WO2016169107A1 - 来电接听方法及装置 - Google Patents

来电接听方法及装置 Download PDF

Info

Publication number
WO2016169107A1
WO2016169107A1 PCT/CN2015/080648 CN2015080648W WO2016169107A1 WO 2016169107 A1 WO2016169107 A1 WO 2016169107A1 CN 2015080648 W CN2015080648 W CN 2015080648W WO 2016169107 A1 WO2016169107 A1 WO 2016169107A1
Authority
WO
WIPO (PCT)
Prior art keywords
call
mobile terminal
incoming call
preset
motion data
Prior art date
Application number
PCT/CN2015/080648
Other languages
English (en)
French (fr)
Inventor
吴礼庆
Original Assignee
中兴通讯股份有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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 WO2016169107A1 publication Critical patent/WO2016169107A1/zh

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M19/00Current supply arrangements for telephone systems
    • H04M19/02Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone
    • H04M19/04Current supply arrangements for telephone systems providing ringing current or supervisory tones, e.g. dialling tone or busy tone the ringing-current being generated at the substations
    • 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 intelligent terminal technologies, and in particular, to a call answering method and device.
  • the main purpose of the embodiments of the present invention is to provide a method and device for answering incoming calls, which are intended to answer incoming calls simply and quickly.
  • an embodiment of the present invention provides a call answering method, where the call answering method includes:
  • the mobile terminal When the mobile terminal detects the incoming call information, it switches to the incoming call state;
  • the mobile terminal acquires motion data when it is in an incoming call state
  • the mobile terminal When the motion data meets a preset call condition, the mobile terminal turns on an incoming call.
  • the incoming call information is forwarded to the mobile terminal by another mobile terminal when receiving an incoming call.
  • the step of the mobile terminal turning on an incoming call includes:
  • the mobile terminal When the motion data meets a preset call condition, the mobile terminal sends an answer request to the other mobile terminal, so that the other mobile terminal turns on the received call according to the answer request;
  • the mobile terminal establishes a call connection with the other mobile terminal for the user to make a call based on the call connection.
  • the step of the mobile terminal acquiring motion data when it is in an incoming call state includes:
  • the mobile terminal acquires a distance between the mobile terminal and the user's face
  • the mobile terminal When the distance is less than a preset listening distance, the mobile terminal acquires motion data when it is in an incoming call state.
  • the preset call condition includes the acceleration value being located in a preset acceleration interval of the triggered call, and the The displacement distance exceeds a preset displacement distance of the triggered call; when the motion data includes the number of changes of the acceleration direction of the mobile terminal, the preset call condition includes the change of the preset number of triggered calls frequency.
  • an embodiment of the present invention further provides a call answering device, where the call answering device includes:
  • the state switching module is configured to switch the mobile terminal to the incoming call state when the incoming call information is detected;
  • a data acquisition module configured to obtain motion data of a mobile terminal in which the mobile terminal is located in an incoming call state
  • the call module is configured to turn on the incoming call when the motion data meets the preset call condition.
  • the incoming call information is forwarded by the other mobile terminal to the state switching module when receiving an incoming call.
  • the call module is further configured to: when the motion data meets a preset call condition, send an answer request to the other mobile terminal, for the other mobile terminal to connect according to the answer request And the establishment of a call connection with the other mobile terminal for the user to make a call based on the call connection.
  • the data acquisition module is further configured to acquire a distance between the mobile terminal where the mobile terminal is located and the user's face; and when the distance is less than the preset listening distance, obtain the motion of the mobile terminal in which the mobile terminal is located in an incoming call state. data.
  • the preset call condition includes the acceleration value being located at a preset acceleration of the triggered call. And the displacement distance exceeds a preset displacement distance of the triggered call; when the motion data includes the number of changes of the acceleration direction of the mobile terminal where the state switching module is located, the preset call condition includes the The number of changes reaches the preset number of changes in the triggered call.
  • the mobile terminal When the mobile terminal detects the incoming call information, the mobile terminal switches to the incoming call state; the mobile terminal acquires the motion data when it is in the incoming call state; and when the motion data meets the preset call condition, the mobile terminal The mobile terminal connects the incoming call.
  • the user does not need to perform a touch operation and/or perform a button operation.
  • the embodiment of the present invention makes the incoming call answering operation of the mobile terminal more convenient and fast.
  • FIG. 1 is a schematic flow chart of a first embodiment of a call answering method according to the present invention
  • FIG. 2 is a schematic structural diagram of a function module of a first embodiment of the incoming call answering apparatus of the present invention.
  • the embodiment of the present invention provides a call answering method.
  • the call answering method includes the following steps:
  • the mobile terminal switches to an incoming call state when detecting the incoming call information.
  • the call answering method provided by the embodiment of the invention is mainly applied to the incoming call processing of the mobile terminal, and the mobile terminal may be a mobile phone, a smart watch, a notebook computer, a digital broadcast receiver, a PDA (personal digital assistant), a PAD (tablet computer). , PMP (portable multimedia player), navigation device and other mobile terminals.
  • the mobile terminal may be a mobile phone, a smart watch, a notebook computer, a digital broadcast receiver, a PDA (personal digital assistant), a PAD (tablet computer). , PMP (portable multimedia player), navigation device and other mobile terminals.
  • PMP portable multimedia player
  • the mobile terminal when detecting the incoming call information, switches to the incoming call state to prompt the user that there is an incoming call, and the user determines whether to answer the incoming call.
  • an incoming call prompt is made by voice, image, and/or vibration to allow the user to confirm whether to answer the incoming call.
  • the mobile terminal acquires motion data when it is in an incoming call state.
  • the implementation of the embodiment of the present invention is based on a gesture operation of the user.
  • the mobile terminal acquires motion data when it is in an incoming call state to determine whether the user needs to connect the incoming call.
  • the mobile terminal turns on an incoming call when the motion data meets a preset call condition.
  • the mobile terminal when the motion data meets the preset call condition, the user agrees to answer the incoming call, and the mobile terminal connects the incoming call, so that the user can make a call based on the mobile terminal.
  • the mobile phone analyzes the motion data of the incoming call state, and concludes that the user's operation is: pick up the mobile phone and put it to the ear, for the preset answering operation, the mobile phone connects the incoming call for the user. Make a call.
  • the preset call condition includes the acceleration value being located in a preset acceleration interval of the triggered call, and the The displacement distance exceeds a preset displacement distance of the triggered call; when the motion data includes the number of changes of the acceleration direction of the mobile terminal, the preset call condition includes the change of the preset number of triggered calls frequency.
  • the mobile terminal has a built-in three-axis acceleration sensor for collecting acceleration values of the mobile terminal in three directions (X-axis, Y-axis, and Z-axis).
  • the X-axis and the Y-axis are in a horizontal direction and intersect perpendicularly
  • the Z-axis is in a vertical direction, and perpendicularly intersects the Y-axis and the X-axis at the same time.
  • two types of answering triggers are provided: the arm lifts up to answer the incoming call and shakes the incoming call. The following describes the two methods of receiving triggers:
  • the mobile terminal determines that the arm raises the condition for answering the incoming call:
  • the mobile terminal determines a condition for shaking and receiving an incoming call:
  • Trigger the above condition times> 3 times (the mobile terminal acceleration changes at least 3 times), where mNewX represents the latest X-axis acceleration, mNewY represents the latest Y-axis acceleration, mNewZ represents the latest Z-axis acceleration, and mLastX represents the previous time point X-axis acceleration. , mLastY represents the Y-axis acceleration at the last time point, and mLastZ represents the Z-axis acceleration difftime at the previous time point, indicating the time difference between the acquisition time of the three-axis acceleration sensor and the previous acquisition time;
  • the mobile terminal updates the preset call condition according to the acquired user behavior data, so that the mobile terminal performs the call answering operation more accurately.
  • the current mobile terminal triggers the call displacement distance threshold to be 50 cm, and the mobile terminal analyzes the user behavior data for a certain period of time, and updates the displacement distance threshold of the triggered call to 60 cm.
  • the method for answering calls when the mobile terminal detects the incoming call information, switches to the incoming call state; the mobile terminal acquires the motion data when it is in the incoming call state; and the motion data satisfies the preset
  • the mobile terminal connects the incoming call when the call condition is met.
  • the user does not need to perform a touch operation and/or perform a button operation.
  • the embodiment of the present invention makes the incoming call answering operation of the mobile terminal more convenient and fast.
  • a second embodiment of the call answering method of the embodiment of the present invention is proposed.
  • the incoming call information is forwarded to the mobile terminal by another mobile terminal when receiving an incoming call.
  • the incoming call of the mobile terminal is forwarded by other mobile terminals.
  • the smart watch functions as a wearable device that is worn on the wrist of the user.
  • the mobile phone receives an incoming call, it sends the caller information to the smart watch that is paired with it, and the user raises the arm to make a preset answering action to connect the call and make a call. Since the user does not need to find the mobile phone and perform the touch operation and/or the button operation, in the driving scenario, the embodiment makes the incoming call answering operation of the mobile terminal more convenient, fast and safe.
  • the mobile terminal when the mobile terminal is in an incoming call state, the user can answer the incoming call, and can also reject the incoming call. Further, when the mobile terminal receives the reject command input by the user, the mobile terminal exits the incoming call state, and sends a reject request to the other mobile terminal, so that it rejects the call according to the reject request. Call.
  • the mobile terminal displays a reject button on its screen when in an incoming call state, and the mobile terminal triggers a reject request when detecting a touch operation of the user to reject the button; or
  • the mobile terminal detects that the voice information input by the user is “rejected”, the mobile terminal triggers the rejection request; or the mobile terminal acquires the motion data when the mobile terminal meets the state of the incoming call, when the motion data meets the preset rejection request.
  • the mobile terminal exits the incoming call state and sends a reject request to the other mobile terminal for rejecting the incoming call according to the rejection request.
  • the mobile terminal if the mobile terminal does not detect any user operation during its incoming call state, the mobile terminal directly sends a reject request to the other mobile terminal.
  • step S30 includes:
  • the mobile terminal When the motion data meets a preset call condition, the mobile terminal sends an answer request to the other mobile terminal, so that the other mobile terminal turns on the received call according to the answer request;
  • the mobile terminal establishes a call connection with the other mobile terminal for the user to make a call based on the call connection.
  • the mobile terminal since the incoming call received by the mobile terminal is forwarded by the other mobile terminal, after the other mobile terminal connects the incoming call, the mobile terminal needs to establish a call connection with the other mobile terminal. For the user to make a call through the mobile terminal.
  • the mobile terminal is a smart watch, and the other mobile terminal describes the above steps for the mobile phone:
  • the smart watch When the motion data of the smart watch meets the preset call condition, the smart watch sends a call request to the mobile phone paired with the mobile phone; the mobile phone connects the received call according to the answer request sent by the smart watch, and returns the information that the call has been connected to A smart watch; when the smart watch detects that the incoming call has been connected, establishes a call connection based on the paired connection with the mobile phone for the user to make a call based on the call connection.
  • the user enters the smart watch system setting interface to open the Bluetooth, and clicks into the Bluetooth setting interface, clicks the Bluetooth name to set its Bluetooth to the detectable state; the user enters the mobile phone system setting interface to open the Bluetooth, and clicks into the Bluetooth setting interface, clicks the search, in the After the search is completed, find the aforementioned smart watch in the list of available devices, click on the name of the smart watch to pair, and the user clicks on the Bluetooth pairing request box displayed by the mobile phone and the smart watch respectively. Pair the buttons to complete the pairing. After the pairing is completed, when the mobile phone calls, the user operates the smart watch according to the preset manner, and then the call can be made through the smart watch.
  • the call answering method further includes:
  • the mobile terminal acquires motion data when it is in a call state
  • the mobile terminal When the motion data meets a preset termination call condition, the mobile terminal sends a hang up request to the other mobile terminal, so that the other mobile terminal hangs up the incoming call according to the hang up request;
  • the mobile terminal disconnects a call with the other mobile terminal.
  • the user may trigger the mobile terminal to perform an answering operation by using a preset answering gesture, or trigger the mobile terminal to suspend the operation by a preset hanging gesture.
  • the mobile terminal acquires motion data when it is in a call state; when the motion data meets a preset termination call condition, the mobile terminal The mobile terminal sends a hang up request to the other mobile terminal, for the other mobile terminal to hang up its incoming call according to the hang up request; the mobile terminal disconnects the call connection with the other mobile terminal .
  • the preset termination call condition includes the acceleration value being located in a preset acceleration interval of the termination call, and The displacement distance exceeds a preset displacement distance of the triggering termination call;
  • the preset termination call condition includes the preset number of changes reaching a preset The number of changes that triggered the termination of the call.
  • the mobile terminal has a built-in three-axis acceleration sensor for collecting acceleration values of the mobile terminal in three directions (X-axis, Y-axis, and Z-axis).
  • the X-axis and the Y-axis are in a horizontal direction and intersect perpendicularly
  • the Z-axis is in a vertical direction, and perpendicularly intersects the Y-axis and the X-axis at the same time.
  • This embodiment provides two ways to hang up: the arm is put down to hang up the call and the call is hanged. The following two explanations are given for the two hangup trigger modes:
  • the mobile terminal determines that the arm puts down the condition for answering the incoming call:
  • Y-axis acceleration >10m/s 2 and 0m/s 2 ⁇ X/Z axis acceleration absolute value ⁇ 6m/s 2
  • Z-axis acceleration >10m/s 2 and 0m/s 2 ⁇ X/Y axis acceleration absolute value ⁇ 6m/s 2 ;
  • the first mobile terminal determines a condition for shaking and hanging an incoming call:
  • Trigger the above condition times> 3 times (the mobile terminal acceleration changes at least 3 times), where mNewX represents the latest X-axis acceleration, mNewY represents the latest Y-axis acceleration, mNewZ represents the latest Z-axis acceleration, and mLastX represents the previous time point X-axis acceleration. , mLastY represents the Y-axis acceleration at the last time point, and mLastZ represents the Z-axis acceleration difftime at the previous time point, indicating the time difference between the acquisition time of the three-axis acceleration sensor and the previous acquisition time;
  • the mobile terminal updates the preset termination call condition according to the acquired user behavior data, so that the mobile terminal performs the call suspension operation more accurately.
  • the displacement distance threshold of the current mobile terminal triggering the termination of the call is 50 cm
  • the mobile terminal analyzes the user behavior data for a certain period of time, and updates the displacement distance threshold for triggering the termination of the call to 60 cm.
  • step S20 includes:
  • the mobile terminal acquires a distance between the mobile terminal and the user's face
  • the mobile terminal When the distance is less than a preset listening distance, the mobile terminal acquires motion data when it is in an incoming call state.
  • the front surface of the mobile terminal is provided with a distance sensor for collecting the distance between the mobile terminal and the user's face.
  • a mobile phone camera can be used as the distance sensor. After the camera recognizes the user's face, the distance of the mobile phone from the user's face can be calculated by analyzing the proportion of the face occupied by the image; or the infrared pulse sensor is used.
  • the infrared pulse sensor generates a light pulse, and measures the time from the emission of the light pulse to the surface reflected by the user, and calculates the mobile phone and the user's face through the time difference. The distance between the parts.
  • the embodiment of the present invention does not limit the type of the distance sensor, and the corresponding distance sensor may be selected according to different operating conditions.
  • the mobile terminal when a user answers an incoming call, the mobile terminal needs to be placed close to the ear to answer the incoming call.
  • the distance between the mobile terminal and the user's face it can be determined whether the mobile terminal is currently close to the user's ear, and whether it is already in the to-be-answered state.
  • the embodiment of the present invention does not limit the size of the preset listening distance. For example, it may be set to 10 cm. When the distance between the mobile terminal and the user's face is less than 10 cm, the mobile terminal acquires an incoming call. The motion data in the state to determine whether the call is connected.
  • the embodiment of the present invention further provides a call answering device.
  • the call answering device includes:
  • the state switching module 10 is configured to switch the mobile terminal to the incoming call state when the incoming call information is detected;
  • the call answering device provided by the embodiment of the invention is mainly applied to the incoming call processing of the mobile terminal, and the mobile terminal can be a mobile phone, a smart watch, a notebook computer, a digital broadcast receiver, a PDA (personal digital assistant), a PAD (tablet computer). , PMP (portable multimedia player), navigation device and other mobile terminals.
  • the mobile terminal can be a mobile phone, a smart watch, a notebook computer, a digital broadcast receiver, a PDA (personal digital assistant), a PAD (tablet computer). , PMP (portable multimedia player), navigation device and other mobile terminals.
  • PMP portable multimedia player
  • the state switching module 10 when detecting the incoming call information, switches the mobile terminal to the incoming call state to prompt the user to have an incoming call, and the user determines whether to answer the incoming call.
  • an incoming call prompt is made by voice, image, and/or vibration to allow the user to confirm whether to answer the incoming call.
  • the data obtaining module 20 is configured to acquire motion data of the mobile terminal in which the mobile terminal is located in an incoming call state
  • the implementation of the embodiment of the present invention is based on a gesture operation of the user.
  • the data obtaining module 20 obtains motion data of the mobile terminal in which the mobile terminal is located in an incoming call state to determine whether the user needs to connect the incoming call.
  • the call module 30 is configured to turn on the incoming call when the motion data meets the preset call condition.
  • the call module 30 connects the call, so that the user can make a call based on the mobile terminal where the user is located.
  • the mobile phone analyzes the motion data of the incoming call state, and concludes that the user's operation is: pick up the mobile phone and put it to the ear, for the preset answering operation, the mobile phone connects the incoming call for the user to make a call.
  • the preset call condition includes that the acceleration value is located in a preset triggered call. And an acceleration interval, wherein the displacement distance exceeds a displacement distance of the preset triggering call; when the motion data includes a change number of the acceleration direction of the mobile terminal where the state switching module 10 is located, the preset call condition includes The number of changes reaches the preset number of changes in the triggered call.
  • the mobile terminal has a built-in three-axis acceleration sensor for collecting acceleration values of the mobile terminal in three directions (X-axis, Y-axis, and Z-axis).
  • the X-axis and the Y-axis are in a horizontal direction and intersect perpendicularly
  • the Z-axis is in a vertical direction, and perpendicularly intersects the Y-axis and the X-axis at the same time.
  • two types of answering triggers are provided: the arm lifts up to answer the incoming call and shakes the incoming call. The following describes the two methods of receiving triggers:
  • the calling module 30 determines that the arm raises the condition for answering the incoming call:
  • the mobile terminal determines a condition for shaking and receiving an incoming call:
  • mNewX represents the latest X-axis acceleration
  • mNewY represents the latest Y-axis acceleration
  • mNewZ represents the latest Z-axis acceleration
  • mLastX represents the previous time point X-axis acceleration.
  • mLastY represents the Y-axis acceleration at the last time point
  • mLastZ The Z-axis acceleration difftime representing the last time point represents the time difference between the current acquisition time and the last acquisition time of the three-axis acceleration sensor;
  • the mobile terminal updates the preset call condition according to the acquired user behavior data, so that the call module 30 performs the call answering operation more accurately.
  • the displacement distance threshold of the currently triggered call is 50 cm
  • the mobile terminal analyzes the user behavior data for a certain period of time, and updates the displacement distance threshold of the triggered call to 60 cm.
  • the call answering device switches to the incoming call state when the mobile terminal detects the incoming call information; the mobile terminal acquires the motion data when it is in the incoming call state; and the motion data satisfies the preset
  • the mobile terminal connects the incoming call when the call condition is met.
  • the user does not need to perform a touch operation and/or perform a button operation.
  • the embodiment of the present invention makes the incoming call answering operation of the mobile terminal more convenient and fast.
  • a second embodiment of the incoming call answering apparatus of the present invention is proposed.
  • the incoming call information is forwarded to the state switching module 10 by other mobile terminals when receiving an incoming call.
  • the incoming call of the mobile terminal where the state switching module 10 is located is forwarded by other mobile terminals.
  • the smart watch is worn as a wearable device on the wrist of the user.
  • the mobile phone receives an incoming call, it sends the caller information to the smart watch that is paired with it, and the user raises the arm to make a preset answering action to connect the call and make a call. Since the user does not need to find the mobile phone and perform the touch operation and/or the button operation, in the driving scenario, the embodiment makes the incoming call answering operation of the mobile terminal more convenient, fast and safe.
  • the mobile terminal when the mobile terminal is in an incoming call state, the user can answer the incoming call or reject the incoming call. Further, when the call module 30 receives the reject command input by the user, the state switching The module 10 controls the mobile terminal where the mobile terminal is located to exit the incoming call state; after the mobile terminal exits the incoming call state, the calling module 30 sends a reject request to the other mobile terminal for rejection according to the rejection request. Call.
  • the reject button is displayed on the screen, and the call module 30 triggers the reject request when detecting the touch operation of the user to reject the button; or The call module 30 triggers the reject request when detecting the voice information "rejected" input by the user; or the data acquisition module 20 acquires the motion data of the mobile terminal in the state of the incoming call when the mobile terminal is in motion
  • the state switching module 10 controls the mobile terminal where the mobile terminal is located to exit the incoming call state, and the calling module 30 sends a reject request to the mobile terminal after the mobile terminal exits the incoming call state. Said other mobile terminal for rejecting the incoming call according to the rejection request.
  • the call module 30 directly sends a reject request to the other mobile terminal.
  • the call module is further configured to: when the motion data meets a preset call condition, send an answer request to the other mobile terminal, for the other mobile terminal to perform the answer request according to the Turning on the incoming call; and establishing a call connection with the other mobile terminal for the user to make a call based on the call connection.
  • the call module since the incoming call received by the mobile terminal where the call module 30 is located is forwarded by the other mobile terminal, after the other mobile terminal connects the incoming call, the call module needs to be associated with the other mobile terminal. A call connection can be established for the user to make a call through the mobile terminal where they are located.
  • the mobile terminal where the calling module 30 is located is a smart watch, and the other mobile terminal describes the process of connecting the incoming call to the mobile phone:
  • the smart watch When the motion data of the smart watch meets the preset call condition, the smart watch sends a call request to the mobile phone paired with the mobile phone; the mobile phone connects the received call according to the answer request sent by the smart watch, and returns the information that the call has been connected to A smart watch; when the smart watch detects that the incoming call has been connected, establishes a call connection based on the paired connection with the mobile phone for the user to make a call based on the call connection.
  • the user enters the smart watch system setting interface to open the Bluetooth, and clicks into the Bluetooth setting interface, clicks the Bluetooth name to set its Bluetooth to the detectable state; the user enters the mobile phone system setting interface to open the Bluetooth, and clicks into the Bluetooth setting interface, clicks the search, in the After the search is completed, find the aforementioned smart watch in the list of available devices, click on the smart watch name to pair, and the user clicks the pairing button in the Bluetooth pairing request box displayed by the mobile phone and the smart watch to complete the pairing. After the pairing is completed, when the mobile phone calls, the user operates the smart watch according to the preset manner, and then the call can be made through the smart watch.
  • the data acquiring module 20 is further configured to acquire motion data when the mobile terminal where the mobile terminal is in a call state;
  • the call module 30 is further configured to send a hang up request to the other mobile terminal when the motion data meets a preset termination call condition, for the other mobile terminal to hang up according to the hang up request The incoming call; and disconnecting the call from the other mobile terminal.
  • the user may trigger the mobile terminal to perform an answering operation by using a preset answering gesture, or trigger the mobile terminal to suspend the operation by a preset hanging gesture.
  • the data acquisition module After the call module 30 establishes a call connection with the other mobile terminal (the mobile terminal where the call module 30 is located to switch to the call state), the motion data of the mobile terminal in the call state is obtained; the call module 30 Sending a hangup request to the other mobile terminal when the motion data satisfies a preset termination call condition, for the other mobile terminal to hang up its incoming call according to the hang up request; The call connection of the other mobile terminal.
  • the preset termination call condition includes the acceleration value being at a preset trigger termination. An acceleration interval of the call, and the displacement distance exceeds a displacement distance of the preset trigger termination call; when the motion data includes the number of changes of the acceleration direction of the mobile terminal where the state switching module 10 is located, the preset Terminating the call condition includes the number of changes in the number of changes to the preset trigger to terminate the call.
  • the mobile terminal of the data acquisition module 20 has a built-in three-axis acceleration sensor for collecting acceleration values of the mobile terminal in three directions (X-axis, Y-axis, Z-axis), and the data acquisition module 20 Acquire motion data of the mobile terminal where the third terminal acceleration sensor collects the motion data of the mobile terminal.
  • the X-axis and the Y-axis are in a horizontal direction and intersect perpendicularly
  • the Z-axis is in a vertical direction, and perpendicularly intersects the Y-axis and the X-axis at the same time.
  • This embodiment provides two ways to hang up: the arm is put down to hang up the call and the call is hanged. The following two explanations are given for the two hangup trigger modes:
  • the calling module 30 determines the condition that the arm puts down the incoming call:
  • Y-axis acceleration >10m/s 2 and 0m/s 2 ⁇ X/Z axis acceleration absolute value ⁇ 6m/s 2
  • Z-axis acceleration >10m/s 2 and 0m/s 2 ⁇ X/Y axis acceleration absolute value ⁇ 6m/s 2 ;
  • the calling module 30 determines the conditions for shaking and hanging the incoming call:
  • Trigger the above condition times> 3 times (the mobile terminal acceleration changes at least 3 times), where mNewX represents the latest X-axis acceleration, mNewY represents the latest Y-axis acceleration, mNewZ represents the latest Z-axis acceleration, and mLastX represents the previous time point X-axis acceleration. , mLastY represents the Y-axis acceleration at the last time point, and mLastZ represents the Z-axis acceleration difftime at the previous time point, indicating the time difference between the acquisition time of the three-axis acceleration sensor and the previous acquisition time;
  • the mobile terminal updates the preset termination call condition according to the acquired user behavior data, so that the call module 30 performs the call suspension operation more accurately.
  • the displacement distance threshold of the current call termination call is 50 cm
  • the mobile terminal analyzes the user behavior data for a certain period of time, and updates the displacement distance threshold for triggering the termination of the call to 60 cm.
  • a third embodiment of the incoming call answering apparatus of the present invention is provided.
  • the data acquiring module 20 is further configured to obtain a distance between the mobile terminal where the mobile terminal is located and the user's face; And when the distance is less than the preset listening distance, the motion data of the mobile terminal in which the mobile terminal is located is in an incoming call state.
  • the front surface of the mobile terminal is provided with a distance sensor for collecting the distance between the mobile terminal and the user's face, and the data acquisition module 20 acquires the distance data collected by the distance sensor.
  • a mobile phone camera can be used as the distance sensor. After the camera recognizes the user's face, the distance of the mobile phone from the user's face can be calculated by analyzing the proportion of the face occupied by the image; or the infrared pulse sensor is used.
  • the infrared pulse sensor calculates the distance between the mobile phone and the user's face by emitting a light pulse and measuring the time from the emission of the light pulse to the face reflected by the user. It should be noted that the embodiment of the present invention does not limit the type of the distance sensor, and the corresponding distance sensor may be selected according to different operating conditions.
  • the data acquisition module 20 can determine whether the mobile terminal that is located is close to the ear of the user and is already in the to-be-answered state according to the distance between the mobile terminal and the user's face.
  • the embodiment of the present invention does not limit the size of the preset listening distance, for example, may be set to 10 cm.
  • the data acquisition is performed.
  • the module 20 obtains its motion data in the incoming call state for the call module 30 to determine whether the incoming call is connected.
  • the above technical solution of the present invention can be applied to the technical field of intelligent terminals, and when the mobile terminal detects the incoming call information, it switches to the incoming call state; the mobile terminal acquires the motion data when it is in the incoming call state; When the motion data meets the preset call condition, the mobile terminal connects the incoming call, and the user does not need to perform the touch operation and/or perform the button operation, so that the incoming call answering operation of the mobile terminal is more convenient and fast.

Landscapes

  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Telephone Function (AREA)

Abstract

本发明公开了一种来电接听方法,所述来电接听方法包括以下步骤:移动终端在侦测到来电信息时,切换至来电呼叫状态;移动终端获取其在来电呼叫状态时的运动数据;在所述运动数据满足预设的通话条件时,移动终端接通来电。本发明还公开了一种来电接听装置。本发明能够使得移动终端的来电接听操作更加方便、快速。

Description

来电接听方法及装置 技术领域
本发明涉及智能终端技术领域,尤其涉及一种来电接听方法及装置。
背景技术
近年来,随着互联网络技术和移动通信网络技术的飞速发展,手机、平板电脑、智能手表等移动终端已经成为大众必不可少的随身物品。尤其是作为可穿戴设备的智能手表,其普及性越来越高。目前,智能手表已具备通话功能:智能手表与手机配对后,基于手机被动实现通话功能;或者,智能手表插入SIM卡后,主动实现通话功能。但是,当来电时,智能手表和手机一样,通常会在其屏幕上显示接听和挂断两个触摸按键,用户必须精确点击所述接听按键并按预设方向滑动才能接通来电,进行通话。现有技术中,移动终端来电接听操作较繁琐。
发明内容
本发明实施例的主要目的在于提供一种来电接听方法及装置,旨在简单、快速的接听来电。
为实现上述目的,本发明实施例提供一种来电接听方法,所述来电接听方法包括:
移动终端在侦测到来电信息时,切换至来电呼叫状态;
所述移动终端获取其在来电呼叫状态时的运动数据;
在所述运动数据满足预设的通话条件时,所述移动终端接通来电。
进一步地,所述来电信息由其它移动终端在接收到来电时转发至所述移动终端。
进一步地,所述在所述运动数据满足预设的通话条件时,所述移动终端接通来电的步骤包括:
在所述运动数据满足预设的通话条件时,所述移动终端发送接听请求至所述其它移动终端,以供所述其它移动终端根据所述接听请求接通其接收到的来电;
所述移动终端建立与所述其它移动终端的通话连接,以供用户基于所述通话连接进行通话。
进一步地,所述移动终端获取其在来电呼叫状态时的运动数据的步骤包括:
所述移动终端获取其与用户脸部之间的距离;
在所述距离小于预设的接听距离时,所述移动终端获取其在来电呼叫状态时的运动数据。
进一步地,在所述运动数据包括所述移动终端在预设方向的加速度值和位移距离时,所述预设的通话条件包括所述加速度值位于预设的触发通话的加速度区间,且所述位移距离超过预设的触发通话的位移距离;在所述运动数据包括所述移动终端的加速度方向的变化次数时,所述预设的通话条件包括所述变化次数达到预设的触发通话的变化次数。
此外,为实现上述目的,本发明实施例还提供一种来电接听装置,所述来电接听装置包括:
状态切换模块,设置为在侦测到来电信息时,切换其所在移动终端至来电呼叫状态;
数据获取模块,设置为获取其所在移动终端在来电呼叫状态时的运动数据;
通话模块,设置为在所述运动数据满足预设的通话条件时,接通来电。
进一步地,所述来电信息由其它移动终端在接收到来电时转发至所述状态切换模块。
进一步地,所述通话模块还设置为在所述运动数据满足预设的通话条件时,发送接听请求至所述其它移动终端,以供所述其它移动终端根据所述接听请求接通其接收到的来电;以及建立与所述其它移动终端的通话连接,以供用户基于所述通话连接进行通话。
进一步地,所述数据获取模块还设置为获取其所在移动终端与用户脸部之间的距离;以及在所述距离小于预设的接听距离时,获取其所在移动终端在来电呼叫状态时的运动数据。
进一步地,在所述运动数据包括所述状态切换模块所在的移动终端在预设方向的加速度值和位移距离时,所述预设的通话条件包括所述加速度值位于预设的触发通话的加速度区间,且所述位移距离超过预设的触发通话的位移距离;在所述运动数据包括所述状态切换模块所在的移动终端的加速度方向的变化次数时,所述预设的通话条件包括所述变化次数达到预设的触发通话的变化次数。
本发明实施例通过移动终端在侦测到来电信息时,切换至来电呼叫状态;所述移动终端获取其在来电呼叫状态时的运动数据;在所述运动数据满足预设的通话条件时,所述移动终端接通来电。相较于现有技术,无需用户进行触控操作和/或进行按键操作,本发明实施例使得移动终端的来电接听操作更加方便、快速。
附图说明
图1为本发明来电接听方法第一实施例的流程示意图;
图2为本发明来电接听装置第一实施例的功能模块结构示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明实施例提供一种来电接听方法,参照图1,在本发明来电接听方法的第一实施例中,该来电接听方法包括以下步骤:
S10,移动终端在侦测到来电信息时,切换至来电呼叫状态;
本发明实施例提供的来电接听方法主要应用于移动终端的来电处理中,所述移动终端可以是手机、智能手表、笔记本电脑、数字广播接收器、PDA(个人数字助理)、PAD(平板电脑)、PMP(便携式多媒体播放器)、导航装置等移动终端。例如,在驾车场景下:手机在接到来电时,用户拿起手机放至耳边即可进行通话,无需进行按键或触控等操作。
本实施例中,移动终端在侦测到来电信息时,切换至来电呼叫状态,以提示用户当前有来电,由用户确定是否接听来电。
本领域技术人员可以理解是,移动终端在处于来电呼叫状态时,会通过声音、图像和/或震动方式进行来电提示,以供用户确认是否接听来电。
S20,所述移动终端获取其在来电呼叫状态时的运动数据;
需要说明的是,本发明实施例的实现基于用户的手势操作。本实施例中,所述移动终端获取其在来电呼叫状态时的运动数据,以判断用户是否需要接通来电。
S30,在所述运动数据满足预设的通话条件时,所述移动终端接通来电。
本实施例中,在所述运动数据满足预设的通话条件时,说明此时用户同意接听来电,移动终端接通来电,以供用户基于所述移动终端进行通话。例如,基于前述驾车场景,手机通过分析其在来电呼叫状态的运动数据,得出用户的操作为:拿起手机,并放至耳边,为预设的接听操作,手机接通来电以供用户进行通话。
进一步地,在所述运动数据包括所述移动终端在预设方向的加速度值和位移距离时,所述预设的通话条件包括所述加速度值位于预设的触发通话的加速度区间,且所述位移距离超过预设的触发通话的位移距离;在所述运动数据包括所述移动终端的加速度方向的变化次数时,所述预设的通话条件包括所述变化次数达到预设的触发通话的变化次数。
本实施例中,移动终端内置有三轴加速度传感器器,用于采集移动终端在三个方向(X轴、Y轴、Z轴)上的加速度值。其中,X轴和Y轴位于水平方向且垂直相交,Z轴位于竖直方向,与Y轴和X轴同时垂直相交。本实施例提供两种接听触发方式:手臂抬起接听来电和摇一摇接听来电。以下对两种接听触发方式做分别说明:
所述移动终端判断手臂抬起接听来电的条件:
7m/s2>X轴加速度>5m/s2且0m/s2<Y/Z轴加速度绝对值<6m/s2
7m/s2>Y轴加速度>5m/s2且0m/s2<X/Z轴加速度绝对值<6m/s2
7m/s2>Z轴加速度>5m/s2且0m/s2<X/Y轴加速度绝对值<6m/s2
且所述移动终端位移距离:0.5*Z轴加速度*T2>50cm,其中,T为所述移动终端的位移时间(用户移动移动终端的时间),各方向的加速度值均为所述移动终端在位移时间内的平均加速度值。
所述移动终端判断摇一摇接听来电的条件:
(mNewX+mNewY+mNewZ–mLastX–mLastY–mLastZ)/difftime*1000>350时,记为加速度变化一次(用户摇一次),
触发上述条件次数>=3次(移动终端加速度变化至少3次),其中,mNewX表示最新X轴加速度,mNewY表示最新Y轴加速度,mNewZ表示最新Z轴加速度,mLastX表示上一个时间点X轴加速度,mLastY表示上一个时间点Y轴加速度,mLastZ表示上一个时间点Z轴加速度difftime表示所述三轴加速度传感器当次采集时间与上一次采集时间的时间差值;
需要说明的是,所述移动终端通过获取用户行为数据,并根据获取的用户行为数据对上述预设的通话条件进行更新,以使得所述移动终端更准确的进行来电接听操作。例如,当前移动终端触发通话的位移距离阈值为50cm,移动终端通过对一定时间内的用户行为数据进行分析,将触发通话的位移距离阈值更新为60cm。
本发明实施例提出的来电接听方法,通过移动终端在侦测到来电信息时,切换至来电呼叫状态;所述移动终端获取其在来电呼叫状态时的运动数据;在所述运动数据满足预设的通话条件时,所述移动终端接通来电。相较于现有技术,无需用户进行触控操作和/或进行按键操作,本发明实施例使得移动终端的来电接听操作更加方便、快速。
进一步地,基于第一实施例,提出本发明实施例来电接听方法的第二实施例,在本实施例中,所述来电信息由其它移动终端在接收到来电时转发至所述移动终端。
本实施例中,移动终端的来电是由其它移动终端转发的,例如,基于前述驾车场景,智能手表作为一种可穿戴设备,其佩戴于用户的手腕上。手机在接到来电时,发送来电信息至与其配对的智能手表,用户抬起手臂做预设的接听动作即可接通来电,进行通话。由于无需用户去找到手机并进行触控操作和/或进行按键操作,在驾车场景下,本实施例使得移动终端的来电接听操作更加方便、快速和安全。
众所周知的,在日常生活中,充斥着大量的骚扰电话,以及用户不想接听的来电。本实施例中,在所述移动终端处于来电呼叫状态时,用户可接听来电,也可拒接来电, 进一步地,所述移动终端在接收到用户输入的拒接指令时,所述移动终端退出来电呼叫状态,并发送拒接请求至所述其它移动终端,以供其根据所述拒接请求拒接来电。例如,所述移动终端在处于来电呼叫状态时,在其屏幕上显示拒接按键,所述移动终端在侦测到用户对拒接按键的触控操作时,触发拒接请求;或者,所述移动终端在侦测到用户输入的语音信息“拒接”时,触发拒接请求;或者,所述移动终端获取其在来电呼叫状态时的运动数据,当所述运动数据满足预设的拒接来电的条件时,所述移动终端退出来电呼叫状态,并发送拒接请求至所述其它移动终端,以供其根据所述拒接请求拒接来电。
本领域技术人员可以理解的是,所述移动终端若未在其处于来电呼叫状态期间侦测到任何用户操作,所述移动终端直接发送拒接请求至所述其它移动终端。
进一步地,在本实施例中,上述步骤S30包括:
在所述运动数据满足预设的通话条件时,所述移动终端发送接听请求至所述其它移动终端,以供所述其它移动终端根据所述接听请求接通其接收到的来电;
所述移动终端建立与所述其它移动终端的通话连接,以供用户基于所述通话连接进行通话。
本实施例中,由于所述移动终端接收到的来电是由所述其它移动终端转发的,在所述其它移动终端接通来电后,所述移动终端需要与所述其它移动终端建立通话连接才能供用户通过所述移动终端进行通话。
基于前述驾车场景,以下以所述移动终端为智能手表,所述其它移动终端为手机对上述步骤进行说明:
在智能手表的运动数据满足预设的通话条件时,智能手表发送接听请求至与其配对的手机;手机根据智能手表发送的接听请求接通其接收到的来电,并返回来电已接通的信息至智能手表;智能手表侦测到来电已接通的信息时,基于与手机之间的配对连接建立通话连接,以供用户基于所述通话连接进行通话。
此外,以下对手机和智能手表的配对过程进行说明:
用户进入智能手表系统设置界面打开蓝牙,并点击进入蓝牙设置界面,点击蓝牙名称,将其蓝牙设为可检测状态;用户进入手机系统设置界面打开蓝牙,并点击进入蓝牙设置界面,点击搜索,在搜索完成后,在可用设备列表中找到前述智能手表,点击智能手表名称进行配对,用户分别点击手机与智能手表显示的蓝牙配对请求框中的 配对按钮以完成配对。配对完成后,在手机来电时,用户按预设方式操作智能手表,即可通过智能手表进行通话。
进一步地,在本实施例中,所述移动终端建立与所述其它移动终端的通话连接,以供用户基于所述通话连接进行通话步骤之后,所述来电接听方法还包括:
所述移动终端获取其在通话状态时的运动数据;
在所述运动数据满足预设的终止通话条件时,所述移动终端发送挂断请求至所述其它移动终端,以供所述其它移动终端根据所述挂断请求挂断其接通的来电;
所述移动终端断开与所述其它移动终端的通话连接。
本实施例中,用户可通过预设的接听手势触发所述移动终端进行接听操作,也可通过预设的挂断手势触发所述移动终端进行挂断操作。进一步地,所述移动终端在与所述其它移动终端建立通话连接后(切换至通话状态),获取其在通话状态时的运动数据;在所述运动数据满足预设的终止通话条件时,所述移动终端发送挂断请求至所述其它移动终端,以供所述其它移动终端根据所述挂断请求挂断其接通的来电;所述移动终端断开与所述其它移动终端的通话连接。
进一步地,在所述运动数据包括所述移动终端在预设方向的加速度值和位移距离时,所述预设的终止通话条件包括所述加速度值位于预设的触发终止通话的加速度区间,且所述位移距离超过预设的触发终止通话的位移距离;在所述运动数据包括所述移动终端的加速度方向的变化次数时,所述预设的终止通话条件包括所述变化次数达到预设的触发终止通话的变化次数。
本实施例中,移动终端内置有三轴加速度传感器器,用于采集移动终端在三个方向(X轴、Y轴、Z轴)上的加速度值。其中,X轴和Y轴位于水平方向且垂直相交,Z轴位于竖直方向,与Y轴和X轴同时垂直相交。本实施例提供两种挂断触发方式:手臂放下挂断来电和摇一摇挂断来电。以下对两种挂断触发方式做分别说明:
所述移动终端判断手臂放下接听来电的条件:
X轴加速度>10m/s2且0m/s2<Y/Z轴加速度绝对值<6m/s2
Y轴加速度>10m/s2且0m/s2<X/Z轴加速度绝对值<6m/s2
Z轴加速度>10m/s2且0m/s2<X/Y轴加速度绝对值<6m/s2
且所述移动终端位移距离:0.5*Z轴加速度*T2>50cm,其中,T为所述移动终端的位移时间(用户移动移动终端的时间),各方向的加速度值均为所述移动终端位移时间内的平均加速度值。
所述第一移动终端判断摇一摇挂断来电的条件:
(mNewX+mNewY+mNewZ–mLastX–mLastY–mLastZ)/difftime*1000>350时,记为加速度变化一次(用户摇一次),
触发上述条件次数>=3次(移动终端加速度变化至少3次),其中,mNewX表示最新X轴加速度,mNewY表示最新Y轴加速度,mNewZ表示最新Z轴加速度,mLastX表示上一个时间点X轴加速度,mLastY表示上一个时间点Y轴加速度,mLastZ表示上一个时间点Z轴加速度difftime表示所述三轴加速度传感器当次采集时间与上一次采集时间的时间差值;
需要说明的是,所述移动终端通过获取用户行为数据,并根据获取的用户行为数据对上述预设的终止通话条件进行更新,以使得所述移动终端更准确的进行来电挂断操作。例如,当前移动终端触发终止通话的位移距离阈值为50cm,移动终端通过对一定时间内的用户行为数据进行分析,将触发终止通话的位移距离阈值更新为60cm。
进一步地,基于第一实施例,提出本发明实施例来电接听方法的第三实施例,在本实施例中,上述步骤S20包括:
所述移动终端获取其与用户脸部之间的距离;
在所述距离小于预设的接听距离时,所述移动终端获取其在来电呼叫状态时的运动数据。
本实施例中,移动终端的正表面设置有距离传感器,用于采集移动终端与用户脸部的距离。例如,可以采用手机摄像头作为所述距离传感器,摄像头识别到用户脸部后,通过分析人脸占其采集到图像的大小比例,即可计算出手机距离用户脸部的距离;或者采用红外脉冲传感器作为所述距离传感器,红外脉冲传感器通过发射光脉冲,并测量此光脉冲从发射到被用户脸部反射回来的时间,通过时间差来计算手机与用户脸 部之间的距离。需要说明的是,本发明实施例并不限制距离传感器的种类,可根据不同运行工况选择对应的距离传感器。
众所周知的,用户接听来电时需要将移动终端贴近耳部,以接听来电。本实施例中,根据获取到移动终端与用户脸部之间的距离,可以判断移动终端当前是否已靠近用户的耳部,是否已处于待接听状态。本发明实施例并不限制所述预设的接听距离的大小,例如,可以设置为10cm,当所述移动终端与用户脸部之间的距离小于10cm时,所述移动终端获取其在来电呼叫状态时的运动数据,以判断是否接通来电。
本发明实施例还提供一种来电接听装置,参照图2,在本发明来电接听装置的第一实施例中,所述来电接听装置包括:
状态切换模块10,设置为在侦测到来电信息时,切换其所在移动终端至来电呼叫状态;
本发明实施例提供的来电接听装置主要应用于移动终端的来电处理中,所述移动终端可以是手机、智能手表、笔记本电脑、数字广播接收器、PDA(个人数字助理)、PAD(平板电脑)、PMP(便携式多媒体播放器)、导航装置等移动终端。例如,在驾车场景下:手机在接到来电时,用户拿起手机放至耳边即可进行通话,无需进行按键或触控等操作。
本实施例中,状态切换模块10在侦测到来电信息时,切换其所在移动终端至来电呼叫状态,以提示用户当前有来电,由用户确定是否接听来电。
本领域技术人员可以理解是,移动终端在处于来电呼叫状态时,会通过声音、图像和/或震动方式进行来电提示,以供用户确认是否接听来电。
数据获取模块20,设置为获取其所在移动终端在来电呼叫状态时的运动数据;
需要说明的是,本发明实施例的实现基于用户的手势操作。本实施例中,所述数据获取模块20获取其所在移动终端在来电呼叫状态时的运动数据,以判断用户是否需要接通来电。
通话模块30,设置为在所述运动数据满足预设的通话条件时,接通来电。
本实施例中,在所述运动数据满足预设的通话条件时,说明此时用户同意接听来电,通话模块30接通来电,以供用户基于其所在移动终端进行通话。例如,基于前述 驾车场景,手机通过分析其在来电呼叫状态的运动数据,得出用户的操作为:拿起手机,并放至耳边,为预设的接听操作,手机接通来电以供用户进行通话。
进一步地,在所述运动数据包括所述状态切换模块10所在的移动终端在预设方向的加速度值和位移距离时,所述预设的通话条件包括所述加速度值位于预设的触发通话的加速度区间,且所述位移距离超过预设的触发通话的位移距离;在所述运动数据包括所述状态切换模块10所在的移动终端的加速度方向的变化次数时,所述预设的通话条件包括所述变化次数达到预设的触发通话的变化次数。
本实施例中,移动终端内置有三轴加速度传感器器,用于采集移动终端在三个方向(X轴、Y轴、Z轴)上的加速度值。其中,X轴和Y轴位于水平方向且垂直相交,Z轴位于竖直方向,与Y轴和X轴同时垂直相交。本实施例提供两种接听触发方式:手臂抬起接听来电和摇一摇接听来电。以下对两种接听触发方式做分别说明:
所述通话模块30判断手臂抬起接听来电的条件:
7m/s2>X轴加速度>5m/s2且0m/s2<Y/Z轴加速度绝对值<6m/s2
7m/s2>Y轴加速度>5m/s2且0m/s2<X/Z轴加速度绝对值<6m/s2
7m/s2>Z轴加速度>5m/s2且0m/s2<X/Y轴加速度绝对值<6m/s2
且所述移动终端位移距离:0.5*Z轴加速度*T2>50cm,其中,T为所述移动终端的位移时间(用户移动移动终端的时间),各方向的加速度值均为所述移动终端在位移时间内的平均加速度值。
所述移动终端判断摇一摇接听来电的条件:
(mNewX+mNewY+mNewZ–mLastX–mLastY–mLastZ)/difftime*1000>350时,记为加速度变化一次(用户摇一次),
触发上述条件次数>=3次(移动终端加速度变化至少3次),其中,mNewX表示最新X轴加速度,mNewY表示最新Y轴加速度,mNewZ表示最新Z轴加速度,mLastX表示上一个时间点X轴加速度,mLastY表示上一个时间点Y轴加速度,mLastZ 表示上一个时间点Z轴加速度difftime表示所述三轴加速度传感器当次采集时间与上一次采集时间的时间差值;
需要说明的是,所述移动终端通过获取用户行为数据,并根据获取的用户行为数据对上述预设的通话条件进行更新,以使得所述通话模块30更准确的进行来电接听操作。例如,当前触发通话的位移距离阈值为50cm,移动终端通过对一定时间内的用户行为数据进行分析,将触发通话的位移距离阈值更新为60cm。
本发明实施例提出的来电接听装置,通过移动终端在侦测到来电信息时,切换至来电呼叫状态;所述移动终端获取其在来电呼叫状态时的运动数据;在所述运动数据满足预设的通话条件时,所述移动终端接通来电。相较于现有技术,无需用户进行触控操作和/或进行按键操作,本发明实施例使得移动终端的来电接听操作更加方便、快速。
进一步地,基于第一实施例,提出本发明来电接听装置的第二实施例,在本实施例中,所述来电信息由其它移动终端在接收到来电时转发至所述状态切换模块10。
本实施例中,状态切换模块10所在移动终端的来电是由其它移动终端转发的,例如,基于前述驾车场景,智能手表作为一种可穿戴设备,其佩戴于用户的手腕上。手机在接到来电时,发送来电信息至与其配对的智能手表,用户抬起手臂做预设的接听动作即可接通来电,进行通话。由于无需用户去找到手机并进行触控操作和/或进行按键操作,在驾车场景下,本实施例使得移动终端的来电接听操作更加方便、快速和安全。
众所周知的,在日常生活中,充斥着大量的骚扰电话,以及用户不想接听的来电。本实施例中,在所述移动终端处于来电呼叫状态时,用户可接听来电,也可拒接来电,进一步地,所述通话模块30在接收到用户输入的拒接指令时,所述状态切换模块10控制其所在移动终端退出来电呼叫状态;所述通话模块30在其所在移动终端退出来电呼叫状态后,发送拒接请求至所述其它移动终端,以供其根据所述拒接请求拒接来电。例如,所述移动终端在处于来电呼叫状态时,在其屏幕上显示拒接按键,所述通话模块30在侦测到用户对拒接按键的触控操作时,触发拒接请求;或者,所述通话模块30在侦测到用户输入的语音信息“拒接”时,触发拒接请求;或者,所述数据获取模块20获取其所在移动终端在来电呼叫状态时的运动数据,当所述运动数据满足预设的拒接来电的条件时,所述状态切换模块10控制其所在移动终端退出来电呼叫状态,所述通话模块30在其所在移动终端退出来电呼叫状态后,发送拒接请求至所述其它移动终端,以供其根据所述拒接请求拒接来电。
本领域技术人员可以理解的是,若未在所述移动终端处于来电呼叫状态期间侦测到任何用户操作,所述通话模块30直接发送拒接请求至所述其它移动终端。
进一步地,在本实施例中,上述通话模块还用于在所述运动数据满足预设的通话条件时,发送接听请求至所述其它移动终端,以供所述其它移动终端根据所述接听请求接通其接收到的来电;以及建立与所述其它移动终端的通话连接,以供用户基于所述通话连接进行通话。
本实施例中,由于所述通话模块30所在移动终端接收到的来电是由所述其它移动终端转发的,在所述其它移动终端接通来电后,所述通话模块需要与所述其它移动终端建立通话连接才能供用户通过其所在移动终端进行通话。
基于前述驾车场景,以下以所述通话模块30所在移动终端为智能手表,所述其它移动终端为手机对接通来电的过程进行说明:
在智能手表的运动数据满足预设的通话条件时,智能手表发送接听请求至与其配对的手机;手机根据智能手表发送的接听请求接通其接收到的来电,并返回来电已接通的信息至智能手表;智能手表侦测到来电已接通的信息时,基于与手机之间的配对连接建立通话连接,以供用户基于所述通话连接进行通话。
此外,以下对手机和智能手表的配对过程进行说明:
用户进入智能手表系统设置界面打开蓝牙,并点击进入蓝牙设置界面,点击蓝牙名称,将其蓝牙设为可检测状态;用户进入手机系统设置界面打开蓝牙,并点击进入蓝牙设置界面,点击搜索,在搜索完成后,在可用设备列表中找到前述智能手表,点击智能手表名称进行配对,用户分别点击手机与智能手表显示的蓝牙配对请求框中的配对按钮以完成配对。配对完成后,在手机来电时,用户按预设方式操作智能手表,即可通过智能手表进行通话。
进一步地,在本实施例中,所述数据获取模块20还设置为获取其所在移动终端在通话状态时的运动数据;
所述通话模块30还设置为在所述运动数据满足预设的终止通话条件时,发送挂断请求至所述其它移动终端,以供所述其它移动终端根据所述挂断请求挂断其接通的来电;以及断开与所述其它移动终端的通话连接。
本实施例中,用户可通过预设的接听手势触发所述移动终端进行接听操作,也可通过预设的挂断手势触发所述移动终端进行挂断操作。进一步地,所述数据获取模块 20在所述通话模块30与所述其它移动终端建立通话连接后(所述通话模块30所在移动终端切换至通话状态),获取其所在移动终端在通话状态时的运动数据;所述通话模块30在所述运动数据满足预设的终止通话条件时,发送挂断请求至所述其它移动终端,以供所述其它移动终端根据所述挂断请求挂断其接通的来电;以及断开与所述其它移动终端的通话连接。
进一步地,在所述运动数据包括所述状态切换模块10所在的移动终端在预设方向的加速度值和位移距离时,所述预设的终止通话条件包括所述加速度值位于预设的触发终止通话的加速度区间,且所述位移距离超过预设的触发终止通话的位移距离;在所述运动数据包括所述状态切换模块10所在的移动终端的加速度方向的变化次数时,所述预设的终止通话条件包括所述变化次数达到预设的触发终止通话的变化次数。
本实施例中,所述数据获取模块20所在移动终端内置有三轴加速度传感器器,用于采集移动终端在三个方向(X轴、Y轴、Z轴)上的加速度值,所述数据获取模块20根据所述三轴加速度传感器采集的加速度值获取其所在移动终端的运动数据。其中,X轴和Y轴位于水平方向且垂直相交,Z轴位于竖直方向,与Y轴和X轴同时垂直相交。本实施例提供两种挂断触发方式:手臂放下挂断来电和摇一摇挂断来电。以下对两种挂断触发方式做分别说明:
所述通话模块30判断手臂放下接听来电的条件:
X轴加速度>10m/s2且0m/s2<Y/Z轴加速度绝对值<6m/s2
Y轴加速度>10m/s2且0m/s2<X/Z轴加速度绝对值<6m/s2
Z轴加速度>10m/s2且0m/s2<X/Y轴加速度绝对值<6m/s2
且所述移动终端位移距离:0.5*Z轴加速度*T2>50cm,其中,T为所述移动终端的位移时间(用户移动移动终端的时间),各方向的加速度值均为所述移动终端位移时间内的平均加速度值。
所述通话模块30判断摇一摇挂断来电的条件:
(mNewX+mNewY+mNewZ–mLastX–mLastY–mLastZ)/difftime*1000>350时,记为加速度变化一次(用户摇一次),
触发上述条件次数>=3次(移动终端加速度变化至少3次),其中,mNewX表示最新X轴加速度,mNewY表示最新Y轴加速度,mNewZ表示最新Z轴加速度,mLastX表示上一个时间点X轴加速度,mLastY表示上一个时间点Y轴加速度,mLastZ表示上一个时间点Z轴加速度difftime表示所述三轴加速度传感器当次采集时间与上一次采集时间的时间差值;
需要说明的是,所述移动终端通过获取用户行为数据,并根据获取的用户行为数据对上述预设的终止通话条件进行更新,以使得所述通话模块30更准确的进行来电挂断操作。例如,当前触发终止通话的位移距离阈值为50cm,移动终端通过对一定时间内的用户行为数据进行分析,将触发终止通话的位移距离阈值更新为60cm。
进一步地,基于第一实施例,提出本发明来电接听装置的第三实施例,在本实施例中,所述数据获取模块20还设置为获取其所在移动终端与用户脸部之间的距离;以及在所述距离小于预设的接听距离时,获取其所在移动终端在来电呼叫状态时的运动数据。
本实施例中,移动终端的正表面设置有距离传感器,用于采集移动终端与用户脸部的距离,所述数据获取模块20获取所述距离传感器采集的距离数据。例如,可以采用手机摄像头作为所述距离传感器,摄像头识别到用户脸部后,通过分析人脸占其采集到图像的大小比例,即可计算出手机距离用户脸部的距离;或者采用红外脉冲传感器作为所述距离传感器,红外脉冲传感器通过发射光脉冲,并测量此光脉冲从发射到被用户脸部反射回来的时间,通过时间差来计算手机与用户脸部之间的距离。需要说明的是,本发明实施例并不限制距离传感器的种类,可根据不同运行工况选择对应的距离传感器。
众所周知的,用户接听来电时需要将移动终端贴近耳部,以接听来电。本实施例中,数据获取模块20根据获取到其所在移动终端与用户脸部之间的距离,可以判断其所在移动终端当前是否已靠近用户的耳部,是否已处于待接听状态。本发明实施例并不限制所述预设的接听距离的大小,例如,可以设置为10cm,当所述数据获取模块20所在移动终端与用户脸部之间的距离小于10cm时,所述数据获取模块20获取其在来电呼叫状态时的运动数据,以供通话模块30判断是否接通来电。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
工业实用性
本发明的上述技术方案,可以应用于智能终端技术领域,通过移动终端在侦测到来电信息时,切换至来电呼叫状态;所述移动终端获取其在来电呼叫状态时的运动数据;在所述运动数据满足预设的通话条件时,所述移动终端接通来电,无需用户进行触控操作和/或进行按键操作,使得移动终端的来电接听操作更加方便、快速。

Claims (10)

  1. 一种来电接听方法,所述来电接听方法包括以下步骤:
    移动终端在侦测到来电信息时,切换至来电呼叫状态;
    所述移动终端获取其在来电呼叫状态时的运动数据;
    在所述运动数据满足预设的通话条件时,所述移动终端接通来电。
  2. 如权利要求1所述的来电接听方法,其中,所述来电信息由其它移动终端在接收到来电时转发至所述移动终端。
  3. 如权利要求2所述的来电接听方法,其中,所述在所述运动数据满足预设的通话条件时,所述移动终端接通来电的步骤包括:
    在所述运动数据满足预设的通话条件时,所述移动终端发送接听请求至所述其它移动终端,以供所述其它移动终端根据所述接听请求接通其接收到的来电;
    所述移动终端建立与所述其它移动终端的通话连接,以供用户基于所述通话连接进行通话。
  4. 如权利要求1所述的来电接听方法,其中,所述移动终端获取其在来电呼叫状态时的运动数据的步骤包括:
    所述移动终端获取其与用户脸部之间的距离;
    在所述距离小于预设的接听距离时,所述移动终端获取其在来电呼叫状态时的运动数据。
  5. 如权利要求1-4任一项所述的来电接听方法,其中,在所述运动数据包括所述移动终端在预设方向的加速度值和位移距离时,所述预设的通话条件包括所述加速度值位于预设的触发通话的加速度区间,且所述位移距离超过预设的触发通话的位移距离;在所述运动数据包括所述移动终端的加速度方向的变化次数时,所述预设的通话条件包括所述变化次数达到预设的触发通话的变化次数。
  6. 一种来电接听装置,所述来电接听装置包括:
    状态切换模块,设置为在侦测到来电信息时,切换其所在移动终端至来电呼叫状态;
    数据获取模块,设置为获取其所在移动终端在来电呼叫状态时的运动数据;
    通话模块,设置为在所述运动数据满足预设的通话条件时,接通来电。
  7. 如权利要求6所述的来电接听装置,其中,所述来电信息由其它移动终端在接收到来电时转发至所述状态切换模块。
  8. 如权利要求7所述的来电接听装置,其中,所述通话模块还设置为在所述运动数据满足预设的通话条件时,发送接听请求至所述其它移动终端,以供所述其它移动终端根据所述接听请求接通其接收到的来电;以及建立与所述其它移动终端的通话连接,以供用户基于所述通话连接进行通话。
  9. 如权利要求6所述的来电接听装置,其中,所述数据获取模块还设置为获取其所在移动终端与用户脸部之间的距离;以及在所述距离小于预设的接听距离时,获取其所在移动终端在来电呼叫状态时的运动数据。
  10. 如权利要求6-9任一项所述的来电接听装置,其中,在所述运动数据包括所述状态切换模块所在的移动终端在预设方向的加速度值和位移距离时,所述预设的通话条件包括所述加速度值位于预设的触发通话的加速度区间,且所述位移距离超过预设的触发通话的位移距离;在所述运动数据包括所述状态切换模块所在的移动终端的加速度方向的变化次数时,所述预设的通话条件包括所述变化次数达到预设的触发通话的变化次数。
PCT/CN2015/080648 2015-04-23 2015-06-03 来电接听方法及装置 WO2016169107A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201510196752.4 2015-04-23
CN201510196752.4A CN106161758A (zh) 2015-04-23 2015-04-23 来电接听方法及装置

Publications (1)

Publication Number Publication Date
WO2016169107A1 true WO2016169107A1 (zh) 2016-10-27

Family

ID=57143707

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2015/080648 WO2016169107A1 (zh) 2015-04-23 2015-06-03 来电接听方法及装置

Country Status (2)

Country Link
CN (1) CN106161758A (zh)
WO (1) WO2016169107A1 (zh)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113438367A (zh) * 2021-06-23 2021-09-24 中国第一汽车股份有限公司 基于车辆系统的通话控制方法、装置、介质及电子设备

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107277231B (zh) * 2017-05-31 2019-11-15 维沃移动通信有限公司 一种来电处理方法及移动终端
CN108244781A (zh) * 2018-02-12 2018-07-06 东莞市华睿电子科技有限公司 一种处理通信请求的方法及智能穿戴式设备
CN109327620B (zh) * 2018-11-19 2020-10-27 广东小天才科技有限公司 移动终端通话处理方法、装置、移动终端及存储介质
CN111541812B (zh) * 2020-03-27 2021-06-08 华为技术有限公司 基于运动中的呼叫处理方法、装置、设备及存储介质
CN112653790A (zh) * 2020-12-23 2021-04-13 中移(杭州)信息技术有限公司 自动接听来电的方法、装置、终端设备和可读存储介质

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010128796A2 (ko) * 2009-05-04 2010-11-11 삼성전자주식회사 휴대용 단말기에서 사용자 자세에 따른 자동 호 수발신을 위한 장치 및 방법
CN103139381A (zh) * 2013-01-28 2013-06-05 广东欧珀移动通信有限公司 一种移动通讯终端的控制方法和系统
CN103825998A (zh) * 2012-11-19 2014-05-28 振中资讯股份有限公司 能根据体感操作而自动接听或挂断来电的方法
CN103929538A (zh) * 2014-04-09 2014-07-16 惠州Tcl移动通信有限公司 基于接近传感器的移动终端接听方法及其系统

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103024194B (zh) * 2012-12-26 2014-11-26 珠海市魅族科技有限公司 一种移动终端及其接通来电的方法

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2010128796A2 (ko) * 2009-05-04 2010-11-11 삼성전자주식회사 휴대용 단말기에서 사용자 자세에 따른 자동 호 수발신을 위한 장치 및 방법
CN103825998A (zh) * 2012-11-19 2014-05-28 振中资讯股份有限公司 能根据体感操作而自动接听或挂断来电的方法
CN103139381A (zh) * 2013-01-28 2013-06-05 广东欧珀移动通信有限公司 一种移动通讯终端的控制方法和系统
CN103929538A (zh) * 2014-04-09 2014-07-16 惠州Tcl移动通信有限公司 基于接近传感器的移动终端接听方法及其系统

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113438367A (zh) * 2021-06-23 2021-09-24 中国第一汽车股份有限公司 基于车辆系统的通话控制方法、装置、介质及电子设备

Also Published As

Publication number Publication date
CN106161758A (zh) 2016-11-23

Similar Documents

Publication Publication Date Title
WO2016169107A1 (zh) 来电接听方法及装置
EP2775693B1 (en) Automatic routing of call audio at incoming call
US9473611B2 (en) Use of proximity sensors for interacting with mobile devices
EP3162284A1 (en) Communication method, apparatus and system for wearable device
CN107580143B (zh) 一种显示方法及移动终端
CN108632453B (zh) 一种通话方法及移动终端
CN109151044B (zh) 信息推送方法、装置、电子设备及存储介质
CN108551534B (zh) 多终端语音通话的方法及装置
US20180063130A1 (en) Terminal control method and device
CN105025156A (zh) 通话方法及其电子装置
CN109039877A (zh) 一种显示未读消息数量的方法、装置、电子设备及存储介质
CN104717362A (zh) 一种移动终端及其电话接听处理方法及系统
EP3086221A2 (en) Electronic apparatus, image display system, control program, and method for operating electronic apparatus
CN106231137A (zh) 基于电量的处理方法及装置
CN105204713A (zh) 来电响应方法及装置
CN109257489B (zh) 一种显示方法及移动终端
CN106325575A (zh) 触控响应方法及装置
CN109639738A (zh) 语音数据传输的方法及终端设备
CN107852431A (zh) 信息处理设备、信息处理方法和程序
CN104378576B (zh) 一种信息处理方法及电子设备
CN110062412B (zh) 无线配对方法、系统、存储介质及移动终端
CN105025172A (zh) 手机通话应答装置及其通话应答方法
CN110427149B (zh) 终端的操作方法及终端
CN105072245B (zh) 网络服务提供方法及装置
CN114935902A (zh) 应用于电子设备的控制方法、装置和设备

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 15889596

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 15889596

Country of ref document: EP

Kind code of ref document: A1