WO2016131245A1 - 控制终端操作的方法及装置 - Google Patents

控制终端操作的方法及装置 Download PDF

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Publication number
WO2016131245A1
WO2016131245A1 PCT/CN2015/089189 CN2015089189W WO2016131245A1 WO 2016131245 A1 WO2016131245 A1 WO 2016131245A1 CN 2015089189 W CN2015089189 W CN 2015089189W WO 2016131245 A1 WO2016131245 A1 WO 2016131245A1
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Prior art keywords
terminal
wearable device
motion trajectory
difference
motion
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PCT/CN2015/089189
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English (en)
French (fr)
Inventor
贾鑫
Original Assignee
中兴通讯股份有限公司
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Application filed by 中兴通讯股份有限公司 filed Critical 中兴通讯股份有限公司
Publication of WO2016131245A1 publication Critical patent/WO2016131245A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/725Cordless telephones

Definitions

  • the present invention relates to the field of communications, and in particular to a method and apparatus for controlling operation of a terminal.
  • the first step for users to protect their privacy is to lock the screen of the mobile phone without recognizing the contents of the mobile phone. There are already many ways to lock the screen:
  • the digital password is unlocked, but this unlocking method not only increases the trouble for the user to forget the password, but also increases the security risk of the third party input method stealing the password.
  • the face is unlocked.
  • the user is generally required to blink at the time of face detection, which also affects the user experience.
  • the unlocking method is to unlock the pattern, but this method still requires a series of operations on the mobile phone, especially in a large-screen mobile phone, it is quite troublesome to draw the unlocking pattern with one hand.
  • the unlocking method is simple and safe, but in the case where the fingerprint of the user's finger is contaminated (for example, the finger has water, oil, etc.), the unlocking operation cannot be simply performed.
  • the present invention provides a method and apparatus for controlling operation of a terminal to at least solve the problems of complicated operation and unsafe operation of the mobile terminal in the related art.
  • a method for controlling operation of a terminal including:
  • the terminal detects a difference between the first motion trajectory and the second motion trajectory, and the terminal according to the difference A predefined operation that determines the execution.
  • the acquiring, by the terminal, the first motion track of the terminal includes:
  • the terminal acquires a trigger signal, and determines whether the trigger signal reaches a preset trigger condition. If the trigger signal reaches the preset trigger condition, the terminal acquires the first motion track of the terminal.
  • the trigger signal includes: an acceleration of the terminal; and the preset trigger condition includes: a preset acceleration threshold.
  • the detecting, by the terminal, the difference between the first motion trajectory and the second motion trajectory includes:
  • the predefined operation performed is determined according to the difference, including one of the following:
  • the terminal Determining whether the difference is within a first preset difference threshold range, and if it is within the first preset difference range, determining that the first motion trajectory and the second motion trajectory are consistent, the terminal Performing a first type of operation in the predefined operation, the first type of operation comprising at least one of: lighting a screen, unlocking an operation.
  • the terminal executing the The second type of operation in the predefined operation, the second type of operation includes at least one of: sending an alarm signal, setting an operation authority of the terminal, turning off the screen, and locking the operation.
  • the method before the terminal performs the first type of operation in the predefined operation, the method includes:
  • the movement parameter comprises at least one of the following: acceleration, direction, angular velocity, and coordinate value.
  • a method for controlling operation of a terminal including:
  • the terminal determines a predefined operation to be performed according to the difference information.
  • a method for controlling operation of a terminal including:
  • the wearable device acquires a second motion trajectory of the wearable device, where the second motion trajectory is generated according to a movement parameter of the wearable device;
  • the movement parameter comprises at least one of the following: acceleration, direction, angular velocity, and coordinate value.
  • a method for controlling operation of a terminal including:
  • the wearable device acquires a first motion trajectory of the terminal bound to the wearable device, where the first motion trajectory is generated according to a movement parameter of the terminal;
  • the wearable device transmits difference information to the terminal, wherein the difference information is a difference between the first motion trajectory and the second motion trajectory.
  • a device for controlling operation of a terminal, located in the terminal comprising:
  • a first acquiring module configured to acquire, by the terminal, a first motion trajectory of the terminal, where the first motion trajectory is generated according to a movement parameter of the first terminal;
  • a second acquiring module configured to acquire, by the terminal, a second motion track of the wearable device bound to the terminal, where the second motion track is generated according to a movement parameter of the wearable device
  • a first execution module configured to detect, by the terminal, a difference between the first motion trajectory and the second motion trajectory, and the terminal determines a predefined operation performed according to the difference.
  • the device further includes:
  • a triggering module configured to acquire a trigger signal by the terminal, to determine whether the trigger signal reaches a preset trigger condition; and when the trigger signal reaches the preset trigger condition, the terminal acquires the The first motion trajectory.
  • the trigger signal includes: an acceleration of the terminal; and the preset trigger condition includes: a preset acceleration threshold.
  • the first execution module includes:
  • a detecting unit configured to acquire a difference between the first type of detection points on the first motion trajectory and the second type of detection points on the second motion trajectory for the movement parameter, wherein the first type of measurement points And the second type of detection points include multiple Time point or multiple points of motion.
  • the first execution module includes one of the following:
  • the first determining unit is configured to determine whether the difference is within a first preset difference threshold range, and if the first preset difference value is within the first preset difference range, determine the first motion trajectory and the second The motion trajectory is consistent, and the terminal performs a first type of operation in the predefined operation, the first type of operation including at least one of: lighting a screen, an unlocking operation.
  • a second determining unit configured to determine whether the difference exceeds a second preset difference threshold range, and if the second preset difference range is exceeded, determining the first motion track and the second motion track Inconsistent, the terminal performs a second type of operation in the predefined operation, and the second type of operation includes at least one of: sending an alarm signal, setting an operation authority of the terminal, closing a screen, and locking a operation.
  • the first execution module includes:
  • the third determining unit before the terminal performs the first type operation in the predefined operation, the terminal acquires a distance value between the terminal and the opposite obstacle of the terminal; and determines whether the distance value is A preset distance threshold is reached, wherein the terminal performs the first type of operation of the predefined operation if the preset distance threshold is reached.
  • the movement parameter comprises at least one of the following: acceleration, direction, angular velocity, and coordinate value.
  • a device for controlling operation of a terminal located in the wearable device, comprising:
  • a third acquiring module configured to acquire, by the wearable device, a second motion track of the wearable device, where the second motion track is generated according to a movement parameter of the wearable device;
  • a first sending module configured to send, by the wearable device, the second motion track to a terminal bound to the wearable device, where the second motion track is set to a first motion track with the terminal Comparing, obtaining a difference between the first motion trajectory and the second motion trajectory, wherein the difference is used to control the terminal to perform a predefined operation, wherein the first motion trajectory is according to the terminal
  • the generated parameters are moved.
  • the movement parameter comprises at least one of the following: acceleration, direction, angular velocity, and coordinate value.
  • a fourth acquiring module configured to acquire, by the terminal, a first motion trajectory of the terminal, where the first motion trajectory is generated according to a movement parameter of the terminal;
  • a fifth obtaining module configured to acquire, by the terminal, difference information of the wearable device bound to the terminal, where the difference information is a difference between the first motion track and the second motion track, where the The second motion trajectory is generated according to the movement parameter of the wearable device;
  • a second execution module configured to determine, by the terminal, a predefined operation performed according to the difference information.
  • a device for controlling operation of a terminal, located on a wearable device include:
  • a sixth acquiring module configured to acquire, by the wearable device, a first motion trajectory of the terminal bound to the wearable device, where the first motion trajectory is generated according to a movement parameter of the terminal;
  • a seventh acquiring module configured to acquire, by the wearable device, a second motion trajectory of the wearable device, where the second motion trajectory is generated according to a movement parameter of the wearable device;
  • a second sending module configured to send the difference information to the terminal, wherein the difference information is a difference between the first motion track and the second motion track.
  • the terminal acquires a first motion trajectory of the terminal, the first motion trajectory is generated according to the motion parameter of the first terminal, and the terminal acquires a second motion track of the wearable device bound to the terminal, where The second motion trajectory is generated according to the movement parameter of the wearable device, the terminal detects a difference between the first motion trajectory and the second motion trajectory, and the terminal determines the executed predefined operation according to the difference, and solves the problem.
  • the problem that the operation of the mobile terminal is complicated and the operation is not safe simplifies the operation of the mobile terminal and protects the privacy of the user.
  • FIG. 1 is a flowchart 1 of a method for controlling operation of a terminal according to an embodiment of the present invention
  • FIG. 2 is a second flowchart of a method for controlling operation of a terminal according to an embodiment of the present invention
  • FIG. 3 is a third flowchart of a method for controlling operation of a terminal according to an embodiment of the present invention.
  • FIG. 4 is a flowchart 4 of a method for controlling operation of a terminal according to an embodiment of the present invention
  • FIG. 5 is a structural block diagram 1 of an apparatus for controlling operation of a terminal according to an embodiment of the present invention.
  • FIG. 6 is a structural block diagram 2 of an apparatus for controlling operation of a terminal according to an embodiment of the present invention
  • FIG. 7 is a structural block diagram 3 of an apparatus for controlling operation of a terminal according to an embodiment of the present invention.
  • FIG. 8 is a structural block diagram 4 of an apparatus for controlling operation of a terminal according to an embodiment of the present invention.
  • FIG. 9 is a structural block diagram of an apparatus for controlling a terminal device according to a preferred embodiment of the present invention.
  • FIG. 10 is a flowchart 1 of a method of controlling a terminal device according to a preferred embodiment of the present invention.
  • FIG. 11 is a second flowchart of a method of controlling a terminal device according to a preferred embodiment of the present invention.
  • FIG. 12 is a flowchart 3 of a method of controlling a terminal device according to a preferred embodiment of the present invention.
  • FIG. 13 is a flow chart 4 of a method of controlling a terminal device in accordance with a preferred embodiment of the present invention.
  • FIG. 1 is a flowchart 1 of a method for controlling operation of a terminal according to an embodiment of the present invention. As shown in FIG. 1, the process includes the following steps:
  • Step S102 The terminal acquires a first motion track of the terminal, where the first motion track is generated according to the motion parameter of the first terminal.
  • Step S104 the terminal acquires a second motion track of the wearable device bound to the terminal, where the second motion track is generated according to the movement parameter of the wearable device;
  • Step S106 the terminal detects a difference between the first motion trajectory and the second motion trajectory, and the terminal determines a predefined operation to be performed according to the difference.
  • the terminal acquires a first motion trajectory of the terminal, where the first motion trajectory is generated according to the movement parameter of the first terminal, and the terminal acquires a second motion trajectory of the wearable device bound to the terminal, where The second motion trajectory is generated according to the movement parameter of the wearable device, the terminal detects a difference between the first motion trajectory and the second motion trajectory, and the terminal determines the executed predefined operation according to the difference, and solves the problem.
  • the problem that the operation of the mobile terminal is complicated and the operation is not safe simplifies the operation of the mobile terminal and protects the privacy of the user.
  • the terminal acquires a trigger signal, and determines whether the trigger signal reaches a preset trigger condition.
  • the terminal acquires the first motion track of the terminal, where
  • the trigger signal includes: an acceleration of the terminal;
  • the preset trigger condition includes: a preset acceleration threshold.
  • the difference between the first type of detection point on the first motion trajectory and the second type of detection point on the second motion trajectory for the movement parameter is obtained, wherein the first type of measurement point and the first The second type of detection points each include multiple time points or multiple motion points.
  • the terminal performs the predefined operation.
  • the first type of operation includes at least one of the following: lighting the screen, unlocking the operation.
  • the second type of operation includes at least one of the following: sending an alarm signal, setting an operation authority of the terminal, closing the screen, and locking the operation.
  • the terminal acquires a distance value between the terminal and the obstacle opposite to the terminal; and determines whether the distance value reaches a preset distance threshold, where Reach the preset distance In the case of a threshold, the terminal performs the first type of operation of the predefined operation.
  • the movement parameter includes at least one of the following: acceleration, direction, angular velocity, and coordinate value.
  • FIG. 2 is a second flowchart of a method for controlling operation of a terminal according to an embodiment of the present invention. As shown in FIG. 2, the process includes the following steps:
  • Step S202 the wearable device acquires a second motion track of the wearable device, where the second motion track is generated according to the movement parameter of the wearable device;
  • Step S204 the wearable device sends the second motion track to the terminal bound to the wearable device, wherein the second motion track is used to compare with the first motion track of the terminal to obtain the first motion track. And a difference between the second motion trajectory for controlling the terminal to perform a predefined operation, wherein the first motion trajectory is generated according to a movement parameter of the terminal.
  • the wearable device acquires a second motion track of the wearable device, the second motion track is generated according to the movement parameter of the wearable device, and the wearable device sends the second motion track to the terminal, where
  • the second motion trajectory is used to compare the first motion trajectory of the terminal to obtain a difference between the first motion trajectory and the second motion trajectory, where the difference is used to control the terminal to perform a predefined operation, where
  • the first motion trajectory is generated according to the mobile parameter of the terminal, which solves the problem that the operation of the mobile terminal is complicated and the operation is unsafe, simplifies the operation of the mobile terminal, and protects the privacy of the user.
  • the movement parameter includes at least one of the following: acceleration, direction, angular velocity, and coordinate value.
  • FIG. 3 is a third flowchart of a method for controlling the operation of the terminal according to an embodiment of the present invention. As shown in FIG. 3, the process includes the following steps:
  • Step S302 the terminal acquires a first motion trajectory of the terminal, where the first motion trajectory is generated according to a movement parameter of the terminal;
  • Step S304 the terminal acquires difference information of the wearable device bound to the terminal, where the difference information is a difference between the first motion track and the second motion track, wherein the second motion track is based on the wearable Generated by the mobile parameters of the device;
  • Step S306 the terminal determines a predefined operation to be performed according to the difference information.
  • FIG. 4 is a flowchart of a method for controlling the operation of the terminal according to an embodiment of the present invention. As shown in FIG. 4, the process includes the following steps:
  • Step S402 the wearable device acquires a first motion trajectory of the terminal bound to the wearable device, where the first motion trajectory is generated according to the movement parameter of the terminal;
  • Step S404 the wearable device acquires a second motion track of the wearable device, where the second motion track is generated according to the movement parameter of the wearable device;
  • Step S406 the wearable device sends difference information to the terminal, where the difference information is the first motion track. And the difference between the second motion trajectory.
  • a device for controlling the operation of the terminal is provided, and the device is used to implement the foregoing embodiments and preferred embodiments, and details are not described herein.
  • the term "module” may implement a combination of software and/or hardware of a predetermined function.
  • the apparatus described in the following embodiments is preferably implemented in software, hardware, or a combination of software and hardware, is also possible and contemplated.
  • FIG. 5 is a structural block diagram of an apparatus for controlling operation of a terminal according to an embodiment of the present invention. As shown in FIG. 5, the device is located in a terminal, and the device includes:
  • the first obtaining module 52 is configured to acquire, by the terminal, a first motion trajectory of the terminal, where the first motion trajectory is generated according to the motion parameter of the first terminal;
  • the second obtaining module 54 is configured to acquire, by the terminal, a second motion track of the wearable device bound to the terminal, where the second motion track is generated according to the movement parameter of the wearable device;
  • the first execution module 56 is configured to detect, by the terminal, a difference between the first motion trajectory and the second motion trajectory, and the terminal determines a predefined operation to be performed according to the difference.
  • the terminal acquires a first motion trajectory of the terminal, where the first motion trajectory is generated according to the motion parameter of the first terminal, and the terminal acquires a second motion trajectory of the wearable device bound to the terminal, where The second motion trajectory is generated according to the movement parameter of the wearable device, the terminal detects a difference between the first motion trajectory and the second motion trajectory, and the terminal determines the executed predefined operation according to the difference, and solves the problem.
  • the problem that the operation of the mobile terminal is complicated and the operation is not safe simplifies the operation of the mobile terminal and protects the privacy of the user.
  • the device further includes:
  • the triggering module is configured to obtain a trigger signal, and determine whether the trigger signal reaches a preset trigger condition. If the trigger signal reaches the preset trigger condition, the terminal acquires the first motion track of the terminal.
  • the trigger signal includes: an acceleration of the terminal; and the preset trigger condition includes: a preset acceleration threshold.
  • the first execution module 56 includes:
  • a detecting unit configured to acquire a difference between the first type of detection point on the first motion trajectory and the second type of detection point on the second motion trajectory for the movement parameter, wherein the first type of measurement point and the second Class detection points include multiple time points or multiple motion points.
  • the first execution module 56 includes one of the following:
  • the first determining unit is configured to determine whether the difference is within a first preset difference threshold range, and if the first preset difference value is within the first preset difference range, determining that the first motion trajectory and the second motion trajectory are consistent,
  • the terminal performs a first type of operation in the predefined operation, the first type of operation comprising at least one of: lighting a screen, unlocking an operation.
  • a second determining unit configured to determine whether the difference exceeds a second preset difference threshold range, if the second preset is exceeded a difference range, determining that the first motion trajectory is inconsistent with the second motion trajectory, the terminal performing a second type of operation in the predefined operation, the second type of operation comprising at least one of: sending an alarm signal, setting the The operation authority of the terminal, the screen is closed, and the lock operation is performed.
  • the first execution module 56 includes
  • the third determining unit is configured to: before the terminal performs the first type of operation in the predefined operation, the terminal acquires a distance value between the terminal and the obstacle opposite to the terminal; and determines whether the distance value reaches a preset distance threshold, where When the preset distance threshold is reached, the terminal performs the first type of operation of the predefined operation.
  • the movement parameter includes at least one of the following: acceleration, direction, angular velocity, and coordinate value.
  • FIG. 6 is a structural block diagram 2 of an apparatus for controlling operation of a terminal according to an embodiment of the present invention. As shown in FIG. 6, the device is located in a wearable device, and the device includes:
  • the third obtaining module 62 is configured to acquire, by the wearable device, a second motion track of the wearable device, where the second motion track is generated according to the movement parameter of the wearable device;
  • the first sending module 64 is configured to send the second motion track to the terminal bound to the wearable device, where the second motion track is used to compare with the first motion track of the terminal to obtain a difference between the first motion trajectory and the second motion trajectory for controlling the terminal to perform a predefined operation, wherein the first motion trajectory is generated according to a movement parameter of the terminal.
  • the wearable device acquires a second motion track of the wearable device, the second motion track is generated according to the movement parameter of the wearable device, and the wearable device sends the second motion track to the terminal, where
  • the second motion trajectory is used to compare the first motion trajectory of the terminal to obtain a difference between the first motion trajectory and the second motion trajectory, where the difference is used to control the terminal to perform a predefined operation, where
  • the first motion trajectory is generated according to the mobile parameter of the terminal, which solves the problem that the operation of the mobile terminal is complicated and the operation is unsafe, simplifies the operation of the mobile terminal, and protects the privacy of the user.
  • the movement parameter includes at least one of the following: acceleration, direction, angular velocity, and coordinate value.
  • FIG. 7 is a structural block diagram 3 of a device for controlling operation of a terminal according to an embodiment of the present invention. As shown in FIG. 7, the device is located in a terminal, and the device includes:
  • the fourth obtaining module 72 is configured to acquire, by the terminal, a first motion trajectory of the terminal, where the first motion trajectory is generated according to the mobile parameter of the terminal;
  • the fifth obtaining module 74 is configured to acquire, by the terminal, difference information of the wearable device bound to the terminal, where the difference information is a difference between the first motion track and the second motion track, wherein the second motion track Is generated according to the movement parameters of the wearable device;
  • the second execution module 76 is configured to determine, according to the difference information, the predefined operation performed by the terminal.
  • FIG. 8 is a structural block diagram 4 of an apparatus for controlling operation of a terminal according to an embodiment of the present invention, as shown in FIG.
  • the device includes:
  • the sixth obtaining module 82 is configured to acquire, by the wearable device, a first motion trajectory of the terminal bound to the wearable device, where the first motion trajectory is generated according to the mobile parameter of the terminal;
  • the seventh obtaining module 84 is configured to acquire, by the wearable device, a second motion track of the wearable device, where the second motion track is generated according to the movement parameter of the wearable device;
  • the second sending module 86 is configured to send the difference information to the terminal, wherein the difference information is a difference between the first motion track and the second motion track.
  • the manner in which the user unlocks or locks the screen of the mobile terminal is mainly by pressing a certain physical button of the mobile terminal to light the screen or closing the screen.
  • the unlocking also needs to be performed by using a specified gesture to operate the touch screen, for example, the button illuminates the mobile terminal. After touching the screen, slide a slider on the touch screen to the specified position.
  • the above unlocking method requires the user to take a certain operation on the mobile terminal after picking up the mobile terminal. For example, pressing a physical button of the mobile terminal can be unlocked, the unlocking process is complicated, and the unlocking manner is not intuitive. Users need a way to unlock and lock the phone that is both safe and easy to operate. It should be self-heating and does not require too many user interventions.
  • wearable devices such as smart bracelets are becoming more and more mature, and they are more and more popular among many people.
  • Working with smart phones can play a new and more practical experience.
  • wristband watches are often only Limitations and relatively single functions, such as detecting physiological indicators and then sending information to the mobile phone, or controlling mobile music playback, or electronic fences.
  • the operation of the mobile terminal by using the wearable device in the preferred embodiment realizes a new way of unlocking the mobile phone that can ensure safe and simple operation.
  • the unlocking mode should be natural, and does not require too many operations of the user to intervene in the unlocking process. .
  • Embodiments of the present invention provide a method and apparatus for controlling a terminal device, which makes the operation of the mobile device simpler and more intuitive.
  • the mobile terminal detects, by the sensor, whether a trigger condition of the wearable device that is bound to the mobile device is met; if yes, the mobile terminal starts the wearable device bound to the mobile terminal, and detects whether the motion track of the wearable device and the mobile terminal exists.
  • the characteristics of the relevant policy are met; if yes, the mobile terminal performs a predefined operation to enhance the user experience.
  • a user with a wearable device such as a wristband or watch picks up the phone placed on the table and lifts it to the front.
  • the phone automatically lights up the screen and unlocks it, without any user involvement, simple and natural security; when the user runs out of the phone Placed on the table or in the pocket, the phone automatically closes the screen and locks immediately, reducing power consumption and eliminating the need for the user to lock the screen, which is simple and natural.
  • the user's mobile phone is moved by someone other than the user, and the mobile phone automatically sends a reminder immediately. To ensure the security of the mobile phone; the user's mobile phone is loaned to others by the user, and the mobile phone immediately enters the guest mode to protect the user's privacy.
  • the preferred embodiment provides a method for controlling a terminal device, the method comprising the following content:
  • the mobile terminal establishes a connection with the wearable device by using a near field wireless communication manner, including: the terminal initiates a connection request to the wearable device by using a near field wireless communication manner, and the wearable device receives the connection request initiated by the terminal by using the near field wireless communication manner, where The wearable device establishes a connection with the terminal;
  • the wearable device initiates a connection request to the terminal by using a near field wireless communication manner
  • the terminal receives the connection request initiated by the wearable device by using the near field wireless communication manner
  • the mobile terminal establishes a connection with the wearable device.
  • the mobile terminal processes the subsequent operations according to the connection state of the mobile terminal and the wearable device, and the subsequent operations must be established in the normal connection state of the mobile terminal and the wearable device.
  • the mobile terminal periodically detects the connection status with the wearable device. If the terminal is in the connected state with the wearable device, the subsequent operations can be performed normally; if the terminal and the wearable device are in the unconnected state, the prompt is prompted. The user reconnects.
  • the near field wireless communication method is a Bluetooth connection, an infrared connection, a wifi connection, or the like.
  • the two devices establish a connection based on the near field wireless communication method as the prior art, and details are not described herein again.
  • the mobile terminal can periodically detect the connection status with the wearable device. If the mobile terminal is in the connected state with the wearable device, it indicates that the mobile terminal is within the controllable range of the user, ensuring subsequent automatic lighting of the screen and Unlocked security, if the mobile terminal and the wearable device are in an unconnected state, indicating that the mobile terminal has left the user's controllable range, a subsequent series of operations, such as automatically lighting the screen and unlocking operations, are not performed.
  • the detecting, by the mobile terminal, whether the trigger condition for starting the wearable device is met by the sensor the mobile terminal detects an acceleration of the mobile terminal by using an acceleration sensor, and when the acceleration of the mobile terminal satisfies a certain condition, the mobile terminal starts binding with the mobile terminal.
  • the wearable device performs motion path detection.
  • the mobile terminal measures the acceleration values of the x, y, z axes by means of a Micro-Electro-Mechanical System (MEMS) integrated on a silicon wafer.
  • MEMS Micro-Electro-Mechanical System
  • a gage acceleration of 1 g is measured at rest.
  • the acceleration value of the mobile terminal is detected by an acceleration sensor.
  • the detecting, by the mobile terminal and the wearable device, whether the motion trajectory meets the relevant policy by the sensor includes: the mobile terminal detects a motion trajectory of the mobile terminal by using the motion sensor, and the wearable device detects the motion trajectory of the wearable device by using the motion sensor And comparing the motion trajectories of the two, when the motion trajectory of the mobile terminal and the wearable device meets certain conditions, a predefined operation is performed.
  • the above-mentioned compliant features can be re-set according to the needs of the user.
  • the mobile terminal has built in a wide variety of sensors, and the motion track is a specific magnitude reflecting the actual motion of the terminal in a specific environment, and the motion track includes speed and displacement in each motion direction of the mobile terminal per unit time. Distance and coordinates only. According to the motion trajectory of the terminal, that is, the acceleration, direction, angular velocity and coordinate value of each time point in the preset time period, it is determined whether the motion trajectory of the mobile terminal and the wearable device is equal to a preset threshold.
  • the calculation method of the motion trajectory is: the motion trajectory is quantized by using the three-dimensional coordinates acquired by the gravity sensor, the geomagnetic sensor, and the gyroscope.
  • the existing mobile terminal is basically equipped with the above sensor.
  • the preset period is a fixed duration of the preset setting of the data of the sensing device by the mobile terminal. Preferably, the preset period is 0.1 second.
  • the mobile phone collects the acceleration through the gravity sensor
  • the geomagnetic sensor collects the moving direction and the gyroscope acquisition angular velocity, and saves the above data in real time.
  • the CPU uses the internal algorithm program of the memory to calculate the motion track of the mobile phone by using the three sets of parameters.
  • the calculation method of the motion trajectory is that the mobile terminal and the wearable device can calculate the motion sensed by the gyro as the motion trajectory of the terminal by using the sensing data of the gyro.
  • the gyroscope equipped in the terminal can be a three-axis gyroscope, and the three-axis gyroscope is also called a micro electromechanical gyroscope.
  • the three-axis gyroscope internally contains a mini-speech body, which can generate a Coriolis force when the mobile terminal moves.
  • the three latitudes (X axis, Y axis, Z axis) of the downward space are displaced, and the direction and acceleration when the displacement occurs are recorded, and the detected data is converted into the sensing data recognizable by the mobile terminal, so that the mobile terminal can
  • the motion trajectory of the mobile terminal is obtained by using the sensing data of the gyroscope.
  • the terminal acquires the sensing data of the gyroscope equipped in the terminal within a preset time period, uses the sensing data to calculate the motion track of the terminal sensed by the gyroscope, and uses the sensor to collect the mobile terminal in the preset time period according to the preset frequency. Acceleration, direction and angular velocity and coordinate values.
  • the motion trajectory of the mobile terminal is generated according to the acceleration, direction, and angular velocity and coordinate values of the mobile terminal in the preset time period.
  • the motion track of the mobile terminal is calculated to be consistent with the motion track of the wearable device, or the calculated motion track of the mobile terminal includes the motion track of the wearable device, and the method for determining whether the motion track is consistent is compared;
  • the mobile terminal and the wearable device collect acceleration, direction, angular velocity, and coordinate values in a preset time period at a preset frequency, and collect motion parameter values of the m motion points according to a preset sampling interval, such as acceleration, direction, angular velocity, and Coordinate value, etc.
  • the value to be compared may be one or more of acceleration, direction, angular velocity, and coordinate value, and sequentially determine m motion points or motions of the mobile terminal and the wearable device in a plurality of same time points.
  • the motion trajectory is consistent.
  • a certain range of error values are established at the factory setting, so that the movement trajectory of the mobile terminal and the wearable device have a certain tolerance range, and as long as the range is satisfied, it can be considered to be consistent, which can improve the intelligence degree of the mobile phone and bring good User experience.
  • the mobile terminal periodically detects the distance between the screen of the mobile terminal and the opposite object by using a distance sensor; when the distance reaches a set threshold, the mobile terminal performs a corresponding operation, such as lighting the screen and unlocking . If the feature of the policy is not detected in the first time interval, the mobile terminal turns off the screen, enters the pre-lock state, and continues to detect whether there is a feature that meets the unlocking policy in the second time interval; if so, The mobile terminal switches from the pre-locked state to the unlocked state; if not, the mobile terminal switches from the pre-locked state to the locked state.
  • FIG. 9 is a structural block diagram of an apparatus for controlling a terminal device according to a preferred embodiment of the present invention. As shown in FIG. 9, the mobile terminal includes:
  • the detecting unit is configured to detect, by the acceleration sensor, whether the trigger condition for starting the wearable device is met when the mobile terminal is in a certain state;
  • the startup detection unit includes an acceleration sensor configured to detect an acceleration of the mobile terminal.
  • the mobile terminal can be a portable terminal such as a mobile phone or a tablet computer.
  • the mobile terminal When the mobile terminal is not used, for example, when it is placed in a table, a pocket or a bag, the low-power sensor built in the mobile terminal is always running, and the mobile terminal uses the built-in sensor to detect whether the current state of the mobile terminal satisfies the startable wearable.
  • the trigger condition of the device When the acceleration of the mobile terminal reaches a preset condition, it is determined that the bootable wearable device is satisfied.
  • the mobile terminal When the instantaneous acceleration of the mobile terminal reaches a preset threshold, it is considered that the mobile terminal may be picked up by the user to be used, or placed after being used by the user.
  • the mobile terminal can receive a preset threshold set by the user, and the acceleration sensor The detected current acceleration of the mobile terminal is compared with a threshold set by the user to determine whether the current acceleration of the mobile terminal reaches a preset threshold.
  • the motion trajectory detecting unit starts the wearable device motion trajectory detecting unit and the motion trajectory detecting unit of the mobile terminal, and detects whether the wearable device and the mobile terminal have the characteristics of complying with the policy; the mobile terminal may The user-adopted policy-compliant feature is accepted, and the preset condition may be that the wearable device motion track and the mobile terminal's motion track are close to each other or the opposite is completed.
  • the operation execution unit is configured to perform a predefined operation when detecting that the motion trajectory satisfies a feature compliant with the policy.
  • the preset value storage unit is configured to store a preset value or condition and compare it with the actually detected value.
  • an appropriate acceleration threshold may be preset by the manufacturer, and the user may modify the threshold as needed, where the preset threshold is used to indicate the set acceleration threshold.
  • an appropriate motion track comparison value can be preset by the manufacturer, and the user can modify the value as needed.
  • the motion track comparison value is used to indicate the set motion track comparison value.
  • the motion trajectory comparison value may be a situation in which the wearable device motion trajectory and the motion trajectory of the mobile terminal are close to or completed.
  • the present invention provides a method and apparatus for controlling a terminal device.
  • the preferred embodiment is picked up by a user with a wearable device wristband or watch (for example, a watch).
  • a wearable device wristband or watch for example, a watch.
  • the mobile phone as an example, the specific process of automatically lighting the screen and unlocking the mobile phone immediately is described, and the user does not need any participation, which is simple and natural security.
  • FIG. 10 is a flow chart of a method for controlling the terminal device according to a preferred embodiment of the present invention.
  • Figure 1 as shown in Figure 10, the method includes the following steps:
  • Step 1001 When the mobile terminal is in a locked state, the mobile terminal detects, by using a sensor, whether a trigger condition for starting the pre-bound wearable device is met;
  • the mobile terminal When the mobile terminal is in the locked state, the mobile terminal detects its own acceleration using the acceleration sensor.
  • the screen lock is maintained when the mobile terminal detects that the acceleration does not reach the threshold, or detects that the motion trajectory of the mobile terminal and the wearable device does not reach the predetermined strategy, or detects that the distance between the screen and the opposite object does not reach the threshold. Go back to the initial state.
  • Step 1002 The user picks up the mobile phone placed on the desk, and the mobile terminal generates acceleration by the static.
  • the sensor detects that the current acceleration of the mobile terminal satisfies the trigger condition for starting the wearable device watch. If yes, the mobile terminal starts pre-binding. Wearable device watch.
  • step 1003 It is determined whether the acceleration reaches a preset threshold. If yes, step 1003 is performed. If not, the process returns to the initial state step 1001.
  • Step 1003 Start a trigger condition of the wearable device watch, the mobile terminal detects a motion track of the mobile terminal by using a motion sensor, and the wearable device uses a motion sensor to detect a motion track of the watch, and the user uses the arm with the watch from the table. Pick up the phone and lift it to the front, and the motion sensor detects the trajectory of both.
  • Step 1004 Detect whether the mobile terminal and the wearable device watch motion track have a feature that conforms to a predetermined policy; If it is met, the mobile terminal performs a predefined operation. If not, return to the initial state step 1001.
  • Step 1005 Perform a predefined operation when the motion trajectory of the mobile terminal and the wearable device satisfies the close condition. This predefined operation performs screen unlocking and lighting for the mobile terminal.
  • the mobile terminal When the mobile terminal detects that the motion trajectory satisfies the condition of proximity, it may be considered that the mobile terminal may be picked up by the user for use, or the mobile terminal may be picked up by the user to be put into a pocket or a bag, and the mobile terminal is only used by the user. It is not used on the table.
  • the mobile terminal can activate the distance sensor to detect the distance between the screen of the mobile terminal and the opposite object. Determining whether the detected distance reaches a threshold, if yes, executing step 1005;
  • an appropriate distance threshold may be preset by the manufacturer, and the user may modify the threshold as needed.
  • the distance sensor detects that the distance between the screen of the mobile terminal and the opposite object reaches a threshold, the current mobile terminal is considered to be located. The condition is suitable for lighting the screen and unlocking, and conversely, it is considered that the current situation of the mobile terminal is not suitable for lighting the screen and unlocking.
  • the mobile terminal is placed on the desktop, and when the user just picks it up from the desktop and puts it into the pocket but does not use it, the mobile terminal instantaneously receives a large acceleration, reaching a preset threshold, which is triggered at this time.
  • the wearable device watch and the motion track of the mobile phone detect and satisfy a predefined strategy, and at this time, the distance sensor detects that the distance between the screen of the mobile terminal and the opposite object is large, and the distance does not reach a preset threshold, for example, a preset The threshold is 5cm to 30cm, and the distance detected by the distance sensor is greater than 30cm or less than 2cm, indicating that the mobile terminal may only be picked up by the user or put into the pocket, and the condition of the mobile terminal will be determined to be unsuitable for lighting the screen.
  • a preset threshold for example, a preset The threshold is 5cm to 30cm, and the distance detected by the distance sensor is greater than 30cm or less than 2cm, indicating that the mobile terminal may only be picked up by the user or put into the pocket, and the condition of the mobile terminal will be determined to be unsuitable for lighting the screen.
  • the distance sensor detects that the distance between the screen of the mobile terminal and the opposite object reaches a threshold, it is considered that the condition of the mobile terminal is suitable for lighting the screen and unlocking, and correspondingly, the distance detected by the distance sensor may be The distance between the mobile terminal screen and a certain part of the user's body that is facing.
  • the mobile terminal when the mobile terminal is in the locked state, the mobile terminal detects whether the trigger condition of unlocking and lighting the screen is satisfied by the cooperation of the acceleration sensor and the motion track detection, when the mobile terminal is placed in the desktop and the user pocket, The mobile terminal detects whether a certain acceleration condition is met by the sensor. If yes, the pre-bound wearable device watch is activated, and whether the motion trajectories of the two are consistent or close, and if not, the screen unlocking lighting operation is performed.
  • the unlocking process does not require the user to deliberately perform buttons, clicks, and the like on the mobile terminal during the unlocking process, and the process of unlocking the lighting screen is performed unconsciously, and the unlocking mode is simple and intuitive.
  • the above steps are to use the distance sensor to detect whether the screen is lit and the unlocking is optional.
  • the acceleration sensor may be used alone or the motion track detection may be used alone to determine whether the lighting screen is satisfied or not.
  • the trigger condition for unlocking is optional.
  • the mobile terminal when the mobile terminal is in the locked state, the mobile terminal detects whether the trigger condition of unlocking and lighting the screen is satisfied by the cooperation of the acceleration sensor and the motion track detection, when the mobile terminal is placed on the desktop and the user pocket.
  • the mobile terminal detects whether a certain acceleration condition is met by the sensor, if it is satisfied, the pre-bound wearable device watch is activated, and whether the motion trajectories of the two are consistent or close, and if the proximity is approached, the screen unlocking is performed. operating.
  • the unlocking process does not require the user to deliberately perform buttons, clicks, and the like on the mobile terminal during the unlocking process, and the process of unlocking the lighting screen is performed unconsciously, and the unlocking mode is simple and intuitive.
  • the existing unlocking method when the user wants to use the mobile terminal, picking up the mobile terminal can unlock and illuminate the screen for direct operation. Before unlocking, it is not necessary to light the screen first and then deliberately press the button on the mobile terminal. Click and other operations, the unlocking process is carried out unconsciously, and the unlocking method is simple and safe.
  • the preferred embodiment further provides a method and apparatus for controlling a terminal device.
  • the embodiment is in a user pocket or bag with a wearable device wristband or a wristwatch (in the case of a wristband).
  • the mobile phone is taken away by others as an example, and describes a specific process of promptly alerting the user to automatically alert the user to ensure the security of the user's mobile phone.
  • FIG. 11 is a flow chart 2 of a method for controlling the terminal device according to a preferred embodiment of the present invention, such as As shown in Figure 11, the method includes:
  • Step 1101 When the mobile terminal is located in a user's pocket or a bag, or is placed on a desktop, the mobile terminal detects, by using a sensor, whether a trigger condition for starting the pre-bound wearable device is met;
  • the mobile terminal When the mobile terminal is in the above unused state, the mobile terminal detects its own acceleration using the acceleration sensor.
  • the screen lock is maintained and returned to the initial state.
  • Step 1102 assuming that the mobile phone in the user's pocket is taken away by another person, the mobile terminal generates acceleration by the stationary state, and the sensor detects that the current acceleration of the mobile terminal satisfies the trigger condition for starting the wearable device wristband, and if satisfied, the mobile terminal starts the advance Bound wearable device bracelet.
  • Step 1103 Start a trigger condition of the wearable device watch, the mobile terminal detects a motion track of the mobile terminal by using a motion sensor, and the wearable device watch detects a motion track of the watch by using a motion sensor.
  • Step 1104 Detect whether the mobile terminal and the wearable device watch trajectory have a feature that conforms to a predetermined policy; the arm of the user with the wristband assumes that the moment is stationary, and the current motion trajectory is stationary.
  • the motion sensor detects that the movement track of the mobile phone and the movement track of the wristband are very different.
  • the mobile terminal performs a predefined operation. If not, return to the initial state step 1101.
  • Step 1105 The mobile terminal performs a predefined operation.
  • a predefined operation When the motion trajectory of the mobile terminal and the wearable device satisfies a condition having a certain difference, a predefined operation is performed.
  • This predefined operation performs an alarm operation for the mobile terminal.
  • the alarm operation can be an audible prompt or the like.
  • a predefined operation when the motion trajectory of the mobile terminal and the wearable device satisfies a condition having a certain difference, a predefined operation is performed.
  • the predefined operation performs an alarm operation for the mobile terminal.
  • the predefined operation can be set by the user to other operations. For example, setting a predefined operation is to change the user rights of the terminal, when not by the person When using this phone, you can only operate on specific permissions and protect user privacy.
  • an appropriate motion trajectory comparison policy may be preset by the manufacturer, and the user may modify the policy as needed.
  • the motion trajectory of the mobile terminal and the wearable device meets a condition having a certain difference, the current mobile terminal is considered as The situation is not that the user is operating, and the mobile terminal performs a predefined operation. Otherwise, the current situation of the mobile terminal is considered normal.
  • the mobile terminal when the mobile terminal is in the locked state, the mobile terminal detects whether the trigger condition of the alarm is met by the cooperation of the acceleration sensor and the motion track detection.
  • the mobile terminal passes The sensor detects whether a certain acceleration condition is met. If yes, the pre-bound wearable device wristband is activated, and whether there is a certain difference between the motion trajectories of the two, and if the difference satisfies a preset policy, the mobile terminal is considered as a non-user.
  • I operate I perform terminal predefined operations, such as alarms or setting operation rights.
  • the present embodiment determines whether the user operates the mobile terminal by comparing the motion track of the wearable device such as the watch or the wristband worn by the user, and the security and reliability are higher.
  • the mobile terminal when the mobile terminal is in the locked state, the mobile terminal detects whether the trigger condition of the alarm is met by the cooperation of the acceleration sensor and the motion track detection.
  • the mobile terminal passes The sensor detects whether a certain acceleration condition is met. If yes, the pre-bound wearable device wristband is activated, and whether there is a certain difference between the motion trajectories of the two, and if the difference satisfies the preset strategy, the terminal alarm operation is performed.
  • the preferred embodiment is safer by comparing the motion trajectories of the wearable device such as a wristwatch or a wristband worn by the user and the mobile terminal.
  • the preferred embodiment further provides a method and a device for controlling a terminal device.
  • This embodiment describes a method in which a user with a wearable device wristband or a wristwatch (for example, a wristband) operates the mobile phone and puts it on the desktop.
  • FIG. 12 is a flowchart 3 of a method for controlling a terminal device according to a preferred embodiment of the present invention.
  • FIG. 12 is a flowchart of a method for controlling a terminal device according to a preferred embodiment of the present invention.
  • Step 1201 When the user operates the mobile terminal, the mobile terminal detects, by using the sensor, whether a trigger condition for starting the pre-bound wearable device is met;
  • the mobile terminal detects its own acceleration using the acceleration sensor.
  • the mobile terminal When the mobile terminal detects that the acceleration does not reach the threshold, or detects that the motion trajectory of the mobile terminal and the wearable device does not reach the predetermined policy, it will return to the initial state.
  • Step 1202 After the user finishes using the mobile phone and puts it on the desktop, the mobile terminal reduces the acceleration from the motion to the stationary motion to zero.
  • the sensor detects whether the current acceleration of the mobile terminal meets the trigger condition for starting the wearable device wristband, and if so, moves The terminal launches a pre-bound wearable device bracelet.
  • the trigger condition is set such that the acceleration is abruptly reduced by zero from zero.
  • the mobile terminal determines whether the change of the acceleration reaches the preset condition. If yes, step 1203 is performed. If not, the process returns to the initial step 1201.
  • Step 1203 Start a trigger condition of the wearable device wristband, and the mobile terminal detects the mobile terminal by using a motion sensor.
  • the trajectory of the end, the wearable watch uses a motion sensor to detect the trajectory of the watch.
  • Step 1204 Detect whether the movement track of the mobile terminal and the wearable device watch has a feature that conforms to a predetermined policy; the arm of the user with the wristband assumes that the moment is still, and the current motion track is stationary.
  • the motion sensor detects that the movement track of the mobile phone and the movement track of the wristband are very different.
  • Step 1205. If yes, the mobile terminal performs a predefined operation.
  • a predefined operation When the motion trajectory of the mobile terminal and the wearable device satisfies a condition having a certain difference, a predefined operation is performed. This predefined operation performs a shutdown screen and a lock operation for the mobile terminal.
  • the mobile terminal detects whether the trigger condition for closing the screen display and locking is satisfied by the cooperation of the acceleration sensor and the motion track detection.
  • the mobile terminal passes from the use state held by the user to the desktop, the mobile terminal passes.
  • the sensor detects that the acceleration suddenly changes from zero to zero.
  • the preset condition is met, the pre-bound wearable device wristband is activated, and whether there is a difference between the motion trajectories of the two, if the difference satisfies the preset
  • the predetermined policy is that the mobile terminal is placed on the desktop, and then the terminal is turned off and the locking operation is performed.
  • the present embodiment compares the wearable device and the mobile terminal such as a watch or a wristband worn by the user.
  • the motion track determines whether to close the screen and lock, which saves the user from manually closing the mobile terminal, and effectively avoids the risk of the user forgetting to close the screen, and the whole process is more natural and simple.
  • the mobile terminal detects whether the trigger condition for closing the screen display and locking is satisfied by the cooperation of the acceleration sensor and the motion track detection.
  • the mobile terminal passes from the use state held by the user to the desktop, the mobile terminal passes.
  • the sensor detects that the acceleration suddenly changes from zero to zero.
  • the preset condition is met, the pre-bound wearable device wristband is activated, and whether there is a difference between the motion trajectories of the two, if the difference satisfies the preset
  • the predetermined policy is that the mobile terminal is placed on the desktop, and then the terminal is turned off and the locking operation is performed.
  • the present embodiment compares the wearable device and the mobile terminal such as a watch or a wristband worn by the user.
  • the motion track determines whether to close the screen and lock, which saves the user from manually closing the mobile terminal, and effectively avoids the risk of the user forgetting to close the screen, and the whole process is more natural and simple.
  • the preferred embodiment further provides a method and apparatus for controlling a terminal device.
  • a user with a wearable device wristband or a watch (for example, a watch) hands the mobile phone to other users.
  • a specific process of the mobile phone immediately entering the guest mode is described, without any participation by the user, simple and natural security.
  • FIG. 13 is a flowchart 4 of a method for controlling the terminal device according to a preferred embodiment of the present invention, as shown in FIG. Show that the method includes:
  • Step 1301 When the mobile terminal is in the locked state, the mobile terminal detects, by using the sensor, whether a trigger condition for starting the pre-bound wearable device is met;
  • the mobile terminal When the mobile terminal is in the locked state, the mobile terminal detects its own acceleration using the acceleration sensor.
  • the screen lock is maintained and returned to the initial state.
  • Step 1302 The user picks up the mobile phone, and the mobile terminal generates acceleration from the stationary state, and the sensor detects the current mobile terminal. The acceleration meets the trigger condition for activating the wearable device watch, and if so, the mobile terminal activates the pre-bound wearable device watch.
  • step 1303 It is determined whether the acceleration reaches a preset threshold. If yes, step 1303 is performed. If not, the process returns to the initial state step 1301.
  • Step 1303 Start a trigger condition of the wearable device watch, the mobile terminal detects a motion track of the mobile terminal by using a motion sensor, and the wearable device uses a motion sensor to detect a motion track of the watch, and the user picks up the arm with the watch.
  • the mobile phone is handed to other users, other users take the mobile phone, and the motion sensor detects the motion trajectory of both.
  • Step 1304 Detect whether the mobile terminal and the wearable device watch motion track have a feature that conforms to a predetermined policy; if yes, the mobile terminal performs a predefined operation. If not, return to the initial state step 1301.
  • Step 1305 Perform a predefined operation when the motion trajectory of the mobile terminal and the wearable device satisfies the close condition.
  • the predefined operation is to enter the guest mode for the mobile terminal to protect the user's privacy, so that other users can only access the predefined content.
  • the mobile terminal is picked up by the user and handed to other users, and the mobile terminal instantaneously receives a large acceleration to reach a preset threshold, which triggers the detection of the wearable device watch and the mobile phone motion track.
  • the detection result is that the motion track is consistent.
  • the user hands the mobile terminal to other users, and the other users take over the mobile terminal.
  • the wearable device watch and the mobile phone motion track are detected, and the detection result is that the motion track is inconsistent, and the motion of the two is The detection result of the trajectory changes from consistent to inconsistent, and the predefined policy is satisfied.
  • the mobile terminal is held by other users at this time, and the situation is suitable for entering the guest mode, and the guest mode defines the content that other users can access in advance, thereby Protect user privacy.
  • the present embodiment does not require the user to perform key presses and clicks on the mobile terminal during the mobile phone transmission process, and the process of privacy encryption is performed unknowingly, and the manner of entering the guest mode is simple and safe. .
  • the mobile terminal is picked up by the user and handed to other users, and the mobile terminal instantaneously receives a large acceleration to reach a preset threshold, which triggers the detection of the wearable device watch and the mobile phone motion track.
  • the detection result is that the motion track is consistent.
  • the user hands the mobile terminal to other users, and the other users take over the mobile terminal.
  • the wearable device watch and the mobile phone motion track are detected, and the detection result is that the motion track is inconsistent, and the motion of the two is The detection result of the trajectory changes from consistent to inconsistent, and the predefined policy is satisfied.
  • the mobile terminal is held by other users at this time, and the situation is suitable for entering the guest mode, and the guest mode defines the content that other users can access in advance, thereby Protect user privacy.
  • the present embodiment does not require the user to perform key presses and clicks on the mobile terminal during the mobile phone transmission process, and the process of privacy encryption is performed unknowingly, and the manner of entering the guest mode is simple and safe. .
  • the method according to the above embodiment can be implemented by means of software plus a necessary general hardware platform, and of course, by hardware, but in many cases, the former is A better implementation.
  • the technical solution of the present invention which is essential or contributes to the prior art, may be embodied in the form of a software product stored in a storage medium (such as ROM/RAM, disk, CD-ROM, including a number of instructions to make a terminal device (can be a mobile phone, a computer, The server, or network device, etc.) performs the method of various embodiments of the present invention.
  • Embodiments of the present invention also provide a storage medium.
  • the foregoing storage medium may be configured to store program code for performing the method steps of the above embodiment:
  • the foregoing storage medium may include, but not limited to, a USB flash drive, a Read-Only Memory (ROM), a Random Access Memory (RAM), a mobile hard disk, and a magnetic memory.
  • ROM Read-Only Memory
  • RAM Random Access Memory
  • a mobile hard disk e.g., a hard disk
  • magnetic memory e.g., a hard disk
  • the processor performs the method steps of the foregoing embodiments according to the stored program code in the storage medium.
  • modules or steps of the present invention described above can be implemented by a general-purpose computing device that can be centralized on a single computing device or distributed across a network of multiple computing devices. Alternatively, they may be implemented by program code executable by the computing device such that they may be stored in the storage device by the computing device and, in some cases, may be different from the order herein.
  • the steps shown or described are performed, or they are separately fabricated into individual integrated circuit modules, or a plurality of modules or steps thereof are fabricated as a single integrated circuit module.
  • the invention is not limited to any specific combination of hardware and software.
  • the terminal acquires a first motion track of the terminal, where the first motion track is generated according to the mobile parameter of the first terminal, and the terminal acquires the wearable device bound to the terminal.
  • a second motion trajectory wherein the second motion trajectory is generated according to a movement parameter of the wearable device
  • the terminal detects a difference between the first motion trajectory and the second motion trajectory, and the terminal determines the difference according to the difference.

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Abstract

本发明提供了一种控制终端操作的方法及装置,其中,该方法包括:终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该第一终端的移动参数生成的,该终端获取与该终端绑定的可穿戴设备的第二运动轨迹,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的,该终端检测该第一运动轨迹和该第二运动轨迹之间的差异,该终端根据该差异确定执行的预定义操作,解决了移动终端的操作复杂和操作不安全的问题,简化了移动终端的操作,保护了用户的隐私。

Description

控制终端操作的方法及装置 技术领域
本发明涉及通信领域,具体而言,涉及一种控制终端操作的方法及装置。
背景技术
人们在享受开放、共享、免费的移动互联网的同时越来越担心自己的隐私。用户有意识保护隐私的第一步就是将手机屏幕锁屏而不认别人随意看到手机里的内容。现在已经有很多种屏幕锁屏的方式:
例如,数字密码解锁,但这种解锁方式不仅增加了用户忘记密码的麻烦,也增加了第三方输入法窃取密码的安全风险。
再例如人脸解锁,为了防止用简单的静态人脸照片解锁,一般在人脸检测时要求用户眨一眨眼睛,也影响了用户体验。
再例如解锁方式是图案解锁,但这种方式依然要对手机进行一系列操作,特别是大屏手机中,单手绘制解锁图案会变得相当麻烦。
再例如指纹解锁,这种解锁方式虽然简单、安全,但是在用户手指的指纹被污染(例如手指有水、油迹等)的情况下,依然无法简单的进行解锁操作。
除解锁外,如果手机用完后需要用户手动按键才能关闭屏幕加锁,否则只能靠设定的屏幕关闭时间自动锁屏,存在一定的风险和功耗。
针对相关技术中,移动终端的操作复杂和操作不安全的问题,目前还没有有效的解决方案。
发明内容
本发明提供了一种控制终端操作的方法及装置,以至少解决相关技术中移动终端的操作复杂和操作不安全的问题。
根据本发明的一个实施例,提供了一种控制终端操作的方法,包括:
终端获取所述终端的第一运动轨迹,所述第一运动轨迹是依据所述第一终端的移动参数生成的;
所述终端获取与所述终端绑定的可穿戴设备的第二运动轨迹,其中,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
所述终端检测所述第一运动轨迹和所述第二运动轨迹之间的差异,所述终端根据所述差 异确定执行的预定义操作。
在本发明实施例中,所述终端获取所述终端的第一运动轨迹包括:
所述终端获取触发信号,判断所述触发信号是否达到预设触发条件;在所述触发信号达到所述预设触发条件的情况下,所述终端获取所述终端的所述第一运动轨迹。
在本发明实施例中,所述触发信号包括:所述终端的加速度;所述预设触发条件包括:预设加速度阈值。
在本发明实施例中,所述终端检测所述第一运动轨迹和所述第二运动轨迹之间的差异包括:
获取所述第一运动轨迹上第一类检测点和所述第二运动轨迹上第二类检测点的针对所述移动参数的差值,其中,所述第一类测点和所述第二类检测点均包括多个时间点或多个运动点。
在本发明实施例中,根据所述差值确定执行的预定义操作,包括以下之一:
判断所述差值是否在第一预设差值阈值范围内,若在所述第一预设差值范围内,则确定所述第一运动轨迹和所述第二运动轨迹一致,所述终端执行所述预定义操作中的第一类操作,所述第一类操作包括以下至少之一:点亮屏幕,解锁操作。
判断所述差值是否超过第二预设差值阈值范围,若超过所述第二预设差值范围,则确定所述第一运动轨迹和所述第二运动轨迹不一致,所述终端执行所述预定义操作中的第二类操作,所述第二类操作包括以下至少之一:发送报警信号,设置所述终端的操作权限,关闭屏幕,加锁操作。
在本发明实施例中,所述终端执行所述预定义操作中的第一类操作之前,包括:
所述终端获取所述终端与所述终端对面障碍物的距离值;判断所述距离值是否达到预设距离阈值,其中,在达到所述预设距离阈值的情况下,所述终端执行所述预定义操作的所述第一类操作。
在本发明实施例中,所述移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
根据本发明的另一个实施例,还提供了一种控制终端操作的方法,包括:
终端获取所述终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
所述终端获取与所述终端绑定的可穿戴设备的差异信息,所述差异信息是所述第一运动轨迹和第二运动轨迹之间的差异,其中,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
所述终端根据所述差异信息确定执行的预定义操作。
根据本发明的另一个实施例,还提供了一种控制终端操作的方法,包括:
可穿戴设备获取所述可穿戴设备的第二运动轨迹,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
所述可穿戴设备发送所述第二运动轨迹给与所述可穿戴设备绑定的终端,其中,所述第二运动轨迹用于与所述终端的第一运动轨迹进行比较,获取所述第一运动轨迹与所述第二运动轨迹之间的差异,所述差异用于控制所述终端执行预定义操作,其中,所述第一运动轨迹是依据所述终端的移动参数生成的。
在本发明实施例中,所述移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
根据本发明的另一个实施例,还提供了一种控制终端操作的方法,包括:
可穿戴设备获取与所述可穿戴设备绑定的终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
所述可穿戴设备获取所述可穿戴设备的第二运动轨迹,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
所述可穿戴设备发送差异信息给所述终端,其中,所述差异信息是所述第一运动轨迹和所述第二运动轨迹之间的差异。
根据本发明的另一个实施例,还提供了一种控制终端操作的装置,位于终端中,包括:
第一获取模块,设置为所述终端获取所述终端的第一运动轨迹,所述第一运动轨迹是依据所述第一终端的移动参数生成的;
第二获取模块,设置为所述终端获取与所述终端绑定的可穿戴设备的第二运动轨迹,其中,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
第一执行模块,设置为所述终端检测所述第一运动轨迹和所述第二运动轨迹之间的差异,所述终端根据所述差异确定执行的预定义操作。
在本发明实施例中,所述装置还包括:
触发模块,设置为所述终端获取触发信号,判断所述触发信号是否达到预设触发条件;在所述触发信号达到所述预设触发条件的情况下,所述终端获取所述终端的所述第一运动轨迹。
在本发明实施例中,所述触发信号包括:所述终端的加速度;所述预设触发条件包括:预设加速度阈值。
在本发明实施例中,所述第一执行模块包括:
检测单元,设置为获取所述第一运动轨迹上第一类检测点和所述第二运动轨迹上第二类检测点的针对所述移动参数的差值,其中,所述第一类测点和所述第二类检测点均包括多个 时间点或多个运动点。
在本发明实施例中,所述第一执行模块包括以下之一:
第一判断单元,设置为判断所述差值是否在第一预设差值阈值范围内,若在所述第一预设差值范围内,则确定所述第一运动轨迹和所述第二运动轨迹一致,所述终端执行所述预定义操作中的第一类操作,所述第一类操作包括以下至少之一:点亮屏幕,解锁操作。
第二判断单元,设置为判断所述差值是否超过第二预设差值阈值范围,若超过所述第二预设差值范围,则确定所述第一运动轨迹和所述第二运动轨迹不一致,所述终端执行所述预定义操作中的第二类操作,所述第二类操作包括以下至少之一:发送报警信号,设置所述终端的操作权限,关闭屏幕,加锁操作。
在本发明实施例中,所述第一执行模块包括:
所述第三判断单元,设置为所述终端执行所述预定义操作中的第一类操作之前,所述终端获取所述终端与所述终端对面障碍物的距离值;判断所述距离值是否达到预设距离阈值,其中,在达到所述预设距离阈值的情况下,所述终端执行所述预定义操作的所述第一类操作。
在本发明实施例中,所述移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
根据本发明的另一个实施例,还提供了一种控制终端操作的装置,位于可穿戴设备中,其包括:
第三获取模块,设置为所述可穿戴设备获取所述可穿戴设备的第二运动轨迹,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
第一发送模块,设置为所述可穿戴设备发送所述第二运动轨迹给与所述可穿戴设备绑定的终端,其中,所述第二运动轨迹设置为与所述终端的第一运动轨迹进行比较,获取所述第一运动轨迹与所述第二运动轨迹之间的差异,所述差异用于控制所述终端执行预定义操作,其中,所述第一运动轨迹是依据所述终端的移动参数生成的。
在本发明实施例中,所述移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
根据本发明的另一个实施例,还提供了一种控制终端操作的装置,位于终端上,包括:
第四获取模块,设置为终端获取所述终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
第五获取模块,设置为所述终端获取与所述终端绑定的可穿戴设备的差异信息,所述差异信息是所述第一运动轨迹和第二运动轨迹之间的差异,其中,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
第二执行模块,设置为所述终端根据所述差异信息确定执行的预定义操作。
根据本发明的另一个实施例,还提供了一种控制终端操作的装置,位于可穿戴设备上, 包括:
第六获取模块,设置为可穿戴设备获取与所述可穿戴设备绑定的终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
第七获取模块,设置为所述可穿戴设备获取所述可穿戴设备的第二运动轨迹,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
第二发送模块,设置为所述可穿戴设备发送差异信息给所述终端,其中,所述差异信息是所述第一运动轨迹和所述第二运动轨迹之间的差异。
通过本发明,终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该第一终端的移动参数生成的,该终端获取与该终端绑定的可穿戴设备的第二运动轨迹,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的,该终端检测该第一运动轨迹和该第二运动轨迹之间的差异,该终端根据该差异确定执行的预定义操作,解决了移动终端的操作复杂和操作不安全的问题,简化了移动终端的操作,保护了用户的隐私。
附图说明
此处所说明的附图用来提供对本发明的进一步理解,构成本申请的一部分,本发明的示意性实施例及其说明用于解释本发明,并不构成对本发明的不当限定。在附图中:
图1是根据本发明实施例的一种控制终端操作的方法的流程图一;
图2是根据本发明实施例的一种控制终端操作的方法的流程图二;
图3是根据本发明实施例的一种控制终端操作的方法的流程图三;
图4是根据本发明实施例的一种控制终端操作的方法的流程图四;
图5是根据本发明实施例的一种控制终端操作的装置的结构框图一;
图6是根据本发明实施例的一种控制终端操作的装置的结构框图二;
图7是根据本发明实施例的一种控制终端操作的装置的结构框图三;
图8是根据本发明实施例的一种控制终端操作的装置的结构框图四;
图9是根据本发明优选实施例的一种控制终端设备的装置的结构框图;
图10是根据本发明优选实施例的一种控制终端设备的方法的流程图一;
图11是根据本发明优选实施例的一种控制终端设备的方法的流程图二;
图12是根据本发明优选实施例的一种控制终端设备的方法的流程图三;
图13是根据本发明优选实施例的一种控制终端设备的方法的流程图四。
具体实施方式
下文中将参考附图并结合实施例来详细说明本发明。需要说明的是,在不冲突的情况下,本申请中的实施例及实施例中的特征可以相互组合。
需要说明的是,本发明的说明书和权利要求书及上述附图中的术语“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。
在本实施例中提供了一种控制终端操作的方法,图1是根据本发明实施例的一种控制终端操作的方法的流程图一,如图1所示,该流程包括如下步骤:
步骤S102,终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该第一终端的移动参数生成的;
步骤S104,该终端获取与该终端绑定的可穿戴设备的第二运动轨迹,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的;
步骤S106,该终端检测该第一运动轨迹和该第二运动轨迹之间的差异,该终端根据该差异确定执行的预定义操作。
通过上述步骤,终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该第一终端的移动参数生成的,该终端获取与该终端绑定的可穿戴设备的第二运动轨迹,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的,该终端检测该第一运动轨迹和该第二运动轨迹之间的差异,该终端根据该差异确定执行的预定义操作,解决了移动终端的操作复杂和操作不安全的问题,简化了移动终端的操作,保护了用户的隐私。
在本实施例中,该终端获取触发信号,判断该触发信号是否达到预设触发条件;在该触发信号达到该预设触发条件的情况下,该终端获取该终端的该第一运动轨迹,其中,该触发信号包括:该终端的加速度;该预设触发条件包括:预设加速度阈值。
在本实施例中,获取该第一运动轨迹上第一类检测点和该第二运动轨迹上第二类检测点的针对该移动参数的差值,其中,该第一类测点和该第二类检测点均包括多个时间点或多个运动点。
判断该差值是否在第一预设差值阈值范围内,若在该第一预设差值范围内,则确定该第一运动轨迹和该第二运动轨迹一致,该终端执行该预定义操作中的第一类操作,该第一类操作包括以下至少之一:点亮屏幕,解锁操作。
判断该差值是否超过第二预设差值阈值范围,若超过该第二预设差值范围,则确定该第一运动轨迹和该第二运动轨迹不一致,该终端执行该预定义操作中的第二类操作,该第二类操作包括以下至少之一:发送报警信号,设置该终端的操作权限,关闭屏幕,加锁操作。
在本实施例中,该终端执行该预定义操作中的第一类操作之前,该终端获取该终端与该终端对面障碍物的距离值;判断该距离值是否达到预设距离阈值,其中,在达到该预设距离 阈值的情况下,该终端执行该预定义操作的该第一类操作。
在上述实施例中,,该移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
在本实施例中提供了一种控制终端操作的方法,图2是根据本发明实施例的一种控制终端操作的方法的流程图二,如图2所示,该流程包括如下步骤:
步骤S202,可穿戴设备获取该可穿戴设备的第二运动轨迹,该第二运动轨迹是依据该可穿戴设备的移动参数生成的;
步骤S204,该可穿戴设备发送该第二运动轨迹给与该可穿戴设备绑定的终端,其中,该第二运动轨迹用于与该终端的第一运动轨迹进行比较,获取该第一运动轨迹与该第二运动轨迹之间的差异,该差异用于控制该终端执行预定义操作,其中,该第一运动轨迹是依据该终端的移动参数生成的。
通过上述步骤,可穿戴设备获取该可穿戴设备的第二运动轨迹,该第二运动轨迹是依据该可穿戴设备的移动参数生成的,该可穿戴设备发送该第二运动轨迹给该终端,其中,该第二运动轨迹用于与该终端的第一运动轨迹进行比较,获取该第一运动轨迹与该第二运动轨迹之间的差异,该差异用于控制该终端执行预定义操作,其中,该第一运动轨迹是依据该终端的移动参数生成的,解决了移动终端的操作复杂和操作不安全的问题,简化了移动终端的操作,保护了用户的隐私。
在本实施例中,该移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
在本实施例中还提供了一种控制终端操作的方法,图3是根据本发明实施例的一种控制终端操作的方法的流程图三,如图3所示,该流程包括如下步骤:
步骤S302,终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该终端的移动参数生成的;
步骤S304,该终端获取与该终端绑定的可穿戴设备的差异信息,该差异信息是该第一运动轨迹和第二运动轨迹之间的差异,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的;
步骤S306,该终端根据该差异信息确定执行的预定义操作。
在本实施例中还提供了一种控制终端操作的方法,图4是根据本发明实施例的一种控制终端操作的方法的流程图四,如图4所示,该流程包括如下步骤:
步骤S402,可穿戴设备获取与该可穿戴设备绑定的终端的第一运动轨迹,该第一运动轨迹是依据该终端的移动参数生成的;
步骤S404,该可穿戴设备获取该可穿戴设备的第二运动轨迹,该第二运动轨迹是依据该可穿戴设备的移动参数生成的;
步骤S406,该可穿戴设备发送差异信息给该终端,其中,该差异信息是该第一运动轨迹 和该第二运动轨迹之间的差异。
在本实施例中还提供了一种控制终端操作的装置,该装置用于实现上述实施例及优选实施方式,已经进行过说明的不再赘述。如以下所使用的,术语“模块”可以实现预定功能的软件和/或硬件的组合。尽管以下实施例所描述的装置较佳地以软件来实现,但是硬件,或者软件和硬件的组合的实现也是可能并被构想的。
图5是根据本发明实施例的一种控制终端操作的装置的结构框图一,如图5所示,位于终端中,该装置包括:
第一获取模块52,设置为该终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该第一终端的移动参数生成的;
第二获取模块54,设置为该终端获取与该终端绑定的可穿戴设备的第二运动轨迹,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的;
第一执行模块56,设置为该终端检测该第一运动轨迹和该第二运动轨迹之间的差异,该终端根据该差异确定执行的预定义操作。
通过上述装置,终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该第一终端的移动参数生成的,该终端获取与该终端绑定的可穿戴设备的第二运动轨迹,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的,该终端检测该第一运动轨迹和该第二运动轨迹之间的差异,该终端根据该差异确定执行的预定义操作,解决了移动终端的操作复杂和操作不安全的问题,简化了移动终端的操作,保护了用户的隐私。
在本实施例中,该装置还包括:
触发模块,设置为该终端获取触发信号,判断该触发信号是否达到预设触发条件;在该触发信号达到该预设触发条件的情况下,该终端获取该终端的该第一运动轨迹。
在本实施例中,该触发信号包括:该终端的加速度;该预设触发条件包括:预设加速度阈值。
在本实施例中,该第一执行模块56包括:
检测单元,设置为获取该第一运动轨迹上第一类检测点和该第二运动轨迹上第二类检测点的针对该移动参数的差值,其中,该第一类测点和该第二类检测点均包括多个时间点或多个运动点。
在本实施例中,该第一执行模块56包括以下之一:
第一判断单元,设置为判断该差值是否在第一预设差值阈值范围内,若在该第一预设差值范围内,则确定该第一运动轨迹和该第二运动轨迹一致,该终端执行该预定义操作中的第一类操作,该第一类操作包括以下至少之一:点亮屏幕,解锁操作。
第二判断单元,设置为判断该差值是否超过第二预设差值阈值范围,若超过该第二预设 差值范围,则确定该第一运动轨迹和该第二运动轨迹不一致,该终端执行该预定义操作中的第二类操作,该第二类操作包括以下至少之一:发送报警信号,设置该终端的操作权限,关闭屏幕,加锁操作。
在本实施例中,该第一执行模块56包括
该第三判断单元,设置为该终端执行该预定义操作中的第一类操作之前,该终端获取该终端与该终端对面障碍物的距离值;判断该距离值是否达到预设距离阈值,其中,在达到该预设距离阈值的情况下,该终端执行该预定义操作的该第一类操作。
在本实施例中,该移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
图6是根据本发明实施例的一种控制终端操作的装置的结构框图二,如图6所示,位于可穿戴设备中,该装置包括:
第三获取模块62,设置为该可穿戴设备获取该可穿戴设备的第二运动轨迹,该第二运动轨迹是依据该可穿戴设备的移动参数生成的;
第一发送模块64,设置为该可穿戴设备发送该第二运动轨迹给与该可穿戴设备绑定的终端,其中,该第二运动轨迹用于与该终端的第一运动轨迹进行比较,获取该第一运动轨迹与该第二运动轨迹之间的差异,该差异用于控制该终端执行预定义操作,其中,该第一运动轨迹是依据该终端的移动参数生成的。
通过上述装置,可穿戴设备获取该可穿戴设备的第二运动轨迹,该第二运动轨迹是依据该可穿戴设备的移动参数生成的,该可穿戴设备发送该第二运动轨迹给该终端,其中,该第二运动轨迹用于与该终端的第一运动轨迹进行比较,获取该第一运动轨迹与该第二运动轨迹之间的差异,该差异用于控制该终端执行预定义操作,其中,该第一运动轨迹是依据该终端的移动参数生成的,解决了移动终端的操作复杂和操作不安全的问题,简化了移动终端的操作,保护了用户的隐私。
在本实施例中,该移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
图7是根据本发明实施例的一种控制终端操作的装置的结构框图三,如图7所示,位于终端中,该装置包括:
第四获取模块72,设置为终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该终端的移动参数生成的;
第五获取模块74,设置为该终端获取与该终端绑定的可穿戴设备的差异信息,该差异信息是该第一运动轨迹和第二运动轨迹之间的差异,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的;
第二执行模块76,设置为该终端根据该差异信息确定执行的预定义操作。
图8是根据本发明实施例的一种控制终端操作的装置的结构框图四,如图8所示,位于 可穿戴设备中,该装置包括:
第六获取模块82,设置为可穿戴设备获取与该可穿戴设备绑定的终端的第一运动轨迹,该第一运动轨迹是依据该终端的移动参数生成的;
第七获取模块84,设置为该可穿戴设备获取该可穿戴设备的第二运动轨迹,该第二运动轨迹是依据该可穿戴设备的移动参数生成的;
第二发送模块86,设置为该可穿戴设备发送差异信息给该终端,其中,该差异信息是该第一运动轨迹和该第二运动轨迹之间的差异。
下面结合优选实施例和实际应用场景对本发明进行详细说明。
用户对移动终端的屏幕进行解锁或者加锁的方式主要是通过按压移动终端的某个物理按键点亮屏幕或关闭屏幕,解锁还需要利用指定的手势操作触摸屏来实现,例如按键点亮移动终端的触摸屏后,将触摸屏上的一滑块滑动至指定位置。上述解锁方式需要用户拿起移动终端后,对移动终端进行一定的操作,如按压移动终端的某个物理按键才能解锁,解锁过程复杂,解锁方式不直观。用户需要一种既能保证安全又能简单操作的手机解锁和锁定方式,应该是自热而然的,不需要用户太多的操作介入其中。现在可穿戴式设备比如说智能手环等配件越来越成熟,越来越受到很多人的喜爱,与智能手机互相配合可以起到体验新颖而且较为实用的作用,但是,手环手表往往都只是局限与较为单一的功能,比如说检测生理指标然后将信息发给手机端,或者控制手机音乐播放,或者电子围栏等功能。
本优选实施例的利用可穿戴设备对移动终端的进行操作,实现了能保证安全又能简单操作的手机解锁新方式,这种解锁方式应该是自然而然,不需要用户太多的操作介入解锁过程中。
本发明实施例提供了一种控制终端设备的方法及装置,使得操作移动设备更加简单和直观。该移动终端通过传感器检测是否满足启动与之绑定的可穿戴设备的触发条件;若满足,则该移动终端启动与之绑定的可穿戴设备,检测可穿戴设备和移动终端的运动轨迹是否存在符合相关策略的特征;若符合,则该移动终端执行预定义的操作,提升用户体验。
带有可穿戴设备例如手环或手表的用户拿起放在桌子上的手机举到面前,手机立刻自动点亮屏幕并解锁,无需用户进行任何参与,简单自然安全;当用户将手机用完后放在桌子上或者口袋里,手机立刻自动关闭屏幕并加锁,减少功耗并无需用户进行按键锁屏,简单自然安全;用户的手机被用户之外的其他人移动,手机立刻自动发出提醒,保证手机的安全;用户的手机被用户借给他人使用,手机立刻进入访客模式,保护用户隐私。
本优选实施例提供了一种控制终端设备的方法,该方法包括如下内容:
该移动终端通过近场无线通信方式与可穿戴设备建立连接,包括:终端通过近场无线通信方式向可穿戴设备发起连接请求,可穿戴设备通过近场无线通信方式接收终端发起的连接请求,可穿戴设备与终端建立连接;
或者,可穿戴设备通过近场无线通信方式向终端发起连接请求,终端通过近场无线通信方式接收可穿戴设备发起的连接请求,移动终端与可穿戴设备建立连接。
上述方案中,该移动终端根据自身与可穿戴设备的连接状态对后续的操作进行处理,后续操作必须建立在移动终端和可穿戴设备的正常连接状态下。
在本优选实施例中,移动终端周期性检测与可穿戴设备的连接状态,如果终端与可穿戴设备处于连接状态,则可以正常执行后续操作;如果终端与可穿戴设备处于未连接状态,则提示用户重新进行连接。
在本优选实施例中,近场无线通信方式为蓝牙连接、红外连接、wifi连接等。两个设备基于近场无线通信方式建立连接为现有技术,此处不再赘述。
在本优选实施例中,移动终端可以周期性检测与可穿戴设备的连接状态,如果移动终端与可穿戴设备处于连接状态,表明移动终端处于用户的可控范围内,保证后续自动点亮屏幕和解锁的安全,如果移动终端与可穿戴设备处于未连接状态,表明移动终端已脱离用户的可控范围,则不执行后续一系列操作,例如自动点亮屏幕和解锁操作。
该移动终端通过传感器检测是否满足启动可穿戴设备的触发条件包括:该移动终端利用加速度传感器检测该移动终端的加速度,当该移动终端的加速度满足一定条件时,该移动终端启动与之绑定的可穿戴设备进行运动轨迹的检测。
在本优选实施例中,移动终端通过集成在硅晶片上的微机电系统(Micro-Electro-Mechanical System,简称为MEMS)测量x,y,z三轴的加速度值。静止时会测到1g的重力加速度。利用加速度传感器检测该移动终端的加速度值。
该移动终端和可穿戴设备通过传感器检测运动轨迹是否满足符合相关策略的特征包括:该移动终端利用运动传感器检测该移动终端的运动轨迹,该可穿戴设备利用运动传感器检测该可穿戴设备的运动轨迹,并对两者的运动轨迹进行比较,当该移动终端和可穿戴设备的运动轨迹满足一定条件时,执行预定义的操作。上述符合策略的特征可根据用户的需要重新进行设置。
目前移动终端已经内置了种类繁多的传感器,该运动轨迹是反映终端在具体某一环境下的实际运动情况的具体量值,该运动轨迹包括单位时间内移动终端的各个运动方向上的速度、位移距离和坐标只。根据该终端的运动轨迹,即预设时间周期内各个时间点的加速度、方向和角速度和坐标值,判断移动终端和可穿戴设备的运动轨迹吻合度是否等于预设阈值。
在本优选实施例中,运动轨迹的计算方法为:采用重力传感器、地磁传感器和陀螺仪所获取的三维坐标对运动轨迹进行量化,一般来说现有移动终端基本上都配备了上述传感器。该预设周期是预先设置的移动终端采集传感设备数据的固定时长。优选的,该预设周期为0.1秒钟。在预设周期内,手机通过重力传感器采集加速度、地磁传感器采集运动方向和陀螺仪采集角速度,实时保存上述数据,利用这三组参数由CPU调用存储器内部算法程序,算出手机的运动轨迹。
在本优选实施例中,运动轨迹的计算方法为:移动终端和可穿戴设备可以利用陀螺仪的感应数据计算陀螺仪感应到的移动作为终端的运动轨迹。终端内配备的陀螺仪可以为三轴陀螺仪,三轴陀螺仪也叫微机电陀螺仪,该三轴陀螺仪内部含有一块微型词性体,可以在移动终端运动时产生的科里奥里力作用下向空间的3个纬度(X轴、Y轴、Z轴)发生位移,并记录发生位移时的方向及加速度,并将检测得到的数据转换为移动终端可识别的感应数据,使得移动终端可利用陀螺仪的感应数据得到移动终端的运动轨迹。终端将获取终端内配备的陀螺仪在预置的时间段内的感应数据,利用该感应数据计算陀螺仪感应到的终端的运动轨迹,采用传感器按照预设频率采集预设时间周期内移动终端的加速度、方向和角速度和坐标值。根据预设时间周期内移动终端的加速度、方向和角速度和坐标值生成移动终端的运动轨迹。
在本优选实施例中,计算移动终端的运动轨迹与可穿戴设备的的运动轨迹一致,或者计算的移动终端的运动轨迹包含可穿戴设备的运动轨迹,该判断运动轨迹是否一致的方法为;比较移动终端和可穿戴设备在预设频率采集预设时间周期内的加速度、方向、角速度和坐标值等数值,按照预设采样间隔采集m个运动点的运动参数值,例如加速度、方向、角速度和坐标值等,待比较的数值可以是加速度、方向、角速度和坐标值其中的一个或者多个,依次判断m个运动点或者是若干个相同时间点内的移动终端的与可穿戴设备各自的运动参数值的差值是否在预设的误差范围之内,比较结果在一定误差范围内,则认为是运动轨迹一致。出厂设置时建立一个具有一定范围的误差值,使得移动终端的与可穿戴设备的运动轨迹具有一定的容忍范围,只要满足其范围均可认为是一致,可以提高手机的智能化程度,带来良好的用户体验。
在本优选实施例中,该移动终端利用距离传感器周期性地检测该移动终端屏幕与对面物体之间的距离;当该距离达到设定阈值时,移动终端执行对应操作,例如点亮屏幕并解锁。若在第一时间间隔内检测不到该符合策略的特征,则该移动终端关闭屏幕,进入预锁定状态,并继续检测在第二时间间隔内是否有符合解锁策略的特征;若有,则该移动终端从预锁定状态切换为解锁状态;若没有,则该移动终端从预锁定状态切换为锁定状态。
在本优选实施例中,还提供了一种控制终端设备的装置,图9是根据本发明优选实施例的一种控制终端设备的装置的结构框图,如图9所示,该移动终端包括:
启动检测单元,设置为当移动终端处于某种状态时,通过加速度传感器检测是否满足启动可穿戴设备的触发条件;
该启动检测单元包括:加速度传感器,设置为检测该移动终端的加速度。
移动终端可为手机、平板电脑等便携式终端。当移动终端未被使用,例如被放置在桌子、口袋或者包里处于锁定状态时,移动终端内置的低功耗的传感器始终运行,移动终端利用内置的传感器检测自身目前的状态是否满足启动可穿戴设备的触发条件。当该移动终端的加速度达到预设的条件时,确定满足启动可穿戴设备。
当移动终端瞬间受到的加速度达到预设阈值时,则认为移动终端可能是被用户拿起准备使用,或者是被用户使用完后放置。移动终端可接收用户预先设置的阈值,将加速度传感器 检测到的移动终端当前的加速度与用户预先设置的阈值进行比较以判断移动终端当前的加速度是否达到预设阈值。
运动轨迹检测单元,在满足移动终端加速度阈值的情况下,启动可穿戴设备运动轨迹检测单元和移动终端的运动轨迹检测单元,并检测可穿戴设备和移动终端是否存在符合策略的特征;移动终端可接受用户预先设定的符合策略的特征,该预设条件可以是可穿戴设备运动轨迹和移动终端的运动轨迹接近或者完成相反等等情况。
操作执行单元,设置为在检测到该运动轨迹满足符合策略的特征时,执行预定义操作。
预设值存储单元,设置为存储预先设置的值或条件,和实际检测的值进行比较。当移动终端出厂时,可由厂商预先设置一个适当的加速度阈值,用户可根据需要修改该阈值,此处用预设阈值表示所设置的加速度阈值。当移动终端出厂时,可由厂商预先设置一个适当的运动轨迹比较值,用户可根据需要修改该值,此处用运动轨迹比较值表示所设置的运动轨迹比较值。运动轨迹比较值可以是可穿戴设备运动轨迹和移动终端的运动轨迹接近或者完成相反等等情况。
在本优选实施例中,本发明提供了一种控制终端设备的方法和装置,本优选实施例以带有可穿戴设备手环或手表(以手表为例)的用户拿起放在桌子上的手机举到面前为例,描述了手机立刻自动点亮屏幕并解锁的具体过程,无需用户进行任何参与,简单自然安全,图10是根据本发明优选实施例的一种控制终端设备的方法的流程图一,如图10所示,该方法包括如下步骤:
步骤1001、当移动终端处于锁定状态时,移动终端通过传感器检测是否满足启动预先绑定的可穿戴设备的触发条件;
当移动终端处于锁定状态时,移动终端利用加速度传感器检测自身的加速度。
当移动终端检测到加速度未达到阈值,或者检测到移动终端和可穿戴设备的运动轨迹未达到预定策略时,或者检测到屏幕与对面物体之间的距离未到达阈值时,都将保持屏幕锁定,回到初始状态。
步骤1002、用户拿起放在桌子上的手机,移动终端由静止产生了加速度,传感器检测到移动终端目前的加速度满足启动可穿戴设备手表的触发条件,若满足,则移动终端启动预先绑定的可穿戴设备手表。
判断加速度是否达到预设阈值,若达到,则执行步骤1003,若不达到,则回到初始状态步骤1001。
步骤1003、启动可穿戴设备手表的触发条件,该移动终端利用运动传感器检测该移动终端的运动轨迹,该可穿戴设备手表利用运动传感器检测该手表的运动轨迹,用户使用配带手表的手臂从桌子上拿起手机并举到面前,运动传感器检测两者的运动轨迹。
步骤1004、检测移动终端和可穿戴设备手表运动轨迹是否存在符合预定策略的特征;若 符合,则移动终端执行预定义操作。若不符合,则回到初始状态步骤1001。
步骤1005、当该移动终端和可穿戴设备的运动轨迹满足接近的条件时,执行预定义的操作。该预定义操作为移动终端执行屏幕解锁和点亮。
当移动终端检测到运动轨迹满足接近的条件时,可认为移动终端有可能是被用户拿起准备使用,也有可能是移动终端被用户拿起将要放入口袋或包里,移动终端只是被用户从桌子上拿走并不使用。为了进一步确认当前是否需要对移动终端进行点亮屏幕并解锁,防止误操作,移动终端可启动距离传感器检测移动终端屏幕与对面物体之间的距离。判断所检测到的距离是否达到阈值,若达到,则执行步骤1005;
当移动终端出厂时,可由厂商预先设置一个适当的距离阈值,用户可根据需要修改该阈值,当距离传感器检测到移动终端屏幕与对面物体之间的距离达到阈值时,则认为当前移动终端所处的状况适合点亮屏幕和解锁,反之,则认为移动终端当前所处的状况不适合点亮屏幕和解锁。
例如,移动终端被放置在桌面,在用户只是将其从桌面拿起放入口袋但并不使用的时候,移动终端瞬间受到了一个很大的加速度,达到了预设的阈值,此时触发了可穿戴设备手表和手机运动轨迹的检测并满足预定义的策略,而此时距离传感器检测到移动终端屏幕与对面物体之间的距离很大,此距离未达到预设的阈值,例如预设的阈值为5cm至30cm,而距离传感器检测到的距离大于30cm或小于2cm,说明移动终端可能只是被用户拿起或者放入口袋里,移动终端所处的状况将被判定为不适合进行点亮屏幕和解锁;反之,若距离传感器检测到移动终端屏幕与对面物体之间距离达到阈值,则认为此时移动终端所处的状况适合进行点亮屏幕和解锁,对应的,距离传感器检测的距离可能是移动终端屏幕与正对着的用户身体的某个部位之间的距离。
在本实施例中,当移动终端处于锁定状态时,移动终端通过加速度传感器与运动轨迹检测的配合来检测是否满足解锁和点亮屏幕的触发条件,当移动终端置于桌面和用户口袋中时,移动终端通过传感器检测是否满足一定的加速度条件,若满足,则启动预先绑定的可穿戴设备手表,并检测两者的运动轨迹是否存在一致或接近,若接近则执行屏幕解锁点亮操作。与现有的解锁方法相比,本实施例通过解锁过程中不需要用户刻意在移动终端上进行按键、点击等操作,解锁点亮屏幕的过程在不知不觉中进行,解锁方式简单直观。与现有的解锁方法相比,用户想要使用移动终端时,拿起移动终端即可实现解锁和点亮屏幕进行直接操作,解锁之前不需要先点亮屏幕再刻意在移动终端上进行按键、点击等操作,解锁过程在不知不觉中进行,解锁方式简单安全。
需要说明的是,上述步骤是利用距离传感器搭配来检测是否点亮屏幕和解锁是可选的,在实际应用中,也可单独使用加速度传感器或者单独使用运动轨迹检测来判断是否满足点亮屏幕和解锁的触发条件。
在本优选实施例中,当移动终端处于锁定状态时,移动终端通过加速度传感器与运动轨迹检测的配合来检测是否满足解锁和点亮屏幕的触发条件,当移动终端置于桌面和用户口袋 中时,移动终端通过传感器检测是否满足一定的加速度条件,若满足,则启动预先绑定的可穿戴设备手表,并检测两者的运动轨迹是否存在一致或接近,若接近则执行屏幕解锁点亮操作。与现有的解锁方法相比,本实施例通过解锁过程中不需要用户刻意在移动终端上进行按键、点击等操作,解锁点亮屏幕的过程在不知不觉中进行,解锁方式简单直观。与现有的解锁方法相比,用户想要使用移动终端时,拿起移动终端即可实现解锁和点亮屏幕进行直接操作,解锁之前不需要先点亮屏幕再刻意在移动终端上进行按键、点击等操作,解锁过程在不知不觉中进行,解锁方式简单安全。
在本优选实施例中,本优选实施例还提供了一种控制终端设备的方法和装置,本实施例以带有可穿戴设备手环或手表(以手环为例)的用户口袋或包里的手机被其他人拿走为例,描述了手机立刻自动报警提醒用户的具体过程,保证用户手机安全,图11是根据本发明优选实施例的一种控制终端设备的方法的流程图二,如图11所示,该方法包括:
步骤1101、当移动终端位于用户口袋或包里,或者置于桌面上时,移动终端通过传感器检测是否满足启动预先绑定的可穿戴设备的触发条件;
当移动终端处于上述未使用的状态时,移动终端利用加速度传感器检测自身的加速度。
当移动终端检测到加速度未达到阈值,或者检测到移动终端和可穿戴设备的运动轨迹未达到预定策略时,都将保持屏幕锁定,回到初始状态。
步骤1102、假设用户口袋里的手机被其他人拿走,移动终端由静止产生了加速度,传感器检测到移动终端目前的加速度满足启动可穿戴设备手环的触发条件,若满足,则移动终端启动预先绑定的可穿戴设备手环。
判断加速度是否达到预设阈值,若达到,则执行步骤1103,若不达到,则继续执行步骤1101;
步骤1103、启动可穿戴设备手表的触发条件,该移动终端利用运动传感器检测该移动终端的运动轨迹,该可穿戴设备手表利用运动传感器检测该手表的运动轨迹。
步骤1104、检测移动终端和可穿戴设备手表运动轨迹是否存在符合预定策略的特征;用户配带手环的手臂假设此刻是静止的,当前的运动轨迹为静止。而手机被从口袋里拿走的时候,运动传感器检测到手机的运动轨迹和手环的运动轨迹差异很大。
若符合,则移动终端执行预定义操作。若不符合,则回到初始状态步骤1101。
步骤1105、移动终端执行预定义的操作。
当该移动终端和可穿戴设备的运动轨迹满足具有一定差异的条件时,执行预定义的操作。该预定义操作为移动终端执行报警操作。该报警操作可以为声音提示等。
在本优选实施例中,当该移动终端和可穿戴设备的运动轨迹满足具有一定差异的条件时,则执行预定义的操作。该预定义的操作为移动终端执行报警操作,可选的,预定义的操作可以由用户自行设定为其他操作。例如设定预定义的操作为改变终端的用户权限,当非本人使 用该手机时,只能对特定权限的功能进行操作,保护用户隐私。
当移动终端出厂时,可由厂商预先设置一个适当的运动轨迹比较策略,用户可根据需要修改该策略,当该移动终端和可穿戴设备的运动轨迹满足具有一定差异的条件时,则认为当前移动终端所处的状况不是用户本人在操作,则移动终端执行预定义的操作,反之,则认为移动终端当前所处的状况正常。
在本优选实施例中,当移动终端处于锁定状态时,移动终端通过加速度传感器与运动轨迹检测的配合来检测是否满足报警的触发条件,当移动终端置于桌面和用户口袋中时,移动终端通过传感器检测是否满足一定的加速度条件,若满足,则启动预先绑定的可穿戴设备手环,并检测两者的运动轨迹是否存在一定差异,若差异满足预先设定的策略则认为移动终端非用户本人操作,则执行终端预定义的操作,例如报警或者设置操作权限等。与现有技术相比,本实施例通过比较用户配带的手表或手环等可穿戴设备和移动终端的运动轨迹判断是否用户本人操作移动终端,安全可靠性更高。
在本优选实施例中,当移动终端处于锁定状态时,移动终端通过加速度传感器与运动轨迹检测的配合来检测是否满足报警的触发条件,当移动终端置于桌面和用户口袋中时,移动终端通过传感器检测是否满足一定的加速度条件,若满足,则启动预先绑定的可穿戴设备手环,并检测两者的运动轨迹是否存在一定差异,若差异满足预先设定的策略则执行终端报警操作。与现有的丢失报警方法相比,本优选实施例通过比较用户配带的手表或手环等可穿戴设备和移动终端的运动轨迹,安全性更高。
本优选实施例还提供了一种控制终端设备的方法和装置,本实施例以带有可穿戴设备手环或手表(以手环为例)的用户操作完手机放到桌面为例,描述了手机立刻自动关闭屏幕并加锁的具体过程,保证用户手机信息安全,图12是根据本发明优选实施例的一种控制终端设备的方法的流程图三,如图12所示,该方法包括:
步骤1201、当用户操作移动终端时,移动终端通过传感器检测是否满足启动预先绑定的可穿戴设备的触发条件;
当移动终端处于上述状态时,移动终端利用加速度传感器检测自身的加速度。
当移动终端检测到加速度未达到阈值,或者检测到移动终端和可穿戴设备的运动轨迹未达到预定策略时,都将回到初始状态。
步骤1202、假设用户使用完手机后将其放置到桌面,移动终端由运动到静止加速度减少为零,传感器检测移动终端目前的加速度是否满足启动可穿戴设备手环的触发条件,若满足,则移动终端启动预先绑定的可穿戴设备手环。
在该实施例中,触发条件设定为加速度由非零突然减少为零。移动终端判断加速度的改变是否达到预设条件,若达到,则执行步骤1203,若不达到,则回到初始步骤1201。
步骤1203、启动可穿戴设备手环的触发条件,该移动终端利用运动传感器检测该移动终 端的运动轨迹,该可穿戴设备手表利用运动传感器检测该手表的运动轨迹。
步骤1204、检测移动终端和可穿戴设备手表运动轨迹是否存在符合预定策略的特征;用户配带手环的手臂假设此刻是静止的,当前的运动轨迹为静止。而手机被从口袋里拿走的时候,运动传感器检测到手机的运动轨迹和手环的运动轨迹差异很大。
步骤1205、若符合,则移动终端执行预定义的操作。
当该移动终端和可穿戴设备的运动轨迹满足具有一定差异的条件时,执行预定义的操作。该预定义操作为移动终端执行关闭屏幕和加锁操作。
在本优选实施例中,移动终端通过加速度传感器与运动轨迹检测的配合来检测是否满足关闭屏幕显示和加锁的触发条件,当移动终端从用户手持的使用状态到置于桌面后,移动终端通过传感器检测到加速度由非零突然改变为零,当满足这一预设条件时,则启动预先绑定的可穿戴设备手环,并检测两者的运动轨迹是否存在一定差异,若差异满足预先设定的策略则认为移动终端被置于桌面,则执行终端关闭屏幕和加锁操作,例与现有技术相比,本实施例通过比较用户配带的手表或手环等可穿戴设备和移动终端的运动轨迹判断是否关闭屏幕和加锁,省去了用户本人手动关闭移动终端,也有效避免了用户忘记关闭屏幕的风险,整个过程更加自然简单。
在本优选实施例中,移动终端通过加速度传感器与运动轨迹检测的配合来检测是否满足关闭屏幕显示和加锁的触发条件,当移动终端从用户手持的使用状态到置于桌面后,移动终端通过传感器检测到加速度由非零突然改变为零,当满足这一预设条件时,则启动预先绑定的可穿戴设备手环,并检测两者的运动轨迹是否存在一定差异,若差异满足预先设定的策略则认为移动终端被置于桌面,则执行终端关闭屏幕和加锁操作,例与现有技术相比,本实施例通过比较用户配带的手表或手环等可穿戴设备和移动终端的运动轨迹判断是否关闭屏幕和加锁,省去了用户本人手动关闭移动终端,也有效避免了用户忘记关闭屏幕的风险,整个过程更加自然简单。
在本优选实施例中,本优选实施例还提供了一种控制终端设备的方法和装置,本实施例以带有可穿戴设备手环或手表(以手表为例)的用户将手机递给其他人为例,描述了手机立刻进入访客模式的具体过程,无需用户进行任何参与,简单自然安全,图13是根据本发明优选实施例的一种控制终端设备的方法的流程图四,如图13所示,该方法包括:
步骤1301、当移动终端处于锁定状态时,移动终端通过传感器检测是否满足启动预先绑定的可穿戴设备的触发条件;
当移动终端处于锁定状态时,移动终端利用加速度传感器检测自身的加速度。
当移动终端检测到加速度未达到阈值,或者检测到移动终端和可穿戴设备的运动轨迹未达到预定策略时,都将保持屏幕锁定,回到初始状态。
步骤1302、用户拿起手机,移动终端由静止产生了加速度,传感器检测到移动终端目前 的加速度满足启动可穿戴设备手表的触发条件,若满足,则移动终端启动预先绑定的可穿戴设备手表。
判断加速度是否达到预设阈值,若达到,则执行步骤1303,若不达到,则回到初始状态步骤1301。
步骤1303、启动可穿戴设备手表的触发条件,该移动终端利用运动传感器检测该移动终端的运动轨迹,该可穿戴设备手表利用运动传感器检测该手表的运动轨迹,用户使用配带手表的手臂拿起手机并递给其他用户,其他用户接过手机,运动传感器检测两者的运动轨迹。
步骤1304、检测移动终端和可穿戴设备手表运动轨迹是否存在符合预定策略的特征;若符合,则移动终端执行预定义操作。若不符合,则回到初始状态步骤1301。
步骤1305、当该移动终端和可穿戴设备的运动轨迹满足接近的条件时,执行预定义的操作。该预定义操作为移动终端执行进入访客模式,保护用户隐私,使得其他用户只能访问预先定义的内容。
在本优选实施例中,移动终端被用户拿起递给其他用户,移动终端瞬间受到了一个很大的加速度,达到了预设的阈值,此时触发了可穿戴设备手表和手机运动轨迹的检测,检测结果是运动轨迹一致,之后用户将移动终端递给其他用户,其他用户接过移动终端,此时继续可穿戴设备手表和手机运动轨迹的检测,检测结果是运动轨迹不一致,两者的运动轨迹的检测结果从一致变化到不一致,满足预定义的策略,认为此时移动终端被其他用户持有,所处的状况适合进入访客模式,访客模式由用户事先定义其他用户可以访问的内容,从而保护用户隐私。与现有的加密方法相比,本实施例通过手机传递过程中不需要用户刻意在移动终端上进行按键、点击等操作,隐私加密的过程在不知不觉中进行,进入访客模式的方式简单安全。
在本优选实施例中,移动终端被用户拿起递给其他用户,移动终端瞬间受到了一个很大的加速度,达到了预设的阈值,此时触发了可穿戴设备手表和手机运动轨迹的检测,检测结果是运动轨迹一致,之后用户将移动终端递给其他用户,其他用户接过移动终端,此时继续可穿戴设备手表和手机运动轨迹的检测,检测结果是运动轨迹不一致,两者的运动轨迹的检测结果从一致变化到不一致,满足预定义的策略,认为此时移动终端被其他用户持有,所处的状况适合进入访客模式,访客模式由用户事先定义其他用户可以访问的内容,从而保护用户隐私。与现有的加密方法相比,本实施例通过手机传递过程中不需要用户刻意在移动终端上进行按键、点击等操作,隐私加密的过程在不知不觉中进行,进入访客模式的方式简单安全。
通过以上的实施方式的描述,本领域的技术人员可以清楚地了解到根据上述实施例的方法可借助软件加必需的通用硬件平台的方式来实现,当然也可以通过硬件,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质(如ROM/RAM、磁碟、光盘)中,包括若干指令用以使得一台终端设备(可以是手机,计算机, 服务器,或者网络设备等)执行本发明各个实施例该的方法。
本发明的实施例还提供了一种存储介质。可选地,在本实施例中,上述存储介质可以被设置为存储用于执行上述实施例方法步骤的程序代码:
可选地,在本实施例中,上述存储介质可以包括但不限于:U盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、移动硬盘、磁碟或者光盘等各种可以存储程序代码的介质。
可选地,在本实施例中,处理器根据存储介质中已存储的程序代码执行上述实施例的方法步骤。
显然,本领域的技术人员应该明白,上述的本发明的各模块或各步骤可以用通用的计算装置来实现,它们可以集中在单个的计算装置上,或者分布在多个计算装置所组成的网络上,可选地,它们可以用计算装置可执行的程序代码来实现,从而,可以将它们存储在存储装置中由计算装置来执行,并且在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤,或者将它们分别制作成各个集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。这样,本发明不限制于任何特定的硬件和软件结合。
以上该仅为本发明的优选实施例而已,并不用于限制本发明,对于本领域的技术人员来说,本发明可以有各种更改和变化。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。
工业实用性
基于本发明实施例提供的上述技术方案,终端获取该终端的第一运动轨迹,该第一运动轨迹是依据该第一终端的移动参数生成的,该终端获取与该终端绑定的可穿戴设备的第二运动轨迹,其中,该第二运动轨迹是依据该可穿戴设备的移动参数生成的,该终端检测该第一运动轨迹和该第二运动轨迹之间的差异,该终端根据该差异确定执行的预定义操作,解决了移动终端的操作复杂和操作不安全的问题,简化了移动终端的操作,保护了用户的隐私。

Claims (22)

  1. 一种控制终端操作的方法,包括:
    终端获取所述终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
    所述终端获取与所述终端绑定的可穿戴设备的第二运动轨迹,其中,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
    所述终端检测所述第一运动轨迹和所述第二运动轨迹之间的差异,所述终端根据所述差异确定执行的预定义操作。
  2. 根据权利要求1所述的方法,其中,所述终端获取所述终端的第一运动轨迹包括:
    所述终端获取触发信号,判断所述触发信号是否达到预设触发条件;在所述触发信号达到所述预设触发条件的情况下,所述终端获取所述终端的所述第一运动轨迹。
  3. 根据权利要求2所述的方法,其中,所述触发信号包括:所述终端的加速度;所述预设触发条件包括:预设加速度阈值。
  4. 根据权利要求1所述的方法,其中,所述终端检测所述第一运动轨迹和所述第二运动轨迹之间的差异包括:
    获取所述第一运动轨迹上第一类检测点和所述第二运动轨迹上第二类检测点的针对所述移动参数的差值,其中,所述第一类测点和所述第二类检测点均包括多个时间点或多个运动点。
  5. 根据权利要求4所述的方法,其中,根据所述差值确定执行的预定义操作,包括以下之一:
    判断所述差值是否在第一预设差值阈值范围内,若在所述第一预设差值范围内,则确定所述第一运动轨迹和所述第二运动轨迹一致,所述终端执行所述预定义操作中的第一类操作,所述第一类操作包括以下至少之一:点亮屏幕,解锁操作;
    判断所述差值是否超过第二预设差值阈值范围,若超过所述第二预设差值范围,则确定所述第一运动轨迹和所述第二运动轨迹不一致,所述终端执行所述预定义操作中的第二类操作,所述第二类操作包括以下至少之一:发送报警信号,设置所述终端的操作权限,关闭屏幕,加锁操作。
  6. 根据权利要求5所述的方法,其中,所述终端执行所述预定义操作中的第一类操作之前,包括:
    所述终端获取所述终端与所述终端对面障碍物的距离值;判断所述距离值是否达到预设距离阈值,其中,在达到所述预设距离阈值的情况下,所述终端执行所述预定义操作的所述第一类操作。
  7. 根据权利要求1至权利要求6任一项所述的方法,其中,所述移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
  8. 一种控制终端操作的方法,包括:
    终端获取所述终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
    所述终端获取与所述终端绑定的可穿戴设备的差异信息,所述差异信息是所述第一运动轨迹和第二运动轨迹之间的差异,其中,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
    所述终端根据所述差异信息确定执行的预定义操作。
  9. 一种控制终端操作的方法,包括:
    可穿戴设备获取所述可穿戴设备的第二运动轨迹,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
    所述可穿戴设备发送所述第二运动轨迹给与所述可穿戴设备绑定的终端,其中,所述第二运动轨迹用于与所述终端的第一运动轨迹进行比较,获取所述第一运动轨迹与所述第二运动轨迹之间的差异,所述差异用于控制所述终端执行预定义操作,其中,所述第一运动轨迹是依据所述终端的移动参数生成的。
  10. 根据权利要求9所述的方法,其中,所述移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
  11. 一种控制终端操作的方法,包括:
    可穿戴设备获取与所述可穿戴设备绑定的终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
    所述可穿戴设备获取所述可穿戴设备的第二运动轨迹,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
    所述可穿戴设备发送差异信息给所述终端,其中,所述差异信息是所述第一运动轨迹和所述第二运动轨迹之间的差异。
  12. 一种控制终端操作的装置,位于终端中,包括:
    第一获取模块,设置为所述终端获取所述终端的第一运动轨迹,所述第一运动轨迹是依据所述第一终端的移动参数生成的;
    第二获取模块,设置为所述终端获取与所述终端绑定的可穿戴设备的第二运动轨迹,其中,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
    第一执行模块,设置为所述终端检测所述第一运动轨迹和所述第二运动轨迹之间的 差异,所述终端根据所述差异确定执行的预定义操作。
  13. 根据权利要求12所述的装置,其中,所述装置还包括:
    触发模块,设置为所述终端获取触发信号,判断所述触发信号是否达到预设触发条件;在所述触发信号达到所述预设触发条件的情况下,所述终端获取所述终端的所述第一运动轨迹。
  14. 根据权利要求13所述的装置,其中,所述触发信号包括:所述终端的加速度;所述预设触发条件包括:预设加速度阈值。
  15. 根据权利要求12所述的装置,其中,所述第一执行模块包括:
    检测单元,设置为获取所述第一运动轨迹上第一类检测点和所述第二运动轨迹上第二类检测点的针对所述移动参数的差值,其中,所述第一类测点和所述第二类检测点均包括多个时间点或多个运动点。
  16. 根据权利要求12所述的装置,其中,所述第一执行模块包括以下之一:
    第一判断单元,设置为判断所述差值是否在第一预设差值阈值范围内,若在所述第一预设差值范围内,则确定所述第一运动轨迹和所述第二运动轨迹一致,所述终端执行所述预定义操作中的第一类操作,所述第一类操作包括以下至少之一:点亮屏幕,解锁操作;
    第二判断单元,设置为判断所述差值是否超过第二预设差值阈值范围,若超过所述第二预设差值范围,则确定所述第一运动轨迹和所述第二运动轨迹不一致,所述终端执行所述预定义操作中的第二类操作,所述第二类操作包括以下至少之一:发送报警信号,设置所述终端的操作权限,关闭屏幕,加锁操作。
  17. 根据权利要求16所述的装置,其中,所述第一执行模块包括
    所述第三判断单元,设置为所述终端执行所述预定义操作中的第一类操作之前,所述终端获取所述终端与所述终端对面障碍物的距离值;判断所述距离值是否达到预设距离阈值,其中,在达到所述预设距离阈值的情况下,所述终端执行所述预定义操作的所述第一类操作。
  18. 根据权利要求12至权利要求17任一项所述的装置,其中,所述移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
  19. 一种控制终端操作的装置,位于可穿戴设备中,包括:
    第三获取模块,设置为所述可穿戴设备获取所述可穿戴设备的第二运动轨迹,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
    第一发送模块,设置为所述可穿戴设备发送所述第二运动轨迹给与所述可穿戴设备绑定的终端,其中,所述第二运动轨迹用于与所述终端的第一运动轨迹进行比较,获取 所述第一运动轨迹与所述第二运动轨迹之间的差异,所述差异用于控制所述终端执行预定义操作,其中,所述第一运动轨迹是依据所述终端的移动参数生成的。
  20. 根据权利要求19所述的装置,其中,所述移动参数包括以下至少之一:加速度,方向,角速度,坐标值。
  21. 一种控制终端操作的装置,位于终端上,包括:
    第四获取模块,设置为终端获取所述终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
    第五获取模块,设置为所述终端获取与所述终端绑定的可穿戴设备的差异信息,所述差异信息是所述第一运动轨迹和第二运动轨迹之间的差异,其中,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
    第二执行模块,设置为所述终端根据所述差异信息确定执行的预定义操作。
  22. 一种控制终端操作的装置,位于可穿戴设备上,包括:
    第六获取模块,设置为可穿戴设备获取与所述可穿戴设备绑定的终端的第一运动轨迹,所述第一运动轨迹是依据所述终端的移动参数生成的;
    第七获取模块,设置为所述可穿戴设备获取所述可穿戴设备的第二运动轨迹,所述第二运动轨迹是依据所述可穿戴设备的移动参数生成的;
    第二发送模块,设置为所述可穿戴设备发送差异信息给所述终端,其中,所述差异信息是所述第一运动轨迹和所述第二运动轨迹之间的差异。
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106483882A (zh) * 2016-10-21 2017-03-08 广东乐源数字技术有限公司 一种手环放手灭屏的控制方法
WO2018036565A1 (zh) * 2016-08-26 2018-03-01 华为技术有限公司 终端的控制方法、终端、智能穿戴设备和系统

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106899491A (zh) * 2017-02-06 2017-06-27 努比亚技术有限公司 一种移动终端和处理语音信息的方法
CN108242126A (zh) * 2018-03-20 2018-07-03 四川大学 一种可主动探测和识别危险并警报的智能可穿戴设备
CN110705972A (zh) * 2019-10-15 2020-01-17 珠海优特物联科技有限公司 智能印章的使用管控方法及装置
CN113051538B (zh) * 2021-03-31 2023-05-23 维沃移动通信有限公司 信息解锁方法和电子设备
CN116761180A (zh) * 2023-08-21 2023-09-15 北京中科心研科技有限公司 基于移动轨迹的设备交互方法、系统、电子设备及介质

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20140001344A (ko) * 2012-06-26 2014-01-07 이화여자대학교 산학협력단 이동단말기의 잠금 해제 방법, 이 잠금 해제 방법을 사용하는 이동단말기 및 이동단말기에서 작동하는 애플리케이션의 서비스 시작 방법
CN103647587A (zh) * 2013-12-30 2014-03-19 华为终端有限公司 为移动终端解锁的方法、系统、移动终端及穿戴电子设备
CN103760982A (zh) * 2014-01-22 2014-04-30 深圳市金立通信设备有限公司 一种控制终端屏幕状态的方法及终端
CN104541282A (zh) * 2014-05-14 2015-04-22 华为技术有限公司 解锁方法、装置及设备

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR20140001344A (ko) * 2012-06-26 2014-01-07 이화여자대학교 산학협력단 이동단말기의 잠금 해제 방법, 이 잠금 해제 방법을 사용하는 이동단말기 및 이동단말기에서 작동하는 애플리케이션의 서비스 시작 방법
CN103647587A (zh) * 2013-12-30 2014-03-19 华为终端有限公司 为移动终端解锁的方法、系统、移动终端及穿戴电子设备
CN103760982A (zh) * 2014-01-22 2014-04-30 深圳市金立通信设备有限公司 一种控制终端屏幕状态的方法及终端
CN104541282A (zh) * 2014-05-14 2015-04-22 华为技术有限公司 解锁方法、装置及设备

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2018036565A1 (zh) * 2016-08-26 2018-03-01 华为技术有限公司 终端的控制方法、终端、智能穿戴设备和系统
CN107786721A (zh) * 2016-08-26 2018-03-09 华为终端(东莞)有限公司 终端的控制方法、终端、智能穿戴设备和系统
US11003224B2 (en) 2016-08-26 2021-05-11 Huawei Technologies Co., Ltd. Control method for terminal, terminal, intelligent wearable device, and system
US11579666B2 (en) 2016-08-26 2023-02-14 Honor Device Co., Ltd. Control method for terminal, terminal, intelligent wearable device, and system
CN106483882A (zh) * 2016-10-21 2017-03-08 广东乐源数字技术有限公司 一种手环放手灭屏的控制方法
WO2018072616A1 (zh) * 2016-10-21 2018-04-26 广东乐源数字技术有限公司 一种手环放手灭屏的控制方法
CN106483882B (zh) * 2016-10-21 2020-02-21 广东乐源数字技术有限公司 一种手环放手灭屏的控制方法

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