WO2019071514A1 - 一种智能终端的数据流量的监控方法及监控*** - Google Patents

一种智能终端的数据流量的监控方法及监控*** Download PDF

Info

Publication number
WO2019071514A1
WO2019071514A1 PCT/CN2017/105836 CN2017105836W WO2019071514A1 WO 2019071514 A1 WO2019071514 A1 WO 2019071514A1 CN 2017105836 W CN2017105836 W CN 2017105836W WO 2019071514 A1 WO2019071514 A1 WO 2019071514A1
Authority
WO
WIPO (PCT)
Prior art keywords
smart terminal
data
connection
traffic
data connection
Prior art date
Application number
PCT/CN2017/105836
Other languages
English (en)
French (fr)
Inventor
黄国军
Original Assignee
深圳传音通讯有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳传音通讯有限公司 filed Critical 深圳传音通讯有限公司
Priority to CN201780095905.3A priority Critical patent/CN111279752A/zh
Priority to PCT/CN2017/105836 priority patent/WO2019071514A1/zh
Publication of WO2019071514A1 publication Critical patent/WO2019071514A1/zh

Links

Images

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/02Access restriction performed under specific conditions
    • H04W48/06Access restriction performed under specific conditions based on traffic conditions

Definitions

  • the invention relates to the field of monitoring data traffic of an intelligent terminal, in particular to a method and a monitoring system for monitoring data traffic of an intelligent terminal.
  • intelligent terminals on the market can only monitor the data traffic consumption of the smart terminal, and automatically cut off the data connection of the smart terminal after the consumption exceeds the usage threshold set by the user, but the user is connected again after the excess amount. Data traffic no longer provides effective protection. If the user misuses, or forgets to use the excess amount to connect to the data network again, it will cause a large loss.
  • the present invention provides a method and a monitoring system for monitoring data traffic of an intelligent terminal.
  • the invention encrypts the data connection program when the data traffic consumption of the intelligent terminal reaches the preset traffic threshold, thereby preventing the user from erroneously operating and restarting the data connection caused by the smart terminal.
  • an aspect of the present invention provides a method for monitoring data traffic of an intelligent terminal, which includes the following steps: monitoring a consumption amount of data traffic of the smart terminal within a preset time, when the consumption amount is equal to one traffic a threshold, disconnecting the data connection of the smart terminal, configuring a connection password for the data connection program of the smart terminal, capturing a data connection request input by the smart terminal, and generating a password verification request, when capturing a When the first connection password with the same password is connected, the data connection of the smart terminal is started.
  • the step of monitoring the consumption of the data traffic of the smart terminal within a preset time comprises: obtaining an application list of the smart terminal having the access right of the network, and capturing the application in the preset time Calculating the data flow consumption of each application in the list, and calculating the data flow of the smart terminal in the preset time period The amount of consumption.
  • the step of configuring a connection password for the data connection program of the smart terminal comprises: capturing a connection password input to the smart terminal, and associating the connection password of the data connection program by an encryption operation, setting a setting
  • the connection password is a key for opening a data connection of the smart terminal.
  • the monitoring method further includes: after capturing a connection request input by the smart terminal, verifying the consumption of data traffic of the smart terminal, when the consumption of the data traffic is less than the traffic threshold, The data connection of the smart terminal is turned on.
  • the monitoring method further includes: when the consumption amount is equal to a traffic threshold, disconnecting the data connection of the smart terminal, locking a data connection procedure of the smart terminal, and connecting the data connection procedure of the smart terminal with Associated with the dial pad of the smart terminal, capturing a dialing number input to the smart terminal, and setting the dialing number as an unlocking key of the data connection program of the smart terminal, when capturing one and the unlocking key
  • a traffic threshold disconnecting the data connection of the smart terminal, locking a data connection procedure of the smart terminal, and connecting the data connection procedure of the smart terminal with Associated with the dial pad of the smart terminal, capturing a dialing number input to the smart terminal, and setting the dialing number as an unlocking key of the data connection program of the smart terminal, when capturing one and the unlocking key
  • the data connection of the smart terminal is turned on.
  • a monitoring system for data traffic of an intelligent terminal which includes the following module, a data traffic monitoring module, for monitoring the consumption of data traffic of the smart terminal within a preset time, first a data flow control module, configured to disconnect a data connection of the smart terminal, a first encryption module, configured with a connection password, an instruction module for the data connection program of the smart terminal, and capturing an operation instruction input to the smart terminal, requesting The module generates a password verification request according to the operation instruction input to the smart terminal, and the second data flow control module controls to open the data connection of the smart terminal.
  • the data traffic monitoring module includes: an application monitoring unit that acquires an identifier list of an application having access to the network right in the smart terminal, and the traffic obtaining unit captures the identifier of the application in the preset time The data traffic consumption of each application in the list, and the data processing unit calculates the consumption of the data traffic of the smart terminal in the preset time.
  • the first encryption module includes an instruction unit that captures a connection password input to the smart terminal, and a first encryption unit associates the connection password of the data connection program by an encryption operation, and sets the The connection password is a key for enabling the data connection of the smart terminal.
  • the monitoring system further includes: a verification module, which verifies the consumption of data traffic of the intelligent terminal, and generates an opening instruction when the consumption of the data traffic is less than the traffic threshold.
  • a verification module which verifies the consumption of data traffic of the intelligent terminal, and generates an opening instruction when the consumption of the data traffic is less than the traffic threshold.
  • the monitoring system further includes a program control module that locks a data connection program of the smart terminal, an association module, associates a data connection program of the smart terminal with a dial pad of the smart terminal, and dials a module to capture Entering a dialing number of the smart terminal, and a second encryption module, setting the dialed number to the smart The unlock key of the terminal's data connection program.
  • a program control module that locks a data connection program of the smart terminal
  • an association module associates a data connection program of the smart terminal with a dial pad of the smart terminal, and dials a module to capture Entering a dialing number of the smart terminal
  • a second encryption module setting the dialed number to the smart The unlock key of the terminal's data connection program.
  • the data connection program is encrypted and set when the data traffic consumption reaches a preset traffic threshold, thereby avoiding user error. Operation to restart the loss caused by the intelligent terminal data connection.
  • FIG. 1 is a schematic flowchart of a method for monitoring data traffic of an intelligent terminal according to a preferred embodiment of the present invention
  • FIG. 2 is a schematic flow chart of a step of preferably monitoring the consumption of data traffic of the smart terminal in a preset time in FIG. 1;
  • FIG. 3 is a schematic flow chart of a step of configuring a connection password in accordance with a data connection program of FIG. 1 , which is preferably a smart terminal;
  • FIG. 4 is a schematic flowchart of a method for monitoring data traffic of an intelligent terminal according to another preferred embodiment of the present invention.
  • FIG. 5 is a schematic flowchart of a method for monitoring data traffic of an intelligent terminal according to another preferred embodiment of the present invention.
  • FIG. 6 is a structural diagram of a data flow monitoring system of an intelligent terminal in accordance with a preferred embodiment of the present invention.
  • FIG. 7 is a structural diagram of a preferred data flow monitoring module in accordance with FIG. 6;
  • Figure 8 is a structural diagram of a preferred first encryption module in accordance with Figure 6;
  • FIG. 9 is a structural diagram of a data flow monitoring system of an intelligent terminal according to another preferred embodiment of the present invention.
  • FIG. 10 is a structural diagram of a monitoring system for data traffic of an intelligent terminal according to another preferred embodiment of the present invention.
  • the first intelligent terminal may also be referred to as a second smart terminal without departing from the scope of the present disclosure.
  • the second smart terminal may also be referred to as a first smart terminal.
  • An aspect of the present invention provides a method for monitoring data traffic of an intelligent terminal. Specific embodiments of the present invention are described in detail below by way of specific examples.
  • Embodiment 1 is a diagrammatic representation of Embodiment 1:
  • FIG. 1 is a schematic flowchart diagram of a method for monitoring data traffic of an intelligent terminal according to a preferred embodiment of the present invention. As shown in the figure, the method for monitoring data traffic of the intelligent terminal provided by this embodiment mainly includes the following steps:
  • the user can set the daily or monthly data traffic usage quota of the smart terminal autonomously.
  • a traffic threshold may be x MB/day, x GB/month, etc. depending on the customization of the data traffic. Therefore, in the embodiment, the smart terminal is provided with a data traffic monitoring module, and the data traffic monitoring module can monitor the consumption of the data traffic of the smart terminal on a daily or monthly basis according to the setting of the user.
  • FIG. 2 it is a schematic flowchart of a step of preferably monitoring the consumption of data traffic of the smart terminal in a preset time in FIG.
  • the step of monitoring the consumption of the data traffic of the smart terminal within a preset time may include the following steps:
  • the data flow monitoring module of the smart terminal includes an application monitoring unit, which can obtain a list of identifiers (UIDs) of applications having access rights to the network, because each application installed on the mobile phone is not each one. All have network access rights, so there is no need to query the traffic status of all applications on the mobile phone. Therefore, you should first obtain a list of UID (application ID) programs with network access rights, so that the next step is based on UID. Check the traffic status.
  • UIDs identifiers
  • the data flow monitoring module of the smart terminal includes a traffic acquiring unit, which can learn each The traffic status of the program, after obtaining the list of application UIDs that have access to the network, query the traffic status based on these UIDs.
  • the Android system's traffic data to the software is stored in the directory /proc/uid_stat/uid (software id), and to get its traffic, you can use a class provided by the system: TrafficStats, this class is Newly added to the system after Android 2.2. This class provides a variety of static methods, the corresponding data can be obtained by direct call, the data type returned by these methods are long, and the data unit is Byte (byte).
  • TrafficStats' statistics range includes the sending and receiving of network packets for all network interfaces. You can get the traffic information of the application UID with access rights by calling the static method in TrafficStats.
  • the implementation code is:
  • tx TrafficStats.getUidTxBytes(uId);//rx indicates the number of bytes accepted by the UID, tx indicates the number of bytes sent by the UID, and rx+tx is the current traffic of the UID.
  • the data flow monitoring module of the smart terminal further includes a data processing unit, and after obtaining the traffic information of the application UID having the access right, calculating the data of the smart terminal in the preset time. The amount of traffic consumed.
  • the first data flow control module is further disposed in the smart terminal, and after obtaining the data traffic consumption of the smart terminal in the preset time, The consumption of data traffic is compared to a pre-stored traffic threshold.
  • the first data flow control module controls the data connection of the smart terminal to be disconnected when the consumption of the data traffic of the smart terminal is equal to the traffic threshold, and the smart The terminal cannot obtain the mobile network signal, so that the mobile network data cannot be connected, thereby effectively avoiding the loss of the user caused by excessive data traffic consumption.
  • a first encryption module is disposed in the smart terminal, and the data connection program of the smart terminal is encrypted and set by the first encryption module, and is set to be After the smart terminal disconnects its data connection, the data connection program of the smart terminal starts the encryption mode, and the data connection procedure of the smart terminal can be started only when a password corresponding to a connection password is input.
  • FIG. 3 it is a schematic flowchart of a step of configuring a connection password according to a data connection program of FIG. 1 , which is preferably a smart terminal. It can be seen from the figure that the steps of configuring a connection password for the data connection program of the intelligent terminal in this embodiment mainly include:
  • the first encryption module in the smart terminal includes an instruction unit, where the instruction unit can sense a trigger operation of the smart terminal by the user, and parse the trigger operation to obtain the specific operation of the trigger operation.
  • the triggering pressure, the trigger position coordinate, and the like, convert the triggering operation into a specific digital information, thereby capturing a connection password input by the user to the smart terminal.
  • the first encryption module of the smart terminal further includes a first encryption unit, and the first encryption unit may perform encryption setting on the data connection program by using an encryption operation method. And setting the connection password to a key for enabling the data connection of the smart terminal. That is, the data connection program is set to an access restriction state, and when the user inputs a password that is consistent with the connection password to the smart terminal, the data connection procedure of the smart terminal can be started.
  • the instruction module in the smart terminal may capture the operation instruction, and send a running instruction after parsing the operation instruction.
  • the request module of the smart terminal can receive the running instruction, generate a password verification request, and send it out. Therefore, the display module of the smart terminal generates a password input box in the display interface of the smart terminal.
  • a second data flow control module is further disposed in the smart terminal, and the second data flow control module can control to open the data connection of the smart terminal.
  • the second data control module may read the password information triggered by the user in the display interface of the smart terminal, and The password information is compared with the pre-stored connection password.
  • the second data flow control module controls to enable the The data connection of the terminal.
  • Embodiment 2 is a diagrammatic representation of Embodiment 1:
  • FIG. 4 it is a schematic flowchart of a method for monitoring data traffic of an intelligent terminal according to another preferred embodiment of the present invention. It can be seen from the figure that, compared with the first embodiment, the method for monitoring data traffic of the intelligent terminal proposed in this embodiment further includes:
  • the smart terminal is further provided with a check module, where the check module can capture a connection request input by the smart terminal, and after parsing, according to the command module Running instructions to further verify the consumption of data traffic of the intelligent terminal. That is, the data traffic monitoring module is controlled to re-read the data traffic consumption of each application in the smart terminal, and recalculate the data traffic consumption of the smart terminal.
  • the verification module of the smart terminal when the verification result is that the consumption of the data traffic of the smart terminal is less than the traffic threshold, the verification module of the smart terminal generates an open command, and the second data flow control of the smart terminal The module receives the open command and controls to open a data flow connection of the smart terminal.
  • Embodiment 3 is a diagrammatic representation of Embodiment 3
  • FIG. 5 it is a schematic flowchart of a method for monitoring data traffic of an intelligent terminal according to another preferred embodiment of the present invention. It can be seen from the figure that the data flow monitoring method of the intelligent terminal provided by this embodiment further includes:
  • a program control module is disposed in the smart terminal, and after the smart terminal disconnects the data connection, the program control module locks the data connection procedure of the smart terminal, so that the user again triggers the trigger
  • the data connection program of the smart terminal requests to start the data connection program of the smart terminal, the data connection program of the smart terminal does not respond to an operation instruction issued by the user to the smart terminal.
  • the smart terminal further includes an association module, and the program control module locks the number According to the connection procedure, the association module of the smart terminal associates the data connection program of the smart terminal with the dial pad of the smart terminal. Thereby, the user can control the data connection program through the dial of the smart terminal.
  • the user can trigger a corresponding digital position in the dial of the smart terminal, and input a dialed number to the smart terminal.
  • the dialing module of the smart terminal can capture and read the dialed number.
  • the smart terminal further has a second encryption module, and the second encryption module can set the dialed number as a decryption key of the data connection program of the smart terminal by an encryption operation. That is, the data connection of the smart terminal can be turned on only when the user inputs a consistent dialing number to the smart terminal again through the dial of the smart terminal.
  • the present invention provides a more effective method for monitoring data traffic of an intelligent terminal.
  • the present invention encrypts a data connection program when the data traffic consumption of the smart terminal reaches a preset traffic threshold, thereby avoiding The user accidentally restarts the loss caused by restarting the data connection of the intelligent terminal.
  • FIG. 6 is a structural diagram of a data flow monitoring system of an intelligent terminal according to a preferred embodiment of the present invention. As can be seen from the figure, in order to implement the method for monitoring data traffic of the smart terminal in the foregoing embodiment, Another aspect of the invention provides a monitoring system for data traffic of an intelligent terminal, which specifically includes the following modules:
  • the preset time may be daily or monthly according to the amount of data traffic customized by the user.
  • the data traffic monitoring module includes the following units:
  • a list of identifiers (UIDs) for obtaining an application having access to network rights in the smart terminal Since each application installed on the mobile phone does not have network access rights, it is not necessary to query the traffic status of all applications on the mobile phone. Therefore, you should first obtain the program UID with network access rights (ie, Application ID) list, so that the next step is to query the traffic status based on the UID.
  • UIDs identifiers
  • the traffic obtaining unit may read the traffic information of the application UID having the access authority in the traffic data storage directory of the smart terminal according to the learned UID list.
  • the present invention has a first data flow control module for controlling the disconnection of the data connection of the smart terminal. Specifically, after obtaining the consumption of the data traffic of the smart terminal in the preset time, the consumption of the data traffic is compared with a pre-stored traffic threshold. When the consumption of the data traffic of the smart terminal is equal to the traffic threshold in the preset time, the first data flow control module controls the data connection of the smart terminal to be disconnected.
  • connection program of the smart terminal is configured to configure a connection password for the data connection program of the smart terminal. Therefore, after the smart terminal disconnects its data connection, the data connection program of the smart terminal starts the encryption mode, and the data connection of the smart terminal can be opened only when a password corresponding to a connection password is input. program.
  • the first cryptographic module includes the following units:
  • the command unit may sense a trigger operation of the smart terminal by the user, and parse the trigger operation, acquire a specific trigger pressure of the trigger operation, trigger a position coordinate, etc., and convert the trigger operation into one Specifically, the digital information captures a connection password entered by the user to the smart terminal.
  • the first encryption unit may associate the connection password of the data connection program by an encryption operation, that is, set the connection password to be a key for opening a data connection of the smart terminal.
  • the smart terminal further has an instruction module for capturing an operation instruction input to the smart terminal. Specifically, when the consumption of data traffic of the smart terminal reaches the traffic threshold, the data connection procedure of the smart terminal will be restricted from accessing. When the user inputs a data connection request to the smart terminal, the instruction module in the smart terminal may capture the operation instruction, and send a running instruction after parsing the operation instruction.
  • the display module of the smart terminal generates a password input box in the display interface of the smart terminal.
  • the second data control module may read the password information triggered by the user in the display interface of the smart terminal, and The password information is compared with the pre-stored connection password. When the password information is consistent with the pre-stored connection password, the second data flow control module controls to open the data connection of the smart terminal.
  • FIG. 9 is a structural diagram of a monitoring system for data traffic of a smart terminal according to another preferred embodiment of the present invention.
  • the monitoring system for the data flow of the smart terminal includes:
  • the verification module may capture, by the instruction module, a connection request input by the smart terminal, and parse the data traffic consumption of the smart terminal according to the running instruction issued by the instruction module after parsing Perform further verification. That is, the data traffic monitoring module is controlled to re-read the data traffic consumption of each application in the smart terminal, and recalculate the data traffic consumption of the smart terminal.
  • FIG. 10 it is a structural diagram of a monitoring system for data traffic of a smart terminal according to another preferred embodiment of the present invention.
  • the monitoring system for the data flow of the smart terminal includes:
  • a data connection program for locking the smart terminal Therefore, when the user requests the data connection program that triggers the smart terminal to initiate the data connection procedure of the smart terminal, the data connection program of the smart terminal does not respond to the operation instruction issued by the user to the smart terminal.
  • a dialing number input to the smart terminal is captured. Specifically, when the user triggers the dial of the smart terminal Enter a dialed number to the smart terminal in the corresponding digital location.
  • the dialing module of the smart terminal can capture and read the dialed number.
  • the second encryption module may set the dialed number as a decryption key of the data connection program of the smart terminal by an encryption operation. That is, the data connection of the smart terminal can be turned on only when the user inputs a consistent dialing number to the smart terminal again through the dial of the smart terminal.
  • the data flow monitoring system of the intelligent terminal provided by the present invention sets the data traffic monitoring module, the encryption module, etc. in the intelligent terminal, and utilizes the cooperation of the above modules to achieve the preset traffic flow in the data traffic consumption.
  • the data connection program is encrypted, so as to avoid the user's misoperation and restart the data connection caused by the intelligent terminal.

Landscapes

  • Engineering & Computer Science (AREA)
  • Computer Security & Cryptography (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Signal Processing (AREA)
  • Telephone Function (AREA)
  • Telephonic Communication Services (AREA)

Abstract

本发明提供一种智能终端的数据流量的监控方法及监控***,其包括以下步骤:监控一预设时间内,所述智能终端的数据流量的消耗量,当所述消耗量等于一流量阈值时,断开所述智能终端的数据连接,为所述智能终端的数据连接程序配置一连接密码,捕获一对所述智能终端输入的数据连接请求,生成一密码验证请求,当捕获一与所述连接密码一致的第一连接密码时,开启所述智能终端的数据连接。本发明通过在智能终端的数据流量消耗量达到预设流量阈值时,对数据连接程序进行加密设置,从而,避免用户误操作重启智能终端数据连接造成的损失。

Description

一种智能终端的数据流量的监控方法及监控*** 技术领域
本发明涉及智能终端的数据流量的监控领域,尤其涉及一种智能终端的数据流量的监控方法及监控***。
背景技术
目前,市场上的智能终端大都可以与访问网络,给用户带来极大的便利,特别是移动数据网络的覆盖范围的不断扩大,对用户的日常网络使用带来了极大的便利。但是,目前移动数据网络仍然需要向移动数据网络的运营商支付一定的费用,所以,有效的监控智能终端中数据流量的消耗量对先有智能终端来说仍然是非常有必要的。
但是,目前,市场上的智能终端仅可实现对其数据流量消耗量的监控,并在消耗量超过用户设置的使用阈值后自动切断智能终端的数据连接,但对于用户在超量后再次连接的数据流量不再提供有效的防范,若用户误操作,或者忘记已使用超量而再次连接数据网络,则会造成较大的损失。
发明内容
为克服上述问题,本发明提供一种智能终端的数据流量的监控方法及监控***。本发明通过在智能终端的数据流量消耗量达到预设流量阈值时,对数据连接程序进行加密设置,从而,避免用户误操作重启智能终端数据连接造成的损失。
具体地,本发明一方面提供一种智能终端的数据流量的监控方法,其包括以下步骤:监控一预设时间内,所述智能终端的数据流量的消耗量,当所述消耗量等于一流量阈值时,断开所述智能终端的数据连接,为所述智能终端的数据连接程序配置一连接密码,捕获一对所述智能终端输入的数据连接请求,生成一密码验证请求,当捕获一与所述连接密码一致的第一连接密码时,开启所述智能终端的数据连接。
优选地,监控一预设时间内,所述智能终端的数据流量的消耗量的步骤包括,获取所述智能终端中具有访问网络权限的应用程序列表,捕获所述预设时间内所述应用程序列表中各应用程序的数据流量消耗量,计算获得所述预设时间内所述智能终端的数据流 量的消耗量。
优选地,为所述智能终端的数据连接程序配置一连接密码的步骤包括,捕获一输入所述智能终端的连接密码,通过加密运算,将所述数据连接程序所述连接密码相关联,设置所述连接密码为开启所述智能终端的数据连接的密钥。
优选地,上述监控方法还包括,捕获一对所述智能终端输入的连接请求后,校验所述智能终端的数据流量的消耗量,当所述数据流量的消耗量小于所述流量阈值时,开启所述智能终端的数据连接。
优选地,上述监控方法还包括,当所述消耗量等于一流量阈值时,断开所述智能终端的数据连接,锁定所述智能终端的数据连接程序,将所述智能终端的数据连接程序与所述智能终端的拨号盘相关联,捕获一输入所述智能终端的拨号号码,将所述拨号号码设置为所述智能终端的数据连接程序的解锁密钥,当捕获一与所述解锁密钥一致的一第一拨号号码时,开启所述智能终端的数据连接。
本发明的另一方面,在于提供一种智能终端的数据流量的监控***,其包括以下模块,数据流量监控模块,监控一预设时间内,所述智能终端的数据流量的消耗量,第一数据流量控制模块,控制断开所述智能终端的数据连接,第一加密模块,为所述智能终端的数据连接程序配置一连接密码,指令模块,捕获对所述智能终端输入的操作指令,请求模块,根据捕获对所述智能终端输入的操作指令,生成一密码验证请求,第二数据流量控制模块,控制开启所述智能终端的数据连接。
优选地,所述数据流量监控模块包括,应用程序监控单元,获取所述智能终端中具有访问网络权限的应用程序的标识列表,流量获取单元,捕获所述预设时间内所述应用程序的标识列表中各应用程序的数据流量消耗量,数据处理单元,计算获得所述预设时间内所述智能终端的数据流量的消耗量。
优选地,所述第一加密模块包括,指令单元,捕获一输入所述智能终端的连接密码,第一加密单元,通过加密运算,将所述数据连接程序所述连接密码相关联,设置所述连接密码为开启所述智能终端的数据连接的密钥。
优选地,上述监控***还包括,校验模块,校验所述智能终端的数据流量的消耗量,当所述数据流量的消耗量小于所述流量阈值时,生成一开启指令。
优选地,上述监控***还包括,程序控制模块,锁定所述智能终端的数据连接程序,关联模块,将所述智能终端的数据连接程序与所述智能终端的拨号盘相关联,拨号模块,捕获一输入所述智能终端的拨号号码,第二加密模块,将所述拨号号码设置为所述智能 终端的数据连接程序的解锁密钥。
与现有技术相比较,本发明的技术优势在于:
本发明通过在智能终端中设置数据流量监控模块、加密模块等,并利用上述模块的配合,实现在数据流量消耗量达到预设流量阈值时,对数据连接程序进行加密设置,从而,避免用户误操作重启智能终端数据连接造成的损失。
附图说明
图1为符合本发明一优选实施例的智能终端的数据流量的监控方法的流程示意图;
图2为符合图1中一优选地监控一预设时间内的智能终端的数据流量的消耗量的步骤的流程示意图;
图3为一符合图1中一优选地为智能终端的数据连接程序配置一连接密码的步骤的流程示意图;
图4为一符合本发明另一优选实施例的智能终端的数据流量的监控方法的流程示意图;
图5为一符合本发明另一优选实施例的智能终端的数据流量的监控方法的流程示意图;
图6为一符合本发明一优选实施例的智能终端的数据流量监控***的结构图;
图7为一符合图6的优选的数据流量监控模块的结构图;
图8为一符合图6的优选的第一加密模块的结构图;
图9为一符合本发明另一优选实施例的智能终端的数据流量的监控***的结构图;
图10为一符合本发明另一优选实施例的智能终端的数据流量的监控***的结构图。
具体实施方式
下面结合附图及具体实施例,详细阐述本发明的优势。
下面的描述涉及附图时,除非另有表示,不同附图中的相同数字表示相同或相似的要素。以下示例性实施例中所描述的实施方式并不代表与本公开相一致的所有实施方式。相反,它们仅是与如所附权利要求书中所详述的、本公开的一些方面相一致的装置和方法的例子。
首先,应当理解,尽管在本公开可能采用术语第一、第二、第三等来描述各种信息,但这些信息不应限于这些术语。这些术语仅用来将同一类型的信息彼此区分开。例如, 在不脱离本公开范围的情况下,第一智能终端也可以被称为第二智能终端,类似地,第二智能终端也可以被称为第一智能终端。
目前,市场上的智能终端大都可以与访问网络,给用户带来极大的便利,特别是移动数据网络的覆盖范围的不断扩大,对用户的日常网络使用带来了极大的便利。但是,目前移动数据网络仍然需要向移动数据网络的运营商支付一定的费用,所以,有效的监控智能终端中数据流量的消耗量是非常有必要的。
为实现有效的监控智能终端数据流量的消耗情况,减少因数据流量过度消耗造成的损失。本发明一方面提供一种智能终端的数据流量的监控方法。以下通过具体实施例详细阐述本发明的具体实施方法。
实施例一:
参见图1,其为符合本发明一优选实施例的智能终端的数据流量的监控方法的流程示意图。从图中可以看出,本实施例所提供的智能终端的数据流量的监控方法主要包括以下步骤:
-监控一预设时间内,所述智能终端的数据流量的消耗量
针对定制的数据流量额度情况,用户可以自主的设置其智能终端每天或者每月的数据流量使用额度,本实施例中,称之为一流量阈值。根据数据流量的定制情况,所述流量阈值可以是x MB/天,x GB/月等。从而,本实施例中,所述智能终端中设置有一数据流量监控模块,所述数据流量监控模块可以根据用户的设置,监控每天或者每月,所述智能终端的数据流量的消耗量。
具体优选地,参阅图2,其为符合图1中一优选地监控一预设时间内的智能终端的数据流量的消耗量的步骤的流程示意图。从图中可以看出,本实施例中,监控一预设时间内所述智能终端的数据流量的消耗量的步骤可以包括以下步骤:
-获取所述智能终端中具有访问网络权限的应用程序列表
本实施例中,所述智能终端的数据流量监控模块包括一应用程序监控单元,其可获取拥有访问网络权限的应用程序的标识(UID)列表,由于安装在手机上的各应用程序并非每一个都拥有网络访问权限,因此,没有必要对手机上的所有应用程序都进行流量情况的查询,所以,应先获取拥有网络访问权限的程序UID(即应用程序ID)列表,以便下一步根据UID来查询其流量情况。
-捕获所述预设时间内所述应用程序列表中各应用程序的数据流量消耗量
本实施例中,所述智能终端的数据流量监控模块包括一流量获取单元,可在获知各 程序的流量情况,获取到了拥有访问网络权限的应用程序UID列表后,根据这些UID对其流量情况进行查询。详细的,比如,Android***对软件的流量数据都是存放在目录/proc/uid_stat/uid(软件id)下的,而要获取其流量情况,可以使用***提供的一个类:TrafficStats,这个类是在Android 2.2版本以后新添加进***里的。这个类提供了多种静态方法,通过直接调用可以获取相应的数据,这些方法所返回的数据类型均为long,且数据单位是Byte(字节)。如果返回的值为-1,则说明当前***版本无此类可以调用,属于2.2以下版本。TrafficStats的统计范围包括了所有网络接口的网络数据包的发送和接收。可以通过调用TrafficStats中的静态方法来获取拥有访问权限的应用程序UID的流量信息,其实现代码是:
int uId=info.applicationInfo.uid;
long rx=TrafficStats.getUidRxBytes(uId);
long tx=TrafficStats.getUidTxBytes(uId);//rx表示获得该UID所接受的字节数,tx表示获得该UID所发送的字节数,rx+tx即为该UID的当前流量情况。
-计算获得所述预设时间内所述智能终端的数据流量的消耗量
本实施例中,所述智能终端的数据流量监控模块还包括一数据处理单元,可在获取拥有访问权限的应用程序UID的流量信息后,计算获得所述预设时间内所述智能终端的数据流量的消耗量。
-当所述消耗量等于一流量阈值时,断开所述智能终端的数据连接,
继续参阅图1,本实施例中,所述智能终端的中还设置有一第一数据流量控制模块,其可在获得所述预设时间内所述智能终端的数据流量的消耗量后,将所述数据流量的消耗量与一预存的流量阈值相比较。当在所述预设时间内,所述智能终端的数据流量的消耗量等于所述流量阈值时,所述第一数据流量控制模块控制所述智能终端的数据连接断开,从而,所述智能终端的无法获取移动网络信号,从而无法连接移动网络数据,有效地避免了数据流量消耗过量对用户造成的损失。
-为所述智能终端的数据连接程序配置一连接密码
区别于现有技术的是,本实施例中,所述智能终端中设置有一第一加密模块,利用所述第一加密模块对所述智能终端的数据连接程序进行加密设置,并设置为当所述智能终端断开其数据连接后,所述智能终端的数据连接程序启动加密模式,仅当输入与一连接密码相一致的密码时,方可开启所述智能终端的数据连接程序。
具体地,参阅图3,其为一符合图1中一优选地为智能终端的数据连接程序配置一连接密码的步骤的流程示意图。从图中可以看出,本实施例中的为智能终端的数据连接程序配置一连接密码的步骤主要包括:
-捕获一输入所述智能终端的连接密码
本实施例中,所述智能终端中第一加密模块包括,一指令单元,所述指令单元可以感应用户对所述智能终端的触发操作,并解析所述触发操作,获取所述触发操作的具体的触发压力,触发位置坐标等,将所述触发操作转换为一具体地数字信息,从而捕获用户对所述智能终端输入的一连接密码。
-通过加密运算,将所述数据连接程序与所述连接密码相关联,设置所述连接密码为开启所述智能终端的数据连接的密钥
继续参阅图3,本实施例中,所述智能终端的第一加密模块还包括一第一加密单元,所述第一加密单元可以通过一加密运算方法,对所述数据连接程序进行加密设置,并将所述连接密码设置为开启所述智能终端的数据连接的密钥。即,将所述数据连接程序设置为访问限制状态,当用户对所述智能终端输入与所述连接密码一致的密码时,才可开启所述智能终端的数据连接程序。
-捕获一对所述智能终端输入的数据连接请求
继续参阅图1,从图中可以看出,本实施例中,当所述智能终端的数据流量的消耗量达到所述流量阈值时,所述智能终端的数据连接程序将被限制访问。从而,此后,用户再对所述智能终端输入数据连接请求时,所述智能终端中的指令模块可捕获上述操作指令,并在解析所述操作指令后,向外发送一运行指令。
-生成一密码验证请求
而,所述智能终端的请求模块可接收所述运行指令,并生成一密码验证请求,并向外发送。从而,所述智能终端的显示模块在所述智能终端的显示界面中生成一密码输入框。
-当捕获一与所述连接密码一致的第一连接密码时,开启所述智能终端的数据连接
本实施例中,所述智能终端中还相应设置有一第二数据流量控制模块,所述第二数据流量控制模块可控制开启所述智能终端的数据连接。具体地,当用户在所述智能终端中显示的密码框中输入相应的密码信息后,所述第二数据控制模块可读取用户在所述智能终端显示界面中触发的密码信息,并将所述密码信息与预存的连接密码进行比对。当所述密码信息与预存的连接密码一致时,则所述第二数据流量控制模块控制开启所述智 能终端的数据连接。
实施例二:
优选地,为了进一步提高智能终端的数据流量监控的有效性,避免监控误差造成的流量浪费的情况。参阅图4,其为一符合本发明另一优选实施例的智能终端的数据流量的监控方法的流程示意图。从图中可以看出,与实施例一相比较,本实施例所提出的智能终端的数据流量的监控方法还包括:
-捕获一对所述智能终端输入的连接请求后,校验所述智能终端的数据流量的消耗量
本实施例中,所述智能终端中还设置有一校验模块,所述校验模块可所述指令模块捕获一对所述智能终端输入的连接请求,并解析后,根据所述指令模块发出的运行指令,对所述智能终端的数据流量的消耗量进行进一步校验。即,控制所述数据流量监控模块重新读取所述智能终端中各应用程序的数据流量消耗量,并重新计算获得所述智能终端的数据流量消耗量。
-当所述数据流量的消耗量小于所述流量阈值时,开启所述智能终端的数据连接
本实施例中,当校验结果为所述智能终端的数据流量的消耗量小于所述流量阈值,则所述智能终端的校验模块生成一开启指令,所述智能终端的第二数据流量控制模块接收所述开启指令,并控制开启所述智能终端的数据流量连接。
实施例三:
优选地,为了进一步实现提醒用户智能终端的数据流量已达到限额,并避免用户误操作而开启其智能终端的数据连接。参阅图5,其为一符合本发明另一优选实施例的智能终端的数据流量的监控方法的流程示意图。从图中可以看出,本实施例提供的智能终端数据流量监控方法还包括:
-当所述消耗量等于一流量阈值时,断开所述智能终端的数据连接后,锁定所述智能终端的数据连接程序
本实施例中,所述智能终端中设置有一程序控制模块,所述程序控制模块在所述智能终端断开数据连接后,将锁定所述智能终端的数据连接程序,从而,用户再次对触发所述智能终端的数据连接程序,请求启动所述智能终端的数据连接程序时,所述智能终端的数据连接程序不响应用户对所述智能终端发出的操作指令。
-将所述智能终端的数据连接程序与所述智能终端的拨号盘相关联
本实施例中,所述智能终端进一步包括一关联模块,所述程序控制模块锁定所述数 据连接程序后,所述智能终端的关联模块将所述智能终端的数据连接程序与所述智能终端的拨号盘相关联。从而,用户可通过所述智能终端的拨号盘控制所述数据连接程序。
-捕获一输入所述智能终端的拨号号码
从而,本实施例中,用户可以触发所述智能终端的拨号盘中相应的数字位置,向所述智能终端输入一拨号号码。所述智能终端的拨号模块可捕获并读取所述拨号号码。
-将所述拨号号码设置为所述智能终端的数据连接程序的解锁密钥
本实施例中,所述智能终端中还具有一第二加密模块,所述第二加密模块可通过一加密运算,将所述拨号号码设置为所述智能终端的数据连接程序的解密密钥。即,仅当用户通过所述智能终端的拨号盘再次向所述智能终端输入一致的拨号号码时,可开启所述智能终端的数据连接。
综上所述,本发明提供一种更加有效的智能终端的数据流量监控方法,本发明通过在智能终端的数据流量消耗量达到预设流量阈值时,对数据连接程序进行加密设置,从而,避免用户误操作重启智能终端数据连接造成的损失。
参阅图6,其为一符合本发明一优选实施例的智能终端的数据流量监控***的结构图,从图中可以看出,为实现上述实施例中的智能终端的数据流量的监控方法,本发明的另一方面,在于提供一种智能终端的数据流量的监控***,其具体包括以下模块:
-数据流量监控模块
用于监控一预设时间内,所述智能终端的数据流量的消耗量。其中,所述预设时间按照用户所定制的数据流量的额度情况,可以是每天或者每月。
其中,参见图7,其为一符合图6的优选的数据流量监控模块的结构图。从图中可以看出,优选地,本实施例中,所述数据流量监控模块包括以下单元:
-应用程序监控单元
用于获取所述智能终端中具有访问网络权限的应用程序的标识(UID)列表。由于安装在手机上的各应用程序并非每一个都拥有网络访问权限,因此,没有必要对手机上的所有应用程序都进行流量情况的查询,所以,应先获取拥有网络访问权限的程序UID(即应用程序ID)列表,以便下一步根据UID来查询其流量情况。
-流量获取单元
用于捕获所述预设时间内所述应用程序的标识列表中各应用程序的数据流量消耗量。具体地,所述流量获取单元可以根据已获知的UID列表,在所述智能终端的流量数据存放目录中,读取拥有访问权限的应用程序UID的流量信息。
-数据处理单元
根据获取的拥有访问权限的应用程序UID的流量信息计算获得所述预设时间内所述智能终端的数据流量的消耗量。
-第一数据流量控制模块
继续参阅图6,本发明具有一第一数据流量控制模块,用于控制断开所述智能终端的数据连接。具体地,在获得所述预设时间内所述智能终端的数据流量的消耗量后,将所述数据流量的消耗量与一预存的流量阈值相比较。当在所述预设时间内,所述智能终端的数据流量的消耗量等于所述流量阈值时,所述第一数据流量控制模块控制所述智能终端的数据连接断开。
-第一加密模块
用于为所述智能终端的数据连接程序配置一连接密码。从而,当所述智能终端断开其数据连接后,所述智能终端的数据连接程序启动加密模式,仅当输入一与一连接密码相一致的密码时,方可开启所述智能终端的数据连接程序。
其中,参见图8,其为一符合图6的优选的第一加密模块的结构图,从图中可以看出,优选地,本实施例中,所述第一加密模块包括以下单元:
-指令单元
用于捕获一输入所述智能终端的连接密码。具体地,所述指令单元可以感应用户对所述智能终端的触发操作,并解析所述触发操作,获取所述触发操作的具体的触发压力,触发位置坐标等,将所述触发操作转换为一具体地数字信息,从而捕获用户对所述智能终端输入的一连接密码。
-第一加密单元
所述第一加密单元可以通过一加密运算,将所述数据连接程序所述连接密码相关联,也即,设置所述连接密码为开启所述智能终端的数据连接的密钥。
-指令模块
继续参阅图6,本实施例中,所述智能终端还具有一指令模块,其用于捕获对所述智能终端输入的操作指令。具体地,当所述智能终端的数据流量的消耗量达到所述流量阈值时,所述智能终端的数据连接程序将被限制访问。用户再对所述智能终端输入数据连接请求时,所述智能终端中的指令模块可捕获上述操作指令,并在解析所述操作指令后,向外发送一运行指令。
-请求模块
用于根据捕获对所述智能终端输入的操作指令,生成一密码验证请求。从而,所述智能终端的显示模块在所述智能终端的显示界面中生成一密码输入框。
-第二数据流量控制模块
用于控制开启所述智能终端的数据连接。具体地,当用户在所述智能终端中显示的密码框中输入相应的密码信息后,所述第二数据控制模块可读取用户在所述智能终端显示界面中触发的密码信息,并将所述密码信息与预存的连接密码进行比对。当所述密码信息与预存的连接密码一致时,则所述第二数据流量控制模块控制开启所述智能终端的数据连接。
优选地,参阅图9,其为一符合本发明另一优选实施例的智能终端的数据流量的监控***的结构图。从图中可以看出,本实施例中,所提供的智能终端的数据流量的监控***还包括:
-校验模块
用于校验所述智能终端的数据流量的消耗量,当所述数据流量的消耗量小于所述流量阈值时,生成一开启指令。具体地,所述校验模块可所述指令模块捕获一对所述智能终端输入的连接请求,并解析后,根据所述指令模块发出的运行指令,对所述智能终端的数据流量的消耗量进行进一步校验。即,控制所述数据流量监控模块重新读取所述智能终端中各应用程序的数据流量消耗量,并重新计算获得所述智能终端的数据流量消耗量。
优选地,参阅图10,其为一符合本发明另一优选实施例的智能终端的数据流量的监控***的结构图。从图中可以看出,本实施例中,所提供的智能终端的数据流量的监控***还包括:
-程序控制模块
用于锁定所述智能终端的数据连接程序。从而,用户再次对触发所述智能终端的数据连接程序,请求启动所述智能终端的数据连接程序时,所述智能终端的数据连接程序不响应用户对所述智能终端发出的操作指令。
-关联模块
用于将所述智能终端的数据连接程序与所述智能终端的拨号盘相关联。从而,用户可通过所述智能终端的拨号盘控制所述数据连接程序。
-拨号模块
捕获一输入所述智能终端的拨号号码。具体地,当用户触发所述智能终端的拨号盘 中相应的数字位置,向所述智能终端输入一拨号号码。所述智能终端的拨号模块可捕获并读取所述拨号号码。
-第二加密模块
用于将所述拨号号码设置所述智能终端的数据连接程序的解锁密钥。具体地,所述第二加密模块可通过一加密运算,将所述拨号号码设置为所述智能终端的数据连接程序的解密密钥。即,仅当用户通过所述智能终端的拨号盘再次向所述智能终端输入一致的拨号号码时,可开启所述智能终端的数据连接。
综上所述,本发明所提供的智能终端的数据流量监控***,通过在智能终端中设置数据流量监控模块、加密模块等,并利用上述模块的配合,实现在数据流量消耗量达到预设流量阈值时,对数据连接程序进行加密设置,从而,避免用户误操作重启智能终端数据连接造成的损失。
应当注意的是,本发明的实施例有较佳的实施性,且并非对本发明作任何形式的限制,任何熟悉该领域的技术人员可能利用上述揭示的技术内容变更或修饰为等同的有效实施例,但凡未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何修改或等同变化及修饰,均仍属于本发明技术方案的范围内。

Claims (10)

  1. 一种智能终端的数据流量的监控方法,其特征在于,包括以下步骤:
    监控一预设时间内,所述智能终端的数据流量的消耗量,
    当所述消耗量等于一流量阈值时,断开所述智能终端的数据连接,
    为所述智能终端的数据连接程序配置一连接密码,
    捕获一对所述智能终端输入的数据连接请求,
    生成一密码验证请求,
    当捕获一与所述连接密码一致的第一连接密码时,
    开启所述智能终端的数据连接。
  2. 如权利要求1所述的监控方法,其特征在于,
    监控一预设时间内,所述智能终端的数据流量的消耗量的步骤包括,
    获取所述智能终端中具有访问网络权限的应用程序列表,
    捕获所述预设时间内所述应用程序列表中各应用程序的数据流量消耗量,计算获得所述预设时间内所述智能终端的数据流量的消耗量。
  3. 如权利要求1所述的监控方法,其特征在于,
    为所述智能终端的数据连接程序配置一连接密码的步骤包括,
    捕获一输入所述智能终端的连接密码,
    通过加密运算,将所述数据连接程序所述连接密码相关联,
    设置所述连接密码为开启所述智能终端的数据连接的密钥。
  4. 如权利要求1所述的监控方法,其特征在于,
    还包括,
    捕获一对所述智能终端输入的连接请求后,
    校验所述智能终端的数据流量的消耗量,
    当所述数据流量的消耗量小于所述流量阈值时,
    开启所述智能终端的数据连接。
  5. 如权利要求1所述的监控方法,其特征在于,
    还包括,
    当所述消耗量等于一流量阈值时,断开所述智能终端的数据连接,
    锁定所述智能终端的数据连接程序,
    将所述智能终端的数据连接程序与所述智能终端的拨号盘相关联,
    捕获一输入所述智能终端的拨号号码,
    将所述拨号号码设置为所述智能终端的数据连接程序的解锁密钥,
    当捕获一与所述解锁密钥一致的一第一拨号号码时,
    开启所述智能终端的数据连接。
  6. 一种智能终端的数据流量的监控***,其特征在于,包括以下模块,
    数据流量监控模块,监控一预设时间内,所述智能终端的数据流量的消耗量,
    第一数据流量控制模块,控制断开所述智能终端的数据连接,
    第一加密模块,为所述智能终端的数据连接程序配置一连接密码,
    指令模块,捕获对所述智能终端输入的操作指令,
    请求模块,根据捕获对所述智能终端输入的操作指令,生成一密码验证请求,
    第二数据流量控制模块,控制开启所述智能终端的数据连接。
  7. 如权利要求6所述的监控***,其特征在于,
    所述数据流量监控模块包括,
    应用程序监控单元,获取所述智能终端中具有访问网络权限的应用程序的标识列表,
    流量获取单元,捕获所述预设时间内所述应用程序的标识列表中各应用程序的数据流量消耗量,
    数据处理单元,计算获得所述预设时间内所述智能终端的数据流量的消耗量。
  8. 如权利要求6所述的监控***,其特征在于,
    所述第一加密模块包括,
    指令单元,捕获一输入所述智能终端的连接密码,
    第一加密单元,通过加密运算,将所述数据连接程序所述连接密码相关联,设置所述连接密码为开启所述智能终端的数据连接的密钥。
  9. 如权利要求6所述的监控***,其特征在于,
    还包括,
    校验模块,校验所述智能终端的数据流量的消耗量,当所述数据流量的消耗量小于所述流量阈值时,生成一开启指令。
  10. 如权利要求6所述的监控***,其特征在于,
    还包括,
    程序控制模块,锁定所述智能终端的数据连接程序,
    关联模块,将所述智能终端的数据连接程序与所述智能终端的拨号盘相关联,
    拨号模块,捕获一输入所述智能终端的拨号号码,
    第二加密模块,将所述拨号号码设置为所述智能终端的数据连接程序的解锁密钥。
PCT/CN2017/105836 2017-10-12 2017-10-12 一种智能终端的数据流量的监控方法及监控*** WO2019071514A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN201780095905.3A CN111279752A (zh) 2017-10-12 2017-10-12 一种智能终端的数据流量的监控方法及监控***
PCT/CN2017/105836 WO2019071514A1 (zh) 2017-10-12 2017-10-12 一种智能终端的数据流量的监控方法及监控***

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/CN2017/105836 WO2019071514A1 (zh) 2017-10-12 2017-10-12 一种智能终端的数据流量的监控方法及监控***

Publications (1)

Publication Number Publication Date
WO2019071514A1 true WO2019071514A1 (zh) 2019-04-18

Family

ID=66100263

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2017/105836 WO2019071514A1 (zh) 2017-10-12 2017-10-12 一种智能终端的数据流量的监控方法及监控***

Country Status (2)

Country Link
CN (1) CN111279752A (zh)
WO (1) WO2019071514A1 (zh)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104918298A (zh) * 2014-03-10 2015-09-16 ***通信集团广东有限公司 一种网络连接控制方法、装置及移动终端
CN105516502A (zh) * 2015-12-16 2016-04-20 惠州Tcl移动通信有限公司 移动终端及其流量控制方法
CN105636155A (zh) * 2016-01-07 2016-06-01 广东欧珀移动通信有限公司 一种无线访问接入点的控制方法及装置
CN105704320A (zh) * 2016-03-21 2016-06-22 广东小天才科技有限公司 一种数据网络控制方法和***
CN106130818A (zh) * 2016-06-30 2016-11-16 乐视控股(北京)有限公司 网络分享、请求终端和网络共享的流量监控方法及***

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
SG11201608945WA (en) * 2014-04-25 2016-12-29 Tendyron Corp Secure data interaction method and system
CN104270526A (zh) * 2014-09-29 2015-01-07 广东欧珀移动通信有限公司 移动终端的数据流量控制方法和***

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104918298A (zh) * 2014-03-10 2015-09-16 ***通信集团广东有限公司 一种网络连接控制方法、装置及移动终端
CN105516502A (zh) * 2015-12-16 2016-04-20 惠州Tcl移动通信有限公司 移动终端及其流量控制方法
CN105636155A (zh) * 2016-01-07 2016-06-01 广东欧珀移动通信有限公司 一种无线访问接入点的控制方法及装置
CN105704320A (zh) * 2016-03-21 2016-06-22 广东小天才科技有限公司 一种数据网络控制方法和***
CN106130818A (zh) * 2016-06-30 2016-11-16 乐视控股(北京)有限公司 网络分享、请求终端和网络共享的流量监控方法及***

Also Published As

Publication number Publication date
CN111279752A (zh) 2020-06-12

Similar Documents

Publication Publication Date Title
KR102406757B1 (ko) 보안 모듈의 가입자 프로파일 프로비저닝 방법
WO2018127199A1 (zh) 一种基于智能门锁***的离线验证码的生成方法及其***
US10511601B2 (en) Security control method for social network user, social application device and terminal
US9332009B2 (en) Use, provision, customization and billing of services for mobile users through distinct electronic apparatuses
WO2017031639A1 (zh) 通信控制方法、装置、终端及网络平台
CN100466861C (zh) 手机防盗的方法
CN110719203B (zh) 智能家居设备的操作控制方法、装置、设备及存储介质
CN106097492A (zh) 一种门禁访问控制方法以及门禁***
WO2014071725A1 (zh) 软sim卡的启用方法及入网方法及终端及网络接入设备
WO2008092336A1 (en) System and method for realizing remote control to terminal data
CA2172566A1 (en) User-transparent security method and apparatus for authenticating user terminal access to a network
TW200526056A (en) Method for managing the security of applications with a security module
CN104240357B (zh) 一种门禁控制***
CN101123785A (zh) 一种通信***中管理终端的方法和***
CN103051456B (zh) 一种管理智能sd卡内应用程序的方法及***
CN101511083A (zh) 电信智能卡的认证鉴权方法和终端
CN102572804B (zh) 数据调用方法和装置
CN105718809A (zh) 移动通讯终端及其数据安全监控方法和装置
CN102387494A (zh) 一种基于Android手机平台的远程自动化信息交换和操控的解决方案
CN104891283A (zh) 一种卡密结合的电梯控制***
CN1791098B (zh) 一种实现安全联盟同步的方法
US20180270658A1 (en) User identity authentication method and device
CN102917359A (zh) 一种内置PPPoE拨号功能的移动终端及其拨号方法
CN105307135A (zh) 移动终端及其信息保护方法
WO2019071514A1 (zh) 一种智能终端的数据流量的监控方法及监控***

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 17928405

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 17928405

Country of ref document: EP

Kind code of ref document: A1