WO2016138694A1 - 多系统的通信终端 - Google Patents

多系统的通信终端 Download PDF

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Publication number
WO2016138694A1
WO2016138694A1 PCT/CN2015/077976 CN2015077976W WO2016138694A1 WO 2016138694 A1 WO2016138694 A1 WO 2016138694A1 CN 2015077976 W CN2015077976 W CN 2015077976W WO 2016138694 A1 WO2016138694 A1 WO 2016138694A1
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data
communication
communication terminal
processor
operating system
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PCT/CN2015/077976
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English (en)
French (fr)
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刘东海
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宇龙计算机通信科技(深圳)有限公司
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Publication of WO2016138694A1 publication Critical patent/WO2016138694A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/06Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals

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  • the present invention relates to the field of communications technologies, and in particular, to a multi-system communication terminal.
  • a conventional dual standby architecture of a communication terminal such as a mobile phone is shown in FIG. 1 , and includes two communication modules for communication.
  • the communication module is mainly composed of a baseband chip (Modem), etc., of course, the communication module may also include a radio frequency chip and Power management chip, etc. Both communication modules can exchange data such as voice service and data service with a CPU (Central Processing Unit).
  • the two communication modules share a processor, and the data in the memory and the memory are processed by the processor to interact with external devices such as a screen and a camera to control the external device.
  • the traditional dual standby architecture runs dual systems using Trustzone (embedded system) technology, which is physically isolated at the processor level to provide a secure execution environment for encrypted data.
  • the traditional dual standby architecture includes the following defects:
  • the traditional dual standby architecture is physically isolated at the processor level, but all data is processed by a processor, the data is very easy to confuse, security and privacy of important data such as phone contacts, SMS, security password, bank account, etc. Sexuality cannot be effectively guaranteed, and it cannot achieve independent security in the true sense.
  • the existing communication terminal only has one memory and memory to process huge data.
  • the sharp increase of data volume seriously affects the stability of memory and memory. All the data mixed together will also affect the security of personal private data; therefore, the data in memory and memory is confusing. It is easy to cause the crash of the communication terminal and affect the security of the user data.
  • an object of the present invention is to provide a multi-system communication terminal capable of physically ensuring user data security, and improving processing speed of different data and improving user experience.
  • the present invention provides a multi-system communication terminal, the communication terminal includes a plurality of operating systems, and each of the operating systems is separately provided with an independent communication module, a processor, and a storage module;
  • the communication module is configured to implement service communication of an operating system
  • the processor is configured to process data of an operating system
  • the storage module is configured to store data of an operating system.
  • the storage module includes a memory and a memory.
  • the processor in each of the operating systems is respectively connected to the storage module and the communication module.
  • the communication module includes a baseband chip.
  • each of the communication modules stands by at the same time.
  • a plurality of the operating systems share an external device, each of the processors is respectively connected to the external device, and each of the processors controls data and a location of an operating system to which the operating system belongs.
  • the external device interaction
  • each of the operating systems is provided with an independent user identification card, and the user identification card is respectively connected to the communication module in the operating system.
  • the communication terminal includes a first operating system and a second operating system, and the first operating system is correspondingly provided with a first communication module, a first processor and a first storage module;
  • the second operating system is correspondingly provided with a second communication module, a second processor and a second storage module.
  • the first operating system is a security system
  • the second operating system is a general system
  • the security system corresponds to a voice service
  • the first communication module is used to implement communication of a voice service
  • the first processor is configured to process voice service data
  • the first storage is configured to store voice service data
  • the common system corresponds to a data service
  • the second communication module is configured to implement communication of a data service
  • the second processor is configured to process data service data
  • the second storage module is configured to: Store data business data.
  • the invention provides a multi-system based communication terminal, each of which is provided with an independent communication module, a processor and a storage module, and the processor and the storage module of each operating system process and store the data of the operating system.
  • the communication terminal includes a security system and a general system, the security system processes voice service data, and the general system processes data service data.
  • the present invention processes and stores voice service data and data services through separate processors and storage modules, respectively. Data, which can fully guarantee the security and privacy of voice service data.
  • FIG. 1 is a schematic diagram of a conventional dual standby architecture
  • FIG. 2 is a schematic structural diagram of a communication terminal of a multi-system of the present invention.
  • FIG. 3 is a schematic structural diagram of a communication terminal of a preferred multi-system of the present invention.
  • the communication terminal 100 may be a mobile phone, a PDA (Personal Digital Assistant), a tablet computer, etc., and the communication terminal 100 includes single-mode dual-card communication. Terminal, single-mode multi-card communication terminal, dual-mode dual-card communication terminal, multi-mode multi-card communication terminal, and the like.
  • the communication terminal 100 includes a plurality of operating systems 1 to N (N is For a natural number greater than or equal to 1, there is no interaction between the operating systems, and each operating system is provided with an independent communication module, a processor and a storage module, wherein:
  • the communication modules 1 to N are used to implement service communication of the operating system.
  • the communication module 1 is used to implement the service communication of the operating system 1 to which it belongs
  • the communication module 2 is used to implement the service communication of the operating system 2 to which it belongs.
  • the communication module 10 includes a baseband chip.
  • the communication module may further include a radio frequency chip, a power management chip, and the like.
  • the processors 1 to N are used to process data of the operating system to which they belong.
  • the processor 1 is used to process the data of the associated operating system 1
  • the processor 2 is used to process the data of the operating system 2 to which it belongs.
  • the storage modules 1 to N are used to store data of the operating system to which they belong.
  • the storage module 1 is used to store data of the operating system 1 to which it belongs
  • the storage module 2 is used to store data of the operating system 2 to which it belongs.
  • the storage module includes a memory and a memory.
  • the memory includes a RAM (Random Access Memory) or the like, and the memory includes an EMMC (Embedded Multimedia Card) or the like.
  • each operating system is respectively connected to the storage module and the communication module, and each communication module stands by at the same time to form a multi-standby architecture. More preferably, multiple operating systems share external devices such as a screen and a camera, and each processor is separately connected to an external device, and each processor controls the data of the operating system to interact with the external device.
  • each operating system is separately provided with an independent user identification card, and the user identification card is respectively connected with the communication module in the operating system.
  • the user identification card may be a SIM (Subscriber Identity Module), a UIM (User Identity Model), or the like.
  • the invention considers a factor that the component price of the communication terminal is drastically decreased, and proposes a multi-standby architecture combining multiple systems, and each communication module in the communication terminal is equipped with a dedicated processor and a storage module, and is physically separated completely. There is no interaction between the various operating systems and they are physically completely independent. The data of each operating system is processed and stored by different processors and storage modules, and is physically separated completely, which can fully guarantee the security and privacy of user data. In addition, the addition of processors and storage modules can greatly improve the processing time of different data and enhance the experience.
  • the communication terminal 100 can be a mobile phone, a PDA, a tablet computer, etc., and the The letter terminal 100 includes a single mode dual card communication terminal, a single mode multi-card communication terminal, a dual mode dual card communication terminal, a multi-mode multi-card communication terminal, and the like.
  • the communication terminal 100 includes a first operating system and a second operating system.
  • the first operating system is correspondingly provided with a first communication module 11, a first processor 12, and a first storage module 13.
  • the second operating system is correspondingly provided with a second The communication module 21, the second processor 22 and the second storage module 23.
  • the first operating system is a security system
  • the second operating system is a general system.
  • the security system corresponds to the voice service
  • the common system corresponds to the data service, where:
  • the first communication module 11 is configured to implement service communication of the associated security system, that is, to implement communication of the voice service.
  • the first communication module 11 includes a baseband chip.
  • the first communication module 11 may further include a radio frequency chip, a power management chip, and the like.
  • the first processor 12 is configured to process data of the associated security system, that is, process voice service data.
  • the first storage module 13 is configured to store data of the security system to which it belongs, that is, to store voice service data.
  • the first storage module 13 includes a first memory 131 and a first memory 132.
  • the first memory 131 includes a RAM or the like
  • the first memory 132 includes an EMMC or the like.
  • the second communication module 21 is configured to implement service communication of a common system, that is, to implement communication of data services.
  • the second communication module 21 includes a baseband chip.
  • the second communication module 21 may further include a radio frequency chip, a power management chip, and the like.
  • the second processor 22 is configured to process data of a common system to which it belongs, that is, process data service data.
  • the second storage module 23 is configured to store data of a common system to which it belongs, that is, to store data service data.
  • the second storage module 23 includes a second memory 231 and a second memory 232.
  • the first memory 231 includes a RAM or the like
  • the second memory 232 includes an EMMC or the like.
  • the processors in each operating system are respectively connected to the storage module and the communication module.
  • Each communication module stands by at the same time to form a dual standby architecture. That is, the first processor 12 in the security system is respectively connected to the first storage module 13 and the first communication module 11, and the second processor 22 in the common system is connected to the second storage module 23 and the second communication module 21, respectively. And, the first communication module 11 and the second communication module 21 simultaneously stand by to form a dual standby architecture.
  • the security system and the general system share the external device 30, that is, the first processor 12 and the second processor 22 are respectively connected to the external device 30, and the first processor 12 controls the data of the associated security system to interact with the external device.
  • the second processor 22 controls the data of the ordinary system to which it belongs to interact with the external device.
  • the external device 30 may be a screen, a camera, a receiver, or the like of the communication terminal 100.
  • the security system and the general system are respectively provided with a separate first user identification card 14 and a second user identification card 24, the first user identification card 14 being connected to the first communication module 13 in the associated security system, and second The subscriber identity card 24 is connected to the second communication module 23 in the associated general system.
  • each communication module in the communication terminal 100 is equipped with a dedicated processor and a storage module, and is physically separated.
  • the first communication module 11 has only a voice service function, and the first communication module 11 corresponds to the first card slot.
  • the first card slot corresponds to the security system, and the voice service data is all security private data, which is processed by the security system, such as a contact, a call record, a short message, etc., and the data is processed by the dedicated first processor 12 and the first storage module 11 and
  • the second communication module 21 corresponds to the second card slot, the second card slot corresponds to the common system, and the data service data is non-secure data, which is processed by the common system, such as browsing the webpage and viewing the network.
  • the video or the like is processed and stored by the dedicated second processor 22 and the second storage module 21.
  • the second subscriber identity card 24 corresponds to a common system, and the second communication module 21 is defined to have only data service functions.
  • the data is processed and stored by the second processor 22 and the second storage module 23.
  • the first processor 12 processes the security system data
  • the second processor 22 processes the normal system data
  • the two are physically independent.
  • the first processor 12 and the second processor 22 each have their own private storage modules, and the data is completely stored and processed separately. To protect the security of private data. Different data interacts with different devices through different processors.
  • the first communication module 11 is provided with a dedicated first processor 12 and a first storage module 13.
  • the first user identification card 14 is associated with a security system, and the first communication module 11 is defined to have only a voice service function, and the voice service data is secure. Private data, such as contacts, call logs, text messages, etc.
  • the voice service data is exclusively processed by the first processor 12, and all of them are stored in the dedicated first storage module 13.
  • the private data can only interact with the external device 30 through the first processor 12 to ensure the security of the user's personal data.
  • the first communication module 11, the first processor 12, and the first storage module 13 specifically process the voice service data of the first subscriber identity card 14, form a physical security security mode, operate in the security system, and truly protect the private data of the client. Security, in addition, separate communication modules, processors and memory will speed up data processing and improve the user experience.
  • the second communication module 21 is provided with a dedicated second processor 22 and a second storage module 23.
  • the second user identification card 24 corresponds to the common system, and the second communication module 21 is defined to have only data service functions, and the data service data is not secure. Data, such as browsing the web, watching online videos, downloading audio files
  • the data service data is all exclusively processed by the second processor 22 and stored in the dedicated second storage module 23, and the public data is exchanged with the external device 30 through the second processor 22.
  • the second communication module 21, the second processor 22, and the second storage module 23 exclusively process data service data, and are not mixed with voice service data, which are run in a common system and stored by a separate memory, and separately, separate communication Modules, processors, and memory also speed up data processing and improve the user experience.
  • the first processor 12 processes the private data in the security system
  • the second processor 22 processes the non-private data in the ordinary system.
  • the security system and the ordinary system are physically completely independent and truly separated, similar to the combination of two communication terminals.
  • the service is completely independent, the difference is that the first communication module 11 is limited to only voice service data, and the second communication module 21 is limited to only data service data, and is stored and processed by different memories.
  • the two systems do not have interaction, and the physical is completely independent. Protect the security of private data in security systems.
  • the present invention provides a multi-system based communication terminal, each of which is provided with an independent communication module, a processor and a storage module, and the processor and storage module of each operating system are processed and stored.
  • the data of the operating system there is no interaction between the operating systems, and it is physically completely independent.
  • the data of different operating systems in the present invention are processed and stored by different processors and storage modules, and are physically separated completely, thereby avoiding confusion of different data, fully ensuring user data security, and improving
  • the processing speed of different data improves the user experience.
  • the communication terminal includes a security system and a general system, the security system processes voice service data, and the general system processes data service data.
  • the present invention processes and stores voice service data and data services through separate processors and storage modules, respectively. Data, which can fully guarantee the security and privacy of voice service data.

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  • Computer Networks & Wireless Communication (AREA)
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Abstract

本发明适用于通信技术领域,提供了一种多系统的通信终端,所述通信终端包括多个操作系统,且每个所述操作系统分别设置有独立的通讯模块、处理器和存储模块;所述通信模块,用于实现所属操作系统的业务通信;所述处理器,用于处理所属操作系统的数据;所述存储模块,用于存储所属操作系统的数据。借此,本发明中不同的操作系统的数据通过不同的处理器和存储模块处理和存储,并且在物理上完全分开,可避免不同数据发生混乱的情况,充分保障用户的数据安全,并且可提高不同数据的处理速度,提升用户体验。

Description

多系统的通信终端
本申请要求于2015年03月02日提交中国专利局,申请号为CN201510092142.X、发明名称为“多系统的通信终端”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。
技术领域
本发明涉及通信技术领域,尤其涉及一种多系统的通信终端。
背景技术
现有手机等通信终端的传统双待机架构如图1所示,包括两个用于通讯的通信模块,所述通信模块主要由基带芯片(Modem)等构成,当然通信模块也可包括射频芯片以及电源管理芯片等。两个通信模块都能和CPU(Central Processing Unit,处理器)交互语音业务和数据业务等数据。两个通讯模块共用一个处理器,通过处理器来处理内存和存储器等中的数据,从而与屏幕、摄像头等外部设备交互数据,达到控制外部设备的目的。传统双待机架构运行双系统使用Trustzone(嵌入式系统)技术,在处理器层进行物理隔离,为加密数据提供安全的执行环境。但传统双待机架构包括缺陷如下:
1、传统双待机架构中两个通讯模块共用一个处理器,语音业务数据、数据业务数据等所有数据都通过处理器处理,随着通信终端技术的飞速发展,通信终端处理的数据量非常庞大,一个处理器会导致数据处理速度明显偏慢,影响用户体验。
2、传统双待机架构虽然在处理器层进行了物理隔离,但所有数据都通过一个处理器处理,数据极易混乱,电话联系人、短信、安全密码、银行账户等重要数据的安全性和私密性得不到有效保障,并不能做到真正意义上的独立安全。
3、现有通信终端只有一个内存和存储器处理庞大的数据,数据量急剧增加严重影响内存和存储器的稳定性,所有数据混杂在一起也会影响个人私密数据的安全;因此内存和存储器中数据混乱极易引起通信终端的死机,影响用户数据的安全。
综上可知,现有技术在实际使用上显然存在不便与缺陷,所以有必要加以改进。
发明内容
针对上述的缺陷,本发明的目的在于提供一种多系统的通信终端,其能够在物理上充分保障用户的数据安全,并且可提高不同数据的处理速度,提升用户体验。
为了实现上述目的,本发明提供一种多系统的通信终端,所述通信终端包括多个操作系统,且每个所述操作系统分别设置有独立的通讯模块、处理器和存储模块;
所述通信模块,用于实现所属操作系统的业务通信;
所述处理器,用于处理所属操作系统的数据;
所述存储模块,用于存储所属操作系统的数据。
根据本发明所述多系统的通信终端,所述存储模块包括内存和存储器。
根据本发明所述多系统的通信终端,每个所述操作系统中的所述处理器分别连接所述存储模块和通讯模块。
根据本发明所述多系统的通信终端,所述通讯模块包括基带芯片。
根据本发明所述多系统的通信终端,每个所述通讯模块同时待机。
根据本发明所述多系统的通信终端,多个所述操作系统共用外部设备,每个所述处理器分别与所述外部设备连接,且每个所述处理器控制所属操作系统的数据与所述外部设备交互。
根据本发明所述多系统的通信终端,每个所述操作系统分别设置有独立的用户识别卡,所述用户识别卡分别与所属操作系统中的所述通信模块连接。
根据本发明所述多系统的通信终端,所述通信终端包括第一操作系统和第二操作系统,所述第一操作系统对应设置有第一通讯模块、第一处理器和第一存储模块;所述第二操作系统对应设置有第二通讯模块,第二处理器和第二存储模块。
根据本发明所述多系统的通信终端,所述第一操作系统为安全系统,所述第二操作系统为普通系统。
根据本发明所述多系统的通信终端,所述安全系统对应语音业务,所述第一通讯模块用于实现语音业务的通信,所述第一处理器用于处理语音业务数据,所述第一存储模块用于存储语音业务数据;所述普通系统对应数据业务,所述第二通讯模块用于实现数据业务的通信,所述第二处理器用于处理数据业务数据,所述第二存储模块用于存储数据业务数据。
本发明提出一种基于多系统的通信终端,其每个操作系统分别设置有独立的通讯模块、处理器和存储模块,每个操作系统的处理器和存储模块处理和存储所属操作系统的数据,各个操作系统之间不存在交互,且在物理上完全独立。借此,本发明中不同的操作系统的数据通过不同的处理器和存储模块处理和存储,并且在物理上完全分开,可避免不同数据发生混乱的情况,充分保障用户的数据安全,并且可提高不同数据的处理速度,提升用户体验。优选的是,所述通信终端中包括安全系统和普通系统,安全系统处理语音业务数据,普通系统处理数据业务数据,本发明通过独立的处理器和存储模块分别处理和存储语音业务数据和数据业务数据,可在物理上充分保证语音业务数据的安全性和私密性。
附图说明
图1是传统双待机架构的示意图;
图2是本发明多系统的通信终端的结构示意图;
图3是本发明优选多系统的通信终端的结构示意图。
具体实施方式
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
图2是本发明多系统的通信终端的结构示意图,所述通信终端100可以是手机、PDA(Personal Digital Assistant,个人数字助理)、平板电脑等,并且所述通信终端100包括单模双卡通信终端、单模多卡通信终端、双模双卡通信终端、多模多卡通信终端等。所述通信终端100包括多个操作系统1~N(N为 大于或等于1的自然数),各个操作系统之间不存在交互,且每个操作系统分别设置有独立的通信模块、处理器和存储模块,其中:
通信模块1~N,用于实现所属操作系统的业务通信。例如,通信模块1用于实现所属的操作系统1的业务通信,通信模块2用于实现所属的操作系统2的业务通信。所述通信模块10包括基带芯片。当然,所述通信模块还可包括射频芯片以及电源管理芯片等。
处理器1~N,用于处理所属操作系统的数据。例如,处理器1用于处理所属的操作系统1的数据,处理器2用于处理所属的操作系统2的数据。
存储模块1~N,用于存储所属操作系统的数据。例如,存储模块1用于存储所属的操作系统1的数据,存储模块2用于存储所属的操作系统2的数据。所述存储模块包括内存和存储器。所述内存包括RAM(Random Access Memory,随机存取存储器)等,所述存储器包括EMMC(Embedded Multimedia Card,嵌入式多媒体卡)等。
在本发明中,每个操作系统中的处理器分别连接存储模块和通信模块,每个通信模块同时待机形成多待机架构。更好的是,多个操作系统共用屏幕、摄像头等外部设备,每个处理器分别与外部设备连接,且每个处理器控制所属操作系统的数据与外部设备交互。优选的是,每个操作系统分别设置有独立的用户识别卡,该用户识别卡分别与所属操作系统中的通信模块连接。所述用户识别卡可以是SIM(Subscriber Identity Module,用户识别卡)、UIM(User Identity Model,用户识别模块)等。
本发明考虑通信终端的元器件价格在大幅下降等因素,提出一种结合多系统的多待机架构,为通信终端中的每个通讯模块都配备了一个专用处理器、存储模块,并且物理完全分开,各个操作系统之间不存在交互,且在物理上完全独立。各个操作系统的数据通过不同的处理器、存储模块处理和存储,并在物理上完全分开,可充分保用户数据的安全性和私密性。另外,增加处理器、存储模块,可极大提高不同数据的处理时间,提升体验。
图3是本发明优选多系统的通信终端的结构示意图,本实施例中采用双系统的通信终端进行描述,但显然本发明也可以适用于三系统、四系统等多系统的通信终端。所述通信终端100可以是手机、PDA、平板电脑等,并且所述通 信终端100包括单模双卡通信终端、单模多卡通信终端、双模双卡通信终端、多模多卡通信终端等。所述通信终端100包括第一操作系统和第二操作系统,第一操作系统对应设置有第一通信模块11、第一处理器12和第一存储模块13;第二操作系统对应设置有第二通信模块21,第二处理器22和第二存储模块23。
在本实施例中,第一操作系统为安全系统,第二操作系统为普通系统。安全系统对应语音业务,普通系统对应数据业务,其中:
第一通信模块11,用于实现所属的安全系统的业务通信,即实现语音业务的通信。所述第一通信模块11包括基带芯片。当然,所述第一通信模块11还可包括射频芯片以及电源管理芯片等。
第一处理器12,用于处理所属的安全系统的数据,即处理语音业务数据。
第一存储模块13,用于存储所属的安全系统的数据,即存储语音业务数据。优选的是,所述第一存储模块13包括第一内存131和第一存储器132。所述第一内存131包括RAM等,所述第一存储器132包括EMMC等。
第二通信模块21,用于实现所属的普通系统的业务通信,即实现数据业务的通信。所述第二通信模块21包括基带芯片。当然,所述第二通信模块21还可包括射频芯片以及电源管理芯片等。
第二处理器22,用于处理所属的普通系统的数据,即处理数据业务数据。
第二存储模块23,用于存储所属的普通系统的数据,即存储数据业务数据。优选的是,所述第二存储模块23包括第二内存231和第二存储器232。所述第一内存231包括RAM等,所述第二存储器232包括EMMC等。
在本实施例中,每个操作系统中的处理器分别连接存储模块和通信模块。每个通信模块同时待机以形成双待机架构。即安全系统中的第一处理器12分别连接第一存储模块13和第一通信模块11,普通系统中的第二处理器22分别连接第二存储模块23和第二通信模块21。并且,第一通信模块11和第二通信模块21同时待机以形成双待机架构。
优选的是,安全系统和普通系统共用外部设备30,即第一处理器12和第二处理器22分别与外部设备30连接,且第一处理器12控制所属的安全系统的数据与外部设备交互,而第二处理器22控制所属的普通系统的数据与外部设备交互。外部设备30可以是通信终端100的屏幕、摄像头、受话器等。
优选的是,安全系统和普通系统分别设置有独立的第一用户识别卡14和第二用户识别卡24,第一用户识别卡14与所属的安全系统中的第一通信模块13连接,第二用户识别卡24与所属的普通系统中的第二通信模块23连接。
图3为通信终端100中的每个通讯模块都配备了一个专用处理器、存储模块,并且物理完全分开,定义第一通讯模块11只有语音业务功能,第一通讯模块11对应第一卡槽,第一卡槽对应安全系统,语音业务数据全是安全私密数据,由安全系统处理,如联系人、通话记录、短信等,这些数据由专用的第一处理器12、第一存储模块11处理和存储;定义第二通讯模块21只有数据业务功能,第二通讯模块21对应第二卡槽,第二卡槽对应普通系统,数据业务数据是非安全数据,由普通系统处理,如浏览网页、观看网上视频等,这些数据由专用的第二处理器22、第二存储模块21处理和存储。
本实施例中,第二用户识别卡24对应普通系统,定义第二通讯模块21只有数据业务功能,这些数据由第二处理器22、第二存储模块23处理和存储。第一处理器12处理安全系统数据,第二处理器22处理普通系统数据,两者物理独立,第一处理器12、第二处理器22都有自己私有的存储模块,数据完全分开存储和处理,从而保障私密数据的安全。不同数据通过不同的处理器和外部设备交互。
首先,为第一通讯模块11配备专用第一处理器12、第一存储模块13,第一用户识别卡14以对应安全系统,定义第一通信模块11只具备语音业务功能,语音业务数据是安全私密数据,如联系人、通话记录、短信等。语音业务数据全部由第一处理器12专门处理,全部存储在专用的第一存储模块13中,该私密数据只能通过第一处理器12与外部设备30交互,以保障用户个人数据的安全。第一通信模块11、第一处理器12、第一存储模块13专门处理第一用户识别卡14的语音业务数据,形成物理安全的安全模式,在安全系统中运行,真正保障客户的私密数据的安全,另外,单独的通讯模块、处理器和存储器也会加快数据的处理速度,提升用户体验。
其次,为第二通讯模块21配备专用第二处理器22、第二存储模块23,第二用户识别卡24以对应普通系统,定义第二通讯模块21只具备数据业务功能,数据业务数据是非安全数据,如浏览网页、观看网上视频、下载音频文 档等,数据业务数据全部由第二处理器22专门处理,并全部存储在专用的第二存储模块23中,这些公开数据通过第二处理器22与外部设备30交互。第二通讯模块21、第二处理器22、第二存储模块23专门处理数据业务数据,不与语音业务数据混杂,这些数据在普通系统中运行,并由单独的存储器存储,另外,单独的通讯模块、处理器和存储器也会加快数据的处理速度,提升用户体验。
第一处理器12处理安全系统中的私密数据,第二处理器22处理普通系统中的非私密数据,安全系统和普通系统物理上完全独立,真正分开,类似于两个通信终端合并在一起,业务上完全独立,区别在于限制第一通信模块11只有语音业务数据,限制第二通讯模块21只有数据业务数据,并由不同的存储器存储和处理,两个系统不存在交互,物理完全独立,真正保护安全系统中私密数据的安全性。
综上所述,本发明提出一种基于多系统的通信终端,其每个操作系统分别设置有独立的通讯模块、处理器和存储模块,每个操作系统的处理器和存储模块处理和存储所属操作系统的数据,各个操作系统之间不存在交互,且在物理上完全独立。借此,本发明中不同的操作系统的数据通过不同的处理器和存储模块处理和存储,并且在物理上完全分开,可避免不同数据发生混乱的情况,充分保障用户的数据安全,并且可提高不同数据的处理速度,提升用户体验。优选的是,所述通信终端中包括安全系统和普通系统,安全系统处理语音业务数据,普通系统处理数据业务数据,本发明通过独立的处理器和存储模块分别处理和存储语音业务数据和数据业务数据,可在物理上充分保证语音业务数据的安全性和私密性。
当然,本发明还可有其它多种实施例,在不背离本发明精神及其实质的情况下,熟悉本领域的技术人员当可根据本发明作出各种相应的改变和变形,但这些相应的改变和变形都应属于本发明所附的权利要求的保护范围。

Claims (10)

  1. 一种多系统的通信终端,其特征在于,所述通信终端包括多个操作系统,且每个所述操作系统分别设置有独立的通讯模块、处理器和存储模块;
    所述通信模块,用于实现所属操作系统的业务通信;
    所述处理器,用于处理所属操作系统的数据;
    所述存储模块,用于存储所属操作系统的数据。
  2. 根据权利要求1所述多系统的通信终端,其特征在于,所述存储模块包括内存和存储器。
  3. 根据权利要求1所述多系统的通信终端,其特征在于,每个所述操作系统中的所述处理器分别连接所述存储模块和通讯模块。
  4. 根据权利要求1所述多系统的通信终端,其特征在于,所述通讯模块包括基带芯片。
  5. 根据权利要求1所述多系统的通信终端,其特征在于,每个所述通讯模块同时待机。
  6. 根据权利要求1所述多系统的通信终端,其特征在于,多个所述操作系统共用外部设备,每个所述处理器分别与所述外部设备连接,且每个所述处理器控制所属操作系统的数据与所述外部设备交互。
  7. 根据权利要求1所述多系统的通信终端,其特征在于,每个所述操作系统分别设置有独立的用户识别卡,所述用户识别卡分别与所属操作系统中的所述通信模块连接。
  8. 根据权利要求1~7任一项所述多系统的通信终端,其特征在于,所述通信终端包括第一操作系统和第二操作系统,所述第一操作系统对应设置有第一通讯模块、第一处理器和第一存储模块;所述第二操作系统对应设置有第二通讯模块,第二处理器和第二存储模块。
  9. 根据权利要求8所述多系统的通信终端,其特征在于,所述第一操作系统为安全系统,所述第二操作系统为普通系统。
  10. 根据权利要求9所述多系统的通信终端,其特征在于,所述安全系统对应语音业务,所述第一通讯模块用于实现语音业务的通信,所述第一处理器 用于处理语音业务数据,所述第一存储模块用于存储语音业务数据;所述普通系统对应数据业务,所述第二通讯模块用于实现数据业务的通信,所述第二处理器用于处理数据业务数据,所述第二存储模块用于存储数据业务数据。
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