WO2017054277A1 - 一种防打扰模式的管理方法及用户终端 - Google Patents

一种防打扰模式的管理方法及用户终端 Download PDF

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Publication number
WO2017054277A1
WO2017054277A1 PCT/CN2015/093445 CN2015093445W WO2017054277A1 WO 2017054277 A1 WO2017054277 A1 WO 2017054277A1 CN 2015093445 W CN2015093445 W CN 2015093445W WO 2017054277 A1 WO2017054277 A1 WO 2017054277A1
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WO
WIPO (PCT)
Prior art keywords
user terminal
user
wearable device
smart wearable
contact
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PCT/CN2015/093445
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English (en)
French (fr)
Inventor
于卫
Original Assignee
宇龙计算机通信科技(深圳)有限公司
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Publication of WO2017054277A1 publication Critical patent/WO2017054277A1/zh

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/024Detecting, measuring or recording pulse rate or heart rate
    • A61B5/0245Detecting, measuring or recording pulse rate or heart rate by using sensing means generating electric signals, i.e. ECG signals
    • 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
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a method for managing an anti-disturbance mode and a user terminal.
  • the phone At present, many users set the phone to anti-disturb mode in order to avoid interruptions during breaks. Normally, the user sets the anti-interference time period in advance. During the anti-interference period, the mobile phone will automatically turn on the anti-disturb mode. In the anti-interference mode, if the mobile phone receives an incoming call or text message, it will not vibrate or ring. The way to remind the user so that it does not bother the user's rest.
  • the mobile phone has turned on the anti-disturb mode when the user has not rested, thereby skipping the incoming call or the short message, or the mobile phone has not turned on the anti-interference mode after the user rests, but receives By calling or texting, this will bother the user to rest. It can be seen that the existing anti-disturb mode is not flexible enough.
  • the embodiment of the invention discloses a method for managing the anti-disturb mode and a user terminal, which can flexibly open the anti-disturb mode of the user terminal.
  • the embodiment of the invention discloses a method for managing an anti-disturbance mode, comprising:
  • the user terminal receives the physiological parameter sent by the smart wearable device, where the physiological parameter is collected by the smart wearable device for the target user in the first preset time period;
  • the user terminal When the target user is in a sleep state, the user terminal turns on the anti-disturb mode.
  • the method further includes:
  • the user terminal When the user terminal receives an incoming call or a short message in the anti-interference mode, the user terminal identifies the identification information of the incoming call or the short message;
  • the user terminal When the contact marked by the identification information is the designated contact, the user terminal is The smart wearable device sends the first prompt information, where the first prompt information is used to indicate that the smart wearable device prompts the target user to have an incoming call or a short message of the designated contact.
  • the method further includes:
  • the user terminal detects the number of incoming calls or short messages of the contact marked by the identifier information in the second preset time period;
  • the user terminal sends the second prompt information to the smart wearable device, where the second prompt information is used to indicate that the smart wearable device prompts the target user to have the same contact
  • the number of incoming calls or text messages is used to indicate that the smart wearable device prompts the target user to have the same contact.
  • the method further includes:
  • the user terminal acquires current location information
  • the user terminal determines whether the location information matches the preset location information
  • the user terminal When the location information matches the preset location information, the user terminal establishes a communication connection with the smart wearable device, and performs the step of receiving the physiological parameter sent by the smart wearable device.
  • the method further includes:
  • the user terminal turns off the anti-disturb mode.
  • a user terminal including:
  • a receiving unit configured to receive a physiological parameter sent by the smart wearable device, where the physiological parameter is collected by the smart wearable device for a target user in a first preset time period;
  • a determining unit configured to determine, according to the physiological parameter, whether the target user is in a sleep state
  • an opening unit configured to enable the anti-disturb mode when the determining unit determines that the target user is in a sleep state.
  • the user terminal further includes:
  • An identification unit configured to identify, when the user terminal receives an incoming call or a short message, in the anti-interference mode, the identification information of the incoming call or the short message;
  • the determining unit is further configured to determine whether the contact marked by the identifier information is a designated contact
  • the user terminal further includes:
  • a sending unit configured to send first prompt information to the smart wearable device when the determining unit determines that the contact marked by the identifier information is the designated contact, the first prompt information And an instruction for instructing the smart wearable device to prompt the target user to have an incoming call or a short message of the designated contact.
  • the user terminal further includes:
  • a detecting unit configured to: when the determining unit determines that the contact marked by the identifier information is not the designated contact, detecting that the contact marked by the identifier information is received within a second preset time period The number of calls or text messages;
  • the sending unit is further configured to: when the quantity exceeds the preset quantity, send the second prompt information to the smart wearable device, where the second prompt information is used to indicate that the smart wearable device prompts the target user to exist The number of calls or text messages of the same contact.
  • the user terminal further includes:
  • An obtaining unit configured to acquire current location information of the user terminal
  • the determining unit is further configured to determine whether the location information matches the preset location information
  • the user terminal further includes:
  • a connecting unit configured to establish a communication connection with the smart wearable device when the determining unit determines that the location information matches the preset location information, and trigger the receiving unit to perform the physiological process of receiving the smart wearable device The operation of the parameter.
  • the user terminal further includes:
  • a closing unit configured to: when the determining unit determines that the location information does not match the preset location information, turn off the anti-disturb mode of the user terminal.
  • the user terminal can determine whether the target user is in a sleep state by using the physiological parameter of the user sent by the smart wearable device. If the target user is in a sleep state, the anti-disturb mode of the user terminal is turned on. In this way, the anti-disturb mode can be automatically turned on when the user is in a sleep state, and the operation of manually setting the anti-disturbing time period is reduced, thereby more flexibly realizing the management of the anti-disturb mode of the user terminal and improving the user experience.
  • FIG. 1 is a schematic flow chart of a method for managing an anti-disturbance mode according to an embodiment of the present invention
  • FIG. 2 is a schematic flow chart of another method for managing an anti-disturb mode according to an embodiment of the present invention.
  • FIG. 3 is a schematic flow chart of still another method for managing an anti-disturb mode according to an embodiment of the present invention.
  • FIG. 4 is a schematic structural diagram of a user terminal according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of another user terminal according to an embodiment of the present disclosure.
  • FIG. 6 is a schematic structural diagram of still another user terminal according to an embodiment of the present invention.
  • the embodiment of the invention discloses a method for managing the anti-disturb mode and a user terminal, which can flexibly open the anti-disturb mode of the user terminal. The details are described below separately.
  • FIG. 1 is a schematic flowchart diagram of a method for managing an anti-disturb mode according to an embodiment of the present invention.
  • the method can be applied to user terminals such as a smart phone (such as an Android mobile phone), a tablet computer, a palm computer, and a mobile Internet device (MID), and a personal digital assistant (PDA).
  • the user terminal is capable of receiving text messages and receiving calls.
  • the management method of the anti-disturbance mode may include the following steps:
  • the user terminal receives the physiological parameter sent by the smart wearable device.
  • the smart wearable device may include, but is not limited to, a smart wristband, a smart watch, smart glasses, and the like, which are capable of detecting physiological parameters of the user.
  • the physiological parameter is collected by the smart wearable device for the target user in a unit time period, or may be collected for the target user in a first preset time period composed of multiple unit time segments, and the present invention is implemented.
  • the example is not limited.
  • the unit time may be 1 minute
  • the first preset time period may be 3 minutes, 5 minutes, or 10 minutes, which is not limited by the embodiment of the present invention.
  • the smart wearable device may send the physiological parameter collected by the target user to the user terminal in a unit time period, or may send the physiological parameter collected by the target user to the user in the first preset time period composed of multiple unit time segments.
  • the terminal is not limited by the present invention. It should be noted that this The physiological parameter may include one or more of the body function parameters such as the body temperature, the blood pressure, the pulse, the respiratory rate, and the heart rate of the target user, which are not limited in the embodiment of the present invention.
  • the smart wearable device may send the collected physiological parameters of the target user to the user terminal by using a wireless transmission manner such as Bluetooth, WIFI, or NFC.
  • step S102 The user terminal determines, according to the physiological parameter, whether the target user is in a sleep state. If yes, step S103 is performed; if no, step S101 is performed.
  • the user terminal after receiving the physiological parameter sent by the smart wearable device, determines whether the target user is in a sleep state according to the physiological parameter. When it is determined that the target user is in a sleep state, the user terminal automatically turns on the anti-disturb mode; when it is determined that the target user is not in the sleep state, if the user terminal is in the anti-disturb mode, the anti-disturb mode is turned off, if the user When the terminal is not in the anti-disturb mode, the terminal continues to receive the physiological parameters of the target user sent by the smart wearable device.
  • the specific manner in which the user terminal determines whether the target user is in a sleep state may be:
  • Step 11 determining whether the respiratory frequency is within a preset respiratory frequency range, and determining whether the pulse frequency is within a preset pulse frequency range;
  • Step 12 When the respiratory frequency is within the preset respiratory frequency range, and the pulse frequency is within the preset pulse frequency range, it is determined that the target user is in a sleep state.
  • the breathing frequency per unit time when the user is in the sleep state is lower than the respiratory frequency and the pulse frequency when the user is in the awake state, and is stable, and the pulse time per unit time is in the sleep state, the pulse frequency is more than awake.
  • the number of pulses in the state is low. Therefore, the smart wearable device or the user terminal can pre-record the average respiratory rate and the average pulse rate per unit time when the target user is in the awake state, and reduce the range of the respiratory frequency decrease amount and the pulse frequency according to the general user when the user is in the sleep state.
  • the range of quantities is used to determine the range of respiratory frequencies and the range of pulse times when the target user is in sleep.
  • the user terminal determines whether the respiratory frequency is within the preset respiratory frequency range, and determines whether the pulse frequency is within a preset pulse frequency range. If the respiratory rate is within the preset respiratory frequency range and the pulse rate is within the preset pulse rate range, the user terminal can determine that the target user is in a sleep state.
  • the user terminal can also determine whether the target user is in a sleep state by detecting body temperature and blood pressure, and the determination manner is the same as the determination method of determining whether the target user is in a sleep state according to the respiratory frequency and the pulse rate.
  • the embodiments of the invention are not described herein again.
  • the user terminal turns on the anti-interference mode, and ends the process.
  • the user terminal when the user terminal determines that the target user is in a sleep state according to the physiological parameter of the target user, the user terminal turns on the anti-disturb mode.
  • the anti-disturb mode when the user terminal receives an incoming call or a short message, the user terminal may not remind the target user (ie, the target user will not be alerted by vibration or ringing or brightening), or the calling party may be notified when the incoming call is rejected. The target user is taking a break.
  • the user terminal can determine whether the target user is in a sleep state through the physiological parameter of the user sent by the smart wearable device, and if the target user is in a sleep state, the anti-disturb mode of the user terminal is turned on.
  • the anti-disturb mode can be automatically turned on when the user is in a sleep state, and the operation of manually setting the anti-disturbing time period is reduced, thereby more flexibly realizing the management of the anti-disturb mode of the user terminal and improving the user experience.
  • FIG. 2 is a schematic flowchart diagram of another method for managing an anti-disturb mode according to an embodiment of the present invention.
  • the method can be applied to a user terminal such as a smart phone (such as an Android mobile phone), a tablet computer, a palmtop computer, a mobile Internet device, a personal digital assistant, and the like, and the user terminal can receive a short message and receive a call.
  • the method for managing the anti-disturbance mode may include the following steps:
  • the user terminal receives the physiological parameter sent by the smart wearable device.
  • step S202 The user terminal determines, according to the physiological parameter, whether the target user is in a sleep state. If yes, step S203 is performed; if no, return to step S201.
  • the user terminal turns on the anti-interference mode.
  • the user terminal When the user terminal receives an incoming call or a short message in the anti-interference mode, the user terminal identifies the identification information of the incoming call or the short message.
  • the user terminal since the user terminal does not remind the user when receiving an incoming call or a short message in the anti-disturb mode. However, there may be a situation where the user's important contact will contact the user after the anti-interference mode is turned on, which may result in the user not receiving an important call in time or failing to view the important short message in time. Therefore, the user terminal can set the name, contact number, and the like of the designated contact in advance. When the user terminal receives an incoming call or text message in the anti-disturb mode, the call or The identification information of the short message.
  • the anti-interference mode is not limited to being determined when the target user is in the sleep state, It can also be manually opened by the user, which is not limited in the embodiment of the present invention.
  • the identification information may include, but is not limited to, a phone number of the incoming call or short message, a name of the caller, or a name of the sender of the short message.
  • step S205 The user terminal determines whether the contact marked by the identifier information is a designated contact. If yes, step S206 is performed; if no, step S207 is performed.
  • the designated contact may include one or more, and the designated contact may be all the contacts in the specified group (such as family, friends, etc.) in the address book, or may be the designated name.
  • the contact of the telephone number is not limited in the embodiment of the present invention.
  • the user terminal when the identification information of the incoming call or the short message is identified, the user terminal further obtains the contact name marked by the identification information or the group name of the name in the address book, and then further determines whether the contact is a designated contact. people. That is, the user terminal can determine whether the name of the contact marked by the identification information of the short message or the incoming call is the contact name in the designated contact, or whether the name of the contact is the contact name in the specified group. If so, it is determined that the contact marked by the identification information is the designated contact.
  • the user terminal when it is determined that the contact marked by the identifier information is a designated contact, the user terminal sends the first prompt information to the smart wearable device; when it is determined that the contact marked by the identifier information is not the designated contact. The user terminal further detects the number of incoming calls or short messages of the contact marked by the identification information within the second preset time period.
  • the user terminal sends the first prompt information to the smart wearable device.
  • the first prompt information is used to indicate that the smart wearable device prompts the target user to have an incoming call or a short message of the designated contact. That is, when the user terminal determines that the contact marked by the identification information is a designated contact, the user terminal sends the first prompt information to the smart wearable device.
  • the smart wearable device receives the first prompt information sent by the user terminal, the user is alerted by vibration or ringing, so that the user can receive the incoming call of the designated contact in time, or view the short message of the designated contact. So avoid missing important calls or text messages to improve the user experience.
  • the user terminal detects that the contact marked by the identifier information is received within a second preset time period. The number of calls or text messages.
  • the first preset time period and the second preset time period may be the same or different. Therefore, the second preset time period may also have a value range of 3 minutes, 5 minutes, or even 10 minutes.
  • the embodiments of the present invention are not limited.
  • the user terminal may detect the number of incoming calls and/or short messages received by the contact within the second preset time period when it is determined that the contact marked by the identification information is not the designated contact.
  • the user terminal sends the second prompt information to the smart wearable device.
  • the user terminal may preset a preset number of incoming calls or short messages of the same contact in the anti-disturb mode.
  • the user terminal may further determine whether the quantity exceeds the preset quantity, and if so, may This indicates that the contact may be in a hurry to contact the target user. Therefore, the user terminal can send the second prompt information to the smart wearable device.
  • the second prompt information is used to indicate that the smart wearable device prompts the target user to have the same number of incoming calls or short messages of the same contact. Therefore, the smart wearable device displays the contact on the display interface when vibrating or ringing. The number of calls or text messages of the person, so that the target user can reply to the contact in time.
  • the mobile phone can judge that the user is in a sleep state according to the physiological parameters sent by the wristband worn by the user, and thus the mobile phone automatically turns on the anti-disturb mode.
  • the anti-disturb mode if the boss calls, the mobile phone will send a prompt message to the bracelet, so that the wristband wakes up the user by vibration, thereby preventing the user from receiving the call from the boss in time.
  • the phone will not prompt the user at the beginning. If the friend receives 5 calls within 3 minutes, the mobile phone will also send a prompt message to the bracelet, so that the bracelet wakes up the user by vibration, so that the user can be timely Received a call from this friend.
  • the user terminal can alert the user through the smart wearable device when receiving the incoming call or the short message of the designated contact in the anti-disturb mode, thereby preventing the user from receiving the designated contact in time. Call or view a text message to a specified contact. Further, the user terminal may also set a preset number of incoming calls or short messages for the same contact in the anti-disturb mode, and when the number of incoming calls or short messages of the same contact exceeds a preset number, the user terminal may also pass the smart wearable device. To remind users. In this way, users can be prevented from missing important information, thereby improving the user experience.
  • FIG. 3 is a schematic flowchart diagram of still another method for managing an anti-disturb mode according to an embodiment of the present invention.
  • the method can be applied to a user terminal such as a smart phone (such as an Android mobile phone), a tablet computer, a palmtop computer, a mobile Internet device, a personal digital assistant, and the like, and the user terminal can receive a short message and receive a call.
  • the method for managing the anti-disturbance mode may include the following steps:
  • the user terminal acquires current location information.
  • the manner in which the user terminal obtains the location information of the current location may be obtained by means of integrated GPS positioning, assisted GPS positioning, wireless network positioning, and base station positioning, which is not limited in the embodiment of the present invention.
  • various positioning applications may be installed on the user terminal. After these positioning applications are opened, the router address of the WIFI accessed by the user terminal is first detected, and then The positioning of the WIFI location database and the map data is completed, thereby obtaining the current location information of the user terminal.
  • the user terminal To use WIFI positioning, the user terminal must support and start WIFI. The accuracy of positioning through WIFI depends on the density of the WIFI router and the level of detail of the WIFI location database.
  • GPS positioning For example, taking integrated GPS positioning as an example, based on the global satellite positioning system, there are 24 GPS satellites distributed on the 6-lane plane of 12,000 kilometers from the ground, and it orbits the earth in a 12-hour cycle, making it on the ground at any time. More than 4 satellites can be observed at any point. Integrated GPS positioning requires a built-in GPS module in the user terminal. The GPS module has only a receiving function and no transmitting function. The 24 GPS satellites in the Global Positioning System (GPS) will continuously transmit wireless signals to the Earth, including important parameters such as launch time and satellite position.
  • GPS Global Positioning System
  • the distance between the arrival of the signals sent by the same time and the time difference of the plurality of GPS satellites is used to calculate the distance of the user terminal from each GPS satellite, and then three equations are used to form three equations according to the distance formula in the three-dimensional coordinates.
  • the position coordinates of the user terminal are (X, Y, Z).
  • the user terminal needs to introduce the fourth satellite when positioning, and form four equations to solve, so that the latitude and longitude and height of the user terminal can be obtained. .
  • the user terminal can often lock more than 4 satellites.
  • the user terminal can be divided into groups according to the constellation distribution of the satellite, each group of 4, and then the algorithm selects the group with the smallest error for positioning. Calculate the location information of the current location of the user terminal.
  • step S302 The user terminal determines whether the location information matches the preset location information, if yes, step S303 is performed; if no, step S307 is performed.
  • the user terminal may preset a location for establishing a communication connection with the smart wearable device, such as an office, a home, and the like, and store specific location information of the location, that is, preset location information. After obtaining the location information of the current location, the user terminal further determines whether the location information matches the preset location information.
  • the location information may be coordinate information, etc., and the location information matching the preset location information may be understood as: the location marked by the location information is the same location as the preset location information, or the distance is within a preset distance range. (such as 50 meters).
  • the user terminal when it is determined that the location information matches the preset location information, the user terminal establishes a communication connection with the smart wearable device; when it is determined that the location information does not match the preset location information, the user terminal is closed. Anti-disturb mode.
  • the user terminal establishes a communication connection with the smart wearable device.
  • the communication connection established between the user terminal and the smart wearable device may be a connection such as Bluetooth, WIFI, NFC, or the like.
  • the user terminal and the smart wearable device can communicate at any time. In this way, establishing a communication connection with the smart wearable device at a place where the user may be in a sleep state can reduce power consumption when the user terminal and the smart bracelet perform data interaction.
  • the user terminal receives the physiological parameter sent by the smart wearable device.
  • step S305 The user terminal determines, according to the physiological parameter, whether the target user is in a sleep state. If yes, step S306 is performed; if no, return to step S304.
  • the user terminal turns on the anti-interference mode.
  • the user terminal turns off the anti-interference mode.
  • the user terminal when it is determined that the current location information of the user terminal is different from the preset location information When configured, the user terminal will turn off the currently activated anti-disturb mode. Further, after the anti-interference mode is turned off, the user terminal may also automatically disconnect the communication connection with the smart wearable device to reduce the power consumption of the smart wearable device and the user terminal.
  • the user terminal does not perform any operation if the current location information does not match the preset location information, and the anti-interference mode is not enabled by the user terminal.
  • the user can set the location information of the home on the mobile phone.
  • the mobile phone automatically establishes a communication connection with the wristband on the wrist of the user when detecting that the current location information is consistent with the location information of the home.
  • the bracelet sends the user's physiological parameters to the mobile phone at regular intervals.
  • the mobile phone automatically turns on the anti-disturb mode.
  • the mobile phone When the user leaves the home, that is, the mobile phone detects that the current location information is inconsistent with the location information of the home, the mobile phone automatically turns off the previously enabled anti-disturb mode and disconnects the communication connection with the wristband.
  • the user terminal establishes a communication connection with the smart wearable device only at the preset position, thereby receiving the physiological parameter of the target user sent by the smart wearable device.
  • the user terminal turns off the anti-disturb mode when leaving the preset position, and disconnects the communication connection with the smart wearable device, which not only reduces the power consumption of the user terminal and the smart wearable device, but also prevents the user from forgetting after turning on the anti-disturb mode.
  • the shutdown caused the failure to receive a call in time, thereby improving the user experience.
  • FIG. 4 is a schematic structural diagram of a user terminal according to an embodiment of the present invention.
  • the user terminal 400 shown in FIG. 4 may include, but is not limited to, a smart phone (such as an Android mobile phone, etc.), a tablet computer, a palmtop computer, and a mobile internet device, a personal digital assistant, etc., and the user terminal 400 is capable of receiving a short message and receiving a call.
  • the user terminal 400 can include the following units:
  • the receiving unit 401 is configured to receive the physiological parameter sent by the smart wearable device.
  • the smart wearable device may include, but is not limited to, a smart wristband, a smart watch, smart glasses, and the like, which are capable of detecting physiological parameters of the user.
  • the physiological parameter is collected by the smart wearable device for the target user in a unit time period, or may be collected for the target user in a first preset time period composed of multiple unit time segments, and the present invention is implemented.
  • the example is not limited.
  • the unit time may be 1 minute
  • the first preset time period may be 3 minutes, 5 minutes, or 10 minutes, which is not limited by the embodiment of the present invention.
  • the smart wearable device can send physiological parameters collected for the target user in a unit time period.
  • the user terminal 400 is sent to the user terminal 400 for the first preset time period of the plurality of unit time segments, which is not limited by the present invention.
  • the physiological parameter may include one or more of the body function parameters such as the body temperature, the blood pressure, the pulse, the respiratory rate, and the heart rate of the target user, which are not limited in the embodiment of the present invention.
  • the smart wearable device may send the collected physiological parameters of the target user to the user terminal 400 through wireless transmission methods such as Bluetooth, WIFI, and NFC.
  • the determining unit 402 is configured to determine, according to the physiological parameter, whether the target user is in a sleep state.
  • the determining unit 402 determines whether the target user is in a sleep state according to the physiological parameter.
  • the opening unit 403 automatically turns on the anti-disturb mode; when the determining unit 402 determines that the target user is not in the sleep state, if the user terminal 400 is in the anti-disturb mode, The anti-interference mode is turned off. If the user terminal 400 is not in the anti-interference mode at this time, the receiving unit 401 continues to receive the physiological parameters of the target user transmitted by the smart wearable device.
  • the specific manner of the determining unit 402 determining whether the target user is in a sleep state may be:
  • the respiratory frequency is within a preset respiratory frequency range
  • the pulse frequency is within a preset pulse frequency range
  • the breathing frequency per unit time when the user is in the sleep state is lower than the respiratory frequency and the pulse frequency when the user is in the awake state, and is stable, and the pulse time per unit time is in the sleep state, the pulse frequency is more than awake.
  • the number of pulses in the state is low. Therefore, the smart wearable device or the user terminal 400 can pre-record the average respiratory rate and the average pulse rate per unit time when the target user is in the awake state, and reduce the range of the respiratory frequency decrease amount and the pulse number according to the general user when the user is in the sleep state.
  • a small range is used to determine the range of respiratory frequencies and the range of pulse times when the target user is in sleep.
  • the determining unit 402 determines whether the respiratory frequency is within the preset respiratory frequency range, and determines whether the pulse frequency is within a preset pulse frequency range. Inside. If the respiratory rate is within the preset respiratory rate range If the number of pulses is within the preset pulse rate range, the determining unit 402 can determine that the target user is in a sleep state.
  • the determination unit 402 can also determine whether the target user is in a sleep state by detecting the body temperature and the blood pressure. The method for determining whether the target user is in the sleep state according to the respiratory frequency and the pulse rate is the same, and the embodiment of the present invention will not be described herein.
  • the opening unit 403 is configured to enable the anti-disturb mode when the determining unit 402 determines that the target user is in a sleep state.
  • the opening unit 403 turns on the anti-disturb mode.
  • the user terminal 400 may not remind the target user (ie, does not alert the target user by vibration or ringing or brightening), or may notify the calling party when the incoming call is rejected. The target user is taking a break.
  • the user terminal can determine whether the target user is in a sleep state by using the physiological parameter of the user sent by the smart wearable device, and if the target user is in a sleep state, the anti-disturb mode of the user terminal is turned on. .
  • the anti-disturb mode can be automatically turned on when the user is in a sleep state, and the operation of manually setting the anti-disturbing time period is reduced, thereby more flexibly realizing the management of the anti-disturb mode of the user terminal and improving the user experience.
  • FIG. 5 is a schematic structural diagram of another user terminal according to an embodiment of the present invention.
  • the user terminal 400 shown in FIG. 5 is optimized based on the user terminal 400 shown in FIG. 4.
  • the user terminal 400 may further include the following units:
  • the identification unit 404 is configured to identify the identification information of the incoming call or the short message when the user terminal 400 receives the incoming call or the short message in the anti-disturb mode.
  • the user terminal 400 since the user terminal 400 does not remind the user when receiving an incoming call or a short message in the anti-disturb mode. However, there may be a case where after the opening unit 403 turns on the anti-disturb mode, the important contact of the user will contact the user, which may result in the user not receiving an important call in time or failing to view the important short message in time. Therefore, the user terminal 400 can set the name, contact telephone number, and the like of the designated contact in advance.
  • the identification unit 404 identifies the identification information of the incoming call or the short message.
  • the anti-interference mode is not limited to being determined by determining that the target user is in the sleep state, It can be manually opened by the user, which is not limited in the embodiment of the present invention.
  • the identification information may include, but is not limited to, a phone number of the incoming call or short message, a name of the caller, or a name of the sender of the short message.
  • the determining unit 402 is further configured to determine whether the contact marked by the identifier information is a designated contact.
  • the designated contact may include one or more, and the designated contact may be all the contacts in the specified group (such as family, friends, etc.) in the address book, or may be the designated name.
  • the contact of the telephone number is not limited in the embodiment of the present invention.
  • the identification unit 404 identifies the identification information of the incoming call or the short message
  • the user terminal 400 further acquires the contact name marked by the identification information or the group name of the name in the address book, and then the determining unit 402 further determines. Whether the contact is a designated contact. That is, the determining unit 402 may determine whether the name of the contact marked by the identification information of the short message or the incoming call is the contact name in the designated contact, or whether the name of the contact is the contact name in the specified group. If so, it is determined that the contact marked by the identification information is the designated contact.
  • the determining unit 402 determines that the contact marked by the identification information is the designated contact
  • the generating unit 405 sends the first prompt information to the smart wearable device; when the determining unit 402 determines the contact marked by the identifier information
  • the detecting unit 406 further detects the number of incoming calls or short messages of the contact marked by the identification information in the second preset time period.
  • the sending unit 405 is configured to send the first prompt information to the smart wearable device when the determining unit 402 determines that the contact marked by the identifier information is a designated contact.
  • the first prompt information is used to indicate that the smart wearable device prompts the target user to have an incoming call or a short message of the designated contact. That is, when the determining unit 402 determines that the contact marked by the identification information is the designated contact, the sending unit 405 sends the first prompt information to the smart wearable device.
  • the smart wearable device receives the first prompt information sent by the user terminal 400, the user is alerted by vibration or ringing, so that the user can receive the incoming call of the designated contact in time, or view the short message of the designated contact. To avoid missing important calls or text messages and improve the user experience.
  • the detecting unit 406 is configured to determine, at the foregoing determining unit 402, the contact marked by the identification information When the contact is not specified, the number of incoming calls or short messages of the contact marked by the identification information is detected within the second preset time period.
  • the first preset time period and the second preset time period may be the same or different. Therefore, the second preset time period may also have a value range of 3 minutes, 5 minutes, or even 10 minutes.
  • the embodiments of the present invention are not limited.
  • the user terminal 400 still reminds the incoming call or the short message of the designated contact in the anti-disturb mode, which may be that the target user does not want to miss all the incoming calls or short messages of the important contact.
  • the detecting unit 406 may detect the number of incoming calls and/or short messages received by the contact within the second preset time period when the determining unit 402 determines that the contact marked by the identification information is not the designated contact.
  • the sending unit 405 is further configured to send the second prompt information to the smart wearable device when the quantity exceeds the preset number.
  • the user terminal 400 may preset a preset number of incoming calls or short messages of the same contact in the anti-disturb mode.
  • the detecting unit 406 detects the number of incoming calls or short messages of the contact marked by the identification information within the second preset time period, the user terminal 400 may further determine whether the quantity exceeds the preset quantity, and if so, Then it can indicate that the contact may be in a hurry to contact the target user. Therefore, the sending unit 405 can send the second prompt information to the smart wearable device.
  • the second prompt information is used to indicate that the smart wearable device prompts the target user to have the same number of incoming calls or short messages of the same contact. Therefore, the smart wearable device displays the contact on the display interface when vibrating or ringing. The number of calls or text messages of the person, so that the target user can reply to the contact in time.
  • the mobile phone can judge that the user is in a sleep state according to the physiological parameters sent by the wristband worn by the user, and thus the mobile phone automatically turns on the anti-disturb mode.
  • the anti-disturb mode if the boss calls, the mobile phone will send a prompt message to the bracelet, so that the wristband wakes up the user by vibration, thereby preventing the user from receiving the call from the boss in time.
  • the phone will not prompt the user at the beginning. If you receive 5 calls from this friend within 3 minutes, then the phone is also A prompt message is sent to the bracelet, so that the wristband wakes up the user by vibration, so that the user can receive the call of the friend in time.
  • the user terminal when the user terminal can receive an incoming call or a short message of the designated contact in the anti-disturb mode, the user can be reminded by the smart wearable device, thereby preventing the user from receiving the designated contact in time. A person's call or a text message to the specified contact. Further, the user terminal may also set a preset number of incoming calls or short messages for the same contact in the anti-disturb mode, and when the number of incoming calls or short messages of the same contact exceeds a preset number, the user terminal may also pass the smart wearable device. To remind users. In this way, users can be prevented from missing important information, thereby improving the user experience.
  • FIG. 6 is a schematic structural diagram of still another user terminal according to an embodiment of the present invention.
  • the user terminal 400 shown in FIG. 6 is optimized based on the user terminal 400 shown in FIG. 4.
  • the user terminal 400 may further include the following units:
  • the obtaining unit 407 is configured to acquire current location information of the user terminal 400.
  • the manner in which the acquiring unit 407 obtains the location information of the current location of the user terminal 400 may be obtained by means of integrated GPS positioning, assisted GPS positioning, wireless network positioning, base station positioning, etc., which is not limited in the embodiment of the present invention.
  • various positioning applications may be installed on the user terminal 400. After these positioning applications are opened, the router address of the WIFI accessed by the user terminal 400 is first detected, and then The positioning is completed in cooperation with the WIFI location database and the map data, thereby obtaining the current location information of the user terminal 400.
  • the user terminal To use WIFI positioning, the user terminal must support and start WIFI. The accuracy of positioning through WIFI depends on the density of the WIFI router and the level of detail of the WIFI location database.
  • GPS positioning For example, taking integrated GPS positioning as an example, based on the global satellite positioning system, there are 24 GPS satellites distributed on the 6-lane plane of 12,000 kilometers from the ground, and it orbits the earth in a 12-hour cycle, making it on the ground at any time. More than 4 satellites can be observed at any point.
  • Integrated GPS positioning requires the user terminal 400 to have a built-in GPS module, which has only a receiving function and no transmitting function.
  • the 24 GPS satellites in the Global Positioning System (GPS) will continuously transmit wireless signals to the Earth, including important parameters such as launch time and satellite position. Therefore, after receiving the wireless signal transmitted by the GPS satellite, the user terminal 400 uses the sequence of the arrival of the signals sent by the plurality of GPS satellites at the same time and the time difference.
  • GPS Global Positioning System
  • the distance between the user terminal 400 and each GPS satellite is calculated, and then the three coordinates are used to form three equations according to the distance formula in the three-dimensional coordinates, and the position coordinates of the user terminal 400 are calculated as (X, Y, Z).
  • the user terminal 400 needs to introduce the fourth satellite when positioning, and form four equations for solving, so that the user terminal 400 can be obtained.
  • Latitude and longitude and height In fact, the user terminal 400 can often lock more than 4 satellites.
  • the user terminal 400 can be divided into groups according to the constellation distribution of the satellites, each group of 4, and then the algorithm selects the group with the smallest error for positioning. , thereby calculating the location information of the location where the user terminal 400 is currently located.
  • the determining unit 402 is further configured to determine whether the location information matches the preset location information.
  • the user terminal 400 may preset a location for establishing a communication connection with the smart wearable device, such as an office, a home, and the like, and store specific location information of the location, that is, preset location information.
  • the determining unit 402 further determines whether the location information matches the preset location information.
  • the location information may be coordinate information, etc., and the location information matching the preset location information may be understood as: the location marked by the location information is the same location as the preset location information, or the distance is within a preset distance range. (such as 50 meters).
  • the connection unit 408 establishes a communication connection with the smart wearable device; when the determining unit 402 determines that the location information does not match the preset location information, The shutdown unit 409 turns off the anti-disturb mode.
  • the connecting unit 408 is configured to establish a communication connection with the smart wearable device when the determining unit 402 determines that the location information matches the preset location information, and trigger the receiving unit 401 to receive the physiological parameter sent by the smart wearable device.
  • the communication connection established by the user terminal 400 and the smart wearable device may be a connection such as Bluetooth, WIFI, NFC, or the like. After the communication connection is established, the user terminal 400 and the smart wearable device can communicate at any time. In this way, establishing a communication connection with the smart wearable device at a place where the user may be in a sleep state can reduce power consumption when the user terminal and the smart bracelet perform data interaction.
  • the closing unit 409 is configured to close the anti-disturb mode of the user terminal 400 when the determining unit 402 determines that the location information does not match the preset location information.
  • the closing unit 409 turns off the currently activated anti-disturb mode. Enter one In step, after the anti-interference mode is turned off, the user terminal 400 can also automatically disconnect the communication connection with the smart wearable device to reduce the power consumption of the smart wearable device and the user terminal.
  • the user terminal 400 does not perform any operation if the current location information does not match the preset location information, and the user terminal 400 does not turn on the anti-disturb mode, the user terminal 400 does not perform any operation.
  • the user can set the location information of the home on the mobile phone.
  • the mobile phone automatically establishes a communication connection with the wristband on the wrist of the user when detecting that the current location information is consistent with the location information of the home.
  • the bracelet sends the user's physiological parameters to the mobile phone at regular intervals.
  • the mobile phone automatically turns on the anti-disturb mode.
  • the mobile phone When the user leaves the home, that is, the mobile phone detects that the current location information is inconsistent with the location information of the home, the mobile phone automatically turns off the previously enabled anti-disturb mode and disconnects the communication connection with the wristband.
  • the user terminal establishes a communication connection with the smart wearable device only at the preset location, thereby receiving the physiological parameter of the target user sent by the smart wearable device.
  • the user terminal turns off the anti-disturb mode when leaving the preset position, and disconnects the communication connection with the smart wearable device, which not only reduces the power consumption of the user terminal and the smart wearable device, but also prevents the user from forgetting after turning on the anti-disturb mode.
  • the shutdown caused the failure to receive a call in time, thereby improving the user experience.
  • the storage medium may be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

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Abstract

本发明实施例涉及通信技术领域,公开了一种防打扰模式的管理方法及用户终端。其中,该方法包括:用户终端可以通过智能穿戴设备发送的用户的生理参数来判断目标用户是否处于睡眠状态,如果目标用户处于睡眠状态,就会开启用户终端的防打扰模式。这样可以在用户处于睡眠状态时自动开启防打扰模式,减少用户手动设置防打扰时间段的操作,从而更加灵活地实现对用户终端的防打扰模式的管理,提升用户体验。

Description

一种防打扰模式的管理方法及用户终端 技术领域
本发明涉及通信技术领域,具体涉及一种防打扰模式的管理方法及用户终端。
背景技术
目前,很多用户在休息时为了避免打扰,会将手机设置为防打扰模式。通常情况下,用户是事先设置好防打扰时间段,在防打扰时间段内,手机会自动开启防打扰模式,在防打扰模式下,如果手机接收到来电或短信,不会通过振动或响铃的方式提醒用户,从而不会打扰用户的休息。但是,如果用户设置固定的防打扰时间段,可能就会出现用户还未休息的时候手机开启了防打扰模式,从而漏接来电或短信,或者用户休息之后手机还未开启防打扰模式,却接收到来电或短信,这样就会打扰用户休息。可见,现有的防打扰模式的开启方式不够灵活。
发明内容
本发明实施例公开了一种防打扰模式的管理方法及用户终端,能够灵活地开启用户终端的防打扰模式。
本发明实施例公开了一种防打扰模式的管理方法,包括:
用户终端接收智能穿戴设备发送的生理参数,所述生理参数是由所述智能穿戴设备在第一预设时间段内针对目标用户采集的;
所述用户终端根据所述生理参数判断所述目标用户是否处于睡眠状态;
当所述目标用户处于睡眠状态时,所述用户终端开启防打扰模式。
可选的,所述方法还包括:
当在所述防打扰模式下所述用户终端接收到来电或短信时,所述用户终端识别所述来电或所述短信的标识信息;
所述用户终端判断所述标识信息所标记的联系人是否为指定联系人;
当所述标识信息所标记的联系人为所述指定联系人时,所述用户终端向所 述智能穿戴设备发送第一提示信息,所述第一提示信息用于指示所述智能穿戴设备提示所述目标用户存在所述指定联系人的来电或短信。
可选的,所述方法还包括:
当所述标识信息所标记的联系人不为所述指定联系人时,所述用户终端检测在第二预设时间段内接收所述标识信息所标记的联系人的来电或短信的数量;
当所述数量超过预设数量时,所述用户终端向所述智能穿戴设备发送第二提示信息,所述第二提示信息用于指示所述智能穿戴设备提示所述目标用户存在同一联系人的所述数量的来电或短信。
可选的,所述方法还包括:
用户终端获取当前的位置信息;
所述用户终端判断所述位置信息与预设位置信息是否匹配;
当所述位置信息与所述预设位置信息匹配时,所述用户终端与智能穿戴设备建立通信连接,并执行所述接收智能穿戴设备发送的生理参数的步骤。
可选的,所述方法还包括:
当所述位置信息与所述预设位置信息不匹配时,所述用户终端关闭所述防打扰模式。
相应的,本发明实施例公开了一种用户终端,包括:
接收单元,用于接收智能穿戴设备发送的生理参数,所述生理参数是由所述智能穿戴设备在第一预设时间段内针对目标用户采集的;
判断单元,用于根据所述生理参数判断所述目标用户是否处于睡眠状态;
开启单元,用于在所述判断单元判断出所述目标用户处于睡眠状态时,开启防打扰模式。
可选的,所述用户终端还包括:
识别单元,用于在所述防打扰模式下所述用户终端接收到来电或短信时,识别所述来电或所述短信的标识信息;
所述判断单元,还用于判断所述标识信息所标记的联系人是否为指定联系人;
所述用户终端还包括:
发送单元,用于在所述判断单元判断出所述标识信息所标记的联系人为所述指定联系人时,向所述智能穿戴设备发送第一提示信息,所述第一提示信息 用于指示所述智能穿戴设备提示所述目标用户存在所述指定联系人的来电或短信。
可选的,所述用户终端还包括:
检测单元,用于在所述判断单元判断出所述标识信息所标记的联系人不为所述指定联系人时,检测在第二预设时间段内接收所述标识信息所标记的联系人的来电或短信的数量;
所述发送单元,还用于在所述数量超过预设数量时,向所述智能穿戴设备发送第二提示信息,所述第二提示信息用于指示所述智能穿戴设备提示所述目标用户存在同一联系人的所述数量的来电或短信。
可选的,所述用户终端还包括:
获取单元,用于获取所述用户终端当前的位置信息;
所述判断单元,还用于判断所述位置信息与预设位置信息是否匹配;
所述用户终端还包括:
连接单元,用于在所述判断单元判断出所述位置信息与所述预设位置信息匹配时,与智能穿戴设备建立通信连接,并触发所述接收单元执行所述接收智能穿戴设备发送的生理参数的操作。
可选的,所述用户终端还包括:
关闭单元,用于在所述判断单元判断出所述位置信息与所述预设位置信息不匹配时,关闭所述用户终端的防打扰模式。
实施本发明实施例,具有如下有益效果:
本发明实施例中,用户终端可以通过智能穿戴设备发送的用户的生理参数来判断目标用户是否处于睡眠状态,如果目标用户处于睡眠状态,就会开启用户终端的防打扰模式。这样可以在用户处于睡眠状态时自动开启防打扰模式,减少用户手动设置防打扰时间段的操作,从而更加灵活地实现对用户终端的防打扰模式的管理,提升用户体验。
附图说明
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下, 还可以根据这些附图获得其他的附图。
图1是本发明实施例公开的一种防打扰模式的管理方法的流程示意图;
图2是本发明实施例公开的另一种防打扰模式的管理方法的流程示意图;
图3是本发明实施例公开的又一种防打扰模式的管理方法的流程示意图;
图4是本发明实施例公开的一种用户终端的结构示意图;
图5是本发明实施例公开的另一种用户终端的结构示意图;
图6是本发明实施例公开的又一种用户终端的结构示意图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明实施例公开了一种防打扰模式的管理方法及用户终端,能够灵活地开启用户终端的防打扰模式。以下分别进行详细说明。
请参阅图1,图1是本发明实施例公开的一种防打扰模式的管理方法的流程示意图。如图1所示,该方法可以应用于智能手机(如Android手机等)、平板电脑、掌上电脑以及移动互联网设备(MobileInternetDevices,MID)、个人数字助理(Personal Digital Assistant,PDA)等用户终端,该用户终端能够接收短信以及接听电话。如图1所示,该防打扰模式的管理方法可以包括以下步骤:
S101、用户终端接收智能穿戴设备发送的生理参数。
本发明实施例中,智能穿戴设备可以包括但不限于智能手环、智能手表、智能眼镜等能够检测用户的生理参数的穿戴设备。其中,该生理参数是由该智能穿戴设备在单位时间段内针对目标用户采集的,也可以是在由多个单位时间段组成的第一预设时间段内针对目标用户采集的,本发明实施例不做限定。其中,该单位时间可以为1分钟,该第一预设时间段可以为3分钟、5分钟,也可以为10分钟,本发明实施例不做限定。
因此,智能穿戴设备可以将单位时间段内针对目标用户采集的生理参数发送给用户终端,也可以将多个单位时间段组成的第一预设时间段内针对目标用户采集的生理参数发送给用户终端,本发明所述不做限定。需要说明的是,该 生理参数可以包括目标用户的体温、血压、脉搏、呼吸频率、心率等身体机能参数中的一种或几种,本发明实施例不做限定。
本发明实施例中,智能穿戴设备可以是通过蓝牙、WIFI、NFC等无线传输方式将采集到的目标用户的生理参数发送给用户终端。
S102、用户终端根据该生理参数判断目标用户是否处于睡眠状态,若是,执行步骤S103;若否,执行步骤S101。
本发明实施例中,用户终端在接收到智能穿戴设备发送的生理参数之后,会根据该生理参数来判断目标用户是否处于睡眠状态。当判断出目标用户处于睡眠状态时,用户终端会自动开启防打扰模式;当判断出目标用户不处于睡眠状态时,如果用户终端此时处于防打扰模式,就会关闭其防打扰模式,如果用户终端此时不处于防打扰模式,就继续接收智能穿戴设备发送的目标用户的生理参数。
作为一种可行的实施方式,当该生理参数包括呼吸频率以及脉搏次数时,用户终端判断目标用户是否处于睡眠状态的具体方式可以为:
步骤11)判断该呼吸频率是否在预设呼吸频率范围内,并判断该脉搏次数是否在预设脉搏次数范围内;
步骤12)当该呼吸频率在预设呼吸频率范围内,且该脉搏次数在预设脉搏次数范围内时,确定该目标用户处于睡眠状态。
具体实现中,由于用户在处于睡眠状态时单位时间内的呼吸频率要比处于清醒状态时的呼吸频率和脉搏次数要低,且平稳,且处于睡眠状态时单位时间内的脉搏次数要比处于清醒状态时的脉搏次数要低。因此,智能穿戴设备或者用户终端可以预先记录目标用户处于清醒状态时单位时间内的平均呼吸频率以及平均脉搏次数,并根据一般用户处于睡眠状态时的呼吸频率减小量的范围以及脉搏次数减小量的范围来确定目标用户处于睡眠状态时的呼吸频率范围以及脉搏次数范围。
因此,用户终端在接收到智能穿戴设备发送的呼吸频率以及脉搏次数之后,就会判断该呼吸频率是否在预设呼吸频率范围内,并判断该脉搏次数是否在预设脉搏次数范围内。如果该呼吸频率在预设呼吸频率范围内,且该脉搏次数在预设脉搏次数范围内,那么用户终端就可以确定出该目标用户处于睡眠状态。
同样的,由于用户处于睡眠状态时,其体温以及血压也比处于清醒状态时 的体温和血压要低,所以用户终端也可以通过检测体温和血压来判断目标用户是否处于睡眠状态,其判断方式与根据呼吸频率和脉搏次数来判断目标用户是否处于睡眠状态的判断方式相同,本发明实施例在此不再赘述。
S103、用户终端开启防打扰模式,并结束本流程。
本发明实施例中,当用户终端根据目标用户的生理参数判断出目标用户处于睡眠状态时,用户终端就会开启防打扰模式。在防打扰模式下,用户终端在接收到来电或短信时,可以不提醒目标用户(即不会以振动或响铃或亮屏的方式提醒目标用户),也可以在拒绝来电时告知来电方该目标用户正在休息。
可见,在图1所描述的方法中,用户终端可以通过智能穿戴设备发送的用户的生理参数来判断目标用户是否处于睡眠状态,如果目标用户处于睡眠状态,就会开启用户终端的防打扰模式。这样可以在用户处于睡眠状态时自动开启防打扰模式,减少用户手动设置防打扰时间段的操作,从而更加灵活地实现对用户终端的防打扰模式的管理,提升用户体验。
请参阅图2,图2是本发明实施例公开的另一种防打扰模式的管理方法的流程示意图。如图2所示,该方法可以应用于智能手机(如Android手机等)、平板电脑、掌上电脑以及移动互联网设备、个人数字助理等用户终端,该用户终端能够接收短信以及接听电话。如图2所示,该防打扰模式的管理方法可以包括以下步骤:
S201、用户终端接收智能穿戴设备发送的生理参数。
S202、用户终端根据该生理参数判断目标用户是否处于睡眠状态,若是,执行步骤S203;若否,返回执行步骤S201。
S203、用户终端开启防打扰模式。
S204、当在防打扰模式下用户终端接收到来电或短信时,用户终端识别该来电或短信的标识信息。
本发明实施例中,由于在防打扰模式下,用户终端在接收到来电或短信时不会提醒用户。但是可能会出现这样的情况,用户终端在开启防打扰模式之后,用户的重要联系人会联系用户,这样就会导致用户不能及时接到重要来电或不能及时查看到重要短信。因此,用户终端可以预先设置指定联系人的姓名、联系电话等。当用户终端在防打扰模式下接收到来电或短信时,会识别该来电或 短信的标识信息。
需要说明的是,当在防打扰模式下用户终端接收到来电或短信时,用户终端识别该来电或短信的标识信息的步骤中,防打扰模式不仅限于通过判断目标用户处于睡眠状态时开启的,也可以是用户手动开启的,本发明实施例不做限定。
其中,该标识信息可以包括但不限于该来电或短信的电话号码、来电方姓名或短信发送方的姓名等信息。
S205、用户终端判断该标识信息所标记的联系人是否为指定联系人,若是,执行步骤S206;若否,执行步骤S207。
本发明实施例中,该指定联系人可以包括一个,也可以包括多个,且该指定联系人可以为通讯录中指定分组(如家人、朋友等)中的所有联系人,也可以为指定姓名或电话号码的联系人,本发明实施例不做限定。
因此,当识别出该来电或短信的标识信息时,用户终端就会进一步获取该标识信息所标记的联系人姓名或该姓名在通讯录中的分组,然后再进一步判断该联系人是否为指定联系人。也就是说,该用户终端可以判断该短信或来电的标识信息所标记的联系人的姓名是否为指定联系人中的联系人姓名,或该联系人的姓名是否为指定分组中的联系人姓名,如果是,就确定该标识信息所标记的联系人为指定联系人。
进一步的,当判断出该标识信息所标记的联系人为指定联系人时,用户终端就会向智能穿戴设备发送第一提示信息;当判断出该标识信息所标记的联系人不为指定联系人时,该用户终端就会进一步检测在第二预设时间段内接收该标识信息所标记的联系人的来电或短信的数量。
S206、用户终端向智能穿戴设备发送第一提示信息。
本发明实施例中,该第一提示信息用于指示该智能穿戴设备提示目标用户存在指定联系人的来电或短信。也就是说,当用户终端判断出该标识信息所标记的联系人为指定联系人时,该用户终端会向该智能穿戴设备发送第一提示信息。当该智能穿戴设备接收到用户终端发送的第一提示信息时,就会通过振动或响铃等方式提醒用户,以便用户能够及时接到指定联系人的来电,或查看到指定联系人的短信,从而避免错过重要电话或短信,提升用户体验。
S207、用户终端检测在第二预设时间段内接收该标识信息所标记的联系人 的来电或短信的数量。
本发明实施例中,第一预设时间段与第二预设时间段可以相同也可以不同,因此,第二预设时间段的取值范围也可以为3分钟、5分钟,甚至10分钟,本发明实施例不做限定。
通常情况下,用户终端在防打扰模式下仍然对指定联系人的来电或短信进行提醒,可能是目标用户不想错过重要联系人的所有来电或短信。但是,如果其他联系人在防打扰模式下同样打来电话或发来短信,并且来电次数和短信数量较多,那么可能表明该联系人有急事需联系上目标用户。因此,用户终端可以在判断出该标识信息所标记的联系人不为指定联系人时,检测在第二预设时间段内接收到该联系人的来电和/或短信的数量。
S208、当该数量超过预设数量时,用户终端向智能穿戴设备发送第二提示信息。
本发明实施例中,用户终端可以预先设定在防打扰模式下接收到同一联系人的来电或短信的预设数量。当用户终端检测到在第二预设时间段内接收到该标识信息所标记的联系人的来电或短信的数量时,用户终端可以进一步判断该数量是否超过该预设数量,如果超过,那么可以就表明该联系人可能有急事需要联系到目标用户。因此,该用户终端就可以向智能穿戴设备发送第二提示信息。
其中,该第二提示信息用于指示该智能穿戴设备提示目标用户存在同一联系人的该数量的来电或短信,因而,该智能穿戴设备在振动或响铃时,会在显示界面上显示该联系人的该数量的来电或短信的提示信息,从而方便目标用户及时回复该联系人。
举例来说,假设用户预先在手机上设置防打扰模式下指定联系人为老板,而其余联系人的来电或短信的预设数量为3。如果用户正在午休,手机就可以根据其佩戴的手环发送的生理参数来判断出该用户正处于睡眠状态,因而,手机就会自动开启防打扰模式。在防打扰模式下,如果老板打来电话,那么手机就会向手环发送提示信息,使得手环通过振动将用户叫醒,从而能够避免用户未能及时接到老板的来电。而如果在防打扰模式下有某个朋友打来电话,手机在刚开始是不会向用户提示。假如在3分钟内接到该朋友5次来电,那么手机也会向手环发送提示信息,使得手环通过振动将用户叫醒,从而使用户能够及时 接到该朋友的电话。
可见,在图2所描述的方法中,用户终端可以在防打扰模式下接收到指定联系人的来电或短信时,通过智能穿戴设备来提醒用户,从而可以避免用户未能及时接到指定联系人的来电或查看到指定联系人的短信。进一步的,用户终端也可以在防打扰模式下设置针对同一联系人的来电或短信的预设数量,当同一联系人的来电或短信的数量超过预设数量时,用户终端也可以通过智能穿戴设备来提醒用户。通过这种方式,可以避免用户错过重要信息,从而提升用户体验。
请参阅图3,图3是本发明实施例公开的又一种防打扰模式的管理方法的流程示意图。如图3所示,该方法可以应用于智能手机(如Android手机等)、平板电脑、掌上电脑以及移动互联网设备、个人数字助理等用户终端,该用户终端能够接收短信以及接听电话。如图3所示,该防打扰模式的管理方法可以包括以下步骤:
S301、用户终端获取当前的位置信息。
本发明实施例中,用户终端获取其当前所在位置的位置信息的方式可以是通过集成GPS定位、辅助GPS定位、无线网络定位、基站定位等方式获取,本发明实施例不做限定。
举例来说,以无线网络定位-WIFI定位为例,用户终端上可能会安装各种定位应用程序,这些定位应用程序打开之后,首先会侦测用户终端接入的WIFI的路由器地址,然后在其WIFI位置数据库和地图数据的配合下完成定位,从而得到用户终端当前的位置信息。要使用WIFI定位,用户终端必须支持并启动WIFI。通过WIFI定位的精度取决于WIFI路由器的密度以及WIFI位置数据库的详细程度。
又举例来说,以集成GPS定位为例,基于全球卫星定位系统,有24颗GPS卫星分布在距离地面1.2万公里6个道平面上,以12小时的周期环绕地球运行,使得任意时刻地面上任意点都可以观测到4颗以上的卫星。集成GPS定位需要用户终端内置有GPS模块,该GPS模块只有接收功能,没有发射功能。全球卫星定位系统中的24颗GPS卫星会不断向地球发射包括有发射时间、卫星位置等重要参数的无线信号。因此,用户终端接收到GPS卫星发射的无线信号之后, 会利用多个GPS卫星的同一时间发出的信号到达的先后顺序以及时差计算出该用户终端距各个GPS卫星的距离,然后根据三维坐标中的距离公式,利用3颗卫星组成3个方程式,计算出用户终端的位置坐标为(X,Y,Z)。考虑到卫星时钟与用户终端的时钟之间可能存在着误差,一般情况下,用户终端在定位的时候是需要引入第4颗卫星,形成4个方程式进行求解,从而可以得到用户终端的经纬度和高度。事实上,用户终端往往可以锁住4颗以上的卫星,这时,用户终端可以按照卫星的星座分布分成若干组,每组4颗,然后通过算法挑选出误差最小的一组用作定位,从而计算得到用户终端当前所处位置的位置信息。
S302、用户终端判断该位置信息与预设位置信息是否匹配,若是执行步骤S303;若否,执行步骤S307。
本发明实施例中,用户终端可以预先设定与智能穿戴设备建立通信连接的位置,如办公室、家里等,并存储该位置具体的位置信息,即预设位置信息。用户终端在获取到当前所处位置的位置信息之后,会进一步判断该位置信息与预设位置信息是否匹配。其中,该位置信息可以为坐标信息等,该位置信息与预设位置信息匹配可以理解为:该位置信息所标记的地点与预设位置信息所标记的为同一地点,或距离在预设距离范围(如50米)内。
因此,当判断出该位置信息与预设位置信息匹配时,该用户终端就会与智能穿戴设备建立通信连接;当判断出该位置信息与预设位置信息不匹配时,该用户终端就会关闭防打扰模式。
S303、用户终端与智能穿戴设备建立通信连接。
本发明实施例中,用户终端与智能穿戴设备建立的通信连接可以为蓝牙、WIFI、NFC等连接。在通信连接建立完成之后,用户终端与智能穿戴设备之间就可以随时进行通信。这样在用户可能会处于睡眠状态的地点与智能穿戴设备建立通信连接,可以减少用户终端以及智能手环进行数据交互时的功耗。
S304、用户终端接收智能穿戴设备发送的生理参数。
S305、用户终端根据该生理参数判断目标用户是否处于睡眠状态,若是,执行步骤S306;若否,返回执行步骤S304。
S306、用户终端开启防打扰模式。
S307、用户终端关闭防打扰模式。
本发明实施例中,当判断出用户终端当前的位置信息与预设位置信息不匹 配时,用户终端就会关闭当前启动的防打扰模式。进一步的,用户终端在关闭防打扰模式之后,还可以自动断开与智能穿戴设备之间的通信连接,以减少智能穿戴设备以及用户终端的功耗。
可选的,如果当前的位置信息与预设位置信息不匹配,且用户终端未开启防打扰模式,那么用户终端就不做任何操作。
举例来说,用户可以在手机上设置家的位置信息,当用户回到家时,手机在检测到当前的位置信息与家的位置信息一致时,就会自动与用户手腕上的手环建立通信连接,手环每隔一段时间就会向手机发送该用户的生理参数。当用户接收到手环发送的生理参数,并根据该生理参数判断出该用户处于睡眠状态时,手机就会自动开启防打扰模式。而当用户从离开家,也就是手机在检测到当前的位置信息与家的位置信息不一致时,手机就会自动关闭之前开启的防打扰模式,并断开与手环的通信连接。
可见,在图3所描述的方法中,用户终端只有在预设位置才会与智能穿戴设备建立通信连接,从而接收智能穿戴设备发送的目标用户的生理参数。用户终端并在离开预设位置时关闭防打扰模式,并断开与智能穿戴设备的通信连接,不仅可以减小用户终端以及智能穿戴设备的功耗,还可以防止用户在开启防打扰模式之后忘记关闭而导致未能及时接到来电的情况发生,从而提升用户体验。
请参阅图4,图4是本发明实施例公开的一种用户终端的结构示意图。其中,图4所示的用户终端400可以包括但不限于智能手机(如Android手机等)、平板电脑、掌上电脑以及移动互联网设备、个人数字助理等,该用户终端400能够接收短信以及接听电话。如图4所示,该用户终端400可以包括以下单元:
接收单元401,用于接收智能穿戴设备发送的生理参数。
本发明实施例中,智能穿戴设备可以包括但不限于智能手环、智能手表、智能眼镜等能够检测用户的生理参数的穿戴设备。其中,该生理参数是由该智能穿戴设备在单位时间段内针对目标用户采集的,也可以是在由多个单位时间段组成的第一预设时间段内针对目标用户采集的,本发明实施例不做限定。其中,该单位时间可以为1分钟,该第一预设时间段可以为3分钟、5分钟,也可以为10分钟,本发明实施例不做限定。
因此,智能穿戴设备可以将单位时间段内针对目标用户采集的生理参数发 送给用户终端400,也可以将多个单位时间段组成的第一预设时间段内针对目标用户采集的生理参数发送给用户终端400,本发明所述不做限定。需要说明的是,该生理参数可以包括目标用户的体温、血压、脉搏、呼吸频率、心率等身体机能参数中的一种或几种,本发明实施例不做限定。
本发明实施例中,智能穿戴设备可以是通过蓝牙、WIFI、NFC等无线传输方式将采集到的目标用户的生理参数发送给用户终端400。
判断单元402,用于根据该生理参数判断目标用户是否处于睡眠状态。
本发明实施例中,在接收单元401接收到智能穿戴设备发送的生理参数之后,判断单元402会根据该生理参数来判断目标用户是否处于睡眠状态。当判断单元402判断出目标用户处于睡眠状态时,开启单元403会自动开启防打扰模式;当判断单元402判断出目标用户不处于睡眠状态时,如果用户终端400此时处于防打扰模式,就会关闭其防打扰模式,如果用户终端400此时不处于防打扰模式,接收单元401就继续接收智能穿戴设备发送的目标用户的生理参数。
作为一种可行的实施方式,当该生理参数包括呼吸频率以及脉搏次数时,判断单元402判断目标用户是否处于睡眠状态的具体方式可以为:
判断该呼吸频率是否在预设呼吸频率范围内,并判断该脉搏次数是否在预设脉搏次数范围内;
当该呼吸频率在预设呼吸频率范围内,且该脉搏次数在预设脉搏次数范围内时,确定该目标用户处于睡眠状态。
具体实现中,由于用户在处于睡眠状态时单位时间内的呼吸频率要比处于清醒状态时的呼吸频率和脉搏次数要低,且平稳,且处于睡眠状态时单位时间内的脉搏次数要比处于清醒状态时的脉搏次数要低。因此,智能穿戴设备或者用户终端400可以预先记录目标用户处于清醒状态时单位时间内的平均呼吸频率以及平均脉搏次数,并根据一般用户处于睡眠状态时的呼吸频率减小量的范围以及脉搏次数减小量的范围来确定目标用户处于睡眠状态时的呼吸频率范围以及脉搏次数范围。
因此,在接收单元401接收到智能穿戴设备发送的呼吸频率以及脉搏次数之后,判断单元402就会判断该呼吸频率是否在预设呼吸频率范围内,并判断该脉搏次数是否在预设脉搏次数范围内。如果该呼吸频率在预设呼吸频率范围 内,且该脉搏次数在预设脉搏次数范围内,那么判断单元402就可以确定出该目标用户处于睡眠状态。
同样的,由于用户处于睡眠状态时,其体温以及血压也比处于清醒状态时的体温和血压要低,所以判断单元402也可以通过检测体温和血压来判断目标用户是否处于睡眠状态,其判断方式与根据呼吸频率和脉搏次数来判断目标用户是否处于睡眠状态的判断方式相同,本发明实施例在此不再赘述。
开启单元403,用于在判断单元402判断出目标用户处于睡眠状态时,开启防打扰模式。
本发明实施例中,当判断单元402根据目标用户的生理参数判断出目标用户处于睡眠状态时,开启单元403就会开启防打扰模式。在防打扰模式下,用户终端400在接收到来电或短信时,可以不提醒目标用户(即不会以振动或响铃或亮屏的方式提醒目标用户),也可以在拒绝来电时告知来电方该目标用户正在休息。
可见,在图4所描述的用户终端中,用户终端可以通过智能穿戴设备发送的用户的生理参数来判断目标用户是否处于睡眠状态,如果目标用户处于睡眠状态,就会开启用户终端的防打扰模式。这样可以在用户处于睡眠状态时自动开启防打扰模式,减少用户手动设置防打扰时间段的操作,从而更加灵活地实现对用户终端的防打扰模式的管理,提升用户体验。
请参阅图5,图5是本发明实施例公开的另一种用户终端的结构示意图。其中,图5所示的用户终端400是在图4所示的用户终端400的基础上优化得到的。如图5所示,该用户终端400还可以包括以下单元:
识别单元404,用于在防打扰模式下用户终端400接收到来电或短信时,识别该来电或短信的标识信息。
本发明实施例中,由于在防打扰模式下,用户终端400在接收到来电或短信时不会提醒用户。但是可能会出现这样的情况,在开启单元403开启防打扰模式之后,用户的重要联系人会联系用户,这样就会导致用户不能及时接到重要来电或不能及时查看到重要短信。因此,用户终端400可以预先设置指定联系人的姓名、联系电话等。当用户终端400在防打扰模式下接收到来电或短信时,识别单元404就会识别该来电或短信的标识信息。
需要说明的是,当在防打扰模式下接收到来电或短信时,识别单元404识别该来电或短信的标识信息的操作中,防打扰模式不仅限于通过判断目标用户处于睡眠状态时开启的,也可以是用户手动开启的,本发明实施例不做限定。
其中,该标识信息可以包括但不限于该来电或短信的电话号码、来电方姓名或短信发送方的姓名等信息。
上述判断单元402,还用于判断该标识信息所标记的联系人是否为指定联系人。
本发明实施例中,该指定联系人可以包括一个,也可以包括多个,且该指定联系人可以为通讯录中指定分组(如家人、朋友等)中的所有联系人,也可以为指定姓名或电话号码的联系人,本发明实施例不做限定。
因此,当识别单元404识别出该来电或短信的标识信息时,用户终端400就会进一步获取该标识信息所标记的联系人姓名或该姓名在通讯录中的分组,然后判断单元402再进一步判断该联系人是否为指定联系人。也就是说,判断单元402可以判断该短信或来电的标识信息所标记的联系人的姓名是否为指定联系人中的联系人姓名,或该联系人的姓名是否为指定分组中的联系人姓名,如果是,就确定该标识信息所标记的联系人为指定联系人。
进一步的,当判断单元402判断出该标识信息所标记的联系人为指定联系人时,发生单元405就会向智能穿戴设备发送第一提示信息;当判断单元402判断出该标识信息所标记的联系人不为指定联系人时,检测单元406就会进一步检测在第二预设时间段内接收该标识信息所标记的联系人的来电或短信的数量。
发送单元405,用于在上述判断单元402判断出该标识信息所标记的联系人为指定联系人时,向智能穿戴设备发送第一提示信息。
本发明实施例中,该第一提示信息用于指示该智能穿戴设备提示目标用户存在指定联系人的来电或短信。也就是说,当判断单元402判断出该标识信息所标记的联系人为指定联系人时,发送单元405会向该智能穿戴设备发送第一提示信息。当该智能穿戴设备接收到用户终端400发送的第一提示信息时,就会通过振动或响铃等方式提醒用户,以便用户能够及时接到指定联系人的来电,或查看到指定联系人的短信,从而避免错过重要电话或短信,提升用户体验。
检测单元406,用于在上述判断单元402判断出该标识信息所标记的联系人 不为指定联系人时,检测在第二预设时间段内接收该标识信息所标记的联系人的来电或短信的数量。
本发明实施例中,第一预设时间段与第二预设时间段可以相同也可以不同,因此,第二预设时间段的取值范围也可以为3分钟、5分钟,甚至10分钟,本发明实施例不做限定。
通常情况下,用户终端400在防打扰模式下仍然对指定联系人的来电或短信进行提醒,可能是目标用户不想错过重要联系人的所有来电或短信。但是,如果其他联系人在防打扰模式下同样打来电话或发来短信,并且来电次数和短信数量较多,那么可能表明该联系人有急事需联系上目标用户。因此,检测单元406可以在判断单元402判断出该标识信息所标记的联系人不为指定联系人时,检测在第二预设时间段内接收到该联系人的来电和/或短信的数量。
上述发送单元405,还用于当该数量超过预设数量时,向智能穿戴设备发送第二提示信息。
本发明实施例中,用户终端400可以预先设定在防打扰模式下接收到同一联系人的来电或短信的预设数量。当检测单元406检测到在第二预设时间段内接收到该标识信息所标记的联系人的来电或短信的数量时,用户终端400可以进一步判断该数量是否超过该预设数量,如果超过,那么可以就表明该联系人可能有急事需要联系到目标用户。因此,发送单元405就可以向智能穿戴设备发送第二提示信息。
其中,该第二提示信息用于指示该智能穿戴设备提示目标用户存在同一联系人的该数量的来电或短信,因而,该智能穿戴设备在振动或响铃时,会在显示界面上显示该联系人的该数量的来电或短信的提示信息,从而方便目标用户及时回复该联系人。
举例来说,假设用户预先在手机上设置防打扰模式下指定联系人为老板,而其余联系人的来电或短信的预设数量为3。如果用户正在午休,手机就可以根据其佩戴的手环发送的生理参数来判断出该用户正处于睡眠状态,因而,手机就会自动开启防打扰模式。在防打扰模式下,如果老板打来电话,那么手机就会向手环发送提示信息,使得手环通过振动将用户叫醒,从而能够避免用户未能及时接到老板的来电。而如果在防打扰模式下有某个朋友打来电话,手机在刚开始是不会向用户提示。假如在3分钟内接到该朋友5次来电,那么手机也 会向手环发送提示信息,使得手环通过振动将用户叫醒,从而使用户能够及时接到该朋友的电话。
可见,在图5所描述的用户终端中,用户终端可以在防打扰模式下接收到指定联系人的来电或短信时,通过智能穿戴设备来提醒用户,从而可以避免用户未能及时接到指定联系人的来电或查看到指定联系人的短信。进一步的,用户终端也可以在防打扰模式下设置针对同一联系人的来电或短信的预设数量,当同一联系人的来电或短信的数量超过预设数量时,用户终端也可以通过智能穿戴设备来提醒用户。通过这种方式,可以避免用户错过重要信息,从而提升用户体验。
请参阅图6,图6是本发明实施例公开的又一种用户终端的结构示意图。其中,图6所示的用户终端400是在图4所示的用户终端400的基础上优化得到的。如图6所示,该用户终端400还可以包括以下单元:
获取单元407,用于获取用户终端400当前的位置信息。
本发明实施例中,获取单元407获取用户终端400当前所在位置的位置信息的方式可以是通过集成GPS定位、辅助GPS定位、无线网络定位、基站定位等方式获取,本发明实施例不做限定。
举例来说,以无线网络定位-WIFI定位为例,用户终端400上可能会安装各种定位应用程序,这些定位应用程序打开之后,首先会侦测用户终端400接入的WIFI的路由器地址,然后在其WIFI位置数据库和地图数据的配合下完成定位,从而得到用户终端400当前的位置信息。要使用WIFI定位,用户终端必须支持并启动WIFI。通过WIFI定位的精度取决于WIFI路由器的密度以及WIFI位置数据库的详细程度。
又举例来说,以集成GPS定位为例,基于全球卫星定位系统,有24颗GPS卫星分布在距离地面1.2万公里6个道平面上,以12小时的周期环绕地球运行,使得任意时刻地面上任意点都可以观测到4颗以上的卫星。集成GPS定位需要用户终端400内置有GPS模块,该GPS模块只有接收功能,没有发射功能。全球卫星定位系统中的24颗GPS卫星会不断向地球发射包括有发射时间、卫星位置等重要参数的无线信号。因此,用户终端400接收到GPS卫星发射的无线信号之后,会利用多个GPS卫星的同一时间发出的信号到达的先后顺序以及时差 计算出该用户终端400距各个GPS卫星的距离,然后根据三维坐标中的距离公式,利用3颗卫星组成3个方程式,计算出用户终端400的位置坐标为(X,Y,Z)。考虑到卫星时钟与用户终端400的时钟之间可能存在着误差,一般情况下,用户终端400在定位的时候是需要引入第4颗卫星,形成4个方程式进行求解,从而可以得到用户终端400的经纬度和高度。事实上,用户终端400往往可以锁住4颗以上的卫星,这时,用户终端400可以按照卫星的星座分布分成若干组,每组4颗,然后通过算法挑选出误差最小的一组用作定位,从而计算得到用户终端400当前所处位置的位置信息。
上述判断单元402,还用于判断该位置信息与预设位置信息是否匹配。
本发明实施例中,用户终端400可以预先设定与智能穿戴设备建立通信连接的位置,如办公室、家里等,并存储该位置具体的位置信息,即预设位置信息。在获取单元407获取到当前所处位置的位置信息之后,判断单元402会进一步判断该位置信息与预设位置信息是否匹配。其中,该位置信息可以为坐标信息等,该位置信息与预设位置信息匹配可以理解为:该位置信息所标记的地点与预设位置信息所标记的为同一地点,或距离在预设距离范围(如50米)内。
因此,当判断单元402判断出该位置信息与预设位置信息匹配时,连接单元408就会与智能穿戴设备建立通信连接;当判断单元402判断出该位置信息与预设位置信息不匹配时,关闭单元409就会关闭防打扰模式。
连接单元408,用于在上述判断单元402判断出该位置信息与预设位置信息匹配时,与智能穿戴设备建立通信连接,并触发接收单元401接收智能穿戴设备发送的生理参数。
本发明实施例中,用户终端400与智能穿戴设备建立的通信连接可以为蓝牙、WIFI、NFC等连接。在通信连接建立完成之后,用户终端400与智能穿戴设备之间就可以随时进行通信。这样在用户可能会处于睡眠状态的地点与智能穿戴设备建立通信连接,可以减少用户终端以及智能手环进行数据交互时的功耗。
关闭单元409,用于在上述判断单元402判断出该位置信息与预设位置信息不匹配时,关闭用户终端400的防打扰模式。
本发明实施例中,当判断单元402判断出用户终端400当前的位置信息与预设位置信息不匹配时,关闭单元409就会关闭当前启动的防打扰模式。进一 步的,用户终端400在关闭防打扰模式之后,还可以自动断开与智能穿戴设备之间的通信连接,以减少智能穿戴设备以及用户终端的功耗。
可选的,如果当前的位置信息与预设位置信息不匹配,且用户终端400未开启防打扰模式,那么用户终端400就不做任何操作。
举例来说,用户可以在手机上设置家的位置信息,当用户回到家时,手机在检测到当前的位置信息与家的位置信息一致时,就会自动与用户手腕上的手环建立通信连接,手环每隔一段时间就会向手机发送该用户的生理参数。当用户接收到手环发送的生理参数,并根据该生理参数判断出该用户处于睡眠状态时,手机就会自动开启防打扰模式。而当用户从离开家,也就是手机在检测到当前的位置信息与家的位置信息不一致时,手机就会自动关闭之前开启的防打扰模式,并断开与手环的通信连接。
可见,在图6所描述的用户终端中,用户终端只有在预设位置才会与智能穿戴设备建立通信连接,从而接收智能穿戴设备发送的目标用户的生理参数。用户终端并在离开预设位置时关闭防打扰模式,并断开与智能穿戴设备的通信连接,不仅可以减小用户终端以及智能穿戴设备的功耗,还可以防止用户在开启防打扰模式之后忘记关闭而导致未能及时接到来电的情况发生,从而提升用户体验。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(Read-Only Memory,ROM)或随机存储记忆体(Random Access Memory,RAM)等。
以上所揭露的仅为本发明较佳实施例而已,当然不能以此来限定本发明之权利范围,因此依本发明权利要求所作的等同变化,仍属本发明所涵盖的范围。

Claims (10)

  1. 一种防打扰模式的管理方法,其特征在于,包括:
    用户终端接收智能穿戴设备发送的生理参数,所述生理参数是由所述智能穿戴设备在第一预设时间段内针对目标用户采集的;
    所述用户终端根据所述生理参数判断所述目标用户是否处于睡眠状态;
    当所述目标用户处于睡眠状态时,所述用户终端开启防打扰模式。
  2. 根据权利要求1所述的方法,其特征在于,所述方法还包括:
    当在所述防打扰模式下所述用户终端接收到来电或短信时,所述用户终端识别所述来电或所述短信的标识信息;
    所述用户终端判断所述标识信息所标记的联系人是否为指定联系人;
    当所述标识信息所标记的联系人为所述指定联系人时,所述用户终端向所述智能穿戴设备发送第一提示信息,所述第一提示信息用于指示所述智能穿戴设备提示所述目标用户存在所述指定联系人的来电或短信。
  3. 根据权利要求2所述的方法,其特征在于,所述方法还包括:
    当所述标识信息所标记的联系人不为所述指定联系人时,所述用户终端检测在第二预设时间段内接收所述标识信息所标记的联系人的来电或短信的数量;
    当所述数量超过预设数量时,所述用户终端向所述智能穿戴设备发送第二提示信息,所述第二提示信息用于指示所述智能穿戴设备提示所述目标用户存在同一联系人的所述数量的来电或短信。
  4. 根据权利要求1~3任一项所述的方法,其特征在于,所述方法还包括:
    用户终端获取当前的位置信息;
    所述用户终端判断所述位置信息与预设位置信息是否匹配;
    当所述位置信息与所述预设位置信息匹配时,所述用户终端与智能穿戴设备建立通信连接,并执行所述接收智能穿戴设备发送的生理参数的步骤。
  5. 根据权利要求4所述的方法,其特征在于,所述方法还包括:
    当所述位置信息与所述预设位置信息不匹配时,所述用户终端关闭所述防打扰模式。
  6. 一种用户终端,其特征在于,包括:
    接收单元,用于接收智能穿戴设备发送的生理参数,所述生理参数是由所述智能穿戴设备在第一预设时间段内针对目标用户采集的;
    判断单元,用于根据所述生理参数判断所述目标用户是否处于睡眠状态;
    开启单元,用于在所述判断单元判断出所述目标用户处于睡眠状态时,开启防打扰模式。
  7. 根据权利要求6所述的用户终端,其特征在于,所述用户终端还包括:
    识别单元,用于在所述防打扰模式下所述用户终端接收到来电或短信时,识别所述来电或所述短信的标识信息;
    所述判断单元,还用于判断所述标识信息所标记的联系人是否为指定联系人;
    所述用户终端还包括:
    发送单元,用于在所述判断单元判断出所述标识信息所标记的联系人为所述指定联系人时,向所述智能穿戴设备发送第一提示信息,所述第一提示信息用于指示所述智能穿戴设备提示所述目标用户存在所述指定联系人的来电或短信。
  8. 根据权利要求7所述的用户终端,其特征在于,所述用户终端还包括:
    检测单元,用于在所述判断单元判断出所述标识信息所标记的联系人不为所述指定联系人时,检测在第二预设时间段内接收所述标识信息所标记的联系人的来电或短信的数量;
    所述发送单元,还用于在所述数量超过预设数量时,向所述智能穿戴设备发送第二提示信息,所述第二提示信息用于指示所述智能穿戴设备提示所述目标用户存在同一联系人的所述数量的来电或短信。
  9. 根据权利要求6~8任一项所述的用户终端,其特征在于,所述用户终端 还包括:
    获取单元,用于获取所述用户终端当前的位置信息;
    所述判断单元,还用于判断所述位置信息与预设位置信息是否匹配;
    所述用户终端还包括:
    连接单元,用于在所述判断单元判断出所述位置信息与所述预设位置信息匹配时,与智能穿戴设备建立通信连接,并触发所述接收单元执行所述接收智能穿戴设备发送的生理参数的操作。
  10. 根据权利要求9所述的用户终端,其特征在于,所述用户终端还包括:
    关闭单元,用于在所述判断单元判断出所述位置信息与所述预设位置信息不匹配时,关闭所述用户终端的防打扰模式。
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