WO2018108103A1 - 一种终端联网控制方法和终端 - Google Patents

一种终端联网控制方法和终端 Download PDF

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Publication number
WO2018108103A1
WO2018108103A1 PCT/CN2017/115933 CN2017115933W WO2018108103A1 WO 2018108103 A1 WO2018108103 A1 WO 2018108103A1 CN 2017115933 W CN2017115933 W CN 2017115933W WO 2018108103 A1 WO2018108103 A1 WO 2018108103A1
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WIPO (PCT)
Prior art keywords
information
user identification
terminal
identification card
standard
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PCT/CN2017/115933
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English (en)
French (fr)
Inventor
杨柯
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中兴通讯股份有限公司
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Publication of WO2018108103A1 publication Critical patent/WO2018108103A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/183Processing at user equipment or user record carrier
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/20Transfer of user or subscriber data
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/20Transfer of user or subscriber data
    • H04W8/205Transfer to or from user equipment or user record carrier

Definitions

  • the present disclosure relates to, but is not limited to, the field of communication technologies, and in particular, to a terminal networking control method and terminal.
  • the networking of the terminal after booting is performed according to the networking information of the user identification card.
  • the user identification card is powered on first, and then the user identification card is initialized.
  • the terminal performs data interaction with the user identification card, and obtains the network information of the card from the user identification card, and then networking.
  • the embodiment of the present invention provides a terminal networking control method and a terminal, which can shorten the initialization time of the user identification card on the terminal, and shorten the time required for networking after the terminal is powered on.
  • An embodiment of the present disclosure provides a terminal networking control method, including:
  • the pre-stored standard networking information is obtained, and is networked as the network information of the user identification card.
  • the embodiment of the present disclosure further provides a terminal, including:
  • the information obtaining module is configured to: obtain unique identification information of the user identification card
  • the matching module is configured to: match the obtained unique identification information with the pre-stored standard unique identification information;
  • the network processing module is configured to: when the matching is successful, obtain pre-stored standard networking information, and use the networking information of the user identification card to perform networking.
  • Embodiments of the present disclosure also provide a computer readable storage medium storing computer executable instructions that, when executed, implement the terminal networking control method described above.
  • the embodiment of the present disclosure discloses a terminal networking control method and a terminal, which can obtain unique identification information of a user identification card; match the obtained unique identification information with standard unique identification information pre-stored in the terminal; when the matching is successful, the slave terminal Obtain pre-stored standard networking information and network it as the network information of the user identification card. Since the network information of the user identification card is pre-stored on the terminal, when the terminal is powered on or needs to be re-connected during the use of the terminal, it is not necessary to perform complex data communication with the user identification card to obtain the network information of the user identification card in real time, thereby greatly shortening the network required. Time, for the terminal boot process, greatly shortens the initialization time of the user identification card, speeds up the networking speed after the terminal is turned on, shortens the time that the bootable to the terminal can be networked, and brings a better user experience.
  • 1 is a flow chart of a terminal networking control method
  • 2 is a flowchart of a method for acquiring standard unique identification information and standard networking information after the S102 fails to match;
  • 3 is a flow chart of another terminal networking control method
  • FIG. 4 is a block diagram of a terminal.
  • FIG. 1 shows a terminal networking control method.
  • an example of an embodiment of the present disclosure provides a terminal networking control method.
  • the terminal can pre-store the network information of the user identification card, that is, standard networking. The information only needs to obtain the unique identification information of the user identification card when the terminal is powered on.
  • the standard networking information corresponding to the unique identification information can be matched from the pre-stored standard networking information. After the matching is successful, the terminal is configured.
  • the network information can be directly connected according to the matched network information, which greatly saves the time for the terminal to interact with the user identification card to obtain the network information, and brings better service to the user.
  • the terminal networking control method of this example may include:
  • connection process of the network can be performed. After the power is turned on, there is also the possibility of network reselection during the use of the terminal, so the solution of the present example can be applied to the networking process of the terminal card machine. The same can also be applied to the network re-connection process during terminal use.
  • the terminal of the present disclosure may be a terminal that accesses the Internet through a user identification card
  • the user identification card may be a standard ordinary user identification card or a standard micro user identification card.
  • the standard mini user identification card may include, but is not limited to, a micro SIM card, a micro UIM (User Identity Module) card, or a micro USIM (Universal Subscriber Identity Module) card. Including but not limited to a normal SIM card, a normal UIM card or a normal USIM card.
  • the micro SIM card, the micro UIM card or the micro USIM card can respectively be a micro SIM card, a micro UI card or a micro with a uniform design standard (such as size, shape, etc.) such as a Micro SIM card, a Micro UIM card or a Micro USIM card.
  • USIM card; ordinary SIM card, normal UIM card or common USIM card can be made of a unified design standard (such as size, shape, etc.) such as a Plug-in SIM card, a Plug-in UIM card or a Plug.
  • the user identification card of the present example may be a virtual subscriber identity card, and may include an E-SIM (Embedded-SIM).
  • the unique identification information of the subscriber identity card may be an ICCID (Integrate circuit card identity), that is, a SIM card number.
  • the ICCID can be a unique identification number of an IC (Integrate circuit) card, which is composed of 20 digits, and different user identification cards can have different ICCIDs.
  • the terminal can be pre-installed with an E-SIM card in the device at the factory, and the E-SIM card can not lock an operator network, and the user can switch through the system interface. Operator services, but also can not take out and replace the SIM card, which is the advantage of E-SIM.
  • E-SIM electronic-SIM
  • the user identification card used on the vehicle can generally be an E-SIM.
  • the probability of changing the card using the E-SIM is small, that is, the ICCID generally does not change. Therefore, when the terminal adopts the E-SIM, the step of determining the ICCID may be omitted, that is, S101 and S102 may be omitted. As a result, the time it takes for the terminal to boot up to the network is reduced.
  • the networking information of the subscriber identity card in this example may include: IMSI (International Mobile Subscriber Identification Numbe), FPLMN (Forbidden Public Land Mobile Network), and UST (USIM Service Table) , USIM Service Table)
  • IMSI International Mobile Subscriber Identification Numbe
  • FPLMN Forward Public Land Mobile Network
  • UST USIM Service Table
  • the file in the service table exists.
  • the standard networking information pre-stored in the terminal may be stored in the form of an xml (Extensible Markup Language).
  • the user identification card networking information may include the user's private information.
  • the pre-stored standard networking information may be stored in an encrypted storage manner.
  • the obtained pre-stored standard networking information is decrypted according to the decryption method corresponding to the encryption method, and the normal network information can be used normally.
  • Pre-stored standard networking information Pre-stored standard networking information.
  • a secure storage space can also be opened in the storage space of the terminal for storing pre-stored standard networking information.
  • the standard unique identification information and standard networking information pre-stored on the terminal of the present example may be obtained by communicating with the terminal that has used the user identification card, or may be once on the terminal. Obtained when using this user identification card.
  • the terminal may obtain the networking information of the user identification card as standard networking information, and when the terminal needs to be powered on again, the pre-stored standard networking information may be directly used. Therefore, optionally, the standard unique identification information and the standard networking information of the example may respectively be the initial identification process used by the user identification card in the terminal, and the unique identification information obtained by the terminal from the user identification card and the user identification card are networked. information.
  • the user identification card such as E-SIM
  • the terminal can directly bind the user identification card when leaving the factory, the binding can be directly performed before leaving the factory.
  • the network information of the user identification card is preset in the terminal, thereby saving the user time and reducing the time required for networking; of course, the network information of the bound user identification card may not be preset, but after the user purchases It is also a feasible solution to obtain the networking information of the user identification card when the user identification card is initialized for the first time.
  • the user identification card can be in a power-on state, that is, before the S101, the power-on process of the user identification card can also be included.
  • the power supply voltage of the subscriber identity card supported by the terminal may include any one of 1.8V and 3V or a combination thereof.
  • the terminal may first try a power supply voltage, for example, 1.8V, when the power supply voltage is At 1.8V, if the user identification card cannot report the response ATR (Accelerated Transient Response), it indicates that the power supply voltage selected this time does not match the user identification card requirement, and the terminal can try the voltage of 3V if the terminal can respond normally. , the file of the user identification card can be obtained, and the initialization of the user identification card is performed.
  • a power supply voltage for example, 1.8V
  • ATR Accelerated Transient Response
  • the terminal selects a voltage from the supported multiple supply voltages to supply power to the user identification card after the terminal is powered on, it may need to be tried to complete the power supply of the user identification card, and reduce the power-on time of the user identification card to make the initialization time.
  • the standard power supply voltage file can be pre-stored in the terminal to reduce the power-on time of the user identification card.
  • the method may further include:
  • the user identification card is powered by the obtained standard supply voltage file
  • a voltage file for powering the subscriber identity card is selected from the remaining subscriber identity card power supply voltage files, and the standard power supply voltage file is replaced with the selected voltage profile.
  • the pre-stored standard power supply voltage file may be a power supply voltage file obtained by the terminal through communication with other terminals that have used the user identification card, or may be a power supply voltage file acquired when the terminal uses the user identification card last time.
  • the standard supply voltage file pre-stored in this example may be the supply voltage used by the user identification card during the initialization process used in the terminal for the first time.
  • the network information can be acquired only when the user identification card is determined to be normal, so before the S102 of the present example, the terminal
  • the basic file information in the user identification card for characterizing the status of the user identification card may be obtained. For example, if the acquisition is successful, the obtained unique identification information is matched with the standard unique identification information pre-stored in the terminal.
  • the basic file information acquired by the terminal may include a security status of the user identification card, such as a PIN (Personal Identification Number) code status. If these files are obtained normally, the user identification card inserted on the terminal can be normal.
  • the user identification card may be obtained according to a normal booting process. Information about networking, power supply voltage, etc. In order to improve the booting speed of the next booting of the terminal, the networking speed is improved, and during the normal booting process, the unique identification information and networking information of the user identification card can be obtained and stored in the terminal as standard unique identification information and standard networking information. In order to speed up the next time the terminal is turned on.
  • the method may further include: updating the standard unique identification information to the obtained unique identification information; acquiring the user identification card networking information from the user identification card, and networking the standard The information is updated to obtain the user identification card networking information.
  • the terminal may first try to power on the user identification card with a voltage of 1.8V. If the user identification card is powered on successfully, the process may go to S203. If the 1.8V fails, the terminal may enter S202.
  • the terminal may apply a voltage of 3V to the user identification card, and if it is successfully powered on, it may enter S203.
  • the power supply voltage when the power is successfully turned on can be saved to the terminal as a standard power supply voltage file.
  • the ICCID of the user identification card can be obtained as the standard unique identification information and saved in the terminal, and the networked information of the user identification card can be obtained as standard networking information stored in the terminal.
  • the network information of the subscriber identity card may not be static.
  • the terminal may update the LOCI (location information) FPLMN and other files, in order to ensure the real-time and correctness of the standard network information pre-stored in the terminal.
  • the standard networking information pre-stored in the terminal needs to be updated accordingly. Therefore, in order to ensure that the pre-stored standard networking information is synchronized with the current networked information of the subscriber identity card, the terminal can monitor the network information of the subscriber identity card in real time, and when the terminal is booted up, when the subscriber identification card is detected, the subscriber identification card networking information is detected. When updating, standard networking information can be updated accordingly.
  • the update information can be directly written into the user identification card file by calling a write command, and the user identification card file can be updated by an update instruction (refresh). Therefore, the method for updating the standard networking information pre-stored in the terminal may include: writing the same content to the standard networking information pre-stored in the terminal while the terminal invokes write to write the user identification card file; or When the user identification card file is updated by the update instruction (refresh), the terminal reacquires the user identification card file, and writes the content of the file update into the standard networking information pre-stored in the terminal. If other information of the user identification card pre-stored in the terminal is updated during the use of the terminal, other information pre-stored in the terminal may be updated in a similar manner as described above.
  • the solution of the present example can be applied to a single card terminal and a multi-card terminal.
  • the terminal can acquire each card during the initialization process in which each card is used for the first time on the terminal.
  • the unique identification code and the user identification card networking information store and store the unique identification code of each card and the user identification card networking information.
  • the processing of multiple user cards can refer to the above solution.
  • the unique identification information of the user identification card can be obtained; the obtained unique identification information is matched with the standard unique identification information pre-stored in the terminal; when the matching is successful, the pre-stored standard networking information is obtained from the terminal. Networking as a network of user identification cards.
  • the network information of the user identification card is pre-stored on the terminal, when the terminal is powered on or needs to be re-networked, the network information of the user identification card is not required to be obtained from the user identification card, thereby greatly shortening the time required for networking, and the booting process for the terminal In terms of shortening the initialization time of the user identification card, It speeds up the speed of networking after the terminal is turned on, shortens the time from booting to terminal networking, and brings a better user experience.
  • directly using the pre-stored standard power supply voltage file can effectively reduce the power-on time of the user identification card, and reduce the time required for booting and the terminal networking time after power-on.
  • FIG. 3 another example of the embodiment of the present disclosure shows a terminal networking control method, which may include:
  • S302 Obtain a standard power supply voltage file stored in the terminal, and use 1.8V power-on if the standard power supply voltage file is 1.8V, and use a voltage of 3V if the standard power supply voltage file is 3V. If the power is successfully applied, the voltage is used to power the user identification card, and the process proceeds to S304. If the power is unsuccessful, the process proceeds to S303.
  • S307 Update the standard unique identification information in the terminal to the obtained unique identification information; obtain the user identification card networking information from the user identification card, and update the standard networking information in the terminal to the acquired user identification card networking information. Go to S308.
  • the standard networking information is pre-stored in the terminal. After the terminal is powered on, as long as the ICCID of the user identification card is verified, the pre-stored networking information can be used for networking. Therefore, after the terminal is powered on in this example, the terminal does not need to be The network identification information is obtained in the user identification card, the boot time is short, and the networking time is short after the terminal is powered on.
  • a terminal which may include:
  • the information obtaining module 41 is configured to: obtain unique identification information of the user identification card;
  • the matching module 42 is configured to: match the obtained unique identifier information with the pre-stored standard unique identifier information;
  • the network processing module 43 is configured to: when the matching is successful, obtain the pre-stored standard networking information, and use the networking information of the user identification card to perform networking.
  • the terminal of the present example may include, but is not limited to, a mobile phone, a car network terminal, a tablet computer, etc., and the terminal may be a single card terminal or a multi-card terminal.
  • the subscriber identity card in this example may be a standard general subscriber identity card or a standard miniature subscriber identity card.
  • a standard micro subscriber identification card may include, but is not limited to, a micro SIM card, a micro UIM card, or a mini USIM card, which may include, but is not limited to, a normal SIM card, a normal UIM card, or a normal USIM card.
  • the micro SIM card, the micro UIM card or the micro USIM card can respectively be a micro SIM card, a micro UI card or a micro with a uniform design standard (such as size, shape, etc.) such as a Micro SIM card, a Micro UIM card or a Micro USIM card.
  • USIM card ordinary SIM card, normal UIM card or common USIM card can be made of a unified design standard (such as size, shape, etc.) such as a Plug-in type SIM card, a Plug-in type UIM card or a Plug-in type.
  • a standard SIM card such as a USIM card, a standard UIM card, or a standard USIM card. It can be understood that, in addition to the physical subscriber identity card, the subscriber identity card of this example may also be a virtual subscriber identity card, including an E-SIM.
  • the unique identification information of the subscriber identity card may be an ICCID (Integrate circuit card identity), that is, a SIM card number.
  • the ICCID may be a unique identification number of the IC card, and is composed of 20 digits. The different user identification cards may have different ICCIDs.
  • the terminal can be pre-installed with the E-SIM card in the device at the factory, and the E-SIM card can not lock an operator network, and the user can pass The system interface switches operator services, and it is also possible to remove and replace the SIM card.
  • E-SIM the advantage of E-SIM.
  • the subscriber identity card used on the vehicle can generally be an E-SIM.
  • the user cannot disassemble the E-SIM by himself.
  • the probability of changing the card using the E-SIM is small, that is, the ICCID generally does not change. Therefore, when the terminal adopts the E-SIM, the step of determining the ICCID may be omitted, that is, after the booting, the network processing module 43 may The pre-stored standard networking information is obtained directly from the terminal, and is networked as the network information of the user identification card, and the matching module 42 may not match the unique identification information of the user identification card. As a result, the time it takes for the terminal to boot up to the network is reduced.
  • the networking information of the subscriber identity card in this example may include: IMSI (International Mobile Subscriber Identification Numbe), FPLMN (Forbidden Public Land Mobile Network) and other information in the UST service table.
  • the terminal of the present example may further include a storage module, and the standard unique identification information and the standard networking information may be stored in the storage module in the form of xml.
  • the user identification card networking information may include the user's private information, in order to ensure the security of the information, optionally, in the storage module, the standard unique identification information and the standard networking information may be stored in an encrypted storage manner.
  • the network processing module 43 obtains the pre-stored standard networking information, the pre-stored standard networking information is decrypted according to the decryption method corresponding to the encryption method, and the pre-stored standard networking information can be used normally.
  • the method for obtaining the standard unique identification information and the standard networking information pre-stored on the terminal of the present example may include, but is not limited to, obtaining by communication with a terminal that has used the user identification card, or when the terminal uses the user identification card last time. Obtain.
  • the terminal may obtain the networking information of the user identification card as standard networking information, and when the terminal needs to be powered on again, the pre-stored standard networking information may be directly used. Therefore, optionally, the standard unique identification information and the standard networking information of the example may respectively be the initial identification process used by the user identification card in the terminal, and the unique identification information obtained by the terminal from the user identification card and the user identification card are networked. information.
  • the terminal when the terminal is directly fixed on the terminal
  • the terminal When the user identification card (such as E-SIM) is installed, the terminal can directly bind the user identification card, and the network information of the bound user identification card can be directly preset in the terminal before leaving the factory.
  • the user saves the boot time and reduces the time required for networking; of course, the network information of the bound user identification card may not be preset, but is first turned on after the user purchases, and the terminal acquires the user identification when initializing the user identification card. Card networking information, this is also a viable solution.
  • the user identification card can be guaranteed to be in a power-on state, that is, the information acquisition module obtains the user identification from the user identification card of the terminal.
  • the card's unique identification information also requires a power-on process for the subscriber identity card.
  • the power supply voltage of the subscriber identity card supported by the terminal may include any one of 1.8V and 3V or a combination thereof.
  • the terminal may first try a power supply voltage, for example, 1.8V, when the power supply voltage is At 1.8V, if the user identification card cannot report the response ATR, it indicates that the power supply voltage selected this time does not match the user identification card requirement, and the terminal can try the voltage of 3V. If the terminal can respond normally, the file of the user identification card can be obtained. Perform initialization of the user identification card.
  • a power supply voltage for example, 1.8V
  • the terminal selects a voltage from the supported multiple supply voltages to supply power to the user identification card after the terminal is powered on, it may need to be tried to complete the power supply of the user identification card, and reduce the power-on time of the user identification card to make the initialization time. cut back.
  • the example may further include: a power supply control module 44, configured to: before the information acquisition module acquires the unique identification information of the user identification card from the user identification card of the terminal, obtain a pre-stored standard power supply voltage file from the terminal, The user identification card is powered by the obtained standard power supply voltage file, and is set to: when the user identification card fails to supply power, select a voltage file for supplying power to the user identification card from the remaining user identification card power supply voltage files, and set the standard supply voltage The file is replaced with the selected voltage file.
  • a power supply control module 44 configured to: before the information acquisition module acquires the unique identification information of the user identification card from the user identification card of the terminal, obtain a pre-stored standard power supply voltage file from the terminal, The user identification card is powered by the obtained standard power supply voltage file, and is set to: when the user identification card fails to supply power, select a voltage file for supplying power to the user identification card from the remaining user identification card power supply voltage files, and set the standard supply voltage The file is replaced with the selected voltage file.
  • the pre-stored standard power supply voltage file may be a power supply voltage file obtained by the terminal through communication with other terminals that have used the user identification card, or may be a power supply voltage file acquired when the terminal uses the user identification card last time.
  • the standard supply voltage file pre-stored in this example may be the supply voltage used by the user identification card during the initialization process used in the terminal for the first time.
  • the network information can be acquired only when the user identification card is determined to be a normal user identification card. Therefore, the information acquisition module 41 in this example is used. It can also be set to: obtain the user identification card for characterizing the use
  • the matching module 42 may be configured to: after the information acquiring module 41 obtains the basic file information successfully, the obtained unique identification information is matched with the standard unique identification information pre-stored in the terminal.
  • the basic file information may include a security status of the user identification card, such as a PIN code status.
  • the matching module 42 matches the obtained unique identifier information with the standard unique identifier information pre-stored in the terminal, there is a possibility that the matching fails.
  • the user identification card may be obtained according to a normal booting process. Information about networking, power supply voltage, etc. In order to improve the booting speed of the next booting of the terminal, the networking speed is improved, and during the normal booting process, the unique identification information and networking information of the user identification card can be obtained and stored in the terminal as standard unique identification information and standard networking information. In order to speed up the next time the terminal is turned on.
  • the network processing module 43 may be further configured to: when the obtained unique identification information does not match the standard unique identification information, update the standard unique identification information to the obtained unique identification information, and obtain the user identification card from the user identification card. Networking information, updating standard networking information to the acquired user identification card networking information.
  • the network information of the subscriber identity card may not be static.
  • the terminal may update the LOCI FPLMN and other files.
  • the terminal of the example may further include: an update control module 45, configured to: after the terminal is booted up, when the network identification information of the user identification card of the user identification card is updated, the standard networking information is updated correspondingly.
  • the update of the user identification card by the terminal may generally include two modes.
  • the write command may be directly used to write the update information into the user identification card file, and the user identification card file may be updated by an update instruction (refresh). Therefore, the method for updating the standard networking information pre-stored in the terminal by the update control module 45 may include: writing the same content to the standard networking information pre-stored in the terminal while the terminal invokes write to write the user identification card file. Or; when the user identification card file is updated by the update instruction (refresh), the user identification card file is re-acquired, and the content of the file update is written into the standard networking information pre-stored in the terminal.
  • the terminal After the terminal is powered on, the terminal does not need to perform data interaction with the user identification card to obtain the networking information of the user identification card, and can directly use the standard networking information in the pre-existing terminal to perform networking, thereby saving the terminal from obtaining the user identification card.
  • the time of networking information reduces the boot time of the terminal, reduces the time for networking after the terminal is turned on, saves user time, and brings better quality to the user. Service to enhance the user experience.
  • Embodiments of the present disclosure also provide a computer readable storage medium storing computer executable instructions that, when executed, implement the terminal networking control method described above.
  • modules or steps of the present disclosure may be implemented by a general-purpose computing device, which may be centralized on a single computing device or distributed over a network of multiple computing devices, optionally They can be implemented by program code executable by the computing device so that they can be stored in a storage medium (ROM/RAM, disk, optical disk) by the computing device and, in some cases, can be different
  • ROM/RAM, disk, optical disk a storage medium
  • the steps shown or described are performed sequentially herein, or they are separately fabricated into different integrated circuit modules, or a plurality of modules or steps are fabricated into a single integrated circuit module. Therefore, the present disclosure is not limited to any specific combination of hardware and software.
  • computer storage medium includes volatile and nonvolatile, implemented in any method or technology for storing information, such as computer readable instructions, data structures, program modules or other data. Sex, removable and non-removable media.
  • Computer storage media include, but are not limited to, Random Access Memory (RAM), Read-Only Memory (ROM), and Electrically Erasable Programmable Read-only Memory (EEPROM). Flash memory or other memory technology, CD-ROM (Compact Disc Read-Only Memory), digital versatile disc (DVD) or other optical disc storage, magnetic box, A magnetic tape, disk storage or other magnetic storage device, or any other medium that can be used to store the desired information and can be accessed by a computer.
  • communication media typically includes computer readable instructions, data structures, program modules, or other data in a modulated data signal, such as a carrier wave or other transport mechanism, and can include any information delivery media. .
  • the embodiment of the present disclosure discloses a terminal networking control method and a terminal, which can obtain unique identification information of a user identification card; match the obtained unique identification information with standard unique identification information pre-stored in the terminal; when the matching is successful, the slave terminal Obtain pre-stored standard networking information and network it as the network information of the user identification card. Since the network information of the user identification card is pre-stored on the terminal, when the terminal is powered on or needs to be re-connected during the use of the terminal, it is not necessary to perform complex data communication with the user identification card to obtain the network information of the user identification card in real time, thereby greatly shortening the network required. Time, for the terminal boot process, greatly shortens the initialization time of the user identification card, speeds up the networking speed after the terminal is turned on, shortens the time that the bootable to the terminal can be networked, and brings a better user experience.

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Abstract

一种终端联网控制方法包括:获取用户识别卡的唯一标识信息;将获取的唯一标识信息与预存的标准唯一标识信息进行匹配;匹配成功时,获取预存的标准联网信息,作为用户识别卡的联网信息进行联网。

Description

一种终端联网控制方法和终端 技术领域
本公开涉及但不限于通信技术领域,尤其是一种终端联网控制方法和终端。
背景技术
随着通信技术的不断发展,人们对终端提供的数据业务的使用也越来越广泛,在数据类产品上,如何保证用户快速的浏览互联网是制造厂家们追求的一个目标。这样不但提升产品的性能和用户体验,更能增加产品在市场上的竞争力。
一般地,终端开机后联网是根据用户识别卡的联网信息进行的。一般终端开机后,先对用户识别卡上电,然后对用户识别卡进行初始化,在初始化的过程中,终端与用户识别卡进行数据交互,从用户识别卡中获取该卡的联网信息,然后才能联网。
发明内容
以下是对本文详细描述的主题的概述。本概述并非是为了限制权利要求的保护范围。
对数据产品从连上USB(Universal Serial Bus,通用串行总线)口到连接上网络的时间进行详细分析后发现:某数据产品在SIM(Subscriber Identity Module,用户识别模块)卡初始化完成之后到连接上网络只需要大概7ms左右,而SIM卡从供电到初始化完成大概需要4s钟的时间,所以SIM卡的初始化时间优化可以成为联网时间优化的重中之重。
本公开实施例提供一种终端联网控制方法和终端,能够缩短终端上的用户识别卡初始化时间,缩短终端开机后联网所需时间。
本公开实施例提供一种终端联网控制方法,包括:
获取用户识别卡的唯一标识信息;
将获取的唯一标识信息与预存的标准唯一标识信息进行匹配;
匹配成功时,获取预存的标准联网信息,作为用户识别卡的联网信息进行联网。
本公开实施例还提供一种终端,包括:
信息获取模块,设置为:获取用户识别卡的唯一标识信息;
匹配模块,设置为:将获取的唯一标识信息与预存的标准唯一标识信息进行匹配;
联网处理模块,设置为:在匹配成功时,获取预存的标准联网信息,作为用户识别卡的联网信息进行联网。
本公开实施例还提供了一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令被执行时实现上述终端联网控制方法。
本公开实施例公开了一种终端联网控制方法和终端,可以获取用户识别卡的唯一标识信息;将获取的唯一标识信息与终端内预存的标准唯一标识信息进行匹配;匹配成功时,从终端内获取预存的标准联网信息,作为用户识别卡的联网信息进行联网。由于终端上预存用户识别卡的联网信息,所以终端开机或者终端使用过程中需要重新联网时,无需与用户识别卡进行复杂的数据交流实时获取用户识别卡的联网信息,大大缩短了联网所需的时间,对于终端开机过程而言,大大缩短了用户识别卡的初始化时间,加快了终端开机后联网的速度,缩短了开机到终端可联网的时间,带给用户更好的使用体验。
在阅读并理解了附图和详细描述后,可以明白其他方面。
附图概述
图1为一种终端联网控制方法的流程图;
图2为S102匹配失败后,获取标准唯一标识信息和标准联网信息的方法的流程图;
图3为另一种终端联网控制方法的流程图;
图4为一种终端的模块示意图。
本公开的较佳实施方式
下面结合附图对本公开的实施方式进行描述。
一实例:
图1示出了一种终端联网控制方法,参见图1,本公开实施例的一实例提供了一种终端联网控制方法,采用本方法,终端中可以预存用户识别卡的联网信息,即标准联网信息,当终端开机时,只需要获取用户识别卡的唯一标识信息,根据该唯一标识信息就可以从预存的标准联网信息中匹配与该唯一标识信息对应的标准联网信息,匹配成功后,终端就可以根据匹配出的联网信息直接联网,大大节约了终端与用户识别卡的进行数据交互获取联网信息的时间,带给用户更优质的服务。
本实例的终端联网控制方法可以包括:
S101、获取用户识别卡的唯一标识信息;
S102、将获取的唯一标识信息与预存的标准唯一标识信息进行匹配;
S103、匹配成功时,获取预存的标准联网信息,作为用户识别卡的联网信息进行联网。
一般地,在终端开机的过程中,可以进行网络的连接过程,在开机后,终端的使用过程中,也存在网络重选的可能,所以本实例的方案可适用于终端卡机时的联网过程,同样也可适用于终端使用过程中,网络的重新连接过程。
本公开的终端可以是通过用户识别卡上网的终端,用户识别卡可以是标准普通用户识别卡或标准微型用户识别卡。例如,标准微型用户识别卡可以包括但不限于微型SIM卡、微型UIM(User Identity Module,用户识别模块)卡或者微型USIM(Universal Subscriber Identity Module,全球客户识别模块)卡,标准普通用户识别卡可以包括但不限于普通SIM卡、普通UIM卡或者普通USIM卡。其中,微型SIM卡、微型UIM卡或者微型USIM卡分别可以为Micro SIM卡、Micro UIM卡或者Micro USIM卡等具有统一的设计标准(如大小、形状等)的微型SIM卡、微型UIM卡或者微型USIM卡;普通SIM卡、普通UIM卡或者普通USIM卡分别可以为采用统一设计标准(如大小、形状等)制成的如Plug-in(插入)型SIM卡、Plug-in型UIM卡或者Plug-in 型USIM卡等类型的标准SIM卡、标准UIM卡或者标准USIM卡。其中,可以理解的是,除了实体的用户识别卡外,本实例的用户识别卡还可以是虚拟用户识别卡,可以包括E-SIM(Embedded-SIM,嵌入式SIM)。用户识别卡的唯一标识信息可以为ICCID(Integrate circuit card identity,集成电路卡识别码)即SIM卡卡号。其中,ICCID可以为IC(Integrate circuit,集成电路)卡的唯一识别号码,共由20位数字组成,不同的用户识别卡ICCID可以不同。
若终端使用的用户识别卡为E-SIM,一般地,终端在出厂时可以先预装E-SIM卡在设备里,E-SIM卡可以不锁定某个运营商网络,用户可以通过系统界面切换运营商服务,同时也可以不将SIM卡拿出和更换,这是E-SIM的优点。随着通信技术的发展,越来越多的终端可以使用这种E-SIM卡,例如,当前的车联网在实现时,车辆上使用的用户识别卡一般可以为E-SIM。一般而言采用E-SIM时,用户无法自行拆卸E-SIM。所以采用该E-SIM的换卡几率很小,也就是说ICCID一般不会发生变化,所以当终端采用的是E-SIM时,可以省略判断ICCID的步骤,即S101和S102可以省略。由此,终端开机到联网的时间得到降低。
本实例中的用户识别卡的联网信息可以包括:IMSI(International Mobile Subscriber Identification Numbe,国际移动用户识别码),FPLMN(Forbidden Public Land Mobile Network,禁用公共陆地移动网络)等信息和UST(USIM Service Table,USIM服务表)服务表中标志存在的文件。终端中预存的标准联网信息可以以xml(Extensible Markup Language,可扩展标记语言)的形式存储,考虑到用户识别卡联网信息中可以包括用户的私密信息,为了确保这些信息的安全性,可选地,预存的标准联网信息可以采用加密存储的方式进行存储,在S103中,获取预存的标准联网信息时,按照与加密方法对应的解密方法对获取的预存的标准联网信息进行解密,即可正常使用预存的标准联网信息。可选地,还可以在终端的存储空间中开辟安全存储空间用于存储预存的标准联网信息。
其中,本实例的终端上预存的标准唯一标识信息和标准联网信息,可以通过与使用过该用户识别卡的终端进行通信获取,也可以是在本终端上一次 使用该用户识别卡时获取的。可选地,若用户识别卡初次在终端上使用时,终端就可以获取该用户识别卡的联网信息作为标准联网信息,当终端需要再次开机时,可以直接使用预存的标准联网信息。所以,可选地,本实例的标准唯一标识信息和标准联网信息分别可以为用户识别卡初次在终端中使用的初始化过程中,终端从该用户识别卡中获取的唯一标识信息和用户识别卡联网信息。其中,可以预见,当终端上使用直接固定在终端上的用户识别卡(例如E-SIM)时,由于出厂时,终端可以直接绑定了用户识别卡,则在出厂之前,可以直接将绑定的用户识别卡的联网信息预置在终端中,从而为用户节约开机时间,降低联网所需时间;当然,对绑定的用户识别卡的联网信息可以不进行预置,而是在用户购买后初次开机,对用户识别卡进行初始化时获取该用户识别卡的联网信息,这也是可行的方案。
一般地,终端在开机后,为了从用户识别卡中获取该用户识别卡的唯一标识信息,可以保证用户识别卡处于上电状态,即在S101前,还可以包括对用户识别卡的上电过程。终端支持的用户识别卡的供电电压可以包括1.8V和3V中任意一个或其组合,在用户识别卡的初始化过程中,一般地,终端可以首先尝试一个供电电压,例如1.8V,当供电电压为1.8V时,若用户识别卡无法上报响应ATR(Accelerated Transient Response,加速瞬态响应),说明本次选择的供电电压与用户识别卡需求不匹配,终端可以尝试3V的电压,若终端可以正常响应,则可以获取用户识别卡的文件,进行用户识别卡的初始化工作。
从上述的描述可以预见,若终端开机后,从支持的多个供电电压中选择电压为用户识别卡供电,可能需要进行尝试才可以完成用户识别卡供电,降低用户识别卡上电时间使得初始化时间减少,本实例中,可以利用在终端内预存标准供电电压档来使得用户识别卡上电时间降低。可选地,在S101中从终端的用户识别卡中获取该用户识别卡的唯一标识信息之前,还可以包括:
从终端内获取预存的标准供电电压档;
通过获取的标准供电电压档为用户识别卡供电;
在用户识别卡供电失败时,从剩余的用户识别卡供电电压档中选择为用户识别卡供电的电压档,并将标准供电电压档替换为选择的电压档。
其中,预存的标准供电电压档可以是终端通过与使用过该用户识别卡的其他终端进行通信来获取的供电电压档,也可以是在本终端上一次使用该用户识别卡时获取的供电电压档。可选地,本实例中预存的标准供电电压档可为用户识别卡初次在终端中使用的初始化过程中,使用的供电电压。
一般对于用户识别卡而言,在终端对其成功供电之后,还可以在确定该用户识别卡是正常的用户识别卡的情况下,才进行联网信息的获取,所以在本实例的S102前,终端除了获取ICCID之外,还可以获取用户识别卡中的用于表征该用户识别卡状态的基础文件信息,如获取成功,再将获取的唯一标识信息与终端内预存的标准唯一标识信息进行匹配。可选地,终端获取的基础文件信息可以包括用户识别卡的安全状态例如PIN(Personal Identification Number,个人身份号码)码状态等。若这些文件获取正常,则终端上插入的用户识别卡可以是正常的。
可选地,在S102中,将获取的唯一标识信息与终端内预存的标准唯一标识信息进行匹配时,存在匹配失败的可能性,当匹配失败时,可以按照正常的开机过程获取用户识别卡的联网信息、供电电压等等信息。为了终端下一次开机时的开机速度提升,联网速度提升,在正常的开机过程中,可以获取该用户识别卡的唯一标识信息和联网信息,并存储在终端中作为标准唯一标识信息和标准联网信息,以便终端下一次开机提速。所以,当获取的唯一标识信息与标准唯一标识信息不匹配时,还可以包括:将标准唯一标识信息更新为获取的唯一标识信息;从用户识别卡内获取用户识别卡联网信息,并将标准联网信息更新为获取的用户识别卡联网信息。
下面结合图2,对S102中,匹配失败后的获取标准唯一标识信息和标准联网信息的过程进行说明。
S201、终端可以首先尝试用1.8V的电压给用户识别卡上电,如果用户识别卡上电成功,则可以进入S203,如果1.8V失败,则可以进入S202。
S202、终端可以给用户识别卡尝试3V电压上电,如果上电成功可以进入S203。
S203、可以将本次上电成功时的供电电压作为标准供电电压档保存到终端中。
S204、可以获取用户识别卡的ICCID作为标准唯一标识信息并保存在终端中,可以获取用户识别卡的联网信息作为标准联网信息存储在终端中。
另外,用户识别卡的联网信息可以不是一成不变的,随着终端的使用,终端可能对LOCI(位置信息)FPLMN等文件进行更新,为了保证终端中预存的标准联网信息的实时性和正确性,当用户识别卡的联网信息变化时,终端中预存的标准联网信息需要能随之更新。所以为了确保预存的标准联网信息与用户识别卡当前的联网信息同步,终端可以对用户识别卡的联网信息进行实时的监控,在终端开机完成后,当检测到用户识别卡的用户识别卡联网信息更新时,可以将标准联网信息进行对应更新。
其中,由于终端对用户识别卡的更新一般可以包括两种方式,可以直接调用写(write)指令将更新信息写入用户识别卡文件,以及可以通过更新指令(refresh)更新用户识别卡文件。所以相应地,对于终端中预存的标准联网信息进行更新的方法可以包括:在终端调用write将写入用户识别卡文件的同时,写入相同的内容到终端中预存的标准联网信息中;或者,通过更新指令(refresh)更新用户识别卡文件时,终端重新获取用户识别卡文件,将文件更新的内容写入终端中预存的标准联网信息中。若终端中预存的用户识别卡的其他信息在终端的使用过程中被更新,也可以采用上述的类似方式对终端中的预存的其他信息进行更新。
可以预见,本实例的方案可以适用于单卡终端和多卡终端,当终端可以使用多张用户识别卡时,在每张卡在终端上初次使用的初始化过程中,终端可以获取每张卡的唯一标识码和用户识别卡联网信息并对获取的每张卡的唯一标识码和用户识别卡联网信息进行存储。当下一次终端开机时,对多个用户卡的处理过程可以参考上述的方案。
采用本实例的终端联网控制方法,可以获取用户识别卡的唯一标识信息;将获取的唯一标识信息与终端内预存的标准唯一标识信息进行匹配;匹配成功时,从终端内获取预存的标准联网信息,作为用户识别卡的联网信息进行联网。由此,由于终端上预存用户识别卡的联网信息,所以终端开机或需要重新联网时,无需从用户识别卡中获取用户识别卡的联网信息,大大缩短了联网所需的时间,对于终端开机过程而言,缩短了用户识别卡的初始化时间, 加快了终端开机后联网的速度,缩短了开机到终端联网的时间,带给用户更好的使用体验。
此外,在用户识别卡的上电过程中,直接使用预存的标准供电电压档,可以有效降低用户识别卡的上电时间,以及降低了开机所需时间和开机后终端联网时间。
另一实例:
参见图3,本公开实施例的另一实例示出一种终端联网控制方法,可以包括:
S301、开机。
S302、获取存储在终端中的标准供电电压档,如果标准供电电压档为1.8V则使用1.8V上电,如果标准供电电压档为3V,则使用3V的电压上电。如果上电成功,则使用该电压为用户识别卡供电,进入S304,如果上电不成功,进入S303。
S303、从剩余的用户识别卡供电电压档中选择为用户识别卡供电的电压档,并将标准供电电压档替换为选择的电压档。
S304、从用户识别卡中获取用户识别卡的ARR(Access Rule Reference,访问规则索引)信息、安全状态(如PIN码状态)等,如果这些文件获取正常,可以表明终端插入了正常的用户识别卡,则进入S305,否则终端上的用户识别卡不正常。
S305、在用户识别卡上电成功之后,获取用户识别卡中的ICCID值,将该ICCID值与终端中预存的ICCID值进行匹配,匹配成功则进入S306,否则进入S307。
S306、从终端中获取预存的标准联网信息,根据该联网信息联网。
S307、将终端中的标准唯一标识信息更新为获取的唯一标识信息;从用户识别卡内获取用户识别卡联网信息,并将终端中的标准联网信息更新为获取的用户识别卡联网信息。进入S308。
S308、根据新获取的用户识别卡联网信息进行联网。
采用本实例,在终端中预存了标准联网信息,终端开机后,只要用户识别卡的ICCID验证通过,即可使用该预存的联网信息进行联网,由此,本实例中终端开机后,终端无需从用户识别卡中获取联网信息,开机时间较短,终端开机后联网时间较短。
再一实例:
参见图4,本公开实施例的再一实例示出一种终端,可以包括:
信息获取模块41,设置为:获取用户识别卡的唯一标识信息;
匹配模块42,设置为:将获取的唯一标识信息与预存的标准唯一标识信息进行匹配;
联网处理模块43,设置为:在匹配成功时,从获取预存的标准联网信息,作为用户识别卡的联网信息进行联网。
其中,本实例的终端可以包括但不限于手机、车联网终端、平板电脑等等,该终端可以是单卡终端,也可以是多卡终端。
本实例中的用户识别卡可以是标准普通用户识别卡或标准微型用户识别卡。例如,标准微型用户识别卡可以包括但不限于微型SIM卡、微型UIM卡或者微型USIM卡,标准普通用户识别卡可以包括但不限于普通SIM卡、普通UIM卡或者普通USIM卡。其中,微型SIM卡、微型UIM卡或者微型USIM卡分别可以为Micro SIM卡、Micro UIM卡或者Micro USIM卡等具有统一的设计标准(如大小、形状等)的微型SIM卡、微型UIM卡或者微型USIM卡;普通SIM卡、普通UIM卡或者普通USIM卡分别可以为采用统一设计标准(如大小、形状等)制成的如Plug-in型SIM卡、Plug-in型UIM卡或者Plug-in型USIM卡等类型的标准SIM卡、标准UIM卡或者标准USIM卡。其中,可以理解的是,除了实体的用户识别卡外,本实例的用户识别卡还可以是虚拟用户识别卡,包括E-SIM。用户识别卡的唯一标识信息可以为ICCID(Integrate circuit card identi ty,集成电路卡识别码)即SIM卡卡号。其中,ICCID可以为IC卡的唯一识别号码,共由20位数字组成,不同的用户识别卡ICCID可以不同。
可以预见,若终端使用的用户识别卡为E-SIM,一般地,终端在出厂时可以先预装E-SIM卡在设备里,E-SIM卡可以不锁定某个运营商网络,用户可以通过系统界面切换运营商服务,同时也可以不将SIM卡拿出和更换,这是E-SIM的优点。随着通信技术的发展,越来越多的终端可以使用这种具有优势的E-SIM卡。例如,车联网在实现时,车辆上使用的用户识别卡一般可以为E-SIM。一般而言采用E-SIM时,用户无法自行拆卸E-SIM。所以采用该E-SIM的换卡几率很小,也就是说ICCID一般不会发生变化,所以当终端采用的是E-SIM时,可以省略判断ICCID的步骤,即开机后,联网处理模块43可以直接从终端内获取预存的标准联网信息,作为用户识别卡的联网信息进行联网,匹配模块42可以不进行用户识别卡的唯一标识信息的匹配。由此,终端开机到联网的时间得到降低。
本实例中的用户识别卡的联网信息可以包括:IMSI(International Mobile Subscriber Identification Numbe,国际移动用户识别码),FPLMN(Forbidden Public Land Mobile Network,禁用公共陆地移动网络)等信息和UST服务表中标志存在的文件。其中,本实例的终端还可以包括存储模块,标准唯一标识信息和标准联网信息可以以xml的形式存储在存储模块中。考虑到用户识别卡联网信息中可以包括用户的私密信息,为了确保这些信息的安全性,可选地,在存储模块中,标准唯一标识信息和标准联网信息可以采用加密存储的方式进行存储。联网处理模块43获取预存的标准联网信息时,按照与加密方法对应的解密方法对获取的预存的标准联网信息进行解密,即可正常使用预存的标准联网信息。
本实例的终端上预存的标准唯一标识信息和标准联网信息的获取方式可以包括但不限于:通过与使用过该用户识别卡的终端进行通信获取,或者本终端在上一次使用该用户识别卡时获取。可选地,若用户识别卡初次在终端上使用时,终端就可以获取该用户识别卡的联网信息作为标准联网信息,当终端需要再次开机时,可以直接使用预存的标准联网信息。所以,可选地,本实例的标准唯一标识信息和标准联网信息分别可以为用户识别卡初次在终端中使用的初始化过程中,终端从该用户识别卡中获取的唯一标识信息和用户识别卡联网信息。其中,可以预见,当终端上使用直接固定在终端上的用 户识别卡(例如E-SIM)时,由于出厂时,终端可以直接绑定了用户识别卡,则在出厂之前,可以直接将绑定的用户识别卡的联网信息预置在终端中,从而为用户节约开机时间,降低联网所需时间;当然,对绑定的用户识别卡的联网信息可以不进行预置,而是在用户购买后初次开机,终端对用户识别卡进行初始化时获取该用户识别卡的联网信息,这也是可行的方案。
一般地,终端在开机后,为了从用户识别卡中获取该用户识别卡的唯一标识信息,可以保证用户识别卡处于上电状态,即在信息获取模块从终端的用户识别卡中获取该用户识别卡的唯一标识信息之前还需要对用户识别卡的上电过程。终端支持的用户识别卡的供电电压可以包括1.8V和3V中任意一个或其组合,在用户识别卡的初始化过程中,一般地,终端可以首先尝试一个供电电压,例如1.8V,当供电电压为1.8V时,若用户识别卡无法上报响应ATR,说明本次选择的供电电压与用户识别卡需求不匹配,终端可以尝试3V的电压,若终端可以正常响应,则可以获取用户识别卡的文件,进行用户识别卡的初始化工作。
从上述的描述可以预见,若终端开机后,从支持的多个供电电压中选择电压为用户识别卡供电,可能需要进行尝试才可以完成用户识别卡供电,降低用户识别卡上电时间使得初始化时间减少。可选地,本实例还可以包括供电控制模块44,设置为:在信息获取模块从终端的用户识别卡中获取该用户识别卡的唯一标识信息之前,从终端内获取预存的标准供电电压档,通过获取的标准供电电压档为用户识别卡供电,以及设置为:在用户识别卡供电失败时,从剩余的用户识别卡供电电压档中选择为用户识别卡供电的电压档,并将标准供电电压档替换为选择的电压档。
其中,预存的标准供电电压档可以是终端通过与使用过该用户识别卡的其他终端进行通信来获取的供电电压档,也可以是在本终端上一次使用该用户识别卡时获取的供电电压档。可选地,本实例中预存的标准供电电压档可为用户识别卡初次在终端中使用的初始化过程中,使用的供电电压。
一般对于用户识别卡而言,在终端对其成功供电之后,还可以在确定该用户识别卡是正常的用户识别卡的情况下,才进行联网信息的获取,所以在本实例的信息获取模块41还可以设置为:获取用户识别卡中的用于表征该用 户识别卡状态的基础文件信息,匹配模块42可以是设置为:在信息获取模块41获取基础文件信息成功后,将获取的唯一标识信息与终端内预存的标准唯一标识信息进行匹配。其中,基础文件信息可以包括用户识别卡的安全状态例如PIN码状态等。
可选地,匹配模块42将获取的唯一标识信息与终端内预存的标准唯一标识信息进行匹配时,存在匹配失败的可能性,当匹配失败时,就可以按照正常的开机过程获取用户识别卡的联网信息、供电电压等等信息。为了终端下一次开机时的开机速度提升,联网速度提升,在正常的开机过程中,可以获取该用户识别卡的唯一标识信息和联网信息,并存储在终端中作为标准唯一标识信息和标准联网信息,以便终端下一次开机提速。所以,联网处理模块43还可以设置为:在当获取的唯一标识信息与标准唯一标识信息不匹配时,将标准唯一标识信息更新为获取的唯一标识信息,并从用户识别卡内获取用户识别卡联网信息,将标准联网信息更新为获取的用户识别卡联网信息。
另外,用户识别卡的联网信息可以不是一成不变的,随着终端的使用,终端可能对LOCI FPLMN等文件进行更新,为了确保预存的标准联网信息与用户识别卡当前的联网信息同步,参见图4,本实例的终端还可以包括:更新控制模块45,设置为:在终端开机完成后,检测到用户识别卡的用户识别卡联网信息更新时,将标准联网信息进行对应更新。
其中,由于终端对用户识别卡的更新一般可以包括两种方式,可以直接调用write指令将更新信息写入用户识别卡文件,以及可以通过更新指令(refresh)更新用户识别卡文件。所以相应地,更新控制模块45对终端中预存的标准联网信息进行更新的方法可以包括:在终端调用write将写入用户识别卡文件的同时,写入相同的内容到终端中预存的标准联网信息中;或者,通过更新指令(refresh)更新用户识别卡文件时,重新获取用户识别卡文件,将文件更新的内容写入终端中预存的标准联网信息中。
采用本实例的终端,在终端开机后,终端无需与用户识别卡进行数据交互获取用户识别卡的联网信息,可以直接使用预存在终端中的标准联网信息进行联网,节约了终端从用户识别卡获取联网信息的时间,降低了终端开机时间,降低了终端开机后联网的时间,节约了用户时间,给用户带来更优质的 服务,提升了用户体验。
本公开实施例还提供了一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令被执行时实现上述终端联网控制方法。
本领域的技术人员可以明白,上述本公开的模块或步骤可以用通用的计算装置来实现,它们可以集中在单个的计算装置上,或者分布在多个计算装置所组成的网络上,可选地,它们可以用计算装置可执行的程序代码来实现,从而,可以将它们存储在存储介质(ROM/RAM、磁碟、光盘)中由计算装置来执行,并且在某些情况下,可以以不同于此处的顺序执行所示出或描述的步骤,或者将它们分别制作成不同集成电路模块,或者将它们中的多个模块或步骤制作成单个集成电路模块来实现。所以,本公开不限制于任何特定的硬件和软件结合。
本领域普通技术人员可以理解,上文中所公开方法中的全部或某些步骤、系统、装置中的功能模块/单元可以被实施为软件、固件、硬件及其适当的组合。在硬件实施方式中,在以上描述中提及的功能模块/单元之间的划分不一定对应于物理组件的划分;例如,一个物理组件可以具有多个功能,或者一个功能或步骤可以由若干物理组件合作执行。某些组件或所有组件可以被实施为由处理器,如数字信号处理器或微处理器执行的软件,或者被实施为硬件,或者被实施为集成电路,如专用集成电路。这样的软件可以分布在计算机可读介质上,计算机可读介质可以包括计算机存储介质(或非暂时性介质)和通信介质(或暂时性介质)。如本领域普通技术人员公知的,术语计算机存储介质包括在用于存储信息(诸如计算机可读指令、数据结构、程序模块或其他数据)的任何方法或技术中实施的易失性和非易失性、可移除和不可移除介质。计算机存储介质包括但不限于随机存取存储器(RAM,Random Access Memory)、只读存储器(ROM,Read-Only Memory)、电可擦除只读存储器(EEPROM,Electrically Erasable Programmable Read-only Memory)、闪存或其他存储器技术、光盘只读存储器(CD-ROM,Compact Disc Read-Only Memory)、数字多功能盘(DVD)或其他光盘存储、磁盒、 磁带、磁盘存储或其他磁存储装置、或者可以用于存储期望的信息并且可以被计算机访问的任何其他的介质。此外,本领域普通技术人员公知的是,通信介质通常包含计算机可读指令、数据结构、程序模块或者诸如载波或其他传输机制之类的调制数据信号中的其他数据,并且可包括任何信息递送介质。
本领域的普通技术人员可以理解,可以对本公开的技术方案进行修改或者等同替换,而不脱离本公开技术方案的精神和范围,均应涵盖在本公开的权利要求范围当中。
工业实用性
本公开实施例公开了一种终端联网控制方法和终端,可以获取用户识别卡的唯一标识信息;将获取的唯一标识信息与终端内预存的标准唯一标识信息进行匹配;匹配成功时,从终端内获取预存的标准联网信息,作为用户识别卡的联网信息进行联网。由于终端上预存用户识别卡的联网信息,所以终端开机或者终端使用过程中需要重新联网时,无需与用户识别卡进行复杂的数据交流实时获取用户识别卡的联网信息,大大缩短了联网所需的时间,对于终端开机过程而言,大大缩短了用户识别卡的初始化时间,加快了终端开机后联网的速度,缩短了开机到终端可联网的时间,带给用户更好的使用体验。

Claims (11)

  1. 一种终端联网控制方法,包括:
    获取用户识别卡的唯一标识信息;
    将获取的唯一标识信息与预存的标准唯一标识信息进行匹配;
    匹配成功时,获取预存的标准联网信息,作为所述用户识别卡的联网信息进行联网。
  2. 如权利要求1所述的终端联网控制方法,获取的用户识别卡的唯一标识信息之前,还包括:
    获取预存的标准供电电压档;
    通过获取的所述标准供电电压档为所述用户识别卡供电;
    在所述用户识别卡供电失败时,从剩余的用户识别卡供电电压档中选择为所述用户识别卡供电的电压档,并将所述标准供电电压档替换为选择的电压档。
  3. 如权利要求1所述的终端联网控制方法,当获取的唯一标识信息与所述标准唯一标识信息不匹配时,还包括:
    将所述标准唯一标识信息更新为获取的所述唯一标识信息;
    从所述用户识别卡内获取用户识别卡联网信息,并将所述标准联网信息更新为获取的用户识别卡联网信息。
  4. 如权利要求1至3任一项所述的终端联网控制方法,还包括:
    在所述终端开机完成后,检测到所述用户识别卡的用户识别卡联网信息更新时,将所述标准联网信息进行对应更新。
  5. 如权利要求1至3任一项所述的终端联网控制方法,将获取的唯一标识信息与预存的标准唯一标识信息进行匹配之前,还包括:
    从所述用户识别卡中获取用于表征该用户识别卡状态的基础文件信息,如获取成功,再将获取的唯一标识信息与预存的标准唯一标识信息进行匹配。
  6. 如权利要求1至3任一项所述的终端联网控制方法,其中,所述标准唯一标识信息和所述标准联网信息分别为用户识别卡初次在所述终端中使用 的初始化过程中,从该用户识别卡中获取的唯一标识信息和用户识别卡联网信息。
  7. 一种终端,包括:
    信息获取模块,设置为:获取用户识别卡的唯一标识信息;
    匹配模块,设置为:将所述唯一标识信息与预存的标准唯一标识信息进行匹配;
    联网处理模块,设置为:在所述匹配成功时,获取预存的标准联网信息,作为所述用户识别卡的联网信息进行联网。
  8. 如权利要求7所述的终端,所述联网处理模块还设置为:在所述唯一标识信息与所述标准唯一标识信息不匹配时,将所述标准唯一标识信息更新为获取的所述唯一标识信息,并从所述用户识别卡内获取用户识别卡联网信息,将所述标准联网信息更新为获取的用户识别卡联网信息。
  9. 如权利要求7所述的终端,还包括供电控制模块,设置为:在所述信息获取模块获取所述唯一标识信息之前,获取预存的标准供电电压档为所述用户识别卡供电,以及设置为:在所述用户识别卡供电失败时,从剩余的用户识别卡供电电压档中选择为所述用户识别卡供电的电压档,并将所述标准供电电压档替换为选择的电压档。
  10. 如权利要求7至9任一项所述的终端,还包括更新控制模块,设置为:检测到所述用户识别卡的用户识别卡联网信息更新时,将所述标准联网信息进行对应更新。
  11. 一种计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令被执行时实现如权利要求1至6中任一权利要求所述的终端联网控制方法。
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CN113938873B (zh) * 2020-07-14 2024-04-16 宇龙计算机通信科技(深圳)有限公司 网络锁卡方法、装置、存储介质及终端

Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1691802A (zh) * 2004-04-22 2005-11-02 上海迪比特实业有限公司 一种获取移动电话用户信息的方法
CN1719919A (zh) * 2004-07-09 2006-01-11 上海迪比特实业有限公司 一种获取移动电话用户信息的方法
US20070123305A1 (en) * 2005-11-29 2007-05-31 Chun-Wei Chen Method For Securing a Near Field Communication Device of a Mobile Phone
CN101287193A (zh) * 2007-04-09 2008-10-15 中兴通讯股份有限公司 保护使用相关联用户识别卡时存储在手机上信息的方法
CN101420697A (zh) * 2008-11-27 2009-04-29 中兴通讯股份有限公司 移动终端的加密处理方法和装置
CN102098661A (zh) * 2010-12-27 2011-06-15 华为终端有限公司 移动终端及sim卡信息处理方法
CN105101170A (zh) * 2014-05-16 2015-11-25 中兴通讯股份有限公司 一种用户识别卡自适配的方法、装置及终端
CN105682217A (zh) * 2016-01-27 2016-06-15 宇龙计算机通信科技(深圳)有限公司 网络注册方法、网络注册装置和终端

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101854426A (zh) * 2010-01-26 2010-10-06 宇龙计算机通信科技(深圳)有限公司 一种移动终端开机启动的方法、系统及移动终端
CN103853967A (zh) * 2012-12-03 2014-06-11 联想(北京)有限公司 一种信息处理的方法及电子设备
CN105376728A (zh) * 2014-08-26 2016-03-02 中兴通讯股份有限公司 一种开机方法及通信终端
CN104507070B (zh) * 2014-12-31 2019-01-25 宇龙计算机通信科技(深圳)有限公司 信息加载的方法、装置及终端

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1691802A (zh) * 2004-04-22 2005-11-02 上海迪比特实业有限公司 一种获取移动电话用户信息的方法
CN1719919A (zh) * 2004-07-09 2006-01-11 上海迪比特实业有限公司 一种获取移动电话用户信息的方法
US20070123305A1 (en) * 2005-11-29 2007-05-31 Chun-Wei Chen Method For Securing a Near Field Communication Device of a Mobile Phone
CN101287193A (zh) * 2007-04-09 2008-10-15 中兴通讯股份有限公司 保护使用相关联用户识别卡时存储在手机上信息的方法
CN101420697A (zh) * 2008-11-27 2009-04-29 中兴通讯股份有限公司 移动终端的加密处理方法和装置
CN102098661A (zh) * 2010-12-27 2011-06-15 华为终端有限公司 移动终端及sim卡信息处理方法
CN105101170A (zh) * 2014-05-16 2015-11-25 中兴通讯股份有限公司 一种用户识别卡自适配的方法、装置及终端
CN105682217A (zh) * 2016-01-27 2016-06-15 宇龙计算机通信科技(深圳)有限公司 网络注册方法、网络注册装置和终端

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