WO2019071809A1 - 交互智能平板、数据的传输方法、装置及存储介质 - Google Patents

交互智能平板、数据的传输方法、装置及存储介质 Download PDF

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Publication number
WO2019071809A1
WO2019071809A1 PCT/CN2017/116763 CN2017116763W WO2019071809A1 WO 2019071809 A1 WO2019071809 A1 WO 2019071809A1 CN 2017116763 W CN2017116763 W CN 2017116763W WO 2019071809 A1 WO2019071809 A1 WO 2019071809A1
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Prior art keywords
data
received
sent
system device
network
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English (en)
French (fr)
Inventor
母燕雄
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Guangzhou Shiyuan Electronics Thecnology Co Ltd
Guangzhou Shirui Electronics Co Ltd
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Guangzhou Shiyuan Electronics Thecnology Co Ltd
Guangzhou Shirui Electronics Co Ltd
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F13/00Interconnection of, or transfer of information or other signals between, memories, input/output devices or central processing units
    • G06F13/38Information transfer, e.g. on bus
    • G06F13/42Bus transfer protocol, e.g. handshake; Synchronisation
    • G06F13/4282Bus transfer protocol, e.g. handshake; Synchronisation on a serial bus, e.g. I2C bus, SPI bus
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L45/00Routing or path finding of packets in data switching networks
    • H04L45/60Router architectures
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D10/00Energy efficient computing, e.g. low power processors, power management or thermal management

Definitions

  • the present invention relates to the field of information processing technologies, and in particular, to an interactive smart tablet, a data transmission method, apparatus, and storage medium.
  • multi-system devices are usually equipped with the function of connecting to the Internet for data transmission.
  • each system in a multi-system device generally receives and transmits data through its corresponding network device (a wired network card and/or a wireless network card), that is, in the prior art, it is usually in a multi-system device.
  • Each system is separately configured with a wired network card and/or a wireless network card, and the data sent by the other device to its corresponding system is forwarded to the system through the wired network card and/or the wireless network card, and the data sent by the system is forwarded to other devices.
  • the Internet-based data transmission function of the multi-system device Thereby implementing the Internet-based data transmission function of the multi-system device.
  • the inventors have found that the prior art has the following technical defects: the number of network cables and/or antennas that need to be externally connected to the multi-system devices of the prior art is relatively large, resulting in complicated wiring of multi-system devices, and simultaneously Power consumption is high when networking.
  • the embodiments of the present invention provide an interactive smart tablet, a data transmission method, a device, and a storage medium, to solve the technical problem that the multi-system device has complicated wiring and high power consumption in the prior art.
  • an embodiment of the present invention provides an interactive smart tablet, including a main system device, at least one slave system device, a first network card, a switch, and at least one second wired network card, where
  • the first network card is connected to the main system device, and is configured to receive data to be received sent by another device, and send the data to be received to the primary system device, and receive the to-be-sent sent by the primary system device. Data and transmitting the data to be sent to other devices;
  • the primary system device is connected to the switch as a virtual router, and is configured to receive the data to be received and send the data to be received to the switch, and receive data to be sent sent by the switch and Sending the sent data to the first network card;
  • the switch is connected to the at least one second wired network card, configured to receive the data to be received and distribute the data to be received to at least one of the second wired network cards, and receive at least one of the second cable
  • the data to be sent sent by the network card and the data to be sent are sent to the main system device;
  • the second wired network card is connected to the slave system device, configured to receive the to-be-received data, and send the to-be-received data to the slave system device, and receive the to-be-sent data sent by the slave system device. And sending the to-be-sent data to the switch, where the second wired network card has a one-to-one correspondence with the slave system device;
  • the slave system device is configured to receive the to-be-received data, and generate data to be sent and send the to-be-sent data to the second wired network card.
  • an embodiment of the present invention provides a data transmission method, including:
  • the second to-be-received USB data is acquired from the system device by the target.
  • an embodiment of the present invention provides a data transmission apparatus, including:
  • the first USB data conversion module is configured to receive the first to-be-received network data sent by the other device, and convert the first to-be-received network data into the first to-be-received USB data;
  • a first network data conversion module configured in the main system device, configured to determine, according to the target IP address carried in the first to-be-received USB data, the target slave system data of the first to-be-received USB data, and Converting the first pending USB data into the second to-be-received network data;
  • the first network data forwarding module is configured to be configured to forward the second to-be-received network data to the target second wired network card corresponding to the target slave system device;
  • a second USB data conversion module configured in the second wired network card, configured to convert the second to-be-received network data into the second to-be-received USB data
  • the second USB data acquisition module is configured in the slave system device, and is configured to acquire the second to-be-received USB data.
  • the embodiment of the present invention further provides a computer storage medium on which a computer program is stored, and when the program is executed by the processor, the method for data transmission according to the embodiment of the present invention is implemented.
  • the primary system device in the interactive smart tablet is used as a virtual router, and the first to-be-received network data sent by the other device is received by the first network card, and the first to-be-received network data is converted into the first
  • the USB data to be received is determined by the primary system device according to the target IP address carried in the first to-be-received USB data, and the first slave USB data to be received is converted into the second to-be-received USB data.
  • the second to-be-received USB data is obtained from the system device through the target.
  • the primary system device in the interactive smart tablet is used as a virtual router, and the data transmitted by the other device is forwarded to the slave system device of the interactive smart tablet by the primary system device in the interactive smart tablet, thereby reducing the interactive smart tablet.
  • the number of external network cables or antennas simplifies the complexity of interactive smart flat panel wiring and reduces the power consumption of multiple systems of interactive smart tablets when connected to the network.
  • FIG. 1 is a schematic structural diagram of an interactive smart tablet according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic flowchart of a data transmission method according to Embodiment 2 of the present invention.
  • FIG. 3 is a schematic flowchart of a data transmission method according to Embodiment 3 of the present invention.
  • FIG. 4 is a structural block diagram of a data transmission apparatus according to Embodiment 4 of the present invention.
  • Embodiment 1 of the present invention provides an interactive smart tablet.
  • the interaction smart tablet can perform the data transmission method provided by the embodiment of the present invention.
  • 1 is a schematic structural diagram of an interactive smart tablet according to Embodiment 1 of the present invention. As shown in FIG. 1 , the interactive smart tablet includes: a primary system device 1, at least one slave system device 2, a first network card 3, a switch 4, and at least a second wired network card 5, wherein
  • the first network card 3 is connected to the main system device 1 for receiving data to be received sent by other devices, and transmitting the data to be received to the main system device 1, and receiving the main system device 1 Sending data to be sent and transmitting the data to be sent to other devices;
  • the main system device 1 is connected to the switch 4 as a virtual router, and is configured to receive the data to be received and send the data to be received to the switch 4, and receive the to-be-sent sent by the switch 4 Data and the data to be sent is sent to the first network card 3;
  • the switch 4 is connected to the at least one second wired network card 5, for receiving the data to be received and distributing the data to be received to at least one of the second wired network cards 5, and receiving at least one of the The data to be sent sent by the second wired network card 5 and sent to the main system device 1;
  • the second wired network card 5 is connected to the slave system device 2, configured to receive the to-be-received data, and send the to-be-received data to the slave system device 2, and receive the slave system device 2 to send And the data to be sent is sent to the switch 4, wherein the second wired network card 5 is in one-to-one correspondence with the slave system device 2;
  • the slave system device 2 is configured to receive the data to be received, and generate data to be sent and send the data to be sent to the second wired network card 5.
  • the main system device 1 can be an infrastructure device of an interactive smart tablet, and the system device 2 can be configured or externally connected to the non-infrastructure device with an independent operating system, that is, the main system device 1 can be understood as an interactive smart device.
  • the device that carries its necessary basic operating system in the tablet can be understood as the device that the developer or the user configures or connects to other systems for the interactive smart tablet in order to improve the compatibility and practicability of the interactive smart tablet.
  • the main system device 1 may be an Android or IOS system device carrying an interactive smart tablet
  • the slave system device 2 may be a device carrying an interactive smart tablet non-Android and non-IOS system, such as an interactive smart tablet carrying Windows or Mac OS, etc. System equipment.
  • the first network card 3 can be any type of network card.
  • the first network card 3 can include a wireless network card and/or a first wired network card.
  • the type or model of the wireless network card and the first wired network card may be determined according to requirements.
  • the wireless network card may be a wireless network card having an interface such as PCI, PCMCIA or USB, and the first wired network card may have SC, LC, ST or FC.
  • the wired network card of the interface is not limited here.
  • the interface of the wireless network card connected to the device end of the main system is a USB interface
  • the interface of the first wired network card connected to the device end of the main system is a USB interface
  • the number of the second wired network cards 5 may be determined according to the maximum number of slave system devices 2 configured or connectable by the interactive smart tablet, for example, it is assumed that the interactive smart tablet has 2 connections from the system device 2 If the port is configured with two slave system devices 2, two second wired network cards 5 can be configured in the interactive smart tablet, and each second wired network card 5 corresponds to a different slave system device 2 or system device 2, respectively. Connection port.
  • the second wired network card may be a wired network card having an interface of an SC, an LC, an ST, or an FC.
  • the interface of the second wired network card connecting the slave system device is a USB interface, thereby further improving the interaction of the smart tablet. Practicality.
  • the data transmission path of the interactive smart tablet when receiving data from the system device 2 may be: first network card 3 ⁇ main system device 1 ⁇ switch 4 ⁇ second wired network card 5 ⁇ slave system device 2, corresponding, interaction
  • the data transmission path of the smart tablet when transmitting data from the system device 2 may be: from the system device 2 ⁇ the second wired network card 5 ⁇ the switch 4 ⁇ the main system device 1 ⁇ the first network card 3 .
  • the interactive smart tablet provided in the first embodiment of the present invention configures the first network card that receives the data to be received and the data to be sent based on the network transmission protocol for the primary system device of the interactive smart tablet, and uses the primary system device as the virtual device in the interactive smart tablet.
  • the router forwards the data to be received received by the first network card to the slave system device of the interactive smart tablet through the primary system device, and forwards the data to be sent generated by the system device to the first network card through the primary system device, thereby implementing interaction
  • the wired or wireless one-network function of the smart tablet multi-system reduces the number of external smart wires or antennas of the interactive smart tablet, simplifies the complexity of interactive smart flat panel wiring, reduces the power consumption of multiple systems of the interactive smart tablet when connected to the network, and reduces the interaction intelligence.
  • the production cost of the tablet improves the appearance of the interactive smart tablet and improves the user experience.
  • Embodiment 2 of the present invention provides a data transmission method.
  • the method can be performed by a data transmission device, wherein the device can be implemented by software and/or hardware, and can generally be integrated in an interactive smart tablet.
  • 2 is a schematic flowchart of a data transmission method according to Embodiment 2 of the present invention. As shown in FIG. 2, the method includes:
  • S201 Receive, by the first network card, first to-be-received network data sent by another device, and convert the first to-be-received network data into the first to-be-received USB data.
  • the first network card may include a wired network card and/or a wireless network card, which is not limited herein.
  • the first network card can include the first wired network card and the wireless network card at the same time, and the port type of the connection between the first wired network card and the wireless network card and the main system device is preferably a USB port, so as to improve The practicality of interactive smart tablets.
  • the other device may send the first to-be-received network data based on the network transmission protocol.
  • the first network card may receive the first to-be-received network data sent by the other device according to the network transmission protocol, and may receive the first After receiving the network data, data format conversion is performed on the received first to-be-received network data, so that the main system device can identify and process the format-converted data.
  • the first wired network card may receive the wired to-be-received network data sent by the other device, and convert the wired to-be-received network data into the first to-be-received USB.
  • the wireless network card receives, by the wireless network card, wireless to-be-received network data sent by the other device, and converting the wireless to-be-received network data into the first to-be-received USB data.
  • the network to be received by the other device may be received through the network transmission port of the first wired network card, and the wireless to-be-received network data sent by the other device may be received through the antenna of the wireless network card.
  • the first network card may actively send the converted first to-be-received USB data to the main system device, or may receive the main system device. After the data acquisition request is performed, the operation of sending the first to-be-received USB data to the main system device is performed, which is not limited herein.
  • the first network card can transmit the converted first to-be-received USB data to the main system device in real time, thereby reducing the time required to receive the data from the system device.
  • S202 Determine, by the primary system device, the target slave device data of the first to-be-received USB data according to the target IP address carried in the first to-be-received USB data, and convert the first to-be-received USB data into a second Waiting for network data to be received.
  • the target IP address is the IP address of the target receiving device of the first to-be-received network data sent by the other device, and may be an IP address of the interactive smart tablet main system device and/or one or more slave system devices.
  • the IP address of the interactive smart tablet main system device and the slave system device can be configured by the main system device of the interactive smart tablet based on a Dynamic Host Configuration Protocol (DHCP).
  • DHCP Dynamic Host Configuration Protocol
  • the main system device can be started at boot. First, initialize its Domain Name System (DNS) related parameters, network interface mode, and its network sharing parameters; then, when detecting that the current condition meets the IP address allocation condition, it is the primary system and/or the slave system of the IP address. Assign an IP address.
  • DNS Domain Name System
  • the allocation condition of the IP address can be set as needed.
  • the primary system device can first determine the current slave system device currently configured or connected in the interactive smart tablet and acquire itself and the current slave system device when the interactive smart tablet is first started. MAC address, and then select different IP addresses from the IP address pool of the interactive smart tablet according to the preset IP address allocation rule as the IP address of the own (primary system device) and the current slave system device, and determine the The IP address is stored in the storage location set by the main system device corresponding to the MAC address of the corresponding main system device or the slave device; in the use process of the interactive smart tablet, the MAC address of the current slave device connected to the interactive smart tablet is monitored in real time.
  • the changed IP address of the current slave system device can be searched from the storage location of the IP address of each system device of the storage interactive smart tablet. If the current IP address of the system device is successfully found, the subsequent may be based on The IP address sends data to the current slave system device; correspondingly, if the current slave device's IP address lookup fails (ie, the current slave device device's IP address is not found), it can be determined that the current slave system device is first connected.
  • the slave system device may be externally connected to the interactive smart tablet or connected to the interactive smart tablet through a corresponding interface.
  • the slave system device may be externally connected to the main system device of the interactive smart tablet to improve the replacement of the interactive smart tablet.
  • the IP address allocation rule may be allocated or randomly allocated according to a set order (such as an IP address from large to small or small to large); the storage location and storage form of the interactive smart tablet IP address may be The MAC address and the IP address of the system devices of the interactive smart tablet can be stored in the interactive smart tablet main system device in a form of a table, which is not limited herein.
  • the primary system device may determine, according to the IP address carried in the first to-be-received USB data, the target slave system device that receives the data, and convert the first to-be-received USB data into the second to-be-received through its own RJ45 network port. Receiving network data, and transmitting, by using the RJ45 network port, the converted second to-be-received network data and the determined target from the system device information to the switch.
  • the determining the target slave system device of the first to-be-received USB data according to the target IP address carried in the first to-be-received USB data comprises: if the target IP address includes an interactive smart tablet slave system The IP address of the device determines the slave system device corresponding to the IP address as the target slave system device.
  • the slave system device corresponding to the IP address may be determined as the target slave system device, and based on the target The system device performs subsequent data format conversion and transmission operations, and can simultaneously back up and store the first to-be-received USB data in the main system device, and perform processing based on the first to-be-received USB data type by the main system device.
  • the rule information processes the first to-be-received USB data; if the target IP address includes only the IP address of the primary system device, the first to-be-received USB data may be backed up and stored in the primary system device, and the The main system device processes the first to-be-received USB data based on the processing rule information carried by the first to-be-received USB data type, and does not perform subsequent data format conversion and transmission operations.
  • the target second-device network card corresponding to the target slave device may be first determined from the system device information based on the target determined by the primary system device, and then received according to the network transmission protocol.
  • the second to-be-received network data is sent to the target second wired network card connected to the switch, thereby implementing forwarding of the second to-be-received network data.
  • the target second wired network card may be a second wired network card that is connected to the switch and the target slave device respectively.
  • the type of the data port that is connected to the system device and the second wired network card may be set as needed, and is not limited herein.
  • the second wired network card and the data port connected from the system device are preferably USB ports.
  • the target second wired network card may first receive the second to-be-received network data sent by the switch through the network port connected to the switch, and convert the second to-be-received network data into the second to-be-received USB data, and then pass The data port that is connected to the target device from the system device transmits the converted second to-be-received USB data to the target slave system device.
  • the target slave system device may first receive the second to-be-received USB data sent by the second wired network card through the data port that is connected to the target second wired network card, and then parse the second to-be-received USB data to determine the And receiving, by the second, the data content of the USB data, and processing the second to-be-received USB data based on the processing rule information carried in the second to-be-received USB data.
  • the data transmission device provided by the fourth embodiment of the present invention receives the first to-be-received network data sent by the other device by using the first network card, and converts the first to-be-received network data into the first to-be-received USB data, according to the main system device.
  • the target IP address carried in the first to-be-received USB data determines a target slave system device of the first to-be-received USB data, and converts the first to-be-received USB data into a second to-be-received network data, and the second
  • the to-be-received network data is forwarded to the target second wired network card corresponding to the target slave system device, and the second to-be-received network data is converted into the second to-be-received USB data by the target second wired network card, and the second is obtained from the system device by the target device. Waiting for USB data to be received.
  • the primary system device in the interactive smart tablet forwards the data sent by the other device to the slave system device of the interactive smart tablet, thereby implementing the wired or wireless one-network function of the interactive smart tablet multi-system, and reducing the interaction intelligence.
  • the number of external network cables or antennas of the tablet simplifies the complexity of interactive smart flat panel wiring, reduces the power consumption of multiple systems of the interactive smart tablet when connected to the network, reduces the production cost of the interactive smart tablet, and improves the appearance of the interactive smart tablet. Improve the user experience.
  • FIG. 3 is a schematic flowchart diagram of a data transmission method according to Embodiment 3 of the present invention.
  • the embodiment is optimized on the basis of the foregoing embodiment.
  • the data transmission method provided in this embodiment may further include: acquiring, by using the second wired network card, the first to-be-sent USB data generated by the system device, and Converting the first to-be-sent USB data into first to-be-transmitted network data; forwarding, by the switch, the first to-be-sent network data to the primary system device; and using the primary system device to Converting the to-be-sent network data into the second to-be-sent USB data; converting the second to-be-sent USB data into the second to-be-sent network data by using the first network card, and transmitting the second to-be-sent network data to the other device.
  • the data transmission method provided by this embodiment includes:
  • S301 Receive, by using the first network card, first to receive network data sent by another device, and convert the first to-be-received network data into first to-be-received USB data.
  • S302. Determine, by the primary system device, the target slave system device of the first to-be-received USB data according to the target IP address carried in the first to-be-received USB data, and convert the first to-be-received USB data into a second Waiting for network data to be received.
  • the slave system device may generate first to-be-sent USB data including data to be transmitted, own IP address information, and IP address information of the target receiving device that receives the data to be transmitted, and the first The USB data to be sent is sent to the second wired network card through a data port connected to the second wired network card from the system device.
  • the second wired network card may first receive the first to-be-sent USB data sent by the slave system device by using the data port connected to the system device from the second wired network card, and then convert the first to-be-sent USB data into the first The network data to be sent is sent to ensure that the first to-be-sent network data can be transmitted according to the network transmission protocol, and the converted first to-be-sent network data is sent to the switch through the network port connected to the switch in the second wired network card.
  • the switch can receive the first to-be-sent network data sent by the switch through the first network port that is connected to the second wired network card, and pass the network to the host system based on the network transmission protocol after receiving the first to-be-sent network data.
  • the second network port connected to the device sends the first to-be-sent network data to the main system device, so as to implement forwarding of the first to-be-sent network data.
  • an RJ45 network port for receiving network data sent by the switch may be configured in the main system device.
  • the primary system device can receive the first to-be-sent network data sent by the switch through the RJ45 network port, and convert the first to-be-sent network data into the second to-be-sent USB data, and then pass the A data port connected to the network card transmits the converted second to-be-sent USB to the first network card.
  • S309 Convert the second to-be-sent USB data to the second to-be-sent network data by using the first network card, and send the second to-be-sent network data to another device.
  • the first network card can receive the second to-be-sent USB data sent by the main system device by using the data port connected to the main system device, and convert the second to-be-sent USB data into the second to-be-sent network data.
  • the data format of the converted second to-be-transmitted network data is consistent with the network transmission protocol; and then the second to-be-sent network data is sent to the other device by using an antenna or a network port in the first network card.
  • the first network card may directly send the second to-be-sent network data to the target receiving device of the second to-be-sent network data based on the P2P communication standard protocol, or may be a router, a base station, or a server connected by the first network card.
  • the second to-be-sent network data is forwarded to the target receiving device of the second to-be-sent network data, which is not limited herein.
  • sequence numbers of the foregoing steps in this embodiment are not limited to the execution order of the steps in the embodiment, and the specific execution sequence of each step in this embodiment may be adjusted according to requirements, for example, data.
  • the transmission process (S306 to S309) may be performed before the data reception process (S301 to S305) or in synchronization with the data reception process (S301 to S305), but no matter how the execution order of each step of the embodiment is adjusted, All should be included in the scope of protection of this embodiment.
  • the data transmission method provided by the third embodiment of the present invention can forward the data sent by other devices to the slave system device of the interactive smart tablet by using the main system device in the interactive smart tablet, thereby implementing the wired or wireless network communication function of the interactive smart tablet multi-system.
  • the number of external network cables or antennas of the interactive smart tablet is reduced, the complexity of the interactive intelligent tablet wiring is simplified, the power consumption of multiple systems of the interactive smart tablet is reduced, the production cost of the interactive smart tablet is reduced, and the interactive intelligent tablet is improved.
  • the appearance of the machine improves the user experience.
  • Embodiment 4 of the present invention provides a data transmission apparatus.
  • the device can be implemented by software and/or hardware, and can be integrated into an interactive smart tablet, and data can be transmitted by performing a data transmission method.
  • 4 is a structural block diagram of a data transmission apparatus according to Embodiment 4 of the present invention. As shown in FIG. 4, the apparatus includes:
  • the first USB data conversion module 401 is configured to receive the first to-be-received network data sent by the other device, and convert the first to-be-received network data into the first to-be-received USB data;
  • the first network data conversion module 402 is configured in the main system device, and configured to determine, according to the target IP address carried in the first to-be-received USB data, the target slave system device of the first to-be-received USB data, and Converting the first to-be-received USB data into the second to-be-received network data;
  • the first network data forwarding module 403 is configured to be configured to forward the second to-be-received network data to the target second wired network card corresponding to the target slave system device;
  • the second USB data conversion module 404 is configured to be configured to convert the second to-be-received network data into the second to-be-received USB data.
  • the second USB data acquisition module 405 is configured in the slave system device for acquiring the second to-be-received USB data.
  • the data transmission device receives the first to-be-received network data sent by another device by using the first USB data conversion module configured in the first network card, and converts the first to-be-received network data into the first
  • the first network data conversion module configured in the main system device determines the target slave system device of the first to-be-received USB data according to the target IP address carried in the first to-be-received USB data, and the first The first to be received network data is forwarded to the target second wired network card corresponding to the target system device by the first network data forwarding module configured in the switch, and configured by the first network data forwarding module configured in the switch.
  • the second USB data conversion module in the target second wired network card converts the second to-be-received network data into the second to-be-received USB data, and obtains the second by the second USB data acquisition module configured in the target slave system device. Waiting for USB data to be received.
  • the primary system device in the interactive smart tablet forwards the data sent by the other device to the slave system device of the interactive smart tablet, which can reduce the number of external network cables or antennas of the interactive smart tablet, and simplify the interactive intelligent tablet wiring. The complexity reduces the power consumption of multiple systems on the interactive smart tablet when connected to the network.
  • the first network data conversion module 402 may be configured to determine, when the target IP address includes an IP address of the interaction smart tablet from the system device, the slave system device corresponding to the IP address as the target slave And the system device converts the first to-be-received USB data into the second to-be-received network data.
  • the first USB data conversion module 401 may include: a wired data conversion unit, configured in the first wired network card, configured to receive wired to-be-received network data sent by other devices, and to receive the wired to be received Converting the network data into the first to-be-received USB data; and/or the wireless data conversion unit is configured in the wireless network card, configured to receive the wireless to-be-received network data sent by the other device, and convert the wireless to-be-received network data into The first to receive USB data.
  • a wired data conversion unit configured in the first wired network card, configured to receive wired to-be-received network data sent by other devices, and to receive the wired to be received Converting the network data into the first to-be-received USB data
  • the wireless data conversion unit is configured in the wireless network card, configured to receive the wireless to-be-received network data sent by the other device, and convert the wireless to-be-received network data into The
  • the data transmission apparatus may further include: a second network data conversion module, configured in the second wired network card, configured to acquire the first to-be-sent USB data generated from the system device, and The first to-be-sent network data is converted into the first to-be-sent network data;
  • the first network data forwarding module is configured to be in the switch, and is configured to forward the first to-be-sent network data to the main system device;
  • a third USB data conversion unit configured to be configured to convert the first to-be-sent network data into a second to-be-sent USB data, and a third network data conversion module, configured to be in the first network card
  • the second to-be-transmitted network data is converted into the second to-be-sent network data, and the second to-be-sent network data is sent to other devices.
  • the data transmission apparatus provided in the fourth embodiment of the present invention can execute the data transmission method provided by any embodiment of the present invention, and has the corresponding functional modules and beneficial effects of the data transmission method.
  • the data transmission apparatus can execute the data transmission method provided by any embodiment of the present invention, and has the corresponding functional modules and beneficial effects of the data transmission method.
  • Embodiment 5 of the present invention further provides a storage medium including computer executable instructions for performing a data transmission method when executed by a computer processor, the method comprising:
  • the second to-be-received USB data is acquired from the system device by the target.
  • a storage medium containing computer executable instructions the computer executable instructions are not limited to the method operations as described above, and may also be executed in the data transmission method provided by any embodiment of the present invention. Related operations.
  • the present invention can be implemented by software and necessary general hardware, and can also be implemented by hardware, but in many cases, the former is a better implementation. .
  • the technical solution of the present invention which is essential or contributes to the prior art, may be embodied in the form of a software product, which may be stored in a computer readable storage medium, such as a floppy disk of a computer. , Read-Only Memory (ROM), Random Access Memory (RAM), Flash (FLASH), hard disk or optical disk, etc., including a number of instructions to make a computer device (can be a personal computer)
  • the server, or network device, etc. performs the methods described in various embodiments of the present invention.
  • each unit and module included is only divided according to functional logic, but is not limited to the above division, as long as the corresponding function can be implemented;
  • the specific names of the respective functional units are also for convenience of distinguishing from each other and are not intended to limit the scope of protection of the present invention.

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Abstract

本发明公开了一种交互智能平板、数据的传输方法、装置及存储介质。该方法包括:通过第一网卡接收其他设备发送的第一待接收网络数据并将第一待接收网络数据转换为第一待接收USB数据;通过主系统设备根据第一待接收USB数据中携带的目标IP地址确定第一待接收USB数据的目标从系统设备,并将第一待接收USB数据转换为第二待接收网络数据;通过交换机将第二待接收网络数据转发给目标从系统设备对应的目标第二有线网卡;通过目标第二有线网卡将第二待接收网络数据转换为第二待接收USB数据;通过目标从系统设备获取第二待接收USB数据。本发明实施例通过采用上述技术方案,可以简化交互智能平板布线的复杂程度,减少交互智能平板使用时的功耗。

Description

交互智能平板、数据的传输方法、装置及存储介质 技术领域
本发明涉及信息处理技术领域,尤其涉及一种交互智能平板、数据的传输方法、装置及存储介质。
背景技术
随着信息技术的发展以及人们对设备兼容性要求的提高,可以同时兼容多个系统模块的多系统设备也逐渐得到了人们越来越多的关注。
为了满足用户的使用需求,多系统设备通常配备有与互联网连接进行数据传输的功能。现有技术中,多系统设备内的各系统一般会通过与其对应的网络设备(有线网卡和/或无线网卡)接收和发送数据,即,在现有技术中,通常会为多系统设备中的每个系统单独配置有线网卡和/或无线网卡,并通过该有线网卡和/或无线网卡将其他设备发送给其对应系统的数据转发给该系统,并将该系统发送的数据转发给其他设备,从而实现多系统设备基于互联网的数据传输功能。
但是,发明人在实现本发明的过程中发现现有技术存在如下技术缺陷:现有技术多系统设备需外接的网线和/或天线的数量较多,导致多系统设备布线较复杂,各系统同时联网时功耗较高。
发明内容
有鉴于此,本发明实施例提供一种交互智能平板、数据的传输方法、装置 及存储介质,以解决现有技术中多系统设备布线较复杂、功耗较高的技术问题。
第一方面,本发明实施例提供了一种交互智能平板,包括主系统设备、至少一个从系统设备、第一网卡、交换机和至少一个第二有线网卡,其中,
所述第一网卡与所述主系统设备相连,用于接收其他设备发送的待接收数据并将所述待接收数据发送给所述主系统设备,以及,接收所述主系统设备发送的待发送数据并将所述待发送数据发送给其他设备;
所述主系统设备作为虚拟路由器,与所述交换机相连,用于接收所述待接收数据并将所述待接收数据发送给所述交换机,以及,接收所述交换机发送的待发送数据并将所述待发送数据发送给所述第一网卡;
所述交换机与所述至少一个第二有线网卡相连,用于接收所述待接收数据并将所述待接收数据分发给至少一个所述第二有线网卡,以及,接收至少一个所述第二有线网卡发送的待发送数据并将所述待发送数据发送给所述主系统设备;
所述第二有线网卡与所述从系统设备相连,用于接收所述待接收数据并将所述待接收数据发送给所述从系统设备,以及,接收所述从系统设备发送的待发送数据并将所述待发送数据发送给所述交换机,其中,所述第二有线网卡与所述从系统设备一一对应;
所述从系统设备,用于接收所述待接收数据,以及,生成待发送数据并将所述待发送数据发送给所述第二有线网卡。
第二方面,本发明实施例提供了一种数据的传输方法,包括:
通过第一网卡接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据;
通过主系统设备根据所述第一待接收USB数据中携带的目标IP地址确定所 述第一待接收USB数据的目标从系统设备,并将所述第一待接收USB数据转换为第二待接收网络数据;
通过交换机将所述第二待接收网络数据转发给所述目标从系统设备对应的目标第二有线网卡;
通过所述目标第二有线网卡将所述第二待接收网络数据转换为第二待接收USB数据;
通过所述目标从系统设备获取所述第二待接收USB数据。
第三方面,本发明实施例提供了一种数据的传输装置,包括:
第一USB数据转换模块,配置于第一网卡内,用于接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据;
第一网络数据转换模块,配置于主系统设备内,用于根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,并将所述第一待接收USB数据转换为第二待接收网络数据;
第一网络数据转发模块,配置于交换机内,用于将所述第二待接收网络数据转发给所述目标从系统设备对应的目标第二有线网卡;
第二USB数据转换模块,配置于第二有线网卡内,用于将所述第二待接收网络数据转换为第二待接收USB数据;
第二USB数据获取模块,配置于从系统设备内,用于获取所述第二待接收USB数据。
第四方面,本发明实施例还提供了一种计算机存储介质,其上存储有计算机程序,该程序被处理器执行时实现本发明实施例所述的数据传输的方法。
在上述传输数据的技术方案中,将交互智能平板内的主系统设备作为虚拟路由器,通过第一网卡接收其他设备发送的第一待接收网络数据并将该第一待 接收网络数据转换为第一待接收USB数据,通过主系统设备根据该第一待接收USB数据中携带的目标IP地址确定该第一待接收USB数据的目标从系统设备并将该第一待接收USB数据转换为第二待接收网络数据,通过交换机将该第二待接收网络数据转发给目标从系统设备对应的目标第二有线网卡,通过该目标第二有线网卡将该第二待接收网络数据转换为第二待接收USB数据,通过目标从系统设备获取该第二待接收USB数据。上述传输数据的技术方案,将交互智能平板内的主系统设备作为虚拟路由器,通过交互智能平板中的主系统设备将其他设备发送的数据转发给交互智能平板的从系统设备,可以减少交互智能平板外接网线或天线的数量,简化交互智能平板布线的复杂程度,减少交互智能平板多个系统分别与网络连接时的功耗。
附图说明
通过阅读参照以下附图所作的对非限制性实施例所作的详细描述,本发明的其它特征、目的和优点将会变得更明显:
图1为本发明实施例一提供的一种交互智能平板的结构示意图;
图2为本发明实施例二提供的一种数据的传输方法的流程示意图;
图3为本发明实施例三提供的一种数据的传输方法的流程示意图;
图4为本发明实施例四提供的一种数据的传输装置的结构框图。
具体实施方式
下面结合附图和实施例对本发明作进一步的详细说明。可以理解的是,此处所描述的具体实施例仅仅用于解释本发明,而非对本发明的限定。另外还需要说明的是,为了便于描述,附图中仅示出了与本发明相关的部分而非全部内 容。
实施例一
本发明实施例一提供一种交互智能平板。该交互智能平板可执行本发明实施例提供的数据的传输方法。图1是本发明实施例一提供的交互智能平板的结构示意图,如图1所示,该交互智能平板包括:主系统设备1、至少一个从系统设备2、第一网卡3、交换机4和至少一个第二有线网卡5,其中,
所述第一网卡3与所述主系统设备1相连,用于接收其他设备发送的待接收数据并将所述待接收数据发送给所述主系统设备1,以及,接收所述主系统设备1发送的待发送数据并将所述待发送数据发送给其他设备;
所述主系统设备1作为虚拟路由器,与所述交换机4相连,用于接收所述待接收数据并将所述待接收数据发送给所述交换机4,以及,接收所述交换机4发送的待发送数据并将所述待发送数据发送给所述第一网卡3;
所述交换机4与所述至少一个第二有线网卡5相连,用于接收所述待接收数据并将所述待接收数据分发给至少一个所述第二有线网卡5,以及,接收至少一个所述第二有线网卡5发送的待发送数据并将所述待发送数据发送给所述主系统设备1;
所述第二有线网卡5与所述从系统设备2相连,用于接收所述待接收数据并将所述待接收数据发送给所述从系统设备2,以及,接收所述从系统设备2发送的待发送数据并将所述待发送数据发送给所述交换机4,其中,所述第二有线网卡5与所述从系统设备2一一对应;
所述从系统设备2,用于接收所述待接收数据,以及,生成待发送数据并将所述待发送数据发送给所述第二有线网卡5。
其中,主系统设备1可以为交互智能平板的基础设备,从系统设备2可以为主系统设备1中配置或外接的有独立操作系统的非基础设备,即,主系统设备1可以理解为交互智能平板中承载其必备的基础运行系统的设备,从系统设备2可以理解为开发商或用户为了提高交互智能平板的兼容性和实用性而为交互智能平板配置或外接的承载其他系统的设备。例如,主系统设备1可以为承载交互智能平板的安卓或IOS系统的设备,从系统设备2可以为承载交互智能平板非安卓和非IOS系统的设备,如交互智能平板中承载Windows或Mac OS等系统的设备。
本实施例中,第一网卡3可以为任意类型的网卡,可选的,所述第一网卡3可以包括无线网卡和/或第一有线网卡。此时,无线网卡和第一有线网卡的类型或型号可以根据需要确定,如无线网卡可以为具有PCI、PCMCIA或USB等接口的无线网卡,第一有线网卡可以为具有SC、LC、ST或FC等接口的有线网卡,此处不作限制。考虑到各接口的通用性与实用性,优选的,所述无线网卡连接主系统设备端的接口为USB接口,所述第一有线网卡连接主系统设备端的接口为USB接口。
在本实施例中,第二有线网卡5的数量可以根据交互智能平板所配置或所能够连接的从系统设备2的最大数量确定,例如,假设交互智能平板具有2个连接从系统设备2的连接端口或配置有2个从系统设备2,则可以在交互智能平板中配置2个第二有线网卡5,且每个第二有线网卡5分别对应一个不同的从系统设备2或从系统设备2的连接端口。其中,第二有线网卡可以为具有SC、LC、ST或FC等接口的有线网卡,优选的,所述第二有线网卡连接所述从系统设备的接口为USB接口,从而进一步提高交互智能平板的实用性。
示例性的,交互智能平板的从系统设备2接收数据时的数据传输途径可以 为:第一网卡3→主系统设备1→交换机4→第二有线网卡5→从系统设备2,相应的,交互智能平板的从系统设备2发送数据时的数据传输途径可以为:从系统设备2→第二有线网卡5→交换机4→主系统设备1→第一网卡3。
本发明实施例一提供的交互智能平板,只为交互智能平板的主系统设备配置基于网络传输协议接收待接收数据以及发送待发送数据的第一网卡,将主系统设备作为交互智能平板内的虚拟路由器,通过主系统设备将第一网卡接收到的待接收数据转发给交互智能平板的从系统设备,以及,通过主系统设备将从系统设备生成的待发送数据转发给第一网卡,可以实现交互智能平板多系统的有线或无线一网通功能,减少交互智能平板外接网线或天线的数量,简化交互智能平板布线的复杂程度,减少交互智能平板多个系统分别与网络连接时的功耗,降低交互智能平板的生产成本,提高交互智能平板整机的外观,提高用户的使用体验。
实施例二
本发明实施例二提供一种数据的传输方法。该方法可以由数据的传输装置执行,其中,该装置可以由软件和/或硬件实现,一般可集成在交互智能平板中。图2为本发明实施例二提供的数据的传输方法的流程示意图,如图2所示,该方法包括:
S201、通过第一网卡接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据。
其中,第一网卡可以包括有线网卡和/或无线网卡,此处不作限制。考虑到交互智能平板的实用性,可选的,第一网卡中可以同时包含第一有线网卡和无线网卡,第一有线网卡和无线网卡与主系统设备连接端的端口类型优选为USB 端口,以提高交互智能平板的实用性。
本实施例中,其他设备可以基于网络传输协议发送第一待接收网络数据,相应的,第一网卡可以基于网络传输协议接收其他设备发送的第一待接收网络数据,并可以在接收到第一待接收网络数据后对所接收到的第一待接收网络数据进行数据格式转换,以使主系统设备可以对格式转换后的数据进行识别与处理。示例性的,在接收其他设备发送的第一待接收数据时,可以通过第一有线网卡接收其他设备发送的有线待接收网络数据,并将所述有线待接收网络数据转换为第一待接收USB数据;和/或,通过无线网卡接收其他设备发送的无线待接收网络数据,并将所述无线待接收网络数据转换为第一待接收USB数据。如,可以通过第一有线网卡的网络传输端口接收其他设备发送的有线待接收网络数据,并通过无线网卡的天线接收其他设备发送的无线待接收网络数据。
示例性的,第一网卡将第一待接收网络数据转换为第一待接收USB数据之后,可以主动将转换得到的第一待接收USB数据发送给主系统设备,也可以在接收到主系统设备的数据获取请求后再执行将第一待接收USB数据发送给主系统设备的操作,此处不作限制。优选的,第一网卡可以实时将转换得到的第一待接收USB数据发送给主系统设备,从而减少从系统设备接收到该数据所需的时间。
S202、通过主系统设备根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,并将所述第一待接收USB数据转换为第二待接收网络数据。
本实施例中,目标IP地址为其他设备发送的第一待接收网络数据的目标接收设备的IP地址,其可以为交互智能平板主系统设备和/或一个或多个从系统设备的IP地址。其中,交互智能平板主系统设备和从系统设备的IP地址均可 以由交互智能平板的主系统设备基于动态主机配置协议(Dynamic Host Configuration Protocol,DHCP)进行配置,如,主系统设备可以在开机启动时首先初始化其域名系统(Domain Name System,DNS)相关参数、网络接口模式以及其网络共享参数等;然后在检测到当前条件符合IP地址的分配条件时为IP地址的主系统和/或从系统分配IP地址。
在此,IP地址的分配条件可以根据需要设置,例如,主系统设备可以在交互智能平板首次启动时首先确定交互智能平板中当前配置或连接的当前从系统设备并获取自身和该当前从系统设备的MAC地址,然后按照预先设定的IP地址分配规则从交互智能平板的IP地址池中选取不同的IP地址作为自身(主系统设备)和该当前从系统设备的IP地址,并将所确定的IP地址与其对应主系统设备或从系统设备的MAC地址对应存储在主系统设备设定的存储位置;在交互智能平板的使用过程中实时监测交互智能平板所连接的当前从系统设备的MAC地址是否发生变化,如果监测到当前从系统设备的MAC地址发生变化,则可以从存储交互智能平板各系统设备IP地址的设定的存储位置查找变化后的该当前从系统设备的IP地址,此时,如果该当前从系统设备的IP地址查找成功,则后续可以基于该IP地址向该当前从系统设备发送数据;相应的,如果该当前从系统设备的IP地址查找失败(即未查找到该当前从系统设备的IP地址),则可以判定该当前从系统设备首次连接到主系统设备,并按照预先设定的IP地址分配规则从交互智能平板IP地址池未被占用的IP地址中选取一IP地址作为该当前从系统设备的IP地址,并将该当前从系统设备的IP地址与其MAC地址对应存储在主系统设备设定的存储位置。其中,从系统设备可以与交互智能平板为一个整体或通过相应的接口外接在交互智能平板上,优选的,从系统设备可以外接在交互智能平板的主系统设备上,以提高更换交互智能平板从系统设备的 便利性;IP地址分配规则可以为按照设定的顺序(如IP地址由大到小或由小到大等)分配或随机分配等;交互智能平板IP地址的存储位置和存储形式可以根据需要设置,如交互智能平板各系统设备的MAC地址和IP地址可以以表格的形式存储在交互智能平板主系统设备中,此处不作限制。
示例性的,主系统设备可以基于第一待接收USB数据中携带的IP地址确定接收该数据的目标从系统设备,通过其自身配备的RJ45网口将第一待接收USB数据转换为第二待接收网络数据,并通过该RJ45网口将转换得到的第二待接收网络数据以及所确定的目标从系统设备信息发送给交换机。优选的,所述根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,包括:如果所述目标IP地址中包含交互智能平板从系统设备的IP地址,则将所述IP地址对应的从系统设备确定为目标从系统设备。相应的,如果所述目标IP地址中同时包含交互智能平板从系统设备和主系统设备的IP地址,则可以将所述IP地址对应的从系统设备确定为目标从系统设备,并基于该目标从系统设备进行后续数据格式转换与发送的操作,并且,可以同时在该主系统设备内备份与存储第一待接收USB数据,并通过该主系统设备基于该第一待接收USB数据种携带的处理规则信息对该第一待接收USB数据进行处理;如果所述目标IP地址中只包含主系统设备的IP地址,则可以在该主系统设备内备份与存储第一待接收USB数据,并通过该主系统设备基于该第一待接收USB数据种携带的处理规则信息对该第一待接收USB数据进行处理,且不再进行后续数据格式转换与发送的操作。
S203、通过交换机将所述第二待接收网络数据转发给所述目标从系统设备对应的目标第二有线网卡。
示例性的,在接收到第二待接收网络数据后,可以首先基于主系统设备确 定的目标从系统设备信息确定该目标从系统设备对应的目标第二有线网卡,然后基于网络传输协议将接收到的第二待接收网络数据发送给与交换机连接的目标第二有线网卡,从而实现对第二待接收网络数据的转发。其中,目标第二有线网卡可以为分别与交换机和目标从系统设备连接的第二有线网卡,第二有线网卡与从系统设备相连的数据端口的类型可以根据需要设置,此处不作限制。为了提高交互智能平板的实用性,所述第二有线网卡与从系统设备相连的数据端口优选为USB端口。
S204、通过所述目标第二有线网卡将所述第二待接收网络数据转换为第二待接收USB数据。
示例性的,目标第二有线网卡可以首先通过其与交换机相连的网络端口接收交换机发送的第二待接收网络数据,并将该第二待接收网络数据转换为第二待接收USB数据,然后通过其与目标从系统设备相连的数据端口将转换得到的第二待接收USB数据发送给目标从系统设备。
S205、通过所述目标从系统设备获取所述第二待接收USB数据。
示例性的,目标从系统设备可以首先通过其与目标第二有线网卡相连的数据端口接收第二有线网卡发送的第二待接收USB数据,然后对该第二待接收USB数据进行解析以确定该第二待接受USB数据的数据内容,并基于该第二待接收USB数据中携带的处理规则信息对该第二待接收USB数据进行处理。
本发明实施例四提供的数据的传输装置,通过第一网卡接收其他设备发送的第一待接收网络数据并将该第一待接收网络数据转换为第一待接收USB数据,通过主系统设备根据该第一待接收USB数据中携带的目标IP地址确定该第一待接收USB数据的目标从系统设备并将该第一待接收USB数据转换为第二待接收网络数据,通过交换机将该第二待接收网络数据转发给目标从系统设备对应的 目标第二有线网卡,通过目标第二有线网卡将该第二待接收网络数据转换为第二待接收USB数据,通过目标从系统设备获取该第二待接收USB数据。本实施例采用上述技术方案,通过交互智能平板中的主系统设备将其他设备发送的数据转发给交互智能平板的从系统设备,可以实现交互智能平板多系统的有线或无线一网通功能,减少交互智能平板外接网线或天线的数量,简化交互智能平板布线的复杂程度,减少交互智能平板多个系统分别与网络连接时的功耗,降低交互智能平板的生产成本,提高交互智能平板整机的外观,提高用户的使用体验。
实施例三
图3为本发明实施例三提供的一种数据的传输方法的流程示意图。本实施例在上述实施例的基础上进行优化,进一步地,本实施例提供的数据的传输方法还可以包括:通过所述第二有线网卡获取从系统设备生成的第一待发送USB数据,并将所述第一待发送USB数据转换为第一待发送网络数据;通过所述交换机将所述第一待发送网络数据转发给所述主系统设备;通过所述主系统设备将所述第一待发送网络数据转换为第二待发送USB数据;通过所述第一网卡将所述第二待发送USB数据转换为第二待发送网络数据,并将所述第二待发送网络数据发送给其他设备。
相应的,如图2所示,本实施例提供的数据的传输方法包括:
S301、通过第一网卡接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据。
S302、通过主系统设备根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,并将所述第一待接收USB数 据转换为第二待接收网络数据。
S303、通过交换机将所述第二待接收网络数据转发给所述目标从系统设备对应的目标第二有线网卡。
S304、通过所述目标第二有线网卡将所述第二待接收网络数据转换为第二待接收USB数据。
S305、通过所述目标从系统设备获取所述第二待接收USB数据。
S306、通过所述第二有线网卡获取从系统设备生成的第一待发送USB数据,并将所述第一待发送USB数据转换为第一待发送网络数据。
示例性的,在需要发送数据时,从系统设备可以生成包含待发送数据、自身IP地址信息和接收该待发送数据的目标接收设备的IP地址信息的第一待发送USB数据,并将该第一待发送USB数据通过从系统设备中与第二有线网卡相连的数据端口发送给第二有线网卡。相应的,第二有线网卡可以首先通过第二有线网卡中与从系统设备相连的数据端口接收该从系统设备发送的第一待发送USB数据,然后将该第一待发送USB数据转换为第一待发送网络数据以保证可以基于网络传输协议传输该第一待发送网络数据,并通过第二有线网卡中与交换机相连的网络端口将转换得到的第一待发送网络数据发送给交换机。
S307、通过所述交换机将所述第一待发送网络数据转发给所述主系统设备。
示例性的,交换机可以通过其与第二有线网卡相连的第一网络端口接收交换机发送的第一待发送网络数据,并在接收到第一待发送网络数据后基于网络传输协议通过其与主系统设备相连的第二网络端口将该第一待发送网络数据发送给主系统设备,从而实现对该第一待发送网络数据的转发。
S308、通过所述主系统设备将所述第一待发送网络数据转换为第二待发送USB数据。
本实施例中,主系统设备内可以配置有用于接收交换机发送的网络数据的RJ45网口。此时,示例性的,主系统设备可以通过该RJ45网口接收交换机发送的第一待发送网络数据,并将该第一待发送网络数据转换为第二待发送USB数据,然后通过其与第一网卡相连的数据端口将转换得到的第二待发送USB发送给第一网卡。
S309、通过所述第一网卡将所述第二待发送USB数据转换为第二待发送网络数据,并将所述第二待发送网络数据发送给其他设备。
其中,其他设备可以理解为第二待发送网络数据的目标接收设备。示例性的,第一网卡可以通过其与主系统设备相连的数据端口接收主系统设备发送的第二待发送USB数据,并将该第二待发送USB数据转换为第二待发送网络数据,以使转换后的第二待发送网络数据的数据格式符合网络传输协议;然后通过第一网卡内的天线或网口将该第二待发送网络数据发送给其他设备。此时,第一网卡可以基于P2P通信标准协议直接将该第二待发送网络数据发送给该第二待发送网络数据的目标接收设备,也可以通过第一网卡连接的路由器、基站或服务器等设备将该第二待发送网络数据转发给该第二待发送网络数据的目标接收设备,此处不作限制。
在此,本领域技术人员可以理解的是,本实施例上述各步骤的序号并不作为对本实施例各步骤执行顺序的限定,本实施例各步骤的具体执行顺序可以根据需要调整,例如,数据的发送过程(S306~S309)可以在数据的接收过程(S301~S305)之前执行或者与数据的接收过程(S301~S305)同步执行,但是,无论本实施例各步骤的执行顺序如何调整,其均应包含在本实施例的保护范围之内。
本发明实施例三提供的数据的传输方法,通过交互智能平板中的主系统设 备将其他设备发送的数据转发给交互智能平板的从系统设备,可以实现交互智能平板多系统的有线或无线一网通功能,减少交互智能平板外接网线或天线的数量,简化交互智能平板布线的复杂程度,减少交互智能平板多个系统分别与网络连接时的功耗,降低交互智能平板的生产成本,提高交互智能平板整机的外观,提高用户的使用体验。
实施例四
本发明实施例四提供一种数据的传输装置。该装置可以由软件和/或硬件实现,一般可集成在交互智能平板中,可通过执行数据的传输方法实现数据的传输。图4为本发明实施例四提供的数据的传输装置的结构框图,如图4所示,该装置包括:
第一USB数据转换模块401,配置于第一网卡内,用于接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据;
第一网络数据转换模块402,配置于主系统设备内,用于根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,并将所述第一待接收USB数据转换为第二待接收网络数据;
第一网络数据转发模块403,配置于交换机内,用于将所述第二待接收网络数据转发给所述目标从系统设备对应的目标第二有线网卡;
第二USB数据转换模块404,配置于第二有线网卡内,用于将所述第二待接收网络数据转换为第二待接收USB数据;
第二USB数据获取模块405,配置于从系统设备内,用于获取所述第二待接收USB数据。
本发明实施例四提供的数据的传输装置,通过配置于第一网卡内的第一USB 数据转换模块接收其他设备发送的第一待接收网络数据并将该第一待接收网络数据转换为第一待接收USB数据,通过配置于主系统设备内的第一网络数据转换模块根据该第一待接收USB数据中携带的目标IP地址确定该第一待接收USB数据的目标从系统设备并将该第一待接收USB数据转换为第二待接收网络数据,通过配置于交换机内的第一网络数据转发模块将该第二待接收网络数据转发给目标从系统设备对应的目标第二有线网卡,通过配置于目标第二有线网卡内的第二USB数据转换模块将该第二待接收网络数据转换为第二待接收USB数据,通过配置于目标从系统设备内的第二USB数据获取模块获取该第二待接收USB数据。本实施例采用上述技术方案,通过交互智能平板中的主系统设备将其他设备发送的数据转发给交互智能平板的从系统设备,可以减少交互智能平板外接网线或天线的数量,简化交互智能平板布线的复杂程度,减少交互智能平板多个系统分别与网络连接时的功耗。
在上述方案中,所述第一网络数据转换模块402可用于:当所述目标IP地址中包含交互智能平板从系统设备的IP地址时,将所述IP地址对应的从系统设备确定为目标从系统设备,并将所述第一待接收USB数据转换为第二待接收网络数据。
在上述方案中,所述第一USB数据转换模块401可以包括:有线数据转换单元,配置于第一有线网卡内,用于接收其他设备发送的有线待接收网络数据,并将所述有线待接收网络数据转换为第一待接收USB数据;和/或,无线数据转换单元,配置于无线网卡内,用于接收其他设备发送的无线待接收网络数据,并将所述无线待接收网络数据转换为第一待接收USB数据。
进一步地,本实施例提供的数据的传输装置还可以包括:第二网络数据转换模块,配置于所述第二有线网卡内,用于获取从系统设备生成的第一待发送 USB数据,并将所述第一待发送USB数据转换为第一待发送网络数据;第一网络数据转发模块,配置于所述交换机内,用于将所述第一待发送网络数据转发给所述主系统设备;第三USB数据转换单元,配置于所述主系统设备内,用于将所述第一待发送网络数据转换为第二待发送USB数据;第三网络数据转换模块,配置于所述第一网卡内,用于将所述第二待发送USB数据转换为第二待发送网络数据,并将所述第二待发送网络数据发送给其他设备。
本发明实施例四提供的数据的传输装置可执行本发明任意实施例提供的数据的传输方法,具备执行数据的传输方法相应的功能模块和有益效果。未在本实施例中详尽描述的技术细节,可参见本发明任意实施例所提供的数据的传输方法。
实施例五
本发明实施例五还提供一种包含计算机可执行指令的存储介质,所述计算机可执行指令在由计算机处理器执行时用于执行一种数据的传输方法,该方法包括:
通过第一网卡接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据;
通过主系统设备根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,并将所述第一待接收USB数据转换为第二待接收网络数据;
通过交换机将所述第二待接收网络数据转发给所述目标从系统设备对应的目标第二有线网卡;
通过所述目标第二有线网卡将所述第二待接收网络数据转换为第二待接收 USB数据;
通过所述目标从系统设备获取所述第二待接收USB数据。
当然,本发明实施例所提供的一种包含计算机可执行指令的存储介质,其计算机可执行指令不限于如上所述的方法操作,还可以执行本发明任意实施例所提供的数据的传输方法中的相关操作。
通过以上关于实施方式的描述,所属领域的技术人员可以清楚地了解到,本发明可借助软件及必需的通用硬件来实现,当然也可以通过硬件实现,但很多情况下前者是更佳的实施方式。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在计算机可读存储介质中,如计算机的软盘、只读存储器(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、闪存(FLASH)、硬盘或光盘等,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本发明各个实施例所述的方法。
值得注意的是,上述数据的传输装置的实施例中,所包括的各个单元和模块只是按照功能逻辑进行划分的,但并不局限于上述的划分,只要能够实现相应的功能即可;另外,各功能单元的具体名称也只是为了便于相互区分,并不用于限制本发明的保护范围。
注意,上述仅为本发明的较佳实施例及所运用技术原理。本领域技术人员会理解,本发明不限于这里所述的特定实施例,对本领域技术人员来说能够进行各种明显的变化、重新调整和替代而不会脱离本发明的保护范围。因此,虽然通过以上实施例对本发明进行了较为详细的说明,但是本发明不仅仅限于以上实施例,在不脱离本发明构思的情况下,还可以包括更多其他等效实施例,而本发明的范围由所附的权利要求范围决定。

Claims (10)

  1. 一种交互智能平板,其特征在于,包括主系统设备、至少一个从系统设备、第一网卡、交换机和至少一个第二有线网卡,其中,
    所述第一网卡与所述主系统设备相连,用于接收其他设备发送的待接收数据并将所述待接收数据发送给所述主系统设备,以及,接收所述主系统设备发送的待发送数据并将所述待发送数据发送给其他设备;
    所述主系统设备作为虚拟路由器,与所述交换机相连,用于接收所述待接收数据并将所述待接收数据发送给所述交换机,以及,接收所述交换机发送的待发送数据并将所述待发送数据发送给所述第一网卡;
    所述交换机与所述至少一个第二有线网卡相连,用于接收所述待接收数据并将所述待接收数据分发给至少一个所述第二有线网卡,以及,接收至少一个所述第二有线网卡发送的待发送数据并将所述待发送数据发送给所述主系统设备;
    所述第二有线网卡与所述从系统设备相连,用于接收所述待接收数据并将所述待接收数据发送给所述从系统设备,以及,接收所述从系统设备发送的待发送数据并将所述待发送数据发送给所述交换机,其中,所述第二有线网卡与所述从系统设备一一对应;
    所述从系统设备,用于接收所述待接收数据,以及,生成待发送数据并将所述待发送数据发送给所述第二有线网卡。
  2. 根据权利要求1所述的交互智能平板,其特征在于,所述第二有线网卡的连接所述从系统设备的接口为USB接口。
  3. 根据权利要求1所述的交互智能平板,其特征在于,所述第一网卡包括无线网卡和/或第一有线网卡。
  4. 根据权利要求3所述的交互智能平板,其特征在于,所述第一有线网卡 连接所述主系统设备的接口为USB接口。
  5. 一种数据的传输方法,其特征在于,包括:
    通过第一网卡接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据;
    通过主系统设备根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,并将所述第一待接收USB数据转换为第二待接收网络数据;
    通过交换机将所述第二待接收网络数据转发给所述目标从系统设备对应的目标第二有线网卡;
    通过所述目标第二有线网卡将所述第二待接收网络数据转换为第二待接收USB数据;
    通过所述目标从系统设备获取所述第二待接收USB数据。
  6. 根据权利要求5所述的方法,其特征在于,所述根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,包括:
    如果所述目标IP地址中包含交互智能平板从系统设备的IP地址,则将所述IP地址对应的从系统设备确定为目标从系统设备。
  7. 根据权利要求5所述的方法,其特征在于,所述通过第一网卡接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据,包括:
    通过第一有线网卡接收其他设备发送的有线待接收网络数据,并将所述有线待接收网络数据转换为第一待接收USB数据;和/或,
    通过无线网卡接收其他设备发送的无线待接收网络数据,并将所述无线待 接收网络数据转换为第一待接收USB数据。
  8. 根据权利要求5所述的方法,其特征在于,还包括:
    通过所述第二有线网卡获取从系统设备生成的第一待发送USB数据,并将所述第一待发送USB数据转换为第一待发送网络数据;
    通过所述交换机将所述第一待发送网络数据转发给所述主系统设备;
    通过所述主系统设备将所述第一待发送网络数据转换为第二待发送USB数据;
    通过所述第一网卡将所述第二待发送USB数据转换为第二待发送网络数据,并将所述第二待发送网络数据发送给其他设备。
  9. 一种数据的传输装置,其特征在于,包括:
    第一USB数据转换模块,配置于第一网卡内,用于接收其他设备发送的第一待接收网络数据并将所述第一待接收网络数据转换为第一待接收USB数据;
    第一网络数据转换模块,配置于主系统设备内,用于根据所述第一待接收USB数据中携带的目标IP地址确定所述第一待接收USB数据的目标从系统设备,并将所述第一待接收USB数据转换为第二待接收网络数据;
    第一网络数据转发模块,配置于交换机内,用于将所述第二待接收网络数据转发给所述目标从系统设备对应的目标第二有线网卡;
    第二USB数据转换模块,配置于第二有线网卡内,用于将所述第二待接收网络数据转换为第二待接收USB数据;
    第二USB数据获取模块,配置于从系统设备内,用于获取所述第二待接收USB数据。
  10. 一种计算机存储介质,其上存储有计算机程序,其特征在于,该程序被处理器执行时实现如权利要求5-8中任一所述的数据传输的方法。
PCT/CN2017/116763 2017-10-13 2017-12-17 交互智能平板、数据的传输方法、装置及存储介质 Ceased WO2019071809A1 (zh)

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