WO2016141626A1 - 一种基于多系统的检卡方法、装置及终端 - Google Patents
一种基于多系统的检卡方法、装置及终端 Download PDFInfo
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- WO2016141626A1 WO2016141626A1 PCT/CN2015/078030 CN2015078030W WO2016141626A1 WO 2016141626 A1 WO2016141626 A1 WO 2016141626A1 CN 2015078030 W CN2015078030 W CN 2015078030W WO 2016141626 A1 WO2016141626 A1 WO 2016141626A1
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- sim card
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/22—Processing or transfer of terminal data, e.g. status or physical capabilities
- H04W8/24—Transfer of terminal data
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- the present invention relates to the field of mobile communication terminal technologies, and in particular, to a multi-system based card checking method, apparatus and terminal.
- the physical card slot is unique. How to enable all systems to detect the status of the SIM (Subscriber Identity Module) card and obtain the corresponding SIM card information, which determines the communication of each mounted system. Whether the function can be performed normally. Because on the multi-system terminal, if the card-checking solution is not implemented, the status of the SIM card mastered between the systems will be inconsistent, resulting in the system failing to implement all communication services.
- SIM Subscriber Identity Module
- the technical problem to be solved by the present invention is to provide a multi-system based card checking method, device and terminal, and acquire information of a SIM card synchronously in all systems of the terminal.
- the multi-system based card checking method has a main control system and at least one common system installed in the terminal, and the method includes:
- the main control system When the terminal is powered on, the main control system obtains the status information of the SIM card, saves it in the main control system, and synchronizes it to each common system;
- the SIM card When any one of the terminals obtains an operation instruction to the SIM card, the SIM card is operated, and then the state information of the SIM card is synchronized in all systems of the terminal.
- each system of the terminal interacts through an inter-system communication channel
- the main control system acquires the status information of the SIM card, saves it in the system, and synchronizes it to each common system, including:
- the main control system acquires the status information of the SIM card through the communication module of the terminal, saves it in the system, and synchronizes it to each common system.
- any system obtains an operation instruction for the SIM card, including:
- Any system generates an operation instruction for the SIM card according to the configuration of the system or according to the operation of the SIM card by the user in the user interface of the system.
- the SIM card is operated, and then the status information of the SIM card is synchronized in all systems of the terminal, including:
- Step 1 The system directly operates the SIM card; or the system operates the SIM card through the main control system;
- Step 2 The communication module of the terminal synchronizes the status information of the changed SIM card to all systems; or the communication module of the terminal sends the status information of the changed SIM card to the main control system, and then synchronizes to the main control system through the main control system. In every ordinary system.
- main control system is a management system without a user interface
- the SIM card is operated, and then the status information of the SIM card is synchronized in all systems of the terminal, including:
- Step 1 The system operates the SIM card by using the main control system
- Step 2 The communication module of the terminal sends the status information of the changed SIM card to the main control system, and then synchronizes to each common system through the main control system.
- the invention also provides a multi-system based card checking device, comprising: a main control system installed in the terminal and at least one common system, wherein:
- the main control system is configured to obtain the status information of the SIM card when the terminal is powered on, save the information in the main control system, and synchronize to each common system;
- Any one of the main control system and the general system is configured to operate the SIM card when obtaining an operation instruction to the SIM card, and then synchronize the state information of the SIM card in all systems of the terminal.
- each system of the terminal interacts through an inter-system communication channel
- the device further includes:
- a communication module configured to acquire status information of the SIM card
- the main control system is configured to: when the terminal is powered on, obtain the state information of the SIM card through the communication module of the terminal, save the system information in the system, and synchronize to each common system.
- any one of the systems is used to:
- the communication module is further configured to synchronize status information of the changed SIM card to all systems; or send status information of the changed SIM card to the main control system, and then synchronize to the common system through the main control system.
- main control system is a management system without a user interface
- the communication module is further configured to send status information of the changed SIM card to the main control system, and then synchronize to each common system through the main control system.
- the present invention has at least the following advantages:
- the multi-system based card checking method, device and terminal provide a card checking mode on a terminal with multiple systems, which can realize the synchronization of SIM card information between multiple systems and ensure the call of each system.
- the normal operation of communication services such as SMS and data services avoids the inconsistency of communication services in various systems.
- FIG. 1 is a flowchart of a multi-system based card checking method according to a first embodiment of the present invention
- FIG. 2 is a flowchart of a multi-system based card checking method according to a second embodiment of the present invention
- FIG. 3 is a schematic structural diagram of a multi-system based card detecting device according to third and fourth embodiments of the present invention.
- FIG. 4 is a schematic diagram of module function division of a terminal according to application example 1 of the present invention.
- FIG. 5 is a schematic diagram of module function division of a terminal according to application example 2 of the present invention.
- FIG. 6 is a schematic diagram of a terminal according to an embodiment of the present invention.
- a first embodiment of the present invention is a multi-system based card checking method.
- a terminal control system and at least one common system are installed in the terminal, and each system of the terminal interacts through an inter-system communication channel, as shown in FIG.
- the method includes the following specific steps:
- Step S101 when the terminal is powered on, the main control system acquires the state information of the SIM card, saves it in the main control system, and synchronizes to each common system;
- the main control system acquires the state information of the SIM card through the communication module of the terminal, saves it in the system, and synchronizes to each common system.
- the synchronization to each common system includes the following two methods: active synchronization to each common system, or synchronization to each common system based on the request of each common system. Regardless of the above-mentioned synchronization mode, the main control system synchronizes the state information of the SIM card to each common system through the inter-system communication channel.
- Step S102 When any one of the terminals obtains an operation instruction for the SIM card, the SIM card is operated, and then the state information of the SIM card is synchronized in all systems of the terminal.
- any system obtains an operation instruction for the SIM card, including:
- Any system generates an operation instruction for the SIM card according to the configuration of the system or according to the operation of the SIM card by the user in the user interface of the system.
- step S102 the SIM card is operated, and then the status information of the SIM card is synchronized in all systems of the terminal, including:
- Step 1 The system directly operates the SIM card; or the system operates the SIM card through the master control system.
- any one of the systems operates the SIM card through the main control system
- the SIM card is directly operated by the main control system, if any If the system is a general system other than the main control system, the operation command must be sent to the main control system through the inter-system communication channel, and then the main control system operates the SIM card.
- Step 2 The communication module of the terminal synchronizes the status information of the changed SIM card to all systems; or the communication module of the terminal sends the status information of the changed SIM card to the main control system, and then synchronizes to the main control system through the main control system. In every ordinary system.
- the second embodiment of the present invention is a multi-system based card checking method.
- the method in this embodiment is substantially the same as the first embodiment.
- the main control system of the embodiment is a user interface.
- Management system in this case, the main control system can not be used for user interface operation, but only used to provide card synchronization services for all common systems, so after the terminal is turned on, the main control system cannot directly obtain the right
- the SIM card operates in the instruction. Therefore, in step S202 of the embodiment, only the system other than the main control system obtains an operation instruction for the SIM card and transmits it to the main control system.
- the multi-system based card checking method of this embodiment includes the following specific steps:
- Step S201 When the terminal is powered on, the main control system acquires the state information of the SIM card, saves it in the main control system, and synchronizes to each common system. Specifically, step S201 of the present embodiment is the same as the specific content of step S101 of the first embodiment.
- Step S202 when any system other than the main control system obtains an operation instruction for the SIM card, the SIM card is operated, and then the state information of the SIM card is synchronized in all systems of the terminal.
- step S202 of this embodiment includes:
- Step 1 any system other than the main control system operates the SIM card through a main control system;
- Step 2 The communication module of the terminal sends the status information of the changed SIM card to the main control system, and then synchronizes to each common system through the main control system.
- the third embodiment of the present invention corresponds to the first embodiment.
- This embodiment introduces a multi-system based card checking device.
- the present invention includes: a main control system 100 installed in the terminal and at least one common System 200, the systems of the terminal interact with each other through an intersystem communication channel, wherein:
- the main control system 100 is configured to acquire status information of the SIM card when the terminal is powered on, save the information in the main control system, and synchronize to each common system;
- the main control system 100 is configured to: when the terminal is powered on, obtain the status information of the SIM card through the communication module 300 of the terminal, save the system information in the system, and synchronize to each common system.
- the synchronization to each common system includes the following two methods: active synchronization to each common system, or synchronization to each common system based on the request of each common system.
- the SIM card When any of the main control system 100 and the normal system 200 is used to obtain an operation instruction for the SIM card, the SIM card is operated, and then the state information of the SIM card is synchronized in all systems of the terminal.
- any one of the main control system 100 and the ordinary system 200 is used for: directly to the SIM
- the card operates, or the SIM card is operated by the master control system.
- the SIM card is operated by the main control system, if any system happens to be the main control system, the SIM card is directly operated by the main control system, and if any system is the main control system
- the operation command must first be sent to the main control system through the inter-system communication channel, and then the main control system operates the SIM card.
- the device further includes:
- the communication module 300 is configured to acquire status information of the SIM card, synchronize status information of the changed SIM card to all systems, or send status information of the changed SIM card to the main control system 100, and then pass the main control System 100 is synchronized to each of the general systems 200.
- the fourth embodiment of the present invention corresponds to the second embodiment.
- This embodiment introduces a multi-system based card detecting device.
- the device in this embodiment is substantially the same as the third embodiment, except that the main embodiment of the present embodiment is different.
- the control system is a management system that does not have a user interface. In this case, the main control system cannot provide the user with interface operations, but only provides services for checking the card synchronization for all common systems. In the future, the master control system cannot directly obtain the operation instruction for the SIM card. Therefore, as shown in FIG. 3, in this embodiment:
- the communication module 300 is further configured to send status information of the changed SIM card to the main control system 100, and then synchronize to each common system 200 through the main control system 100.
- the fifth embodiment of the present invention is based on the third and fourth embodiments, and describes a terminal, which includes the multi-system based card checking device in the third and fourth embodiments.
- the terminal of this embodiment can be understood as a physical device.
- the sixth embodiment of the present invention is based on the above embodiments, and two application examples of the present invention are described with reference to FIGS. 4 to 5.
- the module function division of the terminal in this application example is as shown in FIG. 4, in the multi-system architecture, there are n operating systems of system 1, system 2, ..., system n, and the n operating systems provide interfaces for User operations, each system can interact through the inter-system communication channel, the terminal communication module is also responsible for managing m SIM cards, m ⁇ 1, n ⁇ 2, the number of m and n may be equal or unequal.
- Each card is provided with a card information management module for providing an interface for the user to perform related operations of the card, such as: switching the SIM card, obtaining the status information of the SIM card, displaying the status information of the SIM card in the form of an interface, and The status of the card changes within the system, etc.
- step 1 the system 1 completes the detection and acquisition operation of the status information of the SIM card, and saves it to the system.
- step 2 the system 1 is responsible for notifying the status information of the SIM card to other systems having a user interface, such as systems 2 to n.
- Step 3 After receiving the status information of the SIM card, the other systems determine whether the services such as the network opening, the call, the short message, and the data are initiated according to the respective configurations and needs.
- the relevant instructions for the SIM card operation initiated by the system itself or initiated by the user under the system are directly forwarded by the system to the system 1 pair of hardware.
- the card slot operates.
- Step 4 After the status information of the SIM card changes, the communication module modem actively notifies the system 1. After the system 1 completes the update of the card status information, the system 1 notifies the other system with the user interface.
- the system 1 is the only main control system capable of directly operating the hardware card slot and having a user interface.
- the system 1 first obtains the status information of the SIM card and passes the The inter-system communication channel synchronizes the status information of the SIM card to other systems with a user interface, and only the system 1 can directly perform the operation on the SIM card according to the instructions.
- step 1 the system 1 completes the detection and acquisition operation of the status information of the SIM card, and saves it to the system.
- step 2 the system 1 is responsible for notifying the status information of the SIM card to other systems having a user interface, such as systems 2 to n.
- Step 3 After receiving the status information of the SIM card, other systems and the system 1 can determine whether the services such as the network opening, the call, the short message, and the data are initiated according to the respective configurations and needs. Alternatively, the user operates the SIM card through either system.
- Step 4 After the status information of the SIM card changes, the communication module modem actively initiates The system 1 to n are known to enable the systems 1 to n to update the card status information.
- the systems 1 to n can directly operate the hardware card slot, and the system 1 is the main control system.
- the system 1 first obtains the state information of the SIM card, and passes the The inter-system communication channel synchronizes the status information of the SIM card to other systems with user interfaces, but all subsequent systems can directly perform operations on the SIM card according to the instructions.
- the communication module first knows that the communication module notifies the system to synchronize the SIM card status information in each system.
- the module function division of the terminal in this application example is shown in FIG. 5.
- there are n+1 operating systems of system 1, system 2, ..., system n and management system, and system 1 to n provide interface.
- the management system belongs to the background system, is invisible to the user, and does not provide a user interface.
- Each system can interact through an intersystem communication channel.
- the communication module of the terminal is also responsible for managing m SIM cards, and the number of m and n may be equal or unequal.
- Each card is provided with a card information management module, and the card information management module of the system 1 ⁇ n is used for performing the SIM card related operations as follows: displaying the status information of the SIM card in the form of an interface, issuing a switch SIM card to the management system, and An instruction to acquire status information of the SIM card, and the like.
- the card information management module provided in the management system is used for performing related operations of the card as follows: switching the SIM card, obtaining status information of the SIM card, and performing in-system notification of the state change of the SIM card.
- the scheme assumes that the management system is the only master control system that can directly operate the hardware card slot and has a user interface.
- the management system When the terminal is powered on, the management system first obtains the status information of the SIM card, and through the inter-system communication channel, the SIM card is Status information is synchronized to other systems with a user interface. Subsequently, only the management system can directly perform operations on the SIM card according to the instructions.
- Step 1 After the power is turned on, the card information management module in the management system actively performs the card checking operation, and completes the storage of the state information of the SIM card.
- Step 2 After the systems 1 to n are started, the status information of the SIM card is actively obtained from the management system through the inter-system communication channel.
- Step 3 When any one of the systems 1 to n needs to operate the SIM card, the command is sent to the management system, and the management system directly completes the related operations.
- Step 4 When the status information of the SIM card changes, the communication module modem only changes the correlation. The notification is notified to the management system, and the management system updates the status information of the SIM card again after being notified of the change, and notifies other systems through the inter-system communication channel.
- the terminal 6 may include at least one processor 61, such as a CPU, at least one communication bus 62, and a memory 63.
- the communication bus 62 is used to implement these components.
- the memory 63 may be a high speed RAM memory or a non-volatile memory such as at least one disk memory.
- a set of program codes is stored in the memory 63, and the processor 61 can call the program code stored in the memory 63, wherein:
- the main control system is configured to obtain the status information of the SIM card when the terminal is powered on, save the information in the main control system, and synchronize to each common system;
- Any one of the main control system and the general system is configured to operate the SIM card when obtaining an operation instruction to the SIM card, and then synchronize the state information of the SIM card in all systems of the terminal.
- each system of the terminal interacts through an inter-system communication channel
- the processor 61 acquires state information of the SIM card
- the main control system acquires the state information of the SIM card through the communication module of the terminal, saves it in the system, and synchronizes it to each common system.
- any one of the systems directly operates the SIM card, or the SIM card is operated by the main control system;
- the processor 61 synchronizes the status information of the changed SIM card to all systems; or sends the status information of the changed SIM card to the main control system, and then synchronizes to each common system through the main control system.
- the main control system is a management system without a user interface:
- the processor 61 sends the status information of the changed SIM card to the main control system, and then synchronizes to each common system through the main control system.
- the multi-system based card checking method, device and terminal provide a card checking mode on a terminal with multiple systems, which can realize synchronization of SIM card information between multiple systems, and ensure each
- the normal operation of communication services such as call, short message, and data service of the system avoids the inconsistency of communication services in various systems.
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Abstract
本发明提出了一种基于多系统的检卡方法、装置及终端,终端中安装有一个主控系统和至少一个普通系统,该方法包括:终端开机时,主控系统获取客户识别模块SIM卡的状态信息后,保存于主控系统并同步到各普通系统中;当终端中的任一系统获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。本发明在具备多系统的终端上提供一种检卡方式,可实现在多个系统之间SIM卡信息的同步工作,保证各系统的通话、短信、数据业务等通信业务的正常工作,避免出现通信业务在各系统中的表现不一致的现象。
Description
本申请要求于2015年03月11日提交中国专利局,申请号为201510106498.4、发明名称为“一种基于多系统的检卡方法、装置及终端”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本发明涉及移动通信终端技术领域,尤其涉及一种基于多系统的检卡方法、装置及终端。
当前具有两个以上的操作系统的多系统移动通信终端产品中,并无多系统终端检卡方案。以下操作系统简称为系统。
在多系统终端上,物理卡槽具有唯一性,如何让所有系统都能检测到SIM(Subscriber Identity Module,客户识别模块)卡状态以及获取相应的SIM卡信息,决定了各挂载的系统的通信功能能否正常进行。因为在多系统终端上,若不实现检卡方案,将会使系统间掌握的SIM卡状态不一致,导致系统无法实现所有的通信业务。
发明内容
本发明要解决的技术问题是,提供一种基于多系统的检卡方法、装置及终端,在终端的所有系统中都同步的获取到SIM卡的信息。
本发明采用的技术方案是,所述基于多系统的检卡方法,终端中安装有一个主控系统和至少一个普通系统,该方法包括:
终端开机时,主控系统获取SIM卡的状态信息后,保存于主控系统并同步到各普通系统中;
当终端中的任一系统获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
进一步的,终端的各系统之间通过系统间通信通道进行交互;
所述终端开机时,主控系统获取SIM卡的状态信息,保存于本系统并同步到各普通系统中,包括:
在终端开机时,主控系统通过终端的通信模块获取SIM卡的状态信息,保存于本系统,并同步到各普通系统中。
进一步的,所述任一系统获得对SIM卡的操作指令,包括:
任一系统根据本系统的配置或者根据用户在本系统的用户界面下对SIM卡的操作,生成对SIM卡的操作指令。
进一步的,作为一种可选的技术方案,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步,包括:
步骤1,所述任一系统直接对SIM卡进行操作;或者,所述任一系统通过主控系统对所述SIM卡进行操作;
步骤2,终端的通信模块将发生变化的SIM卡的状态信息同步到所有系统中;或者,终端的通信模块将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
进一步的,作为另一种可选的技术方案,在所述主控系统为一个不具备用户界面的管理系统的情况下:
所述任一系统为除所述主控系统之外的任一系统;
对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步,包括:
步骤1,所述任一系统通过主控系统对所述SIM卡进行操作;
步骤2,终端的通信模块将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
本发明还提供一种基于多系统的检卡装置,包括:安装于终端中的一个主控系统和至少一个普通系统,其中:
主控系统,用于在终端开机时获取SIM卡的状态信息,保存于主控系统并同步到各普通系统中;
主控系统和普通系统中的任一系统,用于获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
进一步的,终端的各系统之间通过系统间通信通道进行交互;
所述装置,还包括:
通信模块,用于获取SIM卡的状态信息;
所述主控系统,用于:在终端开机时,通过终端的所述通信模块获取SIM卡的状态信息,保存于本系统,并同步到各普通系统中。
进一步的,作为一种可选的技术方案,所述任一系统,用于:
直接对SIM卡进行操作,或者,通过主控系统对所述SIM卡进行操作;
通信模块,还用于将发生变化的SIM卡的状态信息同步到所有系统中;或者,将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
进一步的,作为另一种可选的技术方案,在所述主控系统为一个不具备用户界面的管理系统的情况下:
普通系统中的任一系统,用于通过主控系统对所述SIM卡进行操作;
通信模块,还用于将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
采用上述技术方案,本发明至少具有下列优点:
本发明所述基于多系统的检卡方法、装置及终端,在具备多系统的终端上提供一种检卡方式,可实现在多个系统之间SIM卡信息的同步工作,保证各系统的通话、短信、数据业务等通信业务的正常工作,避免出现通信业务在各系统中的表现不一致的现象。
图1为本发明第一实施例的基于多系统的检卡方法流程图;
图2为本发明第二实施例的基于多系统的检卡方法流程图;
图3为本发明第三、四实施例的基于多系统的检卡装置组成结构示意图;
图4为本发明应用实例一的终端的模块功能划分示意图;
图5为本发明应用实例二的终端的模块功能划分示意图;
图6为本发明实施例的终端的示意图。
为更进一步阐述本发明为达成预定目的所采取的技术手段及功效,以下结
合附图及较佳实施例,对本发明进行详细说明如后。
本发明第一实施例,一种基于多系统的检卡方法,终端中安装有一个主控系统和至少一个普通系统,终端的各系统之间通过系统间通信通道进行交互,如图1所示,该方法包括以下具体步骤:
步骤S101,终端开机时,主控系统获取SIM卡的状态信息后,保存于主控系统并同步到各普通系统中;
具体的,在终端开机时,主控系统通过终端的通信模块获取SIM卡的状态信息,保存于本系统,并同步到各普通系统中。这里,同步到各普通系统中包含以下两种方式:主动同步到各普通系统中,或者,基于各普通系统的请求同步到各普通系统中。无论是上述哪种同步方式,主控系统均通过系统间通信通道将该SIM卡的状态信息同步到各普通系统中的。
步骤S102,当终端中的任一系统获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
具体的,在步骤S102中,任一系统获得对SIM卡的操作指令,包括:
任一系统根据本系统的配置或者根据用户在本系统的用户界面下对SIM卡的操作,生成对SIM卡的操作指令。
在步骤S102中,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步,包括:
步骤1,该任一系统直接对SIM卡进行操作;或者,该任一系统通过主控系统对所述SIM卡进行操作。
进一步的,在该任一系统通过主控系统对所述SIM卡进行操作的情况下,若任一系统恰好为主控系统,则直接由主控系统对所述SIM卡进行操作,若任一系统为主控系统之外的普通系统,则须先通过系统间通信通道将所述操作指令发送给主控系统,再由主控系统对所述SIM卡进行操作。
步骤2,终端的通信模块将发生变化的SIM卡的状态信息同步到所有系统中;或者,终端的通信模块将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
本发明第二实施例,一种基于多系统的检卡方法,本实施例所述方法与第一实施例大致相同,区别在于,本实施例的主控系统为一个不具备用户界面的
管理系统,在这种情况下,主控系统就不能供用户进行界面操作,而只是专门用来为所有的普通系统提供检卡同步的服务,故在终端开机以后,主控系统不能直接获得对SIM卡操作指令,因此,在本实施例的步骤S202中仅限除所述主控系统之外的任一系统获得对SIM卡的操作指令,发送给主控系统。
如图2所示,本实施例的所述基于多系统的检卡方法,包括以下具体步骤:
步骤S201,终端开机时,主控系统获取SIM卡的状态信息后,保存于主控系统并同步到各普通系统中。具体的,本实施例的步骤S201与第一实施例的步骤S101的具体内容相同。
步骤S202,当除所述主控系统之外的任一系统获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
具体的,本实施例的步骤S202,包括:
步骤1,除所述主控系统之外的任一系统通过主控系统对所述SIM卡进行操作;
步骤2,终端的通信模块将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
本发明第三实施例,与第一实施例对应,本实施例介绍一种基于多系统的检卡装置,如图3所示,包括:安装于终端中的一个主控系统100和至少一个普通系统200,终端的各系统之间通过系统间通信通道进行交互,其中:
主控系统100,用于在终端开机时获取SIM卡的状态信息,保存于主控系统并同步到各普通系统中;
具体的,主控系统100,用于:在终端开机时,通过终端的通信模块300获取SIM卡的状态信息,保存于本系统,并同步到各普通系统中。这里,同步到各普通系统中包含以下两种方式:主动同步到各普通系统中,或者,基于各普通系统的请求同步到各普通系统中。
主控系统100和普通系统200中的任一系统,用于获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
具体的,主控系统100和普通系统200中的任一系统,用于:直接对SIM
卡进行操作,或者,通过主控系统对所述SIM卡进行操作。这里,在通过主控系统对所述SIM卡进行操作的情况下,若任一系统恰好为主控系统,则直接由主控系统对所述SIM卡进行操作,若任一系统为主控系统之外的普通系统,则须先通过系统间通信通道将所述操作指令发送给主控系统,再由主控系统对所述SIM卡进行操作。
进一步的,所述装置,还包括:
通信模块300,用于获取SIM卡的状态信息;将发生变化的SIM卡的状态信息同步到所有系统中,或者,将发生变化的SIM卡的状态信息发送给主控系统100,再通过主控系统100同步到各普通系统200中。
本发明第四实施例,与第二实施例对应,本实施例介绍一种基于多系统的检卡装置,本实施例所述装置与第三实施例大致相同,区别在于,本实施例的主控系统为一个不具备用户界面的管理系统,在这种情况下,主控系统就不能供用户进行界面操作,而只是专门用来为所有的普通系统提供检卡同步的服务,故在终端开机以后,主控系统不能直接获得对SIM卡操作指令,因此,如图3所示,在本实施例中:
普通系统200中的任一系统,用于通过主控系统100对所述SIM卡进行操作;
通信模块300,还用于将发生变化的SIM卡的状态信息发送给主控系统100,再通过主控系统100同步到各普通系统200中。
本发明第五实施例,本实施例是在第三、四实施例的基础上,介绍一种终端,包含第三、四实施例中的基于多系统的检卡装置。本实施例的终端可以当作实体装置来理解。
本发明第六实施例,本实施例是在上述实施例的基础上,结合附图4~5介绍两个本发明的应用实例。
应用实例一:
本应用实例中的终端的模块功能划分如图4所示,在多系统架构中存在系统1、系统2、……、系统n这n个操作系统,这n个操作系统均提供界面供
用户操作,各系统之间均可通过系统间通信通道进行交互,终端的通信模块还负责管理m个SIM卡,m≥1,n≥2,m与n的数量可以相等也可以不相等。各系统中均设有一卡信息管理模块,用于提供界面给用户进行卡的相关操作,如:开关SIM卡、获取SIM卡的状态信息、以界面的形式显示SIM卡的状态信息、以及对SIM卡的状态变化进行系统内通知等。
该应用实例的第一种实现流程如下:
步骤1,系统1完成对SIM卡的状态信息的检测以及获取操作,并保存至本系统中。
步骤2,由系统1负责将SIM卡的状态信息通知到其他拥有用户界面的系统,如系统2~n。
步骤3,接到SIM卡的状态信息后,其他系统根据各自的配置及需要确定启网、通话、短信、数据等业务是否发起。或者,当用户通过具备用户界面的系统对SIM卡进行操作时,无论是系统自己发起的还是用户在该系统下发起的针对SIM卡操作的相关指令,均会由本系统直接转发至系统1对硬件卡槽进行操作。
步骤4,SIM卡的状态信息发生变化后,由通信模块modem主动通知给系统1,系统1完成卡状态信息更新后,再通知给其他具备用户界面的系统。
在该应用实例的第一种实现流程中,假设系统1为唯一能直接操作硬件卡槽、且具备用户界面的主控系统,终端开机时,首先由系统1获取SIM卡的状态信息,并通过系统间通信通道,将SIM卡的状态信息同步至其他具备用户界面的系统中,后续也只有系统1可以根据指令直接执行对SIM卡的操作。
该应用实例的第二种实现流程如下:
步骤1,系统1完成对SIM卡的状态信息的检测以及获取操作,并保存至本系统中。
步骤2,由系统1负责将SIM卡的状态信息通知到其他拥有用户界面的系统,如系统2~n。
步骤3,接到SIM卡的状态信息后,其他系统以及系统1均可根据各自的配置及需要确定启网、通话、短信、数据等业务是否发起。或者,用户通过任一系统对SIM卡进行操作。
步骤4,SIM卡的状态信息发生变化后,由通信模块modem分别主动通
知给系统1~n,以使系统1~n完成卡状态信息更新。
在该应用实例的第二种实现流程中,系统1~n均可以直接操作硬件卡槽,系统1为主控系统,负责在终端开机时,首先由系统1获取SIM卡的状态信息,并通过系统间通信通道,将SIM卡的状态信息同步至其他具备用户界面的系统中,但是后续所有系统都可以根据指令直接执行对SIM卡的操作。当SIM卡的状态信息发生变化后,通信模块最先获知,通过通信模块向各系统进行通知以实现各系统中SIM卡状态信息的同步。
应用实例二:
本应用实例中的终端的模块功能划分如图5所示,在多系统架构中存在系统1、系统2、……、系统n和管理系统这n+1个操作系统,系统1~n提供界面供用户操作,而管理系统属于后台系统,对用户不可见,也不提供用户界面。各系统之间均可通过系统间通信通道进行交互。终端的通信模块还负责管理m个SIM卡,m与n的数量可以相等也可以不相等。各系统中均设有一卡信息管理模块,系统1~n的卡信息管理模块,用于进行SIM卡的相关操作如下:以界面的形式显示SIM卡的状态信息、向管理系统发出开关SIM卡以及获取SIM卡的状态信息的指令等。而管理系统中设有的卡信息管理模块,用于进行卡的相关操作如下:开关SIM卡、获取SIM卡的状态信息、以及对SIM卡的状态变化进行系统内通知等。
该方案中假设管理系统为唯一能直接操作硬件卡槽、且具备用户界面的主控系统,终端开机时,首先由管理系统获取SIM卡的状态信息,并通过系统间通信通道,将SIM卡的状态信息同步至其他具备用户界面的系统中。后续也只有管理系统可以根据指令直接执行对SIM卡的操作。
在该应用实例中的实现流程如下:
步骤1,开机后管理系统中的卡信息管理模块主动进行检卡操作,完成对SIM卡的状态信息的存储。
步骤2,当系统1~n启动后,则通过系统间通信通道,主动向管理系统获取SIM卡的状态信息。
步骤3,当系统1~n中的任一系统需要对SIM卡进行操作时,将指令下发给管理系统,由管理系统直接完成相关操作。
步骤4,当SIM卡的状态信息发生变化时,通信模块modem仅将相关变
化通知给管理系统,管理系统受到变化通知后再次更新SIM卡的状态信息,并通过系统间通信通道通知其他系统。
图6为本发明实施例的终端的示意图,如图6所示,该终端6可以包括:至少一个处理器61,例如CPU,至少一个通信总线62以及存储器63;通信总线62用于实现这些组件之间的连接通信;存储器63可以是高速RAM存储器,也可以是非易失性存储器(non-volatile memory),例如至少一个磁盘存储器。存储器63中存储一组程序代码,处理器61可以调用存储器63中存储的程序代码,其中:
主控系统,用于在终端开机时获取SIM卡的状态信息,保存于主控系统并同步到各普通系统中;
主控系统和普通系统中的任一系统,用于获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
可选的,终端的各系统之间通过系统间通信通道进行交互;
所述处理器61获取SIM卡的状态信息;
所述主控系统在终端开机时,通过终端的通信模块获取SIM卡的状态信息,保存于本系统,并同步到各普通系统中。
又可选的,所述任一系统直接对SIM卡进行操作,或者,通过主控系统对所述SIM卡进行操作;
所述处理器61将发生变化的SIM卡的状态信息同步到所有系统中;或者,将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
另可选的,在所述主控系统为一个不具备用户界面的管理系统的情况下:
普通系统中的任一系统,用于通过主控系统对所述SIM卡进行操作;
所述处理器61将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
本发明实施例的所述基于多系统的检卡方法、装置及终端,在具备多系统的终端上提供一种检卡方式,可实现在多个系统之间SIM卡信息的同步工作,保证各系统的通话、短信、数据业务等通信业务的正常工作,避免出现通信业务在各系统中的表现不一致的现象。
通过具体实施方式的说明,应当可对本发明为达成预定目的所采取的技术手段及功效得以更加深入且具体的了解,然而所附图示仅是提供参考与说明之用,并非用来对本发明加以限制。
Claims (13)
- 一种基于多系统的检卡方法,其特征在于,终端中安装有一个主控系统和至少一个普通系统,所述方法包括:终端开机时,主控系统获取客户识别模块SIM卡的状态信息后,保存于主控系统并同步到各普通系统中;当终端中的任一系统获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
- 根据权利要求1所述的基于多系统的检卡方法,其特征在于,终端的各系统之间通过系统间通信通道进行交互;所述终端开机时,主控系统获取SIM卡的状态信息,保存于本系统并同步到各普通系统中,包括:在终端开机时,主控系统通过终端的通信模块获取SIM卡的状态信息,保存于本系统,并同步到各普通系统中。
- 根据权利要求2所述的基于多系统的检卡方法,其特征在于,所述任一系统获得对SIM卡的操作指令,包括:任一系统根据本系统的配置或者根据用户在本系统的用户界面下对SIM卡的操作,生成对SIM卡的操作指令。
- 根据权利要求2所述的基于多系统的检卡方法,其特征在于,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步,包括:步骤1,所述任一系统直接对SIM卡进行操作;或者,所述任一系统通过主控系统对所述SIM卡进行操作;步骤2,终端的通信模块将发生变化的SIM卡的状态信息同步到所有系统中;或者,终端的通信模块将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
- 根据权利要求2所述的基于多系统的检卡方法,其特征在于,在所述主控系统为一个不具备用户界面的管理系统的情况下:所述任一系统为除所述主控系统之外的任一系统;对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进 行同步,包括:步骤1,所述任一系统通过主控系统对所述SIM卡进行操作;步骤2,终端的通信模块将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
- 一种基于多系统的检卡装置,其特征在于,包括:安装于终端中的一个主控系统和至少一个普通系统,其中:主控系统,用于在终端开机时获取SIM卡的状态信息,保存于主控系统并同步到各普通系统中;主控系统和普通系统中的任一系统,用于获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
- 根据权利要求6所述的基于多系统的检卡装置,其特征在于,终端的各系统之间通过系统间通信通道进行交互;所述装置,还包括:通信模块,用于获取SIM卡的状态信息;所述主控系统,用于:在终端开机时,通过终端的所述通信模块获取SIM卡的状态信息,保存于本系统,并同步到各普通系统中。
- 根据权利要求7所述的基于多系统的检卡装置,其特征在于,所述任一系统,用于:直接对SIM卡进行操作,或者,通过主控系统对所述SIM卡进行操作;通信模块,还用于将发生变化的SIM卡的状态信息同步到所有系统中;或者,将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
- 根据权利要求7所述的基于多系统的检卡装置,其特征在于,在所述主控系统为一个不具备用户界面的管理系统的情况下:普通系统中的任一系统,用于通过主控系统对所述SIM卡进行操作;通信模块,还用于将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
- 一种终端,其特征在于,所述终端中安装有一个主控系统和至少一个普通系统,所述终端包括处理器和存储器,所述存储器中存储一组程序代码,且所述处理器用于调用所述存储器中存储的程序代码,其中:主控系统,用于在终端开机时获取SIM卡的状态信息,保存于主控系统并同步到各普通系统中;主控系统和普通系统中的任一系统,用于获得对SIM卡的操作指令时,对所述SIM卡进行操作,然后将SIM卡的状态信息在终端的所有系统进行同步。
- 根据权利要求10所述的终端,其特征在于,终端的各系统之间通过系统间通信通道进行交互;所述处理器获取SIM卡的状态信息;所述主控系统在终端开机时,通过终端的通信模块获取SIM卡的状态信息,保存于本系统,并同步到各普通系统中。
- 根据权利要求11所述的终端,其特征在于,所述任一系统直接对SIM卡进行操作,或者,通过主控系统对所述SIM卡进行操作;所述处理器将发生变化的SIM卡的状态信息同步到所有系统中;或者,将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
- 根据权利要求11所述的终端,其特征在于,在所述主控系统为一个不具备用户界面的管理系统的情况下:普通系统中的任一系统,用于通过主控系统对所述SIM卡进行操作;所述处理器将发生变化的SIM卡的状态信息发送给主控系统,再通过主控系统同步到各普通系统中。
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| CN115361699A (zh) * | 2022-08-30 | 2022-11-18 | 青岛海信移动通信技术股份有限公司 | 一种流量预警方法、装置、终端设备及介质 |
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| CN101902705A (zh) * | 2010-07-19 | 2010-12-01 | 广东欧珀移动通信有限公司 | 网络及彩信账户随不同运营商sim卡自动更改方法 |
| CN102970703A (zh) * | 2012-12-10 | 2013-03-13 | 惠州Tcl移动通信有限公司 | 移动通讯设备及其sim卡状态的监控方法 |
| CN103458125A (zh) * | 2013-09-06 | 2013-12-18 | 叶鼎 | 一种高等级私密性智能手机及其私密信息的保护方法 |
| WO2015018511A1 (de) * | 2013-08-07 | 2015-02-12 | Giesecke & Devrient Gmbh | Verfahren zum betreiben eines sicherheitselements |
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| CN102970703A (zh) * | 2012-12-10 | 2013-03-13 | 惠州Tcl移动通信有限公司 | 移动通讯设备及其sim卡状态的监控方法 |
| WO2015018511A1 (de) * | 2013-08-07 | 2015-02-12 | Giesecke & Devrient Gmbh | Verfahren zum betreiben eines sicherheitselements |
| CN103458125A (zh) * | 2013-09-06 | 2013-12-18 | 叶鼎 | 一种高等级私密性智能手机及其私密信息的保护方法 |
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