Health condition evaluation device, health condition evaluation method, and health condition evaluation program

The health status evaluation system effectively assesses a driver's suitability for vehicle operation by integrating biometric data from wearable devices and institutional records, enhancing safety and convenience in transportation systems.

JP2026019446APending Publication Date: 2026-02-05HONDA MOTOR CO LTD
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Patent Information

Application Number
JP2024121012
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-07-26
Publication Date
2026-02-05

AI Technical Summary

Technical Problem

Existing driver assistance systems face challenges in properly assessing a driver's health status to improve traffic safety and convenience, which is crucial for sustainable transportation systems.

Method used

A health status evaluation system that integrates a smartphone, smartwatch, and in-vehicle device to acquire and evaluate biometric information from both wearable devices and information holding institutions, determining the driver's suitability for vehicle operation based on comprehensive health and driving data.

Benefits of technology

Enables accurate assessment of a driver's health status for safe driving, providing personalized advice and improving road safety and convenience through continuous health monitoring and evaluation.

✦ Generated by Eureka AI based on patent content.

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Abstract

To properly evaluate a health condition related to driving ability of a user.SOLUTION: The smartphone 1 includes the acquiring unit 111 that acquires the first biological information BJ1 from the smartwatch 2 that is worn by the user U and detects the biological information of the user U, and acquires the second biological information BJ2 from the information retaining organization 3 that retains the biological information of the user U, and the evaluating unit 112 that evaluates whether the health condition of the user U is appropriate as the driver in the vehicle VC based on the first biological information BJ1 and the second biological information BJ2.SELECTED DRAWING: Figure 4
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Description

[Technical Field]

[0001] The present invention relates to a health condition evaluation device, a health condition evaluation method, and a health condition evaluation program. [Background technology]

[0002] Conventionally, a device has been proposed that acquires biometric information of a driver and driving information related to the driver's driving operation, and determines the driver's driving suitability based on the acquired information (see, for example, Patent Document 1). [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Publication No. 2023-145468 Summary of the Invention [Problem to be solved by the invention]

[0004] In recent years, efforts to provide access to sustainable transport systems that take into consideration vulnerable transport participants have become more active. To achieve this, we are focusing on research and development into driver assistance systems that support the safety and health of drivers, thereby further improving road safety and convenience.

[0005] Meanwhile, driver assistance systems face the challenge of further improving traffic safety and convenience by properly assessing the driver's health status, which is related to their driving ability.

[0006] The present application aims to solve the above-mentioned problems by properly evaluating the health status of drivers in relation to their driving ability, which will ultimately contribute to the development of sustainable transportation systems. [Means for solving the problem]

[0007] A first aspect for achieving the above object is a health status evaluation device that includes an acquisition unit that acquires first biometric information from a device worn by a user and detects the user's biometric information, and acquires second biometric information from an information holding institution that holds the user's biometric information, and an evaluation unit that evaluates whether the user's health status is appropriate for driving a vehicle based on the first biometric information and the second biometric information.

[0008] A second aspect for achieving the above object is a health condition evaluation method including an acquisition step of acquiring first biometric information from a device worn by a user and detecting the user's biometric information, and acquiring second biometric information from an information holding institution that holds the user's biometric information, and an evaluation step of evaluating whether the user's health condition is appropriate for driving a vehicle based on the first biometric information and the second biometric information.

[0009] A third aspect for achieving the above object is a health status evaluation program that causes a processor provided in a health status evaluation device to function as an acquisition unit that acquires first biometric information from a device worn by a user and detects the user's biometric information, and acquires second biometric information from an information holding institution that holds the user's biometric information, and an evaluation unit that evaluates whether the user's health status is appropriate for driving a vehicle based on the first biometric information and the second biometric information. [Effects of the Invention]

[0010] According to the above-described health state evaluation device, health state evaluation method, and health state evaluation program, it is possible to properly evaluate the health state related to the user's driving ability. [Brief explanation of the drawings]

[0011] [Figure 1] FIG. 1 is a diagram showing an example of the configuration of a health condition evaluation system. [Figure 2] FIG. 2 is a diagram illustrating an example of the configuration of a smartwatch. [Figure 3] FIG. 3 is a diagram illustrating an example of the configuration of the in-vehicle device. [Figure 4] FIG. 4 is a diagram illustrating an example of the configuration of a smartphone. [Figure 5] FIG. 5 is a diagram illustrating an example of the correlation between biometric information, scores, and advice information. [Figure 6] FIG. 6 is a flowchart illustrating an example of processing by the smartphone. DETAILED DESCRIPTION OF THE INVENTION

[0012] Hereinafter, embodiments of a health state evaluation device, a health state evaluation method, and a health state evaluation program will be described with reference to the drawings.

[0013] [1. Structure of the health status assessment system] First, the configuration of health state evaluation system 100 will be described with reference to Fig. 1. Fig. 1 is a diagram showing an example of the configuration of health state evaluation system 100. Health state evaluation system 100 corresponds to an example of the above-mentioned "driver assistance system." As shown in Fig. 1, the health state evaluation system 100 includes a smartphone 1, a smartwatch 2, and an in-vehicle device 4. The dashed two-dot line in Fig. 1 indicates that the smartphone 1, the smartwatch 2, and the vehicle VC are owned by a user U.

[0014] The smartphone 1 wirelessly communicates with the smartwatch 2, the information holding organization 3, and the in-vehicle device 4 in accordance with a communication standard such as Wi-Fi (registered trademark).

[0015] The smartphone 1 acquires first biometric information BJ1 from a smartwatch 2. A user U is a driver of a vehicle VC. The smartphone 1 also acquires second biometric information BJ2 from an information holding agency 3. The smartphone 1 also acquires driving information QJ from an in-vehicle device 4. Furthermore, the smartphone 1 evaluates whether the health condition of the user U is appropriate for the driver of the vehicle VC based on the first biometric information BJ1 and the second biometric information BJ2. The smartphone 1 corresponds to an example of a "health condition evaluation device." The smartphone 1 will be further described with reference to Figures 4-6.

[0016] The smartwatch 2 is worn on the wrist of the user U. The smartwatch 2 generates first biological information BJ1. The first biological information BJ1 includes, for example, the user U's heart rate. The smart watch 2 corresponds to an example of a "device." The smartwatch 2 is further described with reference to FIG.

[0017] The information holding institution 3 is an institution that holds the second biometric information BJ2. The second biometric information BJ2 includes, for example, health checkup information of the user U. The information holding institution 3 generates the second biometric information BJ2. The information holding institution 3 is an institution that holds the second biometric information BJ2, such as a hospital, an insurance company, a local government, or a nursing care company. In this embodiment, the information holding institution 3 represents, for example, a server device located in a hospital or the like. The second biometric information BJ2 will be further described with reference to FIGS.

[0018] The in-vehicle device 4 is mounted on the vehicle VC. The in-vehicle device 4 generates driving information QJ. The driving information QJ includes operation information when the user U drives the vehicle VC. The in-vehicle device 4 will be further described with reference to FIG.

[0019] [2. Smartwatch configuration] Next, the configuration of the smartwatch 2 will be described with reference to Fig. 2. Fig. 2 is a diagram showing an example of the configuration of the smartwatch 2. As shown in FIG. 2, the smartwatch 2 includes a second control unit 21, a second clock unit 22, a second wireless communication interface 23, a second touch panel 24, a biometric information generation unit 25, and a second position detection unit 26.

[0020] The second control unit 21 controls each unit of the smartwatch 2. The second control unit 21 includes a second processor 211 and a second memory 212.

[0021] The second memory 212 is configured, for example, by a non-volatile semiconductor memory or a combination of volatile and non-volatile semiconductor memories. The second processor 211 is configured by a CPU (Central Processing Unit) or an MPU (Micro Processor Unit). The second processor 211 may be configured by a single processor or by multiple processors. The second processor 211 controls each part of the smartwatch 2 by executing a second control program stored in the second memory 212.

[0022] The second clock unit 22 has a clocking function that measures the date and time. The second clock unit 22 also acquires date and time information from a server device (not shown). The second clock unit 22 adjusts the clocking function using the acquired date and time information. The second clock unit 22 displays the date and time information on the second touch panel 24.

[0023] The second wireless communication interface 23 includes an antenna for receiving wireless signals and an interface circuit for processing the wireless signals received by the antenna, and performs wireless communication with external devices including a server device (not shown) and the smartphone 1.

[0024] The second touch panel 24 includes a display panel and a touch sensor. The display panel is configured with a liquid crystal panel, an organic EL (Electro-Luminescence) panel, etc. The touch sensor detects a touch operation by the user U on the display panel. The second touch panel 24 displays an image on the display panel in accordance with an instruction from the second control unit 21. The second touch panel 24 also detects a touch operation by the user U on the display panel.

[0025] The biometric information generator 25 generates the first biometric information BJ1. The biometric information generating unit 25 measures first biometric information BJ1, which is biometric information of the user U wearing the smart watch 2, at predetermined intervals. The first biological information BJ1 includes, for example, sleep information BJ11, exercise information BJ12, and stress information BJ13. The sleep information BJ11, exercise information BJ12, and stress information BJ13 will be further described with reference to FIG.

[0026] The biological information generation unit 25 outputs the measured first biological information BJ1 to the second control unit 21. The second control unit 21 transmits the first biological information BJ1 to the smartphone 1 via the second wireless communication interface .

[0027] The second position detection unit 26 includes a GNSS (Global Navigation Satellite System) sensor, and receives positioning signals transmitted from GNSS satellites to determine the position of the smartwatch 2, i.e., latitude, longitude, altitude, etc. The second position detection unit 26 outputs position information indicating the determined position to the second control unit 21.

[0028] [3. Configuration of in-vehicle device] Next, the configuration of the in-vehicle device 4 will be described with reference to Fig. 3. Fig. 3 is a diagram showing an example of the configuration of the in-vehicle device 4. As shown in FIG. 3, the in-vehicle device 4 includes an ECU (Electronic Control Unit) 41, a fourth timing unit 42, a fourth wireless communication interface 43, a fourth touch panel 44, a driving information generating unit 45, and a fourth position detecting unit 46.

[0029] The ECU 41 controls each part of the in-vehicle device 4. The ECU 41 includes a fourth processor 411 and a fourth memory 412.

[0030] The fourth memory 412 is configured, for example, by a non-volatile semiconductor memory, or a combination of volatile and non-volatile semiconductor memories, etc. The fourth processor 411 is configured by a CPU, an MPU, etc. The fourth processor 411 may be configured by a single processor, or may be configured by multiple processors. The fourth processor 411 controls each part of the in-vehicle device 4 by executing a fourth control program stored in the fourth memory 412 .

[0031] The fourth clock unit 42 has a clocking function that measures the date and time. The fourth clock unit 42 also acquires date and time information from a server device (not shown). The fourth clock unit 42 adjusts the clocking function using the acquired date and time information. The fourth clock unit 42 displays the date and time information on the fourth touch panel 44.

[0032] The fourth wireless communication interface 43 includes an antenna for receiving a wireless signal and an interface circuit for processing the wireless signal received by the antenna, and performs wireless communication with an external device including a server device (not shown) and the smartphone 1.

[0033] The fourth touch panel 44 includes a display panel and a touch sensor. The display panel is configured with a liquid crystal panel, an organic EL panel, etc. The touch sensor detects a touch operation by the user U on the display panel. The fourth touch panel 44 displays an image on the display panel in accordance with an instruction from the ECU 41. The fourth touch panel 44 also detects a touch operation by the user U on the display panel.

[0034] The driving information generating unit 45 generates the driving information QJ. The driving information generating unit 45 acquires driving information QJ from various sensors arranged in the vehicle VC. The driving information QJ includes, for example, vehicle speed information, acceleration information, accelerator operation information, brake operation information, and steering operation information. The driving information QJ may include road information on the road on which the vehicle VC is traveling. The road information includes, for example, construction information, traffic congestion information, and the like.

[0035] The vehicle speed information indicates the traveling speed of the vehicle VC. The acceleration information indicates the acceleration detected by an acceleration sensor. The acceleration sensor detects, for example, the vertical acceleration, the longitudinal acceleration, and the lateral acceleration of the vehicle VC. The accelerator operation information indicates the state of operation of the accelerator pedal by the user U. The accelerator operation information includes, for example, the depression amount and depression speed of the accelerator pedal. The brake operation information indicates the state of operation of the brake pedal by the user U. The brake operation information includes, for example, the depression amount and depression speed of the brake pedal. The steering operation information indicates the state of steering operation by the user U. The steering operation information includes, for example, the steering angle of the steering wheel and the rate of change of the steering angle.

[0036] The driving information generating unit 45 outputs the driving information QJ acquired from various sensors to the ECU 41. The ECU 41 transmits the driving information QJ to the smartphone 1 via the fourth wireless communication interface 43.

[0037] The fourth position detection unit 46 includes a GNSS sensor and receives positioning signals transmitted from GNSS satellites to determine the position of the vehicle VC, i.e., latitude, longitude, altitude, etc. The fourth position detection unit 46 outputs position information indicating the determined position to the ECU 41.

[0038] [4. Smartphone configuration] Next, the configuration of the smartphone 1 will be described with reference to Fig. 4. Fig. 4 is a diagram showing an example of the configuration of the smartphone 1. The smartphone 1 includes a first control unit 11, a first timing unit 12, a first wireless communication interface 13, a first touch panel 14, a first position detection unit 15, a speaker 16, and a microphone 17.

[0039] The first control unit 11 controls each unit of the smartphone 1. The first control unit 11 includes a first processor 11A and a first memory 11B.

[0040] The first memory 11B is configured, for example, by a non-volatile semiconductor memory or a combination of volatile and non-volatile semiconductor memories. The first processor 11A is configured by a CPU, an MPU, etc. The first processor 11A may be configured by a single processor, or may be configured by multiple processors. The first processor 11A controls each part of the smartphone 1 by executing a first control program PG1 stored in the first memory 11B.

[0041] The first clock unit 12 has a clocking function that measures the date and time. The first clock unit 12 also acquires date and time information from a server device (not shown). The first clock unit 12 adjusts the clocking function using the acquired date and time information. The first clock unit 12 displays the date and time information on the first touch panel 14.

[0042] The first wireless communication interface 13 includes an antenna for receiving wireless signals and an interface circuit for processing the wireless signals received by the antenna, and performs wireless communication with external devices including a server device, a smart watch 2, an information holding agency 3, and an in-vehicle device 4 (not shown).

[0043] The first touch panel 14 includes a display panel and a touch sensor. The display panel is configured with a liquid crystal panel, an organic EL panel, etc. The touch sensor detects a touch operation by the user U on the display panel. First touch panel 14 displays an image on the display panel in accordance with an instruction from first control unit 11. First touch panel 14 displays, for example, an image showing advice information AD on the display panel in accordance with an instruction from first control unit 11. The first touch panel 14 also detects a touch operation by the user U on the display panel.

[0044] The first position detection unit 15 includes a GNSS sensor and receives positioning signals transmitted from GNSS satellites to determine the position of the smartphone 1, i.e., the latitude, longitude, altitude, etc. The first position detection unit 15 outputs position information indicating the determined position to the first control unit 11.

[0045] The speaker 16 outputs various sounds in accordance with instructions from the first control unit 11. For example, the speaker 16 outputs sounds indicating advice information AD in accordance with instructions from the first control unit 11.

[0046] The microphone 17 receives various voice inputs in accordance with instructions from the first control unit 11. For example, the microphone 17 receives voice from the user U. The microphone 17 outputs the received voice to the first control unit 11.

[0047] The first control unit 11 functions as an acquisition unit 111, an evaluation unit 112, a mode determination unit 113, an alarm unit 114, a notification unit 115, and an information storage unit 116 when the first processor 11A executes the first control program PG1 stored in the first memory 11B. Specifically, the first processor 11A executes the first control program PG1 stored in the first memory 11B to function as the acquisition unit 111, the evaluation unit 112, the mode determination unit 113, the alarm unit 114, and the notification unit 115. Furthermore, the first processor 11A executes the first control program PG1 stored in the first memory 11B to cause the first memory 11B to function as the information storage unit 116. The first processor 11A corresponds to an example of a "processor." The first control program PG1 corresponds to an example of a "health condition evaluation program."

[0048] The information storage unit 116 stores biological information BJ and driving information QJ. The biological information BJ includes first biological information BJ1 and second biological information BJ2. The first biological information BJ1 is acquired from the smart watch 2 by the acquisition unit 111, for example, and stored in the information storage unit 116 by the acquisition unit 111. The second biometric information BJ2 is acquired by the acquisition unit 111 from the information holding institution 3, for example, and is stored in the information storage unit 116 by the acquisition unit 111. The driving information QJ is acquired from the in-vehicle device 4 by the acquisition unit 111, and is stored in the information storage unit 116 by the acquisition unit 111, for example.

[0049] The acquisition unit 111 acquires the biometric information BJ. The biometric information BJ includes first biometric information BJ1 and second biometric information BJ2. The acquisition unit 111 acquires the first biological information BJ1 from the smart watch 2, for example. The first biological information BJ1 includes, for example, sleep information BJ11, exercise information BJ12, and stress information BJ13.

[0050] The sleep information BJ11 includes, for example, sleep time information and information indicating sleep quality. The sleep time information indicates, for example, the amount of sleep time per day of the user U. The information indicating sleep quality includes, for example, REM sleep time information and non-REM sleep time information per day of the user U.

[0051] The exercise information BJ12 includes, for example, step count information and exercise time information. The step count information indicates, for example, the cumulative number of steps taken by the user U per day. The exercise time information indicates, for example, the cumulative amount of exercise time taken by the user U per day.

[0052] The stress information BJ13 includes heart rate information and heart rate variability information. The heart rate information indicates, for example, the number of heart rates per minute. The heart rate variability information indicates the state of changes in the heart rate.

[0053] The acquisition unit 111 acquires the second biometric information BJ2 from the information holding institution 3, for example. The information holding institution 3 is an institution that holds the second biometric information BJ2, such as a hospital, an insurance company, a local government, or a care company. The second biological information BJ2 includes the user U's health checkup information.

[0054] The health checkup information includes, for example, vision test information, hearing test information, blood test information, urine test information, electrocardiogram test information, endoscopic test information, ultrasound test information, X-ray test information, gastroscopy test information, etc. The health checkup information may also include CT (Computed Tomography) test information and MRI (Magnetic Resonance Imaging) test information.

[0055] Furthermore, the health checkup information may include, for example, brain CT scan information, brain MRI scan information, and electroencephalogram (EEG) test information from a brain checkup or the like. Furthermore, if the user U has a history of hospitalization, surgery, etc., the health checkup information may include, for example, hospitalization and surgery information. Furthermore, if the user U has a disease, the health checkup information may include, for example, disease information.

[0056] The acquisition unit 111 acquires, for example, as the second biological information BJ2, scores RS for each of five abilities indicating the driving ability AB. The driving ability AB is composed of, for example, planning ability AB1, perception ability AB2, attention ability AB3, judgment ability AB4, and operation ability AB5. The rating RS consists of a planning ability rating RS1, a perceptual ability rating RS2, an attention ability rating RS3, a judgment ability rating RS4, and an operational ability rating RS5.

[0057] The planning ability score RS1 indicates the score RS for the planning ability AB1. The planning ability AB1 is, for example, the ability of the user U to plan a driving plan. The driving plan is, for example, a plan to drive the vehicle VC from a parking position to a destination.

[0058] The perceptual ability score RS2 indicates the score RS for the perceptual ability AB2. The perceptual ability AB2 is, for example, the ability of the user U to perceive the surrounding situation while driving. The attention ability score RS3 indicates the score RS for the attention ability AB3. The attention ability AB3 is, for example, the ability of the user U to pay attention to the surrounding situation in order to foresee danger while driving.

[0059] The decision-making ability score RS4 indicates the score RS for the decision-making ability AB4. The decision-making ability AB4 is the ability of the user U to determine what operation to perform depending on the surrounding situation while driving. The operation ability score RS5 indicates the score RS for the operation ability AB5. The operation ability AB5 is the ability of the user U to perform appropriate driving operations in accordance with the surrounding situation while driving.

[0060] The acquisition unit 111 outputs a voice VQ to the user U at a predetermined timing, and acquires a response voice VA, which is a voice given by the user U in response to this voice. The predetermined timing includes the time when the user U gets into the vehicle VC. In addition, the predetermined timing may include, for example, 10 minutes before the user U starts driving the vehicle VC, and when the distance between the user U and the vehicle VC reaches 100 m while the user U is moving toward the vehicle VC to start driving.

[0061] The acquisition unit 111 outputs the voice VQ from the speaker 16. The voice VQ is, for example, a voice asking a question to the user U. The voice VQ is, for example, a voice saying, "How are you?" The acquisition unit 111 acquires a response voice VA from the user U in response to the voice VQ. The response voice VA is, for example, a voice saying "I'm fine." The response voice VA is also, for example, a voice saying "I'm sleepy."

[0062] The acquisition unit 111 acquires driving information QJ from when the user U gets into the vehicle VC until when the user U gets off the vehicle VC, and first biological information BJ1. The acquisition unit 111 acquires, for example, driving information QJ from when the user U gets into the vehicle VC until when the user U gets off the vehicle VC from the in-vehicle device 4. The acquisition unit 111 stores the driving information QJ in the information storage unit . Furthermore, the acquisition unit 111 acquires, for example, first biological information BJ1 from when the user U gets on the vehicle VC until when he or she gets off the vehicle VC from the smart watch 2. The acquisition unit 111 stores the first biological information BJ1 in the information storage unit 116.

[0063] The evaluation unit 112 uses the first biometric information BJ1 to correct the second biometric information BJ2, thereby evaluating whether the health condition of the user U is appropriate for driving the vehicle VC. The evaluation unit 112 corrects, for example, each of the planning ability score RS1, the perception ability score RS2, the attention ability score RS3, the judgment ability score RS4, and the operation ability score RS5 that constitute the second biological information BJ2 using the first biological information BJ1. The correction process of the evaluation unit 112 will be further described with reference to FIG.

[0064] The evaluation unit 112 evaluates whether the health state of the user U is appropriate for the driver of the vehicle VC for each of the planning ability AB1, perception ability AB2, attention ability AB3, judgment ability AB4, and operation ability AB5. The evaluation unit 112 evaluates, for example, each of the planning ability score RS1, the perception ability score RS2, the attention ability score RS3, the judgment ability score RS4, and the operation ability score RS5 as a score out of 10.

[0065] If each of the planning ability score RS1, perception ability score RS2, attention ability score RS3, judgment ability score RS4, and operation ability score RS5 is, for example, 8 points or more, the evaluation unit 112 determines that the state is appropriate. If each of the planning ability rating RS1, perceptual ability rating RS2, attention ability rating RS3, judgment ability rating RS4, and operation ability rating RS5 is, for example, 4 points or more and 7 points or less, the evaluation unit 112 determines that the state requires caution. If each of the planning ability score RS1, perception ability score RS2, attention ability score RS3, judgment ability score RS4, and operation ability score RS5 is, for example, 3 points or less, the evaluation unit 112 determines that the state is not appropriate.

[0066] The notification unit 114 determines the content of advice information AD to be output to the user U while the user U is driving based on the planning ability score RS1, the perceptual ability score RS2, the attention ability score RS3, the judgment ability score RS4, and the operating ability score RS5. The notification unit 114 selects, for example, advice information AD corresponding to the lowest score among the planning ability score RS1, the perception ability score RS2, the attention ability score RS3, the judgment ability score RS4, and the operation ability score RS5. The advice information AD will be further explained with reference to FIG.

[0067] The manner determining unit 113 determines the manner EX of the advice information AD to be notified to the user U based on the response voice VA acquired by the acquiring unit 111. The manner determining unit 113 evaluates, for example, the health condition and stress level of the user U based on the intonation, volume, etc. of the voice indicated by the response voice VA. Then, the manner determining unit 113 determines the manner EX of the advice information AD according to the health condition and stress level of the user U.

[0068] For example, when the manner determining unit 113 evaluates that the user U is sleepy or listless based on the response voice VA, it determines, as the manner EX of the advice information AD, for example, a manner EX that encourages the user U. The manner EX that encourages the user U is, for example, a manner in which the advice information AD is presented in a loud voice with a bright atmosphere. For example, when the manner determining unit 113 evaluates that the user U is in good health based on the response voice VA, it determines, for example, a normal manner as the manner EX of the advice information AD. For example, if the manner determination unit 113 evaluates that the user U is feeling stressed based on the response voice VA, the manner EX of the advice information AD is, for example, a manner in which the advice information AD is presented in a quiet voice with a calm atmosphere.

[0069] The notification unit 114 notifies the user U of the advice information AD in the mode EX determined by the mode determination unit 113. The notification unit 114 outputs a sound indicating the advice information AD from, for example, the speaker 16. The notification unit 114 also displays an image indicating the advice information AD on, for example, the first touch panel 14.

[0070] The notification unit 115 notifies the information holding institution 3 of the driving information QJ from when the user U gets on the vehicle VC until when he or she gets off the vehicle, and the first biometric information BJ1. For example, when the user U gets off the vehicle, the notification unit 115 reads out the driving information QJ and the first biometric information BJ1 stored in the information storage unit 116, and notifies the information holding institution 3 of the driving information QJ and the first biometric information BJ1. The acquisition unit 111 acquires the driving information QJ and the advice information AJ for the first biological information BJ1 from the information holding institution 3. The advice information AJ indicates an address for the user U input by a specialist such as a doctor belonging to the information holding institution 3. When the acquisition unit 111 acquires the advice information AJ, the notification unit 114 outputs a sound indicating the advice information AJ from the speaker 16. In addition, when the acquisition unit 111 acquires the advice information AJ, the notification unit 114 displays an image indicating the advice information AJ on the first touch panel 14.

[0071] [5. Correlation between biometric information, scores, and address information] Next, the correlation between the biometric information BJ, the rating score RS, and the advice information AD will be described with reference to Fig. 5. Fig. 5 is a diagram showing an example of the correlation between the biometric information BJ, the rating score RS, and the advice information AD. The rating score RS is a rating for each of the five abilities indicating the driving ability AB. Fig. 5 shows a correlation diagram 500. The correlation diagram 500 includes biometric information BJ, a rating score RS, and advice information AD.

[0072] As shown in FIG. 5, the biometric information BJ includes first biometric information BJ1 and second biometric information BJ2. The first biological information BJ1 includes, for example, sleep information BJ11, exercise information BJ12, and stress information BJ13. The second biological information BJ2 includes health check information of the user U. The second biological information BJ2 includes a planning ability score RS1, a perception ability score RS2, an attention ability score RS3, a judgment ability score RS4, and an operation ability score RS5. The scores RS also include a planning ability score RS1, a perception ability score RS2, an attention ability score RS3, a judgment ability score RS4, and an operation ability score RS5.

[0073] The evaluation unit 112 corrects, for example, each of the planning ability score RS1, the perception ability score RS2, the attention ability score RS3, the judgment ability score RS4, and the operation ability score RS5 that constitute the second biological information BJ2 using the first biological information BJ1.

[0074] In other words, the evaluation unit 112 corrects the planning ability score RS1 constituting the second biometric information BJ2 using the first biometric information BJ1 to determine the planning ability score RS1. The evaluation unit 112 also corrects the perceptual ability score RS2 constituting the second biometric information BJ2 using the first biometric information BJ1 to determine the perceptual ability score RS2. The evaluation unit 112 also corrects the attention ability score RS3 constituting the second biometric information BJ2 using the first biometric information BJ1 to determine the attention ability score RS3. The evaluation unit 112 also corrects the judgment ability score RS4 constituting the second biometric information BJ2 using the first biometric information BJ1 to determine the judgment ability score RS4. The evaluation unit 112 also corrects the operation ability score RS5 constituting the second biometric information BJ2 using the first biometric information BJ1 to determine the operation ability score RS5.

[0075] The arrow between the first biological information BJ1 and the score RS in FIG. 5 indicates that there is a correlation. For example, the sleep information BJ11 of the first biological information BJ1 is correlated with the planning ability rating RS1, the perceptual ability rating RS2, the attention ability rating RS3, the judgment ability rating RS4, and the operation ability rating RS5 of the ratings RS. Therefore, the evaluation unit 112 corrects each of the planning ability rating RS1, the perceptual ability rating RS2, the attention ability rating RS3, the judgment ability rating RS4, and the operation ability rating RS5 that constitute the second biological information BJ2 using the sleep information BJ11 of the first biological information BJ1.

[0076] Furthermore, the motion information BJ12 of the first biological information BJ1 is correlated with the attention ability rating RS3, the judgment ability rating RS4, and the operation ability rating RS5 of the rating RS. Therefore, the evaluation unit 112 corrects each of the attention ability rating RS3, the judgment ability rating RS4, and the operation ability rating RS5 that constitute the second biological information BJ2 using the motion information BJ12 of the first biological information BJ1.

[0077] Furthermore, the stress information BJ13 of the first biological information BJ1 is correlated with the attention ability rating RS3 of the rating RS. Therefore, the evaluation unit 112 corrects the attention ability rating RS3 constituting the second biological information BJ2 by ​​the stress information BJ13 of the first biological information BJ1.

[0078] In other words, the evaluation unit 112 corrects the planning ability score RS1 constituting the second biological information BJ2 using the sleep information BJ11 of the first biological information BJ1 to determine the planning ability score RS1. Furthermore, the evaluation unit 112 corrects the perceptual ability score RS2 constituting the second biological information BJ2 using the sleep information BJ11 of the first biological information BJ1 to determine the perceptual ability score RS2. Furthermore, the evaluation unit 112 corrects the attention ability score RS3 constituting the second biological information BJ2 using the sleep information BJ11, exercise information BJ12, and stress information BJ13 of the first biological information BJ1 to determine the attention ability score RS3. Furthermore, the evaluation unit 112 corrects the judgment ability score RS4 constituting the second biological information BJ2 using the sleep information BJ11 and the exercise information BJ12 of the first biological information BJ1 to determine the judgment ability score RS4. Furthermore, the evaluation unit 112 corrects the operation ability score RS5 constituting the second biological information BJ2 using the sleep information BJ11 and the exercise information BJ12 of the first biological information BJ1 to determine the operation ability score RS5.

[0079] As shown in FIG. 5, the advice information AD includes, for example, first advice information AD1, second advice information AD2, third advice information AD3, fourth advice information AD4, and fifth advice information AD5.

[0080] The first advice information AD1 is, for example, advice information AD regarding the operation of the accelerator pedal when the user U starts the vehicle VC. The first advice information AD1 is, for example, advice information AD urging the user U not to make a sudden start.

[0081] The second advice information AD2 is, for example, advice information AD regarding the operation of the brake pedal when the user U stops the vehicle VC. The second advice information AD2 is, for example, advice information AD urging the user U not to make a sudden stop.

[0082] The third advice information AD3 is, for example, advice information AD regarding steering operation when the user U makes the vehicle VC overtake another vehicle. The third advice information AD3 is, for example, advice information AD urging the user U not to make abrupt turns.

[0083] The fourth advice information AD4 is, for example, advice information AD regarding the distance between the vehicle VC driven by the user U and another vehicle traveling ahead. The fourth advice information AD4 is, for example, advice information AD urging the user U to maintain an appropriate distance between the vehicles.

[0084] The fifth advice information AD5 is advice information AD related to lateral sway of the vehicle VC driven by the user U. The fifth advice information AD5 is, for example, advice information AD that urges the user U to suppress lateral sway of the vehicle VC.

[0085] The arrow between the rating RS and the advice information AD in FIG. 5 indicates that there is a correlation. The notification unit 114 selects, for example, advice information AD corresponding to the lowest score among the planning ability score RS1, the perception ability score RS2, the attention ability score RS3, the judgment ability score RS4, and the operation ability score RS5.

[0086] 5, for example, the planning ability score RS1 is correlated with the first advice information AD1 and the second advice information AD2. Therefore, when the planning ability score RS1 is the lowest score, the notification unit 114 notifies, for example, the first advice information AD1 and the second advice information AD2 with priority.

[0087] Furthermore, the perceptual ability rating RS2 is correlated with the third advice information AD3 and the fifth advice information AD5. Therefore, when the perceptual ability rating RS2 is the lowest rating, the notification unit 114 notifies, for example, the third advice information AD3 and the fifth advice information AD5 with priority.

[0088] Furthermore, the attention ability rating score RS3 is correlated with the first advice information AD1, the third advice information AD3, and the fourth advice information AD4. Therefore, when the attention ability rating score RS3 is the lowest rating score, the notification unit 114 notifies, for example, the first advice information AD1, the third advice information AD3, and the fourth advice information AD4 with priority.

[0089] Furthermore, the judgment ability rating RS4 is correlated with the second advice information AD2, the third advice information AD3, and the fifth advice information AD5. Therefore, when the judgment ability rating RS4 is the lowest rating, the notification unit 114 notifies, for example, the second advice information AD2, the third advice information AD3, and the fifth advice information AD5 with priority.

[0090] Furthermore, the operation ability score RS5 is correlated with the fifth advice information AD5. Therefore, when the operation ability score RS5 is the lowest score, the notification unit 114 notifies, for example, the fifth advice information AD5 with priority.

[0091] [6. Smartphone Processing] Next, the processing of the smartphone 1 will be described with reference to Fig. 6. Fig. 6 is a flowchart showing an example of the processing of the smartphone 1. First, in step S101, the acquisition unit 111 acquires the first biological information BJ1 from the smartwatch 2. The first biological information BJ1 includes, for example, sleep information BJ11, exercise information BJ12, and stress information BJ13. Next, in step S103, the acquisition unit 111 acquires the second biometric information BJ2 from the information holding institution 3. The second biometric information BJ2 includes the user U's health checkup information.

[0092] Next, in step S105, the evaluation unit 112 uses the first biological information BJ1 to correct the second biological information BJ2 to evaluate whether the user U's health condition is appropriate for driving the vehicle VC. The evaluation unit 112 corrects, for example, each of the planning ability score RS1, perceptual ability score RS2, attention ability score RS3, judgment ability score RS4, and operation ability score RS5 that constitute the second biological information BJ2 using the first biological information BJ1. Next, in step S107, the notification unit 114 determines the content of the advice information AD to be output to the user U while the user U is driving based on the planning ability rating RS1, the perceptual ability rating RS2, the attention ability rating RS3, the judgment ability rating RS4, and the operating ability rating RS5.

[0093] Next, in step S109, the acquisition unit 111 determines whether or not the user U has boarded the vehicle VC. If the acquisition unit 111 determines that the user U is not in the vehicle VC (step S109; NO), the process goes to a standby state. If the acquisition unit 111 determines that the user U is in the vehicle VC (step S109; YES), the process proceeds to step S111. Then, in step S111, the acquisition unit 111 outputs a voice VQ that asks the user U a question from the speaker 16. Next, in step S113, the acquisition unit 111 determines whether or not a response voice VA from the user U in response to the voice VQ has been acquired. If the acquisition unit 111 determines that the response voice VA from the user U in response to the voice VQ has not been acquired (step S113; NO), the process goes to a standby state. If the acquisition unit 111 determines that the response voice VA from the user U in response to the voice VQ has been acquired (step S113; YES), the process proceeds to step S115.

[0094] Then, in step S115, the manner determining unit 113 determines the manner EX of the advice information AD to be notified to the user U based on the response voice VA. Next, in step S117, the notification unit 114 notifies the user U of the advice information AD determined in step S107 in the manner EX determined by the manner determination unit 113. Next, in step S119, the notification unit 115 determines whether or not the user U has finished driving the vehicle VC. If the notification unit 115 determines that the user U has not finished driving the vehicle VC (step S119; NO), the process returns to step S117. If the notification unit 115 determines that the user U has finished driving the vehicle VC (step S119; YES), the process proceeds to step S121. Then, in step S121, the notification unit 115 notifies the information holding institution 3 of the driving information QJ from when the user U gets on the vehicle VC until when he or she gets off the vehicle, and the first biometric information BJ1. Then, the process ends.

[0095] Step S101 and step S103 correspond to an example of an "acquisition step." Step S105 corresponds to an example of an "evaluation step."

[0096] [7. Composition and Effects] As described with reference to Figures 1 to 6, the smartphone 1 of this embodiment includes an acquisition unit 111 that acquires first biometric information BJ1 from a smart watch 2 worn by a user U and detects the user U's biometric information, and acquires second biometric information BJ2 from an information holding institution 3 that holds the user U's biometric information, and an evaluation unit 112 that evaluates whether the user U's health condition is appropriate for being a driver of a vehicle VC based on the first biometric information BJ1 and the second biometric information BJ2.

[0097] Therefore, based on the first biometric information BJ1 and the second biometric information BJ2, the health condition of the user U is evaluated as to whether it is appropriate for the driver of the vehicle VC, and therefore the health condition of the user U related to their driving ability can be evaluated appropriately.

[0098] In addition, in the smartphone 1, the evaluation unit 112 corrects the second biological information BJ2 using the first biological information BJ1, thereby evaluating whether or not the health condition of the user U is in the appropriate state.

[0099] Therefore, by correcting the second biological information BJ2 using the first biological information BJ1, it is possible to evaluate whether the health condition of the user U is appropriate for driving the vehicle VC, thereby properly evaluating the health condition related to the driving ability of the user U. For example, if the second biological information BJ2 is health check information, the second biological information BJ2, which is the result of a detailed examination, can be corrected with the first biological information BJ1, which indicates daily changes in physical condition, thereby properly evaluating the health condition related to the driving ability of the user U.

[0100] In addition, in the smartphone 1, the evaluation unit 112 evaluates whether the health condition of the user U is in the appropriate state for each of the planning ability AB1, perceptual ability AB2, attention ability AB3, judgment ability AB4, and operation ability AB5, and is equipped with a notification unit 114 that notifies the user U of advice information AD based on the evaluation results of the evaluation unit 112.

[0101] Therefore, the health condition of the user U is evaluated for each of planning ability AB1, perception ability AB2, attention ability AB3, judgment ability AB4, and operation ability AB5, so that the health condition related to the driving ability of the user U can be properly evaluated.

[0102] The smartphone 1 also includes a notification unit 114 that notifies the user U of advice information AD based on the evaluation result of the evaluation unit 112.

[0103] Therefore, since the advice information AD is notified to the user U based on the evaluation result of the evaluation unit 112, it is possible to notify the user U of appropriate advice information AD.

[0104] In addition, the smartphone 1 includes an acquisition unit 111 that outputs a voice VQ to the user U at a predetermined timing, acquires a response voice VA, which is the voice of the user U in response to the voice VQ, and has a mode determination unit 113 that determines a mode EX of the advice information AD based on the response voice VA.

[0105] Therefore, since the aspect EX of the advice information AD is determined based on the response voice VA, the aspect EX of the advice information AD can be determined appropriately.

[0106] In addition, in the smartphone 1, the specified timing includes when the user U gets into the vehicle VC, and when the user U gets into the vehicle VC, the acquisition unit 111 outputs a voice VQ to the user U and acquires a response voice VA, and the manner determination unit 113 determines the manner EX of the advice information AD based on the response voice VA.

[0107] Therefore, since the manner EX of the advice information AD is determined based on the response voice VA when the user U gets into the vehicle VC, the manner EX of the advice information AD can be determined appropriately.

[0108] In addition, in the smartphone 1, the acquisition unit 111 acquires driving information QJ and first biometric information BJ1 from when the user U gets into the vehicle VC to when he or she gets off, and is equipped with a notification unit 115 that notifies the information holding institution 3 of the driving information QJ and the first biometric information BJ1.

[0109] Therefore, the driving information QJ from when the user U gets into the vehicle VC until he or she gets off, and the first biometric information BJ1 are notified to the information holding institution 3, thereby providing the information holding institution 3 with valuable information for understanding the health condition of the user U.

[0110] In addition, in the smartphone 1, the acquisition unit 111 acquires advice information AJ for the user U from an expert at the information holding institution 3 based on the driving information QJ and the first biometric information BJ1, and includes a notification unit 114 that notifies the user U of the advice information AJ.

[0111] Therefore, advice information AJ for the user U from the expert of the information holding institution 3 is obtained and the advice information AJ is notified to the user U, so useful information can be provided to the user U. Therefore, convenience for the user U can be improved.

[0112] In addition, the health condition evaluation method of this embodiment includes an acquisition step of acquiring first biometric information BJ1 from a smart watch 2 worn by a user U and detecting the user U's biometric information, and acquiring second biometric information BJ2 from an information holding institution 3 that holds the user U's biometric information, and an evaluation step of evaluating whether the user U's health condition is appropriate for being a driver of a vehicle VC based on the first biometric information BJ1 and the second biometric information BJ2.

[0113] Therefore, the health state evaluation method according to this embodiment has the same effects as the smartphone 1 according to this embodiment.

[0114] In addition, the first control program PG1 of this embodiment causes the first processor 11A provided in the smartphone 1 to function as an acquisition unit 111 that acquires first biometric information BJ1 from a smart watch 2 worn by the user U and detects the user U's biometric information, and acquires second biometric information BJ2 from an information holding institution 3 that holds the user U's biometric information, and an evaluation unit 112 that evaluates whether the user U's health condition is appropriate for being a driver of the vehicle VC based on the first biometric information BJ1 and the second biometric information BJ2.

[0115] Therefore, the first control program PG1 according to this embodiment has the same effects as the smartphone 1 according to this embodiment.

[0116] 8. Other Embodiments The above-described embodiment is a preferred embodiment of the present invention, but the present invention is not limited to the above-described embodiment and various modifications are possible within the scope of the gist of the present invention.

[0117] In this embodiment, the case where the "health state evaluation device" is configured as a smartphone 1 has been described, but the embodiment is not limited to this. The "health state evaluation device" may also be configured as, for example, a personal computer, a tablet device, a server device, or the like.

[0118] In this embodiment, the case where the "device" is configured as the smart watch 2 has been described, but the embodiment is not limited to this. The "device" may be worn by the user U and may generate the first biological information BJ1. For example, the "device" may be attached to the arm, head, foot, etc. of the user U. Also, for example, the "device" may be a smart innerwear that is attached to the innerwear worn by the user U. Also, for example, the "device" may be a sensing device that is attached to the skin or inside the body of the user U.

[0119] In this embodiment, the notifying unit 114 outputs the sound indicating the advice information AD from the speaker 16, but the embodiment is not limited to this. The notifying unit 114 may output the sound indicating the advice information AD from a speaker connected to the in-vehicle device 4 and mounted on the vehicle VC. In addition, in the present embodiment, the notification unit 114 displays an image showing the advice information AD on, for example, the first touch panel 14, but the embodiment is not limited to this. The notification unit 114 may also display an image showing the advice information AD on the fourth touch panel 44 provided in the in-vehicle device 4.

[0120] For example, the configurations of the smartwatch 2 shown in Fig. 2, the in-car device 4 shown in Fig. 3, and the smartphone 1 shown in Fig. 4 each show functional configurations, and the specific implementation form is not particularly limited. In other words, it is not necessarily necessary to implement hardware corresponding to each functional unit individually, and it is also possible to implement a configuration in which a single processor executes a program to realize the functions of multiple functional units. Furthermore, some of the functions realized by software in the above embodiments may be realized by hardware, or some of the functions realized by hardware may be realized by software.

[0121] Furthermore, the processing units in the flowchart shown in Fig. 6 are divided according to the main processing content to make the processing of the smartphone 1 easier to understand, and the present invention is not limited by the manner in which the processing units are divided or the names of the processing units shown in the flowchart of Fig. 6. Furthermore, the processing of the smartphone 1 can be divided into more processing units according to the processing content, or one processing unit can be divided so that it includes more processes. Furthermore, the processing order of the above flowchart is not limited to the example shown in the figure.

[0122] 9. Configurations Supported by the Above Embodiments The above embodiment is a specific example of the following configuration.

[0123] (Configuration 1) A health status evaluation device comprising: an acquisition unit that acquires first biometric information from a device worn by a user and detects the user's biometric information, and acquires second biometric information from an information holding institution that holds the user's biometric information; and an evaluation unit that evaluates whether the user's health status is appropriate for driving a vehicle based on the first biometric information and the second biometric information.

[0124] The health condition evaluation device of configuration 1 evaluates whether the user's health condition is appropriate for driving a vehicle based on the first biometric information and the second biometric information, and therefore can appropriately evaluate the user's health condition related to their driving ability.

[0125] (Configuration 2) 2. The health state evaluation device according to claim 1, wherein the evaluation unit uses the first biological information to correct the second biological information, thereby evaluating whether the user's health state is in the appropriate state.

[0126] The health condition evaluation device of configuration 2 uses the first biological information to correct the second biological information to evaluate whether the user's health condition is appropriate for driving a vehicle, thereby making it possible to properly evaluate the user's health condition related to their driving ability. For example, if the second biological information is health checkup information, the second biological information, which is the result of a detailed examination, can be corrected with the first biological information, which indicates daily changes in physical condition, thereby making it possible to properly evaluate the user's health condition related to their driving ability.

[0127] (Configuration 3) The health state evaluation device according to configuration 1 or 2, wherein the evaluation unit evaluates whether the user's health state is in the appropriate state for each of planning ability, perceptual ability, attention ability, judgment ability, and operation ability.

[0128] The health state evaluation device of configuration 3 evaluates the user's health state for each of planning ability, perception ability, attention ability, judgment ability, and operation ability, and can therefore properly evaluate the user's health state related to their driving ability.

[0129] (Configuration 4) 4. The health state evaluation device according to any one of configurations 1 to 3, further comprising a notification unit that notifies the user of advice information based on the evaluation result of the evaluation unit.

[0130] The health state evaluation device of configuration 4 notifies the user of advice information based on the evaluation result of the evaluation unit, and therefore can notify the user of appropriate advice information.

[0131] (Configuration 5) 5. The health state evaluation device of claim 1, wherein the acquisition unit outputs a voice to the user at a predetermined timing, acquires a response voice that is a voice of the user in response to the voice, and determines a mode of the advice information based on the response voice.

[0132] The health state evaluation device of configuration 5 determines the mode of advice information based on the response voice, and therefore can appropriately determine the mode of advice information.

[0133] (Configuration 6) 6. The health state evaluation device of configuration 5, wherein the predetermined timing includes when the user gets into a vehicle, and when the user gets into the vehicle, the acquisition unit outputs a voice to the user and acquires the response voice, and the manner determination unit determines the manner of the advice information based on the response voice.

[0134] The health state evaluation device of configuration 6 determines the mode of advice information based on the response voice when the user gets into the vehicle, and therefore can appropriately determine the mode of advice information.

[0135] (Configuration 7) The health status evaluation device according to any one of configurations 1 to 6, wherein the acquisition unit acquires driving information from the time the user gets into the vehicle until the time the user gets out of the vehicle, and the first biometric information, and includes a notification unit that notifies the information holding institution of the driving information and the first biometric information.

[0136] The health condition evaluation device of configuration 7 notifies the information holding institution of the driving information from the time the user gets into the vehicle until the time the user gets out of the vehicle, and the first biometric information, and can therefore provide the information holding institution with valuable information for understanding the user's health condition.

[0137] (Configuration 8) 8. The health state evaluation device according to claim 7, wherein the acquisition unit acquires, from the information holding institution, advice information from an expert for the user based on the driving information and the first biological information, and includes a notification unit that notifies the user of the advice information.

[0138] The health state evaluation device of configuration 8 obtains advice information for the user from experts at the information-holding institution and notifies the user of the advice information, thereby providing the user with useful information and improving user convenience.

[0139] (Configuration 9) A health condition evaluation method comprising: an acquisition step of acquiring first biometric information from a device worn by a user and detecting the user's biometric information, and acquiring second biometric information from an information holding institution that holds the user's biometric information; and an evaluation step of evaluating whether the user's health condition is appropriate for driving a vehicle based on the first biometric information and the second biometric information.

[0140] The health condition evaluation method of Configuration 9 has the same configuration as the health condition evaluation device of Configuration 1, and therefore has the same effects as the health condition evaluation device of Configuration 1.

[0141] (Configuration 10) A health status evaluation program that causes a processor provided in a health status evaluation device to function as an acquisition unit that acquires first biometric information from a device worn by a user that detects the user's biometric information and acquires second biometric information from an information holding institution that holds the user's biometric information, and an evaluation unit that evaluates whether the user's health status is appropriate for driving a vehicle based on the first biometric information and the second biometric information.

[0142] The health condition evaluation program of configuration 10 has the same configuration as the health condition evaluation device of configuration 1, and therefore has the same effects as the health condition evaluation device of configuration 1. [Explanation of symbols]

[0143] 100...health condition evaluation system, 1...smartphone (health condition evaluation device), 11...first control unit, 11A...first processor (processor), 11B...first memory, 111...acquisition unit, 112...evaluation unit, 113...mode determination unit, 114...alarm unit, 115...notification unit, 116...information storage unit, 16...speaker, 17...microphone, 14...first touch panel, 2...smart watch (device), 25...biometric information generation unit, 3...information holding institution, 4...in-vehicle device, 41...ECU, 45...driving information generation unit, AB...driving ability, AB1...planning ability, AB2...perceptual ability , AB3...attention ability, AB4...judgment ability, AB5...operation ability, AD...advice information, AJ...advice information, BJ...biological information, BJ1...first biological information, BJ11...sleep information, BJ12...exercise information, BJ13...stress information, BJ2...second biological information, EX...mode, PG1...first control program (health status evaluation program), QJ...driving information, RS...rating, RS1...planning ability rating, RS2...perceptual ability rating, RS3...attention ability rating, RS4...judgment ability rating, RS5...operation ability rating, U...user, VA...response voice, VC...vehicle, VQ...voice.

Claims

1. an acquisition unit that acquires first biometric information from a device worn by a user and that detects biometric information of the user, and acquires second biometric information from an information holding organization that holds the biometric information of the user; an evaluation unit that evaluates whether a health state of the user is appropriate for driving a vehicle based on the first biological information and the second biological information; A health status evaluation device comprising:

2. the evaluation unit evaluates whether the health state of the user is the appropriate state by correcting the second biological information using the first biological information. The health condition evaluation device according to claim 1 .

3. the evaluation unit evaluates whether the health state of the user is in the appropriate state for each of planning ability, perception ability, attention ability, judgment ability, and operation ability. The health condition evaluation device according to claim 1 .

4. a notification unit that notifies the user of advice information based on the evaluation result of the evaluation unit; The health condition evaluation device according to any one of claims 1 to 3.

5. the acquisition unit outputs a voice to the user at a predetermined timing set in advance, and acquires a response voice that is a voice given by the user as a response to the voice, a mode determination unit that determines a mode of the advice information based on the response voice, The health condition evaluation device according to claim 4 .

6. the predetermined timing includes when the user gets into a vehicle, When the user gets into the vehicle, the acquisition unit outputs a voice to the user and acquires the response voice; The health state evaluation device according to claim 5 , wherein the manner determining unit determines the manner of the advice information based on the response voice.

7. the acquisition unit acquires driving information from when the user gets into the vehicle until when the user gets out of the vehicle and the first biological information; a notification unit that notifies the information holding organization of the driving information and the first biological information, The health condition evaluation device according to claim 1 .

8. the acquisition unit acquires, from the information holding organization, advice information from an expert to the user based on the driving information and the first biological information; a notification unit that notifies the user of the advice information; The health condition evaluation device according to claim 7 .

9. an acquisition step of acquiring first biometric information from a device worn by a user and detecting biometric information of the user, and acquiring second biometric information from an information holding organization that holds the biometric information of the user; an evaluation step of evaluating whether a health state of the user is appropriate for driving a vehicle based on the first biological information and the second biological information; A health status assessment method, including:

10. A processor included in the health status evaluation device an acquisition unit that acquires first biometric information from a device worn by a user and that detects biometric information of the user, and acquires second biometric information from an information holding organization that holds the biometric information of the user; and an evaluation unit that evaluates whether a health state of the user is appropriate for driving a vehicle based on the first biological information and the second biological information; A health status assessment program that serves as a

Citation Information

Patent Citations

  • System for determining appropriateness of driving

    JP2023145468A