Intelligent Interaction System, Interaction Terminal and Control Platform

By separating the interactive terminal and the control platform, and using the wireless communication module to realize the division of labor and cooperation between the interactive terminal and the control platform, the problems of repetition of functions and high energy consumption in traditional multi-terminal interactive systems are solved, and low-cost and efficient information interaction is achieved.

CN110349396BInactive Publication Date: 2025-07-22VITALINK INDUSTRY (SHENZHEN) CO LTD +1
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Patent Information

Application Number
CN201910688097.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-07-29
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

There are problems in traditional multi-terminal interactive systems with repetitive functions, high costs, and serious energy consumption, and the terminal size and volume are relatively large.

Method used

The interactive terminal is separated from the control platform, and the interactive terminal is connected to the control platform through a wireless communication module. The control platform processes human-computer interaction instructions and feedbacks the response results.

Benefits of technology

The system structure of the interactive terminal is simplified, functional duplication is avoided, space share, energy consumption and cost are reduced, and high-frequency information exchange and large-capacity information transmission are realized.

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Abstract

The present application relates to an intelligent interaction system, an interaction terminal and a control platform. The intelligent interaction system includes a control platform and a plurality of interaction terminals; the human-computer interaction module of the interaction terminal is used to collect human-computer interaction instructions and send the human-computer interaction instructions to the control platform; the control platform can receive the human-computer interaction instructions sent by the interaction terminal, execute corresponding responses for the human-computer interaction instructions, and then send the response execution results to the interaction terminal through the second wireless communication module; the interaction terminal can output corresponding human-computer interaction information according to the response execution results. By separating the interaction terminal and the control platform, on the one hand, the system structure and data interaction ability of the interaction terminal are simplified, and the existence of duplicate functions between terminals is avoided; on the other hand, the sizes and volumes of the interaction terminal and the control platform can be set to be relatively small, ensuring relatively low space occupancy, energy consumption and cost on the premise of ensuring functional completeness.
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Description

Technical Field

[0001] This application relates to the field of Internet of Things technology, and particularly to an intelligent interaction system, an interaction terminal, and a control platform. Background Art

[0002] With the development of Internet of Things and 5G communication technologies, as well as the application and promotion of smart cities, a brand-new interaction ecosystem and urban landscape have been updated. In the future, there will be unprecedented high-frequency information exchange, large-capacity information transmission, and multi-platform content interaction applications.

[0003] Currently, in the process of meeting the information interaction requirements of multiple functions and multiple platforms, the interaction of traditional multi-terminals often requires each function to be relatively perfect, and there will inevitably be duplicate functions between the terminals. Specifically, for example, when a mobile phone terminal and a tablet computer, or a mobile phone terminal and a TV terminal are performing information transmission and content interaction, both interaction parties often have touch display or other identical functions, which to a certain extent causes cost and resource waste. At the same time, in order to ensure the completeness of the functions of each interaction terminal, its control components, the size and volume of the overall structure are relatively large, and the energy consumption is serious. Summary of the Invention

[0004] Based on this, it is necessary to provide an intelligent interaction system, an interaction terminal, and a control platform for the above-mentioned technical problems.

[0005] On the one hand, an embodiment of the present invention provides an intelligent interaction system, including a control platform and a plurality of interaction terminals connected to the control platform; each interaction terminal includes a human-computer interaction module and a first wireless communication module; the human-computer interaction module is used to collect human-computer interaction instructions, and send the human-computer interaction instructions to the control platform through the first wireless communication module; the control platform includes a control module and a second wireless communication module, the second wireless communication module is used to receive the human-computer interaction instructions sent by the interaction terminal, and send the human-computer interaction instructions to the control module; the control module is used to execute corresponding responses for the human-computer interaction instructions, and send the response execution results to the interaction terminal through the second wireless communication module; the interaction terminal is used to output corresponding human-computer interaction information according to the response execution results.

[0006] In one embodiment, there are a plurality of control platforms; each interaction terminal is respectively communicatively connected to at least one of the control platforms through the first wireless communication module, and / or, each control platform is respectively communicatively connected to at least one of the interaction terminals through the second wireless communication module.

[0007] In one embodiment, the control platforms are communicatively connected to each other through the second wireless communication module.

[0008] In one embodiment, the human-computer interaction module includes a touch display module, and the human-computer interaction instruction includes a touch instruction collected by the touch display module; the control module of the control platform is configured to perform a touch response to the touch instruction and send the touch response result to the interaction terminal; the touch display module of the interaction terminal is configured to update the display interface according to the touch response result.

[0009] In one embodiment, the touch display module of each interaction terminal is configured to display in a full-screen display mode, a split-screen display mode, or a hidden-screen display mode.

[0010] In one embodiment, the human-computer interaction module further includes at least one of the following modules: an image acquisition module, a biometric acquisition module, and an audio acquisition module; the image acquisition module, the biometric acquisition module, and the audio acquisition module are respectively communicatively connected to the first wireless communication module; the human-computer interaction instruction further includes at least one of the following instructions: an image processing instruction collected by the image acquisition module, a feature recognition instruction collected by the biometric acquisition module, and an audio processing instruction collected by the audio acquisition module; the control module of the control platform is further configured to perform image processing on the image processing instruction and send the image processing result to the interaction terminal; the interaction terminal is further configured to output the image processing result; the control module of the control platform is further configured to perform feature recognition on the feature recognition instruction and send the feature recognition result to the interaction terminal; the interaction terminal is further configured to output the feature recognition result of the biometric; the control module of the control platform is further configured to perform audio processing on the audio processing instruction and send the audio processing result to the interaction terminal; the interaction terminal is further configured to output the audio processing result.

[0011] In one embodiment, the identity recognition information of the corresponding interaction terminal is carried in each human-computer interaction instruction sent by the first wireless communication module of each interaction terminal; in the response execution result for the human-computer interaction instruction, the identity recognition information of the interaction terminal is carried, and the control platform sends the response execution result to the corresponding interaction terminal according to the identity recognition information of the interaction terminal.

[0012] On the other hand, an embodiment of the present invention provides an interaction terminal for communicatively connecting to the control platform in the above intelligent interaction system, including a human-computer interaction module and a first wireless communication module; the human-computer interaction module is configured to collect human-computer interaction instructions, send the human-computer interaction instructions to the control platform through the first wireless communication module, and output corresponding human-computer interaction information according to the response execution result feedback by the control platform.

[0013] In one embodiment, the human-computer interaction module includes at least one of the following modules: a touch display module, an image acquisition module, a biometric acquisition module, and an audio acquisition module; the touch display module, the image acquisition module, the biometric acquisition module, and the audio acquisition module are respectively communicatively connected to the first wireless communication module.

[0014] In one embodiment, the touch display module includes a touch display body and a frame assembly surrounding the periphery of the touch display body; the touch display body includes two spaced-apart cover plates, a touch display module disposed between the two cover plates, and two first adhesive layers for connecting the touch display module to the two cover plates.

[0015] In one embodiment, the touch display module includes a touch layer, a display layer, and a second adhesive layer connected between the touch layer and the display layer; one of the first adhesive layers is adhered to a side of the touch layer facing away from the second adhesive layer, and the other first adhesive layer is adhered to a side of the display layer facing away from the second adhesive layer.

[0016] On the other hand, an embodiment of the present invention provides a control platform for communicatively connecting with the interaction terminal in the above intelligent interaction system, including a control module and a second wireless communication module. The second wireless communication module is configured to receive a human-computer interaction instruction sent by the interaction terminal and send the human-computer interaction instruction to the control module; the control module is configured to execute a corresponding response to the human-computer interaction instruction and send the response execution result to the interaction terminal through the second wireless communication module.

[0017] One of the above technical solutions has the following advantages or beneficial effects: By separately disposing the interaction terminal and the control platform, the intelligent interaction system hands over the human-computer interaction instructions sent by the interaction terminal to the control platform for processing and response, rather than the interaction terminal itself. On the one hand, by wirelessly communicating multiple interaction terminals with the control platform respectively, multiple interaction terminals can respectively implement different functions, thus simplifying the system structure and data interaction ability of the interaction terminal and avoiding duplicate functions among terminals. On the other hand, compared with traditional terminals that have both interaction and data processing functions, since the interaction terminal and the control platform in this intelligent interaction system are independent of each other and perform their respective functions, the sizes and volumes of the interaction terminal and the control platform can be set to be relatively small, making the entire intelligent interaction system have lower space occupancy, energy consumption, and cost while ensuring functional completeness. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 It is a schematic structural diagram of an intelligent interaction system in one embodiment;

[0019] Figure 2 Schematic structural diagram of the intelligent interaction system in another embodiment;

[0020] Figure 3 Schematic structural diagram of the intelligent interaction system in another embodiment;

[0021] Figure 4 Schematic structural diagram of the interaction terminal in one embodiment;

[0022] Figure 5 (a) Cross-sectional view of the interaction terminal in one embodiment, Figure 5 (b) Cross-sectional view of the interaction terminal in another embodiment;

[0023] Figure 6 Schematic structural diagram of the control platform in one embodiment.

[0024] Among them, each reference numeral in the figure:

[0025] 1 - Interaction terminal; 11 - First wireless communication module; 12 - Human-computer interaction module; 121 - Touch display module; 122 - Image acquisition module; 123 - Biometric acquisition module; 124 - Audio acquisition module; 13 - Cover plate; 14 - First adhesive layer; 15 - Touch display module; 151 - Touch layer; 152 - Second adhesive layer; 153 - Display layer;

[0026] 2 - Control platform; 21 - Second wireless communication module; 22 - Control module. Specific embodiments

[0027] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present application and are not used to limit the present application.

[0028] Referring to "embodiment" herein means that the specific features, structures or characteristics described in connection with the embodiment may be included in at least one embodiment of the present application. The phrase appears in various places in the specification and does not necessarily refer to the same embodiment, nor is it an independent or alternative embodiment mutually exclusive with other embodiments. Those skilled in the art understand explicitly and implicitly that the embodiments described herein may be combined with other embodiments.

[0029] A novel intelligent interaction system with multi-platform, wireless transmission, and intelligent interconnection provided by this application realizes wireless communication connection between single or multiple interaction terminals 1 and single or multiple control platforms 2 through a wireless network connection, so as to meet the needs of users for remote information access, application interaction operations, cross-platform content interaction, etc., making it possible for higher-frequency information exchange, larger-capacity information transmission, and orderly interaction of more platforms.

[0030] In one embodiment, please refer to Figure 1 , the intelligent interaction system provided by this application includes a control platform 2 and multiple interaction terminals 1 connected to the control platform 2; among them, the multiple interaction terminals 1 are independent of each other and have no communication connection, that is, if interaction is required between two interaction terminals 1, communication connection is carried out through the control platform 2 between them. Further, the interaction terminal 1 is only wirelessly interconnected with the control platform 2 and performs interaction operations.

[0031] The interaction terminal 1 includes a human-computer interaction module 12 and a first wireless communication module 11; the human-computer interaction module 12 is used to collect human-computer interaction instructions and send the human-computer interaction instructions to the control platform 2 through the first wireless communication module 11.

[0032] It should be noted that the interaction terminal 1 can be an electronic product with extremely simplified functions. This electronic product does not need to have the ability to run large application programs and can only have one or more simple interaction functions such as touch control, display, image acquisition, video display, voice recognition, audio output, fingerprint acquisition, etc. These functions can be realized through the above-mentioned human-computer interaction module 12; therefore, the interaction terminal 1 here is different from existing electronic products such as mobile phones, tablet computers, and TVs. Its structure is simpler, which is convenient for production and processing, and multiple interaction terminals 1 can all have different functions, and each interaction terminal 1 can also be specifically responsible for implementing one of the functions, which is conducive to realizing high-frequency information exchange, large-capacity information transmission, and orderly interaction of multiple platforms.

[0033] In addition, the control platform 2 includes a control module 22 and a second wireless communication module 21. The second wireless communication module 21 is used to receive the human-computer interaction instructions sent by the interaction terminal 1 and send the human-computer interaction instructions to the control module 22; the control module 22 is used to execute corresponding responses to the human-computer interaction instructions and send the response execution results to the interaction terminal 1 through the second wireless communication module 21; the interaction terminal 1 can output corresponding human-computer interaction information according to the response execution results.

[0034] It should be noted that the first wireless communication module 11 and the second wireless communication module 21 can be Wifi communication modules, Bluetooth communication modules or 5G communication modules; the above control platform 2 can be a server, a cloud controller, a computer host, etc., which can be a large control device or a small control device. Optionally, the control platform 2 can have the capabilities of large capacity, high efficiency, high intelligence, and high computing processing. At the same time, it can also run multiple programs (large applications, small applications) or multiple applications, and can meet the simultaneous wireless connections between multiple access ends and the control platform 2. The control platform 2 can be one or multiple. When there are multiple control platforms 2, each control platform 2 can operate independently without interference, or can be connected wirelessly (or wired) to realize cross-platform operation and interactive operation of large applications.

[0035] By separating the interactive terminal 1 from the control platform 2, the intelligent interaction system hands over the human-computer interaction instructions sent by the interactive terminal 1 to the control platform 2 for processing and response, rather than the interactive terminal 1 itself. On the one hand, by wirelessly communicating multiple interactive terminals 1 with the control platform 2 respectively, the multiple interactive terminals 1 can respectively realize different functions, thus simplifying the system structure and data interaction ability of the interactive terminal 1 and avoiding duplicate functions among terminals. On the other hand, compared with traditional terminals that have both interaction and data processing functions, since the interactive terminal 1 and the control platform 2 in this intelligent interaction system are independent of each other and perform their respective duties, the sizes and volumes of the interactive terminal 1 and the control platform 2 can be set smaller, making the entire intelligent interaction system have lower space occupancy, energy consumption, cost, etc. while ensuring functional completeness.

[0036] In one embodiment, there are multiple control platforms 2; the multiple control platforms 2 can be independent of each other or can form a control platform 2 group; each interactive terminal 1 is respectively communicatively connected to at least one control platform 2 through the first wireless communication module 11, and / or each control platform 2 is respectively communicatively connected to at least one interactive terminal 1 through the second wireless communication module 21. That is, in this intelligent interaction system, each interactive terminal 1 can be wirelessly connected to a control platform 2 to realize wireless interaction operations of small applications; or can be wirelessly connected to multiple types and specifications of control platforms 2 simultaneously to realize large application interactions or other more complex wireless interaction operations.

[0037] In one embodiment, the control platforms 2 communicate with each other through the second wireless communication module 21; taking one interactive terminal 1 as an example, the information interaction between this interactive terminal 1 and a single control platform 2, or the parallel connection (such as Figure 2 shown) or series connection (such as Figure 3The interaction shown in the figure). This intelligent interaction system can achieve cross-platform operation and interactive operation of large-scale applications, optimize the logic of information interaction and the interaction mode of the Internet of Things, and has strong versatility and practicality.

[0038] In one embodiment, the human-computer interaction module 12 includes a touch display module 121, and the human-computer interaction instruction includes a touch instruction collected by the touch display module 121; the control module 22 of the control platform 2 is used to perform a touch response to the touch instruction and send the touch response result to the interaction terminal 1; the interaction terminal 1 is used to update the display interface according to the touch response result. Optionally, the touch display module 121 of each interaction terminal 1 is used to display through a full-screen display mode, a split-screen display mode, or a hidden-screen display mode; it should be noted that each interaction terminal 1 may have at least one of the full-screen display mode, the split-screen display mode, and the hidden-screen display mode.

[0039] In this embodiment, the touch method of the touch display module 121 is not limited, and it can be a button touch method, or a touch or induction touch method; the medium for its display is also not limited, and it can be through a liquid crystal display screen or; the touch function and display function of the touch display module 121 can be implemented by an integrated component, or can be realized by using different components respectively, and can be specifically set and selected according to the actual situation.

[0040] Among them, the touch display module 121 can display and interact multiple tasks and multiple application programs at the same time. Multiple tasks or application programs can run on the same control platform 2, or can run on multiple control platforms 2. Specifically, for example, when the touch display module 121 has an interaction task, it can perform the interaction operation of this task through the full-screen display mode; when the touch display module 121 has multiple interaction tasks, it can perform the simultaneous interaction operation of multiple tasks through the split-screen display mode, that is, present multiple tasks on the touch display interface of the interaction terminal 1 at the same time; at this time, if one of the tasks needs to be interacted with key points, the split-screen display mode can be converted to the full-screen display mode to focus on the interaction operation of this task, and at this time the remaining tasks can be continuously interacted in the background through the hidden-screen display mode.

[0041] In one embodiment, the human-computer interaction module 12 further includes at least one of the following modules: an image acquisition module 122, a biometric acquisition module 123, and an audio acquisition module 124; the image acquisition module 122, the biometric acquisition module 123, and the audio acquisition module 124 are respectively communicatively connected to the first wireless communication module 11; wherein, the image acquisition module 122 may include a camera assembly, the biometric acquisition module 123 may include a face and fingerprint acquisition assembly, and the audio acquisition module 124 may include a microphone assembly, etc. The human-computer interaction instructions further include at least one of the following instructions: an image processing instruction acquired by the image acquisition module 122, a feature recognition instruction acquired by the biometric acquisition module 123, and an audio processing instruction acquired by the audio acquisition module 124; the control module 22 of the control platform 2 is used to perform image processing on the image processing instruction and send the image processing result to the interaction terminal 1; the interaction terminal 1 is used to output the image processing result; the control module 22 of the control platform 2 is used to perform feature recognition on the feature recognition instruction and send the feature recognition result to the interaction terminal 1; the interaction terminal 1 is used to output the feature recognition result of the biometric feature; the control module 22 of the control platform 2 is used to perform audio processing on the audio processing instruction and send the audio processing result to the interaction terminal 1; the interaction terminal 1 is used to output the audio processing result. The update method of the above display interface can be determined according to the specific functions implemented by the application program, and no unique limitation is provided here.

[0042] In one embodiment, the identity identification information of the corresponding interaction terminal 1 is carried in each human-computer interaction instruction sent by the first wireless communication module 11 of each interaction terminal 1; in the response execution result of the human-computer interaction instruction, the identity identification information of the interaction terminal 1 is carried, and the control platform 2 sends the response execution result to the corresponding interaction terminal 1 according to the identity identification information of the interaction terminal 1. That is, in the interaction process between the interaction terminal 1 and the control platform 2, the control module 22 can implement the identity / permission verification of the interaction terminal 1 and its operator, so as to display the corresponding interactive operation content on the interaction terminal 1, or allow the interaction terminal 1 to perform operations such as computing, storing, information searching, and application running for interaction.

[0043] By setting an identity identification for uniquely determining the identity for each interaction terminal 1, it is ensured that the interaction terminals 1 are not connected to each other, are independent of each other, and do not interfere with each other, and the interaction process between the interaction terminal 1 and the control platform 2 is stable and orderly, and the interaction response result is accurate. It should be noted that the identity identification may be the device number, IP address, etc. of the interaction terminal 1, and no unique limitation is provided here.

[0044] In another embodiment, as Figure 4As shown in the figure, the interactive terminal 1 provided by the present application is used for communication connection with the control platform 2 in the above intelligent interactive system, and includes a human-computer interaction module 12 and a first wireless communication module 11; the human-computer interaction module 12 is used to collect human-computer interaction instructions, send the human-computer interaction instructions to the control platform 2 through the first wireless communication module 11, and output corresponding human-computer interaction information according to the response execution result feedback by the control platform 2. Optionally, the human-computer interaction module 12 includes at least one of the following modules: a touch display module 121, an image acquisition module 122, a biometric acquisition module 123, and an audio acquisition module 124; the touch display module 121, the image acquisition module 122, the biometric acquisition module 123, and the audio acquisition module 124 are respectively in communication connection with the first wireless communication module 11.

[0045] In a specific embodiment, the interactive terminal 1 may include a touch display module 121, a first wireless communication module 11, a power module (wireless charging control module), a switch control module, an interface module, a camera module, a fingerprint acquisition module, an audio acquisition module 124, etc. The first wireless communication module 11 and other modules can be connected through a signal conversion function module. The above modules can all be designed simply with the goal of minimizing their space occupancy, and some modules can be further simplified and omitted according to the application scenario (such as: the camera module, the fingerprint acquisition module, the audio acquisition module 124, part of the interface module, etc.), so that the design of the interactive terminal 1 is more concise, with a smaller size and volume and higher portability.

[0046] Among them, the user can display an application interface, an application instruction set, control buttons, etc. through the touch display module 121 of the interactive terminal 1, presenting application content that the user can manipulate. When the user triggers a corresponding execution command on the interactive terminal 1, the control platform 2 inside the platform will receive a wireless signal of the corresponding instruction, make an execution response, and transmit the response execution result back to the interactive terminal 1 through the wireless signal. Through the reciprocating wireless transmission between the interactive terminal 1 and the control platform 2, the application of the intelligent interactive system is realized.

[0047] In one of the embodiments, as Figure 5 (a) shows, the touch display module 121 includes a touch display body and a border component (not shown in the figure) surrounding the periphery of the touch display body; the touch display body includes two cover plates 13 arranged at intervals, a touch display module 15 arranged between the two cover plates 13, and two first adhesive layers 14 for connecting the touch display module 15 and the two cover plates 13. Based on the above touch display module 121, as Figure 5As shown in (b), further, the touch display module 15 may include a touch layer 151, a display layer 153, and a second adhesive layer 152 connected between the touch layer 151 and the display layer 153; one of the first adhesive layers 14 adheres to the side of the touch layer 151 facing away from the second adhesive layer 152, and the other first adhesive layer 14 adheres to the side of the display layer 153 facing away from the second adhesive layer 152.

[0048] In some embodiments, the manufacturing method of the interactive terminal 1 is as follows: by using a glass cover plate 13 with a thickness of 0.01 - 0.2 mm, an OCA or OCR (the first adhesive layer 14) with a thickness of 0.001 - 0.2 mm, a flexible touch sheet (the touch layer 151) with a thickness of 0.01 - 0.2 mm, and a flexible OLED screen (the display layer 153) in combination, this interactive terminal 1 has flexible structural characteristics; as the thickness of each component decreases, the flexibility increases, and with the corresponding frame material, this interactive terminal 1 can be used as a rollable flexible ordinary consumer electronic product.

[0049] By using: a glass cover plate 13 with a thickness of 0.1 - 3 mm, an OCA or OCR with a thickness of 0.001 - 1 mm, a touch sheet with a thickness of 0.01 - 1 mm, and a display screen in combination, this interactive terminal 1 can have structural characteristics with a certain structural strength; as the thickness of each component increases, the structural strength increases, and with the corresponding frame material, this interactive terminal 1 can be used as a lightweight ordinary consumer electronic product.

[0050] By using: a glass cover plate 13 with a thickness of 3 - 20 mm, an OCA or OCR with a thickness of 0.001 - 8 mm, a touch sheet with a thickness of 0.01 - 3 mm, and a display screen in combination, this interactive terminal 1 can have structural characteristics with the strength of a building structure; as the thickness of each component increases, the structural strength increases, and with the corresponding frame material, this interactive terminal 1 can be used as an extra-large building structure.

[0051] When the display screen used above is a transparent display screen, in combination with the upper and lower window transparent cover plates 13 and the transparent touch function layer, this interactive terminal 1 can have a transparent touch display function and a simple and cool product design.

[0052] Among them, the frame assembly can adopt different materials (such as metal, plastic, glass, ceramic, etc.) and sizes, so as to achieve flexible, lightweight, or hard and high-strength structural characteristics, while ensuring the design requirements of no signal attenuation and simple and beautiful appearance. The power module, switch control module, wireless charging module, camera module, fingerprint collection module, and the first wireless communication module 11 can all be arranged inside the frame assembly.

[0053] In another embodiment, as Figure 6As shown in the figure, the control platform 2 provided by the present application is used for communication connection with the interaction terminal 1 in the above intelligent interaction system, and includes a control module 22 and a second wireless communication module 21. The second wireless communication module 21 is used to receive the human-computer interaction instruction sent by the interaction terminal 1 and send the human-computer interaction instruction to the control module 22; the control module 22 is used to execute the corresponding response for the human-computer interaction instruction and send the response execution result to the interaction terminal 1 through the second wireless communication module 21.

[0054] In a specific embodiment, the control platform 2 may include: a control module 22 and a second wireless communication module 21. The control module 22 may include a platform control chipset, which allows multiple interaction terminals 1 to be independently connected simultaneously, manipulate the corresponding permitted permissions simultaneously, and isolate the unpermitted manipulation instructions. The control platform 2 may also include a corresponding security protection control module 22 (such as an information security protection module, a hardware security protection module, etc.) to protect the secure connection and application of the interaction terminal 1.

[0055] In addition, the control platform 2 may further include: a box frame for fixing, installing, dissipating heat, and protecting (the material used for some or all parts should not affect the wireless signal transmission), and a central processing functional component installed inside it (a main control chip and its attached circuit, a storage control chip and its attached circuit, a wireless signal transceiver control chip and its attached circuit), a power module (a battery, a power switch, a power management chip and its attached circuit, a wired / wireless charging module, etc.).

[0056] The technical features of the above embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope described in this specification.

[0057] In the above embodiments, the descriptions of each embodiment have their own emphases. For the parts not detailed in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0058] The terms "including" and "having" and any variations thereof in the embodiments herein are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or (module) units is not limited to the listed steps or units, but optionally further includes steps or units not listed, or optionally further includes other steps or units inherent to these processes, methods, products, or devices.

[0059] As used herein, "a plurality of" means two or more. "And / or" describes the relationship between associated objects and indicates that three relationships may exist. For example, A and / or B may mean: A exists alone, A and B exist simultaneously, or B exists alone. The character " / " generally indicates that the associated objects before and after are in an "or" relationship.

[0060] As used herein, "first / second" is merely used to distinguish similar objects and does not represent a specific order for the objects. It can be understood that "first / second" can be interchanged in their specific order or sequence when permitted. It should be understood that the objects distinguished by "first / second" can be interchanged under appropriate circumstances so that the embodiments described herein can be implemented in an order other than those illustrated or described herein.

[0061] The above-described embodiments merely represent several implementation manners of the present application. The description thereof is relatively specific and detailed, but it should not be construed as a limitation on the scope of the invention patent. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present application, several modifications and improvements can still be made, and these all fall within the protection scope of the present application. Therefore, the protection scope of the patent of the present application shall be subject to the appended claims.

Claims

1. An intelligent interaction system, characterized in that, Applied to the Internet of Things environment, including a control platform and a plurality of interaction terminals connected to the control platform; each interaction terminal includes a human-computer interaction module and a first wireless communication module; the human-computer interaction module is used to collect human-computer interaction instructions and send the human-computer interaction instructions to the control platform through the first wireless communication module; each of the interaction terminals only implements one of the following interaction functions based on the human-computer interaction module: touch control, display, image acquisition, video display, voice recognition, audio output, and fingerprint acquisition, and the interaction functions implemented by each of the interaction terminals are different to serve high-frequency information exchange, large-capacity information transmission, and orderly interaction of multiple platforms; The control platform includes a control module and a second wireless communication module. The second wireless communication module is used to receive the human-computer interaction instructions sent by the interaction terminal and send the human-computer interaction instructions to the control module; the control module is used to execute corresponding responses to the human-computer interaction instructions and send the response execution results to the interaction terminal through the second wireless communication module; the interaction terminal is used to output corresponding human-computer interaction information according to the response execution results; There are multiple control platforms; each interaction terminal is respectively communicatively connected to at least one of the control platforms through the first wireless communication module, and / or each control platform is respectively communicatively connected to at least one of the interaction terminals through the second wireless communication module; Each of the control platforms is communicatively connected to each other through the second wireless communication module.

2. The intelligent interaction system according to claim 1, wherein The human-computer interaction module includes a touch display module, and the human-computer interaction instructions include touch instructions collected by the touch display module; the control module of the control platform is used to perform touch responses to the touch instructions and send the touch response results to the interaction terminal; the touch display module of the interaction terminal is used to update the display interface according to the touch response results.

3. The intelligent interaction system according to claim 2, wherein The touch display module of each interaction terminal is used to display in a full-screen display mode, a split-screen display mode, or a hidden-screen display mode.

4. The intelligent interaction system according to claim 2, wherein The human-computer interaction module further includes at least one of the following modules: an image acquisition module, a biometric acquisition module, and an audio acquisition module; the image acquisition module, the biometric acquisition module, and the audio acquisition module are respectively communicatively connected to the first wireless communication module; the human-computer interaction instruction further includes at least one of the following instructions: an image processing instruction acquired by the image acquisition module, a feature recognition instruction acquired by the biometric acquisition module, and an audio processing instruction acquired by the audio acquisition module; the control module of the control platform is further configured to perform image processing on the image processing instruction and send the image processing result to the interaction terminal; the interaction terminal is further configured to output the image processing result; the control module of the control platform is further configured to perform feature recognition on the feature recognition instruction and send the feature recognition result to the interaction terminal; the interaction terminal is further configured to output the feature recognition result of the biometric feature; the control module of the control platform is further configured to perform audio processing on the audio processing instruction and send the audio processing result to the interaction terminal; the interaction terminal is further configured to output the audio processing result.

5. The intelligent interaction system according to claim 1, wherein The identity recognition information of the corresponding interaction terminal is carried in each of the human-computer interaction instructions sent by the first wireless communication module of the interaction terminals; the identity recognition information of the interaction terminal is carried in the response execution result for the human-computer interaction instruction, and the control platform sends the response execution result to the corresponding interaction terminal according to the identity recognition information of the interaction terminal.

6. An interactive terminal, characterized in that, Applied to the Internet of Things environment For communicating with the control platform in the intelligent interaction system according to any one of claims 1 to 5, it includes a human-computer interaction module and a first wireless communication module; the human-computer interaction module is configured to collect human-computer interaction instructions, send the human-computer interaction instructions to the control platform through the first wireless communication module, and output corresponding human-computer interaction information according to the response execution result fed back by the control platform. Based on the human-computer interaction module, the interaction terminal only implements one of the following interaction functions: touch control, display, image acquisition, video display, voice recognition, audio output, and fingerprint acquisition.

7. The interactive terminal according to claim 6, characterized in that, The human-computer interaction module includes at least one of the following modules: a touch display module, an image acquisition module, a biometric acquisition module, and an audio acquisition module; the touch display module, the image acquisition module, the biometric acquisition module, and the audio acquisition module are respectively communicatively connected to the first wireless communication module.

8. The interactive terminal according to claim 7, wherein The touch display module includes a touch display body and a border component surrounding the periphery of the touch display body; the touch display body includes two spaced-apart cover plates, a touch display module disposed between the two cover plates, and two first adhesive layers for connecting the touch display module to the two cover plates.

9. The interactive terminal according to claim 8, wherein The touch display module includes a touch layer, a display layer, and a second adhesive layer connected between the touch layer and the display layer; one of the first adhesive layers is adhered to a side of the touch layer facing away from the second adhesive layer, and the other first adhesive layer is adhered to a side of the display layer facing away from the second adhesive layer.

10. A control platform, characterized in that, Applied to the Internet of Things environment For communicating and connecting with the interaction terminals with different functions in the intelligent interaction system according to any one of claims 1 to 5, including a control module and a second wireless communication module, the second wireless communication module is configured to receive the human-computer interaction instruction sent by the interaction terminal and send the human-computer interaction instruction to the control module; the control module is configured to execute a corresponding response to the human-computer interaction instruction and send the response execution result to the interaction terminal through the second wireless communication module; There are multiple control platforms; each interaction terminal is respectively communicatively connected to at least one of the control platforms through the first wireless communication module, and / or each control platform is respectively communicatively connected to at least one of the interaction terminals through the second wireless communication module; Each of the control platforms is communicatively connected to each other through the second wireless communication module.

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