CN107070474A - Switching control method for playing modes of wearable device and wearable device - Google Patents
Switching control method for playing modes of wearable device and wearable device Download PDFInfo
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- CN107070474A CN107070474A CN201611226152.9A CN201611226152A CN107070474A CN 107070474 A CN107070474 A CN 107070474A CN 201611226152 A CN201611226152 A CN 201611226152A CN 107070474 A CN107070474 A CN 107070474A
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- 238000000034 method Methods 0.000 title claims abstract description 30
- 230000009471 action Effects 0.000 claims abstract description 304
- 210000000988 bone and bone Anatomy 0.000 claims abstract description 28
- 230000005236 sound signal Effects 0.000 claims abstract description 20
- 238000001514 detection method Methods 0.000 claims description 79
- 238000012544 monitoring process Methods 0.000 claims description 15
- 230000004044 response Effects 0.000 claims description 8
- 238000006243 chemical reaction Methods 0.000 claims description 4
- 238000007689 inspection Methods 0.000 claims description 2
- 210000000707 wrist Anatomy 0.000 description 9
- 230000000694 effects Effects 0.000 description 8
- 230000006870 function Effects 0.000 description 7
- 238000003860 storage Methods 0.000 description 7
- 210000003454 tympanic membrane Anatomy 0.000 description 6
- 230000005484 gravity Effects 0.000 description 5
- 230000008859 change Effects 0.000 description 4
- 230000007613 environmental effect Effects 0.000 description 4
- 238000010586 diagram Methods 0.000 description 3
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- 210000004872 soft tissue Anatomy 0.000 description 2
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Classifications
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- 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
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/16—Sound input; Sound output
- G06F3/165—Management of the audio stream, e.g. setting of volume, audio stream path
-
- 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
- H04M1/60—Substation equipment, e.g. for use by subscribers including speech amplifiers
- H04M1/6033—Substation equipment, e.g. for use by subscribers including speech amplifiers for providing handsfree use or a loudspeaker mode in telephone sets
- H04M1/6041—Portable telephones adapted for handsfree use
- H04M1/6058—Portable telephones adapted for handsfree use involving the use of a headset accessory device connected to the portable telephone
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/60—Substation equipment, e.g. for use by subscribers including speech amplifiers
- H04M1/6033—Substation equipment, e.g. for use by subscribers including speech amplifiers for providing handsfree use or a loudspeaker mode in telephone sets
- H04M1/6041—Portable telephones adapted for handsfree use
- H04M1/6058—Portable telephones adapted for handsfree use involving the use of a headset accessory device connected to the portable telephone
- H04M1/6066—Portable telephones adapted for handsfree use involving the use of a headset accessory device connected to the portable telephone including a wireless connection
-
- 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
- H04M1/72454—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related 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
-
- 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
- H04B2001/3861—Transceivers carried on the body, e.g. in helmets carried in a hand or on fingers
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- Engineering & Computer Science (AREA)
- Signal Processing (AREA)
- Theoretical Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Physics & Mathematics (AREA)
- Human Computer Interaction (AREA)
- General Engineering & Computer Science (AREA)
- General Physics & Mathematics (AREA)
- Environmental & Geological Engineering (AREA)
- Acoustics & Sound (AREA)
- Multimedia (AREA)
- Health & Medical Sciences (AREA)
- Audiology, Speech & Language Pathology (AREA)
- General Health & Medical Sciences (AREA)
- Headphones And Earphones (AREA)
Abstract
The embodiment of the invention relates to the technical field of wearable equipment, and discloses a switching control method of a playing mode of wearable equipment and the wearable equipment, wherein the method comprises the following steps: detecting arm actions of an arm wearing the wearable device; matching and identifying the arm action and a plurality of preset actions; if the arm action is identified to be matched with the first preset action, switching the playing mode of the wearable device sound to an external playing mode; if the arm action is identified to be matched with the second preset action, switching the playing mode of the wearable device sound to a 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 being overheard during sound playing so as to improve the privacy of users and improve the use experience of wearable equipment.
Description
Technical field
The present invention relates to wearable device technical field, and in particular to a kind of switching control of wearable device play mode
Method and wearable device.
Background technology
With the development of wearable device technology, wearable device can realize various functions, and disappeared gradually by vast
The person of expense receives.For example, wearable device (such as intelligent watch) can realize the functions such as phone, short message, mail, photo and music.
The play mode of wearable device sound in 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 actual applications, in order to prevent call from being intercepted by people around as much as possible, use
Family, which usually requires wearable device is tightly attached to ear as shown in Figure 1, is conversed, but this mode is still in the presence of call
The risk intercepted by people around;In addition, wearable device is generally worn in wrist, meeting when wearable device is close into ear
Very big inconvenience is brought to call, so as to reduce the call experience of user.
The content of the invention
The embodiment of the invention discloses a kind of method for handover control and wearable device of wearable device play mode, use
In reducing the stolen risk heard when sound is played, to improve user privacy, and the use of wearable device is also improved
Experience sense.
First aspect present invention discloses a kind of method for handover control of wearable device play mode, including:
The arm action of wearable device arm is worn in detection;
Match cognization is carried out to the arm action and multiple deliberate actions;
If identifying that the arm action matches the first deliberate action, by the play mode of the wearable device sound
Switch to outer mode playback;If identifying that the arm action matches the second deliberate action, by the wearable device sound
Play mode switches to bone-conduction mode;Wherein, the bone-conduction mode is used to convert audio signals into vibration signal and lead to
Bone medium is crossed to be transmitted.
As an alternative embodiment, in first aspect present invention, wearable device arm is worn in the detection
Arm action before, methods described also includes:
Determine whether the wearable device receives incoming call or determine the wearable device whether in logical
Speech phase;If the wearable device receives incoming call or the wearable device is in talking state, institute is performed
State the step of arm action of wearable device arm is worn in detection.
As an alternative embodiment, in first aspect present invention, methods described also includes:
If the wearable device receives the incoming call, and identifies the arm action matching described the
One deliberate action, connects the corresponding call of the incoming call;
Or, if the wearable device receives the incoming call, and identify the arm action matching
Second deliberate action, connects the corresponding call of the incoming call.
As an alternative embodiment, in first aspect present invention, wearable device arm is worn in the detection
Arm action after, methods described also includes:
If identifying that the arm action matches the 3rd deliberate action, the incoming call or current talking are hung up.
As an alternative embodiment, in first aspect present invention, wearable device arm is worn in the detection
Arm action before, methods described also includes:
Monitor whether the wearable device receives unread message prompting;
When monitoring that the wearable device receives unread message prompting, not read for described for user's input is received
The reading instruction of unread message indicated by prompting message;
Indicated unread message is reminded to be converted into voice messaging the unread message in response to the reading instruction, with
And perform the step of arm action of wearable device arm is worn in the detection.
Second aspect of the present invention discloses a kind of wearable device, it may include:
Detection unit, the arm action of the wearable device arm is worn for detecting;
Recognition unit, for carrying out match cognization to the arm action and multiple deliberate actions;
First switch unit, for when the recognition unit identifies that the arm action matches the first deliberate action,
The play mode of sound is switched into outer mode playback;
Second switch unit, for when the recognition unit identifies that the arm action matches the second deliberate action,
The play mode of sound is switched into bone-conduction mode;Wherein, the bone-conduction mode is used to convert audio signals into vibration
Signal is simultaneously transmitted by bone medium.
As an alternative embodiment, in second aspect of the present invention, the wearable device also includes:
Determining unit, for the detection unit detection wear the arm action of wearable device arm before, it is determined that
Whether the wearable device receives incoming call or determines whether the wearable device is in talking state;
The detection unit is specifically for when the determining unit determines that the wearable device receives the incoming call and exhaled
When crying or when the determining unit determines that the wearable device is in talking state, the wearable device is worn in detection
The arm action of arm.
As an alternative embodiment, in second aspect of the present invention, the wearable device also includes:
Unit is answered, for determining that the wearable device receives the incoming call when the determining unit, and
When the recognition unit identifies that the arm action that the detection unit is detected matches first deliberate action, answer described
The corresponding call of incoming call;Or, for determining that the wearable device receives the incoming call and exhaled when the determining unit
Cry, and the recognition unit is when identifying that the arm action that the detection unit detects matches second deliberate action,
Answer the corresponding call of the incoming call.
As an alternative embodiment, in second aspect of the present invention, the wearable device also includes:
Unit is hung up, for determining to receive the incoming call or in talking state when the determining unit,
And the recognition unit is when identifying that the arm action that the detection unit detects matches three deliberate actions, hang up described
Incoming call or current talking.
As an alternative embodiment, in second aspect of the present invention, the wearable device also includes:
Message monitoring unit, for the detection unit detection wear the arm action of wearable device arm before,
Monitor whether the wearable device receives unread message prompting;
Instruction reception unit, for monitoring that the wearable device receives unread message when the message monitoring unit
During 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 instruction by the indicated unread message of unread message prompting in response to described
It is converted into voice messaging;
The detection unit in the voice converting unit by the unread message specifically for reminding and indicated not reading
Message is converted into after voice messaging, and 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:
Microcontroller, the osteoacusis vibration module being connected respectively with the microcontroller, sensor, microphone and external raise
Sound device;
Wherein, the microcontroller is used to trigger the arm action that wearable device arm is worn in the sensor detection,
And match cognization is carried out to the arm action and multiple deliberate actions;If identifying that the arm action matching first is pre-
If action, outer mode playback is switched to by the play mode of the wearable device sound;If identifying the arm action
With the second deliberate action, the play mode of the wearable device sound is switched into bone-conduction mode;Wherein, the osteoacusis
Pattern is used to convert audio signals into vibration signal and be 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 first, if identifying this
Arm action matches the first deliberate action, the play mode of wearable device sound is switched into outer mode playback, if identified
The arm action matches the second deliberate action, and the play mode of wearable device sound is switched into bone-conduction mode, wherein, institute
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, while outer mode playback and bone-conduction mode are set in wearable device, and respectively for putting outside
Pattern and bone-conduction mode are provided with execution condition, intelligently to be switched between outer mode playback and bone-conduction mode, and
Bone-conduction mode is transmitted by bone medium, sound will not be caused to leak, and can be reduced when wearable device sound is played and is ravesdropping
The risk arrived, so as to play the purpose of protection privacy of user;And bone-conduction mode more user uses and provides convenience, with
Improve usage experience sense.
Brief description of the drawings
Technical scheme in order to illustrate the embodiments of the present invention more clearly, below by using required in embodiment
Accompanying drawing is briefly described, it should be apparent that, drawings in the following description are only some embodiments of the present invention, for ability
For the those of ordinary skill of domain, on the premise of not paying creative work, it can also be obtained according to these accompanying drawings other attached
Figure.
Fig. 1 is the application schematic diagram of wearable device disclosed in prior art;
Fig. 2 is the schematic flow sheet of the method for handover control of wearable device play mode disclosed in the embodiment of the present invention;
Fig. 3 is the application schematic diagram of wearable device disclosed in the embodiment of the present invention;
Fig. 4 illustrates for another flow of the method for handover control of wearable device play mode disclosed in the embodiment of the present invention
Figure;
Fig. 5 is the structural representation of wearable device disclosed in the embodiment of the present invention;
Fig. 6 is another structural representation of wearable device disclosed in the embodiment of the present invention;
Fig. 7 is another structural representation of wearable device disclosed in the embodiment of the present invention;
Fig. 8 is another structural representation of wearable device disclosed in the embodiment of the present invention.
Embodiment
Below in conjunction with the accompanying drawing in the embodiment of the present invention, the technical scheme in the embodiment of the present invention is carried out clear, complete
Site preparation is described, it is clear that described embodiment is only a part of embodiment of the invention, rather than whole embodiments.Based on this
Embodiment in invention, the every other reality that those of ordinary skill in the art are obtained under the premise of creative work is not made
Example is applied, the scope of protection of the invention is belonged to.
It is wearable for realizing the embodiment of the invention discloses a kind of method for handover control of wearable device play mode
Intelligence switching of the equipment sound play mode between outer mode playback and bone-conduction mode, reduction sound is stolen what is heard when playing
Risk, gives the more preferable usage experience sense of user.The embodiment of the present invention also accordingly discloses a kind of wearable device.
Wherein, the present embodiments relate to wearable device including intelligent watch etc. including wearable device, herein
It 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 method for handover control of wearable device play mode disclosed in the embodiment of the present invention
Journey schematic diagram;As shown in Fig. 2 a kind of method for handover control of wearable device play mode may include:
201st, the arm action of the wearable device arm is worn in wearable device detection;
In some embodiments provided in an embodiment of the present invention, osteoacusis vibration module (bone is built-in with wearable device
Conduction speaker), and an external loudspeaker and two microphones (one of them is solid microphone), in addition, can wear
Wear equipment and be also built-in with sensor (including gravity sensor and gyroscope) and a microcontroller (Microcontroller
Unit, abbreviation MCU).Wearable device is generally worn on arm (particular location such as wrist), starts in wearable device
Afterwards, the sensor detection arm action in wearable device.Based on built-in osteoacusis vibration module, the wearable device can
Bone-conduction mode is realized, so far, the play mode of wearable device sound will include outer mode playback (by external loudspeaker reality
It is existing) and bone-conduction mode (being realized by osteoacusis vibration module).Wherein, outer mode playback is come out by external loudspeaker vibration
Sound, the sound wave of sound enters inner ear by ear-drum.Bone-conduction mode is used to convert audio signals into vibration signal and lead to
Cross bone medium to be transmitted, vibration signal is finally reconverted into audio signal.As shown in figure 3, user wears wearable device
It is worn in wrist, osteoacusis vibration module is tightly attached on wrist bone or wrist skin of soft tissue, MCU output audio letters
Number, the audio signal is converted into vibration signal by osteoacusis vibration module, and vibration signal passes through skin, bone and subcutaneous
Organized delivery, while finger puts in ear or presses ear base, so as to form closed sound chamber, receives to come on finger
The vibration signal of finger transmission, due to having formed closed sound chamber, so ear-drum only needs to very small vibratory output, and passes through
The vibration signal of finger can allow ear-drum to produce enough vibrations, so as to reach the effect of clear sound, and reach protection
The purpose of privacy of user, the risk that reduction sound is intercepted when playing by people around, here it is the operation principle of bone-conduction mode.
Wherein, arm action can include the horizontal traverse of arm, arm upwards vertical, arm downward vertically, arm level
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, wearable device is worn by sensor (including gravity sensor and gyroscope) detection
The arm action of the wearable device arm.
202nd, wearable device carries out match cognization to the arm action detected with multiple deliberate actions;
It is appreciated that be pre-stored multiple deliberate actions in wearable device, at least include the first deliberate action and
Second deliberate action, wherein, the first deliberate action and the second deliberate action are set according to actual conditions.Such as, by arm water
Flat traverse, arm upwards vertical, arm downward vertically, the horizontal traverse of arm to upwards vertically, the horizontal traverse of arm is to letting droop
Directly, arm arrives horizontal traverse, arm and arrived vertically upwards vertically upwards is defined as deliberate action downward vertically etc., according to actual feelings
Condition selects one as the first deliberate action from above-mentioned deliberate action, selects another as the second deliberate action.Such as, will
The horizontal traverse of arm is used as the first deliberate action;User's finger contacts ear during in view of bone-conduction mode, now arm be to
It is upper vertical, therefore, arm can be arrived as the second deliberate action, or arm traverse vertically upwards in embodiments of the present invention
It is vertical as the second deliberate action upwards, it is not especially limited herein.
If the 203, identifying that the arm action detected matches the first deliberate action, sound is played mould by wearable device
Formula switches to outer mode playback;
Wherein, if the current play mode of wearable device is outer mode playback, then play mode is switched into outer put
Pattern simply retains current play mode on outer mode playback.If wearable device current play mode is osteoacusis mould
Formula, switches to outer mode playback to specifically include play mode:Current play mode is switched into outer mode playback from bone-conduction mode.
Specifically, the first deliberate action and the second deliberate action have been pre-stored in the MCU in wearable device, it is wearable to set
Standby to be detected by sensor after arm action, the arm action that MCU detects sensor is carried out with pre-stored deliberate action
Match cognization, if MCU identifies the first pre-stored deliberate action of arm action matching, performs first deliberate action pair
The control command answered, i.e., switch to outer mode playback by the play mode of sound.
If the 204, identifying that the arm action matches the second deliberate action, wearable device cuts sound play mode
It is changed to bone-conduction mode.
Wherein, if the current play mode of wearable device is bone-conduction mode, then play mode is switched into bone
Current play mode is simply retained on bone-conduction mode by conduction mode.If wearable device current play mode is to put outside
Pattern, switches to outer mode playback to specifically include play mode:Current play mode is switched into osteoacusis mould from outer mode playback
Formula.
Explanation to the second deliberate action refers to being discussed in detail in step 202, will not be repeated here.Specifically, may be used
The first deliberate action and the second deliberate action are pre-stored in MCU in wearable device, wearable device is detected by sensor
After arm action, the arm action that MCU detects sensor carries out match cognization with pre-stored deliberate action, if MCU
The second pre-stored deliberate action of arm action matching is identified, then performs the corresponding control command of the second deliberate action, i.e.,
The play mode of sound is switched into bone-conduction mode.
In embodiments of the present invention, the arm action of wearable device arm is worn in detection first, if identifying this
Arm action matches the first deliberate action, the play mode of wearable device sound is switched into outer mode playback, if identified
The arm action matches the second deliberate action, and the play mode of wearable device sound is switched into bone-conduction mode, wherein, institute
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, while outer mode playback and bone-conduction mode are set in wearable device, and respectively for putting outside
Pattern and bone-conduction mode are provided with execution condition, intelligently to be switched between outer mode playback and bone-conduction mode, and
Bone-conduction mode is transmitted by bone medium, sound will not be caused to leak, and can be reduced when wearable device sound is played and is ravesdropping
The risk arrived, so as to play the purpose of protection privacy of user;And bone-conduction mode more user uses and provides convenience, with
Improve usage experience sense.
As an alternative embodiment, wearable device determines whether to receive incoming call, if it is determined that receive
To incoming call, detection wears the arm action of the wearable device arm, then arm action is entered with multiple deliberate actions
Row match cognization, when identifying that arm action matches the first deliberate action, the play mode of wearable device sound is switched
For outer mode playback;Arm action the second deliberate action of matching is being identified, the play mode of wearable device sound is being switched to
Bone-conduction mode.Wherein, the MCU in wearable device determines whether to receive incoming call, if incoming call, by passing
Sensor (including gravity sensor and gyroscope) detects the arm action for adorning oneself with the wearable device arm.As can be seen that this
The play mode of sound conversed in inventive embodiments includes outer mode playback and bone-conduction mode, by the detection to arm action and
Match cognization, is switched with the intelligence for realizing outer mode playback and bone-conduction mode.
Further, wearable device determines whether the incoming call is set with wearable after incoming call is received
The mobile terminal of standby binding is answered, if bound mobile terminal is not answered, the wearable device arm is worn in detection
Arm action.Wearable device detects whether the mobile terminal of binding has answered incoming call by MCU, if so, then tying
Line journey.Wearable set if not provided, further adorning oneself with this by sensor (including gravity sensor and gyroscope) detection
The arm action of standby arm.
As another optional embodiment, wearable device determines whether to be in talking state, if positive place
In talking state, then the arm action of the wearable device arm is worn in detection, and then arm action is moved with multiple preset
Make carry out match cognization, when identifying that arm action matches the first deliberate action, by the play mode of wearable device sound
Switch to outer mode playback;Arm action the second deliberate action of matching is being identified, the play mode of wearable device sound is being cut
It is changed to bone-conduction mode.As can be seen that when wearable device MCU determines to be in talking state, being detected in real time by sensor
Whether arm action changes, to determine the need for switching between outer mode playback and bone-conduction mode.
Alternatively, wearable device is further determined that when receiving incoming call or determining to be in talking state
Whether the play mode function of wearable device sound is in enabled state, if, then the wearable device is worn into detection
The arm action of arm.If the play mode function of wearable device sound is not on enabled state, then pin can only be used
The play mode that sound is fixedly installed.
As an alternative embodiment, wearable device detects whether to receive incoming call, if it is determined that receive
Arm action and multiple deliberate actions progress match cognization to incoming call, detection arm action and to detecting, if
The arm action that detects further the first deliberate action of matching is identified, the connection incoming call will be performed simultaneously corresponding logical
Talk about and sound play mode is switched to outer mode playback;Or wearable device detects whether to receive incoming call, if really
Surely incoming call is received, arm action is detected and the arm action detected is carried out matching knowledge with multiple deliberate actions
Not, if identifying the arm action detected further the second deliberate action of matching, it will simultaneously perform and connect the incoming call
It is corresponding to converse and sound play mode is switched to bone-conduction mode.In this embodiment, it is also provided with for incoming call
Performed and gone code according to arm action, determine that incoming call is also not turned on when receiving incoming call in MCU, when MCU knows
Do not go out arm action the first deliberate action of matching that sensor is detected, then MCU connects the call of the incoming call, while
Play mode is switched into outer mode playback, call sound is played back by external speaker;When MCU identifies that sensor is examined
The arm action measured matches the second deliberate action, then the call of the incoming call is connected, while also switching play mode
For bone-conduction mode, vibration signal is converted audio signals into, is then transmitted by bone medium, to reduce call sound quilt
The risk intercepted, to improve the privacy of call, also further improves call experience sense.
As an alternative embodiment, wearable device detects whether to receive incoming call, if it is determined that receive
Arm action and multiple deliberate actions progress match cognization to incoming call, detection arm action and to detecting, if
When identifying that the arm action detected further matches four deliberate actions, the corresponding call of the call incoming is connected.It can wear
Wear equipment to be in after talking state, in real time the arm action of detection wearable device arm, if identifying, the arm detected is moved
Make the first deliberate action of matching, sound play mode is switched to outer mode playback, if identifying the arm action detected
With the second deliberate action, sound play mode is switched to bone-conduction mode.In this embodiment, set also directed to incoming call sound
Deliberate action, when wearable device receives incoming call, user can pass through connecing for being shown on wearable device interface
Listen virtual push button connecting incoming call to call or called by the physical button connecting incoming call on wearable device, hand can also be passed through
Arm action carrys out connecting incoming call calling, therefore, fashionable there is incoming call to enter, and will go to detect arm action by sensor, and work as MCU
Identify that arm action is matched after the 4th deliberate action, will turn on the call of incoming call.As can be seen that in this embodiment,
The call called by arm action connecting incoming call, facilitates user to make when can not extract bimanualness wearable device out
With further raising usage experience sense.
As an alternative embodiment, if wearable device determines to receive incoming call, detection wears this can
After the arm action of wearable device arm, if the arm action matches the 3rd deliberate action, then wearable device will be hung up
The incoming call;Or, if wearable device determines to be in talking state, the hand of the wearable device arm is worn in detection
After arm action, if the arm action matches the 3rd deliberate action, then wearable device will hang up current talking.
Embodiment two
Referring to Fig. 4, Fig. 4 is the another of the method for handover control of wearable device play mode disclosed in the embodiment of the present invention
One schematic flow sheet;As shown in figure 4, a kind of method for handover control of wearable device play mode may include:
401st, wearable device monitors whether to receive unread message prompting;
Wearable device can realize the functions such as phone, short message.
402nd, when monitoring, which receives unread message, to be reminded, what wearable device reception user inputted 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 button of display interface or to wearable
The input operation of physical button in equipment, reminds the reading of indicated unread message to refer to obtain for the unread message
Order.
403rd, unread message is reminded indicated unread message to be converted into voice by wearable device in response to reading to instruct
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, reduce screen too small to user's reading
The sense of discomfort caused, while when user is inconvenient to check wearable device, by voice user can be allowed to know in time and do not read
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
To be instructed to the reading of unread message, unread message is converted into voice messaging.Wherein, deliberate action here is different from above-mentioned
The first deliberate action, the second deliberate action, the 3rd deliberate action and the 4th deliberate action referred to.
404th, the arm action of wearable device arm is worn in wearable device detection;
Unread message is converted to voice messaging by wearable device after the reading that have received user is instructed, further inspection
Arm action is surveyed, to determine the play mode for playing the voice messaging.
405th, wearable device carries out match cognization to the arm action detected with multiple deliberate actions;
406th, when the arm action matches the first deliberate action, the play mode of sound is switched to outer put by wearable device
Pattern;
When arm action matches the first deliberate action, the play mode of sound is switched to and puts mould outside by wearable device
Formula.
407th, when the arm action matches the second deliberate action, the play mode of sound is switched to bone to pass by wearable device
Waveguide mode.
When arm action matches the second deliberate action, the play mode of sound is switched to osteoacusis mould by wearable device
Formula, plays voice messaging, to reduce the risk intercepted by people around by bone-conduction mode.
In embodiments of the present invention, when wearable device receives unread message, if the reading for receiving user's input refers to
Order, voice messaging is converted into by the unread message, and then detection adorns oneself with the arm action of wearable device arm, in the arm
During action the first deliberate action of matching, the play mode of sound is switched into outer mode playback, it is pre- in arm action matching second
If during action, the play mode of sound is switched into bone-conduction mode.As can be seen that unread message is turned in the embodiment of the present invention
Change voice messaging into play out, reduce the too small sense of discomfort caused to user's reading of screen, also be inconvenient to check for user
Provided convenience during unread message, to know unread message in time.Further, for the voice messaging after conversion, Yong Huke
To select play mode by arm action, the intelligence switching between outer mode playback and bone-conduction mode, and bone are realized
Conduction mode can reduce the risk eavesdropped when voice messaging is played by people around, to play the effect of protection privacy of user.
As an alternative embodiment, wearable device matches the first deliberate action in arm action, by sound
Play mode is switched to after outer mode playback:Wearable device obtains external environmental sounds;Ambient sound is analyzed to external world,
To obtain the decibel of external environmental sounds;Judge whether the volume corresponding to outer mode playback matches with decibel, if it is not, will put outside
Volume corresponding to pattern is adjusted to the default volume that decibel matches.
As an alternative embodiment, wearable device detects whether to receive music instruction, when it is determined that connecing
When receiving music instruction, instructed in response to the music, the arm action of wearable device arm, opponent are worn in detection
Arm is acted carries out match cognization with multiple deliberate actions;, will be wearable if identifying that arm action matches the first deliberate action
The play mode of equipment sound switches to outer mode playback;, will be wearable if identifying that arm action matches the second deliberate action
The play mode of equipment sound switches to bone-conduction mode.As can be seen that wearable device can also be in synchronous mobile terminal sound
It is happy, when wearable device detects music instruction, the arm action of wearable device arm, opponent are worn by detection
Arm act with multiple deliberate actions carry out match cognization, then according to arm action between outer mode playback and bone-conduction mode intelligence
It can switch, when ensure that user is in noisy environment by bone-conduction mode, remain able to obtain clearly music sound effect,
Nor people around can be bothered.
Embodiment three
Referring to Fig. 5, Fig. 5 is the structural representation of wearable device disclosed in the embodiment of the present invention;As shown in figure 5, one
Planting wearable device may include:
Detection unit 510, the arm action of wearable device arm is worn for detecting;
Recognition unit 520, for carrying out match cognization to arm action and multiple deliberate actions;
First switch unit 530, for when recognition unit 520 identifies that arm action matches the first deliberate action, inciting somebody to action
The play mode of sound switches to outer mode playback;
Second switch unit 540, for when recognition unit 520 identifies that arm action matches the second deliberate action, inciting somebody to action
The play mode of sound switches to bone-conduction mode;Wherein, bone-conduction mode is used to convert audio signals into vibration signal simultaneously
Transmitted by bone medium.
It is appreciated that be pre-stored multiple deliberate actions in wearable device, at least include the first deliberate action and
Second deliberate action, wherein, the first deliberate action and the second deliberate action are set according to actual conditions.Such as, by arm water
Flat traverse, arm upwards vertical, arm downward vertically, the horizontal traverse of arm to upwards vertically, the horizontal traverse of arm is to letting droop
Directly, arm arrives horizontal traverse, arm and arrived vertically upwards vertically upwards is defined as deliberate action downward vertically etc., according to actual feelings
Condition selects one as the first deliberate action from above-mentioned deliberate action, selects another as the second deliberate action.Such as, will
The horizontal traverse of arm is used as the first deliberate action;User's finger contacts ear during in view of bone-conduction mode, now arm be to
It is upper vertical, therefore, arm can be arrived as the second deliberate action, or arm traverse vertically upwards in embodiments of the present invention
It is vertical as the second deliberate action upwards, it is not especially limited herein.
Wherein, arm action can include the horizontal traverse of arm, arm upwards vertical, arm downward vertically, arm level
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.
Wherein, if the current play mode of wearable device is outer mode playback, then play mode is switched into outer put
Pattern simply retains current play mode on outer mode playback.If wearable device current play mode is osteoacusis mould
Formula, switches to outer mode playback to specifically include play mode:Current play mode is switched into outer mode playback from bone-conduction mode.
If the current play mode of wearable device is bone-conduction mode, then play mode is switched into osteoacusis mould
Current play mode is simply retained on bone-conduction mode by formula.If wearable device current play mode is outer mode playback,
Outer mode playback is switched to specifically include play mode:Current play mode is switched into bone-conduction mode from outer mode playback.
In embodiments of the present invention, the arm action of wearable device arm is worn in the detection of detection unit 510 first, is known
The arm action that other unit 520 is detected to detection unit 510 carries out match cognization with multiple deliberate actions, if recognition unit
520 identify that the arm action matches the first deliberate action, and the first switch unit 530 is by the play mode of wearable device sound
Outer mode playback is switched to, if recognition unit 520 identifies that the arm action matches the second deliberate action, the second switch unit
The play mode of wearable device sound is switched to bone-conduction mode by 540, wherein, disclosed bone-conduction mode is for inciting somebody to action
Audio signal is converted to vibration signal and transmitted by bone medium.As can be seen that implementing the embodiment of the present invention, while can
Outer mode playback and bone-conduction mode are set in wearable device, and are provided with execution for outer mode playback and bone-conduction mode respectively
Condition, intelligently to be switched between outer mode playback and bone-conduction mode, and bone-conduction mode is transmitted by bone medium, no
Sound can be caused to leak, the stolen risk heard when sound is played can be reduced, so as to play the effect of protection privacy of user;And
And bone-conduction mode more user provides convenience, to improve usage experience sense.
Example IV
Referring to Fig. 6, Fig. 6 is another structural representation of wearable device disclosed in the embodiment of the present invention;Shown in Fig. 6
Wearable device is to optimize what is obtained on the basis of the wearable device shown in Fig. 5, in figure 6, and wearable device is also
Including:Determining unit 610.
Wherein, the determining unit 610 be used for detection unit 510 detect wear wearable device arm arm action it
Before, determine whether wearable device receives incoming call or determine whether wearable device is in talking state;
Detection unit 510 specifically for, when determining unit 610 determine wearable device receive incoming call when or work as
When determining unit 610 determines that wearable device is in talking state, the arm action of wearable device arm is worn in detection.
As an alternative embodiment, determining unit 610 determines whether to receive incoming call, if it is determined that unit
610 determine to receive incoming call, then detection unit 510 detects the arm action for wearing the wearable device arm.
Further, it is determined that unit 610 determine receive after incoming call, determine the incoming call whether by with it is wearable
The mobile terminal of apparatus bound is answered, if bound mobile terminal is not answered, the wearable device hand is worn in detection
The arm action of arm.
As another optional embodiment, determining unit 610 determines whether to be in talking state, if just
In talking state, then detection unit 510 detects the arm action for wearing the wearable device arm.
Alternatively, the determining unit 610 of wearable device is receiving incoming call or is determining to be in talking state
When, further determine that unit 610 determines whether the play mode function of wearable device sound is in enabled state, if so, that
Detection unit 510 wears the arm action of the wearable device arm by detecting.If the play mode of wearable device sound
Function is not on enabled state, then can only use the play mode being fixedly installed for sound.
Wherein, arm action can include the horizontal traverse of arm, arm upwards vertical, arm downward vertically, arm level
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.
As an alternative embodiment, in the wearable device shown in Fig. 6, the wearable device also includes:Connect
Unit 620 is listened, for determining that wearable device receives incoming call when determining unit 610, and recognition unit 520 is identified
When the arm action that detection unit 510 is detected matches the first deliberate action, incoming call answering calls corresponding call;Or, use
In determining that wearable device receives incoming call when determining unit 610, and recognition unit 520 identifies detection unit 510
When the arm action detected matches the second deliberate action, incoming call answering calls corresponding call.
As an alternative embodiment, in the wearable device shown in Fig. 6, the wearable device also includes hanging up
Unit 630, for determining to receive incoming call in determining unit 610 or determining to be in talking state, and identification is single
When member 520 identifies that the arm action that detection unit 510 is detected matches three deliberate actions, hanging up calling calling or current
Call.
Embodiment five
Referring to Fig. 7, Fig. 7 is another structural representation of wearable device disclosed in the embodiment of the present invention;As shown in Figure 7
Wearable device be to optimize what is obtained on the basis of the wearable device shown in Fig. 5, as shown in fig. 7, this is wearable
Equipment also includes:
Message monitoring unit 710, for detection unit 510 detect wear wearable device arm arm action it
Before, whether monitoring wearable device receives unread message prompting;
Instruction reception unit 720, for monitoring that wearable device receives unread message and carried when message monitoring unit 710
When waking up, the reading instruction that indicated unread message is reminded for unread message of user's input is received;
Voice converting unit 730, for unread message to be reminded to indicated unread message conversion in response to reading instruction
Into voice messaging;
Detection unit 510 in voice converting unit 730 specifically for reminding indicated unread message to turn unread message
Change into after voice messaging, the arm action of wearable device arm is worn in detection.
It is appreciated that instruction reception unit 720 receives input operation or right of the user to the reading button of display interface
The input operation of physical button on wearable device, readding for indicated unread message is reminded for the unread message to obtain
Reading instruction.
In embodiments of the present invention, when message monitoring unit 710 monitors to receive unread message, if instruction reception unit
720 receive the reading instruction of user's input, and the unread message is converted into voice messaging, Ran Houjian by voice converting unit 730
Survey unit 510 and detect the arm action for adorning oneself with wearable device arm, identify that the arm action is matched in recognition unit 520
During the first deliberate action, the play mode of sound is switched to outer mode playback by the first switch unit 530, is known in recognition unit 520
When not going out the arm action the second deliberate action of matching, the play mode of sound is switched to osteoacusis by the second switch unit 540
Pattern.Played out as can be seen that unread message is converted into voice messaging in the embodiment of the present invention, reduce screen it is too small to
The sense of discomfort caused is read at family, is also provided convenience for user when being inconvenient to check unread message, does not read to disappear in time to know
Breath.Further, for the voice messaging after conversion, user can select play mode by arm action, realize outside
Intelligence between mode playback and bone-conduction mode switches, and bone-conduction mode can be reduced when voice messaging is played by people around
The risk of eavesdropping, to play the effect of protection privacy of user.
As an alternative embodiment, identifying the arm action that detection unit 510 is detected in recognition unit 520
When matching the first deliberate action, the first switch unit 530 switches to the play mode of sound after outer mode playback, and this first is cut
Unit 510 is changed to be additionally operable to obtain external environmental sounds;Ambient sound is analyzed to external world, to obtain point of external environmental sounds
Shellfish;Judge whether the volume corresponding to outer mode playback matches with decibel, if it is not, the volume corresponding to outer mode playback is adjusted to
The default volume that decibel matches.
As an alternative embodiment, detection unit 510 detects whether to receive music instruction, when it is determined that connecing
When receiving music instruction, instructed in response to the music, the arm action of wearable device arm, identification are worn in detection
Unit 520 carries out match cognization to arm action and multiple deliberate actions;If recognition unit 520 identifies that arm action is matched
The play mode of wearable device sound is switched to outer mode playback by the first deliberate action, the first switch unit 530;If identification
Unit 520 identifies that arm action matches the second deliberate action, and the second switch unit 540 is by the broadcasting mould of wearable device sound
Formula switches to bone-conduction mode.As can be seen that wearable device can also be in synchronous mobile terminal music, when detection unit 510
When detecting music instruction, the arm action of wearable device arm is worn by detection, recognition unit 520 is dynamic to arm
Make to carry out match cognization with multiple deliberate actions, then the first switch unit 530 and the second switch unit 540 are according to arm action
Intelligently switch between outer mode playback and bone-conduction mode, ensure that user is in noisy environment by bone-conduction mode
When, remain able to obtain clearly music sound effect, nor people around can be bothered.
Embodiment six
Referring to Fig. 8, Fig. 8 is another structural representation of wearable device disclosed in the embodiment of the present invention;Such as Fig. 8 institutes
Show, a kind of wearable device may include:
Microcontroller 810, the osteoacusis vibration module 820 being connected respectively with microcontroller 810, sensor 830, microphone
(Microphone, abbreviation MIC) 840 and external speaker 850;
Wherein, microcontroller 810 is used for the arm action that wearable device arm is worn in the detection of trigger sensor 830, with
And match cognization is carried out to arm action and multiple deliberate actions;, will if identifying that arm action matches the first deliberate action
The play mode of wearable device sound switches to outer mode playback;, will if identifying that arm action matches the second deliberate action
The play mode of wearable device sound switches to bone-conduction mode;Wherein, bone-conduction mode is used to convert audio signals into
Vibration signal is simultaneously transmitted by bone medium.
Be built-in with osteoacusis vibration module (bone-conduction speaker) in wearable device, and an external loudspeaker and
Two microphones (one of them is solid microphone), in addition, wearable device is also built-in with sensor (including gravity sensor
And gyroscope) and a microcontroller.Wearable device is generally worn on arm (particular location such as wrist),
After wearable device starts, the sensor detection arm action in wearable device., should based on built-in osteoacusis vibration module
Wearable device can realize bone-conduction mode, so far, and the play mode of wearable device sound (will pass through including outer mode playback
External loudspeaker is realized) and bone-conduction mode (being realized by osteoacusis vibration module).Wherein, outer mode playback passes through external
Loudspeaker vibration comes out sound, and the sound wave of sound enters inner ear by ear-drum.Bone-conduction mode is used to change audio signal
Transmitted for vibration signal and by bone medium, vibration signal is finally reconverted into audio signal.As shown in figure 3, user
Wearable device is worn in wrist, osteoacusis vibration module is tightly attached on wrist bone or wrist skin of soft tissue,
MCU exports audio signals, the audio signal is converted into vibration signal by osteoacusis vibration module, and vibration signal passes through skin
Skin, bone and hypodermis are delivered on finger, while finger puts in ear or presses ear base, so as to form close
Close sound chamber, receive the vibration signal transmitted from finger, due to having formed closed sound chamber, so ear-drum only need to it is very small
Vibratory output, and by the vibration signal of finger ear-drum can be allowed to produce enough vibration, so as to reach clear sound
Effect, and reach the purpose of protection privacy of user, the risk that reduction sound is intercepted when playing by people around, here it is osteoacusis
The operation principle of pattern.
One of ordinary skill in the art will appreciate that all or part of step in the various methods of above-described embodiment is can
To instruct the hardware of correlation to complete by program, the program can be stored in a computer-readable recording medium, storage
Medium include read-only storage (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 storage (One-
Time Programmable Read-Only Memory, OTPROM), the electronics formula of erasing can make carbon copies read-only storage
(Electrically-Erasable Programmable Read-Only Memory, EEPROM), read-only optical disc (Compact
Disc Read-Only Memory, CD-ROM) or other disk storages, magnetic disk storage, magnetic tape storage or can
For carrying or any other computer-readable medium of data storage.
Above to the method for handover control of a kind of wearable device play mode disclosed in the embodiment of the present invention and wearable
Equipment is described in detail, and specific case used herein is set forth to the principle and embodiment of the present invention, with
The explanation of upper embodiment is only intended to the method and its core concept for helping to understand the present invention;Simultaneously for the general of this area
Technical staff, according to the thought of the present invention, will change in specific embodiments and applications, in summary,
This specification content should not be construed as limiting the invention.
Claims (11)
1. a kind of method for handover control of wearable device play mode, it is characterised in that including:
The arm action of wearable device arm is worn in detection;
Match cognization is carried out to the arm action and multiple deliberate actions;
If identifying that the arm action matches the first deliberate action, the play mode of the wearable device sound is switched
For outer mode playback;If identifying that the arm action matches the second deliberate action, by the broadcasting of the wearable device sound
Pattern switching is bone-conduction mode;Wherein, the bone-conduction mode is used to convert audio signals into vibration signal and by bone
Medium is transmitted.
2. according to the method described in claim 1, it is characterised in that described to detect the arm action for wearing wearable device arm
Before, methods described also includes:
Determine whether the wearable device receives incoming call or determine the wearable device whether in call shape
State;
If the wearable device receives incoming call or the wearable device is in talking state, the inspection is performed
The step of arm action of wearable device arm is worn in survey.
3. method according to claim 2, it is characterised in that methods described also includes:
If the wearable device receives the incoming call, and identifies that the arm action matching described first is pre-
If action, the corresponding call of the incoming call is connected;
Or, if the wearable device receives the incoming call, and identify that the arm action matching is described
Second deliberate action, connects the corresponding call of the incoming call.
4. method according to claim 2, it is characterised in that
The detection is worn after the arm action of wearable device arm, and methods described also includes:
If identifying that the arm action matches the 3rd deliberate action, the incoming call or current talking are hung up.
5. according to the method described in claim 1, it is characterised in that described to detect the arm action for wearing wearable device arm
Before, methods described 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;
Remind indicated unread message to be converted into voice messaging the unread message in response to the reading instruction, and hold
The step of arm action of wearable device arm is worn in the row detection.
6. a kind of wearable device, it is characterised in that including:
Detection unit, the arm action of the wearable device arm is worn for detecting;
Recognition unit, for carrying out match cognization to the arm action and multiple deliberate actions;
First switch unit, for when the recognition unit identifies that the arm action matches the first deliberate action, by sound
The play mode of sound switches to outer mode playback;
Second switch unit, for when the recognition unit identifies that the arm action matches the second deliberate action, by sound
The play mode of sound switches to bone-conduction mode;Wherein, the bone-conduction mode is used to convert audio signals into vibration signal
And transmitted by bone medium.
7. wearable device according to claim 6, it is characterised in that the wearable device also includes:
Determining unit, for before the arm action of wearable device arm is worn in detection unit detection, it is determined that described
Whether wearable device receives incoming call or determines whether the wearable device is in talking state;
The detection unit is specifically for when the determining unit determines that the wearable device receives the incoming call
Or when the determining unit determines that the wearable device is in talking state, the wearable device arm is worn in detection
Arm action.
8. wearable device according to claim 7, it is characterised in that the wearable device also includes:
Unit is answered, for determining that the wearable device receives the incoming call when the determining unit, and it is described
When recognition unit identifies that the arm action that the detection unit is detected matches first deliberate action, the incoming call is answered
The corresponding call of calling;Or, for determining that the wearable device receives the incoming call when the determining unit, with
And the recognition unit is when identifying that the arm action that the detection unit detects matches second deliberate action, institute is answered
State the corresponding call of incoming call.
9. wearable device according to claim 7, it is characterised in that the wearable device also includes:
Unit is hung up, for determining to receive the incoming call or in talking state when the determining unit, and
When the recognition unit identifies that the arm action that the detection unit is detected matches three deliberate actions, the incoming call is hung up
Calling or current talking.
10. wearable device according to claim 6, it is characterised in that the wearable device also includes:
Message monitoring unit, for before the arm action of wearable device arm is worn in detection unit detection, monitoring
Whether the wearable device receives unread message prompting;
Instruction reception unit, for monitoring that the wearable device receives unread message and reminded 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 instruction by the indicated unread message conversion of unread message prompting in response to described
Into voice messaging;
The detection unit is specifically for the unread message to be reminded to indicated unread message in the voice converting unit
It is converted into after voice messaging, the arm action of the wearable device arm is worn in detection.
11. a kind of wearable device, it is characterised in that including:
Microcontroller, the osteoacusis vibration module being connected respectively with the microcontroller, sensor, microphone and external raise one's voice
Device;
Wherein, the microcontroller is used to trigger the arm action that wearable device arm is worn in the sensor detection, and
Match cognization is carried out to the arm action and multiple deliberate actions;If identifying that the arm action matching first is default dynamic
Make, the play mode of the wearable device sound is switched into outer mode playback;If identifying arm action matching the
Two deliberate actions, bone-conduction mode is switched to by the play mode of the wearable device sound;Wherein, the bone-conduction mode
For converting audio signals into vibration signal and being transmitted by bone medium.
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CN110677163A (en) * | 2019-08-19 | 2020-01-10 | 努比亚技术有限公司 | Communication voice output method, wearable device and computer readable storage medium |
CN112130678A (en) * | 2020-09-23 | 2020-12-25 | 深圳市爱都科技有限公司 | Arm lowering recognition method and wearable terminal |
CN112130678B (en) * | 2020-09-23 | 2023-06-02 | 深圳市爱都科技有限公司 | Arm drop recognition method and wearable terminal |
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