An interactive experience device for urban cultural tourism
By constructing a city map model and building components with realistic physical form, and combining them with a multimodal input module, the problem of limited interactive methods in urban cultural tourism activities has been solved, achieving a stronger sense of immersion and fun, and improving the interactive experience and organizational efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI TECH UNIV
- Filing Date
- 2025-07-18
- Publication Date
- 2026-07-21
Smart Images

Figure CN224536663U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of smart tourism and human-computer interaction technology, specifically relating to an interactive experience device for urban cultural tourism. Background Technology
[0002] Currently, the technology related to urban cultural and tourism activities is insufficient in terms of interactive experience, relying too much on mobile phones. However, mobile phones can only complete interactive operations through touch screens or voice commands, making the interaction methods relatively simple.
[0003] Common VR devices with diverse interactive features are too bulky and unsuitable for travel. Furthermore, VR technology remains a virtual space and cannot be integrated with the real environment to enrich the interactive experience during travel. Summary of the Invention
[0004] In view of the shortcomings of the prior art described above, the purpose of this utility model is to propose a new interactive method that combines physical space and digital feedback. By constructing a city map model and building components with real physical form, it breaks through the limitations of traditional mobile terminals and virtual spaces, and enhances the immersiveness and fun of the interaction.
[0005] To achieve the above and other related objectives, this utility model provides an interactive experience device for urban cultural tourism, comprising: a base with a top surface formed as a display panel; the panel is divided into multiple areas according to a preset tourist location, each area corresponding to a check-in point at the tourist location, and each area is equipped with a corresponding lighting device; a main control module, a power module, and an input module are installed on the bottom surface of the base; wherein, preset wiring is arranged within the base to electrically connect all the lighting devices, the power module, and the input module to the main control module; after receiving an electrical signal from the user through the input module, the main control module illuminates the lighting device in the corresponding area.
[0006] In one embodiment of the present invention, the input module includes an inertial measurement unit for detecting the linear acceleration of the base along the X, Y, and Z axes and the rotational acceleration about the X, Y, and Z axes, so as to identify the user's haptic input and convert it into a corresponding electrical signal to be sent to the main control module.
[0007] In one embodiment of the present invention, the input module includes: a touch unit for recognizing user touch input and converting it into a corresponding electrical signal to be sent to the main control module; wherein, the touch unit includes one or more capacitive touch sensing copper areas and is laid on the panel.
[0008] In one embodiment of the present invention, the input module includes: a radio frequency identification unit, used to send and receive radio frequency signals to identify specific tag inputs and convert them into corresponding electrical signals to be sent to the main control module.
[0009] In one embodiment of the present invention, a tactile feedback module is also installed on the bottom surface of the base and is electrically connected to the main control module; wherein, when the main control module illuminates the corresponding lighting device, it synchronously drives the tactile feedback module.
[0010] In one embodiment of this utility model, a corresponding PCB board is provided inside the base; wherein, the lighting device is soldered on the PCB board and connected to the main control module through copper wires etched on the PCB board; corresponding connectors are soldered on the PCB board at positions corresponding to the power module, the input module, and the main control module, and the power module, the input module, and the main control module are detachably plugged into the corresponding connectors and interconnected through copper wires etched on the PCB board.
[0011] In one embodiment of this utility model, the power module includes: a battery; a voltage regulator with its input terminal connected to the battery and its output terminal connected to the power supply terminal of the main control module for connecting to an external power source; and a battery management unit connected to both the battery and the voltage regulator. When the voltage regulator is connected to an external power source, the battery management unit controls the voltage regulator to charge the battery and supply power to the main control module via the external power source. When the voltage regulator is not connected to an external power source, the battery management unit controls the voltage regulator to supply power to the main control module via the battery.
[0012] In one embodiment of the present invention, it further includes: a plurality of light-amplifying devices, which are arranged one-to-one with the lighting devices in each area; wherein the light-amplifying devices are detachably plugged into the corresponding areas.
[0013] In one embodiment of this utility model, the light-amplifying device is made of an acrylic plate, and the acrylic plate is engraved with a textured pattern corresponding to the card-taking position.
[0014] In one embodiment of this utility model, the lighting device adopts a WS2812B-2020 intelligent external control integrated LED light source; wherein, all the lighting devices are connected in series, and the series-connected lighting devices are connected to one output pin of the main control module; the main control module outputs a preset digital electrical signal to light up one or more corresponding lighting devices.
[0015] The beneficial effects of this utility model are as follows: This utility model proposes a city interaction solution with a stronger sense of immersion, personalization and scalability. By constructing a city map model and building components with real physical form, it breaks through the limitations of traditional mobile terminals and virtual spaces, enhances the immersiveness and fun of interaction, and can effectively alleviate the multiple bottlenecks of current urban cultural tourism activities in terms of interactive experience, content services and organizational efficiency. Attached Figure Description
[0016] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application. It is obvious that the drawings described below are merely some embodiments of this application, and those skilled in the art can obtain other drawings based on these drawings without any inventive effort.
[0017] In the attached diagram:
[0018] Figure 1 This is a structural diagram of a specific embodiment of an interactive experience device for urban cultural tourism provided in one aspect of this utility model;
[0019] Figure 2 This is a structural diagram of another specific embodiment of an interactive experience device for urban cultural tourism provided in one embodiment of the present utility model;
[0020] Figure 3 This is a structural diagram of yet another specific embodiment of an interactive experience device for urban cultural tourism provided in one embodiment of the present utility model;
[0021] Figure 4 This is a schematic diagram of the electrical connection relationship in an interactive experience device for urban cultural tourism provided in one embodiment of the present invention;
[0022] Figure 5 This is a reference schematic diagram of a specific embodiment of the lighting device in an interactive experience device for urban cultural tourism provided in one embodiment of the present utility model. Detailed Implementation
[0023] The following specific examples illustrate the implementation of this utility model. Those skilled in the art can easily understand other advantages and effects of this utility model from the content disclosed in this specification. This utility model can also be implemented or applied through other different specific embodiments. Various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this utility model. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.
[0024] It should be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of the present invention. The drawings only show the components related to the present invention and are not drawn according to the actual number, shape and size of the components. In actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.
[0025] In the following description, numerous details are explored to provide a more thorough explanation of embodiments of the present invention. However, it will be apparent to those skilled in the art that embodiments of the present invention may be practiced without these specific details. In other embodiments, well-known structures and devices are shown in block diagram form rather than in detail to avoid obscuring embodiments of the present invention.
[0026] Please see Figure 1-3 As shown, an interactive experience device for urban cultural tourism includes: a base 10, the top surface of which is formed as a display panel 11. The panel 11 is designed according to a preset tourist destination. For example, map information of the tourist destination can be drawn on it. Furthermore, multiple areas can be divided according to the attractions included in the tourist destination (i.e., corresponding to a check-in location). In this way, users can go to the check-in locations shown on the panel 11 one by one.
[0027] It's worth noting that panel 11 can be designed according to the characteristics of the tourist destination. For example, if the destination is a school area, panel 11 can be divided into several corresponding areas based on the layout of school buildings and facilities, such as teaching buildings, playgrounds, and cafeterias. Each area corresponds to a checkpoint, which users need to visit and explore to complete the designated game tasks. Additionally, specific map information can be printed on panel 11, such as road information between the teaching buildings and the cafeteria, and detailed building information within the teaching buildings. This allows users to view their current location in real time and understand their route, thus better immersing themselves in the exploration of the tourist destination.
[0028] As can be seen, panel 11 is equivalent to a scaled-down map, allowing users to travel to designated tourist destinations with the interactive experience device and complete the exploration of these destinations through a series of game tasks.
[0029] In addition, each area is equipped with a corresponding lighting device 111. After a user completes the exploration of any area, they can mark it by lighting up the lighting device 111 in that area.
[0030] Furthermore, the interactive experience device is also equipped with a main control module 20, a power module 30, and an input module 40, all of which are mounted on the bottom surface of the base 10.
[0031] First, the main control module 20, acting as a processor and memory, can pre-load several game tasks into it, so that users can select different game tasks for each area when using the interactive experience device.
[0032] This means that the main control module 20 can communicate and interact with the user's mobile device via Bluetooth or Wi-Fi, thereby displaying corresponding content on the mobile app. For example, after the interactive experience device establishes communication with the mobile phone, since several game tasks have been pre-imported into the main control module 20, all the game tasks, as well as the game tasks to be completed for each area of exploration, can be displayed in the user's mobile app. The user can either complete this operation directly through the mobile phone, i.e., select one or more game tasks from several game tasks as the exploration target for each area, or complete the above operation through the input module 40.
[0033] It should be noted that the input module 40, as a device for collecting user input information, provides multimodal input, allowing users to choose from multiple methods such as motion sensing, touch, and voice, thereby enhancing the device's playability. For example, users can select game tasks by shaking the device left and right while holding it, or turn on a light fixture in a specific area by touching it, and so on. Therefore, in this embodiment, the input module 40 is equipped with an inertial measurement unit 41, a touch control unit 42, and a radio frequency identification unit 43.
[0034] The inertial measurement unit 41 is used to detect the linear acceleration and rotational acceleration of the base 10 along the X, Y, and Z axes to identify the user's haptic input and convert it into corresponding electrical signals to be sent to the main control module 20. The touch unit 42 is used to identify the user's touch input and convert it into corresponding electrical signals to be sent to the main control module 20. The radio frequency identification unit 43 is used to send and receive radio frequency signals to identify specific tag inputs and convert them into corresponding electrical signals to be sent to the main control module.
[0035] Of course, the input module 40 is not limited to the above description. For example, a voice recognition unit can be set to receive the user's voice input, and even a GPS positioning unit can be set to obtain the user's location in real time so as to automatically turn on the lighting device in the designated area after the user arrives at the designated area. There are no restrictions on this. Modifications and refinements made by those skilled in the art to the embodiments of this utility model without departing from the spirit of this utility model still fall within the scope of the utility model application patent of this utility model.
[0036] Correspondingly, users can select the game tasks to be completed in each area through the input module 40.
[0037] It is also understandable that a small display screen could be additionally configured on panel 11 for the main control module 20 to display the corresponding images, thus eliminating the need to connect to the user's mobile device. The user can then complete the operation through input module 40, without any restrictions.
[0038] Secondly, once a user successfully explores an area, they have completed the game task for that area. Feedback can be sent via the input module 40. Upon receiving the electrical signal from the user through the input module 40, the main control module 20 illuminates the corresponding area's lighting device 111, thus marking the area. Users can then intuitively see from the panel 11 which areas they have explored and which areas remain unexplored.
[0039] Based on the above, such as Figure 4 As shown, all the lighting devices 111 and the input module 40 are electrically connected to the main control module 20. The power module 30, which provides the necessary power to the main control module 20, is also electrically connected to it. In one specific embodiment, all the above functional modules are electrically connected via a PCB board. Copper wires corresponding to the electrical connections can be pre-etched onto the PCB board, and the lighting devices 111 can be soldered to their corresponding positions. Each functional module—the power module 30, the input module 40 (including the inertial detection unit 41, the touch unit 42, and the radio frequency identification unit 43), and the main control module 20—is connected to the PCB board via connectors. Correspondingly, connectors can be pre-soldered to their corresponding positions on the PCB board. The power module 30, the inertial detection unit 41, the touch unit 42, the radio frequency identification unit 43, and the main control module 20 can be detachably plugged into their respective connectors, facilitating maintenance and replacement of each functional module. Furthermore, the PCB board is placed within the base 10 to reduce the overall size and thickness of the device.
[0040] It should be noted that in this embodiment, the lighting device 111 preferably uses a smart externally controlled integrated LED light source with a WS2812B-2020, thereby allowing adjustment of the light's color and brightness. Furthermore, due to the basic performance of the WS2812B-2020, all lighting devices 111 can be connected in series, such as... Figure 5 As shown, the DO port of the first WS2812B-2020 is directly connected to the DI port of the second WS2812B-2020, and the series-connected lighting device, i.e., the DI port of the first WS2812B-2020, is connected to an output pin of the main control module 20. The main control module 20 can light up any one or more lighting devices 111 by outputting the corresponding digital electrical signal.
[0041] Furthermore, this interactive experience device can be configured with a haptic feedback module 50 to provide certain responsive feedback when the user operates through the input module 40. For example, when the main control module 20 illuminates the lighting device 111, the haptic feedback module 50 can be driven synchronously. Accordingly, connectors can be soldered to corresponding positions on the PCB board for the haptic feedback module 50 to plug into, and the haptic feedback module 50 is electrically connected to the main control module through copper wires etched on the PCB board. Specifically, in practical applications, the haptic feedback module 50 can employ a vibration motor to provide feedback to the user through vibration.
[0042] Furthermore, depending on the size of the base 10 and the panel 11, a certain number of functional modules can be set, and there is no limitation on the number of functional modules. For example, a light field module with a color sensor and a photoresistor, or an audio module with an amplifier and a speaker, can also be set. As long as the traces on the PCB board are designed reasonably and connectors are soldered at the corresponding positions (that is, the output pins of the main control module 20 are led out and soldered with connectors so that the functional modules can be directly connected to the main control module 20 by plugging them into the connectors), functional modules can be freely added or removed by plugging or unplugging. However, when the size of the base 10 and the panel 11 is small and cannot accommodate more functional modules, an expansion module can be used. The side of the expansion module facing away from the bottom of the base 10 is copper-plated and has a window to lead out all available output pins of the main control module 20 so that new components can be soldered on the surface to expand the functionality of the interactive experience device.
[0043] In one specific embodiment, the main control module 20 can use an ESP32C3 chip and bring out multiple GPIO output pins for connecting various functional modules. The inertial detection unit 41 can use an MPU6050 chip. After acquiring linear and rotational acceleration, it can calculate the current speed of the device by integrating the acceleration once, and obtain the current attitude and displacement of the device by integrating the acceleration twice and then passing it through Kalman filtering, thereby interpreting the user's haptic input. The touch unit 42 can use a TTP224 chip, and one or more capacitive touch-sensing copper areas can be laid on the panel 11 to recognize the user's touch input. The radio frequency identification unit 43 can use a PN532 chip and is additionally configured with a coil to transmit and receive radio frequency signals (such as NFC, RFID), thereby enabling the reading and writing of specific tags. For example, a user can light up the lighting device in a designated area by bringing the device close to a specified NFC device.
[0044] In another specific embodiment, the power module 20 includes a battery, a voltage regulator (LDO), and a battery management unit. The input terminal of the voltage regulator is connected to the battery and is used to connect to an external power source, such as via a Type-C interface. Its output terminal is connected to the power supply terminal of the main control module 20, thereby providing the voltage required for the main control module 20 and for the various functional modules to operate. The battery management unit is used to control the operation of the battery and the voltage regulator. Specifically, when there is no Type-C power supply, i.e., the voltage regulator is not connected to an external power source, the battery management unit can control the voltage regulator to supply power to the main control module 20 through the battery. When there is Type-C power supply, i.e., the voltage regulator is connected to an external power source, the battery management unit can control the voltage regulator to charge the battery and supply power to the main control module 20 through the external power source. This allows the device to be used both plugged in and without external power.
[0045] In addition, the interactive experience device is equipped with several additional light-amplifying devices 60, each corresponding to a specific lighting device. In one embodiment, the light-amplifying devices 60 are made of acrylic panels. Since each area corresponds to a lighting device 111, the corresponding light-amplifying devices 60 are also set up for each area. The acrylic panels can be designed in the shape of the characteristic buildings of that area, forming a three-dimensional architectural model, and enhancing the display effect of the lighting devices 111 to improve the user's experience with the device.
[0046] Due to the principle of total internal reflection, light entering the acrylic sheet from the side cannot be directly refracted from both sides. Therefore, etching can be used to damage the surface of the acrylic sheet, allowing the engraved marks to be illuminated. Furthermore, textured patterns characteristic of that area can be etched onto the surface of the acrylic sheet, enabling the lighting device to illuminate these textures. To further enhance the lighting effect, light-guiding columns can be installed inside the acrylic sheet, allowing the light from the lighting device 111 to directly enter the interior of the acrylic sheet.
[0047] It should also be added that corresponding holes and slots can be opened on the panel 11 for each light device 111 to expose the light source of the light device 111 and improve the display effect of the light through the light amplification device 60.
[0048] Furthermore, the light-amplifying device 60 is detachably plugged into the corresponding area of the panel 11. For example, a corresponding protrusion is provided on the bottom of the acrylic sheet, and a slot is provided in the corresponding area of the panel 11 so that the acrylic sheet can be embedded therein. No further restrictions are imposed on this. Modifications and refinements made by those skilled in the art to the embodiments of this utility model without departing from the spirit of this utility model still fall within the scope of the utility model application patent of this utility model.
[0049] Therefore, the interactive experience device provided in this embodiment allows users to fully interact with specific and effective content. In a campus exploration game, the gameplay of the interactive experience device provided in this embodiment can be referenced as follows:
[0050] First, users need to remove individual building models (light amplification devices) from the acrylic die-cutting plate and insert them into their designated positions on panel 11. Next, after powering the device via Type-C, users shake the device to start the game. Correspondingly, users can navigate to the designated areas on panel 11 and complete corresponding game tasks. After completing a task, users can activate the lighting device in that area using motion sensing, touch, or voice commands. Finally, the rainbow light effect of the lighting device 111 can be unlocked by touching a pre-set NFC tag in that area.
[0051] In summary, this utility model proposes a more immersive, personalized, and scalable urban interaction solution. By constructing a city map model and building components with realistic physical forms, it breaks through the limitations of traditional mobile terminals and virtual spaces, enhances the immersiveness and fun of interaction, and can effectively alleviate the multiple bottlenecks in current urban cultural tourism activities in terms of interactive experience, content services, and organizational efficiency.
[0052] The above embodiments are merely illustrative of the principles and effects of this utility model and are not intended to limit this utility model. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this utility model. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this utility model should still be covered by the claims of this utility model.
[0053] Throughout this description, numerous specific details, such as examples of components and / or methods, are provided to provide a complete understanding of embodiments of the present invention. However, those skilled in the art will recognize that embodiments of the present invention may be practiced without one or more of these specific details or by other devices, systems, components, methods, parts, materials, components, etc. In other instances, well-known structures, materials, or operations have not been specifically shown or described in detail to avoid obscuring aspects of embodiments of the present invention.
[0054] Throughout this specification, references to "an embodiment," "an embodiment," or "a specific embodiment" mean that a particular feature, structure, or characteristic described in connection with an embodiment is included in at least one embodiment of the present invention, but not necessarily in all embodiments. Therefore, the various representations of the phrases "in one embodiment," "in an embodiment," or "in a specific embodiment" in different places throughout the specification do not necessarily refer to the same embodiment. Furthermore, a particular feature, structure, or characteristic of any specific embodiment of the present invention can be combined with one or more other embodiments in any suitable manner. It should be understood that other variations and modifications of the embodiments of the present invention described and illustrated herein may be based on the teachings herein and will be considered part of the spirit and scope of the present invention.
[0055] It should also be understood that one or more of the elements shown in the figures may be implemented in a more separate or more integrated manner, or may even be removed because they are inoperable in certain circumstances or provided because they may be useful for a particular application.
[0056] Furthermore, unless otherwise expressly stated, any arrows in the accompanying drawings should be considered illustrative only and not limiting. Additionally, unless otherwise stated, the term "or" as used herein is generally intended to mean "and / or". Where a term is anticipated to provide a separation or combination capability that is unclear, a combination of components or steps will also be considered as indicated.
[0057] As used herein and throughout the claims below, unless otherwise specified, “a” and “the” include the plural references. Similarly, as used herein and throughout the claims below, unless otherwise specified, “in” means “in” and “on”.
[0058] The above description of the embodiments shown in this utility model (including the content set forth in the abstract of the specification) is not intended to be an exhaustive enumeration or to limit the utility model to the precise forms disclosed herein. Although specific embodiments and examples of the utility model have been described herein for illustrative purposes only, various equivalent modifications are possible within the spirit and scope of the utility model, as will be recognized and understood by those skilled in the art. As indicated, these modifications can be made to the utility model in accordance with the above description of the embodiments described herein, and such modifications will be within the spirit and scope of the utility model.
[0059] This document has generally described the systems and methods in detail to aid in understanding the present invention. Furthermore, various specific details have been set forth to provide a general understanding of embodiments of the present invention. However, those skilled in the art will recognize that embodiments of the present invention can be practiced without one or more specific details, or using other devices, systems, accessories, methods, components, materials, parts, etc. In other instances, well-known structures, materials, and / or operations have not been specifically shown or described in detail to avoid obscuring aspects of embodiments of the present invention.
[0060] Therefore, although the present invention has been described herein with reference to specific embodiments thereof, freedom of modification, various changes and substitutions are also within the scope of the above disclosure, and it should be understood that in some cases, certain features of the present invention may be adopted without departing from the scope and spirit of the invention and without corresponding use of other features. Thus, many modifications can be made to adapt a particular environment or material to the essential scope and spirit of the present invention. The present invention is not intended to be limited to the specific terms used in the following claims and / or the specific embodiments disclosed as the best mode of carrying out the present invention, but the present invention will include any and all embodiments and equivalents falling within the scope of the appended claims. Therefore, the scope of the present invention will be determined only by the appended claims.
Claims
1. An interactive experience device for urban cultural tourism, characterized in that, include: The base has a top surface that forms a display panel. The panel is divided into multiple areas according to a preset tourist destination. Each area corresponds to a check-in point at the tourist destination, and each area is equipped with a corresponding lighting device. The base is equipped with a main control module, a power supply module, and an input module. The base is equipped with pre-set wiring to electrically connect all the lighting devices, the power module, and the input module to the main control module. After receiving an electrical signal from the user via the input module, the main control module illuminates the lighting device in the corresponding area.
2. The interactive experience device for urban cultural tourism according to claim 1, characterized in that, The input module includes: An inertial measurement unit is used to detect the linear acceleration along the X, Y, and Z axes and the rotational acceleration about the X, Y, and Z axes of the base, so as to identify the user's haptic input and convert it into corresponding electrical signals and send them to the main control module.
3. The interactive experience device for urban cultural tourism according to claim 1, characterized in that, The input module includes: The touch unit is used to recognize the user's touch input and convert it into a corresponding electrical signal to be sent to the main control module; The touch unit includes one or more capacitive touch-sensitive copper areas, which are laid on the panel.
4. The interactive experience device for urban cultural tourism according to claim 1, characterized in that, The input module includes: The radio frequency identification (RFID) unit is used to send and receive radio frequency signals to identify specific tag inputs and convert them into corresponding electrical signals to be sent to the main control module.
5. The interactive experience device for urban cultural tourism according to claim 1, characterized in that, The bottom surface of the base is also equipped with a tactile feedback module, which is electrically connected to the main control module; When the main control module illuminates the corresponding light device, it simultaneously drives the tactile feedback module.
6. The interactive experience device for urban cultural tourism according to claim 1, characterized in that, The base contains a corresponding PCB board. The lighting device is soldered onto the PCB board and connected to the main control module via copper wires etched onto the PCB board. The PCB board has corresponding connectors soldered to the positions of the power module, the input module, and the main control module. The power module, the input module, and the main control module are detachably plugged into the corresponding connectors and interconnected by copper wires etched on the PCB board.
7. The interactive experience device for urban cultural tourism according to claim 1, characterized in that, The power module includes: Battery; A voltage regulator, with its input terminal connected to the battery and its output terminal connected to the power supply terminal of the main control module, is used to connect to an external power source. A battery management unit is connected to both the battery and the voltage regulator. When the voltage regulator is connected to an external power source, the battery management unit controls the voltage regulator to charge the battery and supply power to the main control module through the external power source. When the voltage regulator is not connected to an external power source, the battery management unit controls the voltage regulator to supply power to the main control module through the battery.
8. The interactive experience device for urban cultural tourism according to claim 1, characterized in that, Also includes: Several light-amplifying devices are installed, each corresponding to a different lighting device in each area; The light-amplifying device is detachably plugged into the corresponding area.
9. The interactive experience device for urban cultural tourism according to claim 8, characterized in that, The light-amplifying device uses an acrylic sheet, and the acrylic sheet is engraved with a textured pattern corresponding to the location of the photo check-in.
10. The interactive experience device for urban cultural tourism according to claim 1, characterized in that, The lighting device uses the WS2812B-2020 intelligent external control integrated LED light source; All the lighting devices are connected in series, and the series-connected lighting devices are connected to one output pin of the main control module; The main control module outputs a preset digital electrical signal to light up one or more corresponding lighting devices.