WO2019201138A1 - 数据传输方法、装置、存储介质及电子设备 - Google Patents
数据传输方法、装置、存储介质及电子设备 Download PDFInfo
- Publication number
- WO2019201138A1 WO2019201138A1 PCT/CN2019/082145 CN2019082145W WO2019201138A1 WO 2019201138 A1 WO2019201138 A1 WO 2019201138A1 CN 2019082145 W CN2019082145 W CN 2019082145W WO 2019201138 A1 WO2019201138 A1 WO 2019201138A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- terminal
- data transmission
- data
- wireless
- wireless data
- Prior art date
- Legal status (The legal status 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 status listed.)
- Ceased
Links
Images
Classifications
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/70—Services for machine-to-machine communication [M2M] or machine type communication [MTC]
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/80—Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W76/00—Connection management
- H04W76/10—Connection setup
- H04W76/14—Direct-mode setup
Definitions
- the present application belongs to the field of communications technologies, and in particular, to a data transmission method, apparatus, storage medium, and electronic device.
- the embodiment of the present application provides a data transmission method, device, storage medium, and electronic device, which can improve data transmission speed between terminals.
- An embodiment of the present application provides a data transmission method, including:
- the unit is a short-range wireless communication unit based on a high carrier frequency.
- An embodiment of the present application provides a data transmission apparatus, including:
- An acquiring module configured to acquire target data that needs to be transmitted when data of the first terminal needs to be transmitted to the second terminal;
- connection module configured to establish a wireless data transmission connection with the second terminal
- the wireless data transmission unit is a short-range wireless communication unit based on a high carrier frequency.
- the embodiment of the present application provides a storage medium on which a computer program is stored.
- the computer program is executed on a computer, the computer is caused to execute the flow in the data transmission method provided by the embodiment of the present application.
- the embodiment of the present application further provides an electronic device, including a memory, and a processor, by using a computer program stored in the memory, to execute the flow in the data transmission method provided by the embodiment of the present application.
- FIG. 1 is a schematic flowchart diagram of a data transmission method provided by an embodiment of the present application.
- FIG. 2 is another schematic flowchart of a data transmission method provided by an embodiment of the present application.
- FIG. 3 is a schematic diagram of a scenario of a data transmission method according to an embodiment of the present application.
- FIG. 6 is a schematic structural diagram of a data transmission apparatus according to an embodiment of the present application.
- FIG. 7 is another schematic structural diagram of a data transmission apparatus according to an embodiment of the present application.
- FIG. 8 is a schematic structural diagram of a mobile terminal according to an embodiment of the present application.
- FIG. 9 is another schematic structural diagram of a mobile terminal according to an embodiment of the present application.
- This embodiment provides a data transmission method, including:
- the unit is a short-range wireless communication unit based on a high carrier frequency.
- the establishing a wireless data transmission connection with the second terminal may include: establishing, by the wireless data transmission unit, that the data amount of the target data exceeds a preset threshold Connected to the wireless data transmission of the second terminal.
- the method before the establishing a wireless data transmission connection with the second terminal, the method further includes: acquiring a total storage capacity of the second terminal, and remaining storage capacity; and calculating the remaining storage capacity. The ratio of the total storage capacity.
- the establishing a wireless data transmission connection with the second terminal may include: establishing, by the wireless data transmission unit, wireless data transmission with the second terminal, if the ratio reaches a preset percentage value connection.
- the method may further include: in detecting that the first terminal is in a non-silent mode, in the process of transmitting the target data from the first terminal to the second terminal, And adjusting the first terminal to a silent mode; acquiring a reminding mode of the second terminal; and sending a control command to the second terminal if the reminding mode of the second terminal is a non-silent mode, the controlling The instruction is used to instruct the second terminal to adjust the reminder mode to the silent mode.
- the transmitting the target data from the first terminal to the second terminal may include: dividing the target data into data blocks, and using the data block by the The first terminal transmits to the second terminal.
- the method may further include: when detecting that the data transmission connection between the first terminal and the second terminal is interrupted, recording transmission information, where the transmission information includes the target data a data block in which transmission is not completed and/or a data block in the target data that has been transmitted; after the wireless communication with the second terminal is restored, the recorded transmission information is queried, and according to the transmission The information sends a data block of the uncompleted transmission to the second terminal.
- the method may further include: if it is detected that the data amount of the target data is less than the preset threshold, acquiring a difference between a data amount of the target data and the preset threshold; If the difference is less than the preset difference, the remaining power value is obtained; if the remaining power value is less than the preset power threshold, the wireless connection with the second terminal is established by the wireless data transmission unit. Data transmission connection, and transmitting the target data to the second terminal by the wireless data transmission unit.
- the method may further include: if it is detected that the data amount of the target data is less than the preset threshold, acquiring a difference between a data amount of the target data and the preset threshold; If the difference is less than the preset difference, the remaining running memory capacity is obtained; if the remaining running memory capacity is less than the preset capacity threshold, establishing wireless with the second terminal by using the wireless data transmission unit Data transmission connection, and transmitting the target data to the second terminal by the wireless data transmission unit.
- FIG. 1 is a schematic flowchart diagram of a data transmission method according to an embodiment of the present application.
- the executive body of the embodiment of the present application may be the first terminal, and the first terminal may be a device such as a smart phone or a tablet computer.
- the flow of the data transmission method provided in this embodiment may include:
- data moving can be realized through a Bluetooth connection or a connection establishing a personal hotspot.
- speed of data transmission is still low, for example, it takes about 10 to 20 minutes to migrate data of about 30G.
- the first terminal may first acquire target data that needs to be transmitted.
- the first terminal is an old terminal previously used by the user
- the second terminal is a new terminal purchased by the user.
- the user needs to transmit the data of the first terminal to the second terminal, and the first terminal may first acquire the target data that needs to be transmitted.
- a wireless data transmission connection with the second terminal is established.
- the target data is transmitted by the first terminal to the second terminal by using a wireless data transmission unit, and the first terminal and the second terminal each have the wireless data transmission unit, and the wireless data transmission unit is based on A short-range wireless communication unit with a high carrier frequency.
- 102 and 103 can include:
- the first terminal After the first terminal acquires the target data that needs to be transmitted to the second terminal, the first terminal may establish a wireless data transmission connection with the second terminal by using the wireless data transmission unit.
- the first terminal and the second terminal each have the above wireless data transmission unit.
- the wireless data transmission unit is a short-range wireless communication unit based on a high carrier frequency.
- the wireless data transmission unit may be an integrated circuit (IC) chip.
- An Extremely High Frequency (EHF) antenna is packaged in the integrated circuit chip, so that high-speed data wireless transmission can be realized between terminals mounted with the integrated circuit chip based on a high carrier frequency (for example, 60 GHz) (for example, , up to 6GB / s transmission speed).
- EHF Extremely High Frequency
- wireless transmission of data can be achieved by electromagnetic signals between terminals on which the integrated circuit chip is mounted.
- short-range wireless communication based on high carrier frequency has the advantages of low power consumption, small size, fast transmission rate, non-contact transmission, etc., and can also realize the function of the plug-and-play module, which can greatly improve the signal integrity.
- the high carrier frequency may be a carrier frequency capable of realizing high-speed data wireless transmission.
- the high carrier frequency may be an explicit carrier frequency, or may be a carrier frequency band, for example, 30 GHz to 300 GHz, which is not specifically limited in this embodiment of the present application.
- the high carrier frequency can be 60 GHz.
- the integrated circuit chip encapsulated with the very high frequency antenna may be an independent data transmission chip, or may be integrated with other chips in the terminal.
- the first terminal may transmit the target data to the second terminal through the wireless data transmission unit, thereby completing data transmission.
- the short-range wireless communication unit based on the high carrier frequency since the data transmission between the first terminal and the second terminal is performed by the short-range wireless communication unit based on the high carrier frequency, the short-range wireless communication unit based on the high carrier frequency The data transmission rate is high, so this embodiment can improve the data transmission speed between terminals.
- FIG. 2 is another schematic flowchart of a data transmission method according to an embodiment of the present disclosure, where the process may include:
- the first terminal when it is required to transmit data of the first terminal to the second terminal, the first terminal acquires target data that needs to be transmitted.
- the user purchases a new device, such as a second terminal, and the old device that the user previously used is, for example, the first terminal.
- the user now needs to transfer all data stored in the first terminal to the second terminal. That is, when it is required to transmit data of the first terminal to the second terminal, the first terminal may first acquire target data that needs to be transmitted.
- the first terminal acquires the total storage capacity of the second terminal and the remaining storage capacity.
- the first terminal calculates a ratio of the remaining storage capacity to the total storage capacity.
- 202 and 203 can include:
- the first terminal may acquire the total storage capacity of the second terminal and the remaining storage capacity.
- the total storage capacity may refer to a storage memory (ROM) capacity of the terminal, and the remaining storage capacity may refer to a storage memory (ROM) capacity of the terminal that is not currently occupied.
- ROM storage memory
- the first terminal may calculate a percentage of the remaining storage capacity of the second terminal as a percentage of the total storage capacity thereof.
- the first terminal may detect whether the percentage reaches a preset percentage value.
- the first terminal may perform other operations, such as transmitting the target data to the second terminal by way of a Bluetooth connection.
- the first terminal establishes a wireless data transmission connection with the second terminal by using a wireless data transmission unit, and the first terminal and the second terminal each have a wireless data transmission unit, where
- the wireless data transmission unit is a short-range wireless communication unit based on a high carrier frequency.
- the second terminal may be regarded as a new device, that is, the second terminal may be regarded as a new device with a short use time. .
- the user can be considered to be currently in the application scenario where the data is moved.
- the first terminal may establish a wireless data transmission connection with the second terminal through the wireless data transmission unit.
- the first terminal and the second terminal each have a wireless data transmission unit, and the wireless data transmission unit is a short-range wireless communication unit based on a high carrier frequency.
- the wireless data transmission unit may be an integrated circuit (IC) chip.
- An Extremely High Frequency (EHF) antenna is packaged in the integrated circuit chip, so that high-speed data wireless transmission can be realized between terminals mounted with the integrated circuit chip based on a high carrier frequency (for example, 60 GHz) (for example, , up to 6GB / s transmission speed).
- EHF Extremely High Frequency
- wireless transmission of data can be achieved by electromagnetic signals between terminals on which the integrated circuit chip is mounted.
- short-range wireless communication based on high carrier frequency has the advantages of low power consumption, small size, fast transmission rate, non-contact transmission, etc., and can also realize the function of the plug-and-play module, which can greatly improve the signal integrity.
- the high carrier frequency may be a carrier frequency capable of realizing high-speed data wireless transmission.
- the high carrier frequency may be an explicit carrier frequency, or may be a carrier frequency band, for example, 30 GHz to 300 GHz, which is not specifically limited in this embodiment of the present application.
- the high carrier frequency can be 60 GHz.
- the integrated circuit chip encapsulated with the very high frequency antenna may be an independent data transmission chip, or may be integrated with other chips in the terminal.
- the first terminal transmits the target data to the second terminal through the wireless data transmission unit.
- the first terminal may transmit the target data to the second terminal by using the wireless data transmission unit. That is, the first terminal transmits the target data to the wireless data transmission unit of the second terminal through its wireless data transmission unit, so that the second terminal receives the target data.
- the first terminal in the process of transmitting the target data from the first terminal to the second terminal, if it is detected that the first terminal is in the non-silent mode, the first terminal is adjusted to the silent mode.
- the first terminal acquires a reminder mode of the second terminal.
- the first terminal sends a control command to the second terminal, where the control command is used to instruct the second terminal to adjust the alert mode to the silent mode.
- 206, 207, and 208 can include:
- the first terminal may detect whether the reminder mode of the terminal is a silent mode.
- the first terminal may adjust the reminding mode of the terminal to the silent mode.
- the first terminal may also acquire a reminder mode of the second terminal. If it is detected that the reminder mode of the second terminal is the non-silent mode, the first terminal may send a control command to the second terminal. The control command is used to instruct the second terminal to adjust the reminder mode to the silent mode.
- the wireless data transmission unit between the transmitting device and the receiving device (such as an integrated circuit chip packaged with a very high frequency antenna) has high alignment requirements. Therefore, in the embodiment, in the process of transmitting the target data from the first terminal to the second terminal, the reminding modes of the first terminal and the second terminal may be adjusted to the silent mode, thereby avoiding the data transmission process.
- the vibration of a terminal and/or the second terminal upon receiving the message causes the wireless data transmission unit between the first terminal and the second terminal to be out of alignment, and the resulting data transmission is interrupted.
- the embodiment can also be applied to a transmission scenario with a large amount of data. For example, after acquiring the target data that needs to be transmitted, the first terminal may detect whether the data amount of the target data exceeds a preset threshold. If the amount of data of the target data is detected to exceed a preset threshold, the first terminal may establish a wireless data transmission connection with the second terminal through the wireless data transmission unit, and use the wireless data transmission unit to set the target data by the first The terminal transmits to the second terminal.
- the process of transmitting the target data to the second terminal by the first terminal in 205 may include the following processes:
- the first terminal divides the target data into data blocks and transmits the data block to the second terminal.
- the first terminal may divide the target data into a plurality of data blocks such that the transmission time of each data block is less than or equal to a preset time.
- the preset time can be 1 second or 2 seconds, and so on.
- dividing the target data into data blocks for transmission can improve the flexibility and transmission efficiency of data transmission, and facilitate data retransmission after transmission interruption.
- the embodiment may further include the following processes:
- the transmission information is recorded, and the transmission information includes a data block in the target data that has not been transmitted and/or a data block in which the transmission has been completed in the target data.
- the first terminal may query the recorded transmission information, and send the target data to the second terminal according to the recorded transmission information.
- the embodiment may further include the following processes:
- the first terminal When detecting that the data transmission connection between the first terminal and the second terminal is interrupted, the first terminal records transmission information, where the transmission information includes a data block in the target data that is not completed and/or the transmission has been completed in the target data.
- Data block Data block
- the first terminal queries the recorded transmission information, and sends an uncompleted data block to the second terminal according to the transmission information.
- the first terminal divides the target data into 10 data blocks, and the 10 data blocks are sequentially numbered 1 to 10.
- the short-range wireless communication between the first terminal and the second terminal is abruptly interrupted.
- the first terminal may record the transmission information, for example, the transmission information is that the terminal has completed the transmission of the data block numbered 1-5, and the data block numbered 6-10 has not been transmitted.
- the first terminal may query the recorded transmission information, and send the target data to the second terminal according to the recorded transmission information.
- the target data may be considered. Still bigger.
- the preset threshold is 10 GB
- the target data is 9.5 GB.
- the difference between the two is 0.5 GB
- the preset difference is 1 GB. At this time, the data amount of the target data can still be considered large.
- the first terminal may obtain the remaining power value of the terminal, and if it is detected that the remaining power value of the terminal is less than the preset power threshold, the first terminal may also establish the second terminal by using the wireless data transmission unit.
- the wireless data transmission connection between the two ends, and the target data is transmitted to the second terminal at a high speed through the wireless data transmission unit, thereby avoiding the first terminal power consumption being too fast due to the excessive time of transmitting the target data.
- the embodiment may further include the following processes:
- the first terminal acquires a difference between the data amount of the target data and the preset threshold
- the first terminal acquires the remaining power value
- the first terminal If it is detected that the remaining power value is less than the preset power threshold, the first terminal establishes a wireless data transmission connection with the second terminal by using the wireless data transmission unit, and transmits the target data to the second terminal by using the wireless data transmission unit. .
- the first terminal may acquire the remaining of the terminal. Run memory capacity. If the remaining operating memory capacity of the first terminal is less than the preset capacity threshold, the first terminal may also establish a wireless data transmission connection with the second terminal through the wireless data transmission unit, and transmit the target data at a high speed through the wireless data transmission unit. Go to the second terminal, so as to avoid the first terminal running jam caused by the long time of transmitting the target data.
- the embodiment may further include the following processes:
- the first terminal acquires a difference between the data amount of the target data and a preset threshold
- the first terminal acquires the remaining running memory capacity
- the first terminal establishes a wireless data transmission connection with the second terminal by using the wireless data transmission unit, and transmits the target data to the second terminal by using the wireless data transmission unit.
- FIG. 3 to FIG. 5 are schematic diagrams of scenarios of a data transmission method according to an embodiment of the present disclosure.
- the user purchases a new terminal, such as a second terminal, and the old terminal previously used is, for example, the first terminal.
- the first terminal and the second terminal both comprise an integrated circuit chip encapsulating a very high frequency antenna.
- High-speed data wireless transmission (for example, a transmission speed of up to 6 GB/s) can be achieved between terminals equipped with the integrated circuit chip based on a high carrier frequency (for example, 60 GHz).
- the above integrated circuit chip is mounted at an intermediate portion of the rear case of the first terminal and the second terminal.
- the user can stick the first terminal and the second terminal back shell to each other so that the integrated circuit chips of the two can be aligned. After the first terminal and the second terminal are successfully matched, high-speed data transmission can be performed.
- the above integrated circuit chip can also be installed at other positions of the terminal except the rear case, which is not specifically limited in this embodiment.
- the user needs to transmit data in the first terminal to the second terminal. That is, the application scenario currently in which the terminal data is moved.
- the user needs to move the data of the short message, contact, music, photo album, application software, and e-book in the first terminal to the second terminal.
- the first terminal may first acquire the data of the short message, the contact, the music, the photo album, the application software, and the e-book that need to be transmitted in the terminal, and determine the data as the target data.
- the first terminal can detect whether the data amount of the target data exceeds a preset threshold.
- the preset threshold is 10GB.
- the terminal detects that the data amount of the target data is 30 GB, that is, exceeds a preset threshold.
- the first terminal can query the user that the amount of data that needs to be transmitted currently is large, and whether high-speed data transmission is enabled. For example, in this embodiment, the user selects to enable high speed data transmission, as shown in FIG.
- the first terminal may prompt the user to stick the rear case of the first terminal and the rear case of the second terminal to each other, and the integrated circuit chip of the first terminal and the second terminal are packaged
- the integrated circuit chips of the very high frequency antenna are aligned with each other.
- an integrated circuit chip packaged with a very high frequency antenna mounted on the first terminal is a first chip
- an integrated circuit chip packaged with a very high frequency antenna mounted on the second terminal is a second chip. That is, through the first chip and the second chip, the first terminal can establish a wireless data transmission connection with the second terminal.
- the first terminal can transmit the target data to the second chip of the second terminal through the first chip installed, thereby transmitting the target data to the first Two terminals.
- FIG. 5 a schematic diagram of wireless data transmission between the first terminal and the second terminal is shown in FIG. 5.
- FIG. 6 is a schematic structural diagram of a data transmission apparatus according to an embodiment of the present application.
- the data transmission device 300 may include an acquisition module 301, a connection module 302, and a transmission module 303.
- the obtaining module 301 is configured to acquire target data that needs to be transmitted when data of the first terminal needs to be transmitted to the second terminal.
- the connection module 302 is configured to establish a wireless data transmission connection with the second terminal.
- a transmission module 303 configured to transmit, by using a wireless data transmission unit, the target data by the first terminal to the second terminal, where the first terminal and the second terminal each have the wireless data transmission unit
- the wireless data transmission unit is a short-range wireless communication unit based on a high carrier frequency.
- connection module 302 can be used to:
- the transmission module 303 can be used to:
- the target data is segmented into data blocks, and the data blocks are transmitted by the first terminal to the second terminal.
- the transmission module 303 can also be used to:
- the transmission information when detecting that the data transmission connection between the first terminal and the second terminal is interrupted, the transmission information including a data block of the target data that is not completed and/or the target data The data block that has been transferred in ;
- the recorded transmission information is queried, and the uncompleted transmitted data block is sent to the second terminal according to the transmission information.
- connection module 302 can also be used to:
- the remaining power value is less than the preset power threshold, establishing a wireless data transmission connection with the second terminal by using the wireless data transmission unit, and transmitting the target data to the wireless data transmission unit by using the wireless data transmission unit The second terminal.
- connection module 302 can also be used to:
- FIG. 7 is another schematic structural diagram of a data transmission apparatus according to an embodiment of the present application.
- the data transmission device 300 may further include: a calculation module 304, and a setting module 305.
- the calculating module 304 is configured to acquire a total storage capacity of the second terminal, and a remaining storage capacity, and calculate a ratio of the remaining storage capacity to the total storage capacity.
- connection module 302 can be configured to: if the ratio reaches a preset percentage value, establish a wireless data transmission connection with the second terminal by using the wireless data transmission unit.
- a setting module 305 configured to adjust the first terminal in the process of transmitting the target data from the first terminal to the second terminal, if detecting that the first terminal is in a non-silent mode a silent mode; acquiring a reminder mode of the second terminal; if the alert mode of the second terminal is a non-silent mode, sending a control command to the second terminal, where the control command is used to indicate the second The terminal adjusts the reminder mode to the silent mode.
- the embodiment of the present application provides a computer readable storage medium having stored thereon a computer program, and when the computer program is executed on a computer, causes the computer to perform the steps in the data transmission method provided by the embodiment.
- the embodiment of the present application further provides an electronic device, including a memory, and a processor, by using a computer program stored in the memory, to perform the steps in the data transmission method provided in this embodiment.
- the above electronic device may be a mobile terminal such as a tablet or a smart phone.
- FIG. 8 is a schematic structural diagram of a mobile terminal according to an embodiment of the present disclosure.
- the mobile terminal can be the first terminal in this embodiment.
- the mobile terminal 400 can include components such as a wireless data transmission unit 401, a memory 402, a processor 403, and the like. It will be understood by those skilled in the art that the mobile terminal structure shown in FIG. 8 does not constitute a limitation of the mobile terminal, and may include more or less components than those illustrated, or some components may be combined, or different component arrangements.
- the wireless data transmission unit 401 can be an integrated circuit (IC) chip.
- An Extremely High Frequency (EHF) antenna is packaged in the integrated circuit chip, so that high-speed data wireless transmission can be realized between terminals mounted with the integrated circuit chip based on a high carrier frequency (for example, 60 GHz) (for example, , up to 6GB / s transmission speed).
- EHF Extremely High Frequency
- wireless transmission of data can be achieved by electromagnetic signals between terminals on which the integrated circuit chip is mounted.
- Memory 402 can be used to store applications and data.
- the application stored in the memory 402 contains executable code.
- Applications can form various functional modules.
- the processor 403 executes various functional applications and data processing by running an application stored in the memory 402.
- the processor 403 is a control center of the mobile terminal, connects various parts of the entire mobile terminal using various interfaces and lines, executes the mobile terminal by running or executing an application stored in the memory 402, and calling data stored in the memory 402. The various functions and processing data to monitor the mobile terminal as a whole.
- the processor 403 in the mobile terminal loads the executable code corresponding to the process of one or more applications into the memory 402 according to the following instructions, and is stored in the memory by the processor 403.
- the application in 402 thus achieving:
- the unit is a short-range wireless communication unit based on a high carrier frequency.
- the mobile terminal 500 may include components such as a wireless data transmission unit 501, a memory 502, a processor 503, an input unit 504, an output unit 505, and the like.
- the wireless data transmission unit 501 can be an integrated circuit (IC) chip.
- An Extremely High Frequency (EHF) antenna is packaged in the integrated circuit chip, so that high-speed data wireless transmission can be realized between terminals mounted with the integrated circuit chip based on a high carrier frequency (for example, 60 GHz) (for example, , up to 6GB / s transmission speed).
- EHF Extremely High Frequency
- wireless transmission of data can be achieved by electromagnetic signals between terminals on which the integrated circuit chip is mounted.
- Memory 502 can be used to store applications and data.
- the application stored in the memory 502 contains executable code.
- Applications can form various functional modules.
- the processor 503 executes various functional applications and data processing by running an application stored in the memory 502.
- the processor 503 is a control center of the mobile terminal, and connects various parts of the entire mobile terminal using various interfaces and lines, executes the mobile terminal by running or executing an application stored in the memory 502, and calling data stored in the memory 502. The various functions and processing data to monitor the mobile terminal as a whole.
- the input unit 504 can be configured to receive input digits, character information or user characteristic information (such as fingerprints), and to generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function controls.
- the output unit 505 can be used to display information input by the user or information provided to the user and various graphical user interfaces of the mobile terminal, which can be composed of graphics, text, icons, video, and any combination thereof.
- the output unit may include a display panel.
- the processor 503 in the mobile terminal loads the executable code corresponding to the process of one or more applications into the memory 502 according to the following instructions, and is stored in the memory by the processor 503.
- the application in 502 which implements:
- the unit is a short-range wireless communication unit based on a high carrier frequency.
- the processor 503 when the processor 503 performs the process of establishing a wireless data transmission connection with the second terminal, the processor 503 may perform: if it is detected that the data volume of the target data exceeds a preset threshold, The wireless data transmission unit establishes a wireless data transmission connection with the second terminal.
- the processor 503 may further: obtain a total storage capacity of the second terminal, and a remaining storage capacity; The remaining storage capacity accounts for a ratio of the total storage capacity.
- the method may be performed: if the ratio reaches a preset percentage value, establishing, by the wireless data transmission unit, A wireless data transmission connection of the second terminal.
- the processor 503 may further be configured to: when detecting the target data from the first terminal to the second terminal, if detecting that the first terminal is in a non-silent mode, And adjusting the first terminal to a silent mode; acquiring a reminding mode of the second terminal; and sending a control command to the second terminal if the reminding mode of the second terminal is a non-silent mode, the controlling The instruction is used to instruct the second terminal to adjust the reminder mode to the silent mode.
- the processor 503 when the processor 503 performs the process of transmitting the target data from the first terminal to the second terminal, performing: dividing the target data into data blocks, and The data block is transmitted by the first terminal to the second terminal.
- the processor 503 may further execute: when detecting that the data transmission connection between the first terminal and the second terminal is interrupted, recording transmission information, where the transmission information includes the target data a data block in which transmission is not completed and/or a data block in the target data that has been transmitted; after the wireless communication with the second terminal is restored, the recorded transmission information is queried, and according to the transmission The information sends a data block of the uncompleted transmission to the second terminal.
- the processor 503 is further configured to: if the amount of data of the target data is detected to be less than the preset threshold, acquire a difference between a data amount of the target data and the preset threshold; If the difference is less than the preset difference, the remaining power value is obtained; if the remaining power value is less than the preset power threshold, the wireless connection with the second terminal is established by the wireless data transmission unit. Data transmission connection, and transmitting the target data to the second terminal by the wireless data transmission unit.
- the processor 503 is further configured to: if the amount of data of the target data is detected to be less than the preset threshold, acquire a difference between a data amount of the target data and the preset threshold; If the difference is less than the preset difference, the remaining running memory capacity is obtained; if the remaining running memory capacity is less than the preset capacity threshold, establishing wireless with the second terminal by using the wireless data transmission unit Data transmission connection, and transmitting the target data to the second terminal by the wireless data transmission unit.
- the data transmission apparatus provided by the embodiment of the present application is the same as the data transmission method in the foregoing embodiment, and any method provided in the embodiment of the data transmission method may be run on the data transmission apparatus, and the specific For details of the implementation process, refer to the embodiment of the data transmission method, and details are not described herein again.
- the computer program can be stored in a computer readable storage medium, such as in a memory, and executed by at least one processor, and can include a flow of an embodiment of the data transfer method as it is being executed.
- the storage medium may be a magnetic disk, an optical disk, a read only memory (ROM), a random access memory (RAM), or the like.
- each functional module may be integrated into one processing chip, or each module may exist physically separately, or two or more modules may be integrated into one module.
- the above integrated modules can be implemented in the form of hardware or in the form of software functional modules.
- the integrated module if implemented in the form of a software functional module and sold or used as a standalone product, may also be stored in a computer readable storage medium, such as a read only memory, a magnetic disk or an optical disk, etc. .
Landscapes
- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Signal Processing (AREA)
- Mobile Radio Communication Systems (AREA)
- Telephone Function (AREA)
Abstract
一种数据传输方法该方法包括:当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据(101);建立与第二终端的无线数据传输连接(102);通过无线数据传输单元,将该目标数据由第一终端传输至第二终端,第一终端和第二终端均具有该无线数据传输单元,该无线数据传输单元为基于高载波频率的近距离无线通信单元(103)。
Description
本申请要求于2018年04月18日提交中国专利局、申请号为201810350125.5、申请名称为“数据传输方法、装置、存储介质及电子设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本申请属于通信技术领域,尤其涉及一种数据传输方法、装置、存储介质及电子设备。
随着技术的不断发展,终端设备的更新换代越来越快,用户经常会淘汰旧终端,而使用新终端。当用户更换新终端时,往往需要把旧终端上的数据迁移到新终端上,即终端之间需要进行数据传输。
发明内容
本申请实施例提供一种数据传输方法、装置、存储介质及电子设备,可以提高终端之间的数据传输速度。
本申请实施例提供一种数据传输方法,包括:
当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据;
建立与所述第二终端的无线数据传输连接;
通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
本申请实施例提供一种数据传输装置,包括:
获取模块,用于当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据;
连接模块,用于建立与所述第二终端的无线数据传输连接;
传输模块,用于通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
本申请实施例提供一种存储介质,其上存储有计算机程序,当所述计算机程序在计算机上执行时,使得所述计算机执行本申请实施例提供的数据传输方法中的流程。
本申请实施例还提供一种电子设备,包括存储器,处理器,所述处理器通过调用所述存储器中存储的计算机程序,用于执行本申请实施例提供的数据传输方法中的流程。
下面结合附图,通过对本申请的具体实施方式详细描述,将使本申请的技术方案及其有益效果显而易见。
图1是本申请实施例提供的数据传输方法的流程示意图。
图2是本申请实施例提供的数据传输方法的另一流程示意图。
图3至图5是本申请实施例提供的数据传输方法的场景示意图。
图6是本申请实施例提供的数据传输装置的结构示意图。
图7是本申请实施例提供的数据传输装置的另一结构示意图。
图8是本申请实施例提供的移动终端的结构示意图。
图9是本申请实施例提供的移动终端的另一结构示意图。
请参照图示,其中相同的组件符号代表相同的组件,本申请的原理是以实施在一适当的运算环境中来举例说明。以下的说明是基于所例示的本申请具体实施例,其不应被视为限制本申请未在此详述的其它具体实施例。
本实施例提供一种数据传输方法,包括:
当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据;
建立与所述第二终端的无线数据传输连接;
通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
在一种实施方式中,所述建立与所述第二终端的无线数据传输连接,可以包括:若检测到所述目标数据的数据量超过预设阈值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
在一种实施方式中,在所述建立与所述第二终端的无线数据传输连接之前,还可以包括:获取所述第二终端的存储总容量,以及剩余存储容量;计算所述剩余存储容量占所述存储总容量的比例。
那么,所述建立与所述第二终端的无线数据传输连接,可以包括:若所述比例达到预设百分比值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
在一种实施方式中,所述方法还可以包括:在将所述目标数据由所述第一终端传输至所述第二终端的过程中,若检测到所述第一终端处于非静音模式,则将所述第一终端调整为静音模式;获取所述第二终端的提醒模式;若所述第二终端的提醒模式为非静音模式,则发送控制指令至所述第二终端,所述控制指令用于指示所述第二终端将提醒模式调整为静音模式。
在一种实施方式中,所述将所述目标数据由所述第一终端传输至所述第二终端,可以包括:将所述目标数据分割成数据块,并将所述数据块由所述第一终端传输至所述第二终端。
在一种实施方式中,所述方法还可以包括:当检测到所述第一终端与所述第二终端之间的数据传输连接中断时,记录传输信息,所述传输信息包括所述目标数据中未完成传输的数据块和/或所述目标数据中已经完成传输的数据块;在与所述第二终端的无线通信重新恢复后,查询记录到的所述传输信息,并根据所述传输信息向所述第二终端发送未完成传输的数据块。
在一种实施方式中,所述方法还可以包括:若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;若检测到所述差值小于预设差值,则获取剩余电量值;若检测到所述剩余电量值小于预设电量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
在一种实施方式中,所述方法还可以包括:若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;若检测到所述差值小于预设差值,则获取剩余运行内存容量;若所述剩余运行内存容量小于预设容量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
请参阅图1,图1是本申请实施例提供的数据传输方法的流程示意图。可以理解的是,本申请实施例的执行主体可以是第一终端,而该第一终端可以是诸如智能手机或平板电脑等的设备。本实施例提供的数据传输方法的流程可以包括:
在101中,当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据。
随着技术的不断更新换代,用户经常会淘汰旧终端,而使用新终端。当用户更换新终端时,往往需要把旧终端上的数据迁移到新终端上,即终端之间需要进行数据传输。这种数据传输通常称之为数据搬家。相关技术中,可以通过蓝牙连接或建立个人热点的连接来实现数据搬家。然而,相关技术中,数据传输的速度仍然较低,比如对30G左右的数据进行迁移大概需要10到20分钟。
在本申请实施例的101中,比如,当需要将第一终端的数据传输到第二终端时,第一终端可以先获取需要传输的目标数据。
例如,第一终端为用户之前使用的旧终端,第二终端为用户购买的新终端。用户需要将第一终端的数据传输到第二终端,此时第一终端可以先获取需要传输的目标数据。
在102中,建立与该第二终端的无线数据传输连接。
在103中,通过无线数据传输单元,将该目标数据由该第一终端传输至该第二终端,该第一终端和该第二终端均具有该无线数据传输单元,该无线数据传输单元为基于高载波频率的近距离无线通信单元。
比如,102和103可以包括:
在第一终端获取到需要传输到第二终端的目标数据后,第一终端可以通过无线数据传输单元,建立与第二终端的无线数据传输连接。
在本实施例中,第一终端和第二终端均具有上述无线数据传输单元。其中,该无线数据传输单元为基于高载波频率的近距离无线通信单元。
在一种实施方式中,上述无线数据传输单元可以为集成电路(Integrated Circuit,IC)芯片。在该集成电路芯片内封装有极高频(Extremely high frequency,EHF)天线,从而使安装有该集成电路芯片的终端之间可以基于高载波频率(例如,60GHz)实现高速的数据无线传输(例如,最高可达6GB/s的传输速度)。在一种实施方式中,安装有该集成电路芯片的终端之间可以通过电磁信号实现数据的无线传输。
可以理解的是,基于高载波频率的近距离无线通信具有低功耗、体积小、传输速率快、非接触传输等优点,还可以实现即插即用模块的功能,可以大幅提高的信号完整性,支持更灵活的系统实现,降低待机功耗,增加带宽幅度与数据传输的安全性,兼容对高速视频信号的支持等特点。
需要说明的是,高载波频率可以是能够实现高速的数据无线传输的载波频率。高载波频率可以是某个明确的载波频率,也可以是一个载波频段,例如30GHz-300GHz,本申请实施例对此不做具体限定。在一种实施方式中,该高载波频率可以为60GHz。
在一种实施方式中,上述封装有极高频天线的集成电路芯片可以是独立的数据传输芯片,也可以是与终端中的其他芯片集成在一起。
在第一终端与第二终端之间建立起无线数据传输连接后,第一终端可以通过无线数据传输单元,将目标数据传输至第二终端,从而完成数据传输。
可以理解的是,本实施例中,由于第一终端与第二终端之间的数据传输是通过基于高载波频率的近距离无线通信单元来完成的,而基于高载波频率的近距离无线通信单元其数据传输速率高,因此本实施例可以提高终端之间的数据传输速度。
请参阅图2,图2为本申请实施例提供的数据传输方法的另一流程示意图,流程可以包括:
在201中,当需要将第一终端的数据传输到第二终端时,第一终端获取需要传输的目标数据。
比如,用户购买了一款新设备,例如为第二终端,而用户之前使用的旧设备例如为第一终端。用户现在需要将第一终端中存储的所有数据传输到第二终端。即,当需要将第一终端的数据传输到第二终端时,第一终端可以先获取需要传输的目标数据。
在202中,第一终端获取第二终端的存储总容量以及剩余存储容量。
在203中,第一终端计算该剩余存储容量占该存储总容量的比例。
比如,202和203可以包括:
在获取到目标数据后,第一终端可以获取第二终端的存储总容量以及剩余存储容量。
需要说明的是,在一种实施方式中,上述存储总容量可以是指终端的存储内存(ROM)的容量,而剩余存储容量可以是指终端当前未被占用的存储内存(ROM)的容量。
在获取到第二终端的存储总容量和剩余存储容量后,第一终端可以计算该第二终端的剩余存储容量占其存储总容量的百分比。
在得到第二终端的剩余存储容量占其存储总容量的百分比后,第一终端可以检测该百分比是否达到预设百分比值。
若检测到该百分比未达到预设百分比值,那么第一终端可以执行其它操作,例如通过蓝牙连接的方式将目标数据传输到第二终端。
若检测到该百分比达到预设百分比值,那么进入204中。
在204中,若该比例达到预设百分比值,则第一终端通过无线数据传输单元建立与第二终端的无线数据传输连接,该第一终端和该第二终端均具有无线数据传输单元,该无线数据传输单元为基于高载波频率的近距离无线通信单元。
比如,一般而言,新设备中除了系统数据外,没有其他用户数据。因此新设备中剩余的存储容量占其存储总容量的百分比较大。因此,当检测到第二终端的剩余存储容量占其存储总容量的百分比达到预设百分比值时,可以认为第二终端为一台新的设备,即可以认为第二终端为使用时间短的新设备。在这种情况下,可以认为用户当前处于数据搬家的应用场景中。
此时,第一终端可以通过无线数据传输单元,建立与第二终端的无线数据传输连接。其中,在本实施例中,该第一终端和该第二终端均具有无线数据传输单元,该无线数据传输单元为基于高载波频率的近距离无线通信单元。
在本实施例中,上述无线数据传输单元可以为集成电路(Integrated Circuit,IC)芯片。在该集成电路芯片内封装有极高频(Extremely high frequency,EHF)天线,从而使安装有该集成电路芯片的终端之间可以基于高载波频率(例如,60GHz)实现高速的数据无线传输(例如,最高可达6GB/s的传输速度)。在一种实施方式中,安装有该集成电路芯片的终端之间可以通过电磁信号实现数据的无线传输。
可以理解的是,基于高载波频率的近距离无线通信具有低功耗、体积小、传输速率快、非接触传输等优点,还可以实现即插即用模块的功能,可以大幅提高的信号完整性,支持更灵活的系统实现,降低待机功耗,增加带宽幅度与数据传输的安全性,兼容对高速视频信号的支持等特点。
需要说明的是,高载波频率可以是能够实现高速的数据无线传输的载波频率。高载波频率可以是某个明确的载波频率,也可以是一个载波频段,例如30GHz-300GHz,本申请实施例对此不做具体限定。在一种实施方式中,该高载波频率可以为60GHz。
在一种实施方式中,上述封装有极高频天线的集成电路芯片可以是独立的数据传输芯片,也可以是与终端中的其他芯片集成在一起。
在205中,通过无线数据传输单元,第一终端将该目标数据传输至第二终端。
比如,在通过无线数据传输单元,第一终端建立起与第二终端之间的无线数据传输连接后,第一终端可以通过该无线数据传输单元,将目标数据传输至第二终端。即,第一终端通过其无线数据传输单元,将目标数据发送到第二终端的无线数据传输单元,从而使第二终端接收到该目标数据。
在206中,在将该目标数据由第一终端传输至第二终端的过程中,若检测到该第一终 端处于非静音模式,则第一终端调整为静音模式。
在207中,第一终端获取第二终端的提醒模式。
在208中,若第二终端的提醒模式为非静音模式,则第一终端发送控制指令至该第二终端,该控制指令用于指示该第二终端将提醒模式调整为静音模式。
比如,206、207和208可以包括:
在将目标数据由本终端传输至第二终端的过程中,第一终端可以检测本终端的提醒模式是否为静音模式。
若检测到本终端处于非静音模式,例如本终端当前处于声音提醒模式或者振动提醒模式,那么第一终端可以将本终端的提醒模式调整为静音模式。
并且,第一终端还可以获取第二终端的提醒模式。如果检测到第二终端的提醒模式为非静音模式,那么第一终端可以发送控制指令至该第二终端。该控制指令用于指示该第二终端将提醒模式调整为静音模式。
需要说明的是,在一种实施方式中,基于高载波频率的近距离无线通信,在发送端设备(如第一终端)向接收端设备(如第二终端)发送待传输数据的过程中,由于对发送端设备和接收端设备之间的无线数据传输单元(如封装有极高频天线的集成电路芯片)对准要求高。因此,本实施例中,在将目标数据由第一终端传输至第二终端的过程中,可以将第一终端和第二终端的提醒模式均调整为静音模式,从而避免数据传输过程中因第一终端和/或第二终端在接收到消息时发生振动而导致第一终端和第二终端之间的无线数据传输单元无法对准,以及由此产生的数据传输中断。
在一种实施方式中,本实施例还可以应用于数据量较大的传输场景。比如,第一终端在获取到需要传输的目标数据后,可以检测该目标数据的数据量是否超过预设阈值。若检测到该目标数据的数据量超过预设阈值,那么第一终端可以通过无线数据传输单元,建立与第二终端间的无线数据传输连接,并使用无线数据传输单元,将目标数据由第一终端传输至第二终端。
在一种实施方式中,205中第一终端将目标数据传输至第二终端的流程,可以包括如下流程:
第一终端将目标数据分割成数据块,并将该数据块传输至第二终端。
比如,第一终端可以将目标数据分割成多个数据块,使得每个数据块的传输时间小于或等于预设时间。例如,预设时间可以为1秒钟或2秒钟,等等。
可以理解的是,将目标数据分割成数据块进行传输,可以提高数据传输的灵活性和传输效率,方便传输中断后的数据重传。
在一种实施方式中,本实施例还可以包括如下流程:
当检测到第一终端与第二终端之间的数据传输连接中断时,记录传输信息,该传输信息包括目标数据中未完成传输的数据块和/或目标数据中已经完成传输的数据块。
那么,在第一终端与第二终端之间被中断的近距离无线通信重新恢复之后,第一终端可以查询记录到的传输信息,并根据该记录到的传输信息向第二终端发送目标数据中未完成传输的数据块。
即,本实施例还可以包括如下流程:
当检测到第一终端与第二终端之间的数据传输连接中断时,该第一终端记录传输信息,该传输信息包括目标数据中未完成传输的数据块和/或该目标数据中已经完成传输的数据块;
在与第二终端的无线通信重新恢复后,该第一终端查询记录到的传输信息,并根据该传输信息向该第二终端发送未完成传输的数据块。
比如,第一终端将目标数据分割成10个数据块,这10个数据块依次编号为1—10。 在将这10个数据块传输到第二终端的过程中,第一终端与第二终端之间的近距离无线通信突然中断。此时,第一终端可以记录传输信息,例如该传输信息为终端已完成编号为1—5的数据块的传输,而编号为6—10的数据块尚未进行传输。
当检测到第一终端与第二终端之间被中断的近距离无线通信重新恢复之后,第一终端可以查询记录到的传输信息,并根据该记录到的传输信息向第二终端发送目标数据中未完成传输的数据块。例如,第一终端继续将编号为6—10的数据块通过无线数据传输单元发送到第二终端。
由此,实现第一终端与第二终端之间的断点续传。
在一种实施方式中,若第一终端检测到需要传输的目标数据的数据量小于预设阈值,但目标数据的数据量与预设阈值的差值小于预设差值,那么可以认为目标数据仍然较大。比如,预设阈值为10GB,而目标数据为9.5GB,二者之间的差值为0.5GB,而预设差值为1GB,此时仍然可以认为目标数据的数据量较大。
在这种情况下,第一终端可以获取本终端的剩余电量值,若检测到本终端的剩余电量值小于预设电量阈值,那么第一终端也可以通过无线数据传输单元建立与第二终端之间的无线数据传输连接,并通过无线数据传输单元将目标数据高速传输到第二终端,从而避免因传输目标数据的时间过长导致的第一终端电量消耗过快。
即,在第一终端获取到需要传输的目标数据后,本实施例还可以包括如下流程:
若检测到目标数据的数据量小于预设阈值,则第一终端获取该目标数据的数据量与该预设阈值的差值;
若检测到该差值小于预设差值,则第一终端获取剩余电量值;
若检测到该剩余电量值小于预设电量阈值,则第一终端通过无线数据传输单元建立与第二终端的无线数据传输连接,并通过该无线数据传输单元将该目标数据传输至该第二终端。
或者,若第一终端检测到需要传输的目标数据的数据量小于预设阈值,但目标数据的数据量与预设阈值的差值小于预设差值,那么第一终端可以获取本终端的剩余运行内存容量。若第一终端的剩余运行内存容量小于预设容量阈值,那么第一终端也可以通过无线数据传输单元建立与第二终端之间的无线数据传输连接,并通过无线数据传输单元将目标数据高速传输到第二终端,从而避免因传输目标数据的时间过长导致的第一终端运行卡顿。
即,在第一终端获取到需要传输的目标数据后,本实施例还可以包括如下流程:
若检测到目标数据的数据量小于预设阈值,则第一终端获取该目标数据的数据量与预设阈值的差值;
若检测到该差值小于预设差值,则第一终端获取剩余运行内存容量;
若该剩余运行内存容量小于预设容量阈值,则第一终端通过无线数据传输单元建立与第二终端的无线数据传输连接,并通过该无线数据传输单元将该目标数据传输至该第二终端。
请参阅图3至图5,图3至图5为本申请实施例提供的数据传输方法的场景示意图。
比如,用户购买了一台新的终端,例如为第二终端,而之前使用的旧终端例如为第一终端。其中,该第一终端和该第二终端中均包含封装有极高频天线的集成电路芯片。安装有该集成电路芯片的终端之间可以基于高载波频率(例如,60GHz)实现高速的数据无线传输(例如,最高可达6GB/s的传输速度)。
例如,本实施例中上述集成电路芯片安装在第一终端和第二终端的后壳的中间部位。当第一终端和第二终端之间需要通过上述集成电路芯片进行数据传输时,用户可以将第一终端和第二终端后壳彼此贴在一起,以使二者的集成电路芯片可以对准。在第一终端和第二终端匹配成功后即可进行高速数据传输。当然,在其它实施方式中,上述集成电路芯片 也可以安装在除后壳外的终端的其它位置,本实施例不对此做具体限定。
为了方便使用,用户需要将第一终端中的数据传输到第二终端。即,当前处于终端数据搬家的应用场景。
例如,如图3所示,用户需要将第一终端中的短信、联系人、音乐、相册、应用软件、电子书这些数据搬家到第二终端。
此时,第一终端可以先获取本终端中需要传输的短信、联系人、音乐、相册、应用软件、电子书这些数据,并将这些数据确定为目标数据。
然后,第一终端可以检测目标数据的数据量是否超过预设阈值。例如,预设阈值为10GB。例如,本实施例中,终端检测到目标数据的数据量为30GB,即超过了预设阈值。在这种情况下,第一终端可以询问用户当前需要传输的数据量较大,是否开启高速数据传输。例如,本实施例中,用户选择了开启高速数据传输,如图4所示。
之后,第一终端可以提示用户将第一终端的后壳与第二终端的后壳彼此贴在一起,并使第一终端的封装有极高频天线的集成电路芯片与第二终端的封装有极高频天线的集成电路芯片互相对准。例如,第一终端上安装的封装有极高频天线的集成电路芯片为第一芯片,第二终端上安装的封装有极高频天线的集成电路芯片为第二芯片。即,通过第一芯片和第二芯片,第一终端可以和第二终端建立起无线数据传输连接。
在第一终端和第二终端之间成功建立起无线数据传输连接后,第一终端可以通过其安装的第一芯片将目标数据传输给第二终端的第二芯片,从而将目标数据传输至第二终端。例如,第一终端与第二终端的无线数据传输示意图如图5所示。
请参阅图6,图6为本申请实施例提供的数据传输装置的结构示意图。数据传输装置300可以包括:获取模块301,连接模块302,传输模块303。
获取模块301,用于当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据。
连接模块302,用于建立与所述第二终端的无线数据传输连接。
传输模块303,用于通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
在一种实施方式中,所述连接模块302可以用于:
若检测到所述目标数据的数据量超过预设阈值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
在一种实施方式中,所述传输模块303可以用于:
将所述目标数据分割成数据块,并将所述数据块由所述第一终端传输至所述第二终端。
在一种实施方式中,所述传输模块303还可以用于:
当检测到所述第一终端与所述第二终端之间的数据传输连接中断时,记录传输信息,所述传输信息包括所述目标数据中未完成传输的数据块和/或所述目标数据中已经完成传输的数据块;
在与所述第二终端的无线通信重新恢复后,查询记录到的所述传输信息,并根据所述传输信息向所述第二终端发送未完成传输的数据块。
在一种实施方式中,所述连接模块302还可以用于:
若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;
若检测到所述差值小于预设差值,则获取剩余电量值;
若检测到所述剩余电量值小于预设电量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所 述第二终端。
在一种实施方式中,所述连接模块302还可以用于:
若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;
若检测到所述差值小于预设差值,则获取剩余运行内存容量;
若所述剩余运行内存容量小于预设容量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
请一并参阅图7,图7为本申请实施例提供的数据传输装置的另一结构示意图。在一实施例中,数据传输装置300还可以包括:计算模块304,设置模块305。
计算模块304,用于获取所述第二终端的存储总容量,以及剩余存储容量;计算所述剩余存储容量占所述存储总容量的比例。
那么,所述连接模块302,可以用于:若所述比例达到预设百分比值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
设置模块305,用于在将所述目标数据由所述第一终端传输至所述第二终端的过程中,若检测到所述第一终端处于非静音模式,则将所述第一终端调整为静音模式;获取所述第二终端的提醒模式;若所述第二终端的提醒模式为非静音模式,则发送控制指令至所述第二终端,所述控制指令用于指示所述第二终端将提醒模式调整为静音模式。
本申请实施例提供一种计算机可读的存储介质,其上存储有计算机程序,当所述计算机程序在计算机上执行时,使得所述计算机执行如本实施例提供的数据传输方法中的步骤。
本申请实施例还提供一种电子设备,包括存储器,处理器,所述处理器通过调用所述存储器中存储的计算机程序,用于执行本实施例提供的数据传输方法中的步骤。
例如,上述电子设备可以是诸如平板电脑或者智能手机等移动终端。请参阅图8,图8为本申请实施例提供的移动终端的结构示意图。该移动终端可以为本实施例中的第一终端。
该移动终端400可以包括无线数据传输单元401、存储器402、处理器403等部件。本领域技术人员可以理解,图8中示出的移动终端结构并不构成对移动终端的限定,可以包括比图示更多或更少的部件,或者组合某些部件,或者不同的部件布置。
无线数据传输单元401可以为集成电路(Integrated Circuit,IC)芯片。在该集成电路芯片内封装有极高频(Extremely high frequency,EHF)天线,从而使安装有该集成电路芯片的终端之间可以基于高载波频率(例如,60GHz)实现高速的数据无线传输(例如,最高可达6GB/s的传输速度)。在一种实施方式中,安装有该集成电路芯片的终端之间可以通过电磁信号实现数据的无线传输。
存储器402可用于存储应用程序和数据。存储器402存储的应用程序中包含有可执行代码。应用程序可以组成各种功能模块。处理器403通过运行存储在存储器402的应用程序,从而执行各种功能应用以及数据处理。
处理器403是移动终端的控制中心,利用各种接口和线路连接整个移动终端的各个部分,通过运行或执行存储在存储器402内的应用程序,以及调用存储在存储器402内的数据,执行移动终端的各种功能和处理数据,从而对移动终端进行整体监控。
在本实施例中,移动终端中的处理器403会按照如下的指令,将一个或一个以上的应用程序的进程对应的可执行代码加载到存储器402中,并由处理器403来运行存储在存储器402中的应用程序,从而实现:
当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据;
建立与所述第二终端的无线数据传输连接;
通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述 第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
请参阅图9,移动终端500可以包括无线数据传输单元501、存储器502、处理器503、输入单元504、输出单元505等部件。
无线数据传输单元501可以为集成电路(Integrated Circuit,IC)芯片。在该集成电路芯片内封装有极高频(Extremely high frequency,EHF)天线,从而使安装有该集成电路芯片的终端之间可以基于高载波频率(例如,60GHz)实现高速的数据无线传输(例如,最高可达6GB/s的传输速度)。在一种实施方式中,安装有该集成电路芯片的终端之间可以通过电磁信号实现数据的无线传输。
存储器502可用于存储应用程序和数据。存储器502存储的应用程序中包含有可执行代码。应用程序可以组成各种功能模块。处理器503通过运行存储在存储器502的应用程序,从而执行各种功能应用以及数据处理。
处理器503是移动终端的控制中心,利用各种接口和线路连接整个移动终端的各个部分,通过运行或执行存储在存储器502内的应用程序,以及调用存储在存储器502内的数据,执行移动终端的各种功能和处理数据,从而对移动终端进行整体监控。
输入单元504可用于接收输入的数字、字符信息或用户特征信息(比如指纹),以及产生与用户设置以及功能控制有关的键盘、鼠标、操作杆、光学或者轨迹球信号输入。
输出单元505可用于显示由用户输入的信息或提供给用户的信息以及移动终端的各种图形用户接口,这些图形用户接口可以由图形、文本、图标、视频和其任意组合来构成。输出单元可包括显示面板。
在本实施例中,移动终端中的处理器503会按照如下的指令,将一个或一个以上的应用程序的进程对应的可执行代码加载到存储器502中,并由处理器503来运行存储在存储器502中的应用程序,从而实现:
当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据;
建立与所述第二终端的无线数据传输连接;
通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
在一种实施方式中,处理器503执行所述建立与所述第二终端的无线数据传输连接的流程时,可以执行:若检测到所述目标数据的数据量超过预设阈值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
在一种实施方式中,在所述建立与所述第二终端的无线数据传输连接的流程之前,处理器503还可以执行:获取所述第二终端的存储总容量,以及剩余存储容量;计算所述剩余存储容量占所述存储总容量的比例。
那么,处理器503执行所述建立与所述第二终端的无线数据传输连接的流程时,可以执行:若所述比例达到预设百分比值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
在一种实施方式中,处理器503还可以执行:在将所述目标数据由所述第一终端传输至所述第二终端的过程中,若检测到所述第一终端处于非静音模式,则将所述第一终端调整为静音模式;获取所述第二终端的提醒模式;若所述第二终端的提醒模式为非静音模式,则发送控制指令至所述第二终端,所述控制指令用于指示所述第二终端将提醒模式调整为静音模式。
在一种实施方式中,处理器503执行所述将所述目标数据由所述第一终端传输至所述第二终端的流程时,可以执行:将所述目标数据分割成数据块,并将所述数据块由所述第 一终端传输至所述第二终端。
在一种实施方式中,处理器503还可以执行:当检测到所述第一终端与所述第二终端之间的数据传输连接中断时,记录传输信息,所述传输信息包括所述目标数据中未完成传输的数据块和/或所述目标数据中已经完成传输的数据块;在与所述第二终端的无线通信重新恢复后,查询记录到的所述传输信息,并根据所述传输信息向所述第二终端发送未完成传输的数据块。
在一种实施方式中,处理器503还可以执行:若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;若检测到所述差值小于预设差值,则获取剩余电量值;若检测到所述剩余电量值小于预设电量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
在一种实施方式中,处理器503还可以执行:若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;若检测到所述差值小于预设差值,则获取剩余运行内存容量;若所述剩余运行内存容量小于预设容量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见上文针对数据传输方法的详细描述,此处不再赘述。
本申请实施例提供的所述数据传输装置与上文实施例中的数据传输方法属于同一构思,在所述数据传输装置上可以运行所述数据传输方法实施例中提供的任一方法,其具体实现过程详见所述数据传输方法实施例,此处不再赘述。
需要说明的是,对本申请实施例所述数据传输方法而言,本领域普通技术人员可以理解实现本申请实施例所述数据传输方法的全部或部分流程,是可以通过计算机程序来控制相关的硬件来完成,所述计算机程序可存储于一计算机可读取存储介质中,如存储在存储器中,并被至少一个处理器执行,在执行过程中可包括如所述数据传输方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储器(ROM,Read Only Memory)、随机存取记忆体(RAM,Random Access Memory)等。
对本申请实施例的所述数据传输装置而言,其各功能模块可以集成在一个处理芯片中,也可以是各个模块单独物理存在,也可以两个或两个以上模块集成在一个模块中。上述集成的模块既可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。所述集成的模块如果以软件功能模块的形式实现并作为独立的产品销售或使用时,也可以存储在一个计算机可读取存储介质中,所述存储介质譬如为只读存储器,磁盘或光盘等。
以上对本申请实施例所提供的一种数据传输方法、装置、存储介质以及电子设备进行了详细介绍,本文中应用了具体个例对本发明的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本发明的方法及其核心思想;同时,对于本领域的技术人员,依据本发明的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本发明的限制。
Claims (20)
- 一种数据传输方法,其中,包括:当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据;建立与所述第二终端的无线数据传输连接;通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
- 根据权利要求1所述的数据传输方法,其中,所述建立与所述第二终端的无线数据传输连接,包括:若检测到所述目标数据的数据量超过预设阈值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
- 根据权利要求1所述的数据传输方法,其中,在所述建立与所述第二终端的无线数据传输连接之前,还包括:获取所述第二终端的存储总容量,以及剩余存储容量;计算所述剩余存储容量占所述存储总容量的比例;所述建立与所述第二终端的无线数据传输连接,包括:若所述比例达到预设百分比值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
- 根据权利要求1所述的数据传输方法,其中,所述方法还包括:在将所述目标数据由所述第一终端传输至所述第二终端的过程中,若检测到所述第一终端处于非静音模式,则将所述第一终端调整为静音模式;获取所述第二终端的提醒模式;若所述第二终端的提醒模式为非静音模式,则发送控制指令至所述第二终端,所述控制指令用于指示所述第二终端将提醒模式调整为静音模式。
- 根据权利要求1所述的数据传输方法,其中,所述将所述目标数据由所述第一终端传输至所述第二终端,包括:将所述目标数据分割成数据块,并将所述数据块由所述第一终端传输至所述第二终端。
- 根据权利要求5所述的数据传输方法,其中,所述方法还包括:当检测到所述第一终端与所述第二终端之间的数据传输连接中断时,记录传输信息,所述传输信息包括所述目标数据中未完成传输的数据块和/或所述目标数据中已经完成传输的数据块;在与所述第二终端的无线通信重新恢复后,查询记录到的所述传输信息,并根据所述传输信息向所述第二终端发送未完成传输的数据块。
- 根据权利要求2所述的数据传输方法,其中,所述方法还包括:若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;若检测到所述差值小于预设差值,则获取剩余电量值;若检测到所述剩余电量值小于预设电量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
- 根据权利要求2所述的数据传输方法,其中,所述方法还包括:若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;若检测到所述差值小于预设差值,则获取剩余运行内存容量;若所述剩余运行内存容量小于预设容量阈值,则通过所述无线数据传输单元建立与所 述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
- 一种数据传输装置,其中,包括:获取模块,用于当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据;连接模块,用于建立与所述第二终端的无线数据传输连接;传输模块,用于通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
- 根据权利要求9所述的数据传输装置,其中,所述连接模块用于:若检测到所述目标数据的数据量超过预设阈值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
- 根据权利要求9所述的数据传输装置,其中,所述装置还包括:计算模块,用于获取所述第二终端的存储总容量,以及剩余存储容量;计算所述剩余存储容量占所述存储总容量的比例;所述连接模块,用于:若所述比例达到预设百分比值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
- 一种存储介质,其上存储有计算机程序,其中,当所述计算机程序在计算机上执行时,使得所述计算机执行如权利要求1至8中任一项所述的方法。
- 一种电子设备,包括存储器,处理器,其中,所述处理器通过调用所述存储器中存储的计算机程序,用于执行:当需要将第一终端的数据传输到第二终端时,获取需要传输的目标数据;建立与所述第二终端的无线数据传输连接;通过无线数据传输单元,将所述目标数据由所述第一终端传输至所述第二终端,所述第一终端和所述第二终端均具有所述无线数据传输单元,所述无线数据传输单元为基于高载波频率的近距离无线通信单元。
- 根据权利要求13所述的电子设备,其中,所述处理器用于执行:若检测到所述目标数据的数据量超过预设阈值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
- 根据权利要求13所述的电子设备,其中,所述处理器用于执行:获取所述第二终端的存储总容量,以及剩余存储容量;计算所述剩余存储容量占所述存储总容量的比例;若所述比例达到预设百分比值,则通过所述无线数据传输单元,建立与所述第二终端的无线数据传输连接。
- 根据权利要求13所述的电子设备,其中,所述处理器用于执行:在将所述目标数据由所述第一终端传输至所述第二终端的过程中,若检测到所述第一终端处于非静音模式,则将所述第一终端调整为静音模式;获取所述第二终端的提醒模式;若所述第二终端的提醒模式为非静音模式,则发送控制指令至所述第二终端,所述控制指令用于指示所述第二终端将提醒模式调整为静音模式。
- 根据权利要求13所述的电子设备,其中,所述处理器用于执行:将所述目标数据分割成数据块,并将所述数据块由所述第一终端传输至所述第二终端。
- 根据权利要求17所述的电子设备,其中,所述处理器用于执行:当检测到所述第一终端与所述第二终端之间的数据传输连接中断时,记录传输信息, 所述传输信息包括所述目标数据中未完成传输的数据块和/或所述目标数据中已经完成传输的数据块;在与所述第二终端的无线通信重新恢复后,查询记录到的所述传输信息,并根据所述传输信息向所述第二终端发送未完成传输的数据块。
- 根据权利要求14所述的电子设备,其中,所述处理器用于执行:若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;若检测到所述差值小于预设差值,则获取剩余电量值;若检测到所述剩余电量值小于预设电量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
- 根据权利要求14所述的电子设备,其中,所述处理器用于执行:若检测到所述目标数据的数据量小于所述预设阈值,则获取所述目标数据的数据量与所述预设阈值的差值;若检测到所述差值小于预设差值,则获取剩余运行内存容量;若所述剩余运行内存容量小于预设容量阈值,则通过所述无线数据传输单元建立与所述第二终端的无线数据传输连接,并通过所述无线数据传输单元将所述目标数据传输至所述第二终端。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201810350125.5A CN110392364B (zh) | 2018-04-18 | 2018-04-18 | 数据传输方法、装置、存储介质及电子设备 |
| CN201810350125.5 | 2018-04-18 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2019201138A1 true WO2019201138A1 (zh) | 2019-10-24 |
Family
ID=68240541
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2019/082145 Ceased WO2019201138A1 (zh) | 2018-04-18 | 2019-04-10 | 数据传输方法、装置、存储介质及电子设备 |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN110392364B (zh) |
| WO (1) | WO2019201138A1 (zh) |
Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102571696A (zh) * | 2010-12-08 | 2012-07-11 | 爱国者电子科技有限公司 | 一种文件管理终端 |
| CN104243753A (zh) * | 2009-06-12 | 2014-12-24 | 佳能株式会社 | 通信装置及通信装置的控制方法 |
| CN105577242A (zh) * | 2015-12-16 | 2016-05-11 | 北京橙鑫数据科技有限公司 | 用户设备及电子名片发送方法 |
Family Cites Families (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9559790B2 (en) * | 2012-01-30 | 2017-01-31 | Keyssa, Inc. | Link emission control |
| CN108173574B9 (zh) * | 2012-10-19 | 2021-11-12 | 华为终端有限公司 | 一种控制文件传输的方法及终端 |
| CN105827023B (zh) * | 2015-07-27 | 2018-02-23 | 维沃移动通信有限公司 | 一种终端间的无线充电方法及终端 |
| CN106658354B (zh) * | 2016-09-14 | 2019-10-18 | Oppo广东移动通信有限公司 | 一种数据传输方法及设备 |
| CN106787232B (zh) * | 2016-11-30 | 2019-07-02 | 合肥宝龙达信息技术有限公司 | 一种无线充电和无线数据传输的自动切换系统及方法 |
| CN110089040B (zh) * | 2017-04-07 | 2022-04-15 | Oppo广东移动通信有限公司 | 数据传输的方法和发送端设备 |
| CN107579775A (zh) * | 2017-08-24 | 2018-01-12 | 上海与德科技有限公司 | 一种数据传输方法、装置、移动终端及存储介质 |
| CN107770881A (zh) * | 2017-10-27 | 2018-03-06 | 三星(中国)半导体有限公司 | 传输数据的方法及装置 |
-
2018
- 2018-04-18 CN CN201810350125.5A patent/CN110392364B/zh not_active Expired - Fee Related
-
2019
- 2019-04-10 WO PCT/CN2019/082145 patent/WO2019201138A1/zh not_active Ceased
Patent Citations (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN104243753A (zh) * | 2009-06-12 | 2014-12-24 | 佳能株式会社 | 通信装置及通信装置的控制方法 |
| CN102571696A (zh) * | 2010-12-08 | 2012-07-11 | 爱国者电子科技有限公司 | 一种文件管理终端 |
| CN105577242A (zh) * | 2015-12-16 | 2016-05-11 | 北京橙鑫数据科技有限公司 | 用户设备及电子名片发送方法 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN110392364B (zh) | 2021-02-26 |
| CN110392364A (zh) | 2019-10-29 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| KR102511514B1 (ko) | 다양한 충전 방식을 이용한 고속 충전 방법 및 장치 | |
| US9949047B2 (en) | Method for controlling audio signal and electronic device supporting the same | |
| US9203252B2 (en) | Redirecting notifications to a wearable computing device | |
| US11243595B2 (en) | Method and apparatus for reducing continuous-wakeup delay of bluetooth loudspeaker, and bluetooth loudspeaker | |
| CN105913868A (zh) | 一种调整频率的方法、片上系统及终端 | |
| CN110677171A (zh) | 一种频段处理方法和电子设备 | |
| CN111883146A (zh) | 跨平台的分布式就近唤醒方法和装置 | |
| WO2018049971A1 (zh) | 热点网络切换方法及终端 | |
| CN105872980B (zh) | 一种扫描无线网络信号的方法及装置 | |
| CN117971507A (zh) | 一种内存模组及数据存取方法 | |
| WO2018049970A1 (zh) | 热点网络切换方法及终端 | |
| CN115774655A (zh) | 数据处理方法、装置、电子设备及计算机可读介质 | |
| CN110035504A (zh) | 一种空间关系的确定方法、终端及基站 | |
| CN113472397B (zh) | 天线控制方法、装置、存储介质及电子设备 | |
| WO2019201138A1 (zh) | 数据传输方法、装置、存储介质及电子设备 | |
| US20180262707A1 (en) | Method for Processing Ordered Broadcast and Electronic Device | |
| CN107479845A (zh) | 显示设备及其控制方法 | |
| US20230214168A1 (en) | Source device, sink device, and operating methods thereof | |
| US12498967B2 (en) | Channel switching mechanism among wireless peripheral devices | |
| CN111818625B (zh) | 功耗控制方法、装置、存储介质及电子设备 | |
| WO2024001907A1 (zh) | 射频控制方法、装置及电子设备 | |
| CN110022600A (zh) | 驱动电流的调节方法、装置、存储介质及移动终端 | |
| CN119325695A (zh) | 动态扩频时钟控制 | |
| WO2019075620A1 (zh) | 数据处理系统 | |
| KR102167646B1 (ko) | 프레임 정보를 제공하는 전자 장치 및 방법 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 19789156 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 19789156 Country of ref document: EP Kind code of ref document: A1 |