WO2016101580A1 - 可穿戴设备控制终端的方法和系统、终端及可穿戴设备 - Google Patents

可穿戴设备控制终端的方法和系统、终端及可穿戴设备 Download PDF

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Publication number
WO2016101580A1
WO2016101580A1 PCT/CN2015/083034 CN2015083034W WO2016101580A1 WO 2016101580 A1 WO2016101580 A1 WO 2016101580A1 CN 2015083034 W CN2015083034 W CN 2015083034W WO 2016101580 A1 WO2016101580 A1 WO 2016101580A1
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Prior art keywords
terminal
wearable device
user
module
sensing module
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PCT/CN2015/083034
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English (en)
French (fr)
Inventor
房稳
张立勃
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中兴通讯股份有限公司
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Publication of WO2016101580A1 publication Critical patent/WO2016101580A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/042Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by opto-electronic means
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0484Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/21Combinations with auxiliary equipment, e.g. with clocks or memoranda pads

Definitions

  • the present invention relates to the field of communications, and in particular, to a method and system for controlling a terminal of a wearable device, a terminal, and a wearable device.
  • Wearable devices have developed rapidly in recent years, especially smart watches and smart bracelets have quickly entered people's daily use. People wear writing, typing, or other desktop operations while wearing a watch.
  • the strap at the lower part of the watch strap always touches the table, creating various sliding, rubbing or colliding actions.
  • embodiments of the present invention provide a method and system for controlling a terminal, a terminal, and a wearable device.
  • An embodiment of the present invention provides a method for controlling a terminal by a wearable device, including:
  • the control instruction is used to control the terminal to perform a corresponding operation.
  • the optical signal generated by the motion information includes a sliding signal generated by the light sensing module sliding on the contact surface, and/or the light sensing module receives a pulse signal generated by the light reflection of the contact surface.
  • the generating the control instruction according to the optical signal comprises: generating a control instruction according to a trajectory of the sliding signal; and/or generating a control instruction according to a tempo of the pulse signal.
  • the trajectory of the sliding signal includes at least one of a distance, a direction and a speed of the sliding information trajectory; the tempo of the pulse signal includes an amplitude and/or a frequency of the pulse signal .
  • the method further includes: counting, during the set time period, a signal generated by the motion information of the optical sensing module; The signal generated during the time period identifies the current action of the user; determines whether the action satisfies a preset threshold; if satisfied, performs a prompt operation on the user.
  • the performing the prompting operation on the user includes: performing a prompting operation on the user by itself; and/or generating a control instruction of the prompting operation, and sending the control instruction to the terminal to make the The terminal performs a prompt operation.
  • the prompting operation includes at least one of ringing, shaking, picture display, and light blinking.
  • the method further includes the steps of: determining whether the current action of the user is changed, and if not changing, performing a warning operation on the user.
  • the alert operation includes ringtone, vibration, screen display, At least one of blinking light, dialing a preset emergency call, issuing a preset emergency message, and an alarm.
  • the embodiment of the present invention further provides a method for controlling a terminal by a wearable device, including:
  • the wearable device being provided with a light sensing module
  • the embodiment of the present invention further provides a method for controlling a terminal by the wearable device, where the operation corresponding to the execution of the control instruction includes:
  • an embodiment of the present invention further provides a method for controlling a terminal by a wearable device, including:
  • the wearable device establishes a connection with the terminal
  • the wearable device acquires an optical signal generated by the action information of the light sensing module, generates a control command according to the optical signal, and sends the control command to the terminal;
  • the terminal receives the control instruction and performs an operation corresponding to the control instruction.
  • an embodiment of the present invention further provides a wearable device, including a light sensing module, a connection module, and a control module:
  • the setting module is configured to set a light sensing module
  • the connection module is configured to establish a connection with the terminal
  • the control module is configured to acquire an optical signal generated by the action information of the light sensing module, generate a control command according to the optical signal, and send the control command to the terminal, where the control command is used to control the The terminal performs the corresponding operation.
  • the optical signal generated by the motion information includes a sliding signal generated by the light sensing module sliding on the contact surface, and/or the light sensing module receives the contact surface light Shoot the generated pulse signal.
  • the generating the control instruction according to the optical signal comprises: generating a control instruction according to a trajectory of the sliding signal; and/or generating a control instruction according to a tempo of the pulse signal.
  • the trajectory of the sliding signal includes at least one of a distance, a direction and a speed of the sliding information trajectory; the tempo of the pulse signal includes an amplitude and/or a frequency of the pulse signal .
  • the prompting module is further configured to: after the obtaining the optical signal generated by the action information of the light sensing module, the light is counted in a set time period.
  • a signal generated by the action information of the sensing module identifying a current action of the user according to a signal generated during the time period; determining whether the action satisfies a preset threshold; if satisfied, performing a prompt operation on the user.
  • the prompting module is further configured to perform a prompting operation on the user by itself; and/or a control instruction for producing a prompting operation, and send the control command to the terminal to make the terminal Perform the prompt action.
  • the prompting operation includes at least one of ringing, shaking, picture display, and light.
  • the warning module is further configured to: after performing the prompting operation on the user, determine whether the current action of the user is changed, and if not, perform an alert operation on the user.
  • the alert operation includes at least one of a ringtone, a vibration, a screen display, a light flash, a preset emergency call, a preset emergency message, and an alarm.
  • an embodiment of the present invention further provides a terminal, including a setup module and an execution module:
  • the establishing module is configured to establish a connection with the wearable device, where the wearable device is provided with a light sensing module;
  • the execution module is configured to receive a control instruction of the wearable device, and perform an operation corresponding to the control instruction.
  • the execution module is further configured to acquire a current interface scenario, and execute a control instruction corresponding to the interface scenario according to the interface scenario.
  • an embodiment of the present invention further provides a system for controlling a terminal by a wearable device, including a wearable device and a terminal:
  • the wearable device establishes a connection with the terminal
  • the wearable device acquires an optical signal generated by the action information of the light sensing module, generates a control command according to the optical signal, and sends the control command to the terminal;
  • the terminal receives the control instruction and performs an operation corresponding to the control instruction.
  • An embodiment of the present invention provides a method and system for controlling a terminal, a terminal, and a wearable device.
  • the method for controlling a terminal by the wearable device according to the embodiment of the present invention is specifically: first setting a light sensing module to establish a connection with the terminal, Then, the optical signal generated by the motion information of the light sensing module is acquired, a control command is generated according to the optical signal, and finally the control command is sent to the terminal, and the control command is used to control the terminal to perform the corresponding operation.
  • the control signal is generated by the optical signal generated by the motion information of the light sensing module, and the control command is sent to the terminal, and the terminal only needs to perform the corresponding operation according to the control instruction, thereby improving the wearable device.
  • the control of the connected terminal improves the cooperation between the wearable device and the terminal, enhances the function of the wearable device, and brings convenience and a good operating experience to the user.
  • Figure 1 is a side view of a conventional light sensing module
  • FIG. 2 is a schematic flowchart of a method for controlling a terminal of a wearable device according to Embodiment 1 of the present invention
  • FIG. 3 is a schematic flowchart of a method for controlling a terminal of a wearable device according to Embodiment 2 of the present invention
  • FIG. 4 is a schematic flowchart of a method for controlling a terminal of a wearable device according to Embodiment 3 of the present invention.
  • FIG. 5 is a schematic diagram of a first structure of a wearable device according to Embodiment 4 of the present invention.
  • FIG. 6 is a schematic diagram of a second structure of a wearable device according to Embodiment 4 of the present invention.
  • FIG. 7 is a schematic diagram of a third structure of a wearable device according to Embodiment 4 of the present invention.
  • FIG. 8 is a schematic structural diagram of a terminal according to Embodiment 4 of the present invention.
  • FIG. 9 is a schematic structural diagram of a system of a wearable device control terminal according to Embodiment 4 of the present invention.
  • the photoelectric sensing module is composed of an illumination source, a lens assembly, an optical sensor and a control chip. As shown in Figure 1, the light emitted by the LED source is reflected by the lower plate and received by the optical sensor. When the position below moves, the image reflected by the bottom plate of the optical sensor will also change accordingly, and the control chip captures the action by calculating the change. On the other hand, when the lower plate leaves, the optical sensor cannot receive the light emitted from the LED, so the photoelectric sensor module must work in close contact with the plane.
  • the wearable device of the present application combines the existing optical sensing to enhance the control of the terminal by the wearable device, enhances the function of the wearable device, and brings convenience and a good operating experience to the user.
  • a detailed description will be given below.
  • the method for controlling a terminal of the wearable device in this embodiment includes the following steps:
  • Step S101 setting a light sensing module
  • the light sensing module is disposed in the wearable device, and the specific The bottom of the wearable setting, of course, can be located at a certain distance from the bottom.
  • Wearable devices here include wearable settings commonly used by other users, such as smart watches and smart bracelets.
  • Step S102 establishing a connection with the terminal
  • the wearable device establishes a connection with the terminal through Bluetooth or wifi, etc., where the terminal includes a mobile phone, a tablet computer, and the like, and other commonly used mobile terminals.
  • Step S103 Acquire an optical signal generated by motion information of the light sensing module.
  • the light sensing module of the wearable device can operate according to the reflection with the contact surface.
  • the photoelectric sensor module in the smart watch can generate different signals to generate control commands.
  • the optical signal generated by the motion information includes a sliding signal generated by the light sensing module sliding on the contact surface, and/or the light sensing module receives the pulse signal generated by the light reflection of the contact surface.
  • Step S104 generating a control instruction according to the optical signal
  • control commands are generated according to different optical signals
  • control commands are generated according to the trajectory of the sliding signals
  • control commands are generated according to the tempo of the pulse signals.
  • the trajectory of the sliding signal includes at least one of a distance, a direction, and a speed of the sliding information trajectory; a tempo of the pulse signal includes an amplitude and/or a frequency of the pulse signal.
  • the trajectory generation control command of the sliding signal means that the light sensing module is in contact with the contact surface and slides on the contact surface, and at this time, the optical signal reflected by the displacement can be detected.
  • the frequency generation control command of the pulse signal refers to the amplitude of the light reflection signal received or not received by the light sensing module, and the amplitude of the light reflection signal is received or not received, and the number of times of counting and continuing to receive the light reflection is released or within a certain period of time. The number of times the contact surface is touched. For example, if you set the slide to the left to answer the call and the right to the hanging call, then when there is an incoming call, the optical signal is swiped to the left, then a control command to answer the call is generated.
  • the specific sliding direction corresponding to the control command can be customized according to the user. You can move 3 cm to the left to answer the call and 2 cm to the left for hands-free.
  • the specific sliding distance and the corresponding control commands can be customized according to the user.
  • the specific sliding speed corresponding control command can be customized according to the user.
  • the rhythm here can be similar to the rhythm of music. Set to continuously leave or touch the contact surface 3 times within 5 seconds for the unlock control command, that is, 3 pulse signals are generated within 5 seconds, then unlocked.
  • the control commands corresponding to the frequency of the specific pulse signal can be customized according to user requirements.
  • Step S105 Send a control command to the terminal, where the control command is used to control the terminal to perform a corresponding operation.
  • the terminal receives the control command sent by the wearable device, and performs a corresponding operation according to the control command. For example, if the wearable device sends a control command to answer the call, the terminal performs the operation of answering the call. In this way, the function of the wearable device is well improved, and the wearable device and the terminal can work together better and improve the user experience.
  • the method further includes the step of: after obtaining the optical signal generated by the action information of the light sensing module, the step further includes: step, during a certain period of time, counting the signal generated by the motion information of the light sensing module; The generated signal within the time period identifies the current action of the user; determines whether the action satisfies the preset threshold; if satisfied, performs a prompt operation on the user.
  • the specific execution of the prompting operation to the user includes: performing a prompting operation on the user by itself; and/or generating a control instruction of the prompting operation, and transmitting the control instruction to the terminal to cause the terminal to perform the prompting operation.
  • the specific prompting operation includes at least one of ringing, shaking, picture display, and light blinking.
  • the terminal is a mobile terminal and the wearable device is an example of a smart watch.
  • the specific description of the invention is not limited herein.
  • the present invention is an embodiment for performing a corresponding action on a mobile terminal or a smart watch by recognizing a signal change of the photo-sensing module to further determine user behavior. For example, when the user is in some special state, such as fainting and falling asleep, if the wrist does not move for a long time, the photoelectric sensing module will receive the reflected light for a long time.
  • the smart watch first determines whether the current time is the normal sleep time of the user, and if not, determines that the user may be in a state of fainting or other need to wake up, then the user is Remind.
  • the smart watch when the user wearing the smart watch continues to tap the keyboard or write at the desk, the signal generated by the photoelectric sensing mechanism under the smart watch conforms to a certain judgment condition (for example, if the case has been continued for two hours), the smart watch automatically pops up a prompt, Remind users to pay attention to rest.
  • a certain judgment condition for example, if the case has been continued for two hours
  • the method further includes the steps of: determining whether the current action of the user is changed, and if not changing, performing a warning operation on the user.
  • the specific warning operations include at least one of ringing, shaking, picture display, light flashing, dialing a preset emergency call, issuing preset emergency information, and an alarm.
  • the ringtone, vibration, picture display and light flicker should be stronger than the ringing, vibration, picture display and light flicker in the prompt operation. Since the user may not notice the prompt when prompted to operate, then it is stronger. The ringing, vibration, picture display and light flashing to draw the user's attention. In order to avoid special situations, such as the user fainting at this time, the user can automatically dial the preset emergency call, issue preset emergency information and alarms, etc., so as to protect the user's safety.
  • the embodiment further provides a method for controlling a terminal by the wearable device, first establishing a connection with the wearable device, the wearable device is provided with a light sensing module; then receiving a control instruction of the wearable device, and executing the control instruction Corresponding operation.
  • the performing the operation corresponding to the control instruction includes: acquiring a current interface scenario; and executing a control instruction corresponding to the interface scenario according to the interface scenario.
  • the smart watch can be used to control various functions of the mobile terminal, such as lock screen unlocking, photographing, recording, music playing, and the like.
  • various functions of the mobile terminal such as lock screen unlocking, photographing, recording, music playing, and the like.
  • control instructions related to the movie are executed, such as pause, fast forward, and replay.
  • the mobile terminal receives the sliding signal from the smart watch through the Bluetooth or wifi connection when inputting the interface, the sliding path is recognized as inputting handwriting input, such as text, drawing, and the like.
  • the mobile terminal receives a specific 0-1 pulse signal from the smart watch through a Bluetooth or wifi connection on the lock screen or the black screen interface, the unlocking or lighting screen action is performed.
  • the mobile terminal When the mobile terminal is in the incoming call interface, it recognizes the signals generated by the photoelectric sensing mechanism on the smart watch, and performs different actions such as answering, rejecting, and replying to the short message.
  • the mobile terminal When the mobile terminal is in the photographic interface, various signals are performed by recognizing signals generated by the photoelectric sensing mechanism on the smart watch.
  • the method for controlling the terminal in the wearable device of the embodiment in which the terminal is an intelligent terminal, the wearable device is a smart watch or a wristband, and the light sensing module is a light sensing mechanism in this embodiment.
  • the caller responds by the photoelectric sensing mechanism of the smart watch.
  • the user can directly operate the incoming call on the smart terminal under the idea of the present invention, or can use the photoelectric sensing mechanism by the method of the present invention.
  • a control signal is generated on the smart watch or the wristband, and the control signal is transmitted to the mobile terminal via Bluetooth or wifi, so that the mobile terminal responds to the incoming call control.
  • the specific process is shown in Figure 3:
  • Step S201 preparing
  • Step S202 The terminal has an incoming call; at this time, if the connection with the Bluetooth or wifi of the smart watch is established, the instruction generated by the user action sensed by the photoelectric sensing device on the smart watch is acquired.
  • Step S203 Acquire motion information of the photoelectric sensing device on the smart watch through Bluetooth or wif;
  • Step S204 the smart watch slides to the right, generates a control command for answering the incoming call in the hands-free manner in the smart watch, and sends it to the mobile terminal, then proceeds to step S205, otherwise proceeds to step S206;
  • Step S205 after the mobile terminal acquires the control instruction, directly implementing the instruction according to the instruction, Answer the call in a hands-free manner;
  • Step S206 the smart watch slides to the left, generates a control command for rejecting the incoming call inside the smart watch, and sends it to the mobile terminal, then proceeds to step S207, otherwise proceeds to step S208;
  • Step S207 after obtaining the control instruction, the mobile terminal directly implements according to the instruction, and automatically rejects the incoming call;
  • Step S208 the smart watch continuously rises and falls, generates a control instruction for rejecting the incoming call and replying to the preset short message inside the smart watch, and sends the control command to the mobile terminal, then proceeds to step S209, otherwise proceeds to step S210;
  • Step S209 after obtaining the control instruction, the mobile terminal directly implements according to the instruction, rejects the incoming call and returns the preset short message;
  • Step S210 the incoming call has ended, if yes, proceed to step S211, otherwise proceed to step S203;
  • the method for controlling a terminal by the wearable device in this embodiment, in the embodiment of the present invention, is an embodiment of performing a corresponding action on the smart terminal by identifying a signal change of the photo-sensing device, that is, the light-sensing module, to further determine the user behavior.
  • a signal change of the photo-sensing device that is, the light-sensing module
  • Step S302 Acquire a signal of the light sensing device
  • Step S303 determining whether the user has not moved the hand for a long time, if yes, the process proceeds to step S304; if not, the process proceeds to step S302.
  • the photoelectric sensing device will receive the reflected light for a long time.
  • the smart watch or the wristband first determines whether the current time is the normal sleep time of the user, and if not, judges that the user may be in a state of fainting or other need to wake up, and then reminds the user through the mobile terminal or itself.
  • Step S304 determining whether the current sleep time, if yes, proceed to step S308; if not, proceed to step S305;
  • Step S305 Perform ringtones and screen prompts; here is only one type of prompting operation, and other prompting operations in the above embodiments may also be adopted.
  • Step S306 determining whether the user has reached the hand, if yes, proceeding to step S308; if not, proceeding to step S308;
  • Step S307 Dial the preset number and leave a message, and then proceed to step S308.
  • the photoelectric sensing device still does not receive any action of the user, and further controls the mobile terminal to dial the preset number and give a preset message, implement an alarm, ask for help or notify relatives and friends, and the like. Avoid user accidents, such as fainting.
  • Step S308 End.
  • the embodiment provides a wearable device 401.
  • the device includes a light sensing module 4011, a connection module 4012, and a control module 4013.
  • the setting module is configured to set the light sensing module 4011.
  • the connection module 4012 is configured to be connected to the terminal.
  • the control module 4013 is configured to acquire an optical signal generated by the action information of the light sensing module 4011, generate a control command according to the optical signal, and send the control command to the terminal 402, where the control command is used to control the terminal 402 to perform a corresponding operation.
  • the light sensing module 4011 can be implemented by a light sensor, and the connection module 4012 and the control module 4013 can pass through a central processing unit (CPU), a digital signal processor in the wearable device. (Digital Signal Processor, DSP) or Field-Programmable Gate Array (FPGA) implementation.
  • CPU central processing unit
  • DSP Digital Signal Processor
  • FPGA Field-Programmable Gate Array
  • the optical signal generated by the motion information includes a sliding signal generated by the sliding of the light sensing module 4011 on the contact surface, and/or the light sensing module 4011 receives the pulse signal generated by the light reflection of the contact surface.
  • control module 4013 is further configured to generate a control instruction according to a trajectory of the sliding signal; and/or generate a control instruction according to a tempo of the pulse signal.
  • the trajectory of the sliding signal includes at least one of a distance, a direction, and a speed of the sliding information trajectory; the tempo of the pulse signal includes an amplitude and/or a frequency of the pulse signal.
  • control module 4013 is further configured to acquire a current interface scenario of the terminal 402, and generate a control instruction corresponding to the interface scenario according to the interface scenario.
  • the embodiment further provides another wearable device 401.
  • the method further includes a prompting module 4014.
  • the prompting module 4014 is configured to acquire the optical signal generated by the motion information of the light sensing module 4011 for a certain period of time.
  • the signal generated by the action information of the light sensing module 4011 is calculated; the current action of the user is identified according to the generated signal in the time period; whether the action meets the preset threshold is determined; if yes, the prompting operation to the user is performed.
  • the prompting module 4014 can be implemented by a CPU, a DSP or an FPGA in the wearable device.
  • the prompting module 4014 is further configured to perform a prompting operation on the user by itself; and/or a control instruction to produce the prompting operation, and send the control command to the terminal 402 to cause the terminal 402 to perform the prompting operation.
  • the prompting operation includes at least one of ringing, shaking, picture display, and light.
  • the embodiment further provides another wearable device 401.
  • the method further includes an alerting module 4015.
  • the alerting module 4015 is configured to determine whether the current action of the user is changed after performing the prompting operation on the user. Change and perform a warning action to the user.
  • the alert module 4015 can be implemented by a CPU, a DSP, or an FPGA in the wearable device.
  • the alert operation includes ringing, vibration, screen display, light flashing, and dialing presets.
  • An emergency call at least one of a preset emergency message and an alarm.
  • the present embodiment provides a terminal 402, as shown in FIG. 8, including an establishing module 4021 and an executing module 4022: an establishing module 4021 configured to establish a connection with the wearable device 401, the wearable device 401 is provided with a light sensing module 4011; The module 4022 is configured to receive a control instruction of the wearable device 401 and perform an operation corresponding to the control instruction.
  • the executing module 4022 is further configured to acquire a current interface scenario, and execute a control instruction corresponding to the interface scenario according to the interface scenario.
  • the embodiment of the present invention provides a system for controlling the terminal 402 of the wearable device 401.
  • the device includes a wearable device 401 and a terminal 402.
  • the light sensing module 4011 is disposed on the wearable device 401.
  • the wearable device 401 and the terminal 402 are provided. Establishing a connection; the wearable device 401 acquires an optical signal generated by the action information of the light sensing module 4011, generates a control command according to the optical signal, sends the control command to the terminal 402, and the terminal 402 receives the control command and performs an operation corresponding to the control command.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention can take the form of a hardware embodiment, a software embodiment, or a combination of software and hardware. Moreover, the invention can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage and optical storage, etc.) including computer usable program code.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.

Abstract

一种可穿戴设备控制终端的方法和系统、终端及可穿戴设备,该方法包括:先设置光感应模块,与终端建立连接,然后获取光感应模块的动作信息产生的光信号,根据光信号产生控制指令,最后将控制指令发送给终端,控制指令用于控制终端执行相应的操作。

Description

可穿戴设备控制终端的方法和系统、终端及可穿戴设备 技术领域
本发明涉及通信领域,特别涉及一种可穿戴设备控制终端的方法和系统、终端及可穿戴设备。
背景技术
可穿戴设备在近年来飞速发展,特别是智能手表和智能手环快速的进入到了人们的日常使用中。人们在佩戴手表时进行书写、打字或者其他桌面上的操作,手表表带下部分处的表带总会触碰到桌面,产生各种滑动,摩擦或碰撞动作。
而同时,智能手表和手环的日常使用中有两个不便:
(1)由于屏幕大小和输入按键的数量限制,其输入方法如何更加的方便和人性化是一个急需解决或需要提升的问题;
(2)智能手表/手环虽然已经能够方便的与智能手机通过蓝牙,wifi等方式进行互联,但是如何协同工作,相互操作却一直缺乏比较好的解决实例。
如何提高可穿戴设备对其连接的终端的控制,提高可穿戴设备与终端的协同工作,增强可穿戴设备的功能是目前急需解决的问题。
发明内容
为解决现有存在的技术问题,本发明实施例提供了一种可穿戴设备控制终端的方法和系统、终端及可穿戴设备。
本发明实施例提供一种可穿戴设备控制终端的方法,包括:
设置光感应模块;
与终端建立连接;
获取所述光感应模块的动作信息产生的光信号;
根据所述光信号产生控制指令;
将所述控制指令发送给所述终端,所述控制指令用于控制所述终端执行相应的操作。
在本发明一种实施例中,所述动作信息产生的光信号包括所述光感应模块在接触面滑动产生的滑动信号,和/或所述光感应模块接收接触面光反射产生的脉冲信号。
在本发明一种实施例中,所述根据所述光信号产生控制指令包括:根据滑动信号的轨迹产生控制指令;和/或根据脉冲信号的节奏产生控制指令。
在本发明一种实施例中,所述滑动信号的轨迹包括所述滑动信息轨迹的距离、方向和速度中的至少一种;所述脉冲信号的节奏包括所述脉冲信号的幅度和/或频率。
在本发明一种实施例中,在所述获取所述光感应模块的动作信息产生的光信号后还包括:在设定时间段内,统计所述光感应模块的动作信息产生的信号;根据在该时间段内产生的信号识别用户当前的动作;判断所述动作是否满足预设阈值;如满足,则执行对用户的提示操作。
在本发明一种实施例中,所述执行对用户的提示操作包括:通过自身执行对用户的提示操作;和/或生产提示操作的控制指令,将所述控制指令发送给所述终端使所述终端执行提示操作。
在本发明一种实施例中,所述提示操作包括铃声、震动、画面显示和光闪烁中的至少一种。
在本发明一种实施例中,在执行对用户的提示操作之后,还包括步骤:判断用户当前的动作是否改变,如没改变,执行对用户的警示操作。
在本发明一种实施例中,所述警示操作包括铃声、震动、画面显示、 光闪烁、拨打预设紧急电话、发出预设紧急信息和报警中的至少一种。
为解决上述问题,本发明实施例还提供一种可穿戴设备控制终端的方法,包括:
与可穿戴设备建立连接,所述可穿戴设备设置有光感应模块;
接收所述可穿戴设备的控制指令,执行所述控制指令对应的操作。
为解决上述问题,本发明实施例还提供一种可穿戴设备控制终端的方法,所述执行所述控制指令对应的操作包括:
获取当前界面场景;根据所述界面场景执行与所述界面场景对应的控制指令。
为解决上述问题,本发明实施例还提供一种可穿戴设备控制终端的方法,其包括:
在可穿戴设备上设置光感应模块;
所述可穿戴设备与终端建立连接;
所述可穿戴设备获取所述光感应模块的动作信息产生的光信号,根据所述光信号产生控制指令;将所述控制指令发送给所述终端;
所述终端接收所述控制指令,并执行所述控制指令对应的操作。
为解决上述问题,本发明实施例还提供一种可穿戴设备,包括光感应模块、连接模块和控制模块:
所述设置模块,配置为设置光感应模块;
所述连接模块,配置为与终端建立连接;
所述控制模块,配置为获取所述光感应模块的动作信息产生的光信号;根据所述光信号产生控制指令;将所述控制指令发送给所述终端,所述控制指令用于控制所述终端执行相应的操作。
在本发明一种实施例中,所述动作信息产生的光信号包括所述光感应模块在接触面滑动产生的滑动信号,和/或所述光感应模块接收接触面光反 射产生的脉冲信号。
在本发明一种实施例中,所述根据所述光信号产生控制指令包括:根据滑动信号的轨迹产生控制指令;和/或根据脉冲信号的节奏产生控制指令。
在本发明一种实施例中,所述滑动信号的轨迹包括所述滑动信息轨迹的距离、方向和速度中的至少一种;所述脉冲信号的节奏包括所述脉冲信号的幅度和/或频率。
在本发明一种实施例中,还包括提示模块,所述提示模块,配置为在所述获取所述光感应模块的动作信息产生的光信号后,在设定时间段内,统计所述光感应模块的动作信息产生的信号;根据在该时间段内产生的信号识别用户当前的动作;判断所述动作是否满足预设阈值;如满足,则执行对用户的提示操作。
在本发明一种实施例中,所述提示模块,还配置为通过自身执行对用户的提示操作;和/或生产提示操作的控制指令,将所述控制指令发送给所述终端使所述终端执行提示操作。
在本发明一种实施例中,所述提示操作包括铃声、震动、画面显示和光中的至少一种。
在本发明一种实施例中,还包括警示模块,所述警示模块,配置为在执行对用户的提示操作之后,判断用户当前的动作是否改变,如没改变,执行对用户的警示操作。
在本发明一种实施例中,所述警示操作包括铃声、震动、画面显示、光闪烁、拨打预设紧急电话、发出预设紧急信息和报警中的至少一种。
为解决上述问题,本发明实施例还提供一种终端,包括建立模块和执行模块:
所述建立模块,配置为与可穿戴设备建立连接,所述可穿戴设备设置有光感应模块;
所述执行模块,配置为接收所述可穿戴设备的控制指令,执行所述控制指令对应的操作。
在本发明一种实施例中,所述执行模块,还配置为获取当前界面场景;根据所述界面场景执行与所述界面场景对应的控制指令。
为解决上述问题,本发明实施例还提供一种可穿戴设备控制终端的系统,包括可穿戴设备和终端:
在所述可穿戴设备上设置光感应模块;
所述可穿戴设备与所述终端建立连接;
所述可穿戴设备获取所述光感应模块的动作信息产生的光信号,根据所述光信号产生控制指令;将所述控制指令发送给所述终端;
所述终端接收所述控制指令,并执行所述控制指令对应的操作。
本发明实施例的有益效果是:
本发明实施例提供一种可穿戴设备控制终端的方法和系统、终端及可穿戴设备,本发明实施例提供的可穿戴设备控制终端的方法具体为:先设置光感应模块,与终端建立连接,然后获取光感应模块的动作信息产生的光信号,根据光信号产生控制指令,最后将控制指令发送给终端,控制指令用于控制终端执行相应的操作。与现有技术相比,通过光感应模块的动作信息产生的光信号来产生控制指令,并将控制指令发送给终端,终端仅需要根据控制指令执行相应的操作就行,这样提高可穿戴设备对其连接的终端的控制,提高可穿戴设备与终端的协同工作,增强可穿戴设备的功能,会给用户带来便捷与较好的操作体验。
附图说明
在附图(其不一定是按比例绘制的)中,相似的附图标记可在不同的视图中描述相似的部件。具有不同字母后缀的相似附图标记可表示相似部件的不同示例。附图以示例而非限制的方式大体示出了本文中所讨论的各 个实施例。
图1为现有的光感应模块侧面截图;
图2为本发明实施例一提供的可穿戴设备控制终端的方法流程示意图;
图3为本发明实施例二提供的可穿戴设备控制终端的方法流程示意图;
图4为本发明实施例三提供的可穿戴设备控制终端的方法流程示意图;
图5为本发明实施例四提供的可穿戴设备第一种结构示意图;
图6为本发明实施例四提供的可穿戴设备第二种结构示意图;
图7为本发明实施例四提供的可穿戴设备第三种结构示意图;
图8为本发明实施例四提供的终端结构示意图;
图9为本发明实施例四提供的可穿戴设备控制终端的系统结构示意图。
具体实施方式
实施例一
目前,光电鼠标的技术已经发展的较为成熟,光电鼠标中实现位移检测功能的核心模块是光电感应模块。光电感应模块由照明光源,透镜组件,光学传感器以及控制芯片组成。如图一所示,LED光源发射的光线经过下方的平板反射后,由光学传感器接收。当下方的位置移动,则光学传感器得到的底部平板反射后的图像也会相应变化,控制芯片通过计算此种变化来捕捉动作。另一方面,当下方的平板离开后,光学传感器便无法接收到来自LED发射的光线,所以该光电感应模块必须在紧贴着平面的情况下才能进行工作。本申请的可穿戴设备,结合现有的光感应增强可穿戴设备对终端的控制,增强可穿戴设备的功能,给用户带来便捷与较好的操作体验。为了更好的说明本发明,下面进行详细说明。
本实施例的可穿戴设备控制终端的方法,如图2所示,包括以下步骤:
步骤S101:设置光感应模块;
在该步骤中,将光感应模块设置在可穿戴设备中,具体的可以设置在 可穿戴设置的最下方,当然距离最下方有一定偏差的位置都可以。这里的可穿戴设备包括智能手表和智能手环等其他用户常用的可穿戴的设置。
步骤S102:与终端建立连接;
在该步骤中,可穿戴设备通过蓝牙或wifi等方式连接与终端建立连接,这里的终端包括手机和平板电脑等以及其他常用的移动终端。
步骤S103:获取光感应模块的动作信息产生的光信号;
在该步骤中,可穿戴设备的光感应模块即可根据与接触面的反射进行工作。当用户手腕向下进行平移,抬起/放下胳膊时,智能手表中的光电感应模块就能够产生不同的信号,进而生成控制指令。具体的,动作信息产生的光信号包括光感应模块在接触面滑动产生的滑动信号,和/或光感应模块接收接触面光反射产生的脉冲信号。
步骤S104:根据光信号产生控制指令;
在该步骤中,根据不同的光信号产生不同的控制指令,根据滑动信号的轨迹产生控制指令;和/或根据脉冲信号的节奏产生控制指令。所述滑动信号的轨迹包括所述滑动信息轨迹的距离、方向和速度中的至少一种;所述脉冲信号的节奏包括所述脉冲信号的幅度和/或频率。这里的滑动信号的轨迹产生控制指令指的是光感应模块与接触面接触,并在接触面进行滑动,此时可以使检测到该位移反射的光信号。这里的脉冲信号的频率产生控制指令指的是光感应模块接触或离开接触面,会收到或无法收到光反射信号的幅度,在一定时间内,统计并继续接收光反射的次数即离开或接触接触面的次数。例如,设置向左滑动为接电话,向右滑动为挂电话,那么当有来电时,光信号为向左滑动,那么就生成接电话的控制指令。当然具体的滑动方向对应的控制指令可以根据用户进行自定义设置。可以向左移动3厘米为接听电话,向左移动2厘米为免提,当然具体的滑动距离以及方向对应的控制指令可以根据用户进行自定义设置。可以设置为滑动速度为2 厘米每秒时,为接听电话,滑动轨迹为5厘米每秒时为拒绝电话等,当然具体的滑动速度对应的控制指令可以根据用户进行自定义设置。这里的节奏可以为类似音乐节奏。设置在5秒内连续离开或接触接触面3次为解锁控制指令即5秒内产生了3次脉冲信号,那么为解锁。当然,这里具体脉冲信号的频率对应的控制指令可以根据用户需求自定义设置。
步骤S105:将控制指令发送给终端,控制指令用于控制终端执行相应的操作。
在该步骤中,终端收到可穿戴设备发送的控制指令,就根据该控制指令执行相应的操作。例如,可穿戴设备发送的为接电话的控制指令,那么终端就执行接电话的操作。这样,很好的提高了可穿戴设备的功能,让可穿戴设备与终端之间更好的协同工作,提高用户体验度。
一个实施例中,在上述步骤S103后还包括步骤即在获取光感应模块的动作信息产生的光信号后还包括步骤在一定时间段内,统计光感应模块的动作信息产生的信号;根据在该时间段内的产生的信号识别用户当前的动作;判断动作是否满足预设阈值;如满足,则执行对用户的提示操作。具体的执行对用户的提示操作包括:通过自身执行对用户的提示操作;和/或生产提示操作的控制指令,将控制指令发送给终端使终端执行提示操作。具体的提示操作包括铃声、震动、画面显示和光闪烁中的至少一种。例如,以终端为移动终端和可穿戴设备为智能手表为例,这里仅是为体现发明思路进行具体说明,并不构成限制。本发明通过对光电感应模块的信号变化进行识别,从而进一步判断用户行为,在移动终端或智能手表上进行相应动作的一个实施例。如当用户处于一些特殊的状态,如晕倒,睡着时,如手腕向下长时间未移动,则光电感应模块就会接收到长时间不变的反射光线。(这里需要说明一点,在用户的手腕并非严格向下的情况下,只要光电感应模块与下方平面之间的距离不大,使LED的反射光源仍然能够有部分 通过光学透镜被图像传感器获取,本发明方式就能够正常工作。但在光电感应模块距离下方平面较远或角度过大时则不行)。当此状态的持续时间超过一定阈值时,智能手表首先判断当前时间是否是用户正常的睡眠时间,如果否,则判断用户可能处于晕倒或其它需要唤醒的状态,则通过移动终端或自身对用户进行提醒。如当佩戴智能手表的用户由于持续敲击键盘或伏案写作,使智能手表下方的光电感应机构产生的信号符合某一判断条件(如已持续伏案两个小时)时,智能手表上自动弹出提示,提醒用户注意休息。
一个实施例中,在执行对用户的提示操作之后,还包括步骤:判断用户当前的动作是否改变,如没改变,执行对用户的警示操作。具体的警示操作包括铃声、震动、画面显示、光闪烁、拨打预设紧急电话、发出预设紧急信息和报警中的至少一种。应该理解为这里的铃声、震动、画面显示和光闪烁的程度应该比提示操作中的铃声、震动、画面显示和光闪烁强烈些,由于可能用户在提示操作时,没有注意到提示,那么就通过强烈些的铃声、震动、画面显示和光闪烁来引起用户的注意。为了避免特殊情况,比如用户此时晕倒,那么可以自动帮用户拨打预设紧急电话、发出预设紧急信息和报警等,这样可以保障用户的安全。
本实施例还提供一种可穿戴设备控制终端的方法,先与可穿戴设备建立连接,所述可穿戴设备设置有光感应模块;然后接收所述可穿戴设备的控制指令,执行所述控制指令对应的操作。具体的,执行所述控制指令对应的操作包括:获取当前界面场景;根据所述界面场景执行与所述界面场景对应的控制指令。以终端为移动终端和可穿戴设备为智能手表为例,这里仅是为体现发明思路进行具体说明,并不构成限制。以终端为移动终端和可穿戴设备为智能手表为例,在本发明的主体思想下,可以利用智能手表控制移动终端的诸多功能,例如锁屏解锁,拍照,录音,音乐播放等。 例如,当前终端界面为放电影,那么就执行与放电影相关的控制指令,如暂停、快进和重播等。移动终端在输入界面时,且通过蓝牙或wifi连接接收到来自智能手表的滑动信号时,将滑动路径识别为输入手写输入,如文字,绘图等。移动终端在锁屏或黑屏界面时,通过蓝牙或wifi连接接收到来自智能手表的特定0-1脉冲信号时,执行解锁或点亮屏幕动作。移动终端在来电界面时,通过对智能手表上的光电感应机构所产生的信号进行识别,执行接听,拒绝,回复短信等不同动作。移动终端在照相界面时,通过对智能手表上的光电感应机构所产生的信号进行识别,执行各种不同的拍照动作。
实施例二
本实施例的可穿戴设备控制终端的方法,该实施例中以终端为智能终端,可穿戴设备为智能手表或手环为例,并在这里的光感应模块为光感应机构该实施例中是通过智能手表的光电感应机构进行来电响应,当智能终端处于来电状态时,在本发明的思路下,用户可以直接在智能终端上对来电进行操作,也可以利用本发明的方法通过光电感应机构在智能手表或手环上产生控制信号,并将该控制信号通过蓝牙或wifi传递给移动终端,使移动终端对来电进行控制的响应。具体过程如图3所示:
步骤S201:准备;
步骤S202:终端有来电;此时如与智能手表的蓝牙或wifi连接建立,则获取智能手表上的光电感应器件感应到的用户动作所产生的指令
步骤S203:通过蓝牙或wif获取智能手表上的光电感应器件的动作信息;
步骤S204:智能手表向右滑动,在智能手表内部生成以免提方式接听来电的控制指令,发送给移动终端,则进入步骤S205,否则进入步骤S206;
步骤S205:移动终端获取该控制指令后,直接按照指令进行实施,自 动以免提方式接听该来电;
步骤S206:智能手表向左滑动,在智能手表内部生成拒绝来电的控制指令,发送给移动终端,则进入步骤S207,否则进入步骤S208;
步骤S207:移动终端获取该控制指令后,直接按照指令进行实施,自动拒绝该来电;
步骤S208:智能手表连续抬起落下,在智能手表内部生成拒绝来电并回复预置短信的控制指令,发送给移动终端,则进入步骤S209,否则进入步骤S210;
步骤S209:移动终端获取该控制指令后,直接按照指令进行实施,拒绝来电并回复预置短信;
步骤S210:来电已经结束,如是则进入步骤S211,否则进入步骤S203;
步骤S211:结束。
实施例三
本实施例的可穿戴设备控制终端的方法,本发明实施例通过对光电感应器件即光感应模块的信号变化进行识别,从而进一步判断用户行为,在智能终端上进行相应动作的一个实施例。如图4所示:
步骤S301:准备;
步骤S302:获取光感应器件的信号;
步骤S303:判断用户是否长时间没移动手部,如是进入步骤S304;如否,进入步骤S302。当用户处于一些特殊的状态,如晕倒,睡着时,如手腕向下长时间未移动,的光电感应器件就会接收到长时间不变的反射光线。(这里需要说明一点,在用户的手腕并非严格向下的情况下,只要光电感应器件与下方平面之间的距离不大,使LED的反射光源仍然能够有部分通过光学透镜被图像传感器获取,本发明方式就能够正常工作。但在光电感应器件距离下方平面较远或角度过大时则不行)。当此状态的持续时间超过 一定阈值时,智能手表或手环首先判断当前时间是否是用户正常的睡眠时间,如果否,则判断用户可能处于晕倒或其它需要唤醒的状态,则通过移动终端或自身对用户进行提醒。
步骤S304:判断当前是否为睡眠时间,如是,则进入步骤S308;如否,则进入步骤S305;
步骤S305:进行铃声和画面提示;这里仅仅是进行提示操作的一种,还可以采用上述实施例中的其他提示操作的方式。
步骤S306:判断用户是否已到手部,如是,则进入步骤S308;如否,则进入步骤S308;
步骤S307:拨打预置号码并进行留言,完成后进入步骤S308。这里仅仅是进行警示操作的一种,还可以采用上述实施例中的其他警示操作的方式。当提示操作后,光电感应器件仍未接收到用户的任何动作时,则进一步控制移动终端拨打预置号码并给出预置留言,实施报警,求助或通知亲友等动作。避免用户出现意外情况,比如晕倒。
步骤S308:结束。
实施例四
本实施例提供一种可穿戴设备401,如图5所示,包括光感应模块4011、连接模块4012和控制模块4013:设置模块,配置为设置光感应模块4011;连接模块4012,配置为与终端402建立连接;控制模块4013,配置为获取光感应模块4011的动作信息产生的光信号;根据光信号产生控制指令;将控制指令发送给终端402,控制指令用于控制终端402执行相应的操作。
在实际应用时,所述光感应模块4011可通过光传感器实现,所述连接模块4012和控制模块4013可通过所述可穿戴设备中的中央处理器(Central Processing Unit,CPU)、数字信号处理器(Digital Signal Processor,DSP)或可编程逻辑阵列(Field-Programmable Gate Array,FPGA)实现。
具体的,动作信息产生的光信号包括光感应模块4011在接触面滑动产生的滑动信号,和/或光感应模块4011接收接触面光反射产生的脉冲信号。
具体的,控制模块4013,还配置为根据滑动信号的轨迹产生控制指令;和/或根据脉冲信号的节奏产生控制指令。具体的,滑动信号的轨迹包括滑动信息轨迹的距离、方向和速度中的至少一种;脉冲信号的节奏包括脉冲信号的幅度和/或频率。
具体的,控制模块4013,还配置为获取终端402的当前界面场景;根据界面场景产生与界面场景对应的控制指令。
本实施例还提供另一种可穿戴设备401,如图6所示,还包括提示模块4014,提示模块4014,配置为在获取光感应模块4011的动作信息产生的光信号后,在一定时间段内,统计光感应模块4011的动作信息产生的信号;根据在该时间段内的产生的信号识别用户当前的动作;判断动作是否满足预设阈值;如满足,则执行对用户的提示操作。
所述提示模块4014可通过所述可穿戴设备中的CPU、DSP或FPGA实现。
具体的,提示模块4014,还配置为通过自身执行对用户的提示操作;和/或生产提示操作的控制指令,将控制指令发送给终端402使终端402执行提示操作。
具体的,提示操作包括铃声、震动、画面显示和光中的至少一种。
本实施例还提供另一种可穿戴设备401,如图7所示,还包括警示模块4015,警示模块4015,配置为在执行对用户的提示操作之后,判断用户当前的动作是否改变,如没改变,执行对用户的警示操作。
所述警示模块4015可通过所述可穿戴设备中的CPU、DSP或FPGA实现。
具体的,警示操作包括铃声、震动、画面显示、光闪烁、拨打预设紧 急电话、发出预设紧急信息和报警中的至少一种。
本实施例提供一种终端402,如图8所示,包括建立模块4021和执行模块4022:建立模块4021,配置为与可穿戴设备401建立连接,可穿戴设备401设置有光感应模块4011;执行模块4022,配置为接收可穿戴设备401的控制指令,执行控制指令对应的操作。
具体的,执行模块4022,还配置为获取当前界面场景,根据界面场景执行与界面场景对应的控制指令。
本实施例提供一种可穿戴设备401控制终端402的系统,如图9所示,包括可穿戴设备401和终端402:在可穿戴设备401上设置光感应模块4011;可穿戴设备401与终端402建立连接;可穿戴设备401获取光感应模块4011的动作信息产生的光信号,根据光信号产生控制指令;将控制指令发送给终端402;终端402接收控制指令,并执行控制指令对应的操作。
本领域内的技术人员应明白,本发明的实施例可提供为方法、系统、或计算机程序产品。因此,本发明可采用硬件实施例、软件实施例、或结合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器和光学存储器等)上实施的计算机程序产品的形式。
本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
以上所述,仅为本发明的较佳实施例而已,并非用于限定本发明的保护范围。

Claims (18)

  1. 一种可穿戴设备控制终端的方法,该方法包括:
    设置光感应模块;
    与终端建立连接;
    获取所述光感应模块的动作信息产生的光信号;
    根据所述光信号产生控制指令;
    将所述控制指令发送给所述终端,所述控制指令用于控制所述终端执行相应的操作。
  2. 如权利要求1所述的可穿戴设备控制终端的方法,其中,所述动作信息产生的光信号包括:
    所述光感应模块在接触面滑动产生的滑动信号,和/或所述光感应模块接收接触面光反射产生的脉冲信号。
  3. 如权利要求2所述的可穿戴设备控制终端的方法,其中,所述根据所述光信号产生控制指令包括:
    根据滑动信号的轨迹产生控制指令;和/或根据脉冲信号的节奏产生控制指令。
  4. 如权利要求3所述的可穿戴设备控制终端的方法,其中,
    所述滑动信号的轨迹包括:所述滑动信息轨迹的距离、方向和速度中的至少一种;
    所述脉冲信号的节奏包括:所述脉冲信号的幅度和/或频率。
  5. 如权利要求1-4中任一项所述的可穿戴设备控制终端的方法,其中,在所述获取所述光感应模块的动作信息产生的光信号后,该方法还包括:
    在设定时间段内,统计所述光感应模块的动作信息产生的信号;根据在该时间段内产生的信号识别用户当前的动作;判断所述动作是否满足预设阈值;如满足,则执行对用户的提示操作。
  6. 如权利要求5所述的可穿戴设备控制终端的方法,其中,所述执行对用户的提示操作包括:
    通过自身执行对用户的提示操作;和/或生产提示操作的控制指令,将所述控制指令发送给所述终端使所述终端执行提示操作。
  7. 如权利要求6所述的可穿戴设备控制终端的方法,其中,所述提示操作包括:铃声、震动、画面显示和光闪烁中的至少一种。
  8. 如权利要求7所述的终端的可穿戴设备控制终端的方法,其中,在执行对用户的提示操作之后,该方法还包括步骤:
    判断用户当前的动作是否改变,如没改变,执行对用户的警示操作。
  9. 如权利要求8所述的可穿戴设备控制终端的方法,其中,所述警示操作包括:铃声、震动、画面显示、光闪烁、拨打预设紧急电话、发出预设紧急信息和报警中的至少一种。
  10. 一种可穿戴设备控制终端的方法,该方法包括:
    与可穿戴设备建立连接,所述可穿戴设备设置有光感应模块;
    接收所述可穿戴设备的控制指令,执行与所述控制指令对应的操作。
  11. 如权利要求10所述的可穿戴设备控制终端的方法,其中,所述执行与所述控制指令对应的操作包括:
    获取当前界面场景;根据所述界面场景执行与所述界面场景对应的控制指令。
  12. 一种可穿戴设备控制终端的方法,该方法包括:
    在可穿戴设备上设置光感应模块;
    所述可穿戴设备与终端建立连接;
    所述可穿戴设备获取所述光感应模块的动作信息产生的光信号,根据所述光信号产生控制指令;将所述控制指令发送给所述终端;
    所述终端接收所述控制指令,并执行与所述控制指令对应的操作。
  13. 一种可穿戴设备,所述可穿戴设备包括:光感应模块、连接模块和控制模块:
    所述设置模块,配置为设置光感应模块;
    所述连接模块,配置为与终端建立连接;
    所述控制模块,配置为获取所述光感应模块的动作信息产生的光信号;根据所述光信号产生控制指令;将所述控制指令发送给所述终端,所述控制指令用于控制所述终端执行相应的操作。
  14. 如权利要求13所述的可穿戴设备,其中,所述根据所述光信号产生控制指令包括:
    根据滑动信号的轨迹产生控制指令;和/或根据脉冲信号的节奏产生控制指令。
  15. 如权利要求14所述的可穿戴设备,其中,所述滑动信号的轨迹包括:所述滑动信息轨迹的距离、方向和速度中的至少一种;
    所述脉冲信号的节奏包括所述脉冲信号的幅度和/或频率。
  16. 如权利要求13-15中任一项所述的可穿戴设备,其中,该设备还包括:提示模块;
    所述提示模块,配置为在所述获取所述光感应模块的动作信息产生的光信号后,在设定时间段内,统计所述光感应模块的动作信息产生的信号;根据在该时间段内产生的信号识别用户当前的动作;判断所述动作是否满足预设阈值;如满足,则执行对用户的提示操作。
  17. 如权利要求16所述的可穿戴设备,其中,所述提示模块,还配置为通过自身执行对用户的提示操作;和/或生产提示操作的控制指令,将所述控制指令发送给所述终端使所述终端执行提示操作。
  18. 如权利要求17所述的终端的可穿戴设备,其中,该设备还包括:警示模块;
    所述警示模块,配置为在执行对用户的提示操作之后,判断用户当前的动作是否改变,如没改变,执行对用户的警示操作。
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