CN106788540B - Play mode switching control method of wearable device and wearable device - Google Patents
Play mode switching control method of wearable device and wearable device Download PDFInfo
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- CN106788540B CN106788540B CN201611227202.5A CN201611227202A CN106788540B CN 106788540 B CN106788540 B CN 106788540B CN 201611227202 A CN201611227202 A CN 201611227202A CN 106788540 B CN106788540 B CN 106788540B
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- 238000000034 method Methods 0.000 title claims abstract description 48
- 230000009471 action Effects 0.000 claims abstract description 183
- 210000000988 bone and bone Anatomy 0.000 claims abstract description 27
- 230000005236 sound signal Effects 0.000 claims abstract description 14
- 230000005057 finger movement Effects 0.000 claims description 156
- 238000001514 detection method Methods 0.000 claims description 85
- 230000015654 memory Effects 0.000 claims description 23
- 238000004891 communication Methods 0.000 claims description 17
- 238000012544 monitoring process Methods 0.000 claims description 15
- 210000003205 muscle Anatomy 0.000 claims description 13
- 230000004044 response Effects 0.000 claims description 9
- 238000006243 chemical reaction Methods 0.000 claims description 2
- 238000010586 diagram Methods 0.000 description 16
- 230000006870 function Effects 0.000 description 15
- 230000000694 effects Effects 0.000 description 12
- 230000008569 process Effects 0.000 description 10
- 210000000707 wrist Anatomy 0.000 description 5
- 235000013399 edible fruits Nutrition 0.000 description 4
- 238000012545 processing Methods 0.000 description 3
- 210000003454 tympanic membrane Anatomy 0.000 description 3
- 210000003491 skin Anatomy 0.000 description 2
- 230000001360 synchronised effect Effects 0.000 description 2
- OKTJSMMVPCPJKN-UHFFFAOYSA-N Carbon Chemical compound [C] OKTJSMMVPCPJKN-UHFFFAOYSA-N 0.000 description 1
- 229910052799 carbon Inorganic materials 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 238000011982 device technology Methods 0.000 description 1
- 210000003027 ear inner Anatomy 0.000 description 1
- 230000005611 electricity Effects 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 238000007689 inspection Methods 0.000 description 1
- 206010033675 panniculitis Diseases 0.000 description 1
- 210000004872 soft tissue Anatomy 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
- 210000004304 subcutaneous tissue Anatomy 0.000 description 1
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B1/00—Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
- H04B1/38—Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
- H04B1/3827—Portable transceivers
- H04B1/385—Transceivers carried on the body, e.g. in helmets
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04B—TRANSMISSION
- H04B13/00—Transmission systems characterised by the medium used for transmission, not provided for in groups H04B3/00 - H04B11/00
- H04B13/005—Transmission systems in which the medium consists of the human body
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72448—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04R—LOUDSPEAKERS, MICROPHONES, GRAMOPHONE PICK-UPS OR LIKE ACOUSTIC ELECTROMECHANICAL TRANSDUCERS; DEAF-AID SETS; PUBLIC ADDRESS SYSTEMS
- H04R3/00—Circuits for transducers, loudspeakers or microphones
- H04R3/12—Circuits for transducers, loudspeakers or microphones for distributing signals to two or more loudspeakers
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- Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Computer Networks & Wireless Communication (AREA)
- Health & Medical Sciences (AREA)
- General Health & Medical Sciences (AREA)
- Otolaryngology (AREA)
- Physics & Mathematics (AREA)
- Acoustics & Sound (AREA)
- Human Computer Interaction (AREA)
- Telephone Function (AREA)
Abstract
The embodiment of the invention relates to the technical field of wearable equipment, and discloses a playing mode switching control method of wearable equipment and the wearable equipment, wherein the method comprises the following steps: detecting arm actions of an arm wearing the wearable device; identifying whether the arm action is matched with a preset arm action; if the preset arm action is matched, detecting the action of a finger wearing the arm of the wearable device; identifying whether the finger action is matched with a preset finger action; if the preset finger action is matched, switching the playing mode of the wearable device sound from the playing mode to the bone conduction mode; the bone conduction mode is used for converting an audio signal into a vibration signal and transmitting the vibration signal through a bone medium. The embodiment of the invention is used for reducing the risk of stealing the wearable device during sound playing so as to improve the privacy of a user and improve the use experience of the wearable device.
Description
Technical field
The present invention relates to wearable device technical fields, and in particular to a kind of play mode switching control of wearable device
Method and wearable device.
Background technique
With the development of wearable device technology, wearable device can be realized various functions, and disappeared gradually by vast
The person of expense receives.For example, wearable device (such as smartwatch) is able to achieve the functions such as phone, short message, mail, photo and music.
The play mode of wearable device sound currently on the market is relatively simple, and usually the outer of external speaker puts mould
Formula is extremely difficult to the effect of privacy call.In practical applications, it in order to prevent call from being intercepted by people around as much as possible, uses
Family, which usually requires wearable device is tightly attached to ear as shown in Figure 1, converses, however this mode is still in the presence of call
The risk intercepted by people around;In addition, wearable device is usually worn in wrist, by meeting when wearable device abutting ear
Very big inconvenience is brought to call, to reduce the call experience of user.
Summary of the invention
The embodiment of the invention discloses the play mode method for handover control and wearable device of a kind of wearable device, use
In reducing wearable device stolen risk heard when sound plays, to improve user privacy, and also improves and can wear
Wear the usage experience sense of equipment.
First aspect present invention discloses a kind of play mode method for handover control of wearable device, it may include:
The arm action of the wearable device arm is worn in detection;
Identify whether the arm action matches default arm action;
If matching the default arm action, the finger movement of the wearable device arm is worn in detection;
Identify whether the finger movement matches default finger movement;
If matching the default finger movement, the play mode of the wearable device sound is switched from outer mode playback
To bone-conduction mode;Wherein, the bone-conduction mode is for converting audio signals into vibration signal and being carried out by bone medium
Transmitting.
As an alternative embodiment, the wearable device is worn in the detection in first aspect present invention
Before the arm action of arm, the method also includes:
It determines whether the wearable device receives incoming call, or determines whether the wearable device is in logical
Speech phase;If the wearable device receives the incoming call or the wearable device is on call, hold
The step of arm action of the wearable device arm is worn in the row detection.
As an alternative embodiment, in first aspect present invention, if the wearable device receives institute
State incoming call and the play mode by the wearable device sound from outer mode playback switch to bone-conduction mode it
Afterwards, the method also includes:
Judge whether the incoming call is switched on;If the incoming call is not turned on, the incoming call is connected.
As an alternative embodiment, in first aspect present invention, if the wearable device is in call
State, after the finger movement that the wearable device arm is worn in detection, and whether the identification finger movement matches
Before default finger movement, the method also includes:
Identify whether the finger movement matches default Hangup action, if the matching default Hangup action, hangs up institute
State the current talking of wearable device;If mismatching the default Hangup action, executing the identification finger movement is
No the step of matching default finger movement.
As an alternative embodiment, in first aspect present invention, the connection incoming call includes:
Obtain the contact number of the incoming call;When identifying that the contact number belongs to first kind contact person,
Connect the incoming call;When identifying that the contact number belongs to the second class contact person, plays password and obtain voice to obtain
Call password is taken, and monitors the Password Input voice for obtaining voice input for the password, identifies the Password Input language
Whether the password that sound includes matches with preset password;If it does, connecting the incoming call.
As an alternative embodiment, the wearable device is worn in the detection in first aspect present invention
Before the arm action of arm, the method also includes:
Monitor whether the wearable device receives unread message prompting;When monitoring that the wearable device receives
When unread message is reminded, the reading instruction that indicated unread message is reminded for the unread message of user's input is received;
It reminds indicated unread message to be converted into voice messaging the unread message in response to the reading instruction, and executes inspection
The step of surveying the arm action for wearing the wearable device arm.
Second aspect of the present invention discloses a kind of wearable device, it may include:
First detection unit, for detecting the arm action for wearing the wearable device arm;
First recognition unit, whether the arm action matches default arm action for identification;
Second detection unit, for identifying that the arm action matches the default arm when first recognition unit
The finger movement of the wearable device arm is worn in movement, detection;
Second recognition unit, whether the finger movement matches default finger movement for identification;
Switch unit, for identifying that the finger movement matches the default finger and moves when second recognition unit
Make, the play mode of the wearable device sound is switched into bone-conduction mode from outer mode playback;Wherein, the osteoacusis mould
Formula is for converting audio signals into vibration signal and being transmitted by bone medium.
As an alternative embodiment, in second aspect of the present invention, the wearable device further include:
Determination unit, for worn in the first detection unit detection wearable device arm arm action it
Before, determine whether the wearable device receives incoming call or determine whether the wearable device is in call shape
State;
The first detection unit is specifically used for, when the determination unit determine the wearable device receive it is described come
Electric calling or the wearable device are on call, and the arm action of the wearable device arm is worn in detection.
As an alternative embodiment, in second aspect of the present invention, the wearable device further include:
On-unit determines that the wearable device receives the incoming call for working as the determination unit, and
After the play mode of the wearable device sound is switched to bone-conduction mode from outer mode playback by the switch unit, judgement
Whether the incoming call is switched on;If the incoming call is not turned on, the incoming call is connected.
As an alternative embodiment, in second aspect of the present invention, the wearable device further include:
Second recognition unit is also used to determine that the wearable device is on call when the determination unit
When, after the finger movement of the wearable device arm is worn in second detection unit detection, and described second
Before recognition unit identifies whether the finger movement matches default finger movement, it is default to identify whether the finger movement matches
Hangup action;
Unit is hung up, for identifying that the finger movement matches the default Hangup action when second recognition unit
When, hang up the current talking of the wearable device.
As an alternative embodiment, the on-unit specifically includes in second aspect of the present invention:
Number acquiring unit, for obtaining the contact number of the incoming call;
First on-unit, for connecting the incoming call when identifying that the contact number belongs to first kind contact person
Calling;
Second on-unit identifies that the contact number belongs to the second class contact person for working as, plays password and obtain
Voice is to obtain call password, and monitors the Password Input voice that voice input is obtained for the password, identifies described close
Whether the password that code input voice includes matches with preset password;If it does, connecting the incoming call.
As an alternative embodiment, in second aspect of the present invention, the wearable device further include:
Message monitoring unit, the arm for wearing the wearable device arm in first detection unit detection are dynamic
Before work, monitor whether the wearable device receives unread message prompting;
Instruction receiving unit, for monitoring that the wearable device receives unread message when the message monitoring unit
When prompting, the reading instruction that indicated unread message is reminded for the unread message of user's input is received;
Voice converting unit, for reading the instruction unread message that unread message prompting is indicated in response to described
It is converted into voice messaging;
The first detection unit is specifically used for, in the voice converting unit that unread message prompting is indicated
After unread message is converted into voice messaging, the arm action of the wearable device arm is worn in detection.
Third aspect present invention discloses a kind of wearable device, it may include:
One or more than one processor, the memory being electrically connected respectively with the processor, osteoacusis vibrate
Module, external speaker, microphone, first sensor, second sensor, communication module, battery and display screen;
Wherein, it is dynamic to trigger the arm that the wearable device arm is worn in the first sensor detection for the processor
Make, identifies whether the arm action matches default arm action;When the arm action matches the default arm action,
Trigger the finger movement that the wearable device arm is worn in the second sensor detection;Identify the finger movement whether
With default finger movement;When the finger movement matches the default finger movement, by broadcasting for the wearable device sound
Mode playback switches to bone-conduction mode from outer mode playback;Wherein, the bone-conduction mode is for converting audio signals into vibration
Signal is simultaneously transmitted by bone medium.
Compared with prior art, the embodiment of the present invention has the advantages that
In embodiments of the present invention, the arm action of wearable device arm is worn in detection, whether identifies the arm action
Default arm action is matched, if the arm action matches default arm action, further wearable device arm is worn in detection
Finger movement, identify whether the finger movement matches default finger movement, will if finger movement matches default finger movement
The play mode of wearable device sound switches to bone-conduction mode from outer mode playback, wherein disclosed bone-conduction mode is
For converting audio signals into vibration signal and being transmitted by bone medium.As can be seen that implement the embodiment of the present invention,
The arm action for wearing wearable device arm matches default arm action and finger movement also matches default finger movement
When, the play mode of sound is switched into bone-conduction mode from outer mode playback, and bone-conduction mode is transmitted by bone medium, it will not
Cause sound to leak, can reduce the stolen risk heard when wearable device sound plays, to play protection privacy of user
Purpose;And bone-conduction mode more user's use provides convenience, to improve usage experience sense.
Detailed description of the invention
It to describe the technical solutions in the embodiments of the present invention more clearly, below will be to needed in the embodiment
Attached drawing is briefly described, it should be apparent that, drawings in the following description are only some embodiments of the invention, for ability
For the those of ordinary skill of domain, without creative efforts, it can also be obtained according to these attached drawings other attached
Figure.
Fig. 1 is the application schematic diagram of wearable device disclosed in the prior art;
Fig. 2 is the flow diagram of the play mode method for handover control of wearable device disclosed by the embodiments of the present invention;
Fig. 3 is the application schematic diagram of wearable device disclosed by the embodiments of the present invention;
Fig. 4 is another process signal of the play mode method for handover control of wearable device disclosed by the embodiments of the present invention
Figure;
Fig. 5 is another process signal of the play mode method for handover control of wearable device disclosed by the embodiments of the present invention
Figure;
Fig. 6 is another process signal of the play mode method for handover control of wearable device disclosed by the embodiments of the present invention
Figure;
Fig. 7 is the structural schematic diagram of wearable device disclosed by the embodiments of the present invention;
Fig. 8 is another structural schematic diagram of wearable device disclosed by the embodiments of the present invention;
Fig. 9 is another structural schematic diagram of wearable device disclosed by the embodiments of the present invention;
Figure 10 is another structural schematic diagram of wearable device disclosed by the embodiments of the present invention;
Figure 11 is another structural schematic diagram of wearable device disclosed by the embodiments of the present invention.
Specific embodiment
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete
Site preparation description, it is clear that the described embodiment is only a part of the embodiment of the present invention, instead of all the embodiments.Based on this
Embodiment in invention, every other reality obtained by those of ordinary skill in the art without making creative efforts
Example is applied, shall fall within the protection scope of the present invention.
The embodiment of the invention discloses a kind of play mode method for handover control of wearable device, broadcast for reducing sound
It is stolen the risk heard when putting, to improve user privacy, and also improves the usage experience sense of wearable device.The present invention
Embodiment also accordingly discloses a kind of wearable device.
Wherein, the present embodiments relate to wearable device including smartwatch etc. including intelligent wearable device,
This is not especially limited.Below in conjunction with specific embodiment, technical solution of the present invention is introduced in detail.
Embodiment one
Referring to Fig. 2, Fig. 2 is the stream of the play mode method for handover control of wearable device disclosed by the embodiments of the present invention
Journey schematic diagram;As shown in Fig. 2, a kind of play mode method for handover control of wearable device can include:
201, wearable device detection adorns oneself with the arm action of the wearable device arm;
In some embodiments provided in an embodiment of the present invention, osteoacusis vibration module (bone is built-in in wearable device
Conduction speaker) and an external loudspeaker and two microphones (one of them is solid microphone).In addition, can wear
It wears equipment and is also built-in with sensor (including action sensor and muscle sensor) and one and the above processor (Central
Processing Unit, abbreviation CPU), which further includes the memory being electrically connected with the processor, battery, shows
Display screen curtain and communication module.Wearable device is usually worn on arm (specific location such as wrist).It is opened in wearable device
After dynamic, the action sensor in wearable device detects arm action.Based on built-in osteoacusis vibration module, this is wearable to be set
Standby to can be realized bone-conduction mode, so far, the play mode of wearable device sound will include that outer mode playback (is raised by external
Sound device is realized) and bone-conduction mode (being realized by osteoacusis vibration module).Wherein, outer mode playback is shaken by external loudspeaker
Dynamic to come out sound, the sound wave of sound enters inner ear by ear-drum.Bone-conduction mode is for converting audio signals into vibration letter
Number and transmitted by bone medium, vibration signal is finally reconverted into audio signal.As shown in figure 3, user will be wearable
Equipment is worn in wrist, and osteoacusis vibration module is tightly attached on wrist bone or wrist skin of soft tissue, and CPU exports sound
Frequency signal, the audio signal are converted into vibration signal by osteoacusis vibration module, vibration signal by skin, bone and
Subcutaneous tissue is transmitted on finger, while finger puts in ear or presses ear base, to form closed sound chamber, is received
Vibration signal from finger transmitting, due to having formed closed sound chamber, so ear-drum only needs very small vibratory output, and
Ear-drum can be allowed to generate enough vibrations by the vibration signal of finger, so as to achieve the effect that clear sound, and reached
The purpose of privacy of user is protected, reduces the risk intercepted when sound plays by people around, here it is the work of bone-conduction mode
Principle.
Wherein, arm action may include the horizontal traverse of arm, arm be vertical upwards, arm downward vertically, arm it is horizontal
Traverse to vertical, the horizontal traverse of arm upwards to downward vertically, arm arrive vertically upwards horizontal traverse, arm arrive vertically upwards to
It is vertical etc. down.
And then in step 201, it is wearable by the action sensor detection in sensor to adorn oneself with this for wearable device
The arm action of equipment arm.
202, whether wearable device identification arm action matches default arm action;
Preferably, it selects arm vertical upwards in the numerous arm actions introduced in step 201, and is preset
Arm action is preset for this.Wherein, the built-in action sensor of processor triggering detects arm action, and then processor identification is dynamic
Whether the arm action detected as sensor matches default arm action.
If 203, matching default arm action, the finger that the wearable device arm is worn in wearable device detection is dynamic
Make;
Wherein, after the arm action detected matches default arm action, finger movement is further detected, wherein place
It manages the built-in muscle sensor of device triggering and detects finger movement.Finger movement include finger stretch, digital flexion etc..Preferably,
Finger movement can refer to that index finger acts in embodiments of the present invention.
It is appreciated that will increase the power consumption of wearable device when action sensor and muscle sensor are opened, due to
When only meeting arm action in embodiments of the present invention and matching default arm action, just further detection finger movement, therefore,
In embodiments of the present invention first close muscle sensor, action sensor be always maintained at it is in the open state, in action sensor
After the arm action detected matches default arm action, muscle sensor is opened to detect finger movement, and detecting hand
Muscle sensor is closed after finger movement, until next time, to play the effect for saving wearable device electricity consumption.
204, whether wearable device identification finger movement matches default finger movement;
Preferably, it selects the finger in finger movement to stretch and is set to default finger movement.
If 205, matching default finger movement, the play mode of sound is switched to bone from outer mode playback by wearable device
Conduction mode;Wherein, bone-conduction mode is for converting audio signals into vibration signal and being transmitted by bone medium.
In embodiments of the present invention, the arm action of wearable device arm is worn in detection, whether identifies the arm action
Default arm action is matched, if the arm action matches default arm action, further wearable device arm is worn in detection
Finger movement, identify whether the finger movement matches default finger movement, will if finger movement matches default finger movement
The play mode of wearable device sound switches to bone-conduction mode from outer mode playback, wherein disclosed bone-conduction mode is
For converting audio signals into vibration signal and being transmitted by bone medium.As can be seen that implement the embodiment of the present invention,
The arm action for wearing wearable device arm matches default arm action and finger movement also matches default finger movement
When, the play mode of sound is switched into bone-conduction mode from outer mode playback, and bone-conduction mode is transmitted by bone medium, it will not
Cause sound to leak, can reduce the stolen risk heard when wearable device sound plays, to play protection privacy of user
Purpose;And bone-conduction mode more user's use provides convenience, to improve usage experience sense.
Embodiment two
Referring to Fig. 4, Fig. 4 is the another of the play mode method for handover control of wearable device disclosed by the embodiments of the present invention
One flow diagram;As shown in figure 4, a kind of play mode method for handover control of wearable device can include:
401, wearable device determines whether to receive incoming call;
Wherein, wearable device realizes the function including phone, if wearable device determination receives incoming call,
It will turn to and execute step 402.
As an alternative embodiment, acceptable and mobile terminal binding, wearable device comes in determining receive
After electric calling, further determine that whether the incoming call is answered with the mobile terminal that wearable device is bound, if not by
The mobile terminal of binding is answered, and will be turned to and is executed step 402;If bound mobile terminal is answered, terminate the process.
As an alternative embodiment, wearable device is determining that further determining that can when receiving incoming call
Whether the play mode function of wearable device sound is in enabled state, if so, will turn to and execute step 402;If wearable
The play mode function of equipment sound is not on enabled state, then can only be using the broadcasting mould for sound fixed setting
Formula.
In step 402, wearable device is communicated by communication module, and processor detects that communication module receives incoming call
When calling, it will turn to and execute step 402.
402~406;Wherein, step 402~406 are identical as step 201~205 in embodiment one, no longer superfluous herein
It states;
407, wearable device judges whether the incoming call is switched on;
Wherein, it may be since wearable device detects connecing for incoming call that incoming call, which is switched on, in step 407
Logical key is operated, and switch-on keying may be the physical button on the virtual key or wearable device shell shown on screen
It is operated, so that wearable device gets going code for input, to connect the incoming call.
If 408, the incoming call is not turned on, wearable device connects the incoming call.
It is to be appreciated that wearable device determines after receiving incoming call, arm action is detected, identifies the arm action
After default arm action, finger movement is further detected, if the finger movement matches default finger movement, wearable device
The play mode of sound is switched to bone-conduction mode from outer mode playback, to enter in call sound protected mode, reduces call
The stolen risk heard of sound, improves call experience sense.And wearable device judges whether the incoming call is switched on, when next
Terminate the process when electric calling is switched on, when incoming call is not turned on, connects the incoming call.
It, can also it is to be appreciated that do not limit step 406 and step 407~408 in embodiments of the present invention executes sequence
Step 407~408 are executed again to first carry out step 406;Or it first carries out step 407~408 and executes step 406 again;Or step
Rapid 406 are performed simultaneously with step 407;Or step 406 is performed simultaneously with step 407~408, is not specifically limited herein.
As another optional embodiment, it is executed while executing step 406 and connects the incoming call, or held
The incoming call is connected after row step 406, or executes step 406 after connecting the incoming call, is reduced to send a telegram here in step 407 and be exhaled
It is the judgment step whether being switched on.
As an alternative embodiment, step 408 specifically includes:
Obtain the contact number of incoming call;When identifying that contact number belongs to first kind contact person, this is connected
Electric calling;When identifying that contact number belongs to the second class contact person, plays password and obtain voice to obtain call password, and
Monitor for password obtain voice input Password Input voice, recognition code input voice include password whether with it is preset
Password matches;If it does, connecting the incoming call.In this embodiment, contact person is divided into two classes, the respectively first kind
Contact person and the second class contact person, wherein first kind contact person is directed to ordinary contacts, and user is in advance by the connection of ordinary contacts
It is that people's number is arranged into first kind contact person, the not stored contact person for being related people's number is attributed to first kind contact person;The
Two class contact persons for user it is important/contact person of secret, the contact number of important/private contact is arranged in advance user
Into the second class contact person.After determining that the incoming call is not turned on, the contact number of the incoming call is obtained first, such as
Fruit identifies that the contact number of the incoming call belongs to first kind contact person, then the direct turn on automatically incoming call;If
Identify that the contact number of the incoming call belongs to the second class contact person, wearable device by play Password Input voice with
When obtaining call password, the only call preset password of password match, the incoming call can be just connected, to prevent important/secret
Contact person's incoming call is connected by the third party user other than user, is effectively protected the incoming call of important/private contact, thus
Play the effect of protection privacy of user.
Further, in order to protect call password not intercepted by stranger, wearable device plays Password Input voice
To obtain password of conversing, while call Password Input column is shown on the display screen, to require user in the password of display screen
Input call password on input field, when wearable device receives the call password that user is directed to Password Input voice input
Afterwards, it identifies whether the call password matches with preset password, in matching, the incoming call is connected, to prevent voice defeated
Enter to converse password when the risk that is intercepted by stranger.
Further, wearable device is in the setting first kind contact person and/or the second class connection for receiving user's input
When being the setting request of people, pops up Password Input frame on the display screen to require user to input verifying password, receive user and exist
After the verifying password inputted on the Password Input frame, judge whether the verifying password matches with preset verifying password, if
Match, into the set interface of first kind contact person and/or the second class contact person, if it does not match, authentication failed, terminates the stream
Journey.As can be seen that wearable device can be prevented when losing by the embodiment, by third party user by resetting
The mode of first kind contact person and/or the second class contact person, to answer the incoming call of important/private contact, to play
Protect the effect of privacy of user.
In embodiments of the present invention, wearable device first determines whether to receive incoming call, receives incoming call in determination
After calling, arm action is detected, after identifying that arm action matches default arm action, further detects finger movement, such as
Fruit finger movement matches default finger movement, and the play mode of sound is switched to osteoacusis mould from outer mode playback by wearable device
Formula, and judge whether the incoming call is switched on, if going back access failure, default finger movement is matched based on the finger movement
Afterwards, the incoming call is connected.As it can be seen that in this embodiment, arm action matches default arm action, and finger movement matching is pre-
If after finger movement, play mode is switched to bone-conduction mode, and the turn on automatically incoming call, to give user one more
Comfortable usage experience.
Embodiment three
Referring to Fig. 5, Fig. 5 is the another of the play mode method for handover control of wearable device disclosed by the embodiments of the present invention
One flow diagram;As shown in figure 5, a kind of play mode method for handover control of wearable device can include:
501, wearable device determines whether on call;
It is appreciated that being called by two connecting incoming call of embodiment, held under talking state hence into talking state
Row below step.
502, wearable device detection adorns oneself with the arm action of the wearable device arm;
503, whether wearable device identification arm action matches default arm action;
If 504, the arm action matches default arm action, wearable device detection adorns oneself with the wearable device hand
The finger movement of arm;
Wherein, step 502~504 are identical as step 201~203 in embodiment one, and details are not described herein.
505, wearable device identifies whether the finger movement matches default Hangup action;
If the finger movement matches default Hangup action, step 506 is executed;If the finger movement mismatches default hang
Disconnected movement, executes step 507.
It is appreciated that default Hangup action is different from default finger movement.Optionally, if by the finger in finger movement
It stretches as default finger movement, then can be using the digital flexion in finger movement as default Hangup action.
If 506, the finger movement matches default Hangup action, wearable device hangs up current talking;
Wherein, after wearable device detects finger movement, first identify whether the finger movement matches default Hangup action,
If the finger movement matches default Hangup action, current talking will be hung up.
507, wearable device identifies whether the finger movement matches default finger movement;
As an alternative embodiment, wearable device determine be in talking state when, and the hand detected
Finger movement mismatches default Hangup action, then can first determine the broadcasting of wearable device sound before executing step 507
Whether mode capabilities are in enabled state, if so, will so execute step 507;If the play mode function of wearable device sound
It can be not on enabled state, then process can only be terminated using the play mode for sound fixed setting.
If 508, the finger movement matches default finger movement, the play mode of sound is put mould from outside by wearable device
Formula switches to bone-conduction mode.
Wherein, step 507~step 508 is identical as step 204~step 205 in embodiment one, and details are not described herein.
In this embodiment, when wearable device determines on call, arm action is detected, if arm action
With default arm action, finger movement is further detected, identifies whether the finger movement matches default Hangup action in advance, if
Matching will directly hang up current talking, terminate current process.If mismatching default Hangup action, the hand is further identified
Whether finger movement matches default finger movement, if matching default finger movement, wearable device by the play mode of sound from
Outer mode playback switches to bone-conduction mode, to reduce the stolen risk heard of call sound, to play the effect of protection privacy of user
Fruit.
Example IV
Referring to Fig. 6, Fig. 6 is the another of the play mode method for handover control of wearable device disclosed by the embodiments of the present invention
One flow diagram;As shown in fig. 6, a kind of play mode method for handover control of wearable device can include:
601, wearable device monitors whether to receive unread message prompting;
Wearable device can be realized the functions such as phone, short message, when receiving unread message prompting on wearable device, also
It can check that the unread message reminds corresponding unread message based on wearable device.
602, when monitoring, which receives unread message, to be reminded, wearable device reception user's input is directed to the unread message
Remind the reading instruction of indicated unread message;
It is appreciated that wearable device receives user to the input operation of the reading key of display interface or to wearable
The input of physical button in equipment operates, and reminds the reading of indicated unread message to refer to for the unread message to obtain
It enables.
603, unread message is reminded indicated unread message to be converted into voice by wearable device in response to reading instruction
Information;
It is appreciated that typically the screen of wearable device is smaller, it is not easy to read message, in the embodiment of the present invention
In, the unread message read can be needed to be converted into voice messaging user and played out, it is too small to user's reading to reduce screen
Caused by sense of discomfort user's timely learning can be allowed not read by voice while when user is inconvenient to check wearable device
Message content.
As an alternative embodiment, preset corresponding deliberate action can be instructed for the reading of unread message,
Wearable device detects arm action, and when arm action matches the deliberate action, wearable device determines the arm action
For the reading instruction to unread message, unread message is converted into voice messaging.Wherein, deliberate action here is different from above-mentioned
The default arm action referred to.
604~608;Wherein, step 604~step 608 is identical as step 201~205 in embodiment one, herein no longer
It repeats.
In embodiments of the present invention, when wearable device receives unread message, if the reading for receiving user's input refers to
It enables, which is converted into voice messaging, then detection adorns oneself with the arm action of wearable device arm, in the arm
When movement matches default arm action, finger movement is further detected, it, will if the finger movement also matches default finger movement
The play mode of sound switches to bone-conduction mode from outer mode playback.As can be seen that unread message is turned in the embodiment of the present invention
It changes voice messaging into play out, reduces sense of discomfort caused by the too small reading to user of screen, also be inconvenient to check for user
It provides convenience when unread message, with timely learning unread message.Further, for the voice messaging after conversion, Ke Yi
It is answered under bone-conduction mode, can reduce the risk eavesdropped when voice messaging plays by people around, to play protection privacy of user
Effect.
As an alternative embodiment, wearable device detects whether to receive music instruction, when determination connects
It when receiving music instruction, is instructed in response to the music, the arm action of wearable device arm, identification are worn in detection
Whether the arm action matches default arm action, if identifying that arm action matches default arm action, further detects
Finger movement, and after identifying that the finger movement matches default finger movement, by the play mode of wearable device sound from
Outer mode playback switches to bone-conduction mode.As can be seen that wearable device can also music in synchronous mobile terminal, by bone
Music is played under conduction mode, it is ensured that when user is in noisy environment, it still is able to obtain clearly music sound effect, and
People around will not be bothered.
Embodiment five
Referring to Fig. 7, Fig. 7 is the structural schematic diagram of wearable device disclosed by the embodiments of the present invention;As shown in fig. 7, one
Kind wearable device can include:
First detection unit 710, for detecting the arm action for wearing wearable device arm;
First recognition unit 720, whether arm action matches default arm action for identification;
Second detection unit 730, for identifying that arm action matches default arm action when the first recognition unit 720,
The finger movement of wearable device arm is worn in detection;
Second recognition unit 740, whether finger movement matches default finger movement for identification;
Switch unit 750 can for identifying that finger movement matches default finger movement when the second recognition unit 740
The play mode of wearable device sound switches to bone-conduction mode from outer mode playback;Wherein, bone-conduction mode is for believing audio
It number is converted to vibration signal and is transmitted by bone medium.
Wherein, arm action may include the horizontal traverse of arm, arm be vertical upwards, arm downward vertically, arm it is horizontal
Traverse to vertical, the horizontal traverse of arm upwards to downward vertically, arm arrive vertically upwards horizontal traverse, arm arrive vertically upwards to
It is vertical etc. down.Preferably, select arm vertical upwards from numerous arm actions of introduction, and it is pre- to be set in advance as this
If arm action.
Wherein, finger movement include finger stretch, digital flexion etc..Preferably, finger movement in embodiments of the present invention
It can refer to that index finger acts, the finger in finger movement is selected to stretch and be set to default finger movement.
In embodiments of the present invention, the arm action of the detection of first detection unit 710 wearing wearable device arm, first
Recognition unit 720 identifies whether the arm action matches default arm action, if the arm action matches default arm action,
Second detection unit 730 further detects the finger movement for wearing wearable device arm, and the second recognition unit 740 identifies the hand
Whether finger movement matches default finger movement, if finger movement matches default finger movement, switch unit 750 is set wearable
The play mode of standby sound switches to bone-conduction mode from outer mode playback, wherein disclosed bone-conduction mode is for by sound
Frequency signal is converted to vibration signal and is transmitted by bone medium.As can be seen that implementing the embodiment of the present invention, can be worn wearing
The arm action for wearing equipment arm matches default arm action and finger movement also matches when presetting finger movement, by sound
Play mode switch to bone-conduction mode from outer mode playback, and bone-conduction mode is transmitted by bone medium, not will lead to sound
It leaks, can reduce the stolen risk heard when wearable device sound plays, to play the purpose of protection privacy of user;And
And bone-conduction mode more user's use provides convenience, to improve usage experience sense.
Embodiment six
Referring to Fig. 8, Fig. 8 is another structural schematic diagram of wearable device disclosed by the embodiments of the present invention;It is shown in Fig. 8
Wearable device is optimized on the basis of wearable device shown in Fig. 7, as shown in figure 8, this wearable sets
It is standby further include:
Determination unit 810, for first detection unit 710 detect wear wearable device arm arm action it
Before, determine whether wearable device receives incoming call or determine whether wearable device is on call;
First detection unit 710 is specifically used for, when determination unit 810 determine wearable device receive incoming call or
Wearable device is on call, and the arm action of wearable device arm is worn in detection.
Wherein, wearable device realizes the function including phone, acceptable and mobile terminal binding.It can as one kind
The embodiment of choosing, determination unit 810 determine receive incoming call after, further determine that the incoming call whether by with can
The mobile terminal of wearable device binding is answered, if the mobile terminal not being bound is answered, the detection of first detection unit 710 is worn
Wear the arm action of wearable device arm;If bound mobile terminal is answered, terminate the process.
As an alternative embodiment, determination unit 810 is determining that further determining that can when receiving incoming call
Whether the play mode function of wearable device sound is in enabled state, if so, being worn and can be worn by the detection of first detection unit 710
Wear the arm action of equipment arm;If the play mode function of wearable device sound is not on enabled state, then can only
Using the play mode for sound fixed setting.
Further, in wearable device shown in Fig. 8, further includes:
On-unit 820, for determining that wearable device receives incoming call, and switching list when determination unit 810
After the play mode of wearable device sound is switched to bone-conduction mode from outer mode playback by member 750, judge that incoming call is
It is no to be switched on;If incoming call is not turned on, connecting incoming call calling.
As an alternative embodiment, on-unit 820 detects that the switch-on keying of incoming call is operated, connect
Key may be that the physical button on the virtual key or wearable device shell shown on screen is operated, to get defeated
What is entered goes code, and connects the incoming call.
After the determination of determination unit 810 receives incoming call, first detection unit 710 detects arm action, the first identification
After unit 720 identifies that the arm action matches default arm action, second detection unit 730 further detects finger movement, such as
The second recognition unit of fruit 740 identifies that the finger movement matches default finger movement, and switch unit 750 is by the play mode of sound
It it is switched to bone-conduction mode from outer mode playback, is able to enter in call sound protected mode, reduce that call sound is stolen to be heard
Risk improves call experience sense.And wearable device judges whether the incoming call is switched on, when incoming call is switched on
Terminate the process, when incoming call is not turned on, connects the incoming call.
Further, in wearable device shown in Fig. 8, further includes:
Above-mentioned second recognition unit 740 is also used to when determination unit 810 determines that wearable device is on call,
After detecting the finger movement for wearing wearable device arm in second detection unit 730, and in the knowledge of the second recognition unit 740
Before whether other finger movement matches default finger movement, whether identification finger movement matches default Hangup action;
Unit 830 is hung up, for hanging when the second recognition unit 740 identifies that finger movement matches default Hangup action
The current talking of disconnected wearable device.
Wherein it is determined that first detection unit 710 detects arm action when unit 810 determines on call, if the
One recognition unit 720 identifies that arm action matches default arm action, and second detection unit 720 further detects finger movement,
Second recognition unit 740 identifies whether the finger movement matches default Hangup action in advance, if it does, hanging up unit 830 will
Current talking is directly hung up, current process is terminated.If mismatching default Hangup action, the second recognition unit 740 is further
Identify whether the finger movement matches default finger movement, if matching default finger movement, switch unit 750 is broadcast sound
Mode playback switches to bone-conduction mode from outer mode playback, to reduce the stolen risk heard of call sound, to play protection user
The effect of privacy.
As an alternative embodiment, as shown in figure 9, in wearable device shown in Fig. 9, above-mentioned on-unit
820 specifically include:
Number acquiring unit 910, for obtaining the contact number of incoming call;
First on-unit 920 identifies that contact number belongs to first kind contact person, connecting incoming call calling for working as;
Second on-unit 930 identifies that contact number belongs to the second class contact person for working as, plays password and obtain language
Sound is to obtain call password, and monitors the Password Input voice that voice input is obtained for password, and recognition code inputs voice
Whether the password for including matches with preset password;If it does, connecting incoming call calls.
In the embodiment shown in fig. 9, contact person is divided into two classes, respectively first kind contact person and the second class contact person,
Wherein, first kind contact person is directed to ordinary contacts, and user is in advance by the contact number setting of ordinary contacts to the first kind
In contact person, the not stored contact person for being related people's number is attributed to first kind contact person;Second class contact person is for user's weight
/ the contact person of secret is wanted, the contact number of important/private contact is arranged into the second class contact person in advance by user.?
After determination unit 810 determines that the incoming call is not turned on, the contact person that obtains the incoming call of number acquiring unit 910 first
Number, if identifying that the contact number of the incoming call belongs to first kind contact person, the first on-unit 920 is directly automatic
Connect the incoming call;If identifying that the contact number of the incoming call belongs to the second class contact person, the second on-unit
930 by playing Password Input voice to obtain call password, only call password match preset password when, can just connect this
Incoming call, with prevent important/call of private contact by other than user third party user connect, be effectively protected it is important/
The incoming call of private contact, to play the effect of protection privacy of user.
Further, in order to protect call password not intercepted by stranger, the second on-unit 930 plays Password Input
Voice shows call Password Input column to obtain call password on the display screen, to require user in display screen
Input call password on Password Input column, when the second on-unit 930 receives user for Password Input voice input
It converses after password, identifies whether the call password matches with preset password, in matching, connect the incoming call, thus anti-
The risk only intercepted when voice input call password by stranger.
Further, wearable device is in the setting first kind contact person and/or the second class connection for receiving user's input
When being the setting request of people, pops up Password Input frame on the display screen to require user to input verifying password, receive user and exist
After the verifying password inputted on the Password Input frame, judge whether the verifying password matches with preset verifying password, if
Match, into the set interface of first kind contact person and/or the second class contact person, if it does not match, authentication failed, terminates the stream
Journey.As can be seen that wearable device can be prevented when losing by the embodiment, by third party user by resetting
The mode of first kind contact person and/or the second class contact person, to answer the incoming call of important/private contact, to play
Protect the effect of privacy of user.
Embodiment seven
Referring to Fig. 10, Figure 10 is another structural schematic diagram of wearable device disclosed by the embodiments of the present invention;Figure 10 institute
The wearable device shown is optimized on the basis of wearable device shown in Fig. 7, and as shown in Figure 10, this can wear
Wear equipment further include:
Message monitoring unit 1010, for first detection unit detect wear wearable device arm arm action it
Before, whether monitoring wearable device receives unread message prompting;
Instruction receiving unit 1020, for monitoring that wearable device receives unread message and reminds when message monitoring unit
When, receive the reading instruction that indicated unread message is reminded for unread message of user's input;
Voice converting unit 1030, for reminding indicated unread message to convert unread message in response to reading instruction
At voice messaging;
First detection unit 710 is specifically used for, and will not read indicated by unread message prompting in voice converting unit 1030
After message is converted into voice messaging, the arm action of wearable device arm is worn in detection.
It is appreciated that typically the screen of wearable device is smaller, it is not easy to read message, in the embodiment of the present invention
In, it needs the unread message read to be converted into voice messaging user by voice converting unit 1030 and plays out, reduce screen
Sense of discomfort caused by the too small reading to user of curtain, while when user is inconvenient to check wearable device, it can be allowed by voice
User's timely learning unread message content.
As an alternative embodiment, first detection unit 710 detects whether to receive music instruction, when true
When receiving music instruction surely, being instructed in response to the music, the arm action of wearable device arm is worn in detection,
First recognition unit 720 identifies whether the arm action matches default arm action, if the identification of the first recognition unit 720 is sold
Arm movement matches default arm action, and second detection unit 730 further detects finger movement, and in the second recognition unit
After 740 identify that the finger movement matches default finger movements, switch unit 750 is by the play mode of wearable device sound from outer
Mode playback switches to bone-conduction mode.As can be seen that wearable device can also music in synchronous mobile terminal, by being passed in bone
Music is played under waveguide mode, it is ensured that when user is in noisy environment, it still is able to obtain clearly music sound effect, nor
People around can be bothered.
Embodiment eight
Figure 11 is please referred to, Figure 11 is another structural schematic diagram of wearable device disclosed by the embodiments of the present invention;In Figure 11
In, which includes:
One or more than one processor (Central Processing Unit, abbreviation CPU) 1110, respectively with
Memory 1120 that this or more than one processor 1110 are electrically connected, osteoacusis vibration module 1130, external loudspeaking
Device 1140, microphone 1150, first sensor 1160, second sensor 1170, communication module 1180, battery 1190 and display
Screen 1200;
Wherein, memory 1120 is stored in storage by operation for storing software program and module, processor 1110
The software program and module of device 1120, thereby executing various function application and data processing.Memory 1120 can be wrapped mainly
Include storing program area and storage data area, wherein storing program area can application needed for storage program area, at least one function
Program (such as sound-playing function) etc.;Storage data area, which can be stored, uses created data (such as audio according to terminal
Data, phone directory etc.) etc..In addition, memory 1120 may include high-speed random access memory, it can also include non-volatile
Memory, for example, at least a disk memory, flush memory device or other volatile solid-state parts.Correspondingly, it stores
Device 1120 can also include Memory Controller, to provide access of the processor 1110 to memory 1120.
Wherein, processor 1110 executes following steps by the software program and module of reading memory 1120: triggering
The arm action of wearable device arm is worn in the detection of first sensor 1160, and it is dynamic whether identification arm action matches default arm
Make;When arm action matches default arm action, the hand of wearable device arm is worn in the triggering detection of second sensor 1170
Finger movement;Whether identification finger movement matches default finger movement;When finger movement matches default finger movement, by sound
Play mode switches to bone-conduction mode from outer mode playback;Wherein, bone-conduction mode is for converting audio signals into vibration letter
Number and transmitted by bone medium.
As an alternative embodiment, above-mentioned processor 1110 also executes following steps: in triggering first sensor
Before the arm action of wearable device arm is worn in 1160 detections, determine whether communication module 1180 receives incoming call,
If determining that the communication module 1180 whether on call of communication module 1180 receives incoming call or communication mould
Block 1180 is on call, and the arm action of wearable device arm is worn in the triggering detection of first sensor 1160.
As an alternative embodiment, above-mentioned processor 1110 also executes following steps: if communication module 1180
It receives incoming call, and after the play mode of sound is switched to bone-conduction mode from outer mode playback, judges that incoming call is exhaled
It cries and whether is switched on;If incoming call is not turned on, control 1180 connecting incoming call of communication module calling.
As an alternative embodiment, above-mentioned processor 1110 also executes following steps: if on call,
After the finger movement of wearable device arm is worn in the triggering detection of first sensor 1160, and whether identify finger movement
Before matching default finger movement, whether identification finger movement matches default Hangup action, if matching default Hangup action, control
Communication module 1180 processed hangs up current talking;If mismatching default Hangup action, whether identification finger movement matches default hand
Finger movement.
As an alternative embodiment, above-mentioned processor 1110 also executes following steps: obtaining the connection of incoming call
It is people's number;When identifying that contact number belongs to first kind contact person, control 1180 connecting incoming call of communication module calling;Work as knowledge
Not Chu contact number belong to the second class contact person, play password and obtain voice to obtain call password, and monitor for close
Code obtain voice input Password Input voice, recognition code input voice include password whether with preset password phase
Match;If it does, control 1180 connecting incoming call of communication module calling.
As an alternative embodiment, above-mentioned processor 1110 also executes following steps: in triggering first sensor
Before the arm action of wearable device arm is worn in 1160 detections, whether monitoring communication module 1180, which receives unread message, is mentioned
It wakes up;When monitoring communication module 1180, which receives unread message, reminds, the signified for unread message prompting of user's input is received
The reading of the unread message shown instructs;Indicated unread message is reminded to be converted into voice unread message in response to reading instruction
The arm action of wearable device arm is worn in information, the triggering detection of first sensor 1160.
It is appreciated that above-mentioned first sensor 1160 can be action sensor, above-mentioned second sensor 1170 can be
Muscle sensor, certainly, first sensor 1160 can also be the combination of gravity sensor and/or gyroscope etc., the second sensing
Device 1170 is also possible to can be realized other sensors of detection finger movement function or multiple realizations detection finger movement function
The combination of the sensor of energy, is not specifically limited herein.
Those of ordinary skill in the art will appreciate that all or part of the steps in the various methods of above-described embodiment is can
It is completed with instructing relevant hardware by program, which can be stored in a computer readable storage medium, storage
Medium include read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory,
RAM), programmable read only memory (Programmable Read-only Memory, PROM), erasable programmable is read-only deposits
Reservoir (Erasable Programmable Read Only Memory, EPROM), disposable programmable read-only memory (One-
Time Programmable Read-Only Memory, OTPROM), the electronics formula of erasing can make carbon copies read-only memory
(Electrically-Erasable Programmable Read-Only Memory, EEPROM), CD-ROM (Compact
Disc Read-Only Memory, CD-ROM) or other disc memories, magnetic disk storage, magnetic tape storage or can
For carrying or any other computer-readable medium of storing data.
Play mode method for handover control to a kind of wearable device disclosed by the embodiments of the present invention and wearable above
Equipment is described in detail, and used herein a specific example illustrates the principle and implementation of the invention, with
The explanation of upper embodiment is merely used to help understand method and its core concept of the invention;Meanwhile for the general of this field
Technical staff, according to the thought of the present invention, there will be changes in the specific implementation manner and application range, in conclusion
The contents of this specification are not to be construed as limiting the invention.
Claims (13)
1. a kind of play mode method for handover control of wearable device characterized by comprising
The arm action of the wearable device arm is worn in detection;
Identify whether the arm action matches default arm action, the default arm action is that arm is vertical upwards;
If matching the default arm action, muscle sensor is opened, the muscle sensor can described in wearing for detecting
The finger movement of wearable device arm;
Identify whether the finger movement matches default finger movement;
If matching the default finger movement, the play mode of the wearable device sound is switched into bone from outer mode playback
Conduction mode, and close the muscle sensor;Wherein, the bone-conduction mode is for converting audio signals into vibration signal
And it is transmitted by bone medium.
2. the method according to claim 1, wherein the arm of the wearable device arm is worn in the detection
Before movement, the method also includes:
It determines whether the wearable device receives incoming call, or determines whether the wearable device is in call shape
State;
If the wearable device receives the incoming call or the wearable device is on call, institute is executed
State the step of arm action of the wearable device arm is worn in detection.
3. according to the method described in claim 2, it is characterized in that, if the wearable device receives the incoming call and exhales
It cries and after the play mode by the wearable device sound switches to bone-conduction mode from outer mode playback, it is described
Method further include:
Judge whether the incoming call is switched on;
If the incoming call is not turned on, the incoming call is connected.
4. according to the method described in claim 2, it is characterized in that, being examined if the wearable device is on call
It surveys after the finger movement for wearing the wearable device arm, and whether the identification finger movement matches default finger and move
Before work, the method also includes:
Identify whether the finger movement matches default Hangup action, if the matching default Hangup action, hang up it is described can
The current talking of wearable device;
If mismatching the default Hangup action, execute whether the identification finger movement matches default finger movement
Step.
5. according to the method described in claim 3, it is characterized in that, the connection incoming call includes:
Obtain the contact number of the incoming call;
When identifying that the contact number belongs to first kind contact person, the incoming call is connected;
When identifying that the contact number belongs to the second class contact person, plays password and obtain voice to obtain call password, with
And the Password Input voice that voice input is obtained for the password is monitored, the password for identifying that the Password Input voice includes is
It is no to match with preset password;If it does, connecting the incoming call.
6. the method according to claim 1, wherein the arm of the wearable device arm is worn in the detection
Before movement, the method also includes:
Monitor whether the wearable device receives unread message prompting;
When monitoring that the wearable device receives unread message prompting, receive user's input is directed to the unread message
Remind the reading instruction of indicated unread message;
It reminds indicated unread message to be converted into voice messaging the unread message in response to the reading instruction, and holds
The step of arm action of the wearable device arm is worn in row detection.
7. a kind of wearable device characterized by comprising
First detection unit, for detecting the arm action for wearing the wearable device arm;
First recognition unit, whether the arm action matches default arm action for identification, and the default arm action is
Arm is vertical upwards;
Second detection unit, for identifying that the arm action matches the default arm and moves when first recognition unit
Make, opens muscle sensor, the muscle sensor is for detecting the finger movement for wearing the wearable device arm;
Second recognition unit, whether the finger movement matches default finger movement for identification;
Switch unit will for identifying that the finger movement matches the default finger movement when second recognition unit
The play mode of the wearable device sound switches to bone-conduction mode from outer mode playback;Wherein, the bone-conduction mode is used
In converting audio signals into vibration signal and transmitted by bone medium;Close the muscle sensor.
8. wearable device according to claim 7, which is characterized in that the wearable device further include:
Determination unit, for before the arm action of the wearable device arm is worn in first detection unit detection,
Determine whether the wearable device receives incoming call or determine whether the wearable device is on call;
The first detection unit is specifically used for, when the determination unit determines that the wearable device receives the incoming call and exhales
It cries or the wearable device is on call, the arm action of the wearable device arm is worn in detection.
9. wearable device according to claim 8, which is characterized in that the wearable device further include:
On-unit, for determining that the wearable device receives the incoming call and described when the determination unit
After the play mode of the wearable device sound is switched to bone-conduction mode from outer mode playback by switch unit, described in judgement
Whether incoming call is switched on;If the incoming call is not turned on, the incoming call is connected.
10. wearable device according to claim 8, which is characterized in that the wearable device further include:
Second recognition unit is also used to when the determination unit determines that the wearable device is on call,
After the finger movement of the wearable device arm is worn in the second detection unit detection, and it is single in second identification
Before member identifies whether the finger movement matches default finger movement, identify the finger movement whether match it is default hang up it is dynamic
Make;
Unit is hung up, for when second recognition unit identifies that the finger movement matches the default Hangup action,
Hang up the current talking of the wearable device.
11. wearable device according to claim 9, which is characterized in that the on-unit specifically includes:
Number acquiring unit, for obtaining the contact number of the incoming call;
First on-unit, for connecting the incoming call when identifying that the contact number belongs to first kind contact person;
Second on-unit identifies that the contact number belongs to the second class contact person for working as, plays password and obtain voice
To obtain password of conversing, and the Password Input voice for obtaining voice input for the password is monitored, identifies that the password is defeated
Enter whether the password that voice includes matches with preset password;If it does, connecting the incoming call.
12. wearable device according to claim 7, which is characterized in that the wearable device further include:
Message monitoring unit, for worn in the first detection unit detection wearable device arm arm action it
Before, monitor whether the wearable device receives unread message prompting;
Instruction receiving unit, for monitoring that the wearable device receives unread message and reminds when the message monitoring unit
When, receive the reading instruction that indicated unread message is reminded for the unread message of user's input;
Voice converting unit, for reading the instruction unread message conversion that unread message prompting is indicated in response to described
At voice messaging;
The first detection unit is specifically used for, and will not read indicated by unread message prompting in the voice converting unit
After message is converted into voice messaging, the arm action of the wearable device arm is worn in detection.
13. a kind of wearable device characterized by comprising
One or more than one processor, respectively with the processor be electrically connected memory, osteoacusis vibration module,
External speaker, microphone, first sensor, second sensor, communication module, battery and display screen;
Wherein, the processor triggers the arm action that the wearable device arm is worn in the first sensor detection, knows
Whether the not described arm action matches default arm action, and the default arm action is that arm is vertical upwards;When the arm
When movement matches the default arm action, opens and trigger the second sensor detection and wear the wearable device arm
Finger movement;Identify whether the finger movement matches default finger movement;When the finger movement matches the default hand
When finger acts, the play mode of the wearable device sound is switched into bone-conduction mode from outer mode playback;Wherein, the bone
Conduction mode is for converting audio signals into vibration signal and being transmitted by bone medium.
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CN107318175A (en) * | 2017-08-23 | 2017-11-03 | 上海摩软通讯技术有限公司 | ANTENNAUDIO transcriber and its matching method |
CN110174837B (en) * | 2018-10-25 | 2020-10-16 | 广东小天才科技有限公司 | Shooting control method in call process and smart watch |
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