WO2019051670A1 - 一种基于智能终端的虚拟系统运行方法及虚拟系统 - Google Patents

一种基于智能终端的虚拟系统运行方法及虚拟系统 Download PDF

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Publication number
WO2019051670A1
WO2019051670A1 PCT/CN2017/101581 CN2017101581W WO2019051670A1 WO 2019051670 A1 WO2019051670 A1 WO 2019051670A1 CN 2017101581 W CN2017101581 W CN 2017101581W WO 2019051670 A1 WO2019051670 A1 WO 2019051670A1
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Prior art keywords
virtual
virtual system
original
instruction
module
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PCT/CN2017/101581
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English (en)
French (fr)
Inventor
金晓兰
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深圳传音通讯有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 深圳传音通讯有限公司 filed Critical 深圳传音通讯有限公司
Priority to CN201780096771.7A priority Critical patent/CN111344675B/zh
Priority to PCT/CN2017/101581 priority patent/WO2019051670A1/zh
Publication of WO2019051670A1 publication Critical patent/WO2019051670A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/445Program loading or initiating

Definitions

  • the present invention relates to the field of intelligent terminals, and in particular, to a virtual terminal operating method and a virtual system based on an intelligent terminal.
  • an object of the present invention is to provide a virtual terminal operating method and a virtual system based on a smart terminal, so that a user other than the default user of the child or the smart terminal can operate the smart terminal in the virtual system, and virtualize The operation in the system does not affect or modify the original system, and it does not affect the operation and use of the smart terminal, and effectively avoids the troubles caused by the unintentional or improper operation of children or others.
  • the invention discloses a virtual terminal operation method based on an intelligent terminal, and the virtual system operation method comprises the following steps:
  • the smart terminal switches from a raw operating interface based on the original system to a virtual operating interface based on the virtual system;
  • the smart terminal switches back from the virtual operation interface to the original operation interface.
  • the virtual system running method further includes:
  • the step of receiving a triggering instruction further includes:
  • the virtual system is triggered to run.
  • the step of virtually responding to the operation instruction and delivering the predetermined screen corresponding to the execution of the operation instruction further includes:
  • the predetermined screen is served within a preset response time to virtually respond to the operation instruction.
  • the virtual system operation method further includes:
  • the present invention further provides a smart terminal-based virtual system, the virtual system comprising: a receiving module, a first switching module, a response module, and a second switching module;
  • the receiving module is in communication with the switching module, receives a triggering instruction, and sends the triggering instruction to the switching module;
  • the first switching module is in communication with the receiving module and the response module, and switches the smart terminal from a raw operating interface based on the original system to a virtual operating interface based on the virtual system according to the triggering instruction;
  • the receiving module is further in communication with the response module, receives an operation instruction, and sends the operation instruction to the response module;
  • the response module is communicably connected to the receiving module and the first switching module, and virtually responds to the operation instruction, and delivers a predetermined screen corresponding to the execution of the operation instruction;
  • the receiving module is further in communication with the second switching module, receives an exit instruction, and sends the same to the second switching module;
  • the second switching module switches the smart terminal from the virtual operation interface back to the original operation interface according to the exit instruction.
  • the virtual system further includes a mirroring module, and is communicably connected to the first switching module and the response module;
  • the mirroring module includes:
  • Extracting unit extracting original data information of the original system and the original operation interface to generate mirror data
  • the virtual system is established according to the mirrored data, and the virtual operation interface having the same appearance as the original operation interface is generated;
  • a detecting unit detecting updated data information of the original system and the original operation interface to generate updated mirror data
  • the receiving module further includes: an acquiring unit, a determining unit and a control unit;
  • the collecting unit collects current fingerprint information of the current user by using the triggering instruction
  • the determining unit determines whether the current fingerprint information matches a preset fingerprint information
  • the control unit When the current fingerprint information does not match the preset fingerprint information, the control unit triggers running the virtual system.
  • the response module further includes: an intercepting unit, an identifying unit, a calling unit, and a placing unit;
  • the intercepting unit disables a sending interface in the virtual system, and intercepts the operation instruction
  • the identification unit identifies operation information corresponding to the operation instruction
  • the calling unit according to the operation information, calling a predetermined screen that matches the operation information
  • the delivery unit delivers the predetermined screen within a preset response time to virtually respond to the operation instruction.
  • the virtual system further includes: an output module, which is connected to the second switching module and the response module Connection
  • the output module outputs an operation record in the virtual system to the original system according to the cache data generated by the response module in the virtual system in response to the operation instruction.
  • the use of the smart terminal in the virtual system by the user other than the default user of the child or the smart terminal does not affect the operation and use of the smart terminal, and effectively avoids the trouble caused by the unintentional or improper operation of the child or others.
  • FIG. 1 is a schematic flowchart of a method for operating a virtual system based on an intelligent terminal according to an embodiment of the present invention
  • FIG. 2 is a schematic flow chart of a method for operating a virtual system based on an intelligent terminal according to another embodiment of the present invention
  • FIG. 3 is a schematic flowchart of a method for operating a virtual system based on an intelligent terminal according to another embodiment of the present invention.
  • FIG. 4 is a schematic flowchart of a method for operating a virtual system based on an intelligent terminal according to another embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a virtual terminal-based virtual system according to an embodiment of the present invention.
  • FIG. 6 is a schematic structural diagram of a virtual terminal-based virtual system according to another embodiment of the present invention.
  • FIG. 7 is a schematic structural diagram of a virtual terminal-based virtual system according to another embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a virtual terminal-based virtual system according to another embodiment of the present invention.
  • the smart terminal can be implemented in various forms.
  • the terminal described in the present invention may include a mobile terminal such as a mobile phone, a smart phone, a notebook computer, a PDA (Personal Digital Assistant), a PAD (Tablet), a PMP (Portable Multimedia Player), a navigation device, and the like, and such as Fixed terminal for digital TV, desktop computer, etc.
  • a mobile terminal such as a mobile phone, a smart phone, a notebook computer, a PDA (Personal Digital Assistant), a PAD (Tablet), a PMP (Portable Multimedia Player), a navigation device, and the like, and such as Fixed terminal for digital TV, desktop computer, etc.
  • PDA Personal Digital Assistant
  • PAD Tablet
  • PMP Portable Multimedia Player
  • a virtual system is an operating system that creates a new virtual image of an existing operating system, has the same functionality as the existing operating system, and can flexibly switch between the existing system and the virtual image. After entering the virtual system, all operations are carried out in this new independent virtual system. It can run software independently, save data, and have its own independent desktop without any impact on the real system.
  • a method for operating a virtual system based on an intelligent terminal is provided, and the specific steps are as follows:
  • the user triggers the opening of the intelligent terminal operation interface by issuing a pressure-sensitive touch to the screen of the smart terminal.
  • the smart terminal receives a touch through the screen through the built-in sensor, and collects the touch point, the touch time, the motion track and the like according to the moment of the touch, and generates a corresponding information based on the collected touch information.
  • Trigger instruction. Trigger commands include: two-finger tap, long press, click, double-click, swipe up, swipe down, swipe left, swipe right, and so on.
  • the smart terminal switches from a raw operating interface based on the original system to a virtual operating interface based on the virtual system;
  • the smart terminal After the smart terminal receives the trigger command issued by the user to trigger the virtual system, the smart terminal automatically switches from the running state of the original system to the running state of the virtual system. At the same time as the operation state is switched, the original operation interface is also switched to the virtual operation interface.
  • the original operation interface and the virtual operation interface are identical in appearance, including the number of icons on the operation interface, the arrangement of icons, and the operation mode of the interface.
  • the smart terminal When the smart terminal runs the virtual system, it can still receive a corresponding operation instruction according to the user's pressing a touch to the smart terminal screen.
  • the operation command includes: two-finger tap, long press, click, double click, slide up, slide down, slide to the left, slide to the right, and so on.
  • the virtual system Based on the intelligent terminal running in the virtual system, the virtual system only makes a virtual response according to the operation instruction issued by the user.
  • the virtual response is relative to the intelligent terminal's actual response to the operational instructions under the original system. Since the virtual system is turned on, the operation instructions are not actually communicated to the application modules of the original system. Therefore, the response to the operational command is not made by the original system of the smart terminal, but by the virtual system.
  • the virtual system will deliver a predetermined screen of the response according to different operation instructions as a virtual execution of the operation instruction.
  • the predetermined screen may include a response screen for executing various operation instructions, such as a screen for successfully transmitting information, a game loading screen, a preview photo library screen, a cached web page screen, a delete icon screen, and the like.
  • the user may send a corresponding exit command according to the user pressing a pressure-sensitive touch to the smart terminal screen.
  • the exit command includes: two-finger tap, long press, click, double-click, slide up, slide down, slide to the left, slide to the right, and the like.
  • the smart terminal After the smart terminal receives the exit command triggered by the user to start the virtual system, the smart terminal automatically switches from the running state of the virtual system to the running state of the original system. At the same time as the operation state is switched, the virtual operation interface is also switched to the original operation interface.
  • the virtual system running method further includes:
  • the virtual system and virtual operation interface are implemented based on mirror operations.
  • Mirroring is like mirroring. Mirroring can quickly restore a complete system in a short time.
  • the intelligent terminal can generate mirror data of the original data according to the original data information contained in the original system and the original operation interface, and restore a virtual system identical to the original system in a short time according to the mirror data.
  • the virtual system running method in this embodiment further includes monitoring the update data of the original system and the original operation interface, that is, when the user has made any in the original system and the original operation interface. Changes will be updated The mode is updated synchronously to the virtual system and virtual operation interface.
  • the user deletes an application in the original system and the original operation interface, adds a contact information of a contact, modifies the display position of an icon, etc., and the updated data information of the original system and the original operation interface is updated.
  • the way of mirroring data further updates the virtual system and virtual operation interface in the intelligent terminal to ensure the consistency of the virtual system and the virtual operation interface with the original system and the original operation interface.
  • step of receiving a triggering instruction further includes:
  • the virtual system is triggered to run.
  • the method when the user receives a triggering instruction, the method further includes identifying, by using the fingerprint information, the triggering instruction.
  • the mismatch between the current fingerprint information and the preset fingerprint information collected by the smart terminal through the built-in sensor can be used as a basis for triggering the virtual system. For example, when a user other than the default user of the smart terminal touches the smart terminal, the smart terminal determines that the current user fingerprint is different from the preset fingerprint information according to the fingerprint identification, and automatically enters the virtual system to protect the information of the smart terminal. effect.
  • FIG. 4 it is a schematic flowchart of a method for operating a virtual system based on an intelligent terminal according to another embodiment of the present invention.
  • the step of virtually responding to the operation instruction and placing a predetermined screen corresponding to the execution of the operation instruction further includes:
  • the predetermined screen is served within a preset response time to virtually respond to the operation instruction.
  • the smart terminal After the smart terminal enters the virtual system, the smart terminal automatically disables the sending interface in the virtual system, so as to prevent the user from interacting with each module or remote server in the original system of the smart terminal in the virtual system. Based on this step, all user operations are limited to the virtual system. That is, the user cannot operate the original system in the virtual system, and any operation of the user in the virtual system does not have any influence on the original system, causing any change. In addition, users can't connect to remote servers without wasting traffic data.
  • the smart terminal receives the operation instruction issued by the user in the virtual system, the operation instruction cannot be sent through the sending interface, and is intercepted by the virtual system in the background. After the virtual system intercepts the operation instruction, it identifies the operation information corresponding to the operation instruction.
  • the corresponding operation content is analyzed according to the actions of the user, such as tapping, clicking, double-clicking, long-pressing, etc., including enabling a certain game program, sending information, web browsing, and the like.
  • the virtual system further calls a predetermined screen that matches the operation information, for example, a screen for successfully transmitting information, a game loading screen, a preview photo library screen, a cached web page screen, a delete icon screen, and the like.
  • the predetermined screen obtained by the call is placed within a preset time (for example, within 1-2 s ).
  • the virtual system of the smart terminal when the operation intercepted by the virtual system is to browse a webpage, the virtual system of the smart terminal does not connect to the network, invokes a predetermined image corresponding to the browsed webpage, and delivers the webpage image cached in the smart terminal.
  • the virtual system of the smart terminal calls the predetermined image that deletes the application to be placed in the virtual operation interface.
  • the virtual system of the smart terminal when the operation intercepted by the virtual system is to send information, the virtual system of the smart terminal does not send the information outward through the communication connection, invokes a predetermined image corresponding to the sent information, and delivers a predetermined image that successfully sends the information.
  • the virtual system of the smart terminal when the operation intercepted by the virtual system is to take a photo, the virtual system of the smart terminal does not save the captured photo, calls a predetermined image corresponding to the captured photo, and delivers a captured photo to the smart terminal photo library.
  • the predetermined image in .
  • the virtual system of the smart terminal does not root. According to the running process of the game, the game level is modified, and the user cannot purchase the props through the game program in the virtual system.
  • the smart terminal in the virtual system will call a predetermined image corresponding to a certain level in the game running according to the operation of starting the game program. A predetermined image of the level running in the game program is placed.
  • the virtual system operation method further includes:
  • the smart terminal After the smart terminal exits the virtual system and returns to the original system, the smart terminal further records the cache data generated by the previous smart terminal in response to the operation instruction in the virtual system, and outputs the cached data to the original system, and the user can further use the record. Check it out.
  • FIG. 5 it is a schematic structural diagram of a virtual terminal-based virtual system according to an embodiment of the present invention.
  • a virtual system is an operating system that creates a new virtual image of an existing operating system, has the same functionality as the existing operating system, and can flexibly switch between the existing system and the virtual image. After entering the virtual system, all operations are carried out in this new independent virtual system. It can run software independently, save data, and have its own independent desktop without any impact on the real system.
  • a smart terminal-based virtual system including: a receiving module, a first switching module, a response module, and a second switching module.
  • the receiving module is in communication with the switching module, receives a triggering command, and sends the triggering command to the switching module; the user sends a pressure-sensitive touch to the screen of the smart terminal to trigger the opening of the intelligent terminal operating interface. .
  • the receiving module receives a touch through the screen of the smart terminal through the built-in sensor, and collects the touch point, the touch time, the motion track and the like according to the moment of the touch, and based on the collected touch information, The receiving module generates a corresponding triggering instruction.
  • Trigger commands include: two-finger tap, long press, click, double-click, swipe up, swipe down, swipe left, swipe right, and so on.
  • the first switching module is in communication with the receiving module and the response module, and the smart terminal switches from a raw operating interface based on the original system to a virtual operating interface based on the virtual system according to the triggering instruction;
  • the first switching module automatically switches from the running state of the original system to the running state of the virtual system.
  • the original operation interface is also switched to the virtual operation interface.
  • the original operation interface and the virtual operation interface are identical in appearance, including the number of icons on the operation interface, the arrangement of icons, and the operation mode of the interface.
  • the receiving module is further in communication with the response module, receives an operation instruction, and sends the operation instruction to the response module;
  • the receiving module can still receive a corresponding operation command according to the user pressing a pressure-sensitive touch to the smart terminal screen.
  • the operation command includes: two-finger tap, long press, click, double click, slide up, slide down, slide to the left, slide to the right, and so on.
  • the response module is communicably connected to the receiving module and the first switching module, and virtually responds to the operation instruction, and delivers a predetermined screen corresponding to the execution of the operation instruction;
  • the virtual system Based on the intelligent terminal running in the virtual system, the virtual system only makes a virtual response according to the operation instruction issued by the user.
  • the virtual response is relative to the intelligent terminal's actual response to the operational instructions under the original system.
  • the operation instructions received by the receiving module are not actually transmitted to the application modules of the original system. Therefore, the response to the operational command is not made by the response module in the original system of the smart terminal, but by the response module in the virtual system.
  • the response module of the virtual system will deliver a predetermined screen of the response according to different operation instructions as a virtual execution of the operation instruction.
  • the predetermined screen may include a response screen for executing various operation instructions, such as a screen for successfully transmitting information, a game loading screen, a preview photo library screen, a cached web page screen, a delete icon screen, and the like.
  • the receiving module is further in communication with the second switching module, receives an exit instruction, and sends the The second switching module;
  • the receiving module can receive a corresponding exit instruction according to the user sending a pressure-sensitive touch to the smart terminal screen.
  • the exit command includes: two-finger tap, long press, click, double-click, slide up, slide down, slide to the left, slide to the right, and the like.
  • the second switching module switches the smart terminal from the virtual operation interface back to the original operation interface according to the exit instruction.
  • the second switching module automatically switches the smart terminal from the running state of the virtual system to the running state of the original system.
  • the virtual operation interface is also switched to the original operation interface.
  • FIG. 6 is a schematic structural diagram of a virtual terminal-based virtual system according to another embodiment of the present invention.
  • the virtual system further includes a mirroring module, and is communicably connected to the first switching module and the response module;
  • the mirroring module includes:
  • Extracting unit extracting original data information of the original system and the original operation interface to generate mirror data
  • the virtual system is established according to the mirrored data, and the virtual operation interface having the same appearance as the original operation interface is generated;
  • a detecting unit detecting updated data information of the original system and the original operation interface to generate updated mirror data
  • the virtual system and virtual operation interface are implemented based on mirror operations.
  • Mirroring is like mirroring. Mirroring can quickly restore a complete system in a short time.
  • the extracting unit in the mirroring module can generate mirrored data of the original data according to the original data information contained in the original system and the original operating interface, and restore the same original data in the short time according to the mirrored data by the newly created unit.
  • Virtual system In order to keep the built virtual system identical to that of the original system, the virtual system in this embodiment further includes a detecting unit and an updating unit. The detecting unit monitors the update data of the original system and the original operation interface in real time, and the update unit follows up the update data update virtual system and the virtual operation interface in real time.
  • the data is updated synchronously to the virtual system and the virtual operation interface.
  • the user deletes an application in the original system and the original operation interface, adds a contact information of a contact, modifies the display position of an icon, etc., and the updated data information of the original system and the original operation interface is updated.
  • the way of mirroring data further updates the virtual system and virtual operation interface in the intelligent terminal to ensure the consistency of the virtual system and the virtual operation interface with the original system and the original operation interface.
  • FIG. 7 is a schematic structural diagram of a virtual terminal-based virtual system according to another embodiment of the present invention.
  • the receiving module further includes: an acquiring unit, a determining unit, and a control unit;
  • the collecting unit collects current fingerprint information of the current user by using the triggering instruction
  • the determining unit determines whether the current fingerprint information matches a preset fingerprint information
  • the control unit When the current fingerprint information does not match the preset fingerprint information, the control unit triggers running the virtual system.
  • the collecting unit in the receiving module further includes fingerprint collection of the triggering instruction object, and after the collecting, the determining unit identifies the triggering instruction by using the fingerprint information.
  • the mismatch between the current fingerprint information collected by the control unit and the preset fingerprint information by the built-in sensor can be used as a basis for triggering the virtual system. For example, when a user other than the default user of the smart terminal touches the smart terminal, the collecting unit collects the fingerprint information of the user, and the determining unit identifies the collected fingerprint information. According to the fingerprint identification, the determining unit determines the current user fingerprint and the preset. Different fingerprint information, the control unit automatically controls the smart terminal to enter Into the virtual system, to play a certain role in protecting the information of the intelligent terminal.
  • FIG. 8 is a schematic structural diagram of a virtual terminal-based virtual system according to another embodiment of the present invention.
  • the response module further includes: an intercepting unit, an identifying unit, a calling unit, and a placing unit;
  • the intercepting unit disables a sending interface in the virtual system, and intercepts the operation instruction
  • the identification unit identifies operation information corresponding to the operation instruction
  • the calling unit according to the operation information, calling a predetermined screen that matches the operation information
  • the delivery unit delivers the predetermined screen within a preset response time to virtually respond to the operation instruction.
  • the intercepting unit in the response module automatically disables the sending interface in the virtual system, so as to prevent the user from interacting with each module or remote server in the original system of the smart terminal in the virtual system. .
  • all user operations are limited to virtual systems. That is, the user cannot operate the original system in the virtual system, and any operation of the user in the virtual system does not have any influence on the original system, causing any change.
  • users can't connect to remote servers without wasting traffic data.
  • the receiving module receives the operation instruction issued by the user in the virtual system
  • the response module controls the operation instruction to be sent through the sending interface, and the intercepting unit intercepts the operation instruction in the background.
  • the identification unit After the interception acquires the operation instruction, the identification unit further identifies the operation information corresponding to the operation instruction. That is, the corresponding operation content is analyzed according to the actions of the user, such as tapping, clicking, double-clicking, long-pressing, etc., including enabling a certain game program, sending information, web browsing, and the like.
  • the calling unit After the identification is completed, the calling unit further calls a predetermined screen matching the operation information according to the operation information obtained by the analysis, for example, a screen for successfully transmitting information, a game loading screen, a preview photo library screen, a cached web page screen, a deleted icon screen, and the like.
  • the delivery unit delivers the predetermined screen obtained by the call within a preset time (eg, within 1-2 s).
  • the recognition unit recognizes that the interception unit intercepts the operation as browsing the webpage
  • the virtual system does not connect to the network
  • the calling unit calls a predetermined image corresponding to the browsing webpage
  • the delivery unit delivers the webpage image cached in the smart terminal.
  • the recognition unit recognizes that the interception unit intercepts the operation to delete an application
  • the calling unit calls to delete the predetermined image of the application
  • the delivery unit puts the obtained predetermined image into the virtual operation interface.
  • the recognition unit recognizes that the interception unit intercepts the operation as sending information
  • the virtual system does not send the information outward through the communication connection
  • the calling unit calls the predetermined image corresponding to the sent information
  • the delivery unit delivers the call unit successfully.
  • a predetermined image of the information For example, when the recognition unit recognizes that the interception unit intercepts the operation as sending information, the virtual system does not send the information outward through the communication connection, the calling unit calls the predetermined image corresponding to the sent information, and the delivery unit delivers the call unit successfully. A predetermined image of the information.
  • the recognition unit recognizes that the interception unit intercepts the operation to take a photo
  • the virtual system does not save the captured photo
  • the calling unit calls a predetermined image corresponding to the captured photo
  • the delivery unit delivers the calling unit to call the captured photo to save.
  • the recognition unit recognizes that the interception unit intercepts the operation to run the game program
  • the virtual system does not modify the game level according to the running process of the game, and the user cannot purchase the item through the game program in the virtual system
  • the calling unit will The operation of starting the game program calls a predetermined image corresponding to a certain level in the game running, and the delivery unit delivers a predetermined image of the game program in the game program obtained by the calling unit.
  • the virtual system further includes: an output module, and is communicatively connected to the second switching module and the response module;
  • the output module outputs an operation record in the virtual system to the original system according to the cache data generated by the response module in the virtual system in response to the operation instruction.
  • the output is output.
  • the module further records the cached data generated by the previous response module in response to the operation instruction in the virtual system, and outputs the data to the original system, and the user can further consult the usage record.
  • the virtual system operation method and the virtual system provided by the present invention enable a user other than the default user of the child or the smart terminal to operate the smart terminal in the virtual system, and the operation in the virtual system does not have any influence on the original system or The modification not affects the operation and use of the smart terminal, but also effectively avoids the troubles caused by the unintentional or improper operation of the child or others.

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Abstract

本发明公开了一种基于智能终端的虚拟系统运行方法及虚拟系统,所述虚拟系统运行方法包括如下步骤:接收一触发指令;根据所述触发指令,所述智能终端自一基于原始系统的原始操作界面切换至一基于虚拟系统的虚拟操作界面;接收一操作指令;虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面;接收一退出指令;根据所述退出指令,所述智能终端自所述虚拟操作界面切换回至所述原始操作界面。虚拟系统包括:接收模块、第一切换模块、响应模块和第二切换模块。采用本发明的技术方案,智能终端默认用户以外的使用者可在虚拟系统中对智能终端进行操作,且虚拟系统中的操作不会对原始系统造成任何影响或修改。

Description

一种基于智能终端的虚拟系统运行方法及虚拟系统 技术领域
本发明涉及智能终端领域,尤其涉及一种基于智能终端的虚拟系统运行方法及虚拟系统。
背景技术
随着科学技术的飞速发展和智能终端的广泛普及,智能终端的使用已遍布各个年龄阶段群体。对于儿童而言,家长的智能终端已开始逐步替代儿童的传统玩具。越来越多的儿童都将家长的智能终端作为自己娱乐工具。然而,由于儿童的无意或不当操作,如群发消息、购买道具、删除应用程序等,往往会为家长带来一定的困扰。
为此,需要提供一种基于智能终端的虚拟系统运行方法及虚拟系统,使儿童或智能终端默认用户以外的使用者可在虚拟系统中对智能终端进行操作,且虚拟系统中的操作不会对原始系统造成任何影响或修改,既不影响对智能终端的操作使用,又能有效避免儿童或他人的无意或不当操作对家长带来的困扰。
发明内容
为了克服上述技术缺陷,本发明的目的在于提供一种基于智能终端的虚拟系统运行方法及虚拟系统,使儿童或智能终端默认用户以外的使用者可在虚拟系统中对智能终端进行操作,且虚拟系统中的操作不会对原始系统造成任何影响或修改,既不影响对智能终端的操作使用,又能有效避免儿童或他人的无意或不当操作对家长带来的困扰。
本发明公开了一种基于智能终端的虚拟系统运行方法,所述虚拟系统运行方法包括如下步骤:
接收一触发指令;
根据所述触发指令,所述智能终端自一基于原始系统的原始操作界面切换至一基于虚拟系统的虚拟操作界面;
接收一操作指令;
虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面;
接收一退出指令;
根据所述退出指令,所述智能终端自所述虚拟操作界面切换回至所述原始操作界面。
优选地,所述虚拟系统运行方法,进一步包括:
提取所述原始系统和所述原始操作界面的原始数据信息,以生成原始镜像数据;
根据所述原始镜像数据,建立所述虚拟系统,并生成一外观与所述原始操作界面完全相同的所述虚拟操作界面;
检测所述原始系统和所述原始操作界面的更新数据信息,以生成更新镜像数据;
根据所述更新镜像数据,更新所述虚拟系统和所述虚拟操作界面。
优选地,接收一触发指令的步骤中,进一步包括:
通过所述触发指令,采集当前用户的当前指纹信息;
判断所述当前指纹信息是否与一预设指纹信息匹配;
当所述当前指纹信息与所述预设指纹信息不匹配时,触发运行所述虚拟系统。
优选地,虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面的步骤中,进一步包括:
禁用所述虚拟系统中的发送接口,拦截所述操作指令;
识别所述操作指令对应的操作信息;
根据所述操作信息,调用与所述操作信息匹配的预定画面;
在一预设响应时间内,投放所述预定画面,以虚拟响应所述操作指令。
优选地,所述智能终端自所述虚拟操作界面切换回至所述原始操作界面的步骤之后,所述虚拟系统运行方法进一步包括:
根据于所述虚拟系统中虚拟响应所述操作指令产生的缓存数据,向所述原始系统输出一于所述虚拟系统中的操作记录。
本发明进一步提供了一种基于智能终端的虚拟系统,所述虚拟系统包括:接收模块、第一切换模块、响应模块和第二切换模块;
所述接收模块,与所述切换模块通讯连接,接收一触发指令,并发送至所述切换模块;
所述第一切换模块,与所述接收模块、响应模块通讯连接,根据所述触发指令,将所述智能终端自一基于原始系统的原始操作界面切换至一基于虚拟系统的虚拟操作界面;
所述接收模块,进一步与所述响应模块通讯连接,接收一操作指令,并发送至所述响应模块;
所述响应模块,与所述接收模块、第一切换模块通讯连接,虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面;
所述接收模块,进一步与所述第二切换模块通讯连接,接收一退出指令,并发送至所述第二切换模块;
所述第二切换模块,根据所述退出指令,将所述智能终端自所述虚拟操作界面切换返回至所述原始操作界面。
优选地,所述虚拟系统,进一步包括镜像模块,与所述第一切换模块、响应模块通讯连接;
所述镜像模块包括:
提取单元,提取所述原始系统和所述原始操作界面的原始数据信息,以生成镜像数据;
新建单元,根据所述镜像数据,建立所述虚拟系统,并生成一外观与所述原始操作界面完全相同的所述虚拟操作界面;
检测单元,检测所述原始系统和所述原始操作界面的更新数据信息,以生成更新镜像数据;
更新单元,根据所述更新镜像数据,更新所述虚拟系统和所述虚拟操作界面。
优选地,所述接收模块,进一步包括:采集单元,判断单元和控制单元;
所述采集单元,通过所述触发指令,采集当前用户的当前指纹信息;
所述判断单元,判断所述当前指纹信息是否与一预设指纹信息匹配;
当所述当前指纹信息与所述预设指纹信息不匹配时,所述控制单元触发运行所述虚拟系统。
优选地,所述响应模块,进一步包括:拦截单元,识别单元,调用单元和投放单元;
所述拦截单元,禁用所述虚拟系统中的发送接口,拦截所述操作指令;
所述识别单元,识别所述操作指令对应的操作信息;
所述调用单元,根据所述操作信息,调用与所述操作信息匹配的预定画面;
所述投放单元,在一预设响应时间内,投放所述预定画面,以虚拟响应所述操作指令。
优选地,所述虚拟系统进一步包括:输出模块,与所述第二切换模块、响应模块通 讯连接;
当所述第二切换模块将所述智能终端自所述虚拟操作界面切换回至所述原始操作界面之后,
所述输出模块,根据于所述虚拟系统中所述响应模块虚拟响应所述操作指令产生的缓存数据,向所述原始系统输出一于所述虚拟系统中的操作记录。
采用了上述技术方案后,与现有技术相比,具有以下有益效果:
使儿童或智能终端默认用户以外的使用者在虚拟系统中使用智能终端,既不影响对智能终端的操作使用,又能有效避免儿童或他人的无意或不当操作对家长带来的困扰。
附图说明
图1为符合本发明实施例中的一种基于智能终端的虚拟系统运行方法的流程示意图;
图2为符合本发明另一实施例中的一种基于智能终端的虚拟系统运行方法的流程示意图;
图3为符合本发明另一实施例中的一种基于智能终端的虚拟系统运行方法的流程示意图;
图4为符合本发明另一实施例中的一种基于智能终端的虚拟系统运行方法的流程示意图;
图5为符合本发明实施例中的一种基于智能终端的虚拟系统的结构示意图;
图6为符合本发明另一实施例中的一种基于智能终端的虚拟系统的结构示意图;
图7为符合本发明另一实施例中的一种基于智能终端的虚拟系统的结构示意图;
图8为符合本发明另一实施例中的一种基于智能终端的虚拟系统的结构示意图。
具体实施方式
以下结合附图与具体实施例进一步阐述本发明的优点。
在本公开使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本公开。在本公开和所附权利要求书中所使用的单数形式的“一种”、“所述”和“该”也旨在包括多数形式,除非上下文清楚地表示其他含义。还应当理解,本文中使用的术语“和/或”是指并包含一个或多个相关联的列出项目的任何或所有可能组合。
在本发明的描述中,除非另有规定和限定,对于本领域的普通技术人员而言,可以根据具体情况理解术语的具体含义。
在后续的描述中,使用用于表示元件的诸如“模块”、“部件”或“单元”的后缀仅为了有利于本发明的说明,其本身并没有特定的意义,仅表示系统的一部分。因此,“模块”与“部件”可以混合地使用。
智能终端可以以各种形式来实施。例如,本发明中描述的终端可以包括诸如移动电话、智能电话、笔记本电脑、PDA(个人数字助理)、PAD(平板电脑)、PMP(便携式多媒体播放器)、导航装置等等的移动终端以及诸如数字TV、台式计算机等等的固定终端。
参阅图1,为符合本发明实施例中的一种基于智能终端的虚拟系统运行方法的流程示意图。虚拟系统,指的是通过生成现有操作系统的全新虚拟镜像,同时具有与现有操作系统一致的功能,并且能够在现有系统与虚拟镜像之间灵活切换的操作系统。进入虚拟系统后,所有操作都是在这个全新的独立的虚拟系统里面进行,可以独立运行软件、保存数据,拥有自己的独立桌面,不会对真正的系统产生任何影响。
本实施例中提供了一种基于智能终端的虚拟系统运行方法,具体步骤如下:
接收一触发指令;
用户通过向智能终端的屏幕发出一带有压力作用的触碰,以触发智能终端操作界面的开启。智能终端通过内置传感器,通过其屏幕接收到一触碰,并根据该触碰的瞬间采集该触碰的触碰点、触碰时间、运动轨迹等信息,基于采集所得的触碰信息,生成相应的触发指令。触发指令包括:双指叩击、长按、单击、双击、向上滑动、向下滑动、向左滑动、向右滑动等。
根据所述触发指令,所述智能终端自一基于原始系统的原始操作界面切换至一基于虚拟系统的虚拟操作界面;
当智能终端接收到用户发出的触发启动虚拟系统的触发指令后,智能终端自动从原始系统的运行状态切换至虚拟系统的运行状态。运行状态切换的同时,原始操作界面也随之切换为虚拟操作界面。原始操作界面和虚拟操作界面在外观上完全相同,包括操作界面上的图标的数量、图标的排列方式及界面的操作方式等。
接收一操作指令;
当智能终端运行虚拟系统时,仍然可以根据用户向智能终端屏幕发出一带有压力作用的触碰,接收一相应的操作指令。与触发指令相同,操作指令包括:双指叩击、长按、单击、双击、向上滑动、向下滑动、向左滑动、向右滑动等。
虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面;
基于智能终端在虚拟系统中运行,虚拟系统根据用户发出的操作指令仅会作出虚拟响应。虚拟响应,与智能终端基于原始系统下对操作指令作出的实际响应相对。由于虚拟系统开启后,操作指令并未实际传达到原始系统的各个应用模块中。因此,对该操作指令作出的响应并不会通过智能终端的原始系统发出,而是由虚拟系统作出的。虚拟系统会根据不同的操作指令,投放出响应的预定画面,以作为对操作指令的虚拟执行。预定画面可包括执行各种操作指令的响应画面,例如:信息发送成功的画面、游戏加载画面、预览照片库画面、缓存的网页画面、删除图标画面等。
接收一退出指令;
当智能终端需要停止运行虚拟系统切换至原始系统中时,可以根据用户向智能终端屏幕发出一带有压力作用的触碰,接收一相应的退出指令。与触发指令、操作指令相同,退出指令包括:双指叩击、长按、单击、双击、向上滑动、向下滑动、向左滑动、向右滑动等。
根据所述退出指令,所述智能终端自所述虚拟操作界面切换回所述原始操作界面。
当智能终端接收到用户发出的触发启动虚拟系统的退出指令后,智能终端自动从虚拟系统的运行状态切换返回至原始系统的运行状态。运行状态切换的同时,虚拟操作界面也随之切换为原始操作界面。
参阅图2,为符合本发明另一实施例中的一种基于智能终端的虚拟系统运行方法的流程示意图。本实施例中,所述虚拟系统运行方法,进一步包括:
提取所述原始系统和所述原始操作界面的原始数据信息,以生成原始镜像数据;
根据所述原始镜像数据,建立所述虚拟系统,并生成一外观与所述原始操作界面完全相同的所述虚拟操作界面;
检测所述原始系统和所述原始操作界面的更新数据信息,以生成更新镜像数据;
根据所述更新镜像数据,更新所述虚拟系统和所述虚拟操作界面。
虚拟系统和虚拟操作界面是基于镜像操作实现的。镜像就像照镜子一样,镜像操作可以实现在短时间内快速还原一个完整的系统。基于镜像操作,智能终端可以根据原始系统及原始操作界面所包含的原始数据信息,生成原始数据的镜像数据,并根据镜像数据在短时间内还原一个与原始系统相同的虚拟系统。为了使组建的虚拟系统保持与原始系统的完全相同,本实施例中的虚拟系统运行方法还包括监测原始系统和原始操作界面的更新数据,即当用户在原始系统和原始操作界面中作过任何的变动都会以更新数据的 方式同步更新到虚拟系统和虚拟操作界面中。例如,用户在原始系统和原始操作界面中删除某个应用程序,添加某位联系人的联系方式,修改了某个图标的显示位置等,同时原始系统和原始操作界面的更新数据信息会通过更新镜像数据的方式进一步更新智能终端中的虚拟系统和虚拟操作界面,确保虚拟系统和虚拟操作界面与原始系统和原始操作界面的一致性。
参阅图3,为符合本发明另一实施例中的一种基于智能终端的虚拟系统运行方法的流程示意图。本实施例中,接收一触发指令的步骤中,进一步包括:
通过所述触发指令,采集当前用户的当前指纹信息;
判断所述当前指纹信息是否与一预设指纹信息匹配;
当所述当前指纹信息与所述预设指纹信息不匹配时,触发运行所述虚拟系统。
本实施例中,当用户接收到一触发指令时,进一步包括通过指纹信息对该触发指令进行识别。智能终端通过内置传感器所采集到的当前指纹信息与预设指纹信息的不匹配结果可作为触发虚拟系统的依据。例如,当除智能终端默认用户以外的用户触碰智能终端时,智能终端根据指纹识别,判断当前用户指纹与预设指纹信息不同,自动进入虚拟系统,以对智能终端的信息起到一定的保护作用。
参阅图4,为符合本发明另一实施例中的一种基于智能终端的虚拟系统运行方法的流程示意图。本实施例中,虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面的步骤中,进一步包括:
禁用所述虚拟系统中的发送接口,拦截所述操作指令;
识别所述操作指令对应的操作信息;
根据所述操作信息,调用与所述操作信息匹配的预定画面;
在一预设响应时间内,投放所述预定画面,以虚拟响应所述操作指令。
基于智能终端进入虚拟系统后,智能终端自动禁用虚拟系统中的发送接口,以防用户在虚拟系统中实现与智能终端原始系统中的各个模块或远程服务器交互。基于此步骤,用户所有的操作都仅局限于虚拟系统中。即,用户在虚拟系统中无法对原始系统进行操作,用户在虚拟系统中的任何操作也不会对原始系统产生任何影响,造成任何变化。此外,用户也无法与远程服务器连接,不会造成流量数据的浪费。当智能终端在虚拟系统中接收到用户发出的操作指令后,操作指令无法通过发送接口发出,被虚拟系统于后台拦截。虚拟系统拦截获取到操作指令后,识别操作指令对应的操作信息。即,根据用户向屏幕发出的叩击、单击、双击、长按等动作解析其对应的操作内容,包括启用某一游戏程序、发送信息、网页浏览等。根据解析所得的操作信息,虚拟系统进一步调用与该操作信息匹配的预定画面,例如:信息发送成功的画面、游戏加载画面、预览照片库画面、缓存的网页画面、删除图标画面等。调用完成后,在一预设时间(如1-2s内)内投放该调用所得的预定画面。
例如,当虚拟系统拦截所得的操作为浏览网页时,智能终端的虚拟系统不会连通网络,调用与浏览网页对应的预定图像,投放缓存于智能终端中的网页图像。
例如,当虚拟系统拦截所得的操作为删除某一应用程序时,智能终端的虚拟系统调用删除该应用程序的预定图像投放于虚拟操作界面中。
例如,当虚拟系统拦截所得的操作为发送信息时,智能终端的虚拟系统不会通过通讯连接向外发送信息,调用与发送信息对应的预定图像,投放一成功发出信息的预定图像。
例如,当虚拟系统拦截所得的操作为拍摄照片时,智能终端的虚拟系统不会保存该拍摄所得的照片,调用与拍摄照片对应的预定图像,投放一将拍摄所得的照片保存于智能终端照片库中的预定图像。
例如,当虚拟系统拦截所得的操作为运行游戏程序时,智能终端的虚拟系统不会根 据该游戏的运行进程修改游戏的关卡,用户也无法通过虚拟系统中的游戏程序购买道具,虚拟系统中的智能终端会根据启动游戏程序的操作调用与游戏运行中某一关卡对应的预定图像,投放游戏程序中该关卡运行的预定图像。
在另一实施例中,所述智能终端自所述虚拟操作界面切换回至所述原始操作界面的步骤之后,所述虚拟系统运行方法进一步包括:
根据于所述虚拟系统中虚拟响应所述操作指令产生的缓存数据,向所述原始系统输出一于所述虚拟系统中的操作记录。
当智能终端退出虚拟系统返回至原始系统中后,智能终端进一步记录先前智能终端于虚拟系统中对操作指令作出响应后所产生的缓存数据,并输出到原始系统中,用户可进一步对该使用记录进行查阅。
参阅图5,为符合本发明实施例中的一种基于智能终端的虚拟系统的结构示意图。虚拟系统,指的是通过生成现有操作系统的全新虚拟镜像,同时具有与现有操作系统一致的功能,并且能够在现有系统与虚拟镜像之间灵活切换的操作系统。进入虚拟系统后,所有操作都是在这个全新的独立的虚拟系统里面进行,可以独立运行软件、保存数据,拥有自己的独立桌面,不会对真正的系统产生任何影响。
本实施例中提供了一种基于智能终端的虚拟系统,包括:接收模块、第一切换模块、响应模块和第二切换模块。
所述接收模块,与所述切换模块通讯连接,接收一触发指令,并发送至所述切换模块;用户通过向智能终端的屏幕发出一带有压力作用的触碰,以触发智能终端操作界面的开启。接收模块通过内置传感器,通过智能终端的屏幕接收到一触碰,并根据该触碰的瞬间采集该触碰的触碰点、触碰时间、运动轨迹等信息,基于采集所得的触碰信息,接收模块生成相应的触发指令。触发指令包括:双指叩击、长按、单击、双击、向上滑动、向下滑动、向左滑动、向右滑动等。
所述第一切换模块,与所述接收模块、响应模块通讯连接,根据所述触发指令,所述智能终端自一基于原始系统的原始操作界面切换至一基于虚拟系统的虚拟操作界面;
当接收模块接收到用户发出的触发启动虚拟系统的触发指令后,第一切换模块自动从原始系统的运行状态切换至虚拟系统的运行状态。运行状态切换的同时,原始操作界面也随之切换为虚拟操作界面。原始操作界面和虚拟操作界面在外观上完全相同,包括操作界面上的图标的数量、图标的排列方式及界面的操作方式等。
所述接收模块,进一步与所述响应模块通讯连接,接收一操作指令,并发送至所述响应模块;
当智能终端运行虚拟系统时,接收模块仍然可以根据用户向智能终端屏幕发出一带有压力作用的触碰,接收一相应的操作指令。与触发指令相同,操作指令包括:双指叩击、长按、单击、双击、向上滑动、向下滑动、向左滑动、向右滑动等。
所述响应模块,与所述接收模块、第一切换模块通讯连接,虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面;
基于智能终端在虚拟系统中运行,虚拟系统根据用户发出的操作指令仅会作出虚拟响应。虚拟响应,与智能终端基于原始系统下对操作指令作出的实际响应相对。由于虚拟系统开启后,接收模块接收所得的操作指令并未实际传达到原始系统的各个应用模块中。因此,对该操作指令作出的响应并不会通过智能终端的原始系统中的响应模块发出,而是由虚拟系统中的响应模块作出的。虚拟系统的响应模块会根据不同的操作指令,投放出响应的预定画面,以作为对操作指令的虚拟执行。预定画面可包括执行各种操作指令的响应画面,例如:信息发送成功的画面、游戏加载画面、预览照片库画面、缓存的网页画面、删除图标画面等。
所述接收模块,进一步与所述第二切换模块通讯连接,接收一退出指令,并发送至 所述第二切换模块;
当智能终端需要停止运行虚拟系统切换至原始系统中时,接收模块可以根据用户向智能终端屏幕发出一带有压力作用的触碰,接收一相应的退出指令。与触发指令、操作指令相同,退出指令包括:双指叩击、长按、单击、双击、向上滑动、向下滑动、向左滑动、向右滑动等。
所述第二切换模块,根据所述退出指令,将所述智能终端自所述虚拟操作界面切换返回至所述原始操作界面。
当接收模块接收到用户发出的触发启动虚拟系统的退出指令后,第二切换模块自动将智能终端从虚拟系统的运行状态切换返回至原始系统的运行状态。运行状态切换的同时,虚拟操作界面也随之切换为原始操作界面。
参阅图6,为符合本发明另一实施例中的一种基于智能终端的虚拟系统的结构示意图。本实施例中,所述虚拟系统,进一步包括镜像模块,与所述第一切换模块、响应模块通讯连接;
所述镜像模块包括:
提取单元,提取所述原始系统和所述原始操作界面的原始数据信息,以生成镜像数据;
新建单元,根据所述镜像数据,建立所述虚拟系统,并生成一外观与所述原始操作界面完全相同的所述虚拟操作界面;
检测单元,检测所述原始系统和所述原始操作界面的更新数据信息,以生成更新镜像数据;
更新单元,根据所述更新镜像数据,更新所述虚拟系统和所述虚拟操作界面。
虚拟系统和虚拟操作界面是基于镜像操作实现的。镜像就像照镜子一样,镜像操作可以实现在短时间内快速还原一个完整的系统。基于镜像操作,镜像模块中的提取单元可以根据原始系统及原始操作界面所包含的原始数据信息,生成原始数据的镜像数据,并通过新建单元根据镜像数据在短时间内还原一个与原始系统相同的虚拟系统。为了使组建的虚拟系统保持与原始系统的完全相同,本实施例中的虚拟系统还包括检测单元和更新单元。检测单元实时监测原始系统和原始操作界面的更新数据,更新单元实时跟进更新数据更新虚拟系统和虚拟操作界面。即,当用户在原始系统和原始操作界面中作过任何的变动都会以更新数据的方式同步更新到虚拟系统和虚拟操作界面中。例如,用户在原始系统和原始操作界面中删除某个应用程序,添加某位联系人的联系方式,修改了某个图标的显示位置等,同时原始系统和原始操作界面的更新数据信息会通过更新镜像数据的方式进一步更新智能终端中的虚拟系统和虚拟操作界面,确保虚拟系统和虚拟操作界面与原始系统和原始操作界面的一致性。
参阅图7,为符合本发明另一实施例中的一种基于智能终端的虚拟系统的结构示意图。本实施例中,所述接收模块,进一步包括:采集单元,判断单元和控制单元;
所述采集单元,通过所述触发指令,采集当前用户的当前指纹信息;
所述判断单元,判断所述当前指纹信息是否与一预设指纹信息匹配;
当所述当前指纹信息与所述预设指纹信息不匹配时,所述控制单元触发运行所述虚拟系统。
本实施例中,当接收模块接收到一触发指令时,接收模块中的采集单元进一步包括对发出触发指令对象的指纹采集,采集后,判断单元通过指纹信息对该触发指令进行识别。控制单元通过内置传感器所采集到的当前指纹信息与预设指纹信息的不匹配结果可作为触发虚拟系统的依据。例如,当除智能终端默认用户以外的用户触碰智能终端时,采集单元采集该用户的指纹信息,判断单元对采集所得的指纹信息进行识别,根据指纹识别,判断单元判断当前用户指纹与预设指纹信息不同,控制单元自动控制智能终端进 入虚拟系统,以对智能终端的信息起到一定的保护作用。
参阅图8,为符合本发明另一实施例中的一种基于智能终端的虚拟系统的结构示意图。本实施例中,所述响应模块,进一步包括:拦截单元,识别单元,调用单元和投放单元;
所述拦截单元,禁用所述虚拟系统中的发送接口,拦截所述操作指令;
所述识别单元,识别所述操作指令对应的操作信息;
所述调用单元,根据所述操作信息,调用与所述操作信息匹配的预定画面;
所述投放单元,在一预设响应时间内,投放所述预定画面,以虚拟响应所述操作指令。
基于第一切换模块将智能终端切换入虚拟系统后,响应模块中的拦截单元自动禁用虚拟系统中的发送接口,以防用户在虚拟系统中实现与智能终端原始系统中的各个模块或远程服务器交互。基于此单元,用户所有的操作都仅局限于虚拟系统中。即,用户在虚拟系统中无法对原始系统进行操作,用户在虚拟系统中的任何操作也不会对原始系统产生任何影响,造成任何变化。此外,用户也无法与远程服务器连接,不会造成流量数据的浪费。当接收模块在虚拟系统中接收到用户发出的操作指令后,响应模块控制操作指令无法通过发送接口发出,拦截单元将该操作指令于后台拦截。拦截获取到操作指令后,识别单元进一步识别操作指令对应的操作信息。即,根据用户向屏幕发出的叩击、单击、双击、长按等动作解析其对应的操作内容,包括启用某一游戏程序、发送信息、网页浏览等。识别完成后,调用单元根据解析所得的操作信息,进一步调用与该操作信息匹配的预定画面,例如:信息发送成功的画面、游戏加载画面、预览照片库画面、缓存的网页画面、删除图标画面等。调用完成后,投放单元在一预设时间(如1-2s内)内投放该调用所得的预定画面。
例如,当识别单元识别拦截单元拦截所得的操作为浏览网页时,虚拟系统不会连通网络,调用单元调用与浏览网页对应的预定图像,投放单元投放缓存于智能终端中的网页图像。
例如,当识别单元识别拦截单元拦截所得的操作为删除某一应用程序时,调用单元调用删除该应用程序的预定图像,投放单元将调用所得的预定图像投放于虚拟操作界面中。
例如,当识别单元识别拦截单元拦截所得的操作为发送信息时,虚拟系统不会通过通讯连接向外发送信息,调用单元调用与发送信息对应的预定图像,投放单元投放调用单元调用所得的成功发出信息的预定图像。
例如,当识别单元识别拦截单元拦截所得的操作为拍摄照片时,虚拟系统不会保存该拍摄所得的照片,调用单元调用与拍摄照片对应的预定图像,投放单元投放调用单元调用拍摄所得的照片保存于智能终端照片库中的预定图像。
例如,当识别单元识别拦截单元拦截所得的操作为运行游戏程序时,虚拟系统不会根据该游戏的运行进程修改游戏的关卡,用户也无法通过虚拟系统中的游戏程序购买道具,调用单元会根据启动游戏程序的操作调用与游戏运行中某一关卡对应的预定图像,投放单元投放调用单元调用所得的游戏程序中该关卡运行时的预定图像。
在另一实施例中,所述虚拟系统进一步包括:输出模块,与所述第二切换模块、响应模块通讯连接;
当所述第二切换模块将所述智能终端自所述虚拟操作界面切换回至所述原始操作界面之后,
所述输出模块,根据于所述虚拟系统中所述响应模块虚拟响应所述操作指令产生的缓存数据,向所述原始系统输出一于所述虚拟系统中的操作记录。
当第二切换模块根据退出指令将智能终端退出虚拟系统返回至原始系统中后,输出 模块进一步记录先前响应模块于虚拟系统中对操作指令作出响应后所产生的缓存数据,并输出到原始系统中,用户可进一步对该使用记录进行查阅。
采用本发明提供的虚拟系统运行方法及虚拟系统,能够使儿童或智能终端默认用户以外的使用者在虚拟系统中对智能终端进行操作,且虚拟系统中的操作不会对原始系统造成任何影响或修改,既不影响对智能终端的操作使用,又能有效避免儿童或他人的无意或不当操作对家长带来的困扰。
应当注意的是,本发明的实施例有较佳的实施性,且并非对本发明作任何形式的限制,任何熟悉该领域的技术人员可能利用上述揭示的技术内容变更或修饰为等同的有效实施例,但凡未脱离本发明技术方案的内容,依据本发明的技术实质对以上实施例所作的任何修改或等同变化及修饰,均仍属于本发明技术方案的范围内。

Claims (10)

  1. 一种基于智能终端的虚拟系统运行方法,其特征在于,
    所述虚拟系统运行方法包括如下步骤:
    接收一触发指令;
    根据所述触发指令,所述智能终端自一基于原始系统的原始操作界面切换至一基于虚拟系统的虚拟操作界面;
    接收一操作指令;
    虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面;
    接收一退出指令;
    根据所述退出指令,所述智能终端自所述虚拟操作界面切换回至所述原始操作界面。
  2. 如权利要求1所述的虚拟系统运行方法,其特征在于,
    所述虚拟系统运行方法,进一步包括:
    提取所述原始系统和所述原始操作界面的原始数据信息,以生成原始镜像数据;
    根据所述原始镜像数据,建立所述虚拟系统,并生成一外观与所述原始操作界面完全相同的所述虚拟操作界面;
    检测所述原始系统和所述原始操作界面的更新数据信息,以生成更新镜像数据;
    根据所述更新镜像数据,更新所述虚拟系统和所述虚拟操作界面。
  3. 如权利要求1所述的虚拟系统运行方法,其特征在于,
    接收一触发指令的步骤中,进一步包括:
    通过所述触发指令,采集当前用户的当前指纹信息;
    判断所述当前指纹信息是否与一预设指纹信息匹配;
    当所述当前指纹信息与所述预设指纹信息不匹配时,触发运行所述虚拟系统。
  4. 如权利要求1所述的虚拟系统运行方法,其特征在于,
    虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面的步骤中,进一步包括:
    禁用所述虚拟系统中的发送接口,拦截所述操作指令;
    识别所述操作指令对应的操作信息;
    根据所述操作信息,调用与所述操作信息匹配的预定画面;
    在一预设响应时间内,投放所述预定画面,以虚拟响应所述操作指令。
  5. 如权利要求1-4任一项所述的虚拟系统运行方法,其特征在于,
    所述智能终端自所述虚拟操作界面切换回至所述原始操作界面的步骤之后,所述虚拟系统运行方法进一步包括:
    根据于所述虚拟系统中虚拟响应所述操作指令产生的缓存数据,向所述原始系统输出一于所述虚拟系统中的操作记录。
  6. 一种基于智能终端的虚拟系统,其特征在于,
    所述虚拟系统包括:接收模块、第一切换模块、响应模块和第二切换模块;
    所述接收模块,与所述切换模块通讯连接,接收一触发指令,并发送至所述切换模块;
    所述第一切换模块,与所述接收模块、响应模块通讯连接,根据所述触发指令,将所述智能终端自一基于原始系统的原始操作界面切换至一基于虚拟系统的虚拟操作界面;
    所述接收模块,进一步与所述响应模块通讯连接,接收一操作指令,并发送至所述响应模块;
    所述响应模块,与所述接收模块、第一切换模块通讯连接,虚拟响应所述操作指令,投放与执行所述操作指令对应的预定画面;
    所述接收模块,进一步与所述第二切换模块通讯连接,接收一退出指令,并发送至所述第二切换模块;
    所述第二切换模块,根据所述退出指令,将所述智能终端自所述虚拟操作界面切换返回至所述原始操作界面。
  7. 如权利要求6所述的虚拟系统,其特征在于,
    所述虚拟系统,进一步包括镜像模块,与所述第一切换模块、响应模块通讯连接;
    所述镜像模块包括:
    提取单元,提取所述原始系统和所述原始操作界面的原始数据信息,以生成镜像数据;
    新建单元,根据所述镜像数据,建立所述虚拟系统,并生成一外观与所述原始操作界面完全相同的所述虚拟操作界面;
    检测单元,检测所述原始系统和所述原始操作界面的更新数据信息,以生成更新镜像数据;
    更新单元,根据所述更新镜像数据,更新所述虚拟系统和所述虚拟操作界面。
  8. 如权利要求6所述的虚拟系统,其特征在于,
    所述接收模块,进一步包括:采集单元,判断单元和控制单元;
    所述采集单元,通过所述触发指令,采集当前用户的当前指纹信息;
    所述判断单元,判断所述当前指纹信息是否与一预设指纹信息匹配;
    当所述当前指纹信息与所述预设指纹信息不匹配时,所述控制单元触发运行所述虚拟系统。
  9. 如权利要求6所述的虚拟系统,其特征在于,
    所述响应模块,进一步包括:拦截单元,识别单元,调用单元和投放单元;
    所述拦截单元,禁用所述虚拟系统中的发送接口,拦截所述操作指令;
    所述识别单元,识别所述操作指令对应的操作信息;
    所述调用单元,根据所述操作信息,调用与所述操作信息匹配的预定画面;
    所述投放单元,在一预设响应时间内,投放所述预定画面,以虚拟响应所述操作指令。
  10. 如权利要求6-9任一项所述的虚拟系统,其特征在于,
    所述虚拟系统进一步包括:输出模块,与所述第二切换模块、响应模块通讯连接;
    当所述第二切换模块将所述智能终端自所述虚拟操作界面切换回至所述原始操作界面之后,
    所述输出模块,根据于所述虚拟系统中所述响应模块虚拟响应所述操作指令产生的缓存数据,向所述原始系统输出一于所述虚拟系统中的操作记录。
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