighting devices. Each set of supplementary lighting devices includes a supplementary lighting base plate. One side of the supplementary lighting base plate has two sets of serpentine universal tubes. One side of the supplementary lighting base plate has two sets of grooves. One side of the supplementary lighting base plate is embedded with an LED supplementary lighting plate.
[0016] The camera body has three sets of drainage channels at its corners, with one end of each channel connected to the top of the camera body.
[0017] The AI visual portrait photography device of the present invention, which supports multiple payment methods and multilingual interaction, has the following beneficial effects: 1. This invention effectively solves the problem that fixed-height devices in the prior art cannot meet the shooting needs of children, teenagers or people with special heights. By adopting a flexible lifting and adjustment mechanism, the device can smoothly raise users of different heights to the best shooting angle, completely eliminating shooting blind spots caused by height restrictions, improving the humanized service level of public facilities, and enabling the device to truly serve a wide range of people of all ages. 2. This invention abandons the traditional complex and exposed mechanical lifting structure and adopts a concealed and flexible design concept. In the non-working state, the adjustment mechanism is completely stored inside the machine body, making the appearance of the equipment neat and smooth, avoiding the visual abruptness caused by exposed mechanical parts. At the same time, this structural design effectively eliminates the safety hazards such as pinching and bumping that are common in traditional mechanical transmission. 3. The equipment can flexibly adjust the light-receiving area according to environmental needs, which not only solves the problems of difficult wiring and insufficient power supply for outdoor equipment, achieving true green energy saving and off-grid operation, but also effectively avoids damage to the power generation components caused by severe weather. The equipment can continuously provide high-quality shooting services under various lighting conditions and without human intervention, significantly enhancing the practical value and commercial operation capability of the equipment. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the structure of an AI visual portrait photography device that supports multiple payment methods and multiple language interactions according to the present invention.
[0020] Figure 2 This is a top view of an AI visual portrait photography device that supports multiple payment methods and multiple language interactions according to the present invention.
[0021] Figure 3 This is the main view of an AI visual portrait photography device that supports multiple payment methods and multiple language interactions according to the present invention.
[0022] Figure 4 This is the invention Figure 3 A cross-sectional view of the internal structure along the AA line.
[0023] Figure 5 This is a schematic diagram of the lifting unit of the present invention.
[0024] Figure 6 This is a partial structural schematic diagram of the photovoltaic unit of the present invention.
[0025] 1-Inflatable airbag, 2-Inflatable base plate, 3-Guide support slider, 4-Drive wheel, 5-First telescopic electric cylinder, 6-Air supply hose, 7-Inflating and pumping integrated pump, 8-Guide column, 9-First bearing plate, 10-Second bearing plate, 11-Photovoltaic mounting plate, 12-First photovoltaic panel, 13-L-flipping block, 14-Mounting lug, 15-First servo motor, 16-Irregularly shaped plate, 17-Second photovoltaic panel, 18-Rotating shaft, 19-Second servo motor, 20-Shooting subject, 21-Interactive panel, 22-Lifting control panel, 23-Advertising panel, 24-Third photovoltaic panel, 25-Outlet barrier, 26-Filling base plate, 27-Serpentine universal tube, 28-Trench, 29-LED filler light plate, 30-Drainage trough. Detailed Implementation
[0026] Please see Figures 1 to 6 , Figure 1 This is a schematic diagram of the structure of an AI visual portrait photography device that supports multiple payment methods and multiple language interactions according to the present invention. Figure 2 This is a top view of an AI visual portrait photography device that supports multiple payment methods and multiple language interactions according to the present invention; Figure 3 This is the main view of an AI visual portrait photography device that supports multiple payment methods and multiple language interactions according to the present invention; Figure 4 This is the invention Figure 3 A cross-sectional view of the internal structure of the AA line; Figure 5 This is a schematic diagram of the lifting unit of the present invention; Figure 6 This is a partial structural schematic diagram of the photovoltaic unit of the present invention.
[0027] This invention provides an AI visual portrait photography device that supports multiple payment methods and multiple language interactions, including a photography device. The photography device has a triangular prism structure, and three sets of lifting units are embedded inside the photography device. Three sets of photovoltaic units are provided at the upper end of the photography device. Each lifting unit includes a translation component, and the upper end of the translation component is provided with multiple sets of inflatable airbags 1, and the upper end of the multiple sets of inflatable airbags 1 is provided with a support plate group.
[0028] In this embodiment, the photography device adopts a triangular prism structure, which enables it to stand stably on the ground. At the same time, the structure can be embedded with three sets of lifting units to accommodate the needs of users of different heights. The three sets of photovoltaic units at the upper end of the device can be deployed to generate electricity. The multiple sets of inflatable airbags 1 at the upper end of the translation component in the lifting unit can be raised and lowered by gas pressure. The support plate group at the upper end of the inflatable airbag 1 provides a standing platform for the user, thereby realizing the height adjustment function.
[0029] Furthermore, the translation component includes an inflatable base plate 2, with two sets of guide support sliders 3 at the lower end of the inflatable base plate 2, two sets of drive wheels 4 at the lower end of the inflatable base plate 2, two sets of first telescopic electric cylinders 5 on one side of the inflatable base plate 2, an air supply hose 6 on one side of the inflatable base plate 2, an inflatable pump 7 at one end of the air supply hose 6, and multiple sets of guide columns 8 at the upper end of the inflatable base plate 2.
[0030] In this embodiment, the translation component is specifically composed of the inflatable base plate 2 and its related components. The two sets of drive wheels 4 at the lower end of the inflatable base plate 2 facilitate the horizontal movement of the inflatable base plate 2. The two sets of first telescopic electric cylinders 5 on one side are used to drive the inflatable base plate 2 to extend or retract. At the same time, the inflatable base plate 2 has a hollow structure and is connected to multiple sets of inflatable airbags 1 and air supply hoses 6. The air supply hoses 6 on one side are connected to the inflatable pump 7 to realize gas delivery. The multiple sets of guide columns 8 at the upper end are used to guide and position the lifting and lowering of the bearing plate group to ensure the stability of the lifting and lowering process.
[0031] Furthermore, the support plate assembly includes a first support plate 9, and a second support plate 10 is hinged to one side of the first support plate 9.
[0032] In this embodiment, the support plate assembly is composed of a first support plate 9 and a second support plate 10 connected by a hinge. This hinge structure allows the second support plate 10 to be flipped and unfolded or folded and folded relative to the first support plate 9, thereby increasing the standing area to accommodate users of different body types when in use and reducing the space occupied when not in use, making it easy to store inside the equipment.
[0033] Furthermore, each photovoltaic unit includes a flipping component, a photovoltaic mounting plate 11 is provided on one side of the flipping component, a first photovoltaic panel 12 is provided on one side of the photovoltaic mounting plate 11, and two sets of mirror-arranged photovoltaic extension components are provided inside the photovoltaic mounting plate 11.
[0034] In this embodiment, each photovoltaic unit is mainly composed of a flipping component and its connecting parts. A photovoltaic mounting plate 11 is provided on one side of the flipping component to support the photovoltaic panel. A first photovoltaic panel 12 is provided on one side of the photovoltaic mounting plate 11 as the main power generation element. Two sets of mirrored photovoltaic extension components are provided inside the photovoltaic mounting plate 11 to increase the light-receiving area when unfolded, thereby improving the photovoltaic power generation efficiency.
[0035] Furthermore, the flipping assembly includes an L-shaped flipping block 13, with mounting ears 14 on both sides of the L-shaped flipping block 13, and a first servo motor 15 on one side of any set of mounting ears 14.
[0036] In this embodiment, the flipping assembly specifically includes an L-flipping block 13. Mounting ears 14 are respectively provided on both sides of the L-flipping block 13 for mounting and fixing the entire flipping assembly on the shooting body 20. A first servo motor 15 is provided on one side of any set of mounting ears 14 for driving the L-flipping block 13 to rotate, thereby causing the photovoltaic mounting plate 11 to flip to the optimal light-receiving angle.
[0037] Furthermore, each set of photovoltaic extension components includes a shaped plate 16, inside which a second photovoltaic panel 17 is provided, and at one end of the shaped plate 16 is a rotating shaft 18, at one end of the rotating shaft 18 is a second servo motor 19, and the output end of the second servo motor 19 is adapted to the rotating shaft 18.
[0038] In this embodiment, each photovoltaic extension component includes a shaped plate 16, a second photovoltaic panel 17 disposed inside the shaped plate 16 as an auxiliary power generation element, a rotating shaft 18 disposed at one end of the shaped plate 16 for connecting a drive component, and a second servo motor 19 disposed at one end of the rotating shaft 18 for driving the rotating shaft 18 to rotate, thereby causing the shaped plate 16 to expand outward or contract inward, thus realizing the extension function of the photovoltaic panel.
[0039] Furthermore, the photographing device includes a photographing main body 20, which is provided with three sets of photographing units. Each set of photographing units includes an interactive panel 21, a lifting control panel 22, and an advertising panel 23. A third photovoltaic panel 24 is provided at the upper end of the photographing main body 20.
[0040] In this embodiment, the main body 20 of the camera device is provided with three sets of camera units. Each set of camera units includes an interactive panel 21 for users to perform human-computer interaction operations. The interactive panel 21 can perform QR code payment and has a built-in multilingual AI system. It can switch between multiple languages and perform AI shooting. The lifting control panel 22 is used to control the working status of the lifting unit. The advertising panel 23 is used to display commercial information or operation instructions. The third photovoltaic panel 24 set at the top of the camera body 20 serves as a top power generation element and works in conjunction with the first and second photovoltaic panels 17. The camera device is equipped with an NFC payment module, which is used to conduct contactless near-field payment transactions with the user's electronic device or financial IC card through radio frequency signals, and transmit the transaction information to the camera device.
[0041] Furthermore, the camera body 20 is also provided with three sets of discharge baffles 25 around its perimeter.
[0042] In this embodiment, the three sets of output baffles 25 arranged around the shooting subject 20 are used to block the printed photos or prints, preventing the printed items from falling directly to the ground and causing pollution or damage, and making it convenient for users to pick them up.
[0043] Furthermore, the shooting subject 20 is provided with multiple sets of supplementary lighting units around its periphery. Each set of supplementary lighting units consists of multiple sets of supplementary lighting devices. Each set of supplementary lighting devices includes a supplementary lighting base plate 26. Two sets of serpentine universal tubes 27 are provided on one side of the supplementary lighting base plate 26. Two sets of grooves 28 are provided on one side of the supplementary lighting base plate 26. An LED supplementary lighting plate 29 is embedded on one side of the supplementary lighting base plate 26.
[0044] In this embodiment, the multiple sets of supplementary lighting units arranged around the shooting subject 20 are composed of multiple sets of supplementary lighting devices. Each set of supplementary lighting devices includes a supplementary lighting base plate 26. Two sets of serpentine universal tubes 27 are arranged on one side of the supplementary lighting base plate 26 for flexibly adjusting the supplementary lighting angle. Two sets of grooves 28 are arranged on one side of the supplementary lighting base plate 26 to facilitate the user's finger insertion for operation. An LED supplementary lighting plate 29 embedded on one side of the supplementary lighting base plate 26 is used to provide auxiliary lighting when the light is insufficient.
[0045] Furthermore, the camera body 20 is provided with three sets of drainage channels 30 at its corners, and one end of each drainage channel 30 is connected to the top of the camera body 20.
[0046] In this embodiment, three sets of drainage channels 30 are provided at the corners of the shooting body 20 to guide rainwater or cleaning water. One end of the drainage channel 30 is connected to the top of the shooting body 20, which can guide the water accumulated on the top to the ground and prevent water from seeping into the equipment and causing damage.
[0047] Furthermore, the interactive panel 21 includes a display module, a main control chip, and a wireless communication module; The main control chip is electrically connected to both the display module and the wireless communication module. The main control chip has a pre-installed payment application and multilingual AI interaction firmware. The payment application is used to generate a payment QR code and display it via the display module, and to connect to the payment gateway via the wireless communication module to verify the transaction status; The multilingual AI interaction firmware is used to switch the operating interface language according to user input commands and drive the wireless communication module to connect to the cloud AI server to realize natural language interaction and AI-assisted shooting guidance.
[0048] Furthermore, the multilingual AI interaction firmware is further configured as follows: The real-time video stream captured by the camera on the shooting subject 20 is obtained through the wireless communication module; The built-in face recognition algorithm is used to analyze the real-time video stream and generate composition guidance instructions; The composition guidance instructions are converted into voice or text information and output through the display module to guide the user in adjusting the shooting posture.
[0049] Furthermore, the payment application is configured with SDK interfaces for multiple payment channels, supporting QR code scanning payment modes including WeChat Pay, Alipay, and UnionPay QuickPass; After the transaction status verification is passed, the main control chip generates a shooting start signal and sends it to the lifting control panel 22 and the photography device. When using this invention, the subject 20 is used to identify and photograph people. During the shooting process, the interactive panel 21 facilitates human-computer interaction. The object ejection barrier 25 is used to prevent the generated photos and other items from falling to the ground. During shooting, the LED fill light plate 29 can be used to provide facial fill light for the user. When providing fill light, fingers can be inserted into the groove 28 to pull out the fill light base plate 26, and multiple angles can be adjusted according to user needs to achieve multi-angle fill light, thus improving the flexibility of use. When the fill light base plate 26 is adjusted at any angle, it is supported and positioned by the serpentine universal tube 27, and can be reset after use. The lifting unit is controlled by the lifting control panel 22. The first telescopic electric cylinder 5 is controlled to push out the inflatable base plate 2. The inflatable base plate 2 moves at a constant speed to the outside of the shooting body 20 under the drive of the drive wheel 4 and the guidance of the guide support slider 3. Then, the second support plate 10 is unfolded. The user stands on the upper end of the first support plate 9 and the second support plate 10. The integrated pump 7 is controlled to supply air to the inflatable base plate 2 through the air supply hose 6. Then the gas enters each set of inflatable airbags 1. After a large amount of gas is pumped into the multiple sets of inflatable airbags 1, they push the first support plate 9 upward. At the same time, the first support plate 9 is positioned and guided by the guide column 8 when it moves upward, so as to avoid the first support plate 9 from deviating during the rising process and to ensure the stability of the lifting. After use, the integrated pump 7 can be controlled to deflate the inflatable airbags 1, so as to retract the lifting unit. When the photovoltaic unit is folded, it does not generate photovoltaic power. When photovoltaic power generation is required, in each group of photovoltaic units, the first servo motor 15 drives the L-shaped flip block 13 to rotate. The mounting lug 14 installs and fixes the L-shaped flip block 13. The photovoltaic mounting plate 11 flips until the first photovoltaic panel 12 is horizontal. Then, the two groups of second servo motors 19 are controlled to turn left and right respectively, so that the irregular plate 16 is in a preset position. At this time, the second photovoltaic panel 17 moves out from the inside of the photovoltaic mounting plate 11. After the three groups of photovoltaic units are unfolded, the third photovoltaic panel 24 is no longer blocked by multiple groups of photovoltaic mounting plates 11. At this time, the first photovoltaic panel 12, the second photovoltaic panel 17 and the third photovoltaic panel 24 can generate photovoltaic power synchronously. The generated electrical energy is stored in the battery system inside the shooting body 20 through the circuit. When there is no need to generate power or in bad weather, the three groups of photovoltaic units can be folded to protect the first photovoltaic panel 12, the second photovoltaic panel 17 and the third photovoltaic panel 24.
[0050] The above description discloses only one preferred embodiment of the present invention, and should not be construed as limiting the scope of the present invention. Those skilled in the art will understand that all or part of the processes of the above embodiments can be implemented, and equivalent changes made in accordance with the claims of the present invention are still within the scope of the invention.
Claims
1. An AI-powered visual portrait photography device supporting multiple payment methods and multilingual interaction, characterized in that: The device includes a camera, which has a triangular prism structure, and has three sets of lifting units embedded inside. The upper part of the camera is equipped with three sets of photovoltaic units. Each lifting unit includes a translation component, the upper end of which is provided with multiple sets of inflatable airbags, and the upper end of the multiple sets of inflatable airbags is provided with a support plate assembly.
2. The AI visual portrait photography device supporting multiple payment methods and multiple language interaction as described in claim 1, characterized in that, The translation component includes an inflatable base plate, with two sets of guide support sliders at the lower end of the inflatable base plate, two sets of drive wheels at the lower end of the inflatable base plate, two sets of first telescopic electric cylinders on one side of the inflatable base plate, an air supply hose on one side of the inflatable base plate, an integrated inflation and deflation pump at one end of the air supply hose, and multiple sets of guide columns at the upper end of the inflatable base plate.
3. The AI visual portrait photography device supporting multiple payment methods and multiple language interactions as described in claim 1, characterized in that, The support plate assembly includes a first support plate, and a second support plate is hinged to one side of the first support plate.
4. The AI visual portrait photography device supporting multiple payment methods and multiple language interaction as described in claim 1, characterized in that, Each photovoltaic unit includes a flipping component, a photovoltaic mounting plate on one side of the flipping component, a first photovoltaic panel on one side of the photovoltaic mounting plate, and two sets of mirror-arranged photovoltaic extension components inside the photovoltaic mounting plate.
5. The AI visual portrait photography device supporting multiple payment methods and multiple language interaction as described in claim 4, characterized in that, The flipping assembly includes an L-shaped flipping block, with mounting ears on both sides of the L-shaped flipping block, and a first servo motor on one side of any set of mounting ears.
6. The AI visual portrait photography device supporting multiple payment methods and multiple language interaction as described in claim 4, characterized in that, Each photovoltaic extension module includes an irregularly shaped plate, inside which a second photovoltaic panel is provided. One end of the irregularly shaped plate is provided with a rotating shaft, and one end of the rotating shaft is provided with a second servo motor. The output end of the second servo motor is adapted to the rotating shaft.
7. The AI visual portrait photography device supporting multiple payment methods and multiple language interaction as described in claim 1, characterized in that, The photography device includes a shooting main body, which has three sets of shooting units. Each set of shooting units includes an interactive panel, a lifting control panel, and an advertising panel. The upper part of the shooting main body is equipped with a third photovoltaic panel.
8. The AI visual portrait photography device supporting multiple payment methods and multiple language interaction as described in claim 7, characterized in that, The camera body is also surrounded by three sets of loading barriers.
9. The AI visual portrait photography device supporting multiple payment methods and multiple language interaction as described in claim 7, characterized in that, The subject being photographed is provided with multiple sets of supplementary lighting units around its perimeter. Each set of supplementary lighting units consists of multiple sets of supplementary lighting devices. Each set of supplementary lighting devices includes a supplementary lighting base plate. One side of the supplementary lighting base plate is provided with two sets of serpentine universal tubes. One side of the supplementary lighting base plate is provided with two sets of grooves. An LED supplementary lighting plate is embedded in one side of the supplementary lighting base plate.
10. The AI visual portrait photography device supporting multiple payment methods and multiple language interaction as described in claim 7, characterized in that, The camera body has three sets of drainage channels at its corners, with one end of each drainage channel connected to the top of the camera body.