WO2017004982A1 - Système intelligent et son procédé de mise en œuvre, et périphérique pour dispositif intelligent - Google Patents

Système intelligent et son procédé de mise en œuvre, et périphérique pour dispositif intelligent Download PDF

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Publication number
WO2017004982A1
WO2017004982A1 PCT/CN2016/072145 CN2016072145W WO2017004982A1 WO 2017004982 A1 WO2017004982 A1 WO 2017004982A1 CN 2016072145 W CN2016072145 W CN 2016072145W WO 2017004982 A1 WO2017004982 A1 WO 2017004982A1
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Prior art keywords
smart device
operating system
information
peripheral
input
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PCT/CN2016/072145
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English (en)
Chinese (zh)
Inventor
赵珅
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北京海誉动想科技股份有限公司
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Publication of WO2017004982A1 publication Critical patent/WO2017004982A1/fr

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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
    • G06F9/46Multiprogramming arrangements
    • G06F9/48Program initiating; Program switching, e.g. by interrupt
    • G06F9/4806Task transfer initiation or dispatching
    • G06F9/4843Task transfer initiation or dispatching by program, e.g. task dispatcher, supervisor, operating system
    • 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
    • G06F9/46Multiprogramming arrangements
    • G06F9/48Program initiating; Program switching, e.g. by interrupt

Definitions

  • the present invention relates to the field of mobile communications technologies, and in particular, to an intelligent system and an implementation method thereof, and a peripheral device for the smart device.
  • each smart device In order to implement various functions, a corresponding operating system is generally provided in each smart device.
  • the operating systems commonly used in smart devices are: IOS system, Android system, Windows Mobile system, Windows Phone system, Symbian system and BlackBerry OS system.
  • the present invention provides an intelligent system and an implementation method thereof, and a peripheral device for a smart device, so that the functions of a dual system can be realized.
  • An intelligent system comprising: a smart device and a peripheral device connectable to the smart device through a connection interface;
  • the smart device runs a first operating system and a second operating system control module;
  • the peripheral operates with a second operating system;
  • the second operating system control module is configured to use a first operating system running in the smart device as a current system displayed to the user for operation according to the received first switching instruction of the user, according to the received user a second switching instruction to operate a second operating system in the peripheral device as a current system for presenting operation to a user; when performing an operation of the user by the second operating system, external information acquired by the smart device Providing to a second operating system running in the peripheral device; receiving hardware operation control information from a second operating system in the peripheral device, and controlling hardware of the smart device to perform a corresponding operation according to the hardware operation control information .
  • a peripheral device for a smart device comprising: a processor, a first memory, a second memory, an input/output interface, and a power source;
  • the processor is respectively connected to the first memory, the second memory, and an input/output interface;
  • the second memory is configured to store data of a second operating system different from or identical to the first operating system in the smart device
  • the first memory is configured to read data of the second operating system from the second memory by the processor and run the second operating system
  • the processor is connected to a controller disposed in the mobile terminal through the interface component;
  • the processor is connected to the second operating system control module that is disposed in the smart device by using the input/output interface, and is configured to receive, by the input/output interface, the smart device that is sent by the second operating system control module. External information is processed and the processed external information is sent separately And sending the first memory or the second memory corresponding to the processed external information; receiving the hardware operation control information sent by the first memory and the second memory, processing the received hardware operation control information, and processing the processed The hardware operation control information is sent to the second operating system control module through the input/output interface;
  • the power source is configured to supply power to the processor, the first memory, the second memory, and an input/output interface.
  • the switching and processing of the above two operating systems can be implemented on the smart device, so that the user can feel that two different operating systems can be used on the smart device, if the smart device and its peripherals are used as a whole intelligent system.
  • FIG. 1A and 1B are respectively exemplary structural diagrams of an intelligent system in an embodiment of the present invention.
  • FIG. 2 is a schematic structural diagram of a peripheral device for a smart device according to an embodiment of the present invention.
  • FIG. 3 is an exemplary flowchart of an implementation method of an intelligent system according to an embodiment of the present invention.
  • the smart device in order to solve the problem that the smart device cannot use the applications and games supported by other operating systems except the operating system set by itself, it is considered to provide an external device (referred to as a peripheral device) for the smart device.
  • a peripheral device an external device for the smart device.
  • Another operating system is available in the peripheral for use by the smart device.
  • the intelligent system in the embodiment of the present invention includes: a smart device 10 and a peripheral device 20 that can be connected to the smart device 10 through the connection interfaces 11, 21.
  • the smart device 10 and the peripheral device 20 can be connected by a wired connection, such as the transmission line 23 in the figure; or, by a wireless connection (not shown in the figure) show).
  • the smart device 10 runs a first operating system and a second operating system control module 22; the peripheral runs a second operating system.
  • the second operating system control module 22 is configured to use the first operating system running in the smart device 10 as a current system displayed to the user for operation according to the received first switching instruction of the user, according to the received user's first
  • the second switching instruction will operate the second operating system in the peripheral device 20 as the current system that is presented to the user for operation.
  • the smart device When the operation of the user is performed by the first operating system, that is, when the current system presented to the user for operation is the first operating system or the first operating system performs the operation of the user in the background, the smart device performs according to the traditional processing flow. Just handle it. For example, the smart device 10 obtains external information and processes the external information by the first operating system. If the hardware device needs to be controlled, the first operating system directly controls each hardware device of the smart device 10. For example, if there is data to be output, the data of the desired output may be directly output through various output devices in the smart device 10.
  • the second operating system control module 22 When the operation of the user is performed by the second operating system, that is, when the current system presented to the user for operation is the second operating system or the second operating system performs the operation of the user in the background, the second operating system control module 22 The external information acquired by the mobile terminal 10 is sent to the peripheral device 20 through the connection interface, and the external information is processed by the second operating system in the peripheral device 20; when the second operating system needs to use the hardware device of the smart device 10, the second operation The system control module 22 receives hardware operation control information from a second operating system in the peripheral device, and controls hardware of the smart device to perform a corresponding operation according to the hardware operation control information. For example, if the second operating system has data to be output, the output data that needs to be output sent by the peripheral device 20 is received, and the output data that needs to be output is output through various output devices in the smart device 10.
  • the external information acquired by the smart device 10 includes at least one of the following information and any combination: user instruction information input by a user through a screen, a button or a keyboard of the smart device 10, and/or content information; Image information acquired by the camera of the device 10; audio information acquired by the microphone of the smart device 10; sensor data acquired by the sensor of the smart device 10, and the like.
  • the sensor may include any one of a gravity sensor, a GPS, a gyroscope, or the like. Combination of meanings.
  • the external information may be first transmitted to the first operating system, and then provided by the first operating system to the second operating system control module 22, and the second operating system control module 22 is again passed through the smart device 10 and the peripheral device 20. The connection interface between the two is sent to the second operating system running in the peripheral device 20, and processed by the second operating system.
  • the hardware operation control information returned by the second operating system in the peripheral device 20 includes at least one and any combination of the following information: information requesting an input event; requesting event information of the camera; requesting event information of the microphone; requesting the sensor Event information; request event information of the speaker and audio data to be output; request content information displayed on the display screen, and the like.
  • controlling the smart device 10 to perform a corresponding operation according to the operation control information may include:
  • the smart device 10 may be controlled to invoke an input device in the smart device 10 such that the user inputs content information using the input device in the smart device 10 and at the smart device 10
  • the content information is displayed on a display screen; in one embodiment, the second operating system control module 22 can invoke an input device in the smart device 10 through a first operating system of the smart device 10.
  • the smart device 10 can be controlled to invoke the camera of the smart device 10 to perform image acquisition; in one embodiment, the second operating system control module 22 can pass the first of the smart device 10 The operating system calls the camera in the smart device 10.
  • the smart device 10 can be controlled to invoke the microphone of the smart device 10 for audio reception; in one embodiment, the second operating system control module 22 can pass the first of the smart device 10 The operating system calls the microphone in the smart device 10.
  • the smart device 10 can be controlled to call the sensor of the smart device 10 for information collection; in one embodiment, the second operating system control module 22 can pass the first of the smart device 10 The operating system calls the sensors in the smart device 10.
  • the smart device 10 can be controlled to invoke the speaker of the smart device 10 to play the audio data; in one embodiment, the second operating system controls The module 22 can invoke the speakers in the smart device 10 through the first operating system of the smart device 10.
  • the smart device 10 can be controlled to display the content information through the display screen.
  • a communication module (not shown) may be further disposed in the peripheral device 20.
  • the smart device communicates with the mobile communication network through the communication module in the peripheral device through the second operating system control module 22 running in the smart device.
  • the smart device communicates with the mobile communication network using the communication module of the smart device itself.
  • the peripheral device 20 may be a peripheral device without an input/output device, as shown in FIG. 1A, may be in the form of a mobile phone case, or may be Similar to the form of the USB flash drive; or as shown in FIG. 1B, the peripheral device with a keyboard can be an external input keyboard of the smart device 10, that is, the smart device 10 can be used in the embodiment of the present invention.
  • the external input keyboard can be expanded; or similarly, it can be a peripheral with a microphone; or a peripheral with a speaker; or a peripheral with a camera.
  • the first operating system runs in the smart device 10
  • the second operating system runs in the peripheral device 20.
  • the switching and processing of the two operating systems are implemented on the same intelligent system: when the user needs to use the first operating system, the first operating system on the smart device 10 can be directly used by the switching of the second operating system control module 22, and the first operating system is implemented.
  • an operating system when the user needs to use the second operating system, the current operating system can be first switched to the second operating system running in the peripheral device 20 through the second operating system control module 22, External information acquired by the mobile terminal smart device 10 (for example, input content information and user instruction information input by the user through the mobile terminal smart device 10, external information acquired by various devices such as a camera, an earpiece, a sensor of the mobile terminal smart device 10, etc., etc.
  • External information acquired by the mobile terminal smart device 10 for example, input content information and user instruction information input by the user through the mobile terminal smart device 10, external information acquired by various devices such as a camera, an earpiece, a sensor of the mobile terminal smart device 10, etc., etc.
  • the peripheral 20 sends the required output Output data (eg, image, video, sound, etc.) is output through various output devices (eg, display screen, microphone, etc.) in the smart device 10 to implement various functions of the second operating system, such that the user It is felt that the second operating system is used on the smart device 10 and various functions of the second operating system are implemented. Therefore, if the smart device 10 and the peripheral device are considered as a whole, it is equivalent to realizing the coexistence of two operating systems on the same machine, that is, the function of the dual system of one machine is realized.
  • Output data eg, image, video, sound, etc.
  • the first operating system and the second operating system may be any one of an IOS system, an Android system, a Windows Mobile system, a Windows Phone system, a Symbian system, or a BlackBerry OS system, respectively.
  • An operating system; and the first operating system and the second operating system may be different operating systems, or may be the same operating system.
  • the first operating system may be an IOS system
  • the second operating system may be an Android system
  • the smart device 10 may be a mobile terminal produced by Apple, such as a mobile phone of the iPhone series; or an iPad, an iPad Pro, or the like produced by Apple.
  • the second operating system control module 22 can also be implemented by various hardware or software.
  • the second operating system control module 22 can be presented to the user in the form of an application that is set up and installed in the smart device 10.
  • the second operating system control module 22 can behave as an IOS APP, that is, a native application running in the IOS system.
  • the current system can be switched to the second operating system-Android system, so that the smart device can be used (for example, the mobile phone of the iPhone series with the IOS system, which can be simply referred to as the iPhone).
  • the Android system actually running in the peripheral device 20 is directly displayed on the display screen of the same.
  • the user's experience is exactly like using a real smart device running Android system, which can realize most functions of Android mobile phone, such as call, SMS, Internet, install applications and games.
  • the current system can be switched to the first
  • the operating system is an IOS system, which in turn returns to the IOS system. Therefore, for the user, implementing dual system switching on the smart device is as simple as opening and closing an APP application. Moreover, since the first operating system and the second operating system described above are simultaneously operated, they are truly one-machine dual systems.
  • the Android system running in the peripheral device 20 can also directly access various hardware resources on the smart device 10, such as a GPU, a display screen, a touch screen (Touch), a physical button, a camera, Microphone, earpiece, external, various sensors, etc. Therefore, the Android experience provided by the above peripheral device 20 is the same as the real experience of a smart device running the Android system.
  • the peripheral device 20 may send data that needs to be sent to a physical screen (ie, an output data that needs to be output) to the foregoing through a connection interface.
  • IOS APP ie, the second operating system control module 22
  • the IOS APP displays the data that needs to be sent to the physical screen, and then displays it on the display screen of the smart device 10 (for example, an iPhone), thereby using the smart
  • the display of device 10 replaces the physical screen required to display output data in a second operating system running in peripheral device 20.
  • the peripheral device 20 may send an event in the second operating system that requires a request for the camera to the connection interface between the smart device 10 and the peripheral device 20 to
  • the above IOS APP ie, the second operating system control module 22
  • the IOSAPP will invoke the real camera in the smart device 10 (eg, iPhone) and receive or generate data (eg, raw data).
  • the peripheral device 20 is transmitted through the connection interface between the smart device 10 and the peripheral device 20, so that the second operating system running in the peripheral device 20 can normally use the camera in the smart device 10. Therefore, the camera in the smart device 10 may be used instead of the camera in the peripheral device 20.
  • the peripheral device 20 can pass the event that needs to request the speaker in the second operating system and the audio data that needs to be output through the smart device 10 and the peripheral device 20
  • the connection interface is sent to the IOS APP (ie, the second operating system control module 22), which will call the real speaker in the smart device 10 (for example, an iPhone) and output the peripheral 20 Audio data passes through the speakers in the smart device 10
  • the output is such that the second operating system can normally play audio data using a speaker in the smart device 10. Therefore, the speaker 20 may not be provided in the peripheral device 20, but a speaker in the smart device 10 may be used.
  • the peripheral device 20 may pass an event in the second operating system that requires a request for a microphone through a connection interface between the smart device 10 and the peripheral device 20.
  • Sent to the IOS APP ie, the second operating system control module 22 that will invoke the real microphone in the smart device 10 (eg, an iPhone) and receive or generate data from the microphone (eg, The audio data is transmitted to the peripheral device 20 through a connection interface between the smart device 10 and the peripheral device 20, so that the second operating system operating in the peripheral device 20 can normally use the microphone in the smart device 10. Therefore, the microphone in the smart device 10 may be used instead of the microphone in the peripheral device 20.
  • the IOS APP ie, the second operating system control module 22
  • the IOS APP can read various types in the smart device 10 (eg, an iPhone).
  • Sensor data acquired by a sensor eg, gravity sensor, GPS, gyroscope, etc.
  • the read sensor data is transmitted to the peripheral device 20 through a connection interface between the smart device 10 and the peripheral device 20, thereby enabling
  • a second operating system operating in the peripheral device 20 can write the received sensor data as a virtual sensor into the second operating system. Therefore, sensors in the peripheral device 20 may not be provided, but various sensors in the smart device 10 may be used.
  • the peripheral device 20 may pass an event in the second operating system that requires input request through the smart device 10 and the peripheral device 20.
  • the connection interface between the two is sent to the IOS APP (ie, the second operating system control module 22), and the IOS APP will invoke the input device in the smart device 10 (eg, an iPhone) so that the user can use the smart device 10.
  • the input device inputs information and displays the user's input information on the display screen of the smart device 10; then, the IOS APP sends the user's input information to the peripheral device 20 through the connection interface between the smart device 10 and the peripheral device 20,
  • the input is in a second operating system running in peripherals 20. Therefore, the input method of the second operating system (for example, Android system) may not be used in the peripheral device 20, but an input method in the mobile terminal is used.
  • the IOS APP ie, the second operating system control module 22
  • the IOS APP can read the smart device 10 Touch screen data (eg, pressure, location, etc.) of a touch screen event in (eg, an iPhone), and the read touch screen data is sent to the above through a connection interface between the smart device 10 and the peripheral device 20.
  • the peripheral device 20 such that the second operating system operating in the peripheral device 20 can simulate a touchscreen event in the smart device 10 based on the received touchscreen data.
  • the smart device 10 is provided with a first communication module; and the peripheral device 20 is provided with a second communication module.
  • the smart device 10 receives the communication instruction input by the user, and communicates with the mobile communication network using the first communication module in the smart device 10 according to the communication instruction input by the user;
  • the second operating system control module 22 controls the smart device 10 to send the communication instruction input by the user through the connection interface between the smart device 10 and the peripheral device 20 to the peripheral device 20, And communicating with the mobile communication network using the second communication module in the peripheral device 20 according to the communication command input by the user.
  • the second operating system control module 22 can be switched to the first operating system, and the smart device 10 and the mobile device can be directly used.
  • Communication network communication when the user wishes to communicate using the communication module in the peripheral, the second operating system control module 22 can be switched to the second operating system, and the peripheral device 20 and the mobile communication network can be used at this time.
  • a separate SIM card will be provided in both the first communication module and the second communication module, if the smart device 10 and the peripheral device are integrated as a whole, it is equivalent to having two independent SIM cards on one machine at the same time, and The two SIM cards can be used to communicate independently, thereby achieving functions such as dual card dual standby.
  • the smart device 10 can also be set for an iPad or an iPad Pro.
  • the peripheral device 20 can be a peripheral device similar to the above without an input/output device, or a peripheral device with a keyboard integrated with the keyboard input device of the iPad Pro.
  • peripherals 20 may take other forms of construction for other applications.
  • the smart device 10 is a device such as an iPad or an iPad Pro
  • the peripheral device 20 includes a communication module
  • the smart device 10 can also pass the external device. Let the communication module in 20 communicate with the mobile communication network.
  • FIG. 2 is a schematic structural diagram of a peripheral device for a smart device according to an embodiment of the present invention.
  • the peripheral device 20 may include: a processor 201, a first memory 202, a second memory 203, a communication module 204, a power source 205, and an input/output interface 21 ( The input/output interface 21 can function as the connection interface 21) in FIGS. 1A and 1B.
  • peripheral 20 may also not include communication module 204 described above.
  • the processor 201 is respectively connected to the first memory 202, the second memory 203, the communication module 204, and the input/output interface 21; the processor 201 passes through the input/output interface 21 and an interface of the smart device. 11 is connected to the second operating system control module 22 provided in the smart device.
  • the second memory 203 may be a ROM (Read-Only Memory), and may be used to store data of the second operating system.
  • the first memory 202 may be a RAM (Random-Access Memory), and may be used to read data of the second operating system from the second memory 203 by the processor 201 and run the second operating system. .
  • RAM Random-Access Memory
  • the processor 201 receives the external information acquired by the second operating system control module 22 and is processed by the smart device 10 through the input/output interface 21, and processes the processed external information to the processed external information.
  • the processed hardware operation control information is sent to the second operating system control module through the input/output interface.
  • the data that needs to be output sent by the first memory 202, the second memory 203, or the communication module 204 can be received, and the received data that needs to be output is processed, and then the output data that needs to be output is passed.
  • the input/output interface 21 is sent to the second operating system control module 22; and is further configured to receive, by using the input/output interface 21, the communication instruction that is sent by the second operating system control module 22 and input by the user through the smart device 10, and The communication command is sent to the communication module 204.
  • the communication module 204 is configured to communicate with the mobile communication network according to the communication instruction (including functions implemented by the mobile communication network, such as voice communication, short message, etc.).
  • the power source 205 is configured to supply power to the processor 201, the first memory 202, the second memory 203, the communication module 204, and the input/output interface 21.
  • first memory 202 and the second memory 203 may also be other types of memory. Moreover, in another embodiment of the present invention, the first memory 202 and the second memory 203 may also be the same memory.
  • the peripheral device 20 may further include: a wifi module 206.
  • the wifi module 206 is connected to the processor 201 for transmitting data with a wireless network.
  • the peripheral device 20 may further include: a Bluetooth module 207.
  • the Bluetooth module 207 is connected to the processor 201 for transmitting data with an external device having a Bluetooth function.
  • the peripheral device 20 may further include: an OTG module 208.
  • the OTG module 208 is coupled to the processor 201 for causing the peripheral device 20 to function as a USB peripheral.
  • the peripheral device 20 may further include: an input/output interface 21 for connecting the peripheral device 20 and an interface 11 of the smart device 10 provided with a data interface 231 at both ends thereof.
  • Transmission line 23 The transmission line 23. Therefore, the data interface 231 at one end of the transmission line 23 is connected to the input/output interface 21 on the host peripheral 20, and the data interface 231 at the other end of the transmission line 23 is connected to the interface 11 on the smart device 10.
  • the input/output interface 21 (for example, the MicroUsb interface) on the peripheral device 20 can be connected to the connection interface 11 on the smart device 10 (for example, the Lighning interface on the iPhone) through a transmission line as a main data link.
  • a TCP/IP connection can be established through a virtual network card as a communication protocol.
  • the link can also act as a power link. Therefore, the link has dual functions of data transmission and charging.
  • the Bluetooth module in the peripheral device 20 can establish a wireless connection with the Bluetooth module in the smart device 10 (eg, an iPhone) to establish a corresponding message link as a path for information such as messages and signaling.
  • the first memory or the second memory may be further used to store, according to the second operating system control module 22, a storage instruction sent to the first memory or the second memory through the connection interface and the processor.
  • the specified data is stored, and the specified data can be read according to a read command sent by the second operating system control module 22 to the first memory or the second memory through the connection interface and the processor.
  • both operating systems can access the first memory or the second memory in the host, thereby directly expanding the storage space on the smart device.
  • the power source 205 in the peripheral device 20 may be a battery with a preset voltage; the peripheral device 20 may further include: a transformer 209.
  • the transformer 209 is configured to convert a preset voltage of the power source 205 in the peripheral device 20 into an operating voltage of the smart device 10.
  • the power supply 205 in the peripheral device 20 can be a 3.7V large capacity battery, and the transformer 209 can convert the 3.7V voltage of the power supply 205 in the peripheral device 20 It is a voltage of 5V, that is, the operating voltage of the smart device 10.
  • the power source 205 in the peripheral device 20 can supply power to the two operating systems, that is, can supply power to the peripheral device 20, and can also supply power to the smart device 10, thereby equivalent to directly expanding the power source 205 into the movement of the smart device 10. power supply.
  • the appearance of the peripheral device 20 can be preset according to actual application requirements.
  • the appearance of the peripheral device 20 may be a peripheral device without an input/output device, such as a form of a mobile phone case, to facilitate a secure connection with the mobile terminal, and may also be mobile.
  • the terminal provides some protection. Or it can be a form similar to a USB flash drive.
  • the appearance of the peripheral device may also be other forms of external devices independent of the smart device 10, for example, may be a peripheral device with a keyboard, and the peripheral device at this time It can be in the form of a keyboard; in addition, the peripheral can be a peripheral with a microphone, or a peripheral with a speaker, or a peripheral with a camera.
  • the invention is not limited thereto.
  • the peripheral device may further include: a keyboard input module (not shown).
  • the keyboard input module may be connected to the processor of the smart device through the input/output interface, and configured to input the received user when the current system of the smart device is the first operating system running in the smart device.
  • the processor of the smart device is transmitted through the input/output interface.
  • the keyboard input module is further configured to transmit the received content information input by the user through the input/output interface when the current system of the smart device is the second operating system running in the smart device Giving a processor of the smart device, such that a processor of the smart device transmits content information input by the user to the second operating system control module, and the second operating system control module re-uses the user
  • the input content information is sent to a processor in the peripheral.
  • the keyboard input module may be further connected to a processor in the peripheral device for a second operating system running in the peripheral system of the smart device. The received user input is transmitted to the processor in the peripheral.
  • FIG. 3 is an exemplary flowchart of an implementation method of an intelligent system according to an embodiment of the present invention. The method can be used to implement the intelligent system shown in FIG. 1A or FIG. 1B. As shown in FIG. 3, the method may include the following steps:
  • Step 301 the smart device running the first operating system and the outside running the second operating system Connected and loaded with the second operating system control module in the smart device.
  • the first operating system and the second operating system may be any one of an IOS system, an Android system, a Windows Mobile system, a Windows Phone system, a Symbian system, or a BlackBerry OS system.
  • the first operating system and the second operating system are different operating systems or the same operating system.
  • Step 302 Receive, by the second operating system control module, a first switching instruction of the user, using the first operating system running in the mobile terminal as a current system displayed to the user for operation, or receiving a second switching instruction of the user.
  • a second operating system running in the peripheral is used as the current system that is presented to the user for operation.
  • Step 303 when the operation of the user is performed by the second operating system, the external information acquired by the smart device is provided by the second operating system control module to the second operating system running in the peripheral device. Receiving hardware operation control information from a second operating system in the peripheral device, and controlling hardware of the smart device to perform a corresponding operation according to the hardware operation control information.
  • the external information acquired by the smart device includes at least one of the following information and any combination: user instruction information input by a user through a screen, a button or a keyboard of the smart device, and/or content information; Image information acquired by the camera; audio information acquired through the microphone of the smart device; sensor data acquired by the sensor of the smart device, and the like.
  • the sensor may include any one or any combination of sensors such as a gravity sensor, a GPS, a gyroscope, and the like.
  • the external information may be first transmitted to the first operating system, and then provided by the first operating system to the second operating system control module, and the second operating system control module is further connected through the smart device and the peripheral device. The interface is sent to a second operating system running in the peripheral device and processed by the second operating system.
  • the hardware operation control information returned by the second operating system in the peripheral device includes at least one of any combination of the following information: information requesting input event; event information requesting the camera; event information requesting the microphone; requesting the sensor Event information; request event information of the speaker and audio data to be output; request content information displayed on the display screen, and the like.
  • controlling the smart device to perform a corresponding operation according to the operation control information may be include:
  • the smart device may be controlled to invoke an input device in the smart device, so that the user inputs the content information using the input device in the smart device and displays on the display device of the smart device. Displaying the content information; in one embodiment, the second operating system control module can invoke an input device of the smart device through a first operating system of the smart device.
  • the smart device may be controlled to invoke the camera of the smart device to perform image collection; in one embodiment, the second operating system control module may be invoked by the first operating system of the smart device. A camera in the smart device.
  • the smart device may be controlled to invoke the microphone of the smart device for audio reception; in one embodiment, the second operating system control module may be invoked by the first operating system of the smart device. a microphone in the smart device.
  • the smart device When the operation control information includes the event information of the requesting sensor, the smart device may be controlled to invoke the sensor of the smart device for information collection; in an embodiment, the second operating system control module may be invoked by the first operating system of the smart device. a sensor in the smart device.
  • the smart device can be controlled to call the speaker of the smart device to play the audio data; in an embodiment, the second operating system control module can The speaker in the smart device is invoked by a first operating system of the smart device.
  • the smart device may be controlled to display the content information through the display screen.
  • a communication module can be further provided in the peripheral device.
  • the smart device communicates with the mobile communication network through the communication module in the peripheral by the second operating system control module running in the smart device.
  • the smart device communicates with the mobile communication network using the communication module of the smart device itself.
  • the peripheral device can be A peripheral device without an input/output device may be in the form of a mobile phone case, or may be in the form of a USB flash drive; or may be a peripheral device with a keyboard, which may be an external input keyboard of the smart device, That is to say, in the embodiment of the present invention, the external input keyboard of the smart device can be expanded; or similarly, it can also be a peripheral with a microphone; or an external device with a speaker; or a camera with a camera Peripherals, etc.
  • the second operating system can be run in the peripheral device, and can be controlled by the second operating system loaded in the smart device.
  • the module implements the switching of the above two operating systems, so that the user can feel that two different operating systems can be used on the smart device. If the smart device and the peripheral device are considered as a whole, it is equivalent to being on the same machine.
  • the coexistence of two operating systems is realized, that is, the function of one machine and two systems is realized.
  • the smart device is a mobile terminal such as a mobile phone
  • the first communication module is disposed
  • the second communication module is further disposed in the peripheral device
  • the two communication modules can independently communicate with the mobile communication network.
  • the smart device and the peripheral device as a whole, it is equivalent to having two independent SIM cards on one machine, and the two SIM cards can be used to communicate independently, thereby realizing the functions of dual card dual standby and the like. Moreover, since the above-mentioned peripherals can realize functions such as dual-system dual-system and dual-card dual standby, it is equivalent to carrying two smart devices, and it is more convenient than carrying two smart devices at the same time.
  • both operating systems can access the ROM in the host, it is equivalent to directly expanding the storage space on the smart device; and, since the power supply in the peripheral can supply power to the peripheral device, it can also supply power to the smart device. Therefore, it is equivalent to directly expanding the power supply into a mobile power source of the smart device.
  • the second operating system in the peripheral can directly access various hardware resources on the smart device, such as GPU, display screen, touch screen (Touch), physical buttons, camera, microphone, earpiece, external release, various sensors, etc. Therefore, the above hardware resources may not be set in the peripheral device, thereby greatly reducing the production cost of the peripheral device.
  • various hardware resources such as GPU, display screen, touch screen (Touch), physical buttons, camera, microphone, earpiece, external release, various sensors, etc. Therefore, the above hardware resources may not be set in the peripheral device, thereby greatly reducing the production cost of the peripheral device.
  • the foregoing second operating system control module may also be an application that is pre-built in the smart device.
  • the second operating system control module described above It can also be a component that is sold together with the peripherals described above.
  • the second operating system control module may be a program application stored in a peripheral device, and when the peripheral device is connected to the smart device, the program application of the second operating system control module in the peripheral device is loaded into the smart device.
  • the second operating system control module may also be a program application stored in the background server and loaded from the background server.
  • the second operating system can be run in the peripheral device, and the second operating system control module is loaded in the smart device, so that the smart device can be used on the smart device. Realizing the switching and processing of the above two operating systems, so that the user can feel that two different operating systems can be used on the smart device. If the smart device and its peripherals are considered as a whole intelligent system, it is equivalent to The coexistence of two operating systems is realized on the same machine, that is, the function of one machine and two systems is realized.
  • the first communication module is disposed in the smart device, and the second communication module is further disposed in the peripheral device, and the two communication modules can independently communicate with the mobile communication network, if the smart device and the peripheral device are used as one
  • the overall intelligent system is equivalent to having two independent SIM cards on one machine at the same time, and can use these two SIM cards to communicate independently, thereby realizing the functions of dual card dual standby.
  • the specific implementation form of the peripheral device may be set according to actual needs, for example, may be a peripheral device without an input/output device, and the peripheral device may be in the form of a mobile phone case or a U disk-like form; Or a peripheral with a keyboard, the peripheral can be in the form of a keyboard; in addition, the peripheral can also be a peripheral with a microphone, or a peripheral with a speaker, or with a camera Peripherals, etc.

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  • Engineering & Computer Science (AREA)
  • Software Systems (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Telephone Function (AREA)
  • Telephonic Communication Services (AREA)
  • User Interface Of Digital Computer (AREA)

Abstract

L'invention concerne un système intelligent et son procédé de mise en œuvre, et un périphérique pour le dispositif intelligent, qui peuvent réaliser une fonction d'une machine avec des systèmes doubles. Le système intelligent comprend : un dispositif intelligent (10), et un périphérique (20) connecté au dispositif intelligent (10) au moyen d'interfaces de connexion (11, 21). Un premier système d'exploitation et un module de commande de second système d'exploitation (22) fonctionnent dans le dispositif intelligent (10) ; un second système d'exploitation fonctionne dans le périphérique (20) ; le module de commande de second système d'exploitation (22) est utilisé pour prendre le premier système d'exploitation fonctionnant dans le dispositif intelligent (10) comme système courant selon une première instruction de commutation, et prendre le second système d'exploitation fonctionnant dans le périphérique (20) comme système courant selon une seconde instruction de commutation ; lorsque l'exploitation par d'un utilisateur est exécutée au moyen du second système d'exploitation, des informations externes acquises au moyen du dispositif intelligent (10) sont fournies pour le second système d'exploitation fonctionnant dans le périphérique (20) ; et des informations de commande de fonctionnement de matériel provenant du second système d'exploitation dans le périphérique (20) sont reçues, et le matériel du dispositif intelligent (10) est commandé pour réaliser l'exploitation correspondante selon les informations de commande de fonctionnement de matériel.
PCT/CN2016/072145 2015-07-09 2016-01-26 Système intelligent et son procédé de mise en œuvre, et périphérique pour dispositif intelligent WO2017004982A1 (fr)

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CN201510400995.5A CN105094969A (zh) 2015-07-09 2015-07-09 一种用于移动终端的外设
CN201610032938.0 2016-01-19
CN201610032938.0A CN105718311B (zh) 2015-07-09 2016-01-19 智能系统及其实现方法、和用于智能设备的外设

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