WO2022152095A1 - 带使用者状态测试功能的手机 - Google Patents

带使用者状态测试功能的手机 Download PDF

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Publication number
WO2022152095A1
WO2022152095A1 PCT/CN2022/071158 CN2022071158W WO2022152095A1 WO 2022152095 A1 WO2022152095 A1 WO 2022152095A1 CN 2022071158 W CN2022071158 W CN 2022071158W WO 2022152095 A1 WO2022152095 A1 WO 2022152095A1
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WO
WIPO (PCT)
Prior art keywords
mobile phone
state
user
test function
information
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PCT/CN2022/071158
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English (en)
French (fr)
Inventor
周星
Original Assignee
周星
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Application filed by 周星 filed Critical 周星
Publication of WO2022152095A1 publication Critical patent/WO2022152095A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0264Details of the structure or mounting of specific components for a camera module assembly
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72454User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones

Definitions

  • the invention relates to a mobile phone, in particular to a mobile phone with a user state testing function.
  • the mobile phone Under normal conditions, the mobile phone needs to be 30-40cm away from the human eye when using it. However, as people use the mobile phone for a longer period of time, the distance between the mobile phone and the human eye will become closer and closer unconsciously. Incorrect use status such as near-term, long-term use, and long-term use of mobile phones also bring more and more health problems such as myopia, cervical spondylosis, and excessive fatigue.
  • the mobile phone with the user status testing function of the present invention is designed with a user status detection system.
  • the user status detection system detects that the user is in a state of being too close, eye fatigue, incorrect cervical posture, etc., it can feedback through information. Timely warning or operation intervention through mobile phone.
  • the mobile phone with a user status detection function of the present invention is characterized in that: the mobile phone with a user status detection function 100 includes a user status detection system 2;
  • the user state detection system 2 includes an information collection system 21 and an analysis feedback system 22;
  • the information collection system 21 can collect mobile phone user status information and transmit the collected information to the analysis feedback system 22, and the analysis feedback system 22 analyzes the information to determine whether the user's use status is scientific and healthy, and According to the analysis result, the mobile phone 100 with the user state test function is prompted or operated.
  • the information collection system 21 can collect information on the use status of the user's eyes, cervical vertebra and other parts, and the analysis feedback system 22 can analyze the collected data to determine whether the user's use status is scientific and healthy.
  • the mobile phone 100 with the user status test function can be tested in time for voice, image, text, etc.
  • the mobile phone 100 with the user status test function can also be operated by means of black screen, flashing screen, automatic shutdown, etc., to prevent the user from taking an incorrect mobile phone posture for a long time. , to avoid adverse phenomena such as vision loss and cervical vertebra disease.
  • the mobile phone user state information that can be collected by the information collection system 21 includes the distance between the eyes and the mobile phone, and/or the pupil (300) image, and/or the eyelid image, and/or the user's facial posture, so as to protect the user. purpose of vision. Visual impairment, such as myopia, astigmatism and other phenomena are the most likely injuries caused by incorrect use for a long time.
  • the mobile phone 100 with the user status test function of the present invention effectively prevents the user from using the mobile phone for a long time by warning or operating the mobile phone. Improper mobile phone use posture causes vision loss, which effectively protects the user's eyesight.
  • the mobile phone user state information that can be collected by the information collection system 21 includes head posture and/or body posture, so as to achieve the purpose of protecting the cervical spine of the user.
  • head posture When the head or body posture is incorrect, such as bowing the head for a long time, turning the head sideways, etc., the user's cervical vertebra will be in an unhealthy posture. If the user is in this incorrect posture for a long time, it is easy to cause various cervical vertebra diseases.
  • the belt of the present invention The mobile phone 100 with the user state testing function can effectively prevent cervical vertebra disease caused by the user's prolonged use of the incorrect mobile phone posture, and effectively protect the user's cervical vertebra health by performing warning or operation intervention on the mobile phone.
  • the information collection system 21 of the user status detection system 2 is externally connected to the mobile phone 100 with the user status test function, or built into the mobile phone 100 with the user status test function, or shared with the mobile phone 100.
  • the camera system of the mobile phone 100 with the user status test function is externally connected to the mobile phone 100 with the user status test function.
  • the information collection system 21 may be an independent device externally connected to the mobile phone 100 with the user status test function, or may be a functional module integrated on the mobile phone 100 with the user status test function. , directly sharing the camera system of the mobile phone 100 with the user state test function is the simplest and most effective way of setting.
  • the user state detection system 2 is an eye state testing system 201 .
  • the eye state testing system 201 can collect and analyze the eye state during the use of the mobile phone, such as the distance between the mobile phone screen and the pupil 300, whether the light intensity of the mobile phone screen is appropriate, whether the eye is tired, etc. Analysis, and warnings and prompts on the mobile phone or operation intervention on the mobile phone to achieve the purpose of protecting the user's eyesight.
  • the information collection system 21 of the eye state testing system 201 is set on the mobile phone 100 with the user state testing function.
  • the information collection system 21 can be installed on the mobile phone 100 with the user status test function by external connection, integration or sharing of a camera built in the mobile phone.
  • the information collection system 21 of the eye state testing system 201 is a camera mechanism 21-1, and/or an electromagnetic wave radar ranging mechanism 21-2, and/or a laser ranging mechanism, and/or an infrared ranging mechanism, and/or Or light intensity detection sensor, and/or gyroscope sensor.
  • the applicant only enumerates the above-mentioned information collection methods. In practical applications, those skilled in the art can design different information collection methods and systems as required, without departing from the protection scope of the present application.
  • the information collection system 21 is the camera mechanism 21-1, and the camera mechanism 21-1 includes at least one camera 21-11.
  • the camera 21-11 may be an external camera, or more directly and simply a built-in camera of a shared mobile phone.
  • the camera mechanism 21-1 includes two cameras 21-11.
  • the distance L between the two cameras 21-11 can be used to directly calculate the cameras 21-11
  • the distance H between the pupil 300 and the pupil 300 does not require additional input of the interpupillary distance.
  • the two cameras 21-11 are the front cameras 21-11 built in the mobile phone 100 with the user status test function.
  • the camera 21-11 can directly use the front camera 21-11 that comes with the mobile phone, no additional accessories are needed, it can be better compatible with the existing mobile phone system, the practical application cost is lower, and the application is wide.
  • the electromagnetic wave radar ranging mechanism 21-2 is a millimeter wave radar ranging mechanism 21-21.
  • the millimeter-wave radar ranging mechanism 21-21 has the advantages of small size and high precision, especially the accuracy of the millimeter-wave radar ranging mechanism 21-21 in the 77GHz frequency band can reach 1 mm.
  • the analysis feedback system 22 includes a data analysis system 22-1 and an information feedback system 22-2; the data analysis system 22-1 can analyze the collected user status information and determine whether the user's use status is scientific and healthy , the information feedback system 22-2 prompts or operates the mobile phone 100 with the user state test function according to the analysis result.
  • the analysis feedback system 22 is a function module built into the mobile phone 100 with the user status testing function or a software system that can be downloaded on the mobile phone 100 with the user status testing function.
  • the analysis feedback system 22 can be a functional module, or an independent software system, especially a downloadable software system, only need to download the software system to the mobile phone, and the information collection system 21 shares all the information that comes with the mobile phone.
  • the camera 21-11 can be used to detect and analyze the user's state, which is simple to use and very easy to put into practical application.
  • the data analysis system 22-1 uses artificial intelligence AI software for data analysis.
  • the intelligent learning and powerful calculation and analysis functions of the artificial intelligence AI software can perform rapid intelligent learning and intelligent analysis on all the collected data, and the data analysis process is faster and more effective.
  • the artificial intelligence (AI) software can be downloaded on the mobile phone 100 with the user status test function, and can calculate the distance H between the mobile phone 100 with the user status test function and the pupil 300, and/or analyze Check the degree of eye fatigue, and/or analyze whether the light intensity of the user's face is appropriate, and/or analyze whether the posture of the cervical spine is correct.
  • the artificial intelligence (AI) software can quickly perform data analysis and judgment on one or more pieces of information as required.
  • the information feedback system 22-2 is an alarm device 22-21 or a mobile phone use state control device 22-22.
  • the alarm device 22-21 is a sound alarm device 22-21-1, and/or an image alarm device 22-21-2, and/or a data prompt device 22-21-3.
  • the applicant only lists the above-mentioned three alarm methods that are most easily implemented on the mobile phone. In practical applications, those skilled in the art can design different alarm devices according to their needs. The applicant does not list them one by one here, but without departing from the scope of protection of the present application.
  • the disposal method given by the mobile phone use state control device 22-22 is that the screen of the mobile phone is black for the set time, or the mobile phone is in sleep mode, or the mobile phone is turned off.
  • those skilled in the art can also design different mobile phone operation and intervention methods as required, the applicant will not list them one by one here, but they will not deviate from the protection scope of the present application.
  • the mobile phone 100 with a user state test function includes a user state detection system 2; the user state detection system 2 is an eye state test system 201, and the eye state test system 201 includes an information collection system 21 and an analysis system Feedback system 22; the information collection system 21 is the camera mechanism 21-1, the camera mechanism 21-1 includes a camera 21-11; the camera 21-11 collects images of two pupils 300 and The information is transmitted to the analysis feedback system 22, and the data analysis system 22-1 of the analysis feedback system 22 calculates the distance between the mobile phone 100 with the user state test function and the pupil 300 based on the interpupillary distance value input by the user.
  • distance H when the distance H between the mobile phone 100 with the user state test function and the pupil 300 is less than the set safety distance, the information feedback system 22-2 of the analysis feedback system 22 The mobile phone 100 with the status test function performs warning or operation intervention.
  • the mobile phone 100 with a user state test function includes a user state detection system 2; the user state detection system 2 is an eye state test system 201, and the eye state test system 201 includes an information collection system 21 and an analysis system Feedback system 22; the information collection system 21 is the camera mechanism 21-1, and the camera mechanism 21-1 includes a camera 21-11; the camera 21-11 collects images of the pupil 300, eyelid posture, face expression and light intensity, and transmit the information to the analysis feedback system 22, the data analysis system 22-1 of the analysis feedback system 22 calculates the mobile phone with the user status test function based on the interpupillary distance value input by the user The distance H between 100 and the pupil 300, combined with the collected pupil 300 size, eyelid posture and facial expression information to determine whether the user's eye fatigue degree and the user's face light intensity are appropriate, and transmit the analysis results to the The information feedback system 22-2 of the analysis feedback system 22, when the distance H between the mobile phone 100 with the user state test function and the pupil 300 is less than the set safety distance, or the fatigue level exceeds the set safety state,
  • the mobile phone 100 with a user state test function includes a user state detection system 2; the user state detection system 2 is an eye state test system 201, and the eye state test system 201 includes an information collection system 21 and an analysis system Feedback system 22; the information collection system 21 is the camera mechanism 21-1, the camera mechanism 21-1 includes two cameras 21-11; the cameras 21-11 collect images of the two pupils 300 and The information is transmitted to the analysis feedback system 22.
  • the data analysis system 22-1 of the analysis feedback system 22 calculates the difference between the mobile phone 100 with the user state test function and the user state test function based on the distance L between the two cameras 21-11.
  • the distance H between the pupils 300 when the distance H between the mobile phone 100 with the user state test function and the pupil 300 is less than the set safety distance, the information feedback system 22-2 of the analysis feedback system 22
  • the mobile phone 100 with the user state test function performs warning or operation intervention.
  • the mobile phone 100 with a user state test function includes a user state detection system 2; the user state detection system 2 is an eye state test system 201, and the eye state test system 201 includes an information collection system 21 and an analysis system Feedback system 22; the information collection system 21 is the camera mechanism 21-1, and the camera mechanism 21-1 includes two cameras 21-11; the cameras 21-11 collect the image of the pupil 300, eyelid posture, face expression and light intensity, and transmit the information to the analysis feedback system 22.
  • the data analysis system 22-1 of the analysis feedback system 22 calculates the belt usage based on the distance L between the two cameras 21-11.
  • the distance between the mobile phone 100 and the pupil (300) of the user state test function combined with the collected pupil 300 size, eyelid posture and facial expression information to judge the user's eye fatigue degree, and transmit the analysis result to the analysis
  • the information feedback system 22-2 of the feedback system 22 when the distance H between the mobile phone 100 with the user state test function and the pupil 300 is less than the set safety distance, or the fatigue level exceeds the set safety state, or the light
  • the information feedback system 22-2 of the analysis feedback system 22 gives a warning or operation intervention to the mobile phone 100 with the user state test function.
  • the user state detection system 2 is a cervical spine state test system 202 .
  • the information collection system 21 of the cervical spine state testing system 202 is a camera mechanism 21-1; the camera mechanism 21-1 includes at least one camera 21-11.
  • the mobile phone 100 with the user state testing function includes a user state detection system 2; the user state detection system 2 is a cervical spine state testing system 202, and the cervical spine state testing system 202 includes an information collection system 21 and an analysis feedback system 22; the information collection system 21 is the camera mechanism 21-1, the camera 21-11 collects the user's head posture and/or body posture, and transmits the collected information to the analysis feedback system 22 , the analysis and feedback system 22 judges whether the posture of the cervical spine is correct during the use of the user's mobile phone through the head posture and/or the body posture.
  • the mobile phone 100 with the user status test function is used to perform warning or operation intervention.
  • the user state detection system 2 includes an eye state test system 201 and a cervical spine state test system 202 .
  • the mobile phone 100 with a user state testing function includes a user state testing system 2; the user state testing system 2 includes the eye state testing system 201 and the cervical spine state testing system 202; the eye state testing system 2
  • the testing system (201) and the information collection system 21 of the cervical spine state testing system 202 are a camera mechanism 21-1, the camera mechanism 21-1 includes at least one camera 21-11, and the camera 21-11 collects pupils respectively 300 image, and/or eyelid posture, and/or light intensity, and/or facial expression, and/or head posture, and/or body posture, and transmit the collected information to the analysis feedback system 22, the The analysis feedback system 22 calculates the distance between the mobile phone 100 with the user state test function and the pupil 300, and judges the user's fatigue level in combination with the collected pupil 300 size, eyelid posture and facial expression information, and uses the head posture and facial expression information.
  • the information feedback system 22-2 of the analysis feedback system 22 will give a warning or warning to the mobile phone 100 with the user state test function. Operational intervention.
  • the user state detection system 2 of the mobile phone with the user state test function of the present invention may be the independent eye state test system 201 or the cervical spine state test system 202, or may simultaneously have the eye state test system 201 or the function of the cervical vertebrae state testing system 202, according to needs, can test a certain use state of the user, such as the distance H between the mobile phone screen and the pupil, to ensure a safe distance during the use of the mobile phone; or test the user's Using the degree of eye fatigue, remind the user to control the duration of use, and can also test the user's multiple usage states at the same time as needed, such as whether the distance between the mobile phone screen and the pupil is within a safe distance, whether the eye fatigue state exists, the mobile phone Whether the light intensity is appropriate, whether the cervical spine posture is correct, etc.
  • the mobile phone 100 with the user status test function has a historical data memory function, and when the mobile phone 100 with the user status test function is turned on again, it will automatically check whether the user status data is consistent with the stored correct use status data, and The user is prompted via the analysis feedback system 22 .
  • the mobile phone 100 with the user state testing function can preset the user state, and judge whether the user state is scientific and healthy according to the preset state.
  • the mobile phone 100 with the user state test function is marked as the first state in a relatively near comfortable use range, and the captured image is used as the first state flag; in the far comfortable use range, the second state is marked, and the captured image is also used as the first state. 2nd state flag. Whether it is within the range of the first state and the second state can be automatically identified through the comparison of the state pictures. If the distance between 100 and the human eye is within the first state and the second state, no alarm will be issued. Carry out alarm prompting or operation intervention.
  • the mobile phone 100 with the user state test function marks the maximum comfortable angle with the head tilted to the left as the first state of left tilt, and captures an image as the first status mark; marks the maximum comfortable angle with the head tilted to the right It is the second state of right inclination, and the image is taken as the second state identification; whether it is in the range of the first state of left inclination and the second state of right inclination can be automatically identified through the comparison of the state pictures, if the mobile phone 100 with the user state test function
  • the camera 21-11 detects that the head tilt angle is within the first state of left tilt and the second state of right tilt, it will not alarm, if the head tilt angle exceeds the first state of left tilt or the second state of right tilt, it will give an alarm prompt or operation intervention .
  • the mobile phone 100 with the user state test function identifies the maximum comfortable angle of the head tilting forward as the first forward tilt state, and captures an image as the first forward tilt state identification; the maximum comfortable angle with the head tilted back is identified. It is the second state of leaning back, and the image is taken as the second state of leaning back; through the comparison of the state pictures, it can be automatically identified whether it is within the range of the first state of forward leaning and the second state of leaning back.
  • the camera 21-11 of the mobile phone 100 with the test function detects that the tilt angle of the head is within the first state of forward tilt and the second state of backward tilt, and no alarm is given. If the head tilt angle exceeds the first state of forward tilt or the second state of backward tilt status, alarm prompt or operation intervention will be carried out.
  • the preset state of the mobile phone 100 with the user state test function may be a single one of the above preset states, or a combination of more than one state.
  • the preset state mode of the mobile phone 100 with the user state test function can be very convenient to judge whether it is outside the preset state by recognizing the collected images in real time, and the use is very simple, effectively ensuring the healthy use of the mobile phone. .
  • the mobile phone with the user status testing function of the present invention includes a user status detection system 2, and the user status detection system 2 includes an information collection system 21 and an analysis feedback system 22; the information collection system 21 can collect the user status of the mobile phone information and transmit the collected information to the analysis feedback system 22, and the analysis feedback system 22 analyzes the information to determine whether the user's use status is scientific and healthy, and according to the analysis results, the mobile phone with the user status test function is analyzed. 100 to carry out prompts or operation interventions to prevent users from taking incorrect mobile phone use postures for a long time, and to avoid adverse phenomena such as vision loss and cervical spine diseases.
  • the information collection system 21 is externally connected to the mobile phone 100 with the user status test function, or built into the mobile phone 100 with the user status test function, or shared with the mobile phone 100 with the user status test function. camera system.
  • the analysis feedback system 22 is a function module built into the mobile phone 100 with the user status testing function or a software system that can be downloaded on the mobile phone 100 with the user status testing function.
  • FIG. 1 is a schematic structural diagram of a mobile phone with a user state test function of the present invention.
  • Figure 1-1 A-A sectional view of Figure 1 .
  • Fig. 1-2 is an enlarged view of part B of Fig. 1-1.
  • FIGS. 1-3 are schematic diagrams of the structure of a mobile phone with a user state test function of the present invention in which the analysis feedback system is a downloadable software system.
  • FIG. 2 is a schematic diagram of the use state of the mobile phone with the user state test function of the present invention including one camera.
  • FIG. 2-1 is a schematic diagram of the geometric orientation of the distance from the camera to the pupil of FIG. 2 .
  • FIG. 3 is a schematic diagram of the use state of the mobile phone with the user state test function of the present invention including two cameras.
  • FIG. 3-1 is a schematic diagram of the geometric orientation of the distance from the camera to the pupil of FIG. 3 .
  • FIG. 4 is a schematic diagram of the use state of the mobile phone with the user state test function of the present invention with an external millimeter-wave radar ranging mechanism.
  • FIG. 5 is a schematic diagram of the use state of the mobile phone with the user state test function of the present invention when the head is tilted sideways.
  • FIG. 6 is a schematic diagram of the use state of the mobile phone with the user state test function of the present invention when the head is lowered.
  • 100 is the mobile phone with the user state testing function of the present invention, 300 is the pupil; 201 is the eye state testing system, and 202 is the cervical spine state testing system.
  • 2 is the user status detection system
  • 21 is the information collection system
  • 22 is the analysis feedback system
  • 21-1 is the camera mechanism
  • 21-2 is the electromagnetic wave radar ranging mechanism
  • 22-1 is the data analysis system
  • 22-2 is the information Feedback system
  • 21-11 is the camera
  • 21-21 is the millimeter wave radar ranging mechanism
  • 22-21 is the alarm device
  • 22-22 is the mobile phone use state control device
  • 22-21-1 is the sound alarm device
  • 22-21 -2 is an image alarm device
  • 22-21-3 is a data prompt device.
  • D is the interpupillary distance
  • L is the distance between the cameras
  • H is the distance between the camera and the pupil
  • H 1 and H 2 are the vertical distances between the horizontal lines C 1 and C 2 of the two cameras and the pupil respectively.
  • ⁇ 1 , ⁇ 2 are the angles between the connection lines CT 1 and CT 2 between the camera and the pupil and the horizontal line T 1 T 2 of the two pupils respectively; ⁇ is the angle between the extension line of the nose bridge and the connection line between the two shoulders, ⁇ is the angle between the extension line of the head along the neck and the vertical line of the body, ⁇ 1 and ⁇ 2 are the lines C 1 T 1 and C 2 T 1 between the two cameras and the pupil and the horizontal line of the camera C 1 C respectively.
  • the included angles between 2 , ⁇ 1 and ⁇ 2 are respectively the included angles between the lines C 1 T 2 and C 2 T 2 connecting the two cameras and the pupil and the horizontal line C 1 C 2 of the cameras.
  • Embodiment 1 The mobile phone with the user status test function of the present invention with one camera
  • the mobile phone with the user state testing function of this embodiment includes a user state detection system 2 .
  • the user state detection system 2 includes an information collection system 21 and an analysis feedback system 22 .
  • the information collection system 21 can collect mobile phone user status information and transmit the collected information to the analysis feedback system 22.
  • the analysis feedback system 22 analyzes the information to determine whether the user's use status is scientific and healthy, and according to the analysis As a result, the mobile phone 100 with the user state test function is prompted or operated.
  • the user state detection system 2 is an eye state test system 201 .
  • the mobile phone user state information that can be collected by the information collection system 21 includes the distance between the eyes and the mobile phone, and/or the pupil (300) image, and/or the eyelid image, and/or the user's facial posture, so as to protect the user. purpose of vision.
  • the information collection system 21 of the user status detection system 2 can be externally connected to the mobile phone 100 with the user status test function, or built into the mobile phone 100 with the user status test function, or shared with the mobile phone 100 with the user status test function.
  • the camera system of the mobile phone 100 with the user state test function can be externally connected to the mobile phone 100 with the user status test function, or built into the mobile phone 100 with the user status test function, or shared with the mobile phone 100 with the user status test function.
  • the information collection system 21 is a camera mechanism 21-1
  • the camera mechanism 21-1 includes a camera 21-11
  • the camera 21-11 shares the mobile phone with the user status test function 100 cameras of the camera system.
  • the analysis feedback system 22 includes a data analysis system 22-1 and an information feedback system 22-2; the data analysis system 22-1 can analyze the collected user status information and determine whether the user's use status is scientific and healthy , the information feedback system 22-2 prompts or operates the mobile phone 100 with the user state test function according to the analysis result.
  • the analysis feedback system 22 may be a function module built into the mobile phone 100 with the user status test function or a function module that can be downloaded on the mobile phone 100 with the user status test function.
  • the analysis feedback system 22 can be a functional module, or an independent software system, especially a downloadable software system, only need to download the software system to the mobile phone, and the information collection system 21 shares all the information that comes with the mobile phone.
  • the camera 21-11 can be used to detect and analyze the user's state, which is simple to use and very easy to put into practical application.
  • the data analysis system 22-1 uses artificial intelligence AI software for data analysis.
  • the intelligent learning and powerful calculation and analysis functions of the artificial intelligence AI software can perform rapid intelligent learning and intelligent analysis on all the collected data, and the data analysis process is faster and more effective.
  • the artificial intelligence (AI) software can be downloaded on the mobile phone 100 with the user status test function, and can calculate the distance between the mobile phone 100 with the user status test function and the pupil 300 H, and/or analyze the degree of eye fatigue, and/or analyze whether the light intensity irradiated on the user's face is appropriate, and/or analyze whether the posture of the cervical spine is correct.
  • the artificial intelligence (AI) software can quickly perform data analysis and judgment on one or more pieces of information as required.
  • the information feedback system 22-2 is an alarm device 22-21 or a mobile phone use state control device 22-22.
  • the alarm device 22-21 is a sound alarm device 22-21-1, and/or an image alarm device 22-21-2, and/or a data prompt device 22-21-3 .
  • the applicant only lists the above-mentioned three alarm methods that are most easily implemented on the mobile phone. In practical applications, those skilled in the art can design different alarm devices according to their needs. The applicant does not list them one by one here, but without departing from the scope of protection of the present application.
  • the handling method given by the mobile phone use state control device 22 - 22 is that the mobile phone screen goes black for a set time, or the mobile phone sleeps or the mobile phone is turned off.
  • those skilled in the art can also design different mobile phone operation intervention modes as required, and the applicant does not list them one by one here, but they do not depart from the protection scope of the present application.
  • the user first inputs the interpupillary distance D by himself, and the cameras 21-11 collect images of two pupils 300 and transmit the information to the analysis feedback system 22, respectively.
  • the included angles ⁇ 1 , ⁇ 2 between the lines CT 1 and CT 2 connecting the camera 21-11 and the pupils and the horizontal line T 1 and T 2 of the two pupils, through the following geometric calculations, the camera 21-11 and the two pupils can be calculated.
  • Vertical distance H between pupil horizontal lines T 1 T 2 :
  • the information feedback system 22-2 of the analysis feedback system 22 The mobile phone 100 of the mobile phone 100 performs warning or operation intervention, such as sound reminder through the sound alarm device 22-21-1, or image reminder through the image alarm device 22-21-2, or through the data reminder device 22-21-3.
  • the actual measured distance is displayed on the screen of the mobile phone, and it can also work in multiple warning modes at the same time. If the user fails to correct after a long warning, the information feedback system 22-2 will activate the mobile phone use state control device 22-22, and use the The mobile phone 100 with the user state test function is operated and intervened by means of a black screen, hibernation of the mobile phone, or shutdown of the mobile phone.
  • the camera 21-11 can also collect information such as eyelid posture, facial expression, and light intensity. Expression, can analyze and judge the degree of eye fatigue, and can also determine whether the light intensity of the mobile phone screen is appropriate through light intensity analysis. When the fatigue degree exceeds the set safe state, or the light intensity is not suitable, the information of the analysis feedback system 22 The feedback system 22-2 also provides warnings or operation interventions to the mobile phone 100 with the user state test function.
  • the cameras 21 - 11 can also collect the user's head posture and/or body posture, and transmit the collected information to the analysis feedback system 22 , and the analysis feedback system 22 passes The head posture and/or body posture determine whether the cervical spine posture of the user is correct during the use of the mobile phone.
  • the mobile phone 100 performs an alert or operational intervention.
  • the user state detection system 2 constitutes a cervical spine state test system 202 .
  • the camera 21-11 collects the posture of the user's head and body, and the analysis feedback system 22 measures and calculates the angle ⁇ between the extension line of the bridge of the user's nose and the line connecting the two shoulders.
  • the analysis feedback system 22 determines that the head deviation is too large, and will give a warning or operational intervention to the mobile phone 100 with the user state test function.
  • the analysis feedback system 22 measures and calculates the angle ⁇ between the extension line of the head along the neck and the vertical line of the body , when the included angle ⁇ deviates from the set safety value range, the analysis feedback system 22 determines that the head bowing amplitude is too large, and will give a warning or operational intervention to the mobile phone 100 with the user status test function.
  • the user state detection system 2 of the mobile phone with the user state test function of this embodiment may be the independent eye state test system 201 or the cervical spine state test system 202, or may simultaneously have the eye state test system 2
  • the function of the system 201 or the cervical spine state testing system 202 can individually test a certain usage state of the user, such as the distance H between the mobile phone screen and the pupil, as required, to ensure a safe distance during the use of the mobile phone; or test the user It reminds the user to control the usage time, and can also test the user's multiple usage states at the same time as needed, such as whether the distance between the mobile phone screen and the pupil is within a safe distance, whether the eye fatigue state exists, Whether the light intensity of the mobile phone is appropriate, whether the cervical spine posture is correct, etc.
  • the mobile phone 100 with the user status test function also has a historical data memory function, and when the mobile phone 100 with the user status test function is turned on again, it will automatically verify the correct use of the user status data and storage Whether the status data is consistent, the user will be prompted through the analysis feedback system 22 .
  • the mobile phone with the user state testing function of this embodiment is provided with the user state detection system 2, it can collect information on the use state of the user's eyes, cervical vertebra and other parts, and the analysis feedback system 22 can The collected data is analyzed to determine whether the user's use status is scientific and healthy. When there are incorrect mobile phone use conditions such as too close distance, eye fatigue, incorrect cervical posture, and inappropriate light intensity of the mobile phone screen, it can be timely corrected.
  • the mobile phone 100 with the user status test function provides warnings and prompts in the form of sound, image, text, etc., and under certain circumstances, the mobile phone with the user status test function can also be tested by means of black screen, flashing screen, automatic shutdown, etc. 100 to carry out operational interventions to prevent users from using incorrect mobile phone postures for a long time, and to avoid adverse phenomena such as vision loss and cervical spine diseases.
  • Embodiment 2 Mobile phone with user status test function of the present invention with 2 cameras
  • the difference between this embodiment and Embodiment 1 is that in this embodiment, the camera mechanism 21-1 includes two cameras 21-11. There are two cameras 21-11 , the distance H between the camera 21-11 and the pupil 300 can be directly calculated by using the distance L between the two cameras 21-11, without additional input of the interpupillary distance.
  • the two cameras 21-11 are the front cameras 21-11 built in the mobile phone 100 with the user status test function.
  • the camera 21-11 can directly use the front camera 21-11 that comes with the mobile phone, no additional accessories are needed, it can be better compatible with the existing mobile phone system, the practical application cost is lower, and the applicability is wide.
  • the two cameras 21-11 respectively capture the image of the first pupil 300 and transmit the information to the analysis feedback system 22, and the distance between the two cameras 21-11 and the pupil can be obtained respectively
  • the two cameras 21-11 respectively collect the images of the second pupil 300 and transmit the information to the analysis feedback system 22, and the connection line C1 between the two cameras 21-11 and the pupils can be obtained respectively
  • the included angles ⁇ 1 , ⁇ 2 between T 2 , C 2 T 2 and the horizontal line C 1 C 2 of the camera 21-11, through the following geometric calculations, the horizontal line C 1 C 2 of the camera 21-11 and all the angles can be calculated
  • the distance H between the camera 21-11 and the pupil 300 can be obtained by averaging H 1 and H 2 .
  • the distance between the camera 21-11 and the pupil 300 can be calculated by the distance L between the two cameras 21-11 H, the user does not need to input the interpupillary distance D separately, the use process is more convenient, and the distances H 1 and H 2 respectively calculated by the two cameras 21-11 can also have a double-check function to further ensure the correctness of the data. sex.
  • the user state detection system 2 of the mobile phone with the user state test function in this embodiment can also be the independent eye state test system 201 or the cervical spine state test system 202, or can have the eye state test system 201 at the same time.
  • the function of the head state test system 201 or the cervical spine state test system 202 can test a certain use state of the user, such as the distance H between the mobile phone screen and the pupil, to ensure a safe distance during the use of the mobile phone; or Test the user's eye fatigue level, remind the user to control the use time, and test the user's multiple usage states at the same time as needed, such as whether the distance between the mobile phone screen and the pupil is within a safe distance range, and the eye fatigue state Whether it exists, whether the light intensity of the mobile phone is appropriate, whether the cervical spine posture is correct, etc.
  • Embodiment 3 The mobile phone with the user status test function of the present invention with an electromagnetic wave radar ranging mechanism
  • the difference between this embodiment and Embodiment 1 is that, in this embodiment, the information collection system 21 of the mobile phone 100 with the user state test function is an electromagnetic wave radar ranging mechanism 21 - 2 .
  • the electromagnetic wave radar ranging mechanism 21-2 is a millimeter wave radar ranging mechanism 21-21.
  • the millimeter-wave radar ranging mechanism 21-21 has the advantages of small size and high precision, especially the accuracy of the millimeter-wave radar ranging mechanism 21-21 in the 77GHz frequency band can reach 1 mm.
  • the millimeter-wave radar ranging mechanism 21-21 is an independent device externally connected to the mobile phone 100 with the user status test function. When in use, the millimeter-wave radar ranging mechanism 21-21 is connected to the belt for use. The distance between the mobile phone 100 with the user state test function and the pupil 300 can be measured on the mobile phone 100 with the user state test function, which is very convenient and flexible to use.
  • the mobile phone 100 with the user state test function of this embodiment may also be equipped with the camera mechanism 21-1 at the same time, in addition to measuring the distance between the mobile phone 100 with the user state test function and the pupil 300 , and the camera mechanism 21-1 can also collect and analyze user state information such as eyelid posture, facial expression, light intensity, head posture, and body posture.
  • the information collection system 21 may also be a laser ranging mechanism, and /or infrared ranging mechanism, and/or light intensity detection sensor, and/or gyroscope sensor and other various information collection devices, the applicant will not exemplify them one by one here, but they will not deviate from the protection scope of the present application.
  • the information collection system 21 can be a single information collection device, or a combination of multiple information collection devices. Those skilled in the art can design various combinations as required, and the applicant does not list them here. Examples are given without departing from the scope of protection of the present application.
  • the mobile phone 100 with the user state testing function can preset the user state, and judge whether the user state is scientific and healthy according to the preset state.
  • the mobile phone 100 with the user state test function is marked as the first state in a relatively close comfortable use range, and the captured image is used as the first state flag; in the far comfortable use range, the mobile phone 100 is marked as the second state, and also photographed The image is used as the second state flag. Whether it is within the range of the first state and the second state can be automatically identified through the comparison of the state pictures. If the distance between 100 and the human eye is within the first state and the second state, no alarm will be issued. Carry out alarm prompting or operation intervention.
  • the mobile phone 100 with the user state test function marks the maximum comfortable angle with the head tilted to the left as the first state of left tilt, and captures an image as the first status mark; marks the maximum comfortable angle with the head tilted to the right It is the second state of right inclination, and the image is taken as the second state identification; whether it is in the range of the first state of left inclination and the second state of right inclination can be automatically identified through the comparison of the state pictures, if the mobile phone 100 with the user state test function
  • the camera 21-11 detects that the head tilt angle is within the first state of left tilt and the second state of right tilt, it will not alarm, if the head tilt angle exceeds the first state of left tilt or the second state of right tilt, it will give an alarm prompt or operation intervention .
  • the mobile phone 100 with the user state test function identifies the maximum comfortable angle of the head tilting forward as the first forward tilt state, and captures an image as the first forward tilt state identification; the maximum comfortable angle with the head tilted back is identified. It is the second state of leaning back, and the image is taken as the second state of leaning back; through the comparison of the state pictures, it can be automatically identified whether it is within the range of the first state of forward leaning and the second state of leaning back.
  • the camera 21-11 of the mobile phone 100 with the test function detects that the tilt angle of the head is within the first state of forward tilt and the second state of backward tilt, and no alarm is given. If the head tilt angle exceeds the first state of forward tilt or the second state of backward tilt status, alarm prompt or operation intervention will be carried out.
  • the preset state of the mobile phone 100 with the user state test function may be a single one of the above preset states, or a combination of more than one state.
  • the preset state mode of the mobile phone 100 with the user state test function can easily determine whether it is in the preset state by recognizing the collected images in real time, especially using artificial intelligence (AI) image recognition technology. In addition, it is very easy to use, effectively ensuring the healthy use of mobile phones.
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Abstract

本发明之带使用者状态测试功能的手机含使用者状态检测系统,使用者状态检测系统含信息采集系统和分析反馈系统;信息采集系统能采集手机使用者状态信息并传输给分析反馈系统,分析反馈系统对信息进行分析后判断使用者使用状态是否科学健康,并根据分析结果对手机进行提示或操作干预,以预防使用者长时间采取不正确的手机使用姿势,避免造成视力下降、出现颈椎疾病等不良现象。信息采集系统外接在带使用者状态测试功能的手机上、或内置在带使用者状态测试功能的手机上、或共用带使用者状态测试功能的手机的摄像系统。分析反馈系统是内置在使用者状态测试功能的手机内的功能模块或能下载在带使用者状态测试功能的手机上的软件系统。

Description

带使用者状态测试功能的手机 技术领域
本发明涉及一种手机,特别是一种带使用者状态测试功能的手机。
背景技术
随着科技的发展,手机成为人们日常工作、生活中不可或缺的一部分,给人们的工作和生活带来了非常大的便利。
正常状态下,手机使用时需距离人眼30-40cm,但是,随着人们日常使用手机的时间日益加长,手机距离人眼的距离会不自觉的越来越近,由于姿势不正确、距离太近、使用时间太长等不正确的使用状态,长时间使用手机也给人们带来越来越多的近视、颈椎病、过度疲劳等健康问题。
尤其是随着手机在青少年群体中的日益普及,上述健康问题的危害也日益凸显。现在的手机虽然通过护眼模式、蓝光过滤、青少年模式等方式以期保护使用者的眼睛健康,但对于距离太近、姿势不正确等带来用眼不健康的因素没有办法进行警示和干预,因此,需要对现有的手机进行进一步的改进。
发明内容
本发明之带使用者状态测试功能的手机设计有使用者状态检测系统,当使用者状态检测系统检测到使用者有距离太近、用眼疲劳、颈椎姿势不正确等状态时,能通过信息反馈及时通过手机进行警示或操作干预。
本发明之带使用者状态检测功能的手机,其特征在于:所述带使用者状态测试功能的手机100含使用者状态检测系统2;
A、所述使用者状态检测系统2含信息采集系统21和分析反馈系统22;
B、所述信息采集系统21能采集手机使用者状态信息并将采集的信息传输给所述分析反馈系统22,所述分析反馈系统22对信息进行分析后判断使用者使用状态是否科学健康, 并根据分析结果对所述带使用者状态测试功能的手机100进行提示或操作干预。
所述信息采集系统21能对使用者的眼部、颈椎等部位的使用状态进行信息采集,所述分析反馈系统22能对采集的数据进行分析后判断使用者的使用状态是否科学、健康,当出现距离太近、用眼疲劳、颈椎姿势不正确、手机屏幕光强不合适等不正确的手机使用状况时,能及时对所述带使用者状态测试功能的手机100进行声音、图像、文字等形式的警示和提示,特定情况下还可以采取黑屏、闪屏、自动关机等方式对所述带使用者状态测试功能的手机100进行操作干预,以预防使用者长时间采取不正确的手机使用姿势,避免造成视力下降、出现颈椎疾病等不良现象。
所述信息采集系统21能采集的手机使用者状态信息包括眼睛和手机的距离、和/或瞳孔(300)图像、和/或眼睑图像、和/或使用者脸部姿态,以达到保护使用者视力的目的。视力受损,如近视、散光等现象是长时间不正确使用最容易造成的伤害,本发明之带使用者状态测试功能的手机100通过对手机进行警示或操作干预,有效避免使用者长时间采用不正确的手机使用姿势造成视力损失,有效保护使用者的视力。
所述信息采集系统21能采集的手机使用者状态信息包括头部姿态、和/或身体姿态,以达到保护使用者颈椎的目的。当头部或身体姿势不正确时,如长时间低头、侧头等,使用者的颈椎将处于一种不健康的姿势,长期处于这种不正确的姿势,容易引起各种颈椎疾病,本发明之带使用者状态测试功能的手机100通过对手机进行警示或操作干预,有效避免使用者长时间采用不正确的手机使用姿势造成颈椎疾病,有效保护使用者的颈椎健康。
所述使用者状态检测系统2的信息采集系统21外接在所述带使用者状态测试功能的手机100上、或内置在所述带使用者状态测试功能的手机100上、或共用所述带使用者状态测试功能的手机100的摄像系统。
所述信息采集系统21可以是外接在所述带使用者状态测试功能的手机100上的独立装置,也可以是集成在所述带使用者状态测试功能的手机100上的功能模块,实际应用中,直接共用所述带使用者状态测试功能的手机100的摄像系统是最简单、有效的设置方式。
所述使用者状态检测系统2是眼部状态测试系统201。所述眼部状态测试系统201能对手机使用过程中眼部状态,如手机屏幕距离瞳孔300的远近、手机屏幕的光强是否合适、用眼是否疲劳等和用眼健康有关的信息进行采集和分析,并在手机进行警示和提示或对手机进行操作干预,达到保护使用者视力的目的。
所述眼部状态测试系统201的信息采集系统21设置在所述带使用者状态测试功能的手机100上。所述信息采集系统21可以通过外接、集成或共用手机自带摄像头的形式设置在所述带使用者状态测试功能的手机100上。
所述眼部状态测试系统201的信息采集系统21是摄像机构21-1、和/或电磁波雷达测距机构21-2、和/或激光测距机构、和/或红外测距机构、和/或光线强度检测传感器、和/或陀螺仪传感器。申请人在此只列举了上述几种信息采集方式,实际应用中,本领域的技术人员可以根据需要设计出不同的信息采集方式和系统,都并不脱离本申请的保护范围。
所述信息采集系统21是所述摄像机构21-1,所述摄像机构21-1至少含1个摄像头21-11。所述摄像头21-11可以是外接摄像头,更直接、简便地是共用手机的自带摄像头。
所述摄像机构21-1含2个摄像头21-11。2个所述摄像头21-11的设计,可以利用2个所述摄像头21-11之间的间距L直接计算出所述摄像头21-11和瞳孔300之间的距离H,不需要额外输入瞳距。
2个所述摄像头21-11是所述带使用者状态测试功能的手机100自带的前置摄像头21-11。所述摄像头21-11可以直接采用手机自带的前置摄像头21-11,不需要额外增加配件,可以更好地兼容现有的手机系统,实际应用成本更低,适用面广。
所述电磁波雷达测距机构21-2是毫米波雷达测距机构21-21。所述毫米波雷达测距机构21-21具有体积小、精度高的优点,尤其是77GHz频段的所述毫米波雷达测距机构21-21精度可以达到1mm。
所述分析反馈系统22含数据分析系统22-1和信息反馈系统22-2;所述数据分析系统22-1能对采集的使用者状态信息进行分析,并判断使用者的使用状态是否科学健康,所述信息反馈系统22-2根据分析结果对所述带使用者状态测试功能的手机100进行提示或操作干预。
所述分析反馈系统22是内置在所述使用者状态测试功能的手机100内的功能模块或能下载在所述带使用者状态测试功能的手机100上的软件系统。所述分析反馈系统22可以是功能模块,也可以是独立的软件系统,尤其是可以下载的软件系统,只需要将软件系统下载到手机上,同时所述信息采集系统21共用手机自带的所述摄像头21-11,就可以进行使用者状态的检测和分析,使用简单,非常容易投入实际应用。
所述数据分析系统22-1采用人工智能AI软件进行数据分析。所述人工智能AI软件的智能学习和强大的计算、分析功能可以对采集的所有数据进行快速的智能学习和智能分析,数据分析过程更加快速、有效。
所述人工智能(AI)软件能下载在所述带使用者状态测试功能的手机100上,能计算所述带使用者状态测试功能的手机100与瞳孔300之间的距离H、和/或分析用眼疲劳程度、和/或分析使用者脸部照射光强是否合适、和/或分析颈椎姿态是否正确。所述人工智能(AI)软件可以根据需要快速地对一种或多种信息进行数据分析和判断。
所述信息反馈系统22-2是报警装置22-21或手机使用状态控制装置22-22。
所述报警装置22-21是声音报警装置22-21-1、和/或图像报警装置22-21-2、和/或数据提示装置22-21-3。申请人在此只列举了上述三种最容易在手机上进行实现的警示方法,实际应用中,本领域的技术人员可以根据需要设计出不同的报警装置,申请人在此不一一列举,但都不脱离本申请的保护范围。
所述手机使用状态控制装置22-22给出的处置方式是手机屏幕设定时间黑屏、或手机休眠或手机关机。当然,本领域的技术人员还可以根据需要设计出不同的手机操作干预方式,申请人在此不一一列举,但都不脱离本申请的保护范围。
所述带使用者状态测试功能的手机100含使用者状态检测系统2;所述使用者状态检测系统2是眼部状态测试系统201,所述眼部状态测试系统201含信息采集系统21和分析反馈系统22;所述信息采集系统21是所述摄像机构21-1,所述摄像机构21-1含1个摄像头21-11;所述摄像头21-11分别采集2个瞳孔300的图像并将信息传输至所述分析反馈系统22,所述分析反馈系统22的数据分析系统22-1基于使用者输入的瞳距值计算出所述带使用者状态测试功能的手机100与瞳孔300之间的距离H,当所述带使用者状态测试功能的手机100与瞳孔300之间的距离H小于设定的安全距离时,所述分析反馈系统22的信息反馈系统22-2对所述带使用者状态测试功能的手机100进行警示或操作干预。
所述带使用者状态测试功能的手机100含使用者状态检测系统2;所述使用者状态检测系统2是眼部状态测试系统201,所述眼部状态测试系统201含信息采集系统21和分析反馈系统22;所述信息采集系统21是所述摄像机构21-1,所述摄像机构21-1含1个摄像头21-11;所述摄像头21-11分别采集瞳孔300图像、眼睑姿态、面部表情和光线强度,并将信息传输至所述分析反馈系统22,所述分析反馈系统22的数据分析系统22-1基于使用者输入的瞳距值计算出所述带使用者状态测试功能的手机100与瞳孔300之间的距离H,同时结合采集的瞳孔300大小、眼睑姿态和脸部表情信息判断使用者的用眼疲劳程度和使用者脸部光强是否合适,并将分析结果传输至所述分析反馈系统22的信息反馈系统22-2,当所述带使用者状态测试功能的手机100与瞳孔300之间的距离H小于设定的安全距离、或疲劳程度超过设定的安全状态、或光强不合适时,所述分析反馈系统22的信息反馈系统22-2对所述带使用者状态测试功能的手机100进行警示或操作干预。
所述带使用者状态测试功能的手机100含使用者状态检测系统2;所述使用者状态检测系统2是眼部状态测试系统201,所述眼部状态测试系统201含信息采集系统21和分析反馈系统22;所述信息采集系统21是所述摄像机构21-1,所述摄像机构21-1含2个摄像头21-11;所述摄像头21-11分别采集2个瞳孔300的图像并将信息传输至所述分析 反馈系统22所述分析反馈系统22的数据分析系统22-1基于2个所述摄像头21-11之间的间距L计算出所述带使用者状态测试功能的手机100与瞳孔300之间的距离H,当所述带使用者状态测试功能的手机100与瞳孔300之间的距离H小于设定的安全距离时,所述分析反馈系统22的信息反馈系统22-2对所述带使用者状态测试功能的手机100进行警示或操作干预。
所述带使用者状态测试功能的手机100含使用者状态检测系统2;所述使用者状态检测系统2是眼部状态测试系统201,所述眼部状态测试系统201含信息采集系统21和分析反馈系统22;所述信息采集系统21是所述摄像机构21-1,所述摄像机构21-1含2个摄像头21-11;所述摄像头21-11分别采集瞳孔300图像、眼睑姿态、面部表情和光线强度,并将信息传输至所述分析反馈系统22,所述分析反馈系统22的数据分析系统22-1基于2个所述摄像头21-11之间的间距L计算出所述带使用者状态测试功能的手机100与瞳孔(300)之间的距离,同时结合采集的瞳孔300大小、眼睑姿态和脸部表情信息判断使用者的用眼疲劳程度,并将分析结果传输至所述分析反馈系统22的信息反馈系统22-2,当所述带使用者状态测试功能的手机100与瞳孔300之间的距离H小于设定的安全距离、或疲劳程度超过设定的安全状态、或光线强度不合适时,所述分析反馈系统22的信息反馈系统22-2对所述带使用者状态测试功能的手机100进行警示或操作干预。
所述使用者状态检测系统2是颈椎状态测试系统202。
所述颈椎状态测试系统202的信息采集系统21是摄像机构21-1;所述摄像机构21-1至少含1个摄像头21-11。
所述带使用者状态测试功能的手机100含使用者状态检测系统2;所述使用者状态检测系统2是颈椎状态测试系统202,所述颈椎状态测试系统202含信息采集系统21和分析反馈系统22;所述信息采集系统21是所述摄像机构21-1,所述摄像头21-11采集使用者的头部姿态、和/或身体姿态,并将采集的信息传输至所述分析反馈系统22,所述分析反馈系统22通过头部姿态和/或身体姿态判断使用者手机使用过程中颈椎姿态是否正确,当处于非正确姿势时,所述分析反馈系统22的信息反馈系统22-2对所述带使用者状态测试功能的手机100进行警示或操作干预。
所述使用者状态检测系统2含眼部状态测试系统201和颈椎状态测试系统202。
所述带使用者状态测试功能的手机100含使用者状态检测系统2;所述使用者状态检测系统2含所述眼部状态测试系统201和所述颈椎状态测试系统202;所述眼部状态测试系统(201)和所述颈椎状态测试系统202的信息采集系统21是摄像机构21-1,所述摄像机构21-1至少含1个摄像头21-11,所述摄像头21-11分别采集瞳孔300图像、和/或眼 睑姿态、和/或光线强度、和/或面部表情、和/或头部姿态、和/或身体姿态,并将采集的信息传输至所述分析反馈系统22,所述分析反馈系统22计算出所述带使用者状态测试功能的手机100和瞳孔300的距离,结合采集的瞳孔300大小、眼睑姿态和脸部表情信息判断使用者的疲劳程度,并通过头部姿态和/或身体姿态判断使用者手机使用过程中颈椎姿态是否正确,当所述带使用者状态测试功能的手机100与瞳孔300之间的距离H小于设定的安全距离、或用眼疲劳程度超过设定的安全状态、或光线强度不合适、或使用者的颈椎处于非正确姿势时,所述分析反馈系统22的信息反馈系统22-2对所述带使用者状态测试功能的手机100进行警示或操作干预。
本发明之带使用者状态测试功能的手机的使用者状态检测系统2可以是单独的所述眼部状态测试系统201或所述颈椎状态测试系统202,也可以同时具有所述眼部状态测试系统201或所述颈椎状态测试系统202的功能,根据需要,可以单独测试使用者的某一使用状态,如手机屏幕和瞳孔之间的距离H,保证手机使用过程的安全距离;或测试使用者的用眼疲劳程度,提醒使用者控制使用时长,也可以根据需要同时测试使用者的多个使用状态,如手机屏幕和瞳孔之间的距离是否处于安全距离范围以内、用眼疲劳状态是否存在、手机光强是否合适、颈椎姿势是否正确等。
所述带使用者状态测试功能的手机100具有历史数据记忆功能,所述带使用者状态测试功能的手机100再次开机时,会自动校对使用者状态数据与存储的正确使用状态数据是否一致,并经所述分析反馈系统22对使用者进行提示。
所述带使用者状态测试功能的手机100可以进行使用者状态预设,根据预设状态判断使用者状态是否科学健康。
所述带使用者状态测试功能的手机100在比较近的舒适使用范围标识为第1状态,并拍摄图像作为第1状态标识;在较远的舒适使用范围标识为第2状态,也拍摄图像作为第2状态标识。通过状态图片的对比可自动识别是否处在第1状态和第2状态范围内,如果所述带使用者状态测试功能的手机100的摄像头21-11监测到所述带使用者状态测试功能的手机100与人眼的距离在第1状态和第2状态内,则不报警,如果所述带使用者状态测试功能的手机100与人眼的距离近于第1状态或远于第2状态,则进行报警提示或操作干预。
所述带使用者状态测试功能的手机100将头部向左侧倾斜的最大舒适角度标识为左倾第1状态,并拍摄图像作为第1状态标识;将头部向右侧倾斜的最大舒适角度标识为右倾第2状态,并拍摄图像作为第2状态标识;通过状态图片的对比可自动识别是否处在左倾第1状态和右倾第2状态范围内,如果所述带使用者状态测试功能的手机100的摄像头 21-11监测到头部倾斜角度在左倾第1状态和右倾第2状态内,则不报警,如果头部倾斜角度超出左倾第1状态或右倾第2状态,则进行报警提示或操作干预。
所述带使用者状态测试功能的手机100将头部前倾的最大舒适角度标识为前倾第1状态,并拍摄图像作为前倾第1状态标识;将头部向后仰的最大舒适角度标识为后仰第2状态,并拍摄图像作为后仰第2状态标识;通过状态图片的对比可自动识别是否处在前倾第1状态和后仰第2状态范围内,如果所述带使用者状态测试功能的手机100的摄像头21-11监测到头部倾斜角度在前倾第1状态和后仰第2状态内,则不报警,如果头部倾斜角度超出前倾第1状态或后仰第2状态,则进行报警提示或操作干预。
所述带使用者状态测试功能的手机100的预设状态可以是上述预设状态中单独的1种,也可以是1种以上状态的组合。
所述带使用者状态测试功能的手机100的预设状态方式通过对所采集到的图像进行实时识别,可以非常方便地判断是否在预设的状态之外,使用非常简便,有效确保健康使用手机。
本发明之带使用者状态测试功能的手机含使用者状态检测系统2,所述使用者状态检测系统2含信息采集系统21和分析反馈系统22;所述信息采集系统21能采集手机使用者状态信息并将采集的信息传输给所述分析反馈系统22,所述分析反馈系统22对信息进行分析后判断使用者使用状态是否科学健康,并根据分析结果对所述带使用者状态测试功能的手机100进行提示或操作干预,以预防使用者长时间采取不正确的手机使用姿势,避免造成视力下降、出现颈椎疾病等不良现象。所述信息采集系统21外接在所述带使用者状态测试功能的手机100上、或内置在所述带使用者状态测试功能的手机100上、或共用所述带使用者状态测试功能的手机100的摄像系统。所述分析反馈系统22是内置在所述使用者状态测试功能的手机100内的功能模块或能下载在所述带使用者状态测试功能的手机100上的软件系统。
附图说明
图1是本发明之带使用者状态测试功能的手机的结构示意图。
图1-1图1的A-A剖视图。
图1-2是图1-1的B处放大图。
图1-3是分析反馈系统是可下载的软件系统的本发明之带使用者状态测试功能的手机的结构示意图。
图2是含1个摄像头的本发明之带使用者状态测试功能的手机的使用状态示意图。
图2-1是图2的摄像头至瞳孔距离的几何方位示意图。
图3是含2个摄像头的本发明之带使用者状态测试功能的手机的使用状态示意图。
图3-1是图3的摄像头至瞳孔距离的几何方位示意图。
图4是外接毫米波雷达测距机构的本发明之带使用者状态测试功能的手机的使用状态示意图。
图5是头部侧歪时本发明之带使用者状态测试功能的手机的使用状态示意图。
图6是低头时本发明之带使用者状态测试功能的手机的使用状态示意图。
上述图中:
100为本发明之带使用者状态测试功能的手机,300为瞳孔;201为眼部状态测试系统,202为颈椎状态测试系统。
2为使用者状态检测系统,21为信息采集系统,22为分析反馈系统;21-1为摄像机构,21-2为电磁波雷达测距机构,22-1为数据分析系统,22-2为信息反馈系统;21-11为摄像头,21-21为毫米波雷达测距机构,22-21为报警装置,22-22为手机使用状态控制装置;22-21-1为声音报警装置,22-21-2为图像报警装置,22-21-3为数据提示装置。
D为瞳距,L为摄像头之间的间距,H为摄像头与瞳孔之间的距离,H 1、H 2分别为2个摄像头水平线C 1C 2与瞳孔之间的垂直距离。
α 1、α 2分别为摄像头和瞳孔之间连线CT 1、CT 2与双瞳水平线T 1T 2之间的夹角;θ为鼻梁延伸线和两肩连线之间的夹角,δ为头部沿颈部延伸线与身体中垂线之间的夹角,γ 1、γ 2分别为2个摄像头和瞳孔之间连线C 1T 1、C 2T 1与摄像头水平线C 1C 2之间的夹角,β 1、β 2分别为2个摄像头和瞳孔之间连线C 1T 2、C 2T 2与摄像头水平线C 1C 2之间的夹角。
具体实施方式
实施例1:含1个摄像头的本发明之带使用者状态测试功能的手机
参考图1至图2-1,本实施例之带使用者状态测试功能的手机含含使用者状态检测系统2。
所述使用者状态检测系统2含信息采集系统21和分析反馈系统22。所述信息采集系统21能采集手机使用者状态信息并将采集的信息传输给所述分析反馈系统22,所述分析反馈系统22对信息进行分析后判断使用者使用状态是否科学健康,并根据分析结果对所述带使用者状态测试功能的手机100进行提示或操作干预。
本实施例中,所述使用者状态检测系统2是眼部状态测试系统201。所述信息采集系 统21能采集的手机使用者状态信息包括眼睛和手机的距离、和/或瞳孔(300)图像、和/或眼睑图像、和/或使用者脸部姿态,以达到保护使用者视力的目的。
所述使用者状态检测系统2的信息采集系统21可以外接在所述带使用者状态测试功能的手机100上、或内置在所述带使用者状态测试功能的手机100上、或共用所述带使用者状态测试功能的手机100的摄像系统。
本实施例中,所述信息采集系统21是摄像机构21-1,所述摄像机构21-1含1个摄像头21-11,所述摄像头21-11共用所述带使用者状态测试功能的手机100的摄像系统的摄像头。
所述分析反馈系统22含数据分析系统22-1和信息反馈系统22-2;所述数据分析系统22-1能对采集的使用者状态信息进行分析,并判断使用者的使用状态是否科学健康,所述信息反馈系统22-2根据分析结果对所述带使用者状态测试功能的手机100进行提示或操作干预。
参考图1和图1-3,所述分析反馈系统22可以是内置在所述使用者状态测试功能的手机100内的功能模块或能下载在所述带使用者状态测试功能的手机100上的软件系统。所述分析反馈系统22可以是功能模块,也可以是独立的软件系统,尤其是可以下载的软件系统,只需要将软件系统下载到手机上,同时所述信息采集系统21共用手机自带的所述摄像头21-11,就可以进行使用者状态的检测和分析,使用简单,非常容易投入实际应用。
所述数据分析系统22-1采用人工智能AI软件进行数据分析。所述人工智能AI软件的智能学习和强大的计算、分析功能可以对采集的所有数据进行快速的智能学习和智能分析,数据分析过程更加快速、有效。
参考图1-3,所述人工智能(AI)软件能下载在所述带使用者状态测试功能的手机100上,能计算所述带使用者状态测试功能的手机100与瞳孔300之间的距离H、和/或分析用眼疲劳程度、和/或分析使用者脸部照射光强是否合适、和/或分析颈椎姿态是否正确。所述人工智能(AI)软件可以根据需要快速地对一种或多种信息进行数据分析和判断。
所述信息反馈系统22-2是报警装置22-21或手机使用状态控制装置22-22。
参考图1、图3和图4,所述报警装置22-21是声音报警装置22-21-1、和/或图像报警装置22-21-2、和/或数据提示装置22-21-3。申请人在此只列举了上述三种最容易在手机上进行实现的警示方法,实际应用中,本领域的技术人员可以根据需要设计出不同的报警装置,申请人在此不一一列举,但都不脱离本申请的保护范围。
参考图6,所述手机使用状态控制装置22-22给出的处置方式是手机屏幕设定时间黑屏、或手机休眠或手机关机。当然,本领域的技术人员还可以根据需要设计出不同的手机 操作干预方式,申请人在此不一一列举,但都不脱离本申请的保护范围。
参考图2-1,本实施例中,使用者先自行输入瞳距D,所述摄像头21-11分别采集2个瞳孔300的图像并将信息传输至所述分析反馈系统22,可以分别获得所述摄像头21-11和瞳孔之间连线CT 1、CT 2与双瞳水平线T 1T 2之间的夹角α 1、α 2,经过下列几何计算,可算出所述摄像头21-11与双瞳水平线T 1T 2之间的垂直距离H:
∵H/T 1E=tanα 1,H/T 2E=tanα 2
∴T 1E·tanα 1=T 2E·tanα 2
∴T 1E=T 2E·tanα 2/tanα 1
∵T 1E+T 2E=D
∴T 2E·tanα 2/tanα 1+T 2E=D
∴T 2E=D/(1+tanα 2/tanα 1)
∴H=D·tanα 2/(1+tanα 2/tanα 1)
当所述带使用者状态测试功能的手机100与瞳孔300之间的距离H小于设定的安全距离时,所述分析反馈系统22的信息反馈系统22-2对所述带使用者状态测试功能的手机100进行警示或操作干预,如通过所述声音报警装置22-21-1进行声音提醒,或通过图像报警装置22-21-2进行图像提醒,或通过数据提示装置22-21-3在手机屏幕上显示实测距离,也可以多个警示方式同时工作,如长时间警示后使用者仍未进行纠正,所述信息反馈系统22-2会启动所述手机使用状态控制装置22-22,利用黑屏、或手机休眠或手机关机等方式对所述带使用者状态测试功能的手机100进行操作干预。
除了进行眼部距离的检测与提醒外,所述摄像头21-11还可以采集眼睑姿态、面部表情和光线强度等信息,通过对所述通孔300大小的分析,同时结合采集的眼睑姿态和面部表情,可以分析判断用眼疲劳程度,也可以通过光强分析确定手机屏幕的光强是否合适,当疲劳程度超过设定的安全状态、或光强不合适时,所述分析反馈系统22的信息反馈系统22-2也会对所述带使用者状态测试功能的手机100进行警示或操作干预。
参考图5和图6,所述摄像头21-11还可以采集使用者的头部姿态、和/或身体姿态,并将采集的信息传输至所述分析反馈系统22,所述分析反馈系统22通过头部姿态和/或身体姿态判断使用者手机使用过程中颈椎姿态是否正确,当处于非正确姿势时,所述分析反馈系统22的信息反馈系统22-2对所述带使用者状态测试功能的手机100进行警示或操作干预。使得所述使用者状态检测系统2构成颈椎状态测试系统202。
参考图5,所述摄像头21-11采集使用者头部和身体的姿态,所述分析反馈系统22对使用者鼻梁延伸线和两肩连线之间的夹角θ进行测量和计算,当所述夹角θ偏离设定的安 全值范围时,所述分析反馈系统22判定为头部偏移过大,即会对所述带使用者状态测试功能的手机100进行警示或操作干预。
参考图6,所述摄像头21-11采集使用者头部和身体的姿态后,所述分析反馈系统22对头部沿颈部延伸线与身体中垂线之间的夹角δ进行测量和计算,当所述夹角δ偏离设定的安全值范围时,所述分析反馈系统22判定为低头幅度过大,即会对所述带使用者状态测试功能的手机100进行警示或操作干预。
本实施例之带使用者状态测试功能的手机的使用者状态检测系统2可以是单独的所述眼部状态测试系统201或所述颈椎状态测试系统202,也可以同时具有所述眼部状态测试系统201或所述颈椎状态测试系统202的功能,根据需要,可以单独测试使用者的某一使用状态,如手机屏幕和瞳孔之间的距离H,保证手机使用过程的安全距离;或测试使用者的用眼疲劳程度,提醒使用者控制使用时长,也可以根据需要同时测试使用者的多个使用状态,如手机屏幕和瞳孔之间的距离是否处于安全距离范围以内、用眼疲劳状态是否存在、手机光强是否合适、颈椎姿势是否正确等。
本实施例中,所述带使用者状态测试功能的手机100还具有历史数据记忆功能,所述带使用者状态测试功能的手机100再次开机时,会自动校对使用者状态数据与存储的正确使用状态数据是否一致,并经所述分析反馈系统22对使用者进行提示。
本实施例之带使用者状态测试功能的手机由于设置有所述使用者状态检测系统2,能对使用者的眼部、颈椎等部位的使用状态进行信息采集,所述分析反馈系统22能对采集的数据进行分析后判断使用者的使用状态是否科学、健康,当出现距离太近、用眼疲劳、颈椎姿势不正确、手机屏幕光强不合适等不正确的手机使用状况时,能及时对所述带使用者状态测试功能的手机100进行声音、图像、文字等形式的警示和提示,特定情况下还可以采取黑屏、闪屏、自动关机等方式对所述带使用者状态测试功能的手机100进行操作干预,以预防使用者长时间采取不正确的手机使用姿势,避免造成视力下降、出现颈椎疾病等不良现象。
实施例2:含2个摄像头的本发明之带使用者状态测试功能的手机
参考图3和图3-1,本实施例与实施例1的区别在于,本实施例中,所述摄像机构21-1含2个所述摄像头21-11。2个所述摄像头21-11的设计,可以利用2个所述摄像头21-11之间的间距L直接计算出所述摄像头21-11和瞳孔300之间的距离H,不需要额外输入瞳距。
2个所述摄像头21-11是所述带使用者状态测试功能的手机100自带的前置摄像头21-11。所述摄像头21-11可以直接采用手机自带的前置摄像头21-11,不需要额外增加配 件,可以更好地兼容现有的手机系统,实际应用成本更低,适用面广。
参考图3-1,2个所述摄像头21-11分别采集第1个瞳孔300的图像并将信息传输至所述分析反馈系统22,可以分别获得2个所述摄像头21-11和瞳孔之间连线C 1T 1、C 2T 1与所述摄像头21-11水平线C 1C 2之间的夹角γ 1、γ 2,经过下列几何计算,可算出所述摄像头21-11水平线C 1C 2与所述瞳孔300之间的垂直距离H 1
∵H 1/C 1F=tanγ 2,H 1/C 2F=tanγ 1
∴C 1F·tanγ 2=C 2F·tanγ 1
∴C 1F=C 2F·tanγ 1/tanγ 2
∵C 2F-C 1F=L
∴C 2F-C 2F·tanγ 1/tanγ 2=L
∴C 2F=L/(1-tanγ 1/tanγ 2)
∴H=L·tanγ 1/(1-tanγ 1/tanγ 2)
然后,2个所述摄像头21-11分别采集第2个瞳孔300的图像并将信息传输至所述分析反馈系统22,可以分别获得2个所述摄像头21-11和瞳孔之间连线C 1T 2、C 2T 2与所述摄像头21-11水平线C 1C 2之间的夹角β 1、β 2,经过下列几何计算,可算出所述摄像头21-11水平线C 1C 2与所述瞳孔300之间的垂直距离H 2
∵H 2/C 1G=tanβ 1,H 2/C 2G=tanβ 2
∴C 1G·tanβ 1=C 2G·tanβ 2
∴C 1G=C 2G·tanβ 2/tanβ 1
∵C 1G–C 2G=L
∴C 2G·tanβ 2/tanβ 1-C 2G=L
∴C 2G=L/(tanβ 2/tanβ 1-1)
∴H 2=L·tanβ 2/(tanβ 2/tanβ 1-1)
将H 1和H 2求平均值即可得到所述摄像头21-11与所述瞳孔300之间的距离H。
本实施例之带使用者状态测试功能的手机双摄像头的设计方案,可以通过2个所述摄像头21-11之间的间距L计算出所述摄像头21-11和所述瞳孔300之间的距离H,不需要使用者再另行输入瞳距D,使用过程更加方便,而且,2个所述摄像头21-11分别计算出的距离H 1和H 2还可以兼具复核功能,进一步保证数据的正确性。
当然,本实施例之带使用者状态测试功能的手机的使用者状态检测系统2也可以是单独的所述眼部状态测试系统201或所述颈椎状态测试系统202,也可以同时具有所述眼部状态测试系统201或所述颈椎状态测试系统202的功能,根据需要,可以单独测试使用者 的某一使用状态,如手机屏幕和瞳孔之间的距离H,保证手机使用过程的安全距离;或测试使用者的用眼疲劳程度,提醒使用者控制使用时长,也可以根据需要同时测试使用者的多个使用状态,如手机屏幕和瞳孔之间的距离是否处于安全距离范围以内、用眼疲劳状态是否存在、手机光强是否合适、颈椎姿势是否正确等。
实施例3:含电磁波雷达测距机构的本发明之带使用者状态测试功能的手机
参考图4,本实施例与实施例1的区别在于,本实施例中,所述带使用者状态测试功能的手机100的信息采集系统21是电磁波雷达测距机构21-2。
本实施例中,所述电磁波雷达测距机构21-2是毫米波雷达测距机构21-21。所述毫米波雷达测距机构21-21具有体积小、精度高的优点,尤其是77GHz频段的所述毫米波雷达测距机构21-21精度可以达到1mm。
所述毫米波雷达测距机构21-21是外接在所述带使用者状态测试功能的手机100上的独立装置,使用时将所述毫米波雷达测距机构21-21连接在所述带使用者状态测试功能的手机100上,即可对所述带使用者状态测试功能的手机100和所述瞳孔300之间的距离进行测量,使用非常方便、灵活。
本实施例之使用者状态测试功能的手机100还可以同时配有所述摄像机构21-1,除了对所述带使用者状态测试功能的手机100和所述瞳孔300之间的距离进行测量外,还可以通过所述摄像机构21-1对眼睑姿态、面部表情、光线强度、头部姿态、身体姿态等使用者状态信息进行采集、分析。
申请人在此只具体举例说明了所述摄像机构21-1和所述电磁波雷达测距机构21-2两种具体的信息采集系统,所述信息采集系统21还可以是激光测距机构、和/或红外测距机构、和/或光线强度检测传感器、和/或陀螺仪传感器等其它各种信息采集装置,申请人在此不一一举例说明,但都不脱离本申请的保护范围。
所述信息采集系统21可以是单独一种信息采集装置,也可以是多种信息采集装置的组合,本领域的技术人员可以根据需要设计出需要的各种组合形式,申请人在此不一一举例说明,但都不脱离本申请的保护范围。
此外,所述带使用者状态测试功能的手机100可以进行使用者状态预设,根据预设状态判断使用者状态是否科学健康。
例如,所述带使用者状态测试功能的手机100在比较近的舒适使用范围标识为第1状态,并拍摄图像作为第1状态标识;在较远的舒适使用范围标识为第2状态,也拍摄图像作为第2状态标识。通过状态图片的对比可自动识别是否处在第1状态和第2状态范围内,如果所述带使用者状态测试功能的手机100的摄像头21-11监测到所述带使用者状态测试 功能的手机100与人眼的距离在第1状态和第2状态内,则不报警,如果所述带使用者状态测试功能的手机100与人眼的距离近于第1状态或远于第2状态,则进行报警提示或操作干预。
所述带使用者状态测试功能的手机100将头部向左侧倾斜的最大舒适角度标识为左倾第1状态,并拍摄图像作为第1状态标识;将头部向右侧倾斜的最大舒适角度标识为右倾第2状态,并拍摄图像作为第2状态标识;通过状态图片的对比可自动识别是否处在左倾第1状态和右倾第2状态范围内,如果所述带使用者状态测试功能的手机100的摄像头21-11监测到头部倾斜角度在左倾第1状态和右倾第2状态内,则不报警,如果头部倾斜角度超出左倾第1状态或右倾第2状态,则进行报警提示或操作干预。
所述带使用者状态测试功能的手机100将头部前倾的最大舒适角度标识为前倾第1状态,并拍摄图像作为前倾第1状态标识;将头部向后仰的最大舒适角度标识为后仰第2状态,并拍摄图像作为后仰第2状态标识;通过状态图片的对比可自动识别是否处在前倾第1状态和后仰第2状态范围内,如果所述带使用者状态测试功能的手机100的摄像头21-11监测到头部倾斜角度在前倾第1状态和后仰第2状态内,则不报警,如果头部倾斜角度超出前倾第1状态或后仰第2状态,则进行报警提示或操作干预。
所述带使用者状态测试功能的手机100的预设状态可以是上述预设状态中单独的1种,也可以是1种以上状态的组合。
所述带使用者状态测试功能的手机100的预设状态方式通过对所采集到的图像进行实时识别,尤其是利用人工智能(AI)图像识别技术,可以非常方便地判断是否在预设的状态之外,使用非常简便,有效确保健康使用手机。
应该注意,本文中公开和说明的结构可以用其它效果相同的结构代替,同时本发明所介绍的实施例并非实现本发明的唯一结构。虽然本发明的优先实施例已在本文中予以介绍和说明,但本领域内的技术人员都清楚知道这些实施例不过是举例说明而己,本领域内的技术人员可以做出无数的变化、改进和代替,而不会脱离本发明,因此,应按照本发明所附的权利要求书的精神和范围来的界定本发明的保护范围。

Claims (33)

  1. 带使用者状态检测功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)含使用者状态检测系统(2);
    A、所述使用者状态检测系统(2)含信息采集系统(21)和分析反馈系统(22);
    B、所述信息采集系统(21)能采集手机使用者状态信息并将采集的信息传输给所述分析反馈系统(22),所述分析反馈系统(22)对信息进行分析后判断使用者使用状态是否科学健康,并根据分析结果对所述带使用者状态测试功能的手机(100)进行提示或操作干预。
  2. 根据权利要求1所述带使用者状态测试功能的手机,其特征在于:所述信息采集系统(21)能采集的手机使用者状态信息包括眼睛和手机的距离、和/或瞳孔(300)图像、和/或眼睑图像、和/或使用者脸部姿态,以达到保护使用者视力的目的。
  3. 根据权利要求1所述带使用者状态测试功能的手机,其特征在于:所述信息采集系统(21)能采集的手机使用者状态信息包括头部姿态、和/或身体姿态,以达到保护使用者颈椎的目的。
  4. 根据权利要求1所述带使用者状态测试功能的手机,其特征在于:所述使用者状态检测系统(2)的信息采集系统(21)外接在所述带使用者状态测试功能的手机(100)上、或内置在所述带使用者状态测试功能的手机(100)上、或共用所述带使用者状态测试功能的手机(100)的摄像系统。
  5. 根据权利要求2所述带使用者状态测试功能的手机,其特征在于:所述使用者状态检测系统(2)是眼部状态测试系统(201)。
  6. 根据权利要求5所述带使用者状态测试功能的手机,其特征在于:所述眼部状态测试系统(201)的信息采集系统(21)设置在所述带使用者状态测试功能的手机(100)上。
  7. 根据权利要求6所述带使用者状态测试功能的手机,其特征在于:所述眼部状态测试系统(201)的信息采集系统(21)是摄像机构(21-1)、和/或电磁波雷达测距机构(21-2)、和/或激光测距机构、和/或红外测距机构、和/或光线强度检测传感器、和/或陀螺仪传感器。
  8. 根据权利要求7所述带使用者状态测试功能的手机,其特征在于:所述信息采集系统(21)是所述摄像机构(21-1),所述摄像机构(21-1)至少含1个摄像头(21-11)。
  9. 根据权利要求8所述带使用者状态测试功能的手机,其特征在于:所述摄像机构(21-1)含2个摄像头(21-11)。
  10. 根据权利要求9所述带使用者状态测试功能的手机,其特征在于:2个所述摄像头(21-11)是所述带使用者状态测试功能的手机(100)上自带的前置摄像头(21-11)。
  11. 根据权利要求7所述带使用者状态测试功能的手机,其特征在于:所述电磁波雷达测距机构(21-2)是毫米波雷达测距机构(21-21)。
  12. 根据权利要求1所述带使用者状态测试功能的手机,其特征在于:所述分析反馈系统(22)含数据分析系统(22-1)和信息反馈系统(22-2);所述数据分析系统(22-1)能对采集的使用者状态信息进行分析,并判断使用者的使用状态是否科学健康,所述信息反馈系统(22-2)根据分析结果对所述带使用者状态测试功能的手机(100)进行提示或操作干预。
  13. 根据权利要求12所述带使用者状态测试功能的手机,其特征在于:所述分析反馈系统(22)是内置在所述使用者状态测试功能的手机(100)内的功能模块或能下载在所述带使用者状态测试功能的手机(100)上的软件系统。
  14. 根据权利要求12所述带使用者状态测试功能的手机,其特征在于:所述数据分析系统(22-1)采用人工智能(AI)软件进行数据分析。
  15. 根据权利要求14所述带使用者状态测试功能的手机,其特征在于:所述人工智能(AI)软件能下载在所述带使用者状态测试功能的手机(100)上,能计算所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H)、和/或分析用眼疲劳程度、和/或分析使用者脸部照射光强是否合适、和/或分析颈椎姿态是否正确。
  16. 根据权利要求13所述带使用者状态测试功能的手机,其特征在于:所述信息反馈系统(22-2)是报警装置(22-21)或手机使用状态控制装置(22-22)。
  17. 根据权利要求16所述带使用者状态测试功能的手机,其特征在于:所述报警装置(22-21)是声音报警装置(22-21-1)、和/或图像报警装置(22-21-2)、和/或数据提示装置(22-21-3)。
  18. 根据权利要求16所述带使用者状态测试功能的手机,其特征在于:所述手机使用状态控制装置(22-22)给出的处置方式是手机屏幕设定时间黑屏、或手机休眠或手机关机。
  19. 根据权利要求8所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)含使用者状态检测系统(2);所述使用者状态检测系统(2)是眼部状态测试系统(201),所述眼部状态测试系统(201)含信息采集系统(21)和分析反馈系统(22);所述信息采集系统(21)是所述摄像机构(21-1),所述摄像机构(21-1)含1个摄像头(21-11);所述摄像头(21-11)分别采集2个瞳孔(300)的图像并将信息 传输至所述分析反馈系统(22),所述分析反馈系统(22)的数据分析系统(22-1)基于使用者输入的瞳距值计算出所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H),当所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H)小于设定的安全距离时,所述分析反馈系统(22)的信息反馈系统(22-2)对所述带使用者状态测试功能的手机(100)进行警示或操作干预。
  20. 根据权利要求8所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)含使用者状态检测系统(2);所述使用者状态检测系统(2)是眼部状态测试系统(201),所述眼部状态测试系统(201)含信息采集系统(21)和分析反馈系统(22);所述信息采集系统(21)是所述摄像机构(21-1),所述摄像机构(21-1)含1个摄像头(21-11);所述摄像头(21-11)分别采集瞳孔(300)图像、眼睑姿态、面部表情和光线强度,并将信息传输至所述分析反馈系统(22),所述分析反馈系统(22)的数据分析系统(22-1)基于使用者输入的瞳距值计算出所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H),同时结合采集的瞳孔(300)大小、眼睑姿态和脸部表情信息判断使用者的用眼疲劳程度和使用者脸部光强是否合适,并将分析结果传输至所述分析反馈系统(22)的信息反馈系统(22-2),当所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H)小于设定的安全距离、或疲劳程度超过设定的安全状态、或光强不合适时,所述分析反馈系统(22)的信息反馈系统(22-2)对所述带使用者状态测试功能的手机(100)进行警示或操作干预。
  21. 根据权利要求9所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)含使用者状态检测系统(2);所述使用者状态检测系统(2)是眼部状态测试系统(201),所述眼部状态测试系统(201)含信息采集系统(21)和分析反馈系统(22);所述信息采集系统(21)是所述摄像机构(21-1),所述摄像机构(21-1)含2个摄像头(21-11);所述摄像头(21-11)分别采集2个瞳孔(300)的图像并将信息传输至所述分析反馈系统(22)所述分析反馈系统(22)的数据分析系统(22-1)基于2个所述摄像头(21-11)之间的间距(L)计算出所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H),当所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H)小于设定的安全距离时,所述分析反馈系统(22)的信息反馈系统(22-2)对所述带使用者状态测试功能的手机(100)进行警示或操作干预。
  22. 根据权利要求9所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)含使用者状态检测系统(2);所述使用者状态检测系统(2)是眼部状态测试系统(201),所述眼部状态测试系统(201)含信息采集系统(21)和分 析反馈系统(22);所述信息采集系统(21)是所述摄像机构(21-1),所述摄像机构(21-1)含2个摄像头(21-11);所述摄像头(21-11)分别采集瞳孔(300)图像、眼睑姿态、面部表情和光线强度,并将信息传输至所述分析反馈系统(22),所述分析反馈系统(22)的数据分析系统(22-1)基于2个所述摄像头(21-11)之间的间距(L)计算出所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H),同时结合采集的瞳孔(300)大小、眼睑姿态和脸部表情信息判断使用者的用眼疲劳程度,并将分析结果传输至所述分析反馈系统(22)的信息反馈系统(22-2),当所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H)小于设定的安全距离、或疲劳程度超过设定的安全状态、或光线强度不合适时,所述分析反馈系统(22)的信息反馈系统(22-2)对所述带使用者状态测试功能的手机(100)进行警示或操作干预。
  23. 根据权利要求3所述带使用者状态测试功能的手机,其特征在于:所述使用者状态检测系统(2)是颈椎状态测试系统(202)。
  24. 根据权利要求23所述带使用者状态测试功能的手机,其特征在于:所述颈椎状态测试系统(202)的信息采集系统(21)是摄像机构(21-1);所述摄像机构(21-1)至少含1个摄像头(21-11)。
  25. 根据权利要求24所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)含使用者状态检测系统(2);所述使用者状态检测系统(2)是颈椎状态测试系统(202),所述颈椎状态测试系统(202)含信息采集系统(21)和分析反馈系统(22);所述信息采集系统(21)是所述摄像机构(21-1),所述摄像头(21-11)采集使用者的头部姿态、和/或身体姿态,并将采集的信息传输至所述分析反馈系统(22),所述分析反馈系统(22)通过头部姿态和/或身体姿态判断使用者手机使用过程中颈椎姿态是否正确,当处于非正确姿势时,所述分析反馈系统(22)的信息反馈系统(22-2)对所述带使用者状态测试功能的手机(100)进行警示或操作干预。
  26. 根据权利要求1所述带使用者状态测试功能的手机,其特征在于:所述使用者状态检测系统(2)含眼部状态测试系统(201)和颈椎状态测试系统(202)。
  27. 根据权利要求26所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)含使用者状态检测系统(2);所述使用者状态检测系统(2)含所述眼部状态测试系统(201)和所述颈椎状态测试系统(202);所述眼部状态测试系统(201)和所述颈椎状态测试系统(202)的信息采集系统(21)是摄像机构(21-1),所述摄像机构(21-1)至少含1个摄像头(21-11),所述摄像头(21-11)分别采集瞳孔(300)图像、和/或眼睑姿态、和/或光线强度、和/或面部表情、和/或头部姿态、和/或身体姿态, 并将采集的信息传输至所述分析反馈系统(22),所述分析反馈系统(22)计算出所述带使用者状态测试功能的手机(100)和瞳孔(300)的距离,结合采集的瞳孔(300)大小、眼睑姿态和脸部表情信息判断使用者的疲劳程度,并通过头部姿态和/或身体姿态判断使用者手机使用过程中颈椎姿态是否正确,当所述带使用者状态测试功能的手机(100)与瞳孔(300)之间的距离(H)小于设定的安全距离、或用眼疲劳程度超过设定的安全状态、或光线强度不合适、或使用者的颈椎处于非正确姿势时,所述分析反馈系统(22)的信息反馈系统(22-2)对所述带使用者状态测试功能的手机(100)进行警示或操作干预。
  28. 根据权利要求1所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)具有历史数据记忆功能,所述带使用者状态测试功能的手机(100)再次开机时,会自动校对使用者状态数据与存储的正确使用状态数据是否一致,并经所述分析反馈系统(22)对使用者进行提示。
  29. 根据权利要求1所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)可以进行使用者状态预设,根据预设状态判断使用者状态是否科学健康。
  30. 根据权利要求29所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)在比较近的舒适使用范围标识为第1状态,并拍摄图像作为第1状态标识;在较远的舒适使用范围标识为第2状态,也拍摄图像作为第2状态标识。通过状态图片的对比可自动识别是否处在第1状态和第2状态范围内,如果所述带使用者状态测试功能的手机(100)的摄像头(21-11)监测到所述带使用者状态测试功能的手机(100)与人眼的距离在第1状态和第2状态内,则不报警,如果所述带使用者状态测试功能的手机(100)与人眼的距离近于第1状态或远于第2状态,则进行报警提示或操作干预。
  31. 根据权利要求29所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)将头部向左侧倾斜的最大舒适角度标识为左倾第1状态,并拍摄图像作为第1状态标识;将头部向右侧倾斜的最大舒适角度标识为右倾第2状态,并拍摄图像作为第2状态标识;通过状态图片的对比可自动识别是否处在左倾第1状态和右倾第2状态范围内,如果所述带使用者状态测试功能的手机(100)的摄像头(21-11)监测到头部倾斜角度在左倾第1状态和右倾第2状态内,则不报警,如果头部倾斜角度超出左倾第1状态或右倾第2状态,则进行报警提示或操作干预。
  32. 根据权利要求29所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)将头部前倾的最大舒适角度标识为前倾第1状态,并拍摄 图像作为前倾第1状态标识;将头部向后仰的最大舒适角度标识为后仰第2状态,并拍摄图像作为后仰第2状态标识;通过状态图片的对比可自动识别是否处在前倾第1状态和后仰第2状态范围内,如果所述带使用者状态测试功能的手机(100)的摄像头(21-11)监测到头部倾斜角度在前倾第1状态和后仰第2状态内,则不报警,如果头部倾斜角度超出前倾第1状态或后仰第2状态,则进行报警提示或操作干预。
  33. 根据权利要求29所述带使用者状态测试功能的手机,其特征在于:所述带使用者状态测试功能的手机(100)的预设状态含权利要求30至权利要求32的1种或1种以上状态的组合。
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