CN111935351A - Anti-addiction method and device, electronic equipment and storage medium - Google Patents

Anti-addiction method and device, electronic equipment and storage medium Download PDF

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CN111935351A
CN111935351A CN201910395314.9A CN201910395314A CN111935351A CN 111935351 A CN111935351 A CN 111935351A CN 201910395314 A CN201910395314 A CN 201910395314A CN 111935351 A CN111935351 A CN 111935351A
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user
preset
age
addiction
voltage
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张海平
王彬
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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Guangdong Oppo Mobile Telecommunications Corp Ltd
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/12Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/22Details of telephonic subscriber devices including a touch pad, a touch sensor or a touch detector

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Abstract

The embodiment of the application discloses an anti-addiction method, an anti-addiction device, electronic equipment and a storage medium. The method comprises the following steps: when a user runs a preset application program, acquiring identification information of the user, judging whether the identification information of the user meets an anti-addiction trigger condition, if so, calculating running time of the preset application program, judging whether the running time reaches the preset time, and if so, controlling an electrode to generate stimulation voltage. When a user with the age less than the preset age uses the preset application program, the running time of the preset application program is calculated, if the running time reaches the preset time, the electrode on the surface of the screen can generate stimulation voltage, stimulation current is generated, the user can feel electrical stimulation when touching the screen, the electronic equipment is stopped being used, and the anti-addiction effect is achieved.

Description

Anti-addiction method and device, electronic equipment and storage medium
Technical Field
The application relates to the technical field of intelligent terminals, in particular to an anti-addiction method, an anti-addiction device, electronic equipment and a storage medium.
Background
With social development and technological progress, more and more intelligent electronic products enter the lives of people. Moreover, with more and more functions included in the intelligent terminal, the intelligent terminal becomes an indispensable part in daily life of people, for example, people work, entertain and consume more and more through devices such as a smart phone, a tablet and even a smart television. However, although the intelligent electronic product is good, if the intelligent electronic product is not restricted, the normal life of the user is easily affected, and taking a smart phone as an example, the user delays work, learning and the like due to indulgence of games, and even the physical health of the user is affected.
The user self-control power that age is less at present is relatively poor, when not managed by the head of a family and educates, often can not control the length of time that oneself used smart mobile phone, and intelligent terminal itself also can not intelligent management and control user's use length of time, therefore, the last current anti-addiction measure of intelligent terminal has the treatment of improving.
Disclosure of Invention
The embodiment of the application provides an anti-addiction method, an anti-addiction device, electronic equipment and a storage medium. The time length of using the electronic equipment by the user can be controlled, and the user is prevented from being enthusiastic in using the electronic equipment.
In order to solve the above technical problems, the present application proposes the following technical solutions:
in a first aspect, an embodiment of the present application provides an anti-addiction method, including:
when a user runs a preset application program, acquiring identification information of the user;
judging whether the identification information of the user meets an anti-addiction trigger condition;
if the identification information of the user meets the enthrallment prevention triggering condition, calculating the running time of the preset application program, and judging whether the running time reaches the preset time;
and if the operation time reaches the preset time, controlling the electrode to generate stimulation voltage.
In a second aspect, embodiments of the present application provide an anti-addiction device, wherein the device includes:
the acquisition module is used for acquiring the identification information of the user when the user runs a preset application program;
the first judgment module is used for judging whether the identification information of the user meets an anti-addiction trigger condition;
the second judgment module is used for calculating the running time of the preset application program when the identification information of the user meets the enthrallment prevention trigger condition, and judging whether the running time reaches the preset time;
and the voltage generation module is used for controlling the electrode to generate stimulation voltage when the operation time reaches the preset time.
In a third aspect, an embodiment of the present application provides an electronic device, which includes a memory, a processor, and a computer program stored in the memory and executable on the processor, where the processor implements the steps of the anti-addiction method when executing the program.
In a fourth aspect, embodiments of the present application provide a storage medium having a computer program stored thereon, where the computer program is executed by a processor to implement the steps of the anti-addiction method.
In the embodiment of the application, when a user runs a preset application program, identification information of the user is obtained, whether the identification information of the user meets an anti-addiction trigger condition is judged, if the identification information of the user meets the anti-addiction trigger condition, running time of the preset application program is calculated, whether the running time reaches the preset time is judged, and if the running time reaches the preset time, an electrode is controlled to generate stimulation voltage. When a user with the age less than the preset age uses the preset application program, the running time of the preset application program is calculated, if the running time reaches the preset time, the electrode on the surface of the screen can generate stimulation voltage, stimulation current is generated, the user can feel electrical stimulation when touching the screen, the electronic equipment is stopped being used, and the anti-addiction effect is achieved.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the description of the embodiments are briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present application, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
Fig. 1 is a first flowchart of an anti-addiction method according to an embodiment of the present disclosure.
Fig. 2 is a second flowchart of the anti-addiction method according to the embodiment of the present application.
Fig. 3 is a schematic view of a first structure of an anti-addiction device provided in the embodiment of the present application.
Fig. 4 is a second structural schematic diagram of the anti-addiction device provided in the embodiment of the present application.
Fig. 5 is a schematic view of a first structure of an electronic device according to an embodiment of the present application.
Fig. 6 is a second structural schematic diagram of an electronic device provided in the embodiment of the present application.
Detailed Description
The technical solutions in the embodiments of the present application are clearly and completely described with reference to the drawings, and it is obvious that the described embodiments are only a part of the embodiments of the present application, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
In the description that follows, specific embodiments of the present application will be described with reference to steps and symbols executed by one or more computers, unless otherwise indicated. Accordingly, these steps and operations will be referred to, several times, as being performed by a computer, the computer performing operations involving a processing unit of the computer in electronic signals representing data in a structured form. This operation transforms the data or maintains it at locations in the computer's memory system, which may be reconfigured or otherwise altered in a manner well known to those skilled in the art. The data maintains a data structure that is a physical location of the memory that has particular characteristics defined by the data format. However, while the principles of the application have been described in language specific to above, it is not intended to be limited to the specific form set forth herein, and it will be recognized by those of ordinary skill in the art that various of the steps and operations described below may be implemented in hardware.
The terms "first", "second", and "third", etc. in this application are used to distinguish between different objects and not to describe a particular order. Furthermore, the terms "include" and "have," as well as any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, article, or apparatus that comprises a list of steps or modules is not limited to only those steps or modules listed, but rather, some embodiments may include other steps or modules not listed or inherent to such process, method, article, or apparatus.
The embodiment of the application provides an anti-addiction method, an anti-addiction device, electronic equipment and a storage medium. The following are detailed below.
Referring to fig. 1, fig. 1 is a first flow chart of an anti-addiction method according to an embodiment of the present application. The anti-addiction method is applied to electronic equipment, the electronic equipment comprises a screen, electrodes are arranged on the surface of the screen, and the electronic equipment can control the electrodes to generate different stimulation voltages so as to generate different electric stimulation intensities.
In step S101, when a user runs a preset application, identification information of the user is acquired.
The preset application program is provided in the electronic device, and the preset application program may be any application program installed in the electronic device, such as a game, an instant messaging software, a video software, a music software, and the like, which is not limited herein. When a user opens a preset application program, the electronic device acquires identification information of the user.
The identification information of the user may be user biological information acquired by the electronic device, for example, the electronic device may acquire a 2D face image of the user through a camera, and then recognize facial features of the 2D face image to obtain the identification information of the user; the electronic equipment can also capture a 3D face image through the structured light sensor, the camera and the infrared sensor, and then perform facial feature recognition on the 3D face image to obtain identification information of a user; the electronic equipment can also acquire the iris information of the user through the camera, and identify the iris information of the user to obtain the identification information of the user; the electronic equipment can also acquire the eye print information of the user through the camera, and identify the eye print information of the user to obtain the identification information of the user; the electronic equipment can also collect voiceprint information of the user through the microphone, and the voiceprint information is identified to obtain identification information of the user; the electronic equipment can also acquire the fingerprint information of the user through the fingerprint sensor, and the fingerprint information is identified to obtain the identification information of the user.
The above manner of acquiring the identification information of the user is only a partial example, and the identification information of the user may also be acquired in other manners, which should not be limited to the anti-addiction method based on electrical stimulation described in this application.
In step S102, it is determined whether the identification information of the user satisfies the anti-addiction trigger condition, if the identification information of the user satisfies the anti-addiction trigger condition, the process proceeds to step S103, and if the identification information of the user does not satisfy the anti-addiction trigger condition, the process proceeds to step S104.
The identification information of one or more users can be stored in the memory of the electronic equipment, after the electronic equipment acquires the identification information of the user using the electronic equipment at present, the identification information of the user is matched with the identification information stored locally in the electronic equipment, and under the condition that the identification information of the user and the identification information are matched, the identification information of the user is judged to meet the enthrallment prevention triggering condition.
The anti-addiction triggering condition can be age, the preset age is set, after the electronic equipment acquires the identification information of the user, the identification information locally stored by the electronic equipment is matched with the acquired identification information of the user, the identification information locally stored by the electronic equipment is the identification information of a plurality of users below the preset age, and under the condition that the identification information of the acquired users is successfully matched with the identification information of the users below the preset age, the acquired identification information of the users is determined to be the identification information of the users below the preset age, and the anti-addiction triggering condition is met.
It can be understood that after the electronic device acquires the identification information of the user, the identification information of the user can be sent to the cloud, whether the user is a user below a preset age is obtained through judgment of the identification information of the user by the cloud, and if yes, an anti-addiction triggering condition is met.
The anti-addiction triggering condition may be that the user who satisfies the anti-addiction triggering condition is directly identified by storing the preset identification information of the user in the memory of the electronic device in advance, as long as the user opens the electronic device and using the information such as the fingerprint or the facial feature.
In step S103, if the identification information of the user satisfies the enthrallment prevention trigger condition, the running time of the preset application program is calculated.
And when the acquired identification information of the user meets the enthrallment prevention triggering condition, calculating the time length for opening the preset application program by the user, wherein the preset time lengths set by different preset application programs can be determined according to the application programs. The preset application program may be a part of application programs installed in the electronic device, or may be all application programs installed in the electronic device.
Then, the process proceeds to step S105 to determine the running time of the preset application program.
In step S104, the acquisition of the identification information of the user is continued at the next point in time.
It can be understood that, when the user who does not satisfy the anti-addiction trigger condition opens the preset application program, the electronic device does not calculate the running time of the preset application program, if another user who satisfies the user trigger condition takes over to use the electronic device, if the identification information of the user who currently uses the electronic device is no longer acquired, the user who satisfies the anti-addiction trigger condition can use the electronic device for a long time, and the anti-addiction effect cannot be achieved.
Therefore, in this step, the identification information of the user can be continuously acquired at the next time point under the condition that the identification information of the user is acquired last time, so that whether the identification information of the user currently using the electronic device meets the anti-addiction triggering condition or not can be accurately judged.
Similarly, after the preset application program is opened by the user who meets the anti-addiction triggering condition, when another user who does not meet the anti-addiction triggering condition uses the electronic device, the electronic device can detect that the user can use the preset application program for a long time, and then the anti-addiction mechanism is cancelled.
Therefore, after the identification information of the user is acquired at the next time point, the process may proceed to the step S102 to determine the identification information of the user.
In step S105, it is determined whether the running time of the preset application program reaches the preset time.
It can be understood that the preset duration of the preset application program can be determined according to the application type of the preset application program, for example, software such as "microblog", "royal glory" and "video" is installed on the mobile phone, and the software is the preset application program, and in order to prevent the user from being enthusiastic in the mobile phone game, the preset duration can be set to be one hour for the "royal glory", and in order to prevent the user from being enthusiastic in watching the video, the preset duration can be set to be two hours for the "video". And starting to calculate the running time of the preset application program at the moment when the user opens the preset application program.
And when the running time of the user using the preset application program is judged to be longer than the preset time, the step S106 is entered, and if the running time of the preset application program does not reach the preset time, the step S103 is entered, and the running time of the preset application program is continuously calculated.
In step S106, if yes, the control electrode generates a stimulation voltage.
When the judged duration of the preset application opened by the user reaches the preset duration, the electronic equipment controls the electrodes to generate stimulation voltage, so that stimulation current is generated to stimulate receptors under the skin of the user, and the action potential of the autonomic nerve fibers is conducted to a sensory nerve center of the brain, so that an operator generates contacted consciousness, and the touch reappearance is realized.
The voltage intensity of the stimulation voltage can be set according to a preset application program, and different application programs can set different stimulation voltage intensities. It is also possible to set the application of one application type to one stimulus voltage intensity, for example, various games to one stimulus voltage intensity. Thereby enabling the user to feel different tactile sensations of electrical stimulation. Finally, the user stops watching the video or playing the game by using the electronic equipment, and the anti-addiction effect is achieved.
To sum up, in the embodiment of the application, when the user runs the preset application, the identification information of the user is obtained, whether the identification information of the user meets the anti-addiction triggering condition is judged, if the identification information of the user meets the anti-addiction triggering condition, the running time of the preset application is calculated, whether the running time reaches the preset time is judged, and if the running time reaches the preset time, the electrode is controlled to generate the stimulation voltage. When a user with the age less than the preset age uses the preset application program, the running time of the preset application program is calculated, if the running time reaches the preset time, the electrode on the surface of the screen can generate stimulation voltage, stimulation current is generated, the user can feel electrical stimulation when touching the screen, the electronic equipment is stopped being used, and the anti-addiction effect is achieved.
Referring to fig. 2, fig. 2 is a second flow chart of the anti-addiction method according to the embodiment of the present application. The anti-addiction method is applied to electronic equipment, the electronic equipment comprises a screen, electrodes are arranged on the surface of the screen, and the electronic equipment can control the electrodes to generate different stimulation voltages so as to generate different electric stimulation intensities.
In this embodiment, taking a smart phone as an example, electrodes are disposed in a lower end region of a touch screen of the smart phone, in this embodiment, an ITO transparent material may be used as a touch surface of the screen to form a touch electrode array, electrodes are designed in the touch region of the smart phone using an electrical stimulation principle, stimulation voltages are added to the electrodes, and when a finger touches the electrodes, a stimulation current is generated to trigger a nerve fiber action potential, which is conducted to a sensory nerve center of a brain, so that a user feels an electrical stimulation touch.
In step S201, preset applications are classified to obtain a plurality of application classification sets.
The mobile phone is provided with a plurality of application programs, such as application programs of WeChat, Taobao, video, Rong of King, E-book and office, and different preset durations and stimulation voltage intensities can be set for different application programs.
The preset application programs can be classified to obtain a plurality of classified application sets, for example, application programs such as "QQ", "wechat" and "microblog" are set as social application sets, application programs such as "naobao", "kyotong" and "suning" are set as shopping application sets, application programs such as "royal glory", "thrill battlefield" and "rapid coaster" are set as game application sets, application programs such as "electronic book" and "office" are set as reading application sets, and the classified application sets may further include learning application sets, audio-visual entertainment application sets and the like.
It should be noted that the classification application set may also be set according to personal preferences of the user, for example, the applications such as "microblog", "panning", and the like are set as a first classification application set, the applications such as "WeChat", "office" are set as a second classification application set, and other preset applications may also be set as a third classification application set, and the like.
In step S202, the voltage intensities of the stimulation voltages are correspondingly set for the plurality of application classification sets.
Different preset running time lengths can be set for different classification application sets, for example, the game application set can set the preset use time length to be two hours at most, the reading application set can set the preset use time length to be three hours at most, the social application set can set the preset use time length to be one hour at most, and the like. Accordingly, different electrical stimulation voltage intensities may be set for different classification application sets, for example, the electrical stimulation voltage intensities may be roughly classified into A, B, C, D, E, the electrical stimulation voltage intensity set for the game class application set may be roughly set as C, the stimulation voltage intensity set for the reading class application set may be set as a, and the stimulation voltage intensity set for the social class application set may be set as B.
It should be noted that, different electrical stimulation voltage intensities may be specifically set for a plurality of application programs in a plurality of classification application sets, for example, the electrical stimulation voltage intensity C may be further divided into electrical stimulation voltage intensities of 1 level, 2 levels, 3 levels, and so on, and in a game class application set, "fruit ninja" may be set as the electrical stimulation voltage intensity of C1 level, and "royal glory" may be set as the electrical stimulation voltage intensity of C3 level. Different electric stimulation voltage intensities correspond to different electric stimulation intensities, and the electric stimulation touch feeling felt by a user changes due to the change of the electric stimulation intensities.
For example, the application level of an application program in the social application set is set to B1, the application level of "QQ" is set to B2, and the application level of "microblog" is set to B3. The electrical stimulation voltage intensity corresponding to the application level B1 is the B1 level of the electrical stimulation voltage intensity level, and similarly, the application level B2 corresponds to the B2 level of the electrical stimulation voltage intensity.
In step S203, different age zones are set within a preset age.
The plurality of age intervals may be set within a preset age, for example, the preset age is 20 years old, a plurality of intervals may be set within the age of 20 years old, a first age interval is 3 to 6 years old, a second age interval is 7 to 12 years old, and a third age interval is 12 to 20 years old, which is merely an example, and in the specific implementation, the age intervals may be freely set.
In step S204, the voltage intensity of the stimulation voltage is set according to the age intervals.
The voltage intensity of the stimulation voltage may be set to correspond to a plurality of age groups, for example, the first age group may be a small age group, and the tactile sensation may be sensitive, the voltage intensity of the stimulation voltage may be set to 1 level, and the tactile sensation may be slow for a user with a large age group, and the voltage intensity of the stimulation voltage may be set to 4 levels, and the higher the level is, the higher the intensity of the stimulation voltage is. The voltage intensity setting of the specific multiple age intervals corresponding to the set stimulation voltage can be freely set according to the user.
It should be noted that the above-mentioned manner of setting the stimulus voltage intensity according to the application classification and the manner of setting the stimulus voltage intensity according to the age zone of the user may be either one of the manners or both of the manners.
In the case of adopting two ways of setting the stimulation voltage, the voltage intensity interval corresponding to the first age interval may be set to a level of a1 to a level of B2 according to the above division of the stimulation voltage level. The voltage intensity of the stimulation voltage may be set to be a little higher at an older age in the third age zone, and the voltage intensity of the third age zone may be set to be C1 to C3.
In the voltage intensity intervals corresponding to the different age intervals, the stimulation voltage intensity of the preset application program can be all within the voltage intensity interval corresponding to the age interval. The voltage intensity intervals corresponding to the specific different age intervals and the stimulation voltage levels corresponding to the preset application programs can be adjusted according to actual needs.
In step S205, when the user opens the preset application, the face information of the user is acquired.
When a user opens a preset application program, the mobile phone can start a camera, a structured light sensor, an infrared sensor and other sensors to acquire facial information of the user, so that a plurality of characteristic points of the face are obtained, and information such as eye marks and irises can be obtained.
In step S206, the age of the user is identified from the face information.
The mobile phone can send the facial information of the user to the cloud, and the facial information of the user is identified at the cloud, so that the age of the user is obtained. The user's face information may also be stored locally and then recognized through a preset face information recognition algorithm, thereby obtaining the user's age.
The face information of the user can be matched with a plurality of pieces of face information stored locally, the plurality of pieces of face information stored locally correspond to the age of the user, and the age of the user is obtained under the condition that the matching of the face information and the age of the user is successful.
In step S207, when the user opens the preset application, it is determined whether the user' S age is less than a preset age.
Because the self-control ratio of the minors is poor, the intelligent mobile phone can be used for being addicted to games, videos and the like, the intelligent mobile phone can be limited according to the age of the user, and an anti-addiction mechanism of the mobile phone can be triggered for the user with the age less than the preset age.
If the age of the current user is less than the preset age, the process proceeds to step S208.
If the age of the current user is greater than the preset age, the process proceeds to step S209.
In step S208, the running time period of the preset application program is calculated.
When a user opens a preset application program, the running time of the preset application program is calculated at the moment of opening the application program.
In step S209, the acquisition of the face information of the user is continued at the next point in time to find the age of the user.
It can be understood that when the age of the user is judged not to be the preset age, the user can use the preset application program for any time, if the user with the age smaller than the preset age is changed to use the mobile phone and use the preset application program, and if the current user is not detected continuously, the user with the age smaller than the preset age cannot take anti-addiction measures.
Therefore, at the next time point after the preset application program is opened, the face information of the current user may be detected, the age of the user may be obtained according to the face information of the user, the age of the user may be determined, and if the age of the user is smaller than the preset age, the process proceeds to step S208.
In step S210, it is determined whether the duration reaches a preset duration.
If the running time of the preset application program does not exceed the preset time, the method proceeds to step S208, and continues to calculate the running time of the preset application program.
If the duration for running the preset application reaches the preset duration, the process proceeds to step S211.
In step S211, the control electrode generates a stimulation voltage.
When the time length of the user using the preset application program exceeds the preset time length, the electrode is controlled to generate the stimulation voltage, and when the users in different age intervals use the same preset application program, different stimulation intensities can be generated due to the consideration of the bearing capacity of the users. If the same user uses applications within different categorized application sets, the intensity of the electrical stimulation produced will also be different.
The classification application set corresponding to the running preset application program can be obtained, and then the electrodes are controlled to generate corresponding stimulation voltage intensity according to the stimulation voltage intensity set for the classification application set. For example, when the user opens the reading application, the intensity of the generated stimulation voltage is a, and when the user opens the social application, the intensity of the generated stimulation voltage is B.
The specific setting can be adjusted according to the actual situation, and the stimulation voltage intensity setting method exemplified by the above steps should not be limited in this application.
In step S212, a duration of the preset application program operation is acquired.
When the running time of the preset application program reaches the preset time, the user can still tolerate the electric stimulation intensity under the current electric stimulation voltage, and then the running duration of the preset application program exceeding the preset time is calculated, and the step S213 is performed.
In step S213, the voltage intensity of the enhanced stimulus voltage is corresponded according to the duration.
The stimulation voltage can be continuously enhanced on the basis of the stimulation voltage intensity reaching the preset duration according to the duration, so that stronger electric stimulation touch is generated, a user abandons the use of the mobile phone, and the anti-addiction effect is achieved.
For example, a plurality of time nodes may be set for the exceeding time period, such as exceeding 10 minutes, exceeding 20 minutes, wherein the electrical stimulation voltage intensity is increased by 10% on the original basis when exceeding 10 minutes, and the electrical stimulation voltage intensity is increased by 20% on the original basis when exceeding 20 minutes.
The enhanced electrical stimulation voltage intensity can also be set according to the time interval exceeding the time length, for example, within 20 minutes, the electrical stimulation voltage is enhanced by 10% on the basis of the original electrical stimulation voltage, and within 20 minutes to 40 minutes, the electrical stimulation voltage intensity is enhanced by 30% on the basis of the original electrical stimulation voltage.
Please refer to fig. 5, wherein fig. 5 is a schematic diagram of a first structure of an electronic device according to an embodiment of the present application.
Fig. 5 specifically shows a screen of an electronic device, where 411 is a surface electrode, 410 is a first voltage driving module formed by combining a plurality of surface electrodes, 420 is an insulating medium, 430 is a flat electrode, 440 is a display screen, 450 is a second voltage driving module, and 460 is a piezoelectric vibration module.
The touch surface of the screen can be covered on the touch screen by using an ITO transparent material to form a touch electrode array, i.e. an electrode array formed by the surface electrodes 411 in the figure.
There are four types of tactile receptors on human skin, the Meissner's corpuscle, the Merkel's disk, the Pacinian corpuscle, and the Ruffini's ending, which are located below the epidermis, at the base of the epidermis, at the dermis and deep layers of the subcutaneous tissue, and at the dermis and joints, respectively.
Different tactile receptors can sense different tactile sensations, for example, the tactile sensation sensed by the meissner corpuscles is 'itching, vibrating, touching' and the like when the stimulation frequency is 10-200 Hz; when the stimulation frequency of the Merkel touch pad is 0.4-100Hz, the feeling type is 'edge, pressure' and the like; when the stimulation frequency of the small body of the annular layer is 40-800Hz, the feeling type is vibration, itch and the like; the sensory types of Lufenib are 'stretching, shearing force', etc. at the stimulation frequency of 740-1500 Hz.
The surface electrode 411 can directly stimulate the receptor/nerve fiber bundle under the skin by current to trigger the action potential of nerve fiber, and then the action potential is conducted to the sensory nerve center of brain, so that the operator can generate the contact consciousness, thereby realizing the touch reappearance.
On an ideal flat model, conductive flat plates are arranged on two sides, and an insulating medium is arranged in the middle. When an electric field is present across the plate, the insulating medium is subjected to electrostatic forces. The width of the flat plate model may be set to a, the length to b, and the height to c.
Neglecting edge effects, the capacitance is defined by:
Figure BDA0002057981740000131
the electric energy between the two flat electrodes is as follows:
Figure BDA0002057981740000132
according to the virtual work principle, the electrostatic force between the two flat electrodes is:
Figure BDA0002057981740000133
where is the dielectric constant of the insulator medium, a is the area of the conductor above the insulator, d is the thickness of the insulator medium, and V is the voltage difference between the two conducting layers. The friction force is equal to the coefficient of friction times the pressure. Thus, the frictional force can be varied by varying the electrostatic force of the finger skin.
In practical use, a finger can be equivalent to a flat electrode on the touch surface of the screen, and the friction force between the finger and the touch area can be changed by using the same principle, so that the touch sense is realized.
The air squeeze film effect is the result of mutual influence of the viscosity and the compressibility of air molecules, and an alternating electric signal is applied to one of the surfaces which are relatively parallel to generate forced vibration. When an operator fingers are positioned above the forced vibration supporting screen, due to the high-frequency vibration of the piezoelectric vibration module 460 below the screen, air molecules between the two are periodically extruded, and the air molecules cannot escape in time in vibration circulation, so that high-pressure air with a certain thickness is generated between the fingers and the touch surface of the screen. Thereby changing the coefficient of friction of the touch area. The friction coefficient is adjusted by controlling different vibration frequencies, so that different tactile sensations are generated.
In the application, the fingers of the user can feel different vibration senses and friction forces on the basis of the original electric stimulation in the mode. For example, when the duration of using the preset application program exceeds the preset duration, the friction force of the finger touch can be changed in the above manner, so that the finger is more sluggish when sliding the screen.
To sum up, in the embodiment of the present application, a plurality of classification application sets are obtained by classifying preset application programs, and the voltage intensity of the stimulus voltage is correspondingly set for the plurality of application classification sets. A plurality of age intervals can be set in a preset age, and the voltage intensity of the electrical stimulation voltage is correspondingly set according to the age intervals.
When a user opens a preset application program, acquiring facial information of the user, identifying the age of the user according to the facial information, judging whether the age of the user is smaller than the preset age, if so, calculating the running duration of the preset application program, judging whether the running duration reaches the preset duration, if so, controlling the electrodes to generate stimulation voltage, acquiring the running duration of the application program outside the preset duration, and correspondingly enhancing the intensity of the stimulation voltage according to the duration. The user can feel the electric stimulation touch by the stimulation voltage generated by the electronic equipment, so that the electronic equipment is stopped to use, and the anti-addiction effect is achieved.
Referring to fig. 3, fig. 3 is a schematic view of a first structure of an anti-addiction device according to an embodiment of the present application. Wherein the apparatus comprises: the apparatus includes an obtaining module 310, a first determining module 320, a second determining module 330, and a voltage generating module 340.
The obtaining module 310 is configured to obtain identification information of a user when the user runs a preset application program.
When a user opens a preset application program, the obtaining module 310 may obtain identification information of the user, for example, the electronic device may collect a 2D face image of the user through a camera, and then recognize facial features of the 2D face image to obtain the identification information of the user; the electronic equipment can also capture a 3D face image through the structured light sensor, the camera and the infrared sensor, and then perform facial feature recognition on the 3D face image to obtain identification information of a user; the electronic equipment can also acquire the iris information of the user through the camera, and identify the iris information of the user to obtain the identification information of the user; the electronic equipment can also acquire the eye print information of the user through the camera, and identify the eye print information of the user to obtain the identification information of the user; the electronic equipment can also collect voiceprint information of the user through the microphone, and the voiceprint information is identified to obtain identification information of the user; the electronic equipment can also acquire the fingerprint information of the user through the fingerprint sensor, and the fingerprint information is identified to obtain the identification information of the user.
The first determining module 320 is configured to determine whether the identification information of the user meets an anti-addiction trigger condition.
The first determining module 320 sets a preset age, and after the electronic device acquires the identification information of the user, matches the identification information of the user, which is acquired by the electronic device, locally stored by the electronic device, where the locally stored identification information is identification information of a plurality of users below the preset age, and when the locally stored identification information is successfully matched with the identification information of the users below the preset age, it is determined that the acquired identification information of the user is identification information of the users below the preset age, and an anti-addiction trigger condition is satisfied.
The identification information of the user can be sent to the cloud end, whether the user is a user below a preset age or not is judged through the cloud end, and if yes, an anti-addiction triggering condition is met.
The second determining module 330 is configured to calculate the running time of the preset application program when the identification information of the user meets the enthrallment prevention trigger condition, and determine whether the running time reaches the preset time.
The preset duration of the application program can be determined according to the application type of the preset application program, for example, software such as 'microblog', 'royal glory', and 'video' is installed on a mobile phone, and the software is the preset application program. And starting to calculate the running time of the preset application program at the moment when the user opens the preset application program. Then, the second determining module 330 determines whether the running time of the preset application reaches the preset time.
A voltage generating module 340, configured to control the electrode to generate the stimulation voltage when the operation duration of the preset application reaches a preset duration.
When the judged duration of the preset application opened by the user reaches the preset duration, the voltage generation module 340 controls the electrodes to generate stimulation voltage, so that stimulation current is generated to stimulate receptors under the skin of the user, and the action potential of the autonomic nerve fibers is conducted to a sensory nerve center of the brain, so that the operator generates the contacted consciousness, and the touch reappearance is realized.
The voltage intensity of the stimulation voltage can be set according to a preset application program, and different application programs can set different stimulation voltage intensities, so that a user can feel different electric stimulation touch senses. Finally, the user stops watching the video or playing the game by using the electronic equipment, and the anti-addiction effect is achieved.
In addition, please refer to fig. 4, fig. 4 is a second structural schematic diagram of the anti-addiction device provided in the embodiment of the present application. Wherein, prevent addict device still includes: the device comprises an application classification module 350, an interval setting module 360, a duration obtaining module 370 and a voltage enhancing module 380.
The application classification module 350 is configured to classify the preset application program to obtain a plurality of classification application sets, and set an application level and a voltage strength corresponding to the application level for the application program in the plurality of classification application sets.
The preset application programs can be classified to obtain a plurality of classified application sets, for example, application programs such as "QQ", "wechat" and "microblog" are set as social application sets, application programs such as "naobao", "kyotong" and "suning" are set as shopping application sets, application programs such as "royal glory", "thrill battlefield" and "rapid coaster" are set as game application sets, application programs such as "electronic book" and "office" are set as reading application sets, and the classified application sets may further include learning application sets, audio-visual entertainment application sets and the like.
It should be noted that the classification application set may also be set according to personal preferences of the user, for example, the applications such as "microblog", "panning", and the like are set as a first classification application set, the applications such as "WeChat", "office" are set as a second classification application set, and other preset applications may also be set as a third classification application set, and the like.
Different preset running time lengths can be set for different classification application sets, for example, the game application set can set the preset use time length to be two hours at most, the reading application set can set the preset use time length to be three hours at most, the social application set can set the preset use time length to be one hour at most, and the like. Accordingly, different electrical stimulation voltage intensities may be set for different classification application sets, for example, the electrical stimulation voltage intensities may be roughly classified into A, B, C, D, E, the electrical stimulation voltage intensity set for the game class application set may be roughly set as C, the stimulation voltage intensity set for the reading class application set may be set as a, and the stimulation voltage intensity set for the social class application set may be set as B.
The interval setting module 360 is used for setting a plurality of age intervals in the preset age, and correspondingly setting the voltage intensity of the stimulation voltage according to the age intervals.
The plurality of age intervals may be set within a preset age, for example, the preset age is 20 years old, a plurality of intervals may be set within the age of 20 years old, a first age interval is 3 to 6 years old, a second age interval is 7 to 12 years old, and a third age interval is 12 to 20 years old, which is merely an example, and in the specific implementation, the age intervals may be freely set.
The voltage intensity of the stimulation voltage may be set to correspond to a plurality of age groups, for example, the first age group may be a small age group, and the tactile sensation may be sensitive, the voltage intensity of the stimulation voltage may be set to 1 level, and the tactile sensation may be slow for a user with a large age group, and the voltage intensity of the stimulation voltage may be set to 4 levels, and the higher the level is, the higher the intensity of the stimulation voltage is. The voltage intensity setting of the specific multiple age intervals corresponding to the set stimulation voltage can be freely set according to the user.
The duration obtaining module 370 is configured to obtain the duration of the operation of the preset application after the operation duration of the preset application reaches the preset duration.
And a voltage enhancing module 380 for correspondingly enhancing the voltage intensity of the stimulation voltage according to the exceeding duration.
The voltage enhancement module 380 can continue to enhance the stimulation voltage according to the duration on the basis of the stimulation voltage strength reaching the preset duration, so as to generate stronger electric stimulation touch, so that the user abandons the use of the mobile phone, and the anti-addiction effect is achieved.
For example, a plurality of time nodes may be set for the duration exceeding the preset duration, such as exceeding 10 minutes, exceeding 20 minutes, where the electrical stimulation voltage intensity is increased by 10% on the original basis when exceeding 10 minutes, and the electrical stimulation voltage intensity is increased by 20% on the original basis when exceeding 20 minutes.
It should be noted that the first determining module 320 further includes an identifying submodule 321 and a first determining submodule 322.
And an identifying sub-module 321, configured to identify an age of the user according to the facial information.
The identification submodule 321 may send the facial information of the user to the cloud, and identify the facial information of the user at the cloud, so as to obtain the age of the user. The user's face information may also be stored locally and then recognized through a preset face information recognition algorithm, thereby obtaining the user's age.
The face information of the user can be matched with a plurality of pieces of face information stored locally, the plurality of pieces of face information stored locally correspond to the age of the user, and the age of the user is obtained under the condition that the matching of the face information and the age of the user is successful.
The first determining submodule 322 is configured to determine whether the age of the user is smaller than a preset age.
Because the self-control force of the minors is poorer, the intelligent mobile phone can be used for being addicted to games, videos and the like, the first judgment submodule 322 can judge whether the age of the user is smaller than the preset age, and for the user smaller than the preset age, an anti-addiction mechanism of the mobile phone can be triggered.
Wherein the voltage generation module 340 further comprises: a determination sub-module 341 and a voltage generation sub-module 342.
The determining submodule 341 is configured to determine a classification application set corresponding to the preset application program.
And the voltage generation submodule 342 is configured to control the electrodes to generate the stimulation voltages according to the voltage intensities of the stimulation voltages corresponding to the classified application sets.
The classification application set corresponding to the running preset application program can be obtained, and then the electrodes are controlled to generate corresponding stimulation voltage intensity according to the stimulation voltage intensity set for the classification application set. For example, when the user opens the reading application, the intensity of the generated stimulation voltage is a, and when the user opens the social application, the intensity of the generated stimulation voltage is B.
To sum up, in the embodiment of the present application, a plurality of classification application sets are obtained by classifying preset application programs, and the voltage intensity of the stimulus voltage is correspondingly set for the plurality of application classification sets. A plurality of age intervals can be set in a preset age, and the voltage intensity of the electrical stimulation voltage is correspondingly set according to the age intervals.
When a user opens a preset application program, acquiring facial information of the user, identifying the age of the user according to the facial information, judging whether the age of the user is smaller than the preset age, if so, calculating the running duration of the preset application program, judging whether the running duration reaches the preset duration, if so, controlling the electrodes to generate stimulation voltage, acquiring the running duration of the application program outside the preset duration, and correspondingly enhancing the intensity of the stimulation voltage according to the duration. The user can feel the electric stimulation touch by the stimulation voltage generated by the electronic equipment, so that the electronic equipment is stopped to use, and the anti-addiction effect is achieved.
Referring to fig. 6, fig. 6 is a second structural schematic diagram of an electronic device according to an embodiment of the present application.
The electronic device 500 includes: a display unit 501, an input unit 502, a memory 503, a central processor 504, a power supply 504, a sensor 506, and the like. Those skilled in the art will appreciate that the electronic device configurations shown in the figures do not constitute limitations of the electronic device, and may include more or fewer components than shown, or some components in combination, or a different arrangement of components. Wherein:
the display unit 501 may be used to display information input by or provided to a user and various graphical user interfaces of the electronic device, which may be made up of graphics, text, icons, video, and any combination thereof. The Display unit 501 may include a Display panel, and optionally, the Display panel may be configured in the form of a Liquid Crystal Display (LCD), an Organic Light-Emitting Diode (OLED), or the like. Further, the touch-sensitive surface may overlay the display panel, and when a touch operation is detected on or near the touch-sensitive surface, the touch operation is transmitted to the central processor 504 to determine the type of touch event, and the central processor 504 then provides a corresponding visual output on the display panel according to the type of touch event. Although in FIG. 6 the touch-sensitive surface and the display panel are two separate components to implement input and output functions, in some embodiments the touch-sensitive surface may be integrated with the display panel to implement input and output functions.
The input unit 502 may be used to receive input numeric or character information and generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function control. In particular, in one particular embodiment, the input unit 502 may include a touch-sensitive surface as well as other input devices. The touch-sensitive surface, also referred to as a touch display screen or a touch pad, may collect touch operations by a user (e.g., operations by a user on or near the touch-sensitive surface using a finger, a stylus, or any other suitable object or attachment) thereon or nearby, and drive the corresponding connection device according to a predetermined program. Alternatively, the touch sensitive surface may comprise two parts, a touch detection means and a touch controller. The touch detection device detects the touch direction of a user, detects a signal brought by touch operation and transmits the signal to the touch controller; the touch controller receives touch information from the touch sensing device, converts the touch information into touch point coordinates, sends the touch point coordinates to the central processing unit 504, and can receive and execute commands sent by the central processing unit 504. In addition, touch sensitive surfaces may be implemented using various types of resistive, capacitive, infrared, and surface acoustic waves. The input unit 502 may include other input devices in addition to a touch-sensitive surface. In particular, other input devices may include, but are not limited to, one or more of a physical keyboard, function keys (such as volume control keys, switch keys, etc.), a trackball, a mouse, a joystick, and the like.
The memory 503 may be used to store software programs and modules, and the processor 504 executes various functional applications and data processing by operating the software programs and modules stored in the memory 503. The memory 504 may mainly include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application program required by at least one function (such as a sound playing function, an image playing function, etc.), and the like; the storage data area may store data (such as audio data, a phonebook, etc.) created according to the use of the electronic device, and the like. Further, the memory 503 may include high speed random access memory, and may also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid state storage device. Accordingly, the memory 503 may also include a memory controller to provide the processor 504 and the input unit 502 access to the memory 503.
The electronic device further includes a power source 505 (e.g., a battery) for supplying power to the various components, which is preferably logically connected to the central processor 504 via a power management system, so that functions such as managing charging, discharging, and power consumption are performed via the power management system. The power supply 505 may also include any component of one or more dc or ac power sources, recharging systems, power failure detection circuitry, power converters or inverters, power status indicators, and the like.
The electronic device may also include at least one sensor 506, such as a light sensor, pressure sensor, motion sensor, and other sensors. In particular, the light sensor may include an ambient light sensor that may adjust the brightness of the display panel according to the brightness of ambient light, and a proximity sensor that may turn off the display panel and/or the backlight when the electronic device is moved to the ear. As one of the motion sensors, the gravity acceleration sensor can detect the magnitude of acceleration in each direction (generally, three axes), can detect the magnitude and direction of gravity when the mobile phone is stationary, and can be used for applications of recognizing the posture of the mobile phone (such as horizontal and vertical screen switching, related games, magnetometer posture calibration), vibration recognition related functions (such as pedometer and tapping), and the like; as for other sensors such as a gyroscope, a barometer, a hygrometer, a thermometer, and an infrared sensor, which may be further configured to the electronic device, detailed descriptions thereof are omitted.
Although not shown, the electronic device may further include a camera, a bluetooth module, and the like, which are not described in detail herein. Specifically, in this embodiment, the central processing unit 504 in the electronic device loads the executable file corresponding to the process of one or more application programs into the memory 503 according to the following instructions, and the central processing unit 504 runs the application programs stored in the memory 503, so as to implement various functions:
when a user runs a preset application program, acquiring identification information of the user;
judging whether the identification information of the user meets an anti-addiction trigger condition;
if the identification information of the user meets the enthrallment prevention triggering condition, calculating the running time of the preset application program, and judging whether the running time reaches the preset time;
and if the operation time reaches the preset time, controlling the electrode to generate stimulation voltage.
It will be understood by those skilled in the art that all or part of the steps of the methods of the above embodiments may be performed by instructions or by associated hardware controlled by the instructions, which may be stored in a computer readable storage medium and loaded and executed by a processor.
To this end, the present application provides a storage medium, in which a plurality of instructions are stored, and the instructions can be loaded by a processor to execute the steps in any one of the anti-addiction methods provided by the present application. For example, the instructions may perform the steps of:
when a user runs a preset application program, acquiring identification information of the user;
judging whether the identification information of the user meets an anti-addiction trigger condition;
if the identification information of the user meets the enthrallment prevention triggering condition, calculating the running time of the preset application program, and judging whether the running time reaches the preset time;
and if the operation time reaches the preset time, controlling the electrode to generate stimulation voltage.
The above operations can be implemented in the foregoing embodiments, and are not described in detail herein.
Wherein the storage medium may include: read Only Memory (ROM), Random Access Memory (RAM), magnetic or optical disks, and the like.
Since the instructions stored in the storage medium may execute the steps in any anti-addiction method provided in the embodiments of the present application, the beneficial effects that can be achieved by any anti-addiction method provided in the embodiments of the present application may be achieved, and for details, refer to the foregoing embodiments, and are not described herein again.
The anti-addiction method, the anti-addiction device, the electronic device and the storage medium provided by the embodiments of the present application are described in detail above, and a specific example is applied in the present application to explain the principle and the implementation manner of the present application, and the description of the above embodiments is only used to help understand the method and the core idea of the present application; meanwhile, for those skilled in the art, according to the idea of the present application, there may be variations in the specific embodiments and the application scope, and in summary, the content of the present specification should not be construed as a limitation to the present application.

Claims (12)

1. An anti-addiction method applied to an electronic device, wherein the electronic device comprises a screen, and electrodes are arranged on the surface of the screen, and the method comprises the following steps:
when a user runs a preset application program, acquiring identification information of the user;
judging whether the identification information of the user meets an anti-addiction trigger condition;
if the identification information of the user meets the enthrallment prevention triggering condition, calculating the running time of the preset application program, and judging whether the running time reaches the preset time;
and if the operation time reaches the preset time, controlling the electrode to generate stimulation voltage.
2. The anti-addiction method according to claim 1, wherein the identification information includes facial information, and determining whether the identification information of the user satisfies an anti-addiction trigger condition includes:
identifying an age of the user according to the facial information;
judging whether the age of the user is smaller than a preset age or not;
and if so, determining that the identification information of the user meets the enthrallment prevention triggering condition.
3. The anti-addiction method according to claim 2, further comprising, before determining whether the user's age is less than a preset age:
setting a plurality of age intervals in the preset age;
and correspondingly setting the voltage intensity of the stimulation voltage according to the age intervals.
4. The anti-addiction method according to claim 1, wherein before the user runs the preset application, the method further comprises:
classifying the preset application program to obtain a plurality of classified application sets;
setting voltage intensities of the stimulation voltages corresponding to the plurality of classification application sets.
5. The anti-addiction method according to claim 4, wherein the controlling the electrodes to generate stimulation voltages comprises:
determining a classification application set corresponding to the preset application program;
and controlling the electrodes to generate stimulation voltage according to the voltage intensity of the stimulation voltage corresponding to the classified application set.
6. The anti-addiction method according to claim 1, wherein after controlling the electrodes to generate stimulation voltages, the method further comprises:
after the running time reaches the preset time, obtaining the running duration of the preset application program;
and correspondingly enhancing the voltage intensity of the stimulation voltage according to the duration.
7. An anti-addiction device, said device comprising:
the acquisition module is used for acquiring the identification information of the user when the user runs a preset application program;
the first judgment module is used for judging whether the identification information of the user meets an anti-addiction trigger condition;
the second judgment module is used for calculating the running time of the preset application program when the identification information of the user meets the enthrallment prevention trigger condition, and judging whether the running time reaches the preset time;
and the voltage generation module is used for controlling the electrode to generate stimulation voltage when the operation time reaches the preset time.
8. The anti-addiction device according to claim 7, wherein the first judgment module comprises:
the identification submodule is used for identifying the age of the user according to the facial information;
and the first judgment submodule is used for judging whether the age of the user is smaller than a preset age.
9. The anti-addiction device according to claim 7, wherein said device further comprises:
and the interval setting module is used for setting a plurality of age intervals in the preset age, and correspondingly setting the voltage intensity of the stimulation voltage according to the age intervals.
The application classification module is used for classifying the preset application program to obtain a plurality of classification application sets, and correspondingly setting the voltage intensity of the stimulation voltage for the classification application sets;
the duration acquisition module is used for acquiring the running duration of the preset application program after the running duration reaches the preset duration;
and the voltage enhancing module is used for correspondingly enhancing the voltage intensity of the stimulation voltage according to the duration.
10. The anti-addiction device of claim 7, wherein the voltage generation module comprises:
the determining submodule is used for determining a classified application set corresponding to the preset application program;
and the voltage generation submodule is used for controlling the electrodes to generate the stimulation voltage according to the voltage intensity of the stimulation voltage corresponding to the classification application set.
11. An electronic device, comprising:
a memory storing executable program code, a processor coupled with the memory;
the processor calls the executable program code stored in the memory to perform the steps in the anti-addiction method as claimed in any one of claims 1 to 6.
12. A storage medium storing a plurality of instructions adapted to be loaded by a processor to perform the steps of the anti-addiction method of any one of claims 1-6.
CN201910395314.9A 2019-05-13 2019-05-13 Anti-addiction method and device, electronic equipment and storage medium Pending CN111935351A (en)

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Application publication date: 20201113