WO2019200928A1 - 智能交互一体机 - Google Patents

智能交互一体机 Download PDF

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Publication number
WO2019200928A1
WO2019200928A1 PCT/CN2018/118479 CN2018118479W WO2019200928A1 WO 2019200928 A1 WO2019200928 A1 WO 2019200928A1 CN 2018118479 W CN2018118479 W CN 2018118479W WO 2019200928 A1 WO2019200928 A1 WO 2019200928A1
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WO
WIPO (PCT)
Prior art keywords
network
signal
switch
transmission device
external
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PCT/CN2018/118479
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English (en)
French (fr)
Inventor
刘伟
Original Assignee
广州视源电子科技股份有限公司
广州视睿电子科技有限公司
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 广州视源电子科技股份有限公司, 广州视睿电子科技有限公司 filed Critical 广州视源电子科技股份有限公司
Priority to EP18915280.4A priority Critical patent/EP3780534B1/en
Priority to ES18915280T priority patent/ES2962592T3/es
Priority to US17/047,950 priority patent/US11579831B2/en
Publication of WO2019200928A1 publication Critical patent/WO2019200928A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/60Network streaming of media packets
    • H04L65/75Media network packet handling
    • H04L65/764Media network packet handling at the destination 
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/40Support for services or applications
    • H04L65/403Arrangements for multi-party communication, e.g. for conferences
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/048Interaction techniques based on graphical user interfaces [GUI]
    • G06F3/0487Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
    • G06F3/0488Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/14Digital output to display device ; Cooperation and interconnection of the display device with other functional units
    • G06F3/1454Digital output to display device ; Cooperation and interconnection of the display device with other functional units involving copying of the display data of a local workstation or window to a remote workstation or window so that an actual copy of the data is displayed simultaneously on two or more displays, e.g. teledisplay
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/1066Session management
    • H04L65/1069Session establishment or de-establishment
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L65/00Network arrangements, protocols or services for supporting real-time applications in data packet communication
    • H04L65/60Network streaming of media packets
    • H04L65/75Media network packet handling
    • H04L65/765Media network packet handling intermediate
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/131Protocols for games, networked simulations or virtual reality
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/14Systems for two-way working
    • H04N7/15Conference systems
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2370/00Aspects of data communication
    • G09G2370/02Networking aspects
    • G09G2370/025LAN communication management
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2370/00Aspects of data communication
    • G09G2370/16Use of wireless transmission of display information

Definitions

  • the present invention relates to the field of data transmission technologies, and in particular, to an intelligent interaction and integration machine.
  • the interactive all-in-one machine uses HD LCD screen as the display and operation platform, and has functions such as writing, annotation, painting, synchronous interaction, multimedia entertainment, and network conference integration. It integrates high-definition display, human-computer interaction, multimedia information processing and network transmission. Technology is the preferred solution for office, teaching, graphic and interactive presentations in the information age.
  • the traditional interactive network communication method is to connect the wireless module and the external network through the main chip to obtain the wireless signal received by the wireless module.
  • the main chip is also connected to the module/chip through a router or directly, and the IP of the module/chip (Internet Protocol, Internet Protocol) ) is distributed by the main chip.
  • IP Internet Protocol
  • the module/chip needs to communicate with the external network, the IP address of the external network device needs to be input. Since the two sides of the main chip are not connected to the network segment, connection communication cannot be performed.
  • the traditional interactive network communication method has the disadvantage of low data transmission convenience.
  • An intelligent interaction machine comprising a processing device, a host computer and a network transmission device, wherein the signal transmission device is connected to the processing device, the processing device is connected to the upper computer, and the upper computer is connected by the network transmission device
  • the processing device
  • the upper computer is configured to connect to an external network, and output a network signal to the network transmission device, and the network transmission device transmits the network line number to the processing device.
  • the upper computer is connected to the external network and transmits the network signal to the processing device through the network transmission device, and the upper computer is used to connect the external network and the internal device of the device to provide a network signal for the processing device, so as to realize communication between the processing device and the external network.
  • Different devices inside the device share the network at the same time, which improves the convenience of data transmission of the intelligent interactive machine.
  • FIG. 1 is a structural diagram of an intelligent interaction machine in an embodiment
  • FIG. 2 is a structural diagram of an intelligent interaction machine in another embodiment
  • FIG. 3 is a schematic diagram of the principle of an intelligent interaction machine in an embodiment.
  • an intelligent interactive machine as shown in FIG. 1, includes a processing device 120, a host computer 130, and a network transmission device 140.
  • the host computer 130 is connected to the processing device 120 through a network transmission device 140.
  • the host computer 130 is configured to connect to an external network, output a network signal to the network transmission device 140, and the network transmission device 140 transmits the network line number to the processing device 120.
  • the type of the external network connected to the host computer 130 is not unique, and may be one or both of connecting an external wired network and an external wireless network.
  • the host computer 130 is connected as a router to the external network and device internal devices, and the host computer 130 transmits the network signal to the processing device 120 through the network transmission device 140 for the processing device 120 to connect to the network for communication.
  • the intelligent interaction machine may further include a signal transmission device 110 connected to the processing device 120, and the processing device 120 is connected to the host computer 130.
  • the signal transmission device 110 is configured to receive the screen signal and send it to the processing device 120.
  • the processing device 120 is configured to process the screen signal to obtain the screen data and send the signal to the host computer 130.
  • the signal transmission device 110 may be a communication connection with a terminal such as a mobile phone or a notebook, and receive a transmission signal transmitted by the terminal.
  • the signal transmission device 110 and the terminal may be a wireless communication connection or a wired communication connection.
  • the terminal connects the terminal to the signal transmission device 110, and then transmits the screen signal to the signal transmission device 110 through the terminal, and the transmission device 110 forwards the received screen signal to the processing device 120.
  • the processing device 120 decodes the received screen signal, and obtains the screen data to be forwarded to the host computer 130 for use as a multimedia information screen display.
  • the type of the screen data is not unique, and may include only video data, or both audio data and video data.
  • the host computer 130 After the host computer 130 obtains the screen data, it can be used by the internal software/service of the host computer 130. For example, the internal software/service generates a video screen according to the screen data and displays it through the display of the host computer 130, and controls the sound of the host computer 130. Perform audio playback.
  • the host computer 130 can also forward the screen data to an external device for external device to display the multimedia information.
  • the external device may specifically be a television or a set top box.
  • the specific type of the host computer 130 is also not unique, and may be a PC (Personal Computer) machine, a tablet computer, a touch computer, or the like.
  • the upper computer 130 is a PC.
  • the processing device 120 processes the screen signal received by the signal transmission device 110, and obtains the screen data to be sent to the upper computer 130.
  • the host computer 130 is connected to the external network and transmits the network signal to the processing device 120 through the network transmission device 140.
  • the upper computer 130 is connected to the external network and the internal device of the device to provide a network signal to the processing device 120, and the communication between the processing device 120 and the external network is realized.
  • the transmission of the screen data and the network signal are performed through different paths, thereby respectively performing internal screen communication and network sharing.
  • the processing device 120 can also output a network signal through the signal transmission device 110 for networking with an external terminal.
  • the signal transmission device 110 is connected to the terminal by way of wireless communication.
  • the processing device 120 provides a wireless network to the terminal through the signal transmission device 110. In order for the operator to connect the terminal to the network for data communication.
  • the smart interactive device is connected to the external network and the internal device of the device by using the upper computer 130, and provides the network signal to the processing device 120, so that the communication between the processing device 120 and the external network is realized, and different devices within the device share the network at the same time, thereby improving the intelligent interaction machine.
  • signal transmission device 110 is a wireless transmission device.
  • the wireless transmission device receives the wireless transmission signal through the external antenna and transmits the signal to the processing device 120.
  • the processing device 120 decodes the wireless transmission signal to obtain the transmission data to be forwarded to the upper computer 130.
  • the multimedia information transmission through the wireless mode is not limited by the data line, and the operation is simple and quick.
  • the signal transmission device 110 may be a WIFI (Wireless Fidelity) device, a Bluetooth device, or an infrared device.
  • the signal transmission device 110 is a WIFI device, and the signal transmission distance is long and the reliability is high.
  • the processing device 120 includes a processor 122 and a first network card 124, and the processor 122 connects the signal transmission device 110 and the network transmission device 140, and The host computer 130 is connected to the first network card 124.
  • the processor 122 processes the screen signal received by the signal transmission device 110 to obtain the screen data, and forwards the data to the host computer 130 through the first network card 124, and receives the network signal transmitted by the network transmission device 140 for network communication.
  • the processor 122 is specifically configured to be a master control chip, and the connection relationship between the processor 122 and the signal transmission device 110 is not unique.
  • the processor 122 is connected to the signal transmission device through a USB (Universal Serial Bus) interface. 110.
  • USB Universal Serial Bus
  • the type of the first network card 124 is not unique.
  • the first network card 124 is a USB network card, and specifically, the RTL8152 chip can be used.
  • the first network card 124 is connected to the processor 122 through an RJ45 interface, and is connected to the host computer 130 through a USB interface.
  • the processor 122 and the host computer 130 are connected through a USB network card to facilitate data transmission and high reliability.
  • the manner in which the host computer 130 accesses the external network and transmits the network signal via the network transmission device 140 may also be different.
  • the external network includes an external wired network.
  • the upper computer 130 includes a wired network interface 132 and a switch unit 134.
  • the switch unit 134 connects the wired network interface 132, the processing device 120, and the network transmission device 140.
  • Unit 134 connects to the external wired network via wired network interface 132 and outputs network signals to network transmission device 140.
  • the switch unit 134 is connected to the first network card 124 through the USB interface, and the receiving processor 122 performs the multimedia information transmission processing by using the screen transmission data transmitted by the first network card 124.
  • the network transmission device 140 After the switch unit 134 accesses the wired network signal from the external wired network through the wired network interface 132, the network transmission device 140 outputs the network signal to the processor 122 in the processing device 120, so that the upper computer 130 and the processor 122 can be connected to the wired network.
  • the internal screen communication and the wired network sharing of the intelligent interaction machine are realized, and the convenience of data transmission of the intelligent interaction machine is improved.
  • the external network also includes an external wireless network.
  • the host computer 130 also includes a wireless network unit 136 that connects to the switch unit 134.
  • the switch unit 134 also connects to the external wireless network through the wireless network unit 136.
  • the switch unit 134 outputs a network signal to the network transmission device 140 according to the accessed external wired network and/or the external wireless network.
  • the switch unit 134 is utilized as a soft route to access external wireless network signals through the wireless network unit 136 to enable the processor 122 to connect to the wireless network for communication.
  • the upper computer 130 provides wired network and wireless network access at the same time, and performs network sharing through two paths of wired and wireless. The operator can select the network connection of the intelligent interaction machine according to actual needs, thereby further improving the convenience of data transmission of the intelligent interaction machine. It can be understood that in other embodiments, the host computer 130 may also include only the switch unit 134 and the wireless network unit 136, and access the external wireless network through the wireless network unit 136 for the processor 122 to perform network connection.
  • the network transmission device 140 includes a switch 142 and a second network card 144.
  • the switch 142 is connected to the switch unit 134 of the host computer 130, and is connected to the processing device 120 through the second network card 144.
  • the processor 122 of the processing device 120 is specifically connected.
  • the switch 142 receives the network signal output by the switch unit 134 of the host computer 130 and forwards it to the processor 122 through the second network card 144.
  • the manner in which the switch 142 is connected to the switch unit 134 is not unique.
  • the switch 142 is connected to the switch unit 134 through an RJ45 interface.
  • the type of the second network card 144 is also not unique.
  • the second network card 144 is a USB network card, and specifically, the RTL8152 chip or the RTL8153 chip may be used.
  • the second network card 144 is connected to the switch 142 through an RJ45 interface, and is connected to the processor 122 through a USB interface.
  • the network transmission device 140 further includes a wired network control switch 146 that connects the switch 142 and the processing device 120, specifically to the processor 122 of the processing device 120.
  • the processor 122 is further configured to output a control signal to the wired network control switch 146, and the wired network control switch 146 controls the switching of the network signal accessed from the external wired network in the switch 142 according to the control signal.
  • the wired network control switch 146 can be used to control the switch 142 not to transmit the network signal of the external wired network access to the processing.
  • the processor 122 allows the processor 122 to receive only signals accessed by the external wireless network, thereby preventing the processor 122 from simultaneously accessing signals of two different external networks, thereby causing interference and improving network connection reliability.
  • the switch 146 can be controlled by the wired network control switch 146 to transmit the network signal accessed by the external wired network to the processor 122.
  • the wired network control switch 146 can also control the switching of network signals accessed from the external wired network according to the received external switching command.
  • the types of wired network interface 132 and wired network control switch 146 may also be different.
  • the wired network interface 132 is an Ethernet interface
  • the wired network control switch 146 is an Ethernet control switch.
  • the external Ethernet access network signal is connected through the Ethernet interface, and the network signal of the switch 142 is controlled to be switched on and off from the external Ethernet through the Ethernet control switch.
  • an intelligent interactive machine includes a signal transmission device 110, a processor 122, a first network card 124, a host computer 130, a switch 142, a second network card 144, and a wired network control switch.
  • the upper computer 130 includes a wired network interface 132, a wireless network unit 136, and a switch unit 134.
  • the signal transmission device 110 is connected to the processor 122, and the switch unit 134 of the upper computer 130 is connected to the wired network interface 132, the wireless network unit 136, and the switch 142.
  • the wired network interface 132 is used to connect to the external wired network
  • the wireless network unit 134 is used to connect to the external wireless network
  • the switch 142 is connected to the processor 122 through the second network card 144
  • the wired network control switch 146 Switch 142 and processor 122 are connected.
  • the signal transmission device 110 is configured to receive the transmission signal and send it to the processor 122.
  • the processor 122 is configured to process the screen signal to obtain the screen data, and send the screen data to the switch of the host computer 130 through the first network card 124.
  • the unit 134; the switch unit 134 of the host computer 130 outputs a network signal to the switch 142 according to the accessed external wired network and/or the external wireless network, and the switch 142 transmits the network signal to the processor 122 through the second network card 144, and the wired network control switch 146 is configured to control the switching of the network signal accessed by the switch 142 from the external wired network according to the control signal sent by the processor 122.
  • the upper computer 130 adopts a PC
  • the signal transmission device 110 and the wireless network unit 136 adopt a WIFI module
  • the processor 122 adopts a main control chip
  • the first network card 124 and the second network card 144 adopt a USB network card
  • the wired network interface 132 is an Ethernet network.
  • the interface, wired network control switch 146 is an Ethernet control switch.
  • the signal transmission device 110 is connected to the processor 122 through a USB interface.
  • the processor 122 is connected to the first network card 124 through an RJ45 interface, and the first network card 124 is connected to the host computer 130 through a USB interface.
  • the switch 142 is connected to the switch unit 134 through the RJ45 interface, and the second network card 144 is connected through the RJ45 interface, and the second network card 144 is connected to the processor 122 through the USB interface.
  • the path L1 is used for internal communication of the device, and after receiving the screen signal, the signal transmission device 110 performs processing along the path L1 after being processed by the processor 122, and specifically transmits the screen transmission data to the host computer 130 through the first network card 124 for providing The software/service on the host computer 130 is used.
  • the path L2 represents the wired network sharing, and the external wired network accesses from the wired network interface 132 and transmits along the path L2.
  • the switch unit 134, the switch 142, the second network card 144, and the processor 122 can see the upper computer 130 and The processor 122 can acquire the wired network signal.
  • Path L3 represents wireless network sharing, and the external wireless network accesses from wireless network unit 136 and transmits along path L3, specifically through switch unit 134, switch 142, second network card 144, and processor 122.
  • the host computer 130 makes a soft route, and it can be seen that the processor 122 can also acquire the network signal.
  • the intra-device communication, wired network sharing and wireless network sharing are realized, and the multimedia information transmission operation of the intelligent interactive machine and the communication with the external network are realized, thereby improving the convenience of data transmission of the intelligent interaction machine.

Abstract

本发明涉及一种智能交互一体机,属于数据传输技术领域。智能交互一体机包括信号传输装置、处理装置、上位机和网络传输装置,信号传输装置连接处理装置,处理装置连接上位机,上位机通过网络传输装置连接处理装置。信号传输装置用于接收传屏信号并输送至处理装置,处理装置用于对传屏信号进行处理得到传屏数据并发送至上位机。上位机用于连接外部网络,输出网络信号至网络传输装置,网络传输装置将网络线号传输至处理装置。利用上位机连接外部网络和设备内部装置,为处理装置提供网络信号,实现处理装置与外部网络的通信。通过不同路径进行传屏数据和网络信号的传输,从而分别进行设备内部传屏通信和网络共享,提高了智能交互一体机数据传输的便利性。

Description

智能交互一体机 技术领域
本发明涉及数据传输技术领域,特别是涉及一种智能交互一体机。
背景技术
交互式一体机以高清液晶屏为显示和操作平台,具备书写、批注、绘画、同步交互、多媒体娱乐、网络会议整合等功能,融合高清显示、人机交互、多媒体信息处理和网络传输等多项技术,是信息化时代中办公、教学、图文互动演示的优选解决方案。
传统的交互机网络通信方式是通过主芯片连接无线模块和外部网络,获取无线模块接收的无线信号,主芯片还通过路由器或者直接与模块/芯片连接,模块/芯片的IP(Internet Protocol,互联网协议)由主芯片进行分配。当模块/芯片需要与外网进行通信时需输入外网设备的IP,由于主芯片两侧属于不通的网段,无法进行连接通信。传统的交互机网络通信方式存在数据传输便利性低的缺点。
发明内容
基于此,有必要针对上述问题,提供一种可提高数据传输的便利性的智能交互一体机。
一种智能交互一体机,包括处理装置、上位机和网络传输装置,所述信号传输装置连接所述处理装置,所述处理装置连接所述上位机,所述上位机通过所述网络传输装置连接所述处理装置,
所述上位机用于连接外部网络,输出网络信号至所述网络传输装置,所述网络传输装置将所述网络线号传输至所述处理装置。
上述智能交互一体机,上位机连接外部网络并通过网络传输装置输送网络信号至处理装置,利用上位机连接外部网络和设备内部装置,为处理装置提供网络信号,实现处理装置与外部网络的通信,设备内部不同装置同时共享网络, 提高了智能交互一体机数据传输的便利性。
附图说明
图1为一实施例中智能交互一体机的结构图;
图2为另一实施例中智能交互一体机的结构图;
图3为一实施例中智能交互一体机的原理示意图。
具体实施方式
在一个实施例中,一种智能交互一体机,如图1所示,包括处理装置120、上位机130和网络传输装置140,上位机130通过网络传输装置140连接处理装置120。上位机130用于连接外部网络,输出网络信号至网络传输装置140,网络传输装置140将网络线号传输至处理装置120。
上位机130连接的外部网络的类型并不唯一,可以是连接外部有线网络和外部无线网络中的一种或两种。上位机130作为路由器连接外部网络和设备内部装置,上位机130通过网络传输装置140输送网络信号至处理装置120,以供处理装置120连接网络进行通信。
进一步地,在一个实施例中,如图2所示,智能交互一体机还可包括连接处理装置120的信号传输装置110,处理装置120连接上位机130。信号传输装置110用于接收传屏信号并输送至处理装置120,处理装置120用于对传屏信号进行处理得到传屏数据并发送至上位机130。
具体地,信号传输装置110可以是与手机、笔记本等终端通信连接,接收终端传输的传屏信号,信号传输装置110与终端可以是无线通信连接,也可以是有线通信连接。用户在需要进行传屏操作时,将终端与信号传输装置110连接后,通过终端发送传屏信号至信号传输装置110,传输装置110将接收的传屏信号转发至处理装置120。处理装置120对接收的传屏信号进行解码,得到传屏数据转发至上位机130以用作进行多媒体信息传屏显示。传屏数据的类型并不唯一,可以是只包括视频数据,也可以是同时包括音频数据和视频数据。上位 机130获取到传屏数据后,可以是供上位机130内部软件/服务使用,例如内部软件/服务根据传屏数据生成视频画面并通过上位机130的显示器显示,以及控制上位机130的音响进行音频播放。此外,上位机130还可以将传屏数据转发至外部设备,以供外部设备进行多媒体信息传屏显示,外部设备具体可以是电视机或机顶盒等设备。上位机130的具体类型也并不唯一,可以是PC(Personal Computer)机、平板电脑、触控电脑等。本实施例中,上位机130为PC机。
本实施例中,处理装置120对信号传输装置110接收的传屏信号进行处理,得到传屏数据发送至上位机130,上位机130连接外部网络并通过网络传输装置140输送网络信号至处理装置120,利用上位机130连接外部网络和设备内部装置,为处理装置120提供网络信号,实现处理装置120与外部网络的通信。通过不同路径进行传屏数据和网络信号的传输,从而分别进行设备内部传屏通信和网络共享。此外,处理装置120还可以通过信号传输装置110输出网络信号以供外部终端联网,以信号传输装置110通过无线通信的方式连接终端为例,处理装置120通过信号传输装置110向终端提供无线网络,以便操作人员将终端连接网络进行数据通信。
上述智能交互一体机,利用上位机130连接外部网络和设备内部装置,为处理装置120提供网络信号,实现处理装置120与外部网络的通信,设备内部不同装置同时共享网络,提高了智能交互一体机的数据传输的便利性。
在一个实施例中,信号传输装置110为无线传输装置。无线传输装置通过外置天线接收无线传屏信号并传输至处理装置120,处理装置120对无线传屏信号进行解码得到传屏数据转发至上位机130。通过无线方式进行多媒体信息传屏,不受数据线的限制,操作简便快捷。具体地,信号传输装置110可以是WIFI(Wireless Fidelity,无线保真)装置、蓝牙装置或红外装置等,本实施例中,信号传输装置110为WIFI装置,信号传输距离远且可靠性高。
处理装置120的具体结构并不唯一,在一个实施例中,如图2所示,处理装置120包括处理器122和第一网卡124,处理器122连接信号传输装置110和网络传输装置140,并通过第一网卡124连接上位机130。处理器122对信号传 输装置110接收的传屏信号进行处理得到传屏数据,并通过第一网卡124转发至上位机130,以及接收网络传输装置140输送的网络信号进行网络通信。处理器122具体可采用主控芯片,处理器122与信号传输装置110的连接关系并不唯一,本实施例中,处理器122通过USB(Universal Serial Bus,通用串行总线)接口连接信号传输装置110。
第一网卡124的类型并不唯一,本实施例中,第一网卡124为USB网卡,具体可以采用RTL8152芯片。其中,第一网卡124通过RJ45接口连接处理器122,并通过USB接口连接上位机130。通过USB网卡连接处理器122和上位机130,便于进行数据传输且可靠性高。
根据上位机130连接的外部网络的类型不同,上位机130接入外部网络并经网络传输装置140输送网络信号的方式也会对应有所不同。在一个实施例中,外部网络包括外部有线网络,继续参照图2,上位机130包括有线网络接口132和交换机单元134,交换机单元134连接有线网络接口132、处理装置120和网络传输装置140,交换机单元134通过有线网络接口132连接外部有线网络,输出网络信号至网络传输装置140。
具体地,交换机单元134通过USB接口连接第一网卡124,接收处理器122通过第一网卡124传输的传屏数据进行多媒体信息传屏处理。交换机单元134通过有线网络接口132从外部有线网络接入有线网络信号后,经网络传输装置140输出网络信号至处理装置120中的处理器122,使得上位机130和处理器122都能连接有线网络,实现智能交互一体机的内部传屏通信和有线网络共享,提高了智能交互一体机的数据传输的便利性。
进一步地,在一个实施例中。外部网络还包括外部无线网络,上位机130还包括连接交换机单元134的无线网络单元136,交换机单元134还通过无线网络单元136连接外部无线网络。交换机单元134根据接入的外部有线网络和/或外部无线网络输出网络信号至网络传输装置140。
利用交换机单元134作为软路由,通过无线网络单元136接入外部无线网络信号,以使处理器122可连接无线网络进行通信。本实施例中,上位机130 同时提供有线网络和无线网络接入,通过有线和无线两条路径进行网络共享。操作人员可根据实际需求选择智能交互一体机的网络连接,进一步提高了智能交互一体机的数据传输的便利性。可以理解,在其他实施例中,上位机130也可以是只包括交换机单元134和无线网络单元136,通过无线网络单元136接入外部无线网络以供处理器122进行网络连接。
对应地,在一个实施例中,如图2所示,网络传输装置140包括交换机142和第二网卡144,交换机142连接上位机130的交换机单元134,并通过第二网卡144连接处理装置120,具体连接处理装置120的处理器122。交换机142接收上位机130的交换机单元134输出的网络信号,并通过第二网卡144转发至处理器122。交换机142连接交换机单元134的方式并不唯一,本实施例中,交换机142通过RJ45接口连接交换机单元134。
第二网卡144的类型也并不唯一,本实施例中,第二网卡144为USB网卡,具体可以采用RTL8152芯片或RTL8153芯片。其中,第二网卡144通过RJ45接口连接交换机142,通过USB接口连接处理器122。
此外,在一个实施例中,网络传输装置140还包括有线网络控制开关146,有线网络控制开关146连接交换机142和处理装置120,具体连接处理装置120的处理器122。
处理器122还用于输出控制信号至有线网络控制开关146,有线网络控制开关146根据控制信号控制交换机142中从外部有线网络接入的网络信号的通断。例如,当上位机130同时连接外部有线网络和外部无线网络时,若外部无线网络有网络信号接入,则可通过有线网络控制开关146控制交换机142不输送外部有线网络接入的网络信号至处理器122,使处理器122只接收由外部无线网络接入的信号,避免处理器122同时接入两个不同外部网络的信号而造成干扰,提高网络连接可靠性。当外部无线网络没有网络信号接入时,则可通过有线网络控制开关146控制交换机142将外部有线网络接入的网络信号输送至处理器122。此外,有线网络控制开关146也可以根据接收的外部切换指令控制从外部有线网络接入的网络信号的通断。根据外部有线网络的类型的不同,有线网络 接口132以及有线网络控制开关146的类型也会对应有所不同。本实施例中,有线网络接口132为以太网接口,有线网络控制开关146为以太网控制开关。通过以太网接口连接外部以太网接入网络信号,通过以太网控制开关控制交换机142从外部以太网接入的网络信号的通断。
在一个实施例中,一种智能交互一体机,如图3所示,包括信号传输装置110、处理器122、第一网卡124、上位机130、交换机142、第二网卡144和有线网络控制开关146,上位机130包括有线网络接口132、无线网络单元136和交换机单元134,信号传输装置110连接处理器122,上位机130的交换机单元134连接有线网络接口132、无线网络单元136和交换机142,并通过第一网卡124连接处理器122,有线网络接口132用于连接外部有线网络,无线网络单元134用于连接外部无线网络;交换机142通过第二网卡144连接处理器122,有线网络控制开关146连接交换机142和处理器122。
信号传输装置110用于接收传屏信号并输送至处理器122,处理器122用于对传屏信号进行处理得到传屏数据,并通过第一网卡124将传屏数据发送至上位机130的交换机单元134;上位机130的交换机单元134根据接入的外部有线网络和/或外部无线网络输出网络信号至交换机142,交换机142通过第二网卡144将网络信号传输至处理器122,有线网络控制开关146用于根据处理器122发送的控制信号控制交换机142从外部有线网络接入的网络信号的通断。
其中,上位机130采用PC机,信号传输装置110和无线网络单元136采用WIFI模块,处理器122采用主控芯片,第一网卡124和第二网卡144采用USB网卡,有线网络接口132为以太网接口,有线网络控制开关146为以太网控制开关。信号传输装置110通过USB接口连接处理器122,处理器122通过RJ45接口连接第一网卡124,第一网卡124通过USB接口连接上位机130。交换机142通过RJ45接口连接交换机单元134,通过RJ45接口连接第二网卡144,第二网卡144通过USB接口连接处理器122。
具体地,路径L1用于设备内部通信,信号传输装置110接收到传屏信号之后,经处理器122处理后沿路径L1进行传输,具体经过第一网卡124传输传屏 数据给上位机130,供上位机130上的软件/服务使用。路径L2表示有线网络共享,外部有线网络从有线网络接口132处接入并沿路径L2进行传输,具体经过交换机单元134、交换机142、第二网卡144和处理器122,可以看到上位机130及处理器122都能获取到有线网络信号。路径L3表示无线网络共享,外部无线网络从无线网络单元136处接入并沿路径L3传输,具体经过交换机单元134、交换机142、第二网卡144和处理器122。上位机130做软路由,可以看出处理器122也能获取到网络信号。
通过三条不同途径分别进行设备内传屏通信、有线网络共享和无线网络共享,实现智能交互一体机的多媒体信息传屏操作以及与外部网络的通信,提高了智能交互一体机的数据传输的便利性。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本发明的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对发明专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本发明构思的前提下,还可以做出若干变形和改进,这些都属于本发明的保护范围。因此,本发明专利的保护范围应以所附权利要求为准。

Claims (10)

  1. 一种智能交互一体机,其特征在于,包括处理装置、上位机和网络传输装置,所述上位机通过所述网络传输装置连接所述处理装置,
    所述上位机用于连接外部网络,输出网络信号至所述网络传输装置,所述网络传输装置将所述网络线号传输至所述处理装置。
  2. 根据权利要求1所述的智能交互一体机,其特征在于,还包括连接所述处理装置的信号传输装置,所述处理装置连接所述上位机;
    所述信号传输装置用于接收传屏信号并输送至所述处理装置,所述处理装置用于对所述传屏信号进行处理得到传屏数据并发送至所述上位机。
  3. 根据权利要求2所述的智能交互一体机,其特征在于,所述信号传输装置为无线传输装置。
  4. 根据权利要求2所述的智能交互一体机,其特征在于,所述处理装置包括处理器和第一网卡,所述处理器连接所述信号传输装置和所述网络传输装置,并通过所述第一网卡连接所述上位机。
  5. 根据权利要求2所述的智能交互一体机,其特征在于,所述外部网络包括外部有线网络,所述上位机包括有线网络接口和交换机单元,所述交换机单元连接所述有线网络接口、所述处理装置和所述网络传输装置,所述交换机单元通过所述有线网络接口连接外部有线网络,输出网络信号至所述网络传输装置。
  6. 根据权利要求5所述的智能交互一体机,其特征在于,所述外部网络还包括外部无线网络,所述上位机还包括连接所述交换机单元的无线网络单元,所述交换机单元还通过所述无线网络单元连接外部无线网络;所述交换机单元根据接入的外部有线网络和/或外部无线网络输出网络信号至所述网络传输装置。
  7. 根据权利要求5所述的智能交互一体机,其特征在于,所述网络传输装置包括交换机和第二网卡,所述交换机连接所述上位机的交换机单元,并通过所述第二网卡连接所述处理装置。
  8. 根据权利要求7所述的智能交互一体机,其特征在于,所述网络传输装置还包括有线网络控制开关,所述有线网络控制开关连接所述交换机和所述处理装置。
  9. 根据权利要求8所述的智能交互一体机,其特征在于,所述有线网络接口为以太网接口,所述有线网络控制开关为以太网控制开关。
  10. 一种智能交互一体机,其特征在于,包括信号传输装置、处理器、第一网卡、上位机、交换机、第二网卡和有线网络控制开关,所述上位机包括有线网络接口、无线网络单元和交换机单元,所述信号传输装置连接所述处理器,所述上位机的交换机单元连接所述有线网络接口、所述无线网络单元和所述交换机,并通过所述第一网卡连接所述处理器,所述有线网络接口用于连接外部有线网络,所述无线网络单元用于连接外部无线网络;所述交换机通过所述第二网卡连接所述处理器,所述有线网络控制开关连接所述交换机和所述处理器;
    所述信号传输装置用于接收传屏信号并输送至所述处理器,所述处理器用于对所述传屏信号进行处理得到传屏数据,并通过所述第一网卡将所述传屏数据发送至所述上位机的交换机单元;所述上位机的交换机单元根据接入的外部有线网络和/或外部无线网络输出网络信号至所述交换机,所述交换机通过所述第二网卡将所述网络信号传输至所述处理器,所述有线网络控制开关用于根据所述处理器发送的控制信号控制所述交换机从外部有线网络接入的网络信号的通断。
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