WO2017092387A1 - 一种可穿戴设备的通信实现方法及系统 - Google Patents

一种可穿戴设备的通信实现方法及系统 Download PDF

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Publication number
WO2017092387A1
WO2017092387A1 PCT/CN2016/092301 CN2016092301W WO2017092387A1 WO 2017092387 A1 WO2017092387 A1 WO 2017092387A1 CN 2016092301 W CN2016092301 W CN 2016092301W WO 2017092387 A1 WO2017092387 A1 WO 2017092387A1
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Prior art keywords
communication
wearable device
lte
request
module
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PCT/CN2016/092301
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English (en)
French (fr)
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张�杰
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惠州Tcl移动通信有限公司
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Publication of WO2017092387A1 publication Critical patent/WO2017092387A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/22Processing or transfer of terminal data, e.g. status or physical capabilities
    • H04W8/24Transfer of terminal data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/02Protocols based on web technology, e.g. hypertext transfer protocol [HTTP]
    • H04L67/025Protocols based on web technology, e.g. hypertext transfer protocol [HTTP] for remote control or remote monitoring of applications
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/06Protocols specially adapted for file transfer, e.g. file transfer protocol [FTP]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/08Protocols specially adapted for terminal emulation, e.g. Telnet
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/08Testing, supervising or monitoring using real traffic

Definitions

  • the present invention relates to the field of wearable device technologies, and in particular, to a communication implementation method and system for a wearable device.
  • wearable devices such as smart watches
  • wearable devices are positioned as accessory devices of smart phones.
  • Bluetooth connection many functions of wearable devices cannot be used normally once the connection range is exceeded.
  • OEMs can't do anything without the support of operating system vendors.
  • the present invention is directed to the above-mentioned deficiencies of the prior art, and provides a communication implementation method and system for a wearable device, which aims to solve the problem that the wearable device is only used for the accessory device of the smart phone in the prior art, and can be worn if it exceeds the Bluetooth connection range. The problem that the functions of the device are not working properly.
  • a communication implementation method for a wearable device including:
  • the wearable device performs real-time detection on the communication request, and when detecting the communication request, determines whether the communication option of the wearable device is Bluetooth module communication;
  • the smart terminal virtual machine feeds back corresponding communication data according to the communication request, and sends the communication data to the wearable device.
  • the communication implementation method of the wearable device wherein the wireless communication module is a 3G/long-term evolution technology LTE module capable of performing 3G mobile communication technology 3G communication or 4th generation mobile communication technology 4G communication.
  • the wireless communication module is a 3G/long-term evolution technology LTE module capable of performing 3G mobile communication technology 3G communication or 4th generation mobile communication technology 4G communication.
  • the communication implementation method of the wearable device wherein the communication request comprises one or more of a voice call request, a text data transmission request, a picture data transmission request, and a video data transmission request.
  • the communication implementation method of the wearable device, wherein the smart terminal virtual machine that is uploaded to the cloud by using the wireless communication module includes:
  • the 3G/LTE data packet is uploaded to the smart terminal virtual machine corresponding to the wearable device in the cloud through the 3G/LTE module.
  • the communication implementation method of the wearable device wherein the smart terminal virtual machine feeds back the corresponding communication data according to the communication request, and sends the communication data to the wearable device, specifically:
  • the smart terminal virtual machine receives the 3G/LTE data packet, and parses the 3G/LTE data to obtain a parsed 3G/LTE data packet;
  • Corresponding communication data is fed back according to the parsed 3G/LTE data packet, and the communication data is sent to the wearable device.
  • the communication implementation method of the wearable device wherein the wearable device is one or more of a smart watch, a smart bracelet, smart glasses, smart running shoes, and a smart ring.
  • a communication implementation method for a wearable device including:
  • the wearable device performs real-time detection on the communication request, and when the communication request is detected, is uploaded to the smart terminal virtual machine in the cloud through the wireless communication module;
  • the smart terminal virtual machine feeds back corresponding communication data according to the communication request, and sends the communication data to the wearable device.
  • the communication implementation method of the wearable device wherein the wireless communication module is a 3G/long-term evolution technology LTE module capable of performing 3G mobile communication technology 3G communication or 4th generation mobile communication technology 4G communication.
  • the wireless communication module is a 3G/long-term evolution technology LTE module capable of performing 3G mobile communication technology 3G communication or 4th generation mobile communication technology 4G communication.
  • the communication implementation method of the wearable device wherein the communication request comprises one or more of a voice call request, a text data transmission request, a picture data transmission request, and a video data transmission request.
  • the communication implementation method of the wearable device wherein the wearable device detects the communication request in real time, and when the communication request is detected, uploads to the smart terminal virtual machine in the cloud through the wireless communication module, specifically:
  • the wearable device performs real-time detection of the communication request
  • the data packet of the communication request is converted into a 3G/LTE data packet by using a 3G/LTE protocol corresponding to the 3G/LTE module;
  • the 3G/LTE data packet is uploaded to the smart terminal virtual machine corresponding to the wearable device in the cloud through the 3G/LTE module.
  • the communication implementation method of the wearable device wherein the smart terminal virtual machine feeds back the corresponding communication data according to the communication request, and sends the communication data to the wearable device, specifically:
  • the smart terminal virtual machine receives the 3G/LTE data packet, and parses the 3G/LTE data to obtain a parsed 3G/LTE data packet;
  • Corresponding communication data is fed back according to the parsed 3G/LTE data packet, and the communication data is sent to the wearable device.
  • a communication implementation system for a wearable device including:
  • the wearable device is configured to perform real-time detection on the communication request, and when the communication request is detected, upload to the smart terminal virtual machine in the cloud through the wireless communication module;
  • the cloud server is configured to: the smart terminal virtual machine feeds back corresponding communication data according to the communication request, and sends the communication data to the wearable device.
  • the communication implementation system of the wearable device wherein the wireless communication module is a 3G/long-term evolution technology LTE module capable of performing 3G communication of 3rd generation mobile communication technology or 4G communication of 4th generation mobile communication technology.
  • the wireless communication module is a 3G/long-term evolution technology LTE module capable of performing 3G communication of 3rd generation mobile communication technology or 4G communication of 4th generation mobile communication technology.
  • the communication implementation system of the wearable device wherein the communication request comprises one or more of a voice call request, a text data transmission request, a picture data transmission request, and a video data transmission request.
  • the communication implementation system of the wearable device wherein the wearable device specifically includes:
  • Real-time detection module for real-time detection of communication requests by the wearable device
  • An encoding module configured to convert a data packet of the communication request into a 3G/LTE data packet by using a 3G/LTE protocol corresponding to the 3G/LTE module when the communication request is detected;
  • the uploading module is configured to upload the 3G/LTE data packet to the smart terminal virtual machine corresponding to the wearable device in the cloud through the 3G/LTE module.
  • a parsing module configured to receive the 3G/LTE data packet by the smart terminal virtual machine, and parse the 3G/LTE data to obtain a parsed 3G/LTE data packet;
  • a feedback module configured to feed back corresponding communication data according to the parsed 3G/LTE data packet, and send the communication data to the wearable device.
  • the present invention provides a communication implementation method and system for a wearable device.
  • the method includes: the wearable device performs real-time detection on the communication request, and when the communication request is detected, uploads to the intelligent terminal virtual machine in the cloud through the wireless communication module; The terminal virtual machine feeds back corresponding communication data according to the communication request, and sends the communication data to the wearable device.
  • the invention realizes that the wearable device can also use the built-in function when it is not paired with the smart terminal equipped with the operating system, which is convenient for the user.
  • FIG. 1 is a flow chart of a preferred embodiment of a communication implementation method for a wearable device according to the present invention
  • FIG. 2 is a specific flowchart of a method for implementing communication in a wearable device according to the present invention, in which a wearable device sends a communication request to a smart terminal virtual machine;
  • FIG. 3 is a specific flowchart of a smart terminal virtual machine feeding back communication data to a wearable device in a communication implementation method of the wearable device according to the present invention
  • FIG. 4 is a structural block diagram of a preferred embodiment of a communication implementation system for a wearable device according to the present invention.
  • FIG. 1 is a flowchart of a preferred embodiment of a communication implementation method of a wearable device according to the present invention. As shown in FIG. 1, the communication implementation method of the wearable device includes the following steps:
  • Step S100 The wearable device detects the communication request in real time, and when the communication request is detected, uploads to the smart terminal virtual machine in the cloud through the wireless communication module.
  • the wearable device communicates with the smart terminal virtual machine in the cloud through the wireless communication module, and replaces the smart phone of the entity in the prior art through the smart terminal virtual machine in the cloud. In this way, even when the user does not carry the smart terminal that can be interconnected with the wearable device, various data processing can be performed by the intelligent terminal of the smart terminal virtual machine in the cloud.
  • the wearable device is a smart watch, a smart bracelet, smart glasses, a smart running shoe or a smart ring.
  • Step S200 The smart terminal virtual machine feeds back corresponding communication data according to the communication request, and sends the communication data to the wearable device.
  • the smart terminal virtual machine in the cloud receives the communication request from the wearable device, the corresponding communication data is fed back according to the communication request, and the communication data is sent to the wearable device.
  • the communication request includes one or more of a voice call request, a text data transmission request, a picture data transmission request, and a video data transmission request. That is, by carrying the third generation mobile communication technology 3G/LTE (Long The Term Evolution (Long Term Evolution) module's wearable device can also make calls, send messages, send pictures and video chats when it is off the smart terminal.
  • 3G/LTE Long The Term Evolution
  • the specific process for the wearable device to send a communication request to the smart terminal virtual machine in the step S100 includes:
  • Step S101 the wearable device performs real-time detection on the communication request.
  • Step S102 When the communication request is detected, the data packet of the communication request is converted into a 3G/LTE data packet by using a 3G/LTE protocol corresponding to the 3G/LTE module.
  • Step S103 Upload the 3G/LTE data packet to the smart terminal virtual machine corresponding to the wearable device in the cloud through the 3G/LTE module.
  • the step S102 includes:
  • step S1021 when the communication request is detected, the communication selection item of the wearable device is determined.
  • step S1022 is performed, and when the communication selection item is Bluetooth module communication, step S1023 is performed.
  • Step S1022 If the communication option of the wearable device is 3G/LTE module communication, the data packet of the communication request is converted into a 3G/LTE data packet by using the 3G/LTE protocol corresponding to the 3G/LTE module.
  • Step S1023 If the communication selection item of the wearable device is Bluetooth module communication, the data packet of the communication request is converted into a Bluetooth data packet by using a Bluetooth protocol corresponding to the Bluetooth module.
  • the step S103 includes:
  • step S1031 the data type corresponding to the data packet of the communication request is determined.
  • step S1032 is performed, and when the data packet requested by the communication is a Bluetooth data packet, step S1033 is performed.
  • Step S1032 Upload the 3G/LTE data packet to the smart terminal virtual machine corresponding to the wearable device in the cloud through the 3G/LTE module.
  • Step S1033 Upload the Bluetooth data packet to the smart terminal virtual machine corresponding to the wearable device in the cloud through the Bluetooth module.
  • both the 3G/LTE module and the Bluetooth module can be set in the wearable device. It is determined whether the 3G/LTE module or the Bluetooth module is activated by setting a communication option of the wearable device. When the user carries the smart terminal paired with the wearable device, the Bluetooth module is selected for communication, and when the user does not carry the smart terminal paired with the wearable device, the 3G/LTE module is selected for communication.
  • the present invention focuses on the communication implementation method of the 3G/LTE module in the wearable device, the case where the 3G/LTE module is installed in the wearable device is mainly considered.
  • the specific process for the smart terminal virtual machine to feed back the communication data to the wearable device in the step S200 includes:
  • Step S201 The intelligent terminal virtual machine receives the 3G/LTE data packet, and parses the 3G/LTE data to obtain a parsed 3G/LTE data packet.
  • Step S202 feedback corresponding communication data according to the parsed 3G/LTE data packet, and send the communication data to the wearable device.
  • the present invention realizes that the wearable device can also use the built-in function when it is not paired with the smart terminal equipped with the operating system, which is convenient for the user.
  • the present invention further provides a communication implementation system for a wearable device.
  • the communication implementation system of the wearable device includes:
  • the wearable device 100 is configured to perform real-time detection on the communication request, and when the communication request is detected, upload to the smart terminal virtual machine in the cloud through the wireless communication module.
  • the cloud server 200 is configured to: the smart terminal virtual machine feeds back corresponding communication data according to the communication request, and sends the communication data to the wearable device.
  • the wireless communication module is a 3G/long-term evolution technology LTE module capable of performing 3G communication of the third generation mobile communication technology or 4G communication of the fourth generation mobile communication technology.
  • the communication request includes one or more of a voice call request, a text data transmission request, a picture data transmission request, and a video data transmission request.
  • the wearable device 100 specifically includes:
  • Real-time detection module for real-time detection of communication requests by wearable devices.
  • the encoding module is configured to convert the data packet of the communication request into a 3G/LTE data packet by using a 3G/LTE protocol corresponding to the 3G/LTE module when the communication request is detected.
  • the uploading module is configured to upload the 3G/LTE data packet to the smart terminal virtual machine corresponding to the wearable device in the cloud through the 3G/LTE module.
  • the cloud server 200 specifically includes:
  • the parsing module is configured to receive the 3G/LTE data packet by the smart terminal virtual machine, and parse the 3G/LTE data to obtain the parsed 3G/LTE data packet.
  • a feedback module configured to feed back corresponding communication data according to the parsed 3G/LTE data packet, and send the communication data to the wearable device.
  • the present invention provides a communication implementation method and system for a wearable device.
  • the method includes: the wearable device performs real-time detection on the communication request, and when the communication request is detected, the smart information is uploaded to the cloud through the wireless communication module. a terminal virtual machine; the smart terminal virtual machine feeds back corresponding communication data according to the communication request, and sends the communication data to the wearable device.
  • the invention realizes that the wearable device can also use the built-in function when it is not paired with the smart terminal equipped with the operating system, which is convenient for the user.

Abstract

本发明公开了一种可穿戴设备的通信实现方法及系统,方法包括:可穿戴设备对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机;智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。

Description

一种可穿戴设备的通信实现方法及系统 技术领域
本发明涉及可穿戴设备技术领域,尤其涉及一种可穿戴设备的通信实现方法及系统。
背景技术
目前,可穿戴设备(如智能手表)都定位为智能手机的附属设备,通过蓝牙连接,一旦超出连接范围则可穿戴设备的众多功能均无法正常使用。但如果要支持3G/LTE等远距离无线连接,如果没有操作系统厂商的支持,OEM厂商基本无能为力。
因此,现有技术还有待于改进和发展。
技术问题
本发明针对现有技术的上述缺陷,提供一种可穿戴设备的通信实现方法及系统,旨在解决现有技术中可穿戴设备仅用于智能手机的附属设备,若超出蓝牙连接范围则可穿戴设备的功能均无法正常使用的问题。
技术解决方案
本发明解决技术问题所采用的技术方案如下:
一种可穿戴设备的通信实现方法,其中包括:
可穿戴设备对通信请求进行实时检测,当检测到通信请求时,判断所述可穿戴设备的通信选择项是否为蓝牙模块通信;
若判断出所述可穿戴设备的通信选择项不为蓝牙模块通信,则通过无线通讯模块上传至云端的智能终端虚拟机;
智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
所述可穿戴设备的通信实现方法,其中所述无线通讯模块为可进行第三代移动通信技术3G通讯或第四代移动通信技术4G通讯的3G/长期演进技术LTE模块。
所述可穿戴设备的通信实现方法,其中所述通信请求包括语音通话请求、文本数据传输请求、图片数据传输请求及视频数据传输请求中的一种或多种。
所述可穿戴设备的通信实现方法,其中所述通过无线通讯模块上传至云端的智能终端虚拟机,具体包括:
通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包;
通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
所述可穿戴设备的通信实现方法,其中所述智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备,具体包括:
智能终端虚拟机接收所述3G/LTE数据包,并解析所述3G/LTE数据,得到解析后3G/LTE数据包;
根据所述解析后3G/LTE数据包反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
所述可穿戴设备的通信实现方法,其中所述可穿戴设备为智能手表、智能手环、智能眼镜、智能跑鞋及智能戒指中的一种或多种。
一种可穿戴设备的通信实现方法,其中包括:
可穿戴设备对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机;
智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
所述可穿戴设备的通信实现方法,其中所述无线通讯模块为可进行第三代移动通信技术3G通讯或第四代移动通信技术4G通讯的3G/长期演进技术LTE模块。
所述可穿戴设备的通信实现方法,其中所述通信请求包括语音通话请求、文本数据传输请求、图片数据传输请求及视频数据传输请求中的一种或多种。
所述可穿戴设备的通信实现方法,其中所述可穿戴设备对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机,具体包括:
可穿戴设备对通信请求进行实时检测;
当检测到通信请求时,则通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包;
通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
所述可穿戴设备的通信实现方法,其中所述智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备,具体包括:
智能终端虚拟机接收所述3G/LTE数据包,并解析所述3G/LTE数据,得到解析后3G/LTE数据包;
根据所述解析后3G/LTE数据包反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
一种可穿戴设备的通信实现系统,其中包括:
可穿戴设备,用于对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机;
云服务器,用于智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
所述可穿戴设备的通信实现系统,其中所述无线通讯模块为可进行第三代移动通信技术3G通讯或第四代移动通信技术4G通讯的3G/长期演进技术LTE模块。
所述可穿戴设备的通信实现系统,其中所述通信请求包括语音通话请求、文本数据传输请求、图片数据传输请求及视频数据传输请求中的一种或多种。
所述可穿戴设备的通信实现系统,其中所述可穿戴设备具体包括:
实时检测模块,用于可穿戴设备对通信请求进行实时检测;
编码模块,用于当检测到通信请求时,则通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包;
上传模块,用于通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
所述可穿戴设备的通信实现系统,其中所述云服务器具体包括:
解析模块,用于智能终端虚拟机接收所述3G/LTE数据包,并解析所述3G/LTE数据,得到解析后3G/LTE数据包;
反馈模块,用于根据所述解析后3G/LTE数据包反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
有益效果
本发明提供了一种可穿戴设备的通信实现方法及系统,方法包括:可穿戴设备对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机;智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。本发明实现了可穿戴设备在不与搭载操作系统的智能终端进行无线连接配对的情况下,也能使用自带的功能,方便了用户。
附图说明
图1是本发明所述可穿戴设备的通信实现方法较佳实施例的流程图;
图2是本发明所述可穿戴设备的通信实现方法中可穿戴设备向智能终端虚拟机发送通信请求的具体流程图;
图3是本发明所述可穿戴设备的通信实现方法中智能终端虚拟机向可穿戴设备反馈通信数据的具体流程图;
图4是本发明所述可穿戴设备的通信实现系统较佳实施例的结构框图。
本发明的最佳实施方式
为使本发明的目的、技术方案及优点更加清楚、明确,以下参照附图并举实施例对本发明进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
请参见图1,图1是本发明所述可穿戴设备的通信实现方法较佳实施例的流程图。如图1所示,所述可穿戴设备的通信实现方法,包括步骤:
步骤S100,可穿戴设备对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机。
本发明的实施例中,可穿戴设备通过无线通讯模块与云端的智能终端虚拟机进行通讯,通过云端的智能终端虚拟机取代现有技术中实体的智能手机。这样,即使当用户使用可穿戴设备时未携带可与之互联的智能终端时,也能通过云端的智能终端虚拟机模拟实体的智能终端来进行各种数据处理。
具体实施时,所述可穿戴设备为智能手表、智能手环、智能眼镜、智能跑鞋或智能戒指等。
步骤S200,智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
当在云端的智能终端虚拟机接收来自可穿戴设备的通信请求时,则根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。具体实施时,所述通信请求包括语音通话请求、文本数据传输请求、图片数据传输请求及视频数据传输请求中的一种或多种。即通过搭载了第三代移动通信技术3G/LTE(Long Term Evolution,长期演进技术)模块的可穿戴设备在脱离智能终端时,也能打电话、发信息、发图片及视频聊天等。
进一步的,如图2所示,所述步骤S100中可穿戴设备向智能终端虚拟机发送通信请求的具体流程包括:
步骤S101,可穿戴设备对通信请求进行实时检测。
步骤S102,当检测到通信请求时,则通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包。
步骤S103,通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
具体实施时,所述步骤S102中包括:
步骤S1021,当检测到通信请求时,则判断可穿戴设备的通信选择项,当通信选择项为3G/LTE模块通信时则执行步骤S1022,当通信选择项为蓝牙模块通信时则执行步骤S1023。
步骤S1022,若可穿戴设备的通信选择项为3G/LTE模块通信,则通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包。
步骤S1023,若可穿戴设备的通信选择项为蓝牙模块通信,则通过蓝牙模块对应的蓝牙协议将通信请求的数据包转化成蓝牙数据包。
所述步骤S103中包括:
步骤S1031,判断通信请求的数据包对应的数据类型,当通信请求的数据包为3G/LTE数据包时则执行步骤S1032,当通信请求的数据包为蓝牙数据包时则执行步骤S1033。
步骤S1032,通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
步骤S1033,通过蓝牙模块将蓝牙数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
可见,在可穿戴设备内既能设置3G/LTE模块,也能设置蓝牙模块。通过设置可穿戴设备的通信选择项来确定是启动3G/LTE模块还是蓝牙模块。当用户携带了与可穿戴设备配对的智能终端时则选择蓝牙模块进行通讯,当用户未携带与可穿戴设备配对的智能终端时则选择3G/LTE模块进行通讯。
由于本发明中,侧重于在可穿戴设备内既能设置3G/LTE模块的通讯实现方法,故主要考虑在可穿戴设备内设置3G/LTE模块的情况。
进一步的,如图3所示,所述步骤S200中智能终端虚拟机向可穿戴设备反馈通信数据的具体流程包括:
步骤S201,智能终端虚拟机接收所述3G/LTE数据包,并解析所述3G/LTE数据,得到解析后3G/LTE数据包。
步骤S202,根据所述解析后3G/LTE数据包反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
可见,本发明实现了可穿戴设备在不与搭载操作系统的智能终端进行无线连接配对的情况下,也能使用自带的功能,方便了用户。
基于上述方法实施例,本发明还提供一种可穿戴设备的通信实现系统,如图4所示,所述可穿戴设备的通信实现系统包括:
可穿戴设备100,用于对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机。
云服务器200,用于智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
进一步的,在所述可穿戴设备的通信实现系统中,所述无线通讯模块为可进行第三代移动通信技术3G通讯或第四代移动通信技术4G通讯的3G/长期演进技术LTE模块。
进一步的,在所述可穿戴设备的通信实现系统中,所述通信请求包括语音通话请求、文本数据传输请求、图片数据传输请求及视频数据传输请求中的一种或多种。
进一步的,在所述可穿戴设备的通信实现系统中,所述可穿戴设备100具体包括:
实时检测模块,用于可穿戴设备对通信请求进行实时检测。
编码模块,用于当检测到通信请求时,则通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包。
上传模块,用于通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
进一步的,在所述可穿戴设备的通信实现系统中,所述云服务器200具体包括:
解析模块,用于智能终端虚拟机接收所述3G/LTE数据包,并解析所述3G/LTE数据,得到解析后3G/LTE数据包。
反馈模块,用于根据所述解析后3G/LTE数据包反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
综上所述,本发明提供了一种可穿戴设备的通信实现方法及系统,方法包括:可穿戴设备对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机;智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。本发明实现了可穿戴设备在不与搭载操作系统的智能终端进行无线连接配对的情况下,也能使用自带的功能,方便了用户。
应当理解的是,本发明的应用不限于上述的举例,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,所有这些改进和变换都应属于本发明所附权利要求的保护范围。

Claims (16)

  1. 一种可穿戴设备的通信实现方法,其中包括:
    可穿戴设备对通信请求进行实时检测,当检测到通信请求时,判断所述可穿戴设备的通信选择项是否为蓝牙模块通信;
    若判断出所述可穿戴设备的通信选择项不为蓝牙模块通信,则通过无线通讯模块上传至云端的智能终端虚拟机;
    智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
  2. 根据权利要求1所述可穿戴设备的通信实现方法,其中所述无线通讯模块为可进行第三代移动通信技术3G通讯或第四代移动通信技术4G通讯的3G/ 长期演进技术LTE模块。
  3. 根据权利要求1所述可穿戴设备的通信实现方法,其中所述通信请求包括语音通话请求、文本数据传输请求、图片数据传输请求及视频数据传输请求中的一种或多种。
  4. 根据权利要求2所述可穿戴设备的通信实现方法,其中所述通过无线通讯模块上传至云端的智能终端虚拟机,具体包括:
    通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包;
    通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
  5. 根据权利要求4所述可穿戴设备的通信实现方法,其中所述智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备,具体包括:
    智能终端虚拟机接收所述3G/LTE数据包,并解析所述3G/LTE数据,得到解析后3G/LTE数据包;
    根据所述解析后3G/LTE数据包反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
  6. 根据权利要求1所述可穿戴设备的通信实现方法,其中所述可穿戴设备为智能手表、智能手环、智能眼镜、智能跑鞋及智能戒指中的一种或多种。
  7. 一种可穿戴设备的通信实现方法,其中包括:
    可穿戴设备对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机;
    智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
  8. 根据权利要求7所述可穿戴设备的通信实现方法,其中所述无线通讯模块为可进行第三代移动通信技术3G通讯或第四代移动通信技术4G通讯的3G/长期演进技术LTE模块。
  9. 根据权利要求7所述可穿戴设备的通信实现方法,其中所述通信请求包括语音通话请求、文本数据传输请求、图片数据传输请求及视频数据传输请求中的一种或多种。
  10. 根据权利要求8所述可穿戴设备的通信实现方法,其中所述可穿戴设备对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机,具体包括:
    可穿戴设备对通信请求进行实时检测;
    当检测到通信请求时,则通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包;
    通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
  11. 根据权利要求10所述可穿戴设备的通信实现方法,其中所述智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备,具体包括:
    智能终端虚拟机接收所述3G/LTE数据包,并解析所述3G/LTE数据,得到解析后3G/LTE数据包;
    根据所述解析后3G/LTE数据包反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
  12. 一种可穿戴设备的通信实现系统,其中包括:
    可穿戴设备,用于对通信请求进行实时检测,当检测到通信请求时则通过无线通讯模块上传至云端的智能终端虚拟机;
    云服务器,用于智能终端虚拟机根据所述通信请求反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
  13. 根据权利要求12所述可穿戴设备的通信实现系统,其中所述无线通讯模块为可进行第三代移动通信技术3G通讯或第四代移动通信技术4G通讯的3G/长期演进技术LTE模块。
  14. 根据权利要求12所述可穿戴设备的通信实现系统,其中所述通信请求包括语音通话请求、文本数据传输请求、图片数据传输请求及视频数据传输请求中的一种或多种。
  15. 根据权利要求13所述可穿戴设备的通信实现系统,其中所述可穿戴设备具体包括:
    实时检测模块,用于可穿戴设备对通信请求进行实时检测;
    编码模块,用于当检测到通信请求时,则通过3G/LTE模块对应的3G/LTE协议将通信请求的数据包转化成3G/LTE数据包;
    上传模块,用于通过3G/LTE模块将3G/LTE数据包上传至云端中与可穿戴设备对应的智能终端虚拟机。
  16. 根据权利要求15所述可穿戴设备的通信实现系统,其中所述云服务器具体包括:
    解析模块,用于智能终端虚拟机接收所述3G/LTE数据包,并解析所述3G/LTE数据,得到解析后3G/LTE数据包;
    反馈模块,用于根据所述解析后3G/LTE数据包反馈对应的通信数据,并将所述通信数据发送至可穿戴设备。
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