WO2016065714A1 - 移动终端通讯方法、移动终端及系统 - Google Patents

移动终端通讯方法、移动终端及系统 Download PDF

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Publication number
WO2016065714A1
WO2016065714A1 PCT/CN2014/095028 CN2014095028W WO2016065714A1 WO 2016065714 A1 WO2016065714 A1 WO 2016065714A1 CN 2014095028 W CN2014095028 W CN 2014095028W WO 2016065714 A1 WO2016065714 A1 WO 2016065714A1
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Prior art keywords
mobile terminal
network address
network
technology
dimensional code
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PCT/CN2014/095028
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English (en)
French (fr)
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代理军
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深圳市汇顶科技股份有限公司
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Publication of WO2016065714A1 publication Critical patent/WO2016065714A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/11Allocation or use of connection identifiers

Definitions

  • the invention belongs to the field of communications, and in particular relates to a mobile terminal communication method, a mobile terminal and a system.
  • two-dimensional code, NFC, etc. are all one-way transmission data, such as carrying a web address on a two-dimensional code, and the mobile device scanning the two-dimensional code obtains the same. After the URL, the information carried by the QR code is read. This method is only a one-way reading process, and cannot perform two-way data interaction.
  • the purpose of the embodiments of the present invention is to provide a mobile terminal communication method, a mobile terminal, and a system, which are to solve the problem that the existing mobile terminal using the one-way data transmission technology cannot transmit data in two directions.
  • a mobile terminal communication method includes the following steps:
  • the first mobile terminal receives an instruction to trigger a network connection
  • the second mobile terminal Transmitting its own network address to the second mobile terminal through a one-way propagation technique for the The second mobile terminal establishes a network connection with the first mobile terminal according to the network address.
  • the one-way transmission data technology is a two-dimensional code, an NFC, a voiceprint mode or a HotKnot mode.
  • the network address is a WIFI or Bluetooth Mac address, and a WIFI hotspot information.
  • the method further includes:
  • the first mobile terminal and the second mobile terminal perform data exchange via WIFI or Bluetooth.
  • the invention also provides a mobile terminal communication method, the method comprising the following steps:
  • the one-way transmission data technology is a two-dimensional code, an NFC, a voiceprint mode or a HotKnot mode.
  • the present invention also provides a first mobile terminal, including:
  • a trigger module configured to receive an instruction to trigger a network connection
  • the sending module is configured to send its own network address to the second mobile terminal by using a one-way propagation technology, and the second mobile terminal establishes a network connection with the first mobile terminal according to the network address.
  • the one-way transmission data technology is a two-dimensional code, an NFC, a voiceprint mode or a HotKnot mode.
  • the network address is a WIFI or Bluetooth Mac address, and the WIFI is hot. Point information.
  • the present invention also provides a second mobile terminal, including:
  • a receiving module configured to receive a network address of the first mobile terminal by using a one-way transmission technology
  • connection module configured to establish a network connection with the first mobile terminal according to the network address.
  • the one-way transmission data technology is a two-dimensional code, an NFC, a voiceprint mode or a HotKnot mode.
  • the present invention also provides a mobile terminal communication system, including a first mobile terminal and a second mobile terminal, where the first mobile terminal includes:
  • a trigger module configured to receive an instruction to trigger a network connection
  • a sending module configured to send a network address of the second mobile terminal to the second mobile terminal by using a one-way propagation technology, where the second mobile terminal establishes a network connection with the first mobile terminal according to the network address;
  • the second mobile terminal includes:
  • a receiving module configured to receive a network address of the first mobile terminal by using a one-way transmission technology
  • connection module configured to establish a network connection with the first mobile terminal according to the network address.
  • the one-way transmission data technology is a two-dimensional code, an NFC, a voiceprint mode or a HotKnot mode.
  • the network address is a WIFI or Bluetooth Mac address, and the WIFI is hot. Point information.
  • the invention uses the existing technology for transmitting data in one direction, such as two-dimensional code, NFC, voiceprint, HotKnot, etc., so that two mobile terminals establish network connection such as WIFI and Bluetooth, and then realize bidirectional exchange of data through the network.
  • the embodiment of the invention overcomes the defect that the two-dimensional code and the like cannot perform bidirectional data transmission in combination with the one-way transmission data technology and the network technology.
  • FIG. 1 is a flowchart of a mobile terminal communication method according to Embodiment 1 of the present invention.
  • Embodiment 2 is an example of a mobile terminal communication method according to Embodiment 1 of the present invention.
  • FIG. 3 is still another example of a mobile terminal communication method according to Embodiment 1 of the present invention.
  • Embodiment 4 is another example of a mobile terminal communication method according to Embodiment 1 of the present invention.
  • FIG. 5 is a flowchart of a mobile terminal communication method according to Embodiment 2 of the present invention.
  • FIG. 6 is a structural diagram of a first mobile terminal according to Embodiment 3 of the present invention.
  • FIG. 7 is a structural diagram of a second mobile terminal according to Embodiment 4 of the present invention.
  • FIG. 8 is a structural diagram of a mobile terminal communication system according to Embodiment 5 of the present invention.
  • Embodiment 1 of the present invention provides a mobile terminal communication method. As shown in FIG. 1, the method in the first embodiment of the present invention includes the following steps:
  • the first mobile terminal receives an instruction that triggers a network connection.
  • the first mobile terminal sends its own network address to the second mobile terminal by using a one-way propagation technology.
  • the first mobile terminal and the second mobile terminal of the first embodiment of the present invention have two-dimensional code, NFC, voiceprint communication or HotKnot (HotKnot technology is a unified specification and standard developed by MTK , and the touch chip is the main sensing medium.
  • the mobile phone or the mobile phone can transmit information through the screen contact to the computer, and the like, and has the network functions such as WIFI and Bluetooth.
  • the first mobile terminal sends its own network address to the second mobile terminal by using a one-way propagation technology.
  • the two-dimensional code the first mobile terminal uses a black and white rectangle to represent binary data
  • the two-dimensional code includes the network address of the first mobile terminal
  • the second mobile terminal acquires the network address by scanning the two-dimensional code.
  • the first mobile terminal provides a radio frequency field (RF-field).
  • the first mobile terminal may select one of the transmission speeds of 106 kbps, 212 kbps or 424 kbps to transmit its own network address to the second mobile terminal.
  • the second mobile terminal is called an NFC target device (slave device), and does not have to generate a radio frequency field, but uses load modulation technology, that is, data can be transmitted back to the first mobile terminal at the same speed.
  • the first mobile terminal can encode the network address into audio data and send it to the second mobile terminal by playing, and the second mobile terminal receives the audio data, and obtains the network address of the first mobile terminal after decoding.
  • the first mobile terminal is attached to the touch screen of the second mobile terminal, and the first mobile terminal can send the network address to the second mobile terminal through the touch screen.
  • the second mobile terminal establishes a network connection with the first mobile terminal according to the network address of the first mobile terminal.
  • the above network address is a WIFI or Bluetooth Mac address, WIFI hotspot information, and the like.
  • the first mobile terminal and the second mobile terminal perform data exchange by using WIFI or Bluetooth.
  • the method of the first embodiment of the present invention establishes a network connection between two mobile terminals through a one-way propagation technology, and then performs data exchange through the network, thereby overcoming the defect that the two-dimensional code and the like cannot perform bidirectional data transmission.
  • Embodiment 1 of the present invention As shown in Figures 2 through 4, the following examples are further provided.
  • the first mobile terminal opens WIFI
  • the first mobile terminal obtains a Mac address of the WIFI
  • the first mobile terminal sends the Mac address to the second mobile terminal by using a one-way transmission technology
  • the second mobile terminal receives the Mac address of the first mobile terminal, and opens the WIFI;
  • the second mobile terminal searches for the device preset by the local end, and hits the device corresponding to the above Mac address, that is, the first mobile terminal;
  • the second mobile terminal establishes a network connection with the first mobile terminal
  • the second mobile terminal performs data interaction with the first mobile terminal.
  • the first mobile terminal creates a WIFI hotspot, and sets a password and a security type of the hotspot. And setting a static IP to listen to a specific port;
  • the first mobile terminal transmits the name, password, security type, static IP and port of the WIFI hotspot through a one-way transmission technology
  • the WIFI is turned on
  • the second mobile terminal joins the hot spot created by the first mobile terminal
  • the second mobile terminal is connected to the first mobile terminal
  • the second mobile terminal exchanges data with the first mobile terminal.
  • the first mobile terminal turns on the Bluetooth, and sets the Bluetooth to be visible to other devices;
  • the Bluetooth is turned on
  • the second mobile terminal exchanges data with the first mobile terminal.
  • Embodiment 2 of the present invention provides a mobile terminal communication method. As shown in FIG. 5, the method in the second embodiment of the present invention includes the following steps:
  • the second mobile terminal receives the network address of the first mobile terminal by using a one-way transmission technology.
  • the first mobile terminal and the second mobile terminal in the second embodiment of the present invention have a two-dimensional code, One-way communication technology such as NFC, voiceprint communication or HotKnot, and network functions such as WIFI and Bluetooth.
  • the second mobile terminal receives the network address of the first mobile terminal by using a one-way transmission technology.
  • the two-dimensional code the first mobile terminal uses a black and white rectangle to represent binary data
  • the two-dimensional code includes the network address of the first mobile terminal
  • the second mobile terminal acquires the network address by scanning the two-dimensional code.
  • the first mobile terminal provides a radio frequency field (RF-field).
  • RF-field radio frequency field
  • the first mobile terminal may select one of the transmission speeds of 106 kbps, 212 kbps or 424 kbps to transmit its own network address to the second mobile terminal.
  • the second mobile terminal is called an NFC target device (slave device), and does not have to generate a radio frequency field, but uses load modulation technology, that is, data can be transmitted back to the first mobile terminal at the same speed.
  • the first mobile terminal can encode the network address into audio data and send it to the second mobile terminal by playing, and the second mobile terminal receives the audio data, and obtains the network address of the first mobile terminal after decoding.
  • the first mobile terminal is attached to the touch screen of the second mobile terminal, and the first mobile terminal can send the network address to the second mobile terminal through the touch screen.
  • the second mobile terminal establishes a network connection with the first mobile terminal according to the network address of the first mobile terminal.
  • the above network address is a WIFI or Bluetooth Mac address, WIFI hotspot information, and the like.
  • the second mobile terminal establishes a network connection with the first mobile terminal according to the network address.
  • the method of the second embodiment of the present invention establishes a network connection between two mobile terminals by using a one-way propagation technology, and then performs data exchange through the network, thereby overcoming the defect that the two-dimensional code and the like cannot perform bidirectional data transmission.
  • Embodiment 3 of the present invention provides a first mobile terminal.
  • the first mobile terminal includes:
  • the triggering module 10 is configured to receive an instruction that triggers a network connection
  • the sending module 20 is configured to send its own network address to the second mobile terminal by using a one-way propagation technology.
  • the sending module 20 sends its own network address to the second mobile terminal through the one-way propagation technology.
  • the first mobile terminal and the second mobile terminal in the third embodiment of the present invention have a one-way propagation technology such as two-dimensional code, NFC, voiceprint communication or HotKnot, and have network functions such as WIFI and Bluetooth.
  • the sending module 20 sends its own network address to the second mobile terminal by using a one-way propagation technology.
  • the two-dimensional code the sending module 20 uses a black and white rectangle to represent the binary data
  • the two-dimensional code includes the network address of the first mobile terminal
  • the second mobile terminal acquires the network address by scanning the two-dimensional code.
  • the transmitting module 20 provides a radio frequency field (RF-field).
  • the transmitting module 20 can select one of the transmission speeds of 106 kbps, 212 kbps or 424 kbps to transmit its own network address to the second mobile terminal.
  • the second mobile terminal is called an NFC target device (slave device), and does not have to generate a radio frequency field, but uses load modulation technology, that is, data can be transmitted back to the first mobile terminal at the same speed.
  • the voice module can encode the network address into audio data and send it to the second mobile terminal by playing, and the second mobile terminal receives the audio data, and obtains the network address of the first mobile terminal after decoding.
  • the first mobile terminal is attached to the touch screen of the second mobile terminal, and the sending module 20 can send the network address to the second mobile terminal through the touch screen.
  • the second mobile terminal establishes a network connection with the first mobile terminal according to the network address of the first mobile terminal.
  • the above network address is a WIFI or Bluetooth Mac address, WIFI hotspot information, and the like. Thereby, data exchange between the first mobile terminal and the second mobile terminal via WIFI or Bluetooth can be implemented.
  • the first mobile terminal in the third embodiment of the present invention establishes a network connection between two mobile terminals through a one-way propagation technology, and then performs data exchange through the network, thereby overcoming the defect that the two-dimensional code and the like cannot perform bidirectional data transmission.
  • a fourth mobile terminal is proposed in Embodiment 4 of the present invention. As shown in FIG. 7, the second mobile terminal includes:
  • the receiving module 30 is configured to receive, by using a one-way transmission technology, a network address of the first mobile terminal;
  • the connection module 40 is configured to establish a network connection with the first mobile terminal according to the network address.
  • the receiving module 30 of the second mobile terminal receives the network address of the first mobile terminal by using a one-way transmission technology.
  • the first mobile terminal and the second mobile terminal in the fourth embodiment of the present invention have a one-way propagation technology such as two-dimensional code, NFC, voiceprint communication or HotKnot, and have network functions such as WIFI and Bluetooth.
  • the receiving module 30 receives the network address of the first mobile terminal by using a one-way transmission technology.
  • the two-dimensional code the first mobile terminal uses a black and white rectangle to represent the binary data
  • the two-dimensional code includes the network address of the first mobile terminal
  • the receiving module 30 obtains the network address by scanning the two-dimensional code.
  • the first mobile terminal provides a radio frequency field (RF-field).
  • the first mobile terminal can select one of the transmission speeds of 106 kbps, 212 kbps or 424 kbps,
  • the own network address is sent to the second mobile terminal.
  • the second mobile terminal is called an NFC target device (slave device), and does not have to generate a radio frequency field, but uses load modulation technology, that is, data can be transmitted back to the first mobile terminal at the same speed.
  • the first mobile terminal can encode the network address into audio data and send it to the second mobile terminal through the play mode, and the receiving module 30 receives the audio data, and obtains the network address of the first mobile terminal after decoding.
  • the first mobile terminal is attached to the touch screen of the second mobile terminal, and the first mobile terminal can send the network address to the receiving module 30 through the touch screen.
  • the connection module 40 establishes a network connection with the first mobile terminal according to the network address of the first mobile terminal.
  • the above network address is a WIFI or Bluetooth Mac address, WIFI hotspot information, and the like.
  • the second mobile terminal in the fourth embodiment of the present invention establishes a network connection between two mobile terminals by using a one-way propagation technology, and then performs data exchange through the network, thereby overcoming the defect that the two-dimensional code and the like cannot perform bidirectional data transmission.
  • Embodiment 5 of the present invention provides a mobile terminal communication system.
  • the system of the second embodiment of the present invention includes: a first mobile terminal 100 and a second mobile terminal 200, where the first mobile terminal 100 is configured to send its own network address to the second by using a one-way propagation technology.
  • the mobile terminal 200 is configured to establish a network connection with the first mobile terminal 100 according to the network address of the first mobile terminal 100.
  • the first mobile terminal 100 is similar to the first mobile terminal shown in FIG. 6, and the second mobile terminal 200 is similar to the second mobile terminal shown in FIG. 7, and details are not described herein again.
  • Embodiment 5 of the present invention uses a one-way propagation technique between two mobile terminals Establishing a network connection and then exchanging data through the network overcomes the drawback that the two-dimensional code cannot perform bidirectional data transmission.
  • the invention uses existing unidirectional data transmission technologies, such as two-dimensional code, NFC, voiceprint, HotKnot, etc., to enable two mobile terminals to establish network connections such as WIFI and Bluetooth, and then realizes bidirectional data exchange through the network.
  • the embodiment of the invention overcomes the defect that the two-dimensional code and the like cannot perform bidirectional data transmission in combination with the one-way transmission data technology and the network technology.

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Abstract

本发明适用于通信领域,提供了一种移动终端通讯方法、移动终端及系统,所述方法包括如下步骤:一种移动终端通讯方法,所述方法包括如下步骤:第一移动终端接收触发网络连接的指令;通过单向传播技术发送自身的网络地址至第二移动终端,供所述第二移动终端根据所述网络地址与所述第一移动终端建立网络连接。本发明提供的移动终端通讯方法、移动终端及系统可实现移动终端的双向数据通信。

Description

移动终端通讯方法、移动终端及系统 技术领域
本发明属于通信领域,尤其涉及一种移动终端通讯方法、移动终端及系统。
背景技术
现在二维码、NFC等技术的使用场景越来越多,但二维码、NFC等都是单向传输数据,比如在二维码上承载一个网址,扫描二维码的移动设备获取到该网址后,读取二维码承载的信息,该方法只是单向读取的过程,无法做双向的数据交互。
发明内容
本发明实施例的目的在于提供一种移动终端通讯方法、移动终端及系统,旨在解决现有的使用单向数据传输技术的移动终端无法双向传输数据的问题。
本发明实施例是这样实现的,一种移动终端通讯方法,所述方法包括如下步骤:
第一移动终端接收触发网络连接的指令;
通过单向传播技术发送自身的网络地址至第二移动终端,供所述 第二移动终端根据所述网络地址与所述第一移动终端建立网络连接。
优先地,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
优先地,所述网络地址为WIFI或蓝牙的Mac地址、WIFI的热点信息。
优先地,在所述第二移动终端根据网络地址与第一移动终端建立网络连接之后,还包括:
所述第一移动终端和第二移动终端通过WIFI或蓝牙进行数据交换。
本发明还提出一种移动终端通讯方法,所述方法包括如下步骤:
第二移动终端通过单向传输技术接收第一移动终端的网络地址;
根据所述网络地址与所述第一移动终端建立网络连接。
优先地,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
本发明还提出一种第一移动终端,包括:
触发模块,设置为接收触发网络连接的指令;
发送模块,设置为通过单向传播技术发送自身的网络地址至第二移动终端,供所述第二移动终端根据所述网络地址与所述第一移动终端建立网络连接。
优先地,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
优先地,所述网络地址为WIFI或蓝牙的Mac地址、WIFI的热 点信息。
本发明还提出一种第二移动终端,包括:
接收模块,设置为通过单向传输技术接收第一移动终端的网络地址;
连接模块,设置为根据所述网络地址与所述第一移动终端建立网络连接。
优先地,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
本发明还提出一种移动终端通讯系统,包括第一移动终端和第二移动终端,所述第一移动终端包括:
触发模块,设置为接收触发网络连接的指令;
发送模块,设置为通过单向传播技术发送自身的网络地址至第二移动终端,供所述第二移动终端根据所述网络地址与所述第一移动终端建立网络连接;
所述第二移动终端包括:
接收模块,设置为通过单向传输技术接收第一移动终端的网络地址;
连接模块,设置为根据所述网络地址与所述第一移动终端建立网络连接。
优先地,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
优先地,所述网络地址为WIFI或蓝牙的Mac地址、WIFI的热 点信息。
本发明就是使用现有的单向传输数据的技术,如二维码、NFC、声纹、HotKnot等使两个移动终端建立WIFI、蓝牙等网络连接,再通过网络实现双向交换数据的目的。本发明实施例结合单向传输数据技术和网络技术,克服了二维码等技术无法进行双向数据传输的缺陷。
附图说明
图1是本发明实施例一提供的移动终端通讯方法的流程图;
图2是本发明实施例一提供的移动终端通讯方法一示例;
图3是本发明实施例一提供的移动终端通讯方法又一示例;
图4是本发明实施例一提供的移动终端通讯方法另一示例;
图5是本发明实施例二提供的移动终端通讯方法的流程图;
图6是本发明实施例三提供的第一移动终端的结构图;
图7是本发明实施例四提供的第二移动终端的结构图;
图8是本发明实施例五提供的动终端通讯系统的结构图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。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。
实施例一
本发明实施例一提出一种移动终端通讯方法。如图1所示,本发明实施例一的方法包括步骤:
S11、第一移动终端接收触发网络连接的指令。
S12、第一移动终端通过单向传播技术发送自身的网络地址至第二移动终端。本发明实施例一的第一移动终端和第二移动终端具有二维码、NFC、声纹通信或HotKnot(HotKnot技术是MTK制定的一个统一规格和标准,以触控芯片为主要感测的媒体,再通过光感应原件、重力感应原件进行辅助的传输资料,可以实现手机对手机或手机对电脑通过屏幕接触传递信息)等单向传播技术,同时具有WIFI、蓝牙等网络功能。当第一移动终端与第二移动终端需要数据交互时,第一移动终端通过单向传播技术发送自身的网络地址至第二移动终端。如二维码,第一移动终端使用黑白矩形图表示二进制数据,该二维码包含了第一移动终端的网络地址,第二移动终端通过扫描该二维码获取该网络地址。如NFC,第一移动终端提供射频场(RF-field)。第一移动终端可以选择106kbps、212kbps或424kbps其中一种传输速度,将自身的网络地址发送到第二移动终端。第二移动终端称为NFC目标设备(从设备),不必产生射频场,而使用负载调制(load modulation)技术,即可以相同的速度将数据传回第一移动终端。如声纹技术,第一移动终端可将网络地址编码成音频数据并通过播放方式发送至第二移动终端,第二移动终端接收该音频数据,解码后得到第一移动终端的网络地址。又如HotKnot,第一移动终端与第二移动终端的触摸 屏贴合,第一移动终端可通过触摸屏发送网络地址至第二移动终端。
第二移动终端根据第一移动终端的网络地址与第一移动终端建立网络连接。上述网络地址为WIFI或蓝牙的Mac地址、WIFI的热点信息等。
S13、第一移动终端和第二移动终端通过WIFI或蓝牙进行数据交换。
本发明实施例一的方法通过单向传播技术在两个移动终端之间建立网络连接,然后通过网络进行数据交换,克服了二维码等技术无法进行双向数据传输的缺陷。
为进一步阐释本发明实施例一,如图2至图4,现提供下述示例进一步说明。
示例一
第一移动终端打开WIFI;
第一移动终端获取WIFI的Mac地址;
第一移动终端通过单向传输技术发送Mac地址至第二移动终端;
第二移动终端接收第一移动终端的Mac地址,打开WIFI;
第二移动终端搜索本端预设的设备,打到与上述Mac地址对应的设备即第一移动终端;
第二移动终端与第一移动终端建立网络连接;
第二移动终端与第一移动终端进行数据交互。
示例二
第一移动终端创建一WIFI热点,并设置热点的密码、安全类型, 以及设置一个静态IP,监听某个指定端口;
第一移动终端通过单向传输技术传输WIFI热点的名字、密码、安全类型、静态IP和端口;
第二移动终端获取上述信息后,打开WIFI;
第二移动终端加入第一移动终端创建的热点;
第二移动终端连接第一移动终端;
第二移动终端与第一移动终端交换数据。
示例三
第一移动终端打开蓝牙,设置蓝牙对其它设备可见;
获取自身的蓝牙Mac地址;
通过单向传输技术发送蓝牙Mac地址至第二移动终端;
第二移动终端收到蓝牙Mac地址后,打开蓝牙;
根据收到的蓝牙Mac地址搜索附近蓝牙设备;
找到第一移动终端;
与第一移动终端建立网络连接;
第二移动终端与第一移动终端交换数据。
实施例二
本发明实施例二提出一种移动终端通讯方法。如图5所示,本发明实施例二的方法包括步骤:
S21、第二移动终端通过单向传输技术接收第一移动终端的网络地址;
本发明实施例二的第一移动终端和第二移动终端具有二维码、 NFC、声纹通信或HotKnot等单向传播技术,同时具有WIFI、蓝牙等网络功能。当第一移动终端与第二移动终端需要数据交互时,第二移动终端通过单向传输技术接收第一移动终端的网络地址。如二维码,第一移动终端使用黑白矩形图表示二进制数据,该二维码包含了第一移动终端的网络地址,第二移动终端通过扫描该二维码获取该网络地址。如NFC,第一移动终端提供射频场(RF-field)。第一移动终端可以选择106kbps、212kbps或424kbps其中一种传输速度,将自身的网络地址发送到第二移动终端。第二移动终端称为NFC目标设备(从设备),不必产生射频场,而使用负载调制(load modulation)技术,即可以相同的速度将数据传回第一移动终端。如声纹技术,第一移动终端可将网络地址编码成音频数据并通过播放方式发送至第二移动终端,第二移动终端接收该音频数据,解码后得到第一移动终端的网络地址。又如HotKnot,第一移动终端与第二移动终端的触摸屏贴合,第一移动终端可通过触摸屏发送网络地址至第二移动终端。
第二移动终端根据第一移动终端的网络地址与第一移动终端建立网络连接。上述网络地址为WIFI或蓝牙的Mac地址、WIFI的热点信息等。
S22、第二移动终端根据网络地址与第一移动终端建立网络连接。
本发明实施例二的方法通过单向传播技术在两个移动终端之间建立网络连接,然后通过网络进行数据交换,克服了二维码等技术无法进行双向数据传输的缺陷。
实施例三
本发明实施例三提出一种第一移动终端。如图6所示,该第一移动终端包括:
触发模块10,用于接收触发网络连接的指令;
发送模块20,用于通过单向传播技术发送自身的网络地址至第二移动终端。
触发模块10接收触发网络连接的指令后,发送模块20通过单向传播技术发送自身的网络地址至第二移动终端。本发明实施例三的第一移动终端和第二移动终端具有二维码、NFC、声纹通信或HotKnot等单向传播技术,同时具有WIFI、蓝牙等网络功能。当第一移动终端与第二移动终端需要数据交互时,发送模块20通过单向传播技术发送自身的网络地址至第二移动终端。如二维码,发送模块20使用黑白矩形图表示二进制数据,该二维码包含了第一移动终端的网络地址,第二移动终端通过扫描该二维码获取该网络地址。如NFC,发送模块20提供射频场(RF-field)。发送模块20可以选择106kbps、212kbps或424kbps其中一种传输速度,将自身的网络地址发送到第二移动终端。第二移动终端称为NFC目标设备(从设备),不必产生射频场,而使用负载调制(load modulation)技术,即可以相同的速度将数据传回第一移动终端。如声纹技术,发送模块20可将网络地址编码成音频数据并通过播放方式发送至第二移动终端,第二移动终端接收该音频数据,解码后得到第一移动终端的网络地址。又如HotKnot,第一移动终端与第二移动终端的触摸屏贴合,发送模块20可通过触摸屏发送网络地址至第二移动终端。
第二移动终端根据第一移动终端的网络地址与第一移动终端建立网络连接。上述网络地址为WIFI或蓝牙的Mac地址、WIFI的热点信息等。由此,可实现第一移动终端和第二移动终端通过WIFI或蓝牙进行数据交换。
本发明实施例三的第一移动终端通过单向传播技术在两个移动终端之间建立网络连接,然后通过网络进行数据交换,克服了二维码等技术无法进行双向数据传输的缺陷。
实施例四
本发明实施例四提出一种第二移动终端。如图7所示,该第二移动终端包括:
接收模块30,用于通过单向传输技术接收第一移动终端的网络地址;
连接模块40,用于根据网络地址与第一移动终端建立网络连接。
第二移动终端的接收模块30通过单向传输技术接收第一移动终端的网络地址。本发明实施例四的第一移动终端和第二移动终端具有二维码、NFC、声纹通信或HotKnot等单向传播技术,同时具有WIFI、蓝牙等网络功能。当第一移动终端与第二移动终端需要数据交互时,接收模块30通过单向传输技术接收第一移动终端的网络地址。如二维码,第一移动终端使用黑白矩形图表示二进制数据,该二维码包含了第一移动终端的网络地址,接收模块30通过扫描该二维码获取该网络地址。如NFC,第一移动终端提供射频场(RF-field)。第一移动终端可以选择106kbps、212kbps或424kbps其中一种传输速度,将 自身的网络地址发送到第二移动终端。第二移动终端称为NFC目标设备(从设备),不必产生射频场,而使用负载调制(load modulation)技术,即可以相同的速度将数据传回第一移动终端。如声纹技术,第一移动终端可将网络地址编码成音频数据并通过播放方式发送至第二移动终端,接收模块30接收该音频数据,解码后得到第一移动终端的网络地址。又如HotKnot,第一移动终端与第二移动终端的触摸屏贴合,第一移动终端可通过触摸屏发送网络地址至接收模块30。
连接模块40根据第一移动终端的网络地址与第一移动终端建立网络连接。上述网络地址为WIFI或蓝牙的Mac地址、WIFI的热点信息等。
本发明实施例四的第二移动终端通过单向传播技术在两个移动终端之间建立网络连接,然后通过网络进行数据交换,克服了二维码等技术无法进行双向数据传输的缺陷。
实施例五
本发明实施例五提出一种移动终端通讯系统。如图8所示,本发明实施例二的系统包括:第一移动终端100和第二移动终端200,其中,第一移动终端100,用于通过单向传播技术发送自身的网络地址至第二移动终端200;第二移动终端200,用于根据第一移动终端100的网络地址与第一移动终端100建立网络连接。
上述第一移动终端100与图6所示之第一移动终端类似,第二移动终端200与图7所示之第二移动终端类似,此处不再赘述。
本发明实施例五的系统通过单向传播技术在两个移动终端之间 建立网络连接,然后通过网络进行数据交换,克服了二维码等技术无法进行双向数据传输的缺陷。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。
工业实用性
本发明使用现有的单向传输数据的技术,如二维码、NFC、声纹、HotKnot等使两个移动终端建立WIFI、蓝牙等网络连接,再通过网络实现双向交换数据的目的。本发明实施例结合单向传输数据技术和网络技术,克服了二维码等技术无法进行双向数据传输的缺陷。

Claims (12)

  1. 一种移动终端通讯方法,所述方法包括如下步骤:
    第一移动终端接收触发网络连接的指令;
    通过单向传播技术发送自身的网络地址至第二移动终端,供所述第二移动终端根据所述网络地址与所述第一移动终端建立网络连接。
  2. 如权利要求1所述的方法,其中,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
  3. 如权利要求1所述的方法,其中,所述网络地址为WIFI或蓝牙的Mac地址、WIFI的热点信息。
  4. 如权利要求3所述的方法,其中,在所述第二移动终端根据网络地址与第一移动终端建立网络连接之后,还包括:
    所述第一移动终端和第二移动终端通过WIFI或蓝牙进行数据交换。
  5. 一种移动终端通讯方法,所述方法包括如下步骤:
    第二移动终端通过单向传输技术接收第一移动终端的网络地址;
    根据所述网络地址与所述第一移动终端建立网络连接。
  6. 如权利要求5所述的方法,其中,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
  7. 一种第一移动终端,包括:
    触发模块,设置为接收触发网络连接的指令;
    发送模块,设置为通过单向传播技术发送自身的网络地址至第二 移动终端,供所述第二移动终端根据所述网络地址与所述第一移动终端建立网络连接。
  8. 如权利要求7所述的第一移动终端,其中,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
  9. 如权利要求7所述的第一移动终端,其中,所述网络地址为WIFI或蓝牙的Mac地址、WIFI的热点信息。
  10. 一种第二移动终端,其中,包括:
    接收模块,设置为通过单向传输技术接收第一移动终端的网络地址;
    连接模块,设置为根据所述网络地址与所述第一移动终端建立网络连接。
  11. 如权利要求10所述的第二移动终端,其中,所述单向传输数据技术为二维码、NFC、声纹方式或HotKnot方式。
  12. 一种移动终端通讯系统,其中,包括第一移动终端和第二移动终端,所述第一移动终端为权利要求7至9中任一项所述的第一移动终端,所述第二移动终端为权利要求10或11所述的第二移动终端。
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