Communication terminal with cybernetic avatar display function
The communication terminal addresses limitations by generating cybernetic avatars that reflect health, psychological, and social conditions, providing adaptable hologram and voice dialogue, and enabling collaborative support across multiple devices in various languages.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- 福田博美
- Filing Date
- 2025-10-01
- Publication Date
- 2026-04-28
AI Technical Summary
Existing communication terminals primarily focus on health information, neglecting psychological and social situations, lack flexibility in display means, offer insufficient non-medical psychological care, and fail to support multilingual interactions or collaborative efforts among multiple terminals.
A communication terminal equipped with AI analysis to generate cybernetic avatars reflecting health, psychological, and social conditions, offering hologram and voice dialogue modes adaptable to environments, supporting health, consultation, casual conversation, and learning, and enabling multilingual and collaborative support.
The terminal provides comprehensive support by reflecting psychological and social conditions, offering flexible mode switching, non-medical care, and multilingual capabilities, facilitating collaborative efforts among multiple devices, suitable for international applications.
Smart Images

Figure 0007853066000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a communication terminal, and particularly to a communication terminal having a cybernetic avatar presentation function.
Background Art
[0002] In recent years, technologies for acquiring user's biological information using wearable terminals, smartphones, etc. and grasping the health state have been studied. In the prior art, there are those that simply display biological information numerically and those that present the health state using an avatar. However, the prior art has the following problems. (1) It is limited to only health information and cannot consider psychological and social situations. (2) The display means is single and cannot be flexibly switched according to the environment. (3) Non-medical psychological care such as chatting and counseling is insufficient. (4) Cooperative support between multiple terminals cannot be achieved. (5) Multilingual support and future AI (AGI / ASI) cooperation are not considered.
Prior Art Documents
Patent Documents
[0003]
Patent Document 1
Patent Document 2
Summary of the Invention
Problems to be Solved by the Invention
[0004] In the above Patent Documents 1 and 2, it was limited to only health information and did not consider psychological and social situations.
[0005] This invention has been made in view of the above problems, and the object of this invention is to provide a communication terminal that can reflect psychological and social conditions in addition to health status, can generate and present a cybernetic avatar, can respond using only voice as needed, enables switching or simultaneous use of hologram display, voice dialogue, and cybernetic avatar display, provides comprehensive support including health support, consultation / casual conversation, and learning support, and is adaptable to collaborative support between multiple terminals, multilingual support, and future AI expansion. [Means for solving the problem]
[0006] The communication terminal having a cybernetic avatar presentation function according to the first invention is a communication terminal having an AI analysis means that acquires the user's biometric information and voice input and analyzes them using AI, wherein the communication terminal has a function to generate a cybernetic avatar that reflects the user's health state, psychological state or social situation, to present the cybernetic avatar, and to respond only by voice as needed, and further comprises a mode control means that switches or simultaneously uses a hologram display mode, a voice dialogue mode and a cybernetic avatar display mode depending on the usage environment or user state.
[0007] The communication terminal according to the second invention is characterized in that, in the first invention, the communication terminal is a wristwatch-type terminal worn on the user's wrist and is equipped with a biometric information sensor capable of measuring at least one of the following: blood pressure, pulse, body temperature, blood oxygen saturation, and electrocardiogram.
[0008] The communication terminal according to the third invention is characterized in that, in the first invention, the communication terminal is a smartphone, a tablet terminal, a personal computer, smart glasses, or AR glasses.
[0009] The communication terminal according to the fourth invention is characterized in that, in the invention described in any of the first to third inventions, the AI analysis means analyzes the user's biometric information to estimate their health status and, when an abnormality is detected, includes a health support module capable of presenting at least one of the following: a change in the facial expression of a cybernetic avatar, a warning display using a hologram, or an audio notification.
[0010] The communication terminal according to the fifth invention is characterized in that, in the invention described in any of the first to third inventions, the AI analysis means analyzes the user's voice input in natural language, classifies it into health concerns, life problems, relationship worries, or general small talk, and provides advice, empathetic dialogue, entertaining small talk, or communication cooperation with an external expert organization according to the classification result.
[0011] The communication terminal according to the sixth invention is characterized in that, in the invention described in any of the first to third inventions, the AI analysis means analyzes the user's learning history or cognitive state, and is capable of presenting educational content or cognitive function training tasks, and includes a learning support module that supports the understanding of learning progress or the prevention of cognitive decline.
[0012] The communication terminal according to the seventh invention is characterized in that, in the invention described in any of the first to third inventions, it has a function that allows multiple communication terminals to communicate with each other, share information about the user's health status, psychological state, or social situation, and provide cooperative support.
[0013] The communication terminal according to the eighth invention is characterized in that, in the invention described in any of the first to third inventions, the mode control means performs environment-adaptive mode control, prioritizing hologram display in noisy environments, prioritizing voice dialogue mode when the battery level is low, and using cybernetic avatar display mode in combination when the user is experiencing strong feelings of psychological isolation.
[0014] The communication terminal according to the ninth invention is characterized in that, in the invention described in any of the first to third inventions, the voice dialogue mode supports multiple languages including Japanese and English, and the language can be switched based on user selection or automatic determination by voice recognition.
[0015] The communication terminal according to the 10th invention is characterized in that, in the invention described in any of the 1st to 3rd inventions, the AI analysis means includes at least one of the following forms: implemented within the terminal, accessing a cloud server via a communication line, cooperating with an external AI service or database API, or utilizing a large-scale language model (LLM), and further has a configuration that can connect to artificial general intelligence (AGI) or artificial superintelligence (ASI). The AI analysis means may utilize a large-scale language model (LLM) for natural language processing, and this LLM includes general-purpose models such as ChatGPT, Claude, Gemini, and LLaMA. [Effects of the Invention]
[0016] As described above, according to the present invention, it is possible to reflect psychological and social conditions in addition to health status, generate and present a cybernetic avatar, respond using only voice as needed, enable switching or simultaneous use of hologram display, voice dialogue, and cybernetic avatar display, provide comprehensive support including health support, consultation / casual conversation, and learning support, realize a communication terminal that enables cooperative support between multiple terminals, supports multiple languages, and is adaptable to future AI expansions.
[0017] Furthermore, the present invention provides the following effects. It comprehensively reflects health, psychological, and social conditions. It offers high flexibility by "generating" cybernetic avatars, "enabling" their presentation, and supporting voice responses. Mode switching and combined control are possible depending on the usage environment. In addition to health support, we provide psychological care through consultations and casual conversations. It can be applied to non-medical fields such as learning support and dementia prevention. Realize cooperative support among multiple terminals. Support multiple languages and have AGI / ASI extensibility, suitable for international expansion.
Brief Description of Drawings
[0018] The drawings show specific embodiments of the invention according to the present disclosure, including not only the essential components of the invention but also optional and preferred embodiments. [Figure 1] FIG. 1 is a block diagram of a communication network system including a communication terminal having a cybernetic avatar presentation function to which the present invention is applied. [Figure 2] FIG. 2 is a diagram showing an example of a communication terminal showing an embodiment of the present invention. [Figure 3] FIG. 3 is a functional block diagram of the mode control unit 11 of the communication terminal 1 in FIG. 1. [Figure 4] FIG. 4 is a block diagram of the user terminal of the cloud AI / DB3 in FIG. 1. [Figure 5] FIG. 5 is a flowchart of the health support module process. [Figure 6] FIG. 6 is a flowchart of the consultation support + chat module process. [Figure 7] FIG. 7 is a diagram for explaining communication between cybernetic avatars. [Figure 8] FIG. 8 is a flowchart showing an example of environment-adaptive mode control. [Figure 9] FIG. 9 is a schematic diagram of an operation interface. [Figure 10] FIG. 10 is a flowchart of the security authentication process. [Figure 11] FIG. 11 is a diagram showing an example of an authentication UI (user interface). [Figure 12] FIG. 12 is a diagram showing an example of a voice operation scenario.
Embodiments for Carrying Out the Invention
[0019] Hereinafter, an embodiment of the present invention will be described with reference to the drawings.
[0020] <Overview of Embodiments> Figure 1 is a block diagram of a communication network system including a communication terminal having a cybernetic avatar presentation function to which the present invention is applied, and Figure 2 is a diagram showing an example of a communication terminal illustrating an embodiment of the present invention. Figure 3 is a functional block diagram of the mode control unit 11 of the communication terminal 1 in Figure 1.
[0021] In Figure 1, the overall configuration of the communication network system includes communication terminals 1 and 2 (hereinafter, communication terminal 1 will be used as a representative example), cloud AI / DB 3, management server 4, cloud 5, nursing care facility terminal 6, medical institution terminal 7, specialized institution terminal 8, and database API 9.
[0022] Communication terminal 1 acquires the user's biometric information and voice input and analyzes them using AI. Communication terminal 1 generates a cybernetic avatar that reflects the user's health, psychological state, or social situation, can present the generated cybernetic avatar, and has the function to respond only by voice as needed. Furthermore, as shown in Figure 3, it is characterized by having a mode control unit 11 that switches or simultaneously uses a hologram display mode 12, a voice dialogue mode 13, and a cybernetic avatar display mode 14 depending on the usage environment or user state.
[0023] An example of a communication terminal 1 is the wristwatch-type device 1a shown in Figure 2. The wristwatch-type device 1a is a wristwatch-type terminal worn on the user's wrist and is characterized by being equipped with a biometric information sensor capable of measuring at least one of the following: blood pressure, pulse, body temperature, blood oxygen saturation, and electrocardiogram.
[0024] Other communication devices that can be used include a smartphone 1b, a tablet 1c, a personal computer 1d, smart glasses 1e, or AR glasses 1f. Communication terminals that do not have a biometric information sensor acquire measurement data from the biometric information sensor using proximity wireless communication technology (for example, Bluetooth® or Wi-Fi®).
[0025] The device is used as a standalone wristwatch or as a terminal combined with a paired mobile device. The wristwatch 1a is worn on the user's wrist (not shown) with a biometric information acquisition sensor (not shown) in contact with the user's skin. There are two types: one with a built-in collection means for collecting biometric information acquired by the wristwatch 1a in real time, and another where the collection means is provided separately from the wristwatch 1a and paired with a mobile device.
[0026] Cloud AI / DB3 includes a cloud server, data linkage, and API interface. The AI analysis means can be implemented on a terminal, access the cloud server via a communication line, or link with external AI services or database APIs. Furthermore, it is characterized by having a configuration that allows connection to artificial general intelligence (AGI) or artificial superintelligence (ASI). Specifically, as shown in Figure 4, Cloud AI / DB is composed of LLM (Large-Scale Language Model) 41, AGI 42, ASI 43, etc.
[0027] The management server 4 is connected to the communication terminal 1, etc., via the cloud 5, and may have a configuration that stores user management and history of past consultations in a database, creates prompts according to the consultation, and generates consultations using AI. The dialogue engine may be configured to perform natural language processing voice dialogue using multimodal AI.
[0028] Cloud 5 acts as an intermediary for the connection between communication terminal 1, management server 4, and cloud AI / DB3.
[0029] Nursing care facility terminal 6 and medical institution terminal 7 are terminals that register users of this service as members and provide day care services or health support services. They store biometric data and use it for health support.
[0030] Specialized institution terminal 8 is a terminal used by specialized institutions that provide other learning support services.
[0031] Database API9 is an external API database.
[0032] Communication terminal 1 comprises a CPU, ROM, RAM, display, biometric authentication memory unit, ID / password authentication unit, touch input unit, communication interface, camera, speaker, and microphone, and is configured to enable voice interaction through operation of voice commands uttered by the user. The above-described communication terminal 1 shows the configuration of a mobile terminal, but a wristwatch-type device has a nearly identical configuration. The main difference is the configuration excluding the camera, in which a biometric information sensor is located on the back of the device. The biometric information sensor measures heart rate, body temperature, skin electrical response, stress index, or sleep information. Other biometric information sensors may also be included. The communication interface includes LTE, 5G mobile communication interfaces and a near-field communication interface, and the near-field communication interface is either Bluetooth® or Wi-Fi®. A wristwatch-type device has at least a near-field communication interface, and considering power consumption, a low-power version of Bluetooth® is preferred.
[0033] <Embodiment 1> <Embodiment 1: Embodiment relating to the overall system configuration> As shown in Figure 2, the communication terminal 1 of the present invention can be configured in multiple forms, such as a wristwatch-type device (wristwatch terminal) 1a, a smartphone 1b, a tablet terminal 1c, a personal computer 1d, smart glasses 1e, and AR glasses 1f. Each terminal 1a to 1f is connected to a cloud server (cloud AI / DB3) or an external API service (database API9) via a communication line. The terminal acquires the user's biometric information (blood pressure, pulse, body temperature, blood oxygen saturation, electrocardiogram, etc.) and voice input, and performs analysis using AI. Based on the analysis results, a cybernetic avatar is generated that reflects the user's health, psychological state, and social situation. The generated avatar can be presented by multiple means, such as above the wrist, on the device screen, on a wall, in space, or within the field of view through AR glasses, and can also respond using only voice if necessary.
[0034] <Embodiment 2> <Embodiment 2: Embodiment relating to the mode control unit (function) 11> As shown in Figure 3, the communication terminal 1 of the present invention includes a hologram display mode 12, a voice dialogue mode 13, and a cybernetic avatar display mode 14. Cybernetic Avatar Display Mode 14 allows the avatar to be displayed on a device screen (smartphone, tablet, PC, etc.) or within the field of view of AR glasses. Hologram display mode 12 is a mode that displays three-dimensional images in the space around the user using optical holograms or projection technology. It is a "form that makes images appear to float externally," for example, an avatar floating on the wrist or projected onto a wall or space. These modes can be switched or used simultaneously depending on the environment and user status. For example, hologram display mode 12 is prioritized in noisy environments. Voice interaction mode 13 is prioritized when the battery level is low. If the AI estimates that the user is experiencing strong feelings of loneliness, hologram display and voice interaction are used in combination. In this way, adaptive mode control can provide an optimal user experience.
[0035] <Embodiment 3> <Embodiment 3: Embodiment relating to a health support module> Communication terminal 1 is equipped with a biometric sensor capable of measuring at least one of the following: blood pressure, pulse, body temperature, blood oxygen saturation, and electrocardiogram. The AI analyzes the acquired data and estimates the user's health status. If an abnormal value is detected, the terminal provides feedback to the user through the following multiple means. Facial expression changes of a cybernetic avatar (e.g., a pained expression). Holographic warning displays (e.g., flashing red icon). Voice notifications (e.g., "Your blood pressure is high. Please rest."). This allows users to intuitively understand their own status without having to read numbers.
[0036] Figure 5 shows the processing flow of the health support module. The health support process will be explained below using the flow shown in Figure 5.
[0037] The system acquires the user's biometric information using sensors (step 101) and estimates their health status through AI analysis (step 102). If an anomaly is detected (step 103), it provides multiple forms of feedback using avatar facial expressions (step 106), hologram warning displays (step 107), and voice notifications (step 108) (step 105). If no anomaly is detected (step 104), it displays a normal status (step 104).
[0038] A communication terminal according to any of the first to third inventions, characterized in that the AI analysis analyzes the user's biometric information to estimate their health status and, when an abnormality is detected, includes a health support module capable of presenting at least one of the following: a change in the facial expression of a cybernetic avatar, a warning display using a hologram, or an audio notification.
[0039] <Embodiment 4> <Implementation of consultation support and casual conversation modules> Figure 6 shows the configuration of the consultation support and casual conversation support modules (processing flow). Communication terminal 1 analyzes the user's voice input in natural language and classifies the content into categories such as "health concerns" (step 204), "lifestyle problems" (step 206), "relationship problems" (step 208), and "general small talk" (step 210) (step 203). Depending on the classification result, the following responses will be made. Advice (e.g., "To improve the quality of your sleep, it's a good idea to avoid using your smartphone before going to bed.") (Step 205). Empathetic dialogue (e.g., "That must have been difficult."). (Step 209) Casual conversation (e.g., "It's raining today, but it's nice to listen to music at home."). (Step 211)
[0040] In serious cases, coordinate with external specialist organizations (medical institutions, counseling services, etc.) (Step 207). This will enable not only health support but also psychological care and a reduction in feelings of loneliness.
[0041] Figure 6 shows the processing flow of the consultation support and casual conversation support modules. The consultation support and casual conversation support will be explained below using the flow shown in Figure 6. First, the system performs natural language analysis on the user's voice input (step 201) (step 202), classifying it into categories such as health consultations, lifestyle consultations (steps 204, 206), relationship problems (step 208), and casual conversation (step 210) (step 203) and responding accordingly. Through psychological care, it aims to alleviate feelings of loneliness and, if necessary, connects the user to an external organization (step 207).
[0042] <Embodiment 5> <Implementation of Cybernetic Avatar-to-Avatar Communication> Figure 7 shows the communication function between cybernetic avatars. The communication terminal 1 of the present invention has the function of enabling communication between multiple terminals (71 and 73, 71 and 72) between cybernetic avatars 74 and 75. For example, it can share the health status of an elderly person with a family member's smartphone 72. It can also link data with a terminal 73 at a medical institution to assist in medical treatment. Nursing home staff can centrally manage the status of multiple residents. This enables IoT-like multi-device collaborative support.
[0043] <Embodiment 6> <Embodiment 6: Embodiment relating to environmentally adaptive mode control> Figure 8 shows an example of environmentally adaptive mode control. Communication terminal 1 automatically switches or combines modes depending on the user's surrounding environment and usage (steps 301, 302). Specifically: In noisy environments, hologram display mode 12 is prioritized (step 303). If the battery level is low, voice interaction mode will be prioritized (step 304). When a user is experiencing strong feelings of loneliness, highlight their cybernetic avatar and activate conversation support (Step 305). This will enable flexible support tailored to individual usage patterns.
[0044] <Note> <Embodiment 7> <Embodiment 7: Operation Interface>
[0045] Figure 9 shows a schematic diagram of the operating interface. As shown in Figure 9, in the case of a communication terminal (e.g., a wristwatch type) 91, it has a voice input microphone (for voice commands such as "start" and "display") 92, a full-function operation module 93, and a direct operation interface (touch / button operation 994). All operations can be performed by voice commands or direct operation (touch, buttons, etc.). It can be used by users with disabilities and the elderly.
[0046] A communication terminal according to any of the first to third inventions, characterized in that all functions of the communication terminal can be performed by at least one of voice instruction input or direct operation by the user.
[0047] <Embodiment 8> <Embodiment 8: Security Authentication> Figure 10 shows the security authentication process flow, and Figure 11 shows an example of a security authentication UI. At the start of use (Step 401), authentication is performed using a password, PIN, biometrics (fingerprint, face, iris), etc. (Step 402) to ensure security. Multi-factor authentication is also supported. If authentication is successful (Step 403), permission to execute functions / start of use is granted (Step 404). If authentication fails (Step 405), access is denied and this process continues until authentication is successful. In case of unauthorized access, it may be possible to configure the system to lock access after a predetermined number of authentication failures (for example, 3 times).
[0048] A communication terminal according to any of the first to third inventions, characterized in that the communication terminal authenticates the user by a password, PIN, biometric authentication, or a security authentication means combining these, when use begins or when a function is executed.
[0049] <Embodiment 9> <Embodiment 9: Telephone Function> Figures 12(a), (b), (c), and (d) show examples of voice control scenarios. Figure 12(a) shows an example where the communication terminal activates a hologram avatar when the user gives the voice command "Show avatar." Figure 12(b) shows an example where the communication terminal outputs "Your blood pressure is normal. Your pulse is slightly elevated" when the user gives the voice command "Tell me my health status today." Figure 12(c) shows an example where a voice call is initiated on the communication terminal when the user gives the voice command "Make a phone call." Figure 12(d) shows an example where the communication terminal reads out the latest news from the web when the user gives the voice command "Read the news."
[0050] As shown in Figure 12(c), when the user starts using the service, they can make and receive calls by giving voice commands to the communication terminal such as "Make a call" or "Answer incoming call." This is useful for communicating with nursing homes and medical institutions.
[0051] A communication terminal according to any of the first to third inventions, wherein the communication terminal is equipped with a voice call function and is characterized in that it makes and receives phone calls by voice instructions or direct operation of the user.
[0052] <Embodiment 10> <Embodiment 10: Internet Function> As shown in Figure 12(d), when starting to use the service, the user establishes an internet connection by outputting a voice command (for example, "Read the news") to the communication terminal. This internet connection enables browsing websites, sending and receiving emails, SNS integration, and using cloud services. The user can operate the system by voice commands such as "Read the news" or "Check my email."
[0053] A communication terminal according to any of the first to third inventions, wherein the communication terminal is equipped with an internet connection function and is characterized in that it performs browsing of websites, sending and receiving of emails, and communication with cloud services or external network services.
[0054] <Embodiment 11> <Embodiment 11: Learning support and dementia prevention>
[0055] The communication terminal described in any of the first to third inventions is characterized by having a learning support module that analyzes the user's learning history or cognitive state, presents educational content or cognitive function training tasks, and supports the understanding of learning progress or the prevention of cognitive decline. It analyzes users' learning history and cognitive state to provide educational content and memory training. For the elderly, it can be used for dementia prevention through memory check questions and other methods.
[0056] <Other Embodiments> Multi-device collaborative support: Information sharing with family and medical institutions. Environmental adaptive control: Mode switching according to noise, battery level, and psychological state. Multilingual support: Voice interaction is possible in multiple languages, including Japanese and English. Future expansion: Supports cloud AI, external APIs, and connectivity with AGI and ASI.
[0057] <Effects of the Embodiment> Thus, in this embodiment, it is possible to reflect psychological and social conditions in addition to health status, generate and present a cybernetic avatar, respond using only voice as needed, switch or use together hologram display, voice dialogue, and cybernetic avatar display, provide comprehensive support including health support, consultation / casual conversation, and learning support, realize a communication terminal that enables cooperative support between multiple terminals, supports multiple languages, and is adaptable to future AI expansions.
[0058] <Industrial application fields> This invention can be used in the medical and healthcare industry, the nursing care and welfare industry, the education industry (including dementia prevention), local governments and public services, the general consumer market (home monitoring and conversation support), and the global market. [Explanation of symbols]
[0059] 1,2 Communication terminals 3. Cloud AI / DB 4. Management Server 5 Cloud 6. Nursing care facility terminals 7. Medical Institution Terminals 8. Specialized Institutional Terminals 9 Database API 11 Mode Control Unit 12. Hologram display mode 13. Voice Interaction Mode 14. Cybernetic Avatar Display Mode
Claims
1. A communication terminal having an AI analysis means that acquires the user's biometric information and voice input and analyzes it using AI, The aforementioned communication terminal has the function of generating a cybernetic avatar that reflects the user's health, psychological state, or social situation, presenting the cybernetic avatar, and responding only by voice as needed. Furthermore, the communication terminal is characterized by having mode control means for switching or simultaneously using a hologram display mode, a voice interaction mode, and a cybernetic avatar display mode depending on the usage environment or user state.
2. In the communication terminal described in claim 1, The aforementioned communication terminal is a wristwatch-type terminal worn on the user's wrist. A communication terminal characterized by being equipped with a biometric sensor capable of measuring at least one of the following: blood pressure, pulse rate, body temperature, blood oxygen saturation, and electrocardiogram.
3. In the communication terminal described in claim 1, The aforementioned communication terminal is characterized by being a smartphone, tablet device, personal computer, smart glasses, or AR glasses.
4. In the communication terminal according to any one of claims 1 to 3, The aforementioned AI analysis means analyzes the user's biometric information to estimate their health status, and if an abnormality is detected, it includes a health support module capable of presenting at least one of the following: a change in the facial expression of a cybernetic avatar, a warning display using a hologram, or an audio notification.
5. In the communication terminal according to any one of claims 1 to 3, The aforementioned AI analysis means analyzes the user's voice input in natural language, classifies it into health concerns, life problems, relationship worries, or general small talk, and, depending on the classification result, provides advice, engages in empathetic dialogue, engages in entertaining small talk, or communicates with external expert organizations.
6. In the communication terminal according to any one of claims 1 to 3, The aforementioned AI analysis means analyzes the user's learning history or cognitive state, and is capable of presenting educational content or cognitive function training tasks. The communication terminal is characterized by having a learning support module that helps to grasp learning progress or prevent cognitive decline.
7. In the communication terminal according to any one of claims 1 to 3, A communication terminal characterized by having the ability for multiple communication terminals to communicate with each other, share information about the user's health, psychological state, or social situation, and provide collaborative support.
8. In the communication terminal according to any one of claims 1 to 3, The mode control means is characterized by performing environment-adaptive mode control, which prioritizes hologram display in noisy environments, prioritizes voice dialogue mode when the battery level is low, and uses cybernetic avatar display mode in combination when the user is experiencing strong feelings of psychological isolation, depending on the user's surrounding environment or usage conditions.
9. In the communication terminal according to any one of claims 1 to 3, The aforementioned voice interaction mode supports multiple languages, including Japanese and English, and is characterized by its ability to switch languages based on user selection or automatic detection by voice recognition.
10. In the communication terminal according to any one of claims 1 to 3, The AI analysis means includes at least one of the following forms: implemented within a terminal, accessing a cloud server via a communication line, collaborating with an external AI service or database API, or utilizing a large-scale language model (LLM). Furthermore, the communication terminal is characterized by having a configuration that allows connection to artificial general-purpose artificial intelligence (AGI) or artificial superintelligence (ASI).
Citation Information
Patent Citations
A system that utilizes physiological monitoring and electronic media to improve health.
JP2013509205A
Information processing system, information processing method, and recording medium
JP2021128350A
Method for embodying avatar, computer program, and computing device
JP2023123398A
Health monitoring system and health monitoring method
JP7614679B1
Online collaboration system and health monitoring method in online collaboration system
JP7744736B1