WO2022236994A1 - 数据处理方法、数据处理装置及智能眼镜 - Google Patents

数据处理方法、数据处理装置及智能眼镜 Download PDF

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Publication number
WO2022236994A1
WO2022236994A1 PCT/CN2021/112537 CN2021112537W WO2022236994A1 WO 2022236994 A1 WO2022236994 A1 WO 2022236994A1 CN 2021112537 W CN2021112537 W CN 2021112537W WO 2022236994 A1 WO2022236994 A1 WO 2022236994A1
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WIPO (PCT)
Prior art keywords
preset
acceleration
smart glasses
data
data processing
Prior art date
Application number
PCT/CN2021/112537
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English (en)
French (fr)
Inventor
于洋
林科
张新雷
Original Assignee
惠州Tcl云创科技有限公司
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Publication of WO2022236994A1 publication Critical patent/WO2022236994A1/zh

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Classifications

    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/04Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
    • G08B21/0407Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis
    • G08B21/043Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons based on behaviour analysis detecting an emergency event, e.g. a fall
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B21/00Alarms responsive to a single specified undesired or abnormal condition and not otherwise provided for
    • G08B21/02Alarms for ensuring the safety of persons
    • G08B21/04Alarms for ensuring the safety of persons responsive to non-activity, e.g. of elderly persons
    • G08B21/0438Sensor means for detecting
    • G08B21/0446Sensor means for detecting worn on the body to detect changes of posture, e.g. a fall, inclination, acceleration, gait
    • GPHYSICS
    • G08SIGNALLING
    • G08BSIGNALLING OR CALLING SYSTEMS; ORDER TELEGRAPHS; ALARM SYSTEMS
    • G08B25/00Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems
    • G08B25/01Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium
    • G08B25/08Alarm systems in which the location of the alarm condition is signalled to a central station, e.g. fire or police telegraphic systems characterised by the transmission medium using communication transmission lines

Definitions

  • the present application belongs to the field of electronic technology, and in particular relates to a data processing method, a data processing device and smart glasses.
  • smart glasses With the increasing diversification of smart wearable devices, smart glasses have gradually entered people's lives. In related technologies, smart glasses can install programs and complete functions such as schedule reminders, navigation, image capture, and video calls by receiving user manipulation instructions.
  • the smart glasses in the related art lack an alarm function.
  • Embodiments of the present application provide a data processing method, a data processing device, and smart glasses, which can realize an alarm function.
  • An embodiment of the present application provides a data processing method applied to smart glasses, including:
  • An alarm message is sent when the security data meets a preset condition.
  • An embodiment of the present application provides a data processing device, which is applied to smart glasses, including:
  • An acquisition module used to acquire security data
  • a detection module configured to detect whether the security data meets a preset condition
  • a sending module configured to send alarm information when the safety data meets a preset condition.
  • the embodiment of the present application also provides smart glasses, which include a memory and a processor.
  • a computer program is stored in the memory.
  • the processor is configured to execute the aforementioned data processing method by calling a computer program stored in the memory.
  • the data processing method applied to smart glasses may include: acquiring security data, detecting whether the security data meets a preset condition, and sending an alarm message when the security data meets the preset condition. Accordingly, the smart glasses have an alarm function.
  • FIG. 1 is a schematic diagram of a first structure of smart glasses provided by an embodiment of the present application.
  • Fig. 2 is a cross-sectional view of the first temple provided by the embodiment of the present application.
  • FIG. 3 is a schematic flow chart of the first data processing method provided by the embodiment of the present application.
  • FIG. 4 is a second schematic flowchart of the data processing method provided by the embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of a data processing device provided by an embodiment of the present application.
  • FIG. 6 is a schematic diagram of a second structure of smart glasses provided by an embodiment of the present application.
  • FIG. 7 is a schematic diagram of a third structure of smart glasses provided by an embodiment of the present application.
  • FIG. 1 is a schematic structural diagram of the smart glasses provided by the embodiment of the present application
  • FIG. 2 is a cross-sectional view of the first temple provided by the embodiment of the present application.
  • the smart glasses 100 include a glasses body 10 .
  • the glasses main body 10 includes a frame 11 and a first temple 12 and a second temple 13 connected to opposite sides of the frame 11 respectively. It can be understood that lenses 14 may also be arranged inside the frame 11 .
  • the spectacle frame 11 can be used to fix the lens 14 .
  • the smart glasses 100 may further include a sound output module 20 , a display module 30 , a battery 40 , a main board 50 , a touch module 60 and an antenna module 70 .
  • the interior of the first temple 13 can be used to install the battery 40 , the main board 50 , at least part of the touch module 60 , the antenna module 70 and the sound collection module 80 .
  • the interior of the second temple 13 can also be used to install the sound output module 20, the AR module 30, the battery 40, the main board 50, at least part of the touch module 60, the antenna module 70 and the sound collection module 80, so that the When the electronic device inside one of the first mirror leg 12 and the second mirror leg 13 (such as the main board 50 ) is damaged, the electronic device inside the other mirror leg can continue to work.
  • the material of the frame 11, the first mirror leg 12 and the second mirror leg 13 can be metal, plastic or carbon fiber, etc.
  • the frame 11, the first mirror leg 12 and the second mirror leg 13, etc. The structure can use new fiber materials with high strength and high modulus fiber, which is light in weight and can avoid the pressure on the ears and nose caused by users wearing AR glasses for a long time.
  • the sound output module 20 , the AR module 30 , the battery 40 , the main board 50 , at least part of the touch module 60 and the antenna module 70 can be mounted inside the first temple 12 and the second temple 13 respectively.
  • the sound output module 20, the AR module 30, the main board 50 and the sound collection module 80 can be installed inside the first temple 12, and the battery 40, at least part of the touch module 60 and the antenna module 70 can be installed on the second temple 13 internal.
  • the first temple 12 and the second temple 13 can be symmetrical, such as keeping the same weight.
  • the smart glasses 100 may further include a sound collection module (not shown in the figure) and the like for collecting external sounds.
  • the sound collection module can be arranged inside the glasses main body 10 .
  • the sound collection module may include a microphone.
  • the sound output module 20 may include a speaker or a bone conduction generator.
  • the display module 30 may include a micro-display chip, a micro-display screen, reflective optical elements, etc., wherein the micro-display chip is used to generate images, and the micro-display screen is used to display images generated by the micro-display chip.
  • the display effect of large field of view and high definition can be seen below.
  • the reflective optical elements include concave mirrors, reflective prisms or reflective gratings, etc., and are used to reflect the image on the micro-display to the lens 14 of the smart glasses 100 .
  • the battery 40 can be used to power the smart glasses, and the battery 40 can usually be charged by POGOPIN charging or wireless coil charging.
  • the motherboard 50 may include a sound output interface, a display interface, a battery interface, a touch interface, an antenna interface, and a sound collection interface.
  • the sound output module 20 can be connected with the main board 50 through the sound output interface.
  • the display module 30 can be connected to the main board 50 through a display interface.
  • the battery 40 can be connected with the main board 50 through the battery interface.
  • the touch module 60 can be connected to the main board 50 through a touch interface.
  • the antenna module 70 can be connected to the main board 50 through the antenna interface.
  • the sound collection module 80 can be connected with the main board 50 through the sound collection interface.
  • the motherboard 50 may also include a bluetooth chip, a central processing unit, a memory, a GPS positioning module, various sensors (such as a gravity sensor, a gyroscope sensor), and Flash.
  • the touch module 60 can be a touch button arranged on the inner surface of the first temple 12, so as to maintain the integrity of the first temple 12, and can be waterproof and dustproof. The user can directly operate the touch button to control the touch button, so that the smart glasses 100 can generate a corresponding touch command, thereby realizing human-computer interaction.
  • the touch module 60 may be a physical button partially protruding from the outer surface of the first temple 12 .
  • the user can directly operate the physical button to control the physical button, so that the smart glasses 100 can generate corresponding touch commands.
  • the antenna module 70 can be used to communicate with other electronic devices (such as mobile phones).
  • the antenna module 70 may include a Bluetooth antenna or a communication antenna.
  • the smart glasses 100 can interact with electronic devices (such as mobile phones) carried by the user wearing the smart glasses through the Bluetooth antenna, and the communication antenna can communicate with electronic devices used by other users or other smart glasses.
  • the sound collection module 80 can be used to collect sounds, so as to realize human-computer interaction.
  • the sound collection module 80 may include a microphone and the like.
  • FIG. 3 is a schematic flowchart of the first data processing method provided by the embodiment of the present application.
  • the data processing method can be applied to smart glasses 100.
  • the process may include:
  • the safety data may include the acceleration, the position of the smart glasses, the touch data of the touch operation, and the like.
  • Acceleration can be obtained by gyro sensor or gravity sensor.
  • the location of the smart glasses can be obtained through the GPS positioning module.
  • the touch data of the touch operation can be obtained through the touch module.
  • Touch operations may include pressing operations, sliding operations, and the like.
  • some conditions to be satisfied by the security data may be preset, and these conditions may be determined as preset conditions.
  • the safety data includes acceleration
  • the preset acceleration can be set by the user, or can be set by the smart glasses based on certain rules.
  • the security data includes the location of the smart glasses
  • the preset range can be set by the user, or can be set by the smart glasses based on certain rules.
  • the touch operation corresponding to the touch data may be determined as a default operation as a preset condition.
  • the preset operation can be set by the user, or can be set by the smart glasses based on certain rules.
  • an alarm message may be sent when the acceleration acquired by the gravity sensor is greater than the preset acceleration.
  • an alarm message may be sent to the smart glasses bound with the smart glasses. It can be understood that when the acceleration obtained by the gravity sensor is greater than the preset acceleration, the user wearing the smart glasses is likely to be in a falling state. Therefore, an alarm message can be sent to the smart glasses bound to the smart glasses, so that the user and The user of the smart glasses bound to the smart glasses can know in time that the user wearing the smart glasses is in a fall state, so that the user wearing the smart glasses can be treated in time.
  • an alarm message may be sent when the location of the smart glasses is not within the preset range.
  • an alarm message may be sent to the smart glasses bound with the smart glasses.
  • the smart glasses can be smart glasses sold in a shopping mall, and the area where the shopping mall is located can be used as a preset range.
  • an alarm message can be sent to the mobile phone of the shopping mall staff, thereby The staff of the shopping mall can be informed in time that the smart glasses have been taken away illegally, so that the smart glasses taken away illegally can be recovered in time.
  • the data processing method applied to smart glasses may include: obtaining security data; detecting whether the security data satisfies the preset condition; if the security data meets the preset condition, sending an alarm message. smart glasses with an alarm function.
  • the safety data includes acceleration, and detecting whether the safety data meets preset conditions includes:
  • an alarm message will be sent, including:
  • a threshold can be set as the preset acceleration, and when the acceleration is greater than the preset acceleration, it is judged If the user wearing the smart glasses falls, or the smart glasses fall (such as falling from the table to the ground), then an alarm message can be sent to other devices, so that users using other devices can deal with the above situation in time.
  • the alarm information may be "It is detected that user A (the user wearing smart glasses) may fall, please confirm whether user A has fallen as soon as possible”.
  • the alarm information can also be "detected that the smart glasses have fallen, please confirm whether the smart glasses have fallen as soon as possible”.
  • the alarm information may include first alarm information and second alarm information, and when the acceleration is greater than the acceleration, it may be detected whether the smart glasses are worn by the user; if the smart glasses are worn by the user, the first alarm information may be sent; If the glasses are not worn by the user, a second alarm message may be sent.
  • the first alarm information may be "It is detected that user A (the user wearing smart glasses) may fall, please confirm whether user A has fallen as soon as possible”.
  • the second alarm information may be "It is detected that the smart glasses have fallen, please confirm whether the smart glasses have fallen as soon as possible”.
  • a camera can be set inside the smart glasses.
  • the camera can collect the user's face image. Therefore, whether the smart glasses are used by the user can be judged by whether the collected image is the user's face image. Wearing, wherein, when the collected image is the user's face image, it can be determined that the smart glasses are worn by the user; when the collected image is not the user's face image, it can be determined that the smart glasses are not worn by the user.
  • an alarm message is sent, including:
  • a prompt message is generated and output, and the prompt message is used to obtain feedback information from the user;
  • the prompt information "Did you fall?" can be voice broadcast, and the voice information can be collected to determine whether the user's feedback information has been obtained. If the voice information is not collected within the preset time, or the voice information collected within the preset time is not the preset voice information, then it can be determined that no feedback information from the user has been obtained within the preset time, then it can be determined that the user When falling, an alarm message can be sent to other devices, so that users who use other devices can know in time that the user wearing the smart glasses has fallen, so that users who use other devices can rescue the user wearing the smart glasses in time.
  • the preset voice information can be set by the user or the smart glasses according to the actual situation, and no specific limitation is set here. For example, the preset voice information may be "I didn't fall", “I'm fine” and so on.
  • the acceleration when the acceleration is greater than the preset acceleration, a plurality of first accelerations collected by the gravity sensor before the acceleration is collected, and a plurality of second accelerations collected after the acceleration is collected, and obtain the time elapsed during which the acceleration, multiple first accelerations, and multiple second accelerations have been collected, and then calculate the drop distance of the smart glasses based on the acceleration, multiple first accelerations, multiple second accelerations, and the time,
  • the prompt information can be generated and output.
  • the security data includes the first location of the smart glasses, and detecting whether the security data meets a preset condition includes:
  • an alarm message will be sent, including:
  • a security range can be set as the default range.
  • the position of the smart glasses can be obtained through the GPS positioning module, that is, the first position. When the position of the smart glasses is within the preset range, it can be judged to be safe; when the position of the smart glasses is not within the preset range, it can be judged not If it is safe, then an alarm message can be sent to inform other personnel that the smart glasses have been illegally obtained by an illegal person, or that the user wearing the smart glasses has been taken away illegally.
  • the area where the store is located can be used as the preset range; when the first position of the smart glasses is not within the preset range, it can be determined that the smart glasses have been illegally taken out of the store , then the alarm information can be sent, so that other personnel can know the corresponding situation in time, so that they can deal with it according to the corresponding situation.
  • the security data includes touch data of touch operations, and detecting whether the security data meets preset conditions includes:
  • an alarm message will be sent, including:
  • some touch operations can be set as alarm operations.
  • the alarm operation is the preset operation.
  • the alarm operation may be pressing the touch module with two fingers to slide down, double-clicking the touch module, and the like.
  • an alarm message may be sent.
  • an alarm message is sent, including:
  • the location of the smart glasses that is, the second location
  • an alarm message can be generated according to the second location.
  • the second location of the smart glasses is No. xx, xx Street, xx District, xx City
  • the user wearing the smart glasses is User A.
  • the alarm message can be "User A seems to have fallen, please go to No. xx, xx Street, xx District, xx deal with".
  • the alarm information can be sent to other devices, so that users using other devices can know the location of the smart glasses in time, and it is convenient for users using other devices to treat the user wearing smart glasses in time.
  • the user of the glasses can obtain the position of the smart glasses, that is, the second position, when the touch data of the preset operation is obtained, and generate an alarm message according to the second position, and send the alarm message to other devices, So that users using other devices can know the location of the smart glasses in time, so that users using other devices can rush to the corresponding place in time to protect the users wearing smart glasses.
  • sending alert information includes:
  • the alarm information is sent to a preset contact based on the preset contact information.
  • some contacts can be pre-set as emergency contacts.
  • an alarm message can be sent to these emergency contacts to The emergency contact can be notified in time that the user wearing the smart glasses has fallen or is in a dangerous environment, or that the smart glasses have been illegally taken out of the preset range, etc., so that the emergency contact can deal with the above situation accordingly.
  • the security data may include human eye image data, and detecting whether the security data meets preset conditions includes:
  • an alarm message will be sent, including:
  • generating and outputting prompt information may include: if the acceleration is greater than the preset acceleration, acquiring the human eye image data collected by the camera when the acceleration is collected; When the similarity between the image data and the preset image data is greater than the preset similarity, a prompt message is generated and output.
  • a motor and an inflatable cushion can also be provided inside the first temple.
  • the acceleration is greater than the preset acceleration, it can be determined that the smart glasses have fallen.
  • the alarm message can be sent through the sound output module Or the motor vibrates to adjust the posture of the smart glasses.
  • the adjustment process it can be judged in real time whether the posture of the smart glasses is the preset posture according to the data collected by the gyroscope sensor; when the posture of the smart glasses is the preset posture, the sound output can be controlled The module or motor stops vibrating.
  • the alarm information can be sent to the electronic device bound with the smart glasses.
  • the preset posture may be a posture of the smart glasses that minimizes damage to the smart glasses.
  • the preset posture is that the position provided with the inflatable cushion is at the bottom, such as the posture of the smart glasses closest to the ground.
  • the inside of the smart glasses can be provided with a compressed air bag that can automatically pop up.
  • the smart glasses When the smart glasses are worn by the user and the acceleration is less than or equal to the preset acceleration, the smart glasses can be controlled to send alarm information from the user. The face falls off, and the falling speed of the smart glasses is controlled, so that the falling speed of the smart glasses is greater than that of the user; when the smart glasses fall to the ground, the compressed airbag can be controlled to pop up, and the compressed airbag is inflated, so that the user Falling on an inflated airbag minimizes user injury.
  • FIG. 4 is a second schematic flowchart of the data processing method provided by the embodiment of the present application.
  • the data processing method can be applied to smart glasses 100.
  • the process may include:
  • the acceleration can be collected every preset time through the gravity sensor. Every time the gravity sensor collects an acceleration, the smart glasses obtain an acceleration.
  • a threshold can be set as the preset acceleration, and it is detected whether the acquired acceleration is greater than the preset acceleration.
  • Set acceleration When the acceleration is greater than the preset acceleration, it is preliminarily determined that the user wearing the smart glasses has fallen. When the acceleration is less than or equal to the preset acceleration, it is determined that the user wearing the smart glasses has not fallen, then the acceleration can be continuously obtained, and whether the continuously obtained acceleration is greater than the preset acceleration can be detected.
  • the acceleration is greater than the preset acceleration, generate and output prompt information, where the prompt information is used to acquire feedback information from the user.
  • the prompt information "Have you fallen” can be broadcast through the sound output module, and the voice information can be collected through the sound collection module to judge whether to obtain to user feedback. If the voice information is not collected within the preset time, or the voice information collected within the preset time is not the preset voice information, then it can be determined that no feedback information from the user has been obtained within the preset time, then it can be confirmed that the wearing The user of the smart glasses falls.
  • the preset voice information can be set by the user or the smart glasses according to the actual situation, and no specific limitation is set here.
  • the preset voice information may be "I didn't fall", “I'm fine” and so on.
  • the preset time can be set by the user and the smart glasses according to certain rules, and no specific limitation is set here.
  • the voice information collected within the preset time is the preset voice information, it can be determined that the user's feedback information is obtained within the preset time, then it can be confirmed that the user wearing the smart glasses has not fallen.
  • the location of the smart glasses can be obtained, that is, the second location, and according to The second location generates an alert message.
  • the second location of the smart glasses is No. xx, xx Street, xx District, xx City
  • the user wearing the smart glasses is User A.
  • the alarm message can be "User A seems to have fallen, please go to No. xx, xx Street, xx District, xx deal with".
  • some contacts can be pre-set as emergency contacts, and alarm information can be sent to these emergency contacts, so that the emergency contacts can be notified in time that the user wearing smart glasses has fallen, so that the emergency contacts can rush to the corresponding location in time. Treat accordingly.
  • FIG. 5 is a schematic structural diagram of a data processing device provided by an embodiment of the present application.
  • the data processing device 300 can be applied to the smart glasses 100 .
  • the data processing device 300 includes: an acquisition module 301 , a detection module 302 and a sending module 303 .
  • An acquisition module 301 configured to acquire security data.
  • a detection module 302 configured to detect whether the security data satisfies a preset condition.
  • the sending module 303 is configured to send alarm information if the safety data meets a preset condition.
  • the safety data includes acceleration
  • the detection module 302 can be used to: detect whether the acceleration is greater than a preset acceleration
  • the sending module 303 may be configured to: send an alarm message if the acceleration is greater than a preset acceleration.
  • the sending module 303 may be configured to: generate and output prompt information if the acceleration is greater than a preset acceleration, and the prompt information is used to obtain feedback information from the user; If no feedback information from the user is obtained, an alarm message is sent.
  • the security data includes a first position of the smart glasses
  • the detection module 302 may be configured to: detect whether the first position is within a preset range
  • the sending module 303 may be configured to: send an alarm message if the location is not within a preset range.
  • the security data includes touch data of a touch operation
  • the detection module 302 may be configured to: detect whether the touch operation is a preset operation according to the touch data;
  • the sending module may be configured to: send alarm information if the touch operation is a preset operation.
  • the sending module 303 may be configured to: obtain the second location of the smart glasses if the security data satisfies a preset condition; generate alarm information according to the second location; send the Alarm information.
  • the sending module 303 may be configured to: acquire preset contact information; and send the alarm information to the preset contact based on the preset contact information.
  • An embodiment of the present application provides a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed on a computer, the computer is made to execute the procedures in the data processing method provided in this embodiment.
  • the embodiment of the present application also provides smart glasses, including a memory and a processor, and the processor is used to execute the procedure in the data processing method provided in the embodiment by invoking a computer program stored in the memory.
  • FIG. 6 is a schematic diagram of a second structure of smart glasses provided by an embodiment of the present application.
  • the smart glasses 100 may include components such as a memory 51 and a processor 52 .
  • components such as a memory 51 and a processor 52 .
  • FIG. 6 does not constitute a limitation to the smart glasses, and may include more or less components than shown in the figure, or combine certain components, or arrange different components.
  • Memory 51 can be used to store applications and data.
  • the application programs stored in the memory 51 include executable codes.
  • Applications can be composed of various functional modules.
  • the processor 52 executes various functional applications and data processing by running the application programs stored in the memory 51 .
  • the processor 52 is the control center of the smart glasses. It uses various interfaces and lines to connect various parts of the whole smart glasses. By running or executing the application programs stored in the memory 51 and calling the data stored in the memory 51, the smart glasses are executed. The various functions and processing data of the smart glasses can be monitored as a whole.
  • the processor 52 in the smart glasses loads the executable code corresponding to the process of one or more application programs into the memory 51 according to the following instructions, and the processor 52 runs the executable code stored in the memory. 51 in the application, thereby realizing the process:
  • the smart glasses 100 may include a memory 51, a processor 52, a sound output module 20, a touch module 60, an antenna module 70, a sound collection module 80, a sensor 53 (such as a gravity sensor or a gyroscope sensor), GPS positioning Module 54 and other components.
  • a memory 51 a processor 52, a sound output module 20, a touch module 60, an antenna module 70, a sound collection module 80, a sensor 53 (such as a gravity sensor or a gyroscope sensor), GPS positioning Module 54 and other components.
  • Memory 51 can be used to store applications and data.
  • the application programs stored in the memory 51 include executable codes.
  • Applications can be composed of various functional modules.
  • the processor 52 executes various functional applications and data processing by running the application programs stored in the memory 51 .
  • the processor 52 is the control center of the smart glasses. It uses various interfaces and lines to connect various parts of the whole smart glasses. By running or executing the application programs stored in the memory 51 and calling the data stored in the memory 51, the smart glasses are executed. The various functions and processing data of the smart glasses can be monitored as a whole.
  • the processor 52 in the smart glasses loads the executable code corresponding to the process of one or more application programs into the memory 51 according to the following instructions, and the processor 52 runs the executable code stored in the memory. 51 in the application, thereby realizing the process:
  • the safety data includes acceleration
  • the processor 52 executes the detection of whether the safety data satisfies a preset condition, it may execute: detect whether the acceleration is greater than a preset acceleration; the processor 52 executes if the If the safety data meets the preset conditions, when sending the alarm information, it can be executed: if the acceleration is greater than the preset acceleration, then send the alarm information.
  • the processor 52 when the processor 52 executes the step of sending alarm information if the acceleration is greater than a preset acceleration, it may execute: if the acceleration is greater than a preset acceleration, generate and output prompt information, the prompt information It is used to obtain the user's feedback information; if the user's feedback information is not obtained within the preset time, an alarm message will be sent.
  • the security data includes the first position of the smart glasses, and when the processor 52 executes the detection of whether the security data satisfies a preset condition, it may perform: detection of whether the first position is within a preset range When the processor 52 executes sending an alarm message if the security data meets the preset condition, it may execute: send the alarm message if the location is not within the preset range.
  • the security data includes touch data of a touch operation
  • the processor 52 when the processor 52 performs the detection of whether the security data satisfies a preset condition, it may perform: detecting the touch data according to the touch data. Whether the control operation is a preset operation; when the processor 52 executes sending an alarm message if the security data meets a preset condition, it may execute: sending an alarm message if the touch operation is a preset operation.
  • the processor 52 when the processor 52 executes the step of sending the alarm information if the security data meets the preset condition, it may execute: if the security data meets the preset condition, obtain the second information of the smart glasses. location; generating alarm information according to the second location; sending the alarm information.
  • the processor 52 when the processor 52 executes the sending of the alarm information, it may execute: acquiring preset contact information; and sending the alarm information to a preset contact based on the preset contact information.
  • the data processing device provided in the embodiment of this application belongs to the same idea as the data processing method in the above embodiment, and any method provided in the data processing method embodiment can be run on the data processing device, and its specific For the implementation process, refer to the embodiment of the data processing method, and details are not repeated here.
  • the computer program can be stored in a computer-readable storage medium, such as stored in a memory, and executed by at least one processor, and the execution process can include the flow of the embodiment of the data processing method .
  • the storage medium may be a magnetic disk, an optical disk, a read only memory (ROM, Read Only Memory), a random access memory (RAM, Random Access Memory) and the like.
  • each module may exist separately physically, or two or more modules may be integrated into one module.
  • the above-mentioned integrated modules can be implemented in the form of hardware or in the form of software function modules. If the integrated modules are implemented in the form of software function modules and sold or used as independent products, they can also be stored in a computer-readable storage medium, such as read-only memory, magnetic disk or optical disk, etc. .
  • a data processing method, device, storage medium, and smart glasses provided in the embodiments of the present application have been described in detail above.
  • the descriptions of the above embodiments are only used to help understand the technical solutions and core ideas of the present application, and are not intended to limit the protection scope of the present application.
  • the method technical scheme of the present application and its core idea can be applied to virtual reality (Virtual Reality) Reality, VR), augmented reality (Augmented Reality, AR), mixed reality (Mixed Reality, MR) and extended reality (X-Reality, XR) and other electronic technology fields such as data processing methods, devices, storage media and smart glasses, and all related applications belong to the scope of protection of this application.
  • VR virtual reality
  • AR Augmented Reality
  • MR mixed reality
  • X-Reality, XR extended reality
  • other electronic technology fields such as data processing methods, devices, storage media and smart glasses, and all related applications belong to the scope of protection of this application.

Abstract

一种数据处理方法、数据处理装置(300)及智能眼镜(100)。数据处理方法应用于智能眼镜(100)且包括:获取安全数据(步骤101),检测安全数据是否满足预设条件(步骤102),当安全数据满足预设条件时发送报警信息(步骤103)。

Description

数据处理方法、数据处理装置及智能眼镜 技术领域
本申请属于电子技术领域,尤其涉及一种数据处理方法、数据处理装置及智能眼镜。
背景技术
随着智能可穿戴设备的日益多样化,智能眼镜开始逐渐进入人们的生活。相关技术中,智能眼镜能够安装程序以及通过接收用户操控指令完成日程提醒、导航、拍摄图像和视频通话等功能。
技术问题
然而,相关技术中的智能眼镜缺乏报警功能。
技术解决方案
本申请实施例提供一种数据处理方法、数据处理装置及智能眼镜,可以实现报警功能。
本申请实施例提供一种数据处理方法,其应用于智能眼镜,包括:
获取安全数据;
检测所述安全数据是否满足预设条件;以及
当所述安全数据满足预设条件时发送报警信息。
本申请实施例提供一种数据处理装置,其应用于智能眼镜,包括:
获取模块,用于获取安全数据;
检测模块,用于检测所述安全数据是否满足预设条件;以及
发送模块,用于在所述安全数据满足预设条件时发送报警信息。
本申请实施例还提供一种智能眼镜,其包括存储器和处理器。所述存储器中存储有计算机程序。所述处理器建构成通过调用所述存储器中存储的计算机程序来执行前述数据处理方法。
有益效果
本申请实施例中,应用于智能眼镜的数据处理方法可包括:获取安全数据,检测所述安全数据是否满足预设条件,以及当所述安全数据满足预设条件时发送报警信息。据此,所述智能眼镜具备报警功能。
附图说明
下面结合附图,通过对本申请的具体实施方式详细描述,将使本申请的技术方案及其有益效果显而易见。
图1为本申请实施例提供的智能眼镜的第一种结构示意图。
图2为本申请实施例提供的第一镜腿的剖面图。
图3是本申请实施例提供的数据处理方法的第一种流程示意图。
图4是本申请实施例提供的数据处理方法的第二种流程示意图。
图5是本申请实施例提供的数据处理装置的结构示意图。
图6是本申请实施例提供的智能眼镜的第二种结构示意图。
图7是本申请实施例提供的智能眼镜的第三种结构示意图。
本发明的实施方式
请参照图示,其中相同的组件符号代表相同的组件,本申请的原理是以实施在一适当的运算环境中来举例说明。以下的说明是基于所例示的本申请具体实施例,其不应被视为限制本申请未在此详述的其它具体实施例。
请一并参阅图1和图2,图1为本申请实施例提供的智能眼镜的结构示意图,图2为本申请实施例提供的第一镜腿的剖面图。
智能眼镜100包括眼镜主体10。眼镜主体10包括镜框11以及分别与镜框11相对两侧连接的第一镜腿12和第二镜腿13。可以理解的是,镜框11内部还可设置镜片14。镜框11可用于固定镜片14。
智能眼镜100还可包括声音输出模块20、显示模块30、电池40、主板50、触控模块60和天线模块70。第一镜腿13内部可用于安装电池40、主板50、触控模块60的至少部分、天线模块70和声音采集模块80。可以理解的是,第二镜腿13内部也可用于安装声音输出模块20、AR模块30、电池40、主板50、触控模块60的至少部分、天线模块70和声音采集模块80,从而可在第一镜腿12和第二镜腿13中其中一个镜腿内部的电子器件(如主板50)损坏时,可以采用另一个镜腿内部的电子器件继续工作。
镜框11、第一镜腿12和第二镜腿13等结构的材质可选为金属、塑料或者碳纤维等,为了减轻AR眼镜的重量,镜框11、第一镜腿12和第二镜腿13等结构可采用高强度、高模量纤维的新型纤维材料,重量轻,可避免用户长时间佩戴AR眼镜对耳部、鼻部造成的压迫感。
在一些实施例中,声音输出模块20、AR模块30、电池40、主板50、触控模块60的至少部分和天线模块70可分别安装于第一镜腿12和第二镜腿13内部。例如,声音输出模块20、AR模块30、主板50和声音采集模块80可安装于第一镜腿12内部,电池40、触控模块60的至少部分和天线模块70可安装于第二镜腿13内部。为方便用户佩戴智能眼镜100,第一镜腿12和第二镜腿13可保持对称,如重量保持一致等。
在一些实施例中,智能眼镜100还可包括用于采集外界声音的声音采集模块(图中未示出)等。声音采集模块可设置于眼镜主体10内部。声音采集模块可包括麦克风。
其中,声音输出模块20可包括扬声器或骨传导发声器。显示模块30可包括微显示芯片、微显示屏、反射光学元件等,其中,微显示芯片用于产生图像,微显示屏用于显示微显示芯片产生的图像,微显示屏可在小体积的情况下看到大视野高清晰度的显示效果,反射光学元件包括凹面反射镜、反射棱镜或者反射光栅等部件,用于将微显示屏上的图像反射至智能眼镜100的镜片14上。
电池40可用于为智能眼镜供电,通常可采用POGOPIN充电或无线线圈充电方式为电池40充电。
主板50可包括声音输出接口、显示接口、电池接口、触控接口、天线接口、声音采集接口。声音输出模块20可通过声音输出接口与主板50连接。显示模块30可通过显示接口与主板50连接。电池40可通过电池接口与主板50连接。触控模块60可通过触控接口与主板50连接。天线模块70可通过天线接口与主板50连接。声音采集模块80可通过声音采集接口与主板50连接。主板50还可包括蓝牙芯片、中央处理器、存储器、GPS定位模块、多种传感器(如重力传感器、陀螺仪传感器)及Flash等。
触控模块60可以是设置于第一镜腿12内表面的触控按键,从而可以保持第一镜腿12的完整性,可以防水、防尘。用户可直接操作该触控按键实现对触控按键的控制,以使智能眼镜100生成相应的触控指令,从而实现人机交互。
在一些实施例中,触控模块60可以是部分突出于第一镜腿12外表面的物理按键。用户可直接操作该物理按键实现对物理按键的控制,以使智能眼镜100生成相应的触控指令。
天线模块70可用于与其他电子设备(如手机)进行通讯。天线模块70可包括蓝牙天线或通讯天线。智能眼镜100可通过蓝牙天线与佩戴智能眼镜的用户携带的电子设备(如手机)进行交互,通讯天线可与其他用户使用的电子设备或其他智能眼镜进行通信。
声音采集模块80可以用于采集声音,从而可实现人机交互。声音采集模块80可以包括麦克风等。
请参阅图3,图3是本申请实施例提供的数据处理方法的第一种流程示意图,该数据处理方法可应用于智能眼镜100,流程可以包括:
101、获取安全数据。
其中,安全数据可包括加速度、智能眼镜的位置、触控操作的触控数据等。加速度可通过陀螺仪传感器或重力传感器获取。智能眼镜的位置可通过GPS定位模块获取。触控操作的触控数据可通过触控模块获取。触控操作可以包括按压操作、滑动操作等。
102、检测安全数据是否满足预设条件。
其中,可预先设置一些安全数据需要满足的条件,将这些条件确定为预设条件。
例如,假设安全数据包括加速度,可将加速度大于预设加速度确定为预设条件。其中,预设加速度可由用户设置,也可由智能眼镜基于一定规则设置。
又例如,假设安全数据包括智能眼镜的位置,可将位置不处于预设范围内确定为预设条件。其中,预设范围可由用户设置,也可由智能眼镜基于一定规则设置。
又例如,假设安全数据包括触控操作的触控数据,可将触控数据对应的触控操作为预设操作确定为预设条件。其中,预设操作可由用户设置,也可由智能眼镜基于一定规则设置。
可以理解的是,上述仅是对预设条件的一种示例,并不用于限制本申请。
103、若安全数据满足预设条件,则发送报警信息。
例如,假设安全数据包括重力传感器获取的加速度,预设条件包括加速度大于预设加速度,那么,可在重力传感器获取的加速度大于预设加速度时,发送报警信息。例如,可向与该智能眼镜绑定的智能眼镜发送报警信息。可以理解的是,当重力传感器获取的加速度大于预设加速度时,佩戴智能眼镜的用户很有可能处于跌倒状态,因此,可向与该智能眼镜绑定的智能眼镜发送报警信息,从而使得使用与该智能眼镜绑定的智能眼镜的用户可及时获知佩戴智能眼镜的用户处于跌倒状态,从而可及时对佩戴智能眼镜的用户进行救治。
又例如,假设安全数据包括智能眼镜的位置,预设条件包括位置不处于预设范围内,那么,可在智能眼镜的位置不处于预设范围内时,发送报警信息。例如,可向与该智能眼镜绑定的智能眼镜发送报警信息。例如,该智能眼镜可以是商场中售卖的智能眼镜,可将商场所处区域作为预设范围,当智能眼镜被非法带离商场所处区域时,可发送报警信息至商场工作人员的手机,从而使得商场工作人员及时获知智能眼镜被非法带离,从而可及时追回被非法带离的智能眼镜。
可以理解的是,上述说明仅是对流程103的一种示例,并不用于限制本申请。
本申请实施例中,应用于智能眼镜的数据处理方法可包括:获取安全数据;检测安全数据是否满足预设条件;若安全数据满足预设条件,则发送报警信息,从而可知,本申请实施例的智能眼镜具备报警功能。
在一些实施例中,安全数据包括加速度,检测安全数据是否满足预设条件,包括:
检测加速度是否大于预设加速度;
若安全数据满足预设条件,则发送报警信息,包括:
若加速度大于预设加速度,则发送报警信息。
可以理解的是,当佩戴智能眼镜的用户跌倒、或智能眼镜掉落时,智能眼镜的加速度较高,那么,可设置一阈值,作为预设加速度,并在加速度大于该预设加速度时,判定佩戴智能眼镜的用户跌倒、或者智能眼镜掉落(如从桌面掉落到地面),那么,可以发送报警信息至其他设备,以使使用其他设备的用户可以及时针对上述情形做出处理。
例如,报警信息可以为“检测到用户A(佩戴智能眼镜的用户)可能跌倒,请尽快确认用户A是否跌倒”。报警信息也可以为“检测到智能眼镜掉落,请尽快确认智能眼镜是否掉落”。
可以理解的是,报警信息可包括第一报警信息和第二报警信息,在加速度大于加速度时,可检测智能眼镜是否被用户佩戴;若智能眼镜被用户佩戴,可发送第一报警信息;若智能眼镜未被用户佩戴,可发送第二报警信息。
例如,第一报警信息可以为“检测到用户A(佩戴智能眼镜的用户)可能跌倒,请尽快确认用户A是否跌倒”。第二报警信息可以为“检测到智能眼镜掉落,请尽快确认智能眼镜是否掉落”。
其中,可在智能眼镜内部设置摄像头,当智能眼镜被用户佩戴时,摄像头可采集到用户的脸部图像,因此,可通过采集到的图像是否是用户的脸部图像来判断智能眼镜是否被用户佩戴,其中,当采集到的图像是用户的脸部图像时,可判定智能眼镜被用户佩戴;当采集到的图像不是用户的脸部图像时,可判定智能眼镜未被用户佩戴。
在一些实施例中,若加速度大于预设加速度,则发送报警信息,包括:
若加速度大于预设加速度,则生成并输出提示信息,提示信息用于获取用户的反馈信息;
若在预设时间内未获取到用户的反馈信息,则发送报警信息。
比如,为了进一步确认佩戴智能眼镜的用户是否跌倒,可在加速度大于预设加速度时,语音播报“您跌倒了吗”的提示信息,并可采集语音信息,以判断是否获取到用户的反馈信息。若在预设时间内未采集到语音信息,或者在预设时间内采集到的语音信息不是预设语音信息,那么可确定在预设时间内未获取到用户的反馈信息,那么,可判定用户跌倒,可发送报警信息至其他设备,以使使用其他设备的用户及时获知佩戴该智能眼镜的用户跌倒,从而使得使用其他设备的用户可及时对佩戴该智能眼镜的用户进行救治。其中,预设语音信息可由用户或智能眼镜根据实际情况设置,此处不作具体限制。例如,预设语音信息可以为“我没跌倒”、“我没事”等。
在一些实施例中,当加速度大于预设加速度时,还可获取重力传感器在采集到该加速度之前采集到的多个第一加速度,以及在采集到该加速度之后采集到的多个第二加速度,并获取采集到该加速度、多个第一加速度和多个第二加速度所经历的时间,然后,基于该加速度、多个第一加速度、多个第二加速度和该时间计算智能眼镜的跌落距离,当跌落距离大于预设距离时,可生成并输出该提示信息。
在一些实施例中,安全数据包括智能眼镜的第一位置,检测安全数据是否满足预设条件,包括:
检测第一位置是否处于预设范围内;
若安全数据满足预设条件,则发送报警信息,包括:
若第一位置处于预设范围内,则发送报警信息。
为避免一些非法人员非法获取智能眼镜,或非法拐带佩戴智能眼镜的用户,可设置一安全范围,将其作为预设范围。可通过GPS定位模块获取智能眼镜的位置,即第一位置,当智能眼镜的位置处于该预设范围内时,可判定安全;当智能眼镜的位置不处于该预设范围内时,可判定不安全,那么,则可发送报警信息,以告知其他人员该智能眼镜被非法人员非法获取,或佩戴该智能眼镜的用户被非法带离。
比如,当该智能眼镜在商店中售卖时,可将该商店所处区域范围作为预设范围;当智能眼镜的第一位置不处于预设范围内时,可确定该智能眼镜被非法带离商店,那么可发送报警信息,以使其他人员可及时获知相应的情况,从而可根据相应的情况进行相应处理。
在一些实施例中,安全数据包括触控操作的触控数据,检测安全数据是否满足预设条件,包括:
根据触控数据检测触控操作是否为预设操作;
若安全数据满足预设条件,则发送报警信息,包括:
若触控操作为预设操作,则发送报警信息。
比如,为方便佩戴智能眼镜的用户处于危险环境时进行报警,可设置一些触控操作为报警操作。该报警操作即为预设操作。比如,该报警操作可以为双指按压触控模块向下滑、双击触控模块等。
例如,假设预设操作为双击触控模块的操作,那么,当获取到双击触控模块的触控数据时,可发送报警信息。
在一些实施例中,若安全数据满足预设条件,则发送报警信息,包括:
若安全数据满足预设条件,则获取智能眼镜的第二位置;
根据第二位置生成报警信息;
发送报警信息。
比如,假设智能眼镜被用户佩戴,当加速度大于预设加速度时,可判定佩戴智能眼镜的用户可能处于跌倒状态,为方便其他用户快速赶往该佩戴智能眼镜的用户所处位置对该佩戴智能眼镜的用户进行救治,可在加速度大于预设加速度时,获取智能眼镜的位置,即第二位置,并根据该第二位置生成报警信息。例如,智能眼镜的第二位置为xx市xx区xx街道xx号,佩戴智能眼镜的用户为用户A,报警信息可以为“用户A好像跌倒了,请快前往xx市xx区xx街道xx号进行处理”。
当得到报警信息之后,可将该报警信息发送至其他设备,以使使用其他设备的用户可及时获知智能眼镜的位置,方便使用其他设备的用户及时对佩戴智能眼镜的用户进行救治。
又比如,当获取到预设操作的触控数据时,可判定接收到佩戴智能的用户触发的报警操作,那么,为方便其他用户快速赶往该佩戴智能眼镜的用户所处位置对该佩戴智能眼镜的用户进行保护,可在获取到预设操作的触控数据时,获取智能眼镜的位置,即第二位置,并根据该第二位置生成报警信息,并将该报警信息发送至其他设备,以使使用其他设备的用户可及时获知智能眼镜的位置,方便使用其他设备的用户及时赶往相应地点对佩戴智能眼镜的用户进行保护。
在一些实施例中,发送报警信息,包括:
获取预设联系人信息;
基于预设联系人信息将报警信息发送至预设联系人。
比如,可预先设置一些联系人作为紧急联系人,当佩戴智能眼镜的用户跌倒或处于危险环境,或智能眼镜被非法带离预设范围等时,可将报警信息发送给这些紧急联系人,以使紧急联系人及时获知佩戴智能眼镜的用户跌倒或处于危险环境,或智能眼镜被非法带离预设范围等,从而可使得紧急联系人基于上述情况进行相应处理。
在一些实施例中,安全数据可包括人眼图像数据,检测安全数据是否满足预设条件,包括:
判断人眼图像数据与预设图像数据的相似度是否大于预设相似度;
若安全数据满足预设条件,则发送报警信息,包括:
若人眼图像数据与预设图像数据的相似度大于预设相似度,则发送报警信息。
可以理解的是,当用户跌倒、被非法拐带时,用户通常处于惊恐、慌张等状态,因此,可预先获取一些人眼图像数据作为预设图像数据,该人眼图像数据可包括对处于惊恐、慌张等状态的用户的眼睛进行拍摄得到。然后,可在智能眼镜内部设置摄像头,以采集用户的眼睛图像,作为人眼图像数据。然后可比较该人眼图像数据与预设图像数据的相似度。当该人眼图像数据与预设图像数据的相似度大于预设相似度时,可判定用户跌倒或被非法拐带,因此,可发送报警信息至其他设备,以使使用其他设备的用户及时获知佩戴智能眼镜的用户的状况,以使使用其他设备的用户可针对佩戴智能眼镜的用户的状况及时进行处理。
在一些实施例中,若加速度大于预设加速度,则生成并输出提示信息,可以包括:若加速度大于预设加速度,则获取采集到该加速度时通过摄像头采集到的人眼图像数据;当人眼图像数据与预设图像数据的相似度大于预设相似度时,生成并输出提示信息。
在一些实施例中,第一镜腿内部还可设置马达和充气垫,当加速度大于预设加速度时,可判定智能眼镜跌落,在跌落过程中,可在发送报警信息的同时,通过声音输出模块或马达振动,以调整智能眼镜的姿势,在调整过程中可根据陀螺仪传感器采集的数据实时判断智能眼镜的姿势是否为预设姿势;当智能眼镜的姿势为预设姿势时,可控制声音输出模块或马达停止振动。其中,该报警信息可发送至与智能眼镜绑定的电子设备上。
其中,预设姿势可以为使得智能眼镜的损坏最小的智能眼镜的姿势。比如,预设姿势为设置有充气垫的位置处于最下方,如最靠近地面的智能眼镜的姿势。
可以理解的是,当智能眼镜被用户佩戴,且加速度小于或等于预设加速度时,可无需对智能眼镜的姿势进行调整。而当智能眼镜未被用户佩戴,且加速度大于预设加速度时,可对智能眼镜的姿势进行调整。
在一些实施例中,智能眼镜内部可设置有可自动弹出的压缩气囊,当智能眼镜被用户佩戴,且加速度小于或等于预设加速度时,可在发送报警信息的同时,控制智能眼镜自身从用户脸部脱落,并控制智能眼镜的跌落速度,以使智能眼镜的跌落速度大于用户的跌倒速度;当智能眼镜跌落到地面时,可控制压缩气囊弹出,并使得压缩气囊处于充气状态,以使得用户跌倒在处于充气状态的气囊上,以尽量减少用户的损伤。
请参阅图4,图4是本申请实施例提供的数据处理方法的第二种流程示意图,该数据处理方法可应用于智能眼镜100,流程可以包括:
201、获取加速度。
比如,可通过重力传感器每隔预设时间采集一次加速度。重力传感器每采集一次加速度,则智能眼镜获取到一次加速度。
202、检测加速度是否大于预设加速度。
可以理解的是,假设智能眼镜被用户佩戴,当佩戴智能眼镜的用户跌倒时,智能眼镜的加速度较高,那么,可设置一阈值,作为预设加速度,并检测获取到的加速度是否大于该预设加速度。在加速度大于该预设加速度时,初步判定佩戴智能眼镜的用户跌倒。而在加速度小于或等于该预设加速度时,判定佩戴智能眼镜的用户未跌倒,那么,可继续获取加速度,并检测该继续获取的加速度是否大于预设加速度。
203、若加速度大于预设加速度,则生成并输出提示信息,提示信息用于获取用户的反馈信息。
为了进一步确认佩戴智能眼镜的用户是否跌倒,可在加速度大于预设加速度时,通过声音输出模块语音播报“您跌倒了吗”的提示信息,并可通过声音采集模块采集语音信息,以判断是否获取到用户的反馈信息。若在预设时间内未采集到语音信息,或者在预设时间内采集到的语音信息不是预设语音信息,那么可确定在预设时间内未获取到用户的反馈信息,那么,可确认佩戴智能眼镜的用户跌倒。其中,预设语音信息可由用户或智能眼镜根据实际情况设置,此处不作具体限制。例如,预设语音信息可以为“我没跌倒”、“我没事”等。预设时间可由用户和智能眼镜按照一定规则设置,此处不作具体限制。
可以理解的是,若在预设时间内采集到的语音信息是预设语音信息,可确定在预设时间内获取到用户的反馈信息,那么,可确认佩戴智能眼镜的用户未跌倒。
204、若在预设时间内未获取到用户的反馈信息,则获取智能眼镜的第二位置。
205、根据第二位置生成报警信息。
当确认佩戴智能眼镜的用户跌倒时,为方便其他用户快速赶往该佩戴智能眼镜的用户所处位置对该佩戴智能眼镜的用户进行救治,可获取智能眼镜的位置,即第二位置,并根据该第二位置生成报警信息。例如,智能眼镜的第二位置为xx市xx区xx街道xx号,佩戴智能眼镜的用户为用户A,报警信息可以为“用户A好像跌倒了,请快前往xx市xx区xx街道xx号进行处理”。
206、获取预设联系人信息。
207、基于预设联系人信息将报警信息发送至预设联系人。
比如,可预先设置一些联系人作为紧急联系人,可将报警信息发送给这些紧急联系人,以使紧急联系人及时获知佩戴智能眼镜的用户跌倒,从而可使得紧急联系人及时赶往相应位置进行相应处理。
请参阅图5,图5为本申请实施例提供的数据处理装置的结构示意图。数据处理装置300可应用于智能眼镜100。数据处理装置300包括:获取模块301,检测模块302及发送模块303。
获取模块301,用于获取安全数据。
检测模块302,用于检测所述安全数据是否满足预设条件。
发送模块303,用于若所述安全数据满足预设条件,则发送报警信息。
在一些实施例中,所述安全数据包括加速度,所述检测模块302,可以用于:检测所述加速度是否大于预设加速度;
所述发送模块303,可以用于:若所述加速度大于预设加速度,则发送报警信息。
在一些实施例中,所述发送模块303,可以用于:若所述加速度大于预设加速度,则生成并输出提示信息,所述提示信息用于获取用户的反馈信息;若在预设时间内未获取到用户的反馈信息,则发送报警信息。
在一些实施例中,所述安全数据包括智能眼镜的第一位置,所述检测模块302,可以用于:检测所述第一位置是否处于预设范围内;
所述发送模块303,可以用于:若所述位置不处于预设范围内,则发送报警信息。
在一些实施例中,所述安全数据包括触控操作的触控数据,所述检测模块302,可以用于:根据所述触控数据检测所述触控操作是否为预设操作;
所述发送模块,可以用于:若所述触控操作为预设操作,则发送报警信息。
在一些实施例中,所述发送模块303,可以用于:若所述安全数据满足预设条件,则获取所述智能眼镜的第二位置;根据所述第二位置生成报警信息;发送所述报警信息。
在一些实施例中,所述发送模块303,可以用于:获取预设联系人信息;基于所述预设联系人信息将所述报警信息发送至预设联系人。
本申请实施例提供一种计算机可读的存储介质,其上存储有计算机程序,当所述计算机程序在计算机上执行时,使得所述计算机执行如本实施例提供的数据处理方法中的流程。
本申请实施例还提供一种智能眼镜,包括存储器,处理器,所述处理器通过调用所述存储器中存储的计算机程序,用于执行本实施例提供的数据处理方法中的流程。
请参阅图6,图6为本申请实施例提供的智能眼镜的第二种结构示意图。
该智能眼镜100可以包括存储器51、处理器52等部件。本领域技术人员可以理解,图6中示出的智能眼镜结构并不构成对智能眼镜的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
存储器51可用于存储应用程序和数据。存储器51存储的应用程序中包含有可执行代码。应用程序可以组成各种功能模块。处理器52通过运行存储在存储器51的应用程序,从而执行各种功能应用以及数据处理。
处理器52是智能眼镜的控制中心,利用各种接口和线路连接整个智能眼镜的各个部分,通过运行或执行存储在存储器51内的应用程序,以及调用存储在存储器51内的数据,执行智能眼镜的各种功能和处理数据,从而对智能眼镜进行整体监控。
在本实施例中,智能眼镜中的处理器52会按照如下的指令,将一个或一个以上的应用程序的进程对应的可执行代码加载到存储器51中,并由处理器52来运行存储在存储器51中的应用程序,从而实现流程:
获取安全数据;
检测所述安全数据是否满足预设条件;
若所述安全数据满足预设条件,则发送报警信息。
请参阅图7,智能眼镜100可以包括存储器51、处理器52、声音输出模块20、触控模块60、天线模块70、声音采集模块80、传感器53(如重力传感器或陀螺仪传感器)、GPS定位模块54等部件。
存储器51可用于存储应用程序和数据。存储器51存储的应用程序中包含有可执行代码。应用程序可以组成各种功能模块。处理器52通过运行存储在存储器51的应用程序,从而执行各种功能应用以及数据处理。
处理器52是智能眼镜的控制中心,利用各种接口和线路连接整个智能眼镜的各个部分,通过运行或执行存储在存储器51内的应用程序,以及调用存储在存储器51内的数据,执行智能眼镜的各种功能和处理数据,从而对智能眼镜进行整体监控。
在本实施例中,智能眼镜中的处理器52会按照如下的指令,将一个或一个以上的应用程序的进程对应的可执行代码加载到存储器51中,并由处理器52来运行存储在存储器51中的应用程序,从而实现流程:
获取安全数据;
检测所述安全数据是否满足预设条件;
若所述安全数据满足预设条件,则发送报警信息。
在一些实施方式中,所述安全数据包括加速度,处理器52执行所述检测所述安全数据是否满足预设条件时,可以执行:检测所述加速度是否大于预设加速度;处理器52执行若所述安全数据满足预设条件,则发送报警信息时,可以执行:若所述加速度大于预设加速度,则发送报警信息。
在一些实施方式中,处理器52执行所述若所述加速度大于预设加速度,则发送报警信息时,可以执行:若所述加速度大于预设加速度,则生成并输出提示信息,所述提示信息用于获取用户的反馈信息;若在预设时间内未获取到用户的反馈信息,则发送报警信息。
在一些实施方式中,所述安全数据包括智能眼镜的第一位置,处理器52执行所述检测所述安全数据是否满足预设条件时,可以执行:检测所述第一位置是否处于预设范围内;处理器52执行若所述安全数据满足预设条件,则发送报警信息时,可以执行:若所述位置不处于预设范围内,则发送报警信息。
在一些实施方式中,所述安全数据包括触控操作的触控数据,处理器52执行所述检测所述安全数据是否满足预设条件时,可以执行:根据所述触控数据检测所述触控操作是否为预设操作;处理器52执行若所述安全数据满足预设条件,则发送报警信息时,可以执行:若所述触控操作为预设操作,则发送报警信息。
在一些实施方式中,处理器52执行所述若所述安全数据满足预设条件,则发送报警信息时,可以执行:若所述安全数据满足预设条件,则获取所述智能眼镜的第二位置;根据所述第二位置生成报警信息;发送所述报警信息。
在一些实施例中,处理器52执行所述发送所述报警信息时,可以执行:获取预设联系人信息;基于所述预设联系人信息将所述报警信息发送至预设联系人。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见上文针对数据处理方法的详细描述,此处不再赘述。
本申请实施例提供的所述数据处理装置与上文实施例中的数据处理方法属于同一构思,在所述数据处理装置上可以运行所述数据处理方法实施例中提供的任一方法,其具体实现过程详见所述数据处理方法实施例,此处不再赘述。
需要说明的是,对本申请实施例所述数据处理方法而言,本领域普通技术人员可以理解实现本申请实施例所述数据处理方法的全部或部分流程,是可以通过计算机程序来控制相关的硬件来完成,所述计算机程序可存储于一计算机可读取存储介质中,如存储在存储器中,并被至少一个处理器执行,在执行过程中可包括如所述数据处理方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储器(ROM,Read Only Memory)、随机存取记忆体(RAM,Random Access Memory)等。
对本申请实施例的所述数据处理装置而言,其各功能模块可以集成在一个处理芯片中,也可以是各个模块单独物理存在,也可以两个或两个以上模块集成在一个模块中。上述集成的模块既可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。所述集成的模块如果以软件功能模块的形式实现并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中,所述存储介质譬如为只读存储器,磁盘或光盘等。
以上对本申请实施例所提供的一种数据处理方法、装置、存储介质及智能眼镜进行了详细介绍。以上实施例的说明只是用于帮助理解本申请的技术方案及其核心思想,并不用于限制本申请所要保护的范围。本申请的方法技术方案及其核心思想可应用于虚拟实境(Virtual Reality,VR)、扩增实境(Augmented Reality,AR)、混合实境(Mixed Reality,MR)及延展实境(X-Reality,XR)等电子技术领域中的数据处理方法、装置、存储介质及智能眼镜,而所有相关的应用都属于本申请所要保护的范围。再者,对于本领域的技术人员来说,本申请还可以有各种更改和变化。凡在本申请的核心思想和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请所要保护的范围之内。

Claims (15)

  1. 一种数据处理方法,其应用于智能眼镜,包括:
    获取安全数据;
    检测所述安全数据是否满足预设条件;以及
    当所述安全数据满足预设条件时发送报警信息。
  2. 根据权利要求1所述的数据处理方法,其特征在于,
    所述安全数据包括加速度;
    所述检测所述安全数据是否满足预设条件,包括:
    检测所述加速度是否大于预设加速度;以及
    当所述安全数据满足预设条件时发送报警信息,包括:
    当所述加速度大于预设加速度时发送报警信息。
  3. 根据权利要求2所述的数据处理方法,其特征在于,所述当所述加速度大于预设加速度时,发送报警信息,包括:
    当所述加速度大于预设加速度时,生成并输出提示信息;以及
    当在输出提示信息后的预设时间内未获取到用户的反馈信息时,发送报警信息。
  4. 根据权利要求1所述的数据处理方法,其特征在于,
    所述安全数据包括智能眼镜的第一位置;
    所述检测所述安全数据是否满足预设条件,包括:
    检测所述第一位置是否处于预设范围内;以及
    当所述安全数据满足预设条件时发送报警信息,包括:
    当所述第一位置不处于预设范围内时发送报警信息。
  5. 根据权利要求1所述的数据处理方法,其特征在于,
    所述安全数据包括触控操作的触控数据;
    所述检测所述安全数据是否满足预设条件,包括:
    根据所述触控数据检测所述触控操作是否为预设操作;以及
    当所述安全数据满足预设条件时发送报警信息,包括:
    当所述触控操作为预设操作时发送报警信息。
  6. 根据权利要求1所述的数据处理方法,其特征在于,所述当所述安全数据满足预设条件时发送报警信息,包括:
    当所述安全数据满足预设条件时,获取所述智能眼镜的第二位置;
    根据所述第二位置生成报警信息;以及
    发送所述报警信息。
  7. 根据权利要求6所述的数据处理方法,其特征在于,所述发送所述报警信息,包括:
    获取预设联系人信息;以及
    基于所述预设联系人信息将所述报警信息发送至预设联系人。
  8. 一种数据处理装置,其应用于智能眼镜,包括:
    获取模块,用于获取安全数据;
    检测模块,用于检测所述安全数据是否满足预设条件;以及
    发送模块,用于在所述安全数据满足预设条件时发送报警信息。
  9. 根据权利要求8所述的数据处理方法,其特征在于,所述安全数据包括加速度,所述检测模块用于检测所述加速度是否大于预设加速度,以及所述发送模块用于在所述加速度大于预设加速度时发送报警信息。
  10. 根据权利要求9所述的数据处理方法,其特征在于,所述发送模块还用于:在所述加速度大于预设加速度时生成并输出提示信息,以及在输出提示信息后的预设时间内未获取到用户的反馈信息时发送报警信息。
  11. 根据权利要求8所述的数据处理方法,其特征在于,所述安全数据包括智能眼镜的第一位置,所述检测模块用于检测所述第一位置是否处于预设范围内,所述发送模块用于在所述位置不处于预设范围内时发送报警信息。
  12. 根据权利要求8所述的数据处理方法,其特征在于,所述安全数据包括触控操作的触控数据,所述检测模块用于根据所述触控数据检测所述触控操作是否为预设操作,所述发送模块用于在所述触控操作为预设操作时发送报警信息。
  13. 根据权利要求8所述的数据处理方法,其特征在于,所述发送模块还用于:在所述安全数据满足预设条件时,获取所述智能眼镜的第二位置;根据所述第二位置生成报警信息;以及发送所述报警信息。
  14. 根据权利要求8所述的数据处理方法,其特征在于,所述发送模块还用于:获取预设联系人信息;以及基于所述预设联系人信息将所述报警信息发送至预设联系人。
  15. 一种智能眼镜,其包括:
    存储器,存储有计算机程序;以及
    处理器,建构成通过调用所述存储器中存储的所述计算机程序来执行权利要求1至7任一项所述的数据处理方法。
PCT/CN2021/112537 2021-05-11 2021-08-13 数据处理方法、数据处理装置及智能眼镜 WO2022236994A1 (zh)

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