WO2017107592A1 - 智能穿戴设备及其应用方法 - Google Patents

智能穿戴设备及其应用方法 Download PDF

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Publication number
WO2017107592A1
WO2017107592A1 PCT/CN2016/099202 CN2016099202W WO2017107592A1 WO 2017107592 A1 WO2017107592 A1 WO 2017107592A1 CN 2016099202 W CN2016099202 W CN 2016099202W WO 2017107592 A1 WO2017107592 A1 WO 2017107592A1
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Prior art keywords
wearable device
smart wearable
control command
motion track
air conditioner
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PCT/CN2016/099202
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English (en)
French (fr)
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侯辰
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珠海格力电器股份有限公司
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Publication of WO2017107592A1 publication Critical patent/WO2017107592A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details 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
    • H04B1/38Transceivers, 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
    • H04B1/3827Portable transceivers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/02Services making use of location information
    • H04W4/029Location-based management or tracking services
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details 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
    • H04B1/38Transceivers, 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
    • H04B1/3827Portable transceivers
    • H04B1/385Transceivers carried on the body, e.g. in helmets
    • H04B2001/3861Transceivers carried on the body, e.g. in helmets carried in a hand or on fingers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L12/00Data switching networks
    • H04L12/28Data switching networks characterised by path configuration, e.g. LAN [Local Area Networks] or WAN [Wide Area Networks]
    • H04L12/2803Home automation networks
    • H04L2012/2847Home automation networks characterised by the type of home appliance used
    • H04L2012/285Generic home appliances, e.g. refrigerators

Definitions

  • the present invention relates to the field of intelligent control technologies, and in particular to a smart wearable device and an application method thereof.
  • a smart wearable device and an application method thereof are provided, which can make the adjustment control of the air conditioner more simple, convenient and easy to operate.
  • a smart wearable device for controlling an air conditioner includes: a motion track sensor for sensing a motion track of the smart wear device; and a processor connected to The motion track sensor receives the motion track sensed by the motion track sensor and analyzes the control command corresponding to the motion track; the transmitting device is connected to the processor, and sends the control command analyzed by the processor to the air conditioner.
  • the smart wearable device further comprises a setting module, the setting module is connected to the processor, and sets a control command corresponding to the motion track.
  • the smart wearable device further includes a storage module for storing the motion track and its corresponding control commands.
  • the smart wearable device further comprises a start-stop module for turning on or off the motion track control mode of the smart wearable device.
  • the smart wearable device further comprises a matching module and a receiving device, the receiving device receives the information of the air conditioner, and the matching module performs communication matching with the air conditioner according to the information received by the receiving device.
  • the motion track sensor is a three-axis acceleration sensor.
  • a method for applying a smart wearable device includes: sensing a motion trajectory of the smart wearable device; analyzing the sensed motion trajectory, determining a control command corresponding to the motion trajectory; and controlling the command Send to the air conditioner.
  • the step of sensing the motion track of the smart wearable device comprises: setting a control command corresponding to each motion track; storing the motion track and a control command corresponding to the motion track.
  • the step of setting the control command corresponding to each motion track comprises: facing the smart wearable device face up, swinging the arm up and down, swinging upwards and swinging slowly downward, and the corresponding control command increases the temperature of the air conditioner by one degree; The lower swing is faster and the swing is slower upwards, and the corresponding control command reduces the air conditioner temperature by one degree.
  • the step of setting the control command corresponding to each motion track comprises: the smart wearable device facing up, rotating the arm clockwise, the corresponding control command is gradually increasing the wind speed level; rotating the arm counterclockwise, the corresponding control command The grade of wind speed is gradually reduced.
  • the step of sensing the motion track of the smart wearable device further comprises: acquiring information of the air conditioner; and performing communication matching according to the information of the air conditioner.
  • the smart wearable device is configured to control an air conditioner, comprising: a motion track sensor for sensing a motion track of the smart wear device; a processor connected to the motion track sensor, and the receiving motion track sensor senses The motion track, and analyze the control command corresponding to the motion track; the transmitting device is connected to the processor, and sends the control command analyzed by the processor to the air conditioner.
  • the smart wearable device senses the motion track of the smart wearable device through the motion track sensor thereon, and then acquires a control command corresponding to the motion track by the processor, and sends the control command to the air conditioner, so that the air conditioner according to the control The command makes parameter adjustments.
  • Control the air conditioner by the smart wearable device only need Knowing the control command corresponding to the motion track of the smart wearable device can be realized without the parameter information on the remote controller and the mobile phone APP, thereby reducing the difficulty of air conditioner adjustment, and it is difficult to adjust the air conditioner due to the influence of vision. It is also difficult to adjust the air conditioner because it does not operate the mobile phone software. It only needs simple gestures to realize the control of the air conditioner. The operation is simpler and more convenient, and can be applied to various groups of people, and the usability is better. The user experience is better, and the user can further enjoy the convenience of the smart home.
  • FIG. 1 is a schematic structural diagram of a smart wearable device according to an embodiment of the present invention.
  • FIG. 2 is a flowchart of an application method of a smart wearable device according to an embodiment of the present invention.
  • a smart wearable device is used for controlling an air conditioner
  • the smart wearable device includes a motion track sensor, a processor and a launching device
  • the motion track sensor is used to sense the smart wearable device.
  • the processor is coupled to the motion track sensor, receives the motion track sensed by the motion track sensor, and analyzes the control command corresponding to the motion track
  • the transmitting device is connected to the processor, and the control command is analyzed by the processor Send to the air conditioner.
  • the smart wearable device senses the motion track of the smart wearable device through the motion track sensor thereon, and then acquires a control command corresponding to the motion track by the processor, and sends the control command to the air conditioner, so that the air conditioner according to the control
  • the command makes parameter adjustments.
  • the air conditioner By controlling the air conditioner by the smart wearable device, it is only necessary to know the control command corresponding to the motion track of the smart wearable device, and the parameter information of the remote control device and the mobile phone APP are not needed, thereby reducing the difficulty of air conditioner adjustment. It is not difficult to adjust the air conditioner due to the influence of vision, nor is it difficult to adjust the air conditioner because it does not operate the mobile phone software. It is only necessary to realize the manipulation of the air conditioner through simple gestures, and the operation is more Simple and convenient, it can be applied to all kinds of people, with better usability and better user experience, which can further enable users to enjoy the convenience of smart home.
  • the smart wearable device further includes a setting module, the setting module is connected to the processor, and the control command corresponding to the motion track is set.
  • the setting module Through the setting module, the motion track and its corresponding control commands can be set according to the user's needs, so that the user can compile the motion track of the air conditioning operation control according to his own preferences, and improve the user's experience of air conditioning control.
  • the user can face the smart wearable device face up, swing the arm up and down, swing up and swing slowly, and set a control command that increases the temperature of the air conditioner by one degree, and the smart wearable device faces up and swings up and down.
  • the arm swings down and swings slowly, setting the control command to reduce the temperature of the air conditioner by one degree.
  • You can also put the smart wearable device face up, swing the arm up and down, swing up and swing slowly.
  • the other motion trajectories are associated with the temperature control of the air conditioner, so that the temperature regulation of the air conditioner can be conveniently performed by performing the above-described motion trajectory.
  • the user can face the smart wearable device face up, rotate the arm clockwise, and set the control command to gradually increase the wind speed level; at the same time, the user can turn the smart wearable device face up, rotate the arm counterclockwise, and set the wind speed. Control commands with progressively lower levels.
  • the user can also change the motion track that controls the temperature and the motion track that adjusts the wind speed level, thereby further improving the convenience of the user to control the air conditioner through the motion track.
  • the smart wearable device also includes a storage module for storing motion trajectories and corresponding control commands.
  • the setting module associates the motion track with the control command, it can be stored by the storage module, and then when the processor processes the motion track, directly obtains the corresponding relationship between the motion track and the control command in the storage module.
  • Control commands which can improve the speed of control command acquisition and reduce the burden on the processor.
  • the smart wearable device also includes a start-stop module for turning on or off the motion track control mode of the smart wearable device. After completing the adjustment of the operation of the air conditioner, the smart wearable device can be turned off by the start-stop module.
  • the air conditioner is adjusted to prevent accidental operation and unnecessary adjustment of the air conditioner.
  • the smart wearable device further includes a matching module and a receiving device, the receiving device receives the information of the air conditioner, and the matching module performs communication matching with the air conditioner according to the information received by the receiving device.
  • the smart wearable device can analyze according to the received information of the air conditioner, obtain the communication protocol of the air conditioner, and match the communication protocol of the smart wearable device with the communication protocol of the air conditioner.
  • the smart wearable device can accurately match the air conditioner and achieve good communication, so that the smart wearable device can accurately regulate the air conditioner through the motion track.
  • the communication protocol can be encrypted, thereby improving the communication between the smart wearable device and the air conditioner. Sex and reliability.
  • the motion track sensor is a three-axis acceleration sensor, also called a three-axis gyroscope.
  • the smart wearable device is, for example, a smart bracelet, a smart bracelet, or the like.
  • an application method of a smart wearable device includes: sensing a motion track of the smart wearable device; analyzing the sensed motion track, determining a control command corresponding to the motion track; The command is sent to the air conditioner.
  • the smart wearable device can be conveniently operated according to the preset motion trajectory, so that the air conditioner can achieve the desired effect, and the adjustment is simpler and more convenient.
  • the vision and the ability to control the software are more universal.
  • the step of sensing the motion track of the smart wearable device includes: setting a control command corresponding to each motion track; storing the motion track and a control command corresponding to the motion track. In this way, you can choose your own control mode. On the one hand, it is easy to remember, on the other hand, it is not easy to make mistakes in the process of regulation and improve the accuracy of regulation.
  • the steps of setting the control command corresponding to each motion track include: facing the smart wearable device face up, swinging the arm up and down, swinging upwards and swinging down slowly, the corresponding control command increases the temperature of the air conditioner by one degree; And the upward swing is slow, the corresponding control command is to reduce the air conditioner temperature by one degree.
  • the above speed is relatively speaking, the speed of the swing is compared with the speed of the hem, if the swing speed is greater than the sway speed Degree, then swing up and swing slowly. If the swing speed is lower than the yaw speed, swing up slowly and swing down quickly.
  • the step of setting the control command corresponding to each motion track further includes: the smart wearable device faces upward and rotates the arm clockwise, and the corresponding control command gradually increases the wind speed level, and the change process is: automatic ⁇ low file ⁇ mid file ⁇ high level ⁇ Powerful ⁇ Automatic; Rotate the arm counterclockwise, the corresponding control command gradually reduces the wind speed level, and the change process is: automatic ⁇ strong ⁇ high-grade ⁇ mid-range ⁇ low-grade ⁇ automatic.
  • the step of sensing the motion track of the smart wearable device further includes: obtaining information of the air conditioner; and performing communication matching according to the information of the air conditioner. After the communication between the smart wearable device and the air conditioner is matched, the information interaction between the smart wearable device and the air conditioner can be conveniently implemented, and then the air conditioner can be regulated by the smart wearable device.
  • the application method of the smart wearable device further includes: when the air conditioner needs to be adjusted, the motion track control mode of the smart wearable device is turned on, so that communication between the smart wearable device and the air conditioner is realized, and then the smart wearable device is operated according to the preset.
  • the motion path movement realizes the adjustment of the air conditioner; when the adjustment of the air conditioner is completed, the motion track control mode of the smart wearable device is turned off, thereby avoiding the misoperation of the air conditioner during the action of wearing the smart wearable device, thereby improving The reliability of smart wearable devices.

Abstract

本发明公开一种智能穿戴设备及其应用方法。该智能穿戴设备用于对空调器进行控制,包括:运动轨迹感应器,用于感应智能穿戴设备的运动轨迹;处理器,连接至运动轨迹感应器,接收运动轨迹感应器感应到的运动轨迹,并分析该运动轨迹对应的控制指令;发射装置,连接至处理器,并将处理器分析出的控制指令发送至空调器。根据本发明的智能穿戴设备,能够使得空调的调节控制更加简单方便易操作。

Description

智能穿戴设备及其应用方法 技术领域
本发明涉及智能控制技术领域,具体而言,涉及一种智能穿戴设备及其应用方法。
背景技术
随着科技的进步,人们对智能化家居的需求越来越大,随着对智能家居操控便利性要求的提高,目前对于空调的控制越来越多出现了通过空调遥控器、手机APP以及近电场感应控制等多种手段远程操控空调的方式,从而极大提高了人们控制空调的多样性,使得空调的控制调节更加简单方便。
但在空调的控制过程中,在以空调遥控器和手机APP的方式控制空调时,往往需要人眼看界面上的图案来进行控制,对于不会使用APP软件或者视力不好的操作者而言,通过上述方式进行空调的调控仍然十分困难。
发明内容
本发明实施例中提供一种智能穿戴设备及其应用方法,能够使得空调的调节控制更加简单方便易操作。
为实现上述目的,根据本发明的一个方面,提供了一种智能穿戴设备,用于对空调器进行控制,包括:运动轨迹感应器,用于感应智能穿戴设备的运动轨迹;处理器,连接至运动轨迹感应器,接收运动轨迹感应器感应到的运动轨迹,并分析该运动轨迹对应的控制指令;发射装置,连接至处理器,并将处理器分析出的控制指令发送至空调器。
作为优选,智能穿戴设备还包括设定模块,设定模块连接至处理器,并设定运动轨迹所对应的控制命令。
作为优选,智能穿戴设备还包括存储模块,用于存储运动轨迹及其所对应的 控制命令。
作为优选,智能穿戴设备还包括启停模块,用于开启或者关闭智能穿戴设备的运动轨迹控制模式。
作为优选,智能穿戴设备还包括匹配模块和接收装置,接收装置接收空调器的信息,匹配模块根据接收装置接收到的信息与空调器进行通讯匹配。
作为优选,运动轨迹感应器为三轴加速度传感器。
根据本发明的另一方面,提供了一种智能穿戴设备的应用方法,包括:感应智能穿戴设备的运动轨迹;对感应到的运动轨迹进行分析,确定运动轨迹所对应的控制命令;将控制命令发送至空调器。
作为优选,感应智能穿戴设备的运动轨迹的步骤之后包括:设定各运动轨迹对应的控制命令;将运动轨迹及该运动轨迹所对应的控制命令存储起来。
作为优选,设定各运动轨迹对应的控制命令的步骤包括:将智能穿戴设备面朝上,上下摆动手臂,往上摆动快且往下摆动慢,则对应的控制命令为空调温度增加一度;往下摆动快且往上摆动慢,则对应的控制命令为空调温度减少一度。
作为优选,设定各运动轨迹对应的控制命令的步骤包括:智能穿戴设备面朝上,顺时针旋转手臂,则对应的控制命令为风速等级逐步升高;逆时针旋转手臂,则对应的控制命令为风速等级逐步降低。
作为优选,感应智能穿戴设备的运动轨迹的步骤之前还包括:获取空调器的信息;根据空调器的信息进行通讯匹配。
根据本发明的智能穿戴设备,用于对空调器进行控制,包括:运动轨迹感应器,用于感应智能穿戴设备的运动轨迹;处理器,连接至运动轨迹感应器,接收运动轨迹感应器感应到的运动轨迹,并分析该运动轨迹对应的控制指令;发射装置,连接至处理器,并将处理器分析出的控制指令发送至空调器。智能穿戴设备通过其上的运动轨迹感应器感应智能穿戴设备的运动轨迹,然后通过处理器获取该运动轨迹所对应的控制命令,并将该控制命令发送给空调器,从而使得空调器根据该控制命令进行参数调整。通过该智能穿戴设备对空调器进行控制,只需要 知道该智能穿戴设备的运动轨迹所对应的控制命令即可,无需通过遥控器上的参数信息以及手机APP等去实现,降低了空调调节的难度,不会由于视力的影响而难以对空调进行调节,也不会因为不会操作手机软件而难以对空调进行调节,只需要通过简单的手势动作即可实现对空调的操控,操作更加简单方便,可以适用各类人群,易用性更好,用户使用体验更好,可以进一步使用户享受到智能家居的便利性。
附图说明
图1是本发明实施例的智能穿戴设备的结构原理图;
图2是本发明实施例的智能穿戴设备的应用方法流程图。
具体实施方式
下面结合附图和具体实施例对本发明作进一步详细描述,但不作为对本发明的限定。
请参考图1所示,根据本发明的实施例,智能穿戴设备用于对空调器进行控制,该智能穿戴设备包括运动轨迹感应器、处理器和发射装置,运动轨迹感应器用于感应智能穿戴设备的运动轨迹;处理器连接至运动轨迹感应器,接收运动轨迹感应器感应到的运动轨迹,并分析该运动轨迹对应的控制指令;发射装置连接至处理器,并将处理器分析出的控制指令发送至空调器。
智能穿戴设备通过其上的运动轨迹感应器感应智能穿戴设备的运动轨迹,然后通过处理器获取该运动轨迹所对应的控制命令,并将该控制命令发送给空调器,从而使得空调器根据该控制命令进行参数调整。通过该智能穿戴设备对空调器进行控制,只需要知道该智能穿戴设备的运动轨迹所对应的控制命令即可,无需通过遥控器上的参数信息以及手机APP等去实现,降低了空调调节的难度,不会由于视力的影响而难以对空调进行调节,也不会因为不会操作手机软件而难以对空调进行调节,只需要通过简单的手势动作即可实现对空调的操控,操作更加 简单方便,可以适用各类人群,易用性更好,用户使用体验更好,可以进一步使用户享受到智能家居的便利性。
智能穿戴设备还包括设定模块,设定模块连接至处理器,并设定运动轨迹所对应的控制命令。通过设定模块可以根据用户的需求设定运动轨迹及其对应的控制命令,从而使得用户可以根据自己的喜好编制空调运行控制的运动轨迹,提高用户对空调操控的体验度。
例如,用户可以将智能穿戴设备面朝上,上下摆动手臂,往上摆动快且往下摆动慢的运动轨迹,设定为空调温度增加一度的控制命令,将智能穿戴设备面朝上,上下摆动手臂,往下摆动快且往上摆动慢的手势,设定为空调温度减少一度的控制命令,也可以将智能穿戴设备面朝上,上下摆动手臂,往上摆动快且往下摆动慢的手势,设定为空调温度减少一度的控制命令,将智能穿戴设备面朝上,上下摆动手臂,往下摆动快且往上摆动慢的运动轨迹,设定为空调温度增加一度的控制命令,或者是将其他的运动轨迹与空调的温度控制进行对应,从而能够通过执行上述的运动轨迹方便地对空调进行温度调控。
又例如,用户可以将智能穿戴设备面朝上,顺时针旋转手臂,设定为风速等级逐步升高的控制命令;同时用户可以将智能穿戴设备面朝上,逆时针旋转手臂,设定为风速等级逐步降低的控制命令。用户也可以将对温度进行控制的运动轨迹与对风速等级进行调节的运动轨迹进行调换,从而进一步提高用户通过运动轨迹对空调进行操控的方便性。
智能穿戴设备还包括存储模块,用于存储运动轨迹及其所对应的控制命令。在设定模块将运动轨迹与控制命令对应起来以后,就可以通过存储模块进行存储,然后在处理器对运动轨迹进行处理时,直接根据存储模块里运动轨迹与控制命令之间的对应关系获取相应的控制命令,从而可以提高控制命令获取的快速性,并降低处理器的负担。
智能穿戴设备还包括启停模块,用于开启或者关闭智能穿戴设备的运动轨迹控制模式。在完成对空调器的运行调节之后,可以通过启停模块关闭智能穿戴设 备对空调器的调节功能,以防发生误操作,对空调进行不必要的调节。
智能穿戴设备还包括匹配模块和接收装置,接收装置接收空调器的信息,匹配模块根据接收装置接收到的信息与空调器进行通讯匹配。智能穿戴设备通过接收装置接收到空调器的信息之后,可以根据接收到的空调器的信息进行分析,获取空调器的通讯协议,并将智能穿戴设备的通讯协议与空调器的通讯协议进行匹配,使得智能穿戴设备能够准确地与空调器之间匹配,并实现良好的通讯,以使智能穿戴设备可以准确地通过运动轨迹对空调器进行调控。
为了保证智能穿戴设备与空调器之间的通讯不受外界干扰,在智能穿戴设备与空调器进行通讯匹配时,可以对通讯协议进行加密处理,从而提高智能穿戴设备与空调器之间通讯的安全性和可靠性。
优选地,运动轨迹感应器为三轴加速度传感器,也叫三轴陀螺仪。
该智能穿戴设备例如为智能手环、智能手链等。
结合参见图2所示,根据本发明的实施例,智能穿戴设备的应用方法包括:感应智能穿戴设备的运动轨迹;对感应到的运动轨迹进行分析,确定运动轨迹所对应的控制命令;将控制命令发送至空调器。通过该种方式,可以通过使智能穿戴设备按照预设的运动轨迹进行运动的方式,方便地对空调器进行相应的操控,使得空调器达到自己想要的效果,调整更加简单方便不需要较好的视力和对软件的掌控的能力,普适性更好。
感应智能穿戴设备的运动轨迹的步骤之后包括:设定各运动轨迹对应的控制命令;将运动轨迹及该运动轨迹所对应的控制命令存储起来。通过此种方式可以选择自己喜欢的调控方式,一方面便于记忆,另一方面也不容易在调控过程中出错,提高调控的准确性。
设定各运动轨迹对应的控制命令的步骤包括:将智能穿戴设备面朝上,上下摆动手臂,往上摆动快且往下摆动慢,则对应的控制命令为空调温度增加一度;往下摆动快且往上摆动慢,则对应的控制命令为空调温度减少一度。上述的快慢是相对而言,即将上摆的速度与下摆的速度进行对比,如果上摆速度大于下摆速 度,则往上摆动快且往下摆动慢,如果上摆速度小于下摆速度,则往上摆动慢且往下摆动快。
设定各运动轨迹对应的控制命令的步骤还包括:智能穿戴设备面朝上,顺时针旋转手臂,则对应的控制命令为风速等级逐步升高,其变化过程为:自动→低档→中档→高档→强劲→自动;逆时针旋转手臂,则对应的控制命令为风速等级逐步降低,其变化过程为:自动→强劲→高档→中档→低档→自动。
感应智能穿戴设备的运动轨迹的步骤之前还包括:获取空调器的信息;根据空调器的信息进行通讯匹配。在将智能穿戴设备与空调器之间进行通讯匹配之后,就可以方便地实现智能穿戴设备与空调器之间的信息交互,进而通过智能穿戴设备对空调器进行调控。
智能穿戴设备的应用方法还包括,在需要对空调器进行调节时,开启智能穿戴设备的运动轨迹控制模式,使得智能穿戴设备与空调器之间实现通讯互联,进而通过操纵智能穿戴设备按照预设的运动轨迹运动实现对空调器的调节;在完成对空调器的调节时,关闭智能穿戴设备的运动轨迹控制模式,从而避免在穿戴该智能穿戴设备动作的过程中对空调器进行误操作,提高智能穿戴设备使用的可靠性。
当然,以上是本发明的优选实施方式。应当指出,对于本技术领域的普通技术人员来说,在不脱离本发明基本原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本发明的保护范围。

Claims (13)

  1. 一种智能穿戴设备,用于对空调器进行控制,其特征在于,包括:
    运动轨迹感应器,用于感应所述智能穿戴设备的运动轨迹;
    处理器,连接至所述运动轨迹感应器,接收所述运动轨迹感应器感应到的运动轨迹,并分析该运动轨迹对应的控制指令;
    发射装置,连接至所述处理器,并将所述处理器分析出的控制指令发送至所述空调器。
  2. 根据权利要求1所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括设定模块,所述设定模块连接至所述处理器,并设定所述运动轨迹所对应的控制命令。
  3. 根据权利要求1所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括存储模块,用于存储所述运动轨迹及其所对应的控制命令。
  4. 根据权利要求1所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括启停模块,用于开启或者关闭所述智能穿戴设备的运动轨迹控制模式。
  5. 根据权利要求1所述的智能穿戴设备,其特征在于,所述智能穿戴设备还包括匹配模块和接收装置,所述接收装置接收所述空调器的信息,所述匹配模块根据所述接收装置接收到的信息与所述空调器进行通讯匹配。
  6. 根据权利要求1所述的智能穿戴设备,其特征在于,所述运动轨迹感应器为三轴加速度传感器。
  7. 一种智能穿戴设备的应用方法,其特征在于,包括:
    感应智能穿戴设备的运动轨迹;
    对感应到的运动轨迹进行分析,确定运动轨迹所对应的控制命令;
    将控制命令发送至空调器。
  8. 根据权利要求7所述的智能穿戴设备的应用方法,其特征在于,所述感应智能穿戴设备的运动轨迹的步骤之后包括:
    设定各运动轨迹对应的控制命令;
    将运动轨迹及该运动轨迹所对应的控制命令存储起来。
  9. 根据权利要求8所述的智能穿戴设备的应用方法,其特征在于,所述设定各运动轨迹对应的控制命令的步骤包括:
    将智能穿戴设备面朝上,上下摆动手臂,往上摆动快且往下摆动慢,则对应的控制命令为空调温度增加一度;
    往下摆动快且往上摆动慢,则对应的控制命令为空调温度减少一度。
  10. 根据权利要求8所述的智能穿戴设备的应用方法,其特征在于,所述设定各运动轨迹对应的控制命令的步骤包括:
    智能穿戴设备面朝上,顺时针旋转手臂,则对应的控制命令为风速等级逐步升高;逆时针旋转手臂,则对应的控制命令为风速等级逐步降低。
  11. 根据权利要求7所述的智能穿戴设备的应用方法,其特征在于,所述感应智能穿戴设备的运动轨迹的步骤之前还包括:
    获取空调器的信息;
    根据空调器的信息进行通讯匹配。
  12. 根据权利要求7所述的智能穿戴设备的应用方法,其特征在于,包括:
    设定各运动轨迹对应的控制命令;
    将运动轨迹及该运动轨迹所对应的控制命令存储起来。
  13. 根据权利要求12所述的智能穿戴设备的应用方法,其特征在于,对感应到的运动轨迹进行分析,确定运动轨迹所对应的控制命令包括:根据存储的运动轨迹与控制命令的对应关系获取运动轨迹所对应的控制命令。
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