WO2018161873A1 - 物理设备间蓝牙组网的控制方法、装置和系统 - Google Patents

物理设备间蓝牙组网的控制方法、装置和系统 Download PDF

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Publication number
WO2018161873A1
WO2018161873A1 PCT/CN2018/078012 CN2018078012W WO2018161873A1 WO 2018161873 A1 WO2018161873 A1 WO 2018161873A1 CN 2018078012 W CN2018078012 W CN 2018078012W WO 2018161873 A1 WO2018161873 A1 WO 2018161873A1
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Prior art keywords
bluetooth networking
physical device
bluetooth
physical
device identifier
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PCT/CN2018/078012
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English (en)
French (fr)
Inventor
王欢
李栋
Original Assignee
中移(杭州)信息技术有限公司
中国移动通信集团有限公司
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Application filed by 中移(杭州)信息技术有限公司, 中国移动通信集团有限公司 filed Critical 中移(杭州)信息技术有限公司
Priority to JP2019570610A priority Critical patent/JP7051910B2/ja
Priority to US16/491,818 priority patent/US11102701B2/en
Publication of WO2018161873A1 publication Critical patent/WO2018161873A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/60Context-dependent security
    • H04W12/69Identity-dependent
    • H04W12/77Graphical identity
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W84/00Network topologies
    • H04W84/18Self-organising networks, e.g. ad-hoc networks or sensor networks
    • H04W84/20Master-slave selection or change arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W40/00Communication routing or communication path finding
    • H04W40/24Connectivity information management, e.g. connectivity discovery or connectivity update
    • H04W40/30Connectivity information management, e.g. connectivity discovery or connectivity update for proactive routing
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L41/00Arrangements for maintenance, administration or management of data switching networks, e.g. of packet switching networks
    • H04L41/08Configuration management of networks or network elements
    • H04L41/0893Assignment of logical groups to network elements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/80Services using short range communication, e.g. near-field communication [NFC], radio-frequency identification [RFID] or low energy communication
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/10Connection setup
    • H04W76/11Allocation or use of connection identifiers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W80/00Wireless network protocols or protocol adaptations to wireless operation
    • H04W80/02Data link layer protocols
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/70Services for machine-to-machine communication [M2M] or machine type communication [MTC]

Definitions

  • the present disclosure relates to the field of Internet of Things technologies, and in particular, to a method, an apparatus, and a system for controlling a Bluetooth networking between physical devices.
  • Bluetooth wireless technology features low transmit power, low cost, and short-range communication. It can be used to replace cables between electronic devices and to establish temporary network connections over short-range wireless links without the need for fixed network infrastructure support.
  • a plurality of Bluetooth devices are connected in a network to form a piconet. Referring to the piconet structure shown in FIG.
  • a Bluetooth device in a piconet has only one master device (Master, such as device 10 in FIG. 1) and at least one slave device (Slave, such as device 11 in FIG. 1), wherein the master device is actively initiated by a network connection. Connect to the requested Bluetooth device.
  • Master such as device 10 in FIG. 1
  • Slave such as device 11 in FIG. 1
  • Step 1 The user operates the master device, and the master device initiates a call and finds the slave device within the coverage of the master device signal;
  • Step 2 After finding the slave device, the master device selects the pre-access slave device and inputs a PIN (Personal Identification Number) code;
  • Step 3 After the slave device is verified and paired, the two-way link is successfully established, and the slave device can record the trust information of the master device; thus, the master-slave device can start two-way communication.
  • the above technical solutions have the following disadvantages: (1) the network relationship between the master and the slave device cannot be remotely operated; (2) the master and slave devices need to perform operations on the master device when pairing, which requires an operation page on the master device. Or need to use other applications to achieve master-slave device pairing, low flexibility; and can not be separated from the master-slave device to achieve network changes between the master and slave devices; (3) can not achieve a variety of flexible networking strategies and can not be different The date and time automatically switch between different networking policies. (4) Backup, editing, or recovery of the networking relationship between the master and slave devices cannot be implemented.
  • the present disclosure provides a Bluetooth networking control method, apparatus, and system between physical devices, which are used to solve the problem that the configuration existing in the related art is not flexible enough.
  • the present disclosure provides a Bluetooth networking control method between physical devices, including: pre-establishing a Bluetooth networking policy list, where the Bluetooth networking policy list includes at least one Bluetooth networking policy, and the Bluetooth networking policy Entering or selecting according to a correspondence between the pre-registered primary physical device and the secondary physical device; receiving a Bluetooth networking policy selection instruction; and selecting a Bluetooth networking policy according to the Bluetooth networking policy selection instruction
  • the method is sent to the network server, and is forwarded to the primary physical device by the network server, where the Bluetooth networking policy is used to trigger the primary physical device to adjust the Bluetooth networking relationship between the primary physical device and the secondary physical device.
  • the corresponding relationship between the primary physical device and the secondary physical device is established according to the following method: respectively acquiring the device identifier of each physical device to be Bluetooth-enabled and its corresponding identity; The device identifier of the physical device of the network and the corresponding identity identifier thereof, establishing a correspondence between the master physical device and the slave physical device; and transmitting the correspondence between the established primary physical device and the slave physical device to the network server storage.
  • obtaining the device identifier of the physical device according to the following method: for any physical device to be Bluetooth network, obtaining the device identifier of the physical device by scanning the authentication graphic code of the physical device; or for any Bluetooth to be connected network The physical device obtains the device identifier of the physical device by receiving the device code of the physical device input by the user.
  • the authentication graphic code is generated according to a media access control MAC address of the physical device, and the authentication graphic code includes a two-dimensional code or a barcode.
  • the present disclosure provides a method for controlling a Bluetooth networking between physical devices, including: receiving a Bluetooth networking policy delivered by a network server, where the Bluetooth networking policy is a Bluetooth networking policy list pre-established by the user from the terminal. Selecting and sending to the network server, the Bluetooth networking policy list includes at least one Bluetooth networking policy, and the Bluetooth networking policy included in the Bluetooth networking policy list is based on a pre-registered primary physical device. And inputting or selecting from a correspondence relationship between the physical devices; and adjusting a Bluetooth networking relationship with the slave physical device according to the Bluetooth networking policy.
  • the Bluetooth networking policy includes a device identifier of all slave physical devices that need to adjust a Bluetooth networking relationship. Adjusting the Bluetooth networking relationship with the slave physical device according to the Bluetooth networking policy, specifically: adjusting the device identifier of all the slave physical devices according to the requirements of the Bluetooth networking relationship, and determining the first device identifier set; All the slave physical devices in the range, and determining the discovered device identity of the physical device to form a second device identity set; and selecting from the second device identity set the same as any device identifier included in the first device identity set Device identification, establishing a communication connection from the physical device corresponding to the selected device identifier.
  • the Bluetooth networking policy further includes a Bluetooth networking mode, where the Bluetooth networking mode includes automatic connection, or manual connection, or time connection.
  • the method further includes: sending a communication connection establishment inquiry request to the terminal via the network server; receiving the communication connection establishment response message forwarded by the terminal via the network server; and determining that the response message is to agree to establish a communication connection.
  • the Bluetooth networking policy further includes a networking time period. Selecting, from the second device identifier set, the device identifier that is the same as the device identifier that is included in the first device identifier set, and before establishing the communication connection from the physical device corresponding to the selected device identifier, specifically: according to the group
  • the network time period when the network start time arrives, selects, from the second device identifier set, the same device identifier as any one of the device identifiers included in the first device identifier set, and the slave physical device corresponding to the selected device identifier. Establish a communication connection.
  • the method further includes: releasing, according to the networking time period, a communication connection between the slave physical devices that have established a communication connection when the network end time arrives.
  • the present disclosure provides a Bluetooth networking control device between physical devices, including: an establishing unit, configured to pre-establish a Bluetooth networking policy list, where the Bluetooth networking policy list includes at least one Bluetooth networking policy, The Bluetooth networking policy is input or selected by the user according to a correspondence between the pre-registered primary physical device and the secondary physical device; the receiving unit is configured to receive a Bluetooth networking policy selection instruction; and the sending unit is configured to use the The Bluetooth networking policy selection instruction received by the receiving unit sends the selected Bluetooth networking policy to the network server, and the network server forwards the policy to the primary physical device, where the Bluetooth networking policy is used to trigger The primary physical device adjusts its Bluetooth networking relationship with the secondary physical device.
  • the establishing unit includes: an obtaining subunit, a establishing subunit, and a sending subunit, where: the obtaining subunit is configured to respectively obtain a device identifier of each physical device to be Bluetooth network and its corresponding The establishing sub-unit is configured to establish a correspondence between the primary physical device and the secondary physical device according to the device identifier of the physical device to be Bluetooth configured and the corresponding identity identifier acquired by the obtaining sub-unit The sending subunit is configured to send a correspondence between the established primary physical device and the secondary physical device to the network server for storage.
  • the obtaining sub-unit is specifically configured to obtain, by using the authentication graphic code of the physical device, the device identifier of the physical device for the physical device to be Bluetooth-enabled, or for any Bluetooth-to-Bluetooth network.
  • the physical device obtains the device identifier of the physical device by receiving the device code of the physical device input by the user.
  • the authentication graphic code is generated according to a media access control MAC address of the physical device, and the authentication graphic code includes a two-dimensional code or a barcode.
  • the present disclosure provides a control device for a Bluetooth networking between physical devices, including: a receiving unit, configured to receive a Bluetooth networking policy delivered by a network server, where the Bluetooth networking policy is pre-established by the user from the terminal.
  • the Bluetooth networking policy list is selected and sent to the network server, and the Bluetooth networking policy list includes at least one Bluetooth networking policy, and the Bluetooth networking policy included in the Bluetooth networking policy list is based on the user.
  • an adjusting unit configured to adjust, according to the Bluetooth networking policy received by the receiving unit, the Bluetooth between the physical device and the secondary device Networking relationship.
  • the Bluetooth networking policy includes a device identifier of all the slave physical devices that need to adjust the Bluetooth networking relationship;
  • the adjusting unit includes: a determining subunit, a searching subunit, and a selecting subunit, where: the determining a subunit, configured to adjust a device identifier of all the slave devices of the Bluetooth networking relationship as needed, and determine a first device identifier set;
  • the lookup subunit is configured to find all the slave physical devices in the signal coverage range, and determine the search
  • the device identifier of the physical device is configured to form a second device identifier set; and the selecting subunit is configured to select, from the second device identifier set, the same device identifier as any device identifier included in the first device identifier set Establishing a communication connection from the physical device corresponding to the selected device identifier.
  • the Bluetooth networking policy further includes a Bluetooth networking mode, where the Bluetooth networking mode includes automatic connection, or manual connection, or time connection.
  • the device further includes a sending unit and a determining unit, wherein the sending unit is configured to: when the Bluetooth networking mode is a manual connection, select, in the selected subunit from the second device identification set The device identifier of the device identifier that is included in the first device identifier set is the same, and the communication server establishes a query request to the terminal through the network server before establishing the communication connection with the slave device corresponding to the selected device identifier; the receiving unit And the receiving unit is further configured to: receive, by the network server, a communication connection establishment response message, where the determining unit is configured to determine that the response message is to establish a communication connection.
  • the Bluetooth networking policy further includes a networking time period.
  • the selecting sub-unit is specifically configured to select, according to the networking time period, a device identifier that is the same as any device identifier included in the first device identifier set from the second device identifier set when the network start time arrives Establishing a communication connection from the physical device corresponding to the selected device identifier; the device further includes a release unit, wherein the release unit is configured to release and release when the network end time arrives according to the networking time period A communication connection between the slave physical devices of the communication connection has been established.
  • the present disclosure provides a control system for a Bluetooth networking between physical devices, including: a terminal, a network server, and at least one primary physical device, each primary physical device being connected to at least one secondary physical device, wherein the terminal
  • the Bluetooth networking policy list includes at least one Bluetooth networking policy, where the Bluetooth networking policy is based on a correspondence between a pre-registered primary physical device and a secondary physical device.
  • Receiving or selecting a relationship receiving a Bluetooth networking policy selection instruction; transmitting, according to the Bluetooth networking policy selection instruction, the selected Bluetooth networking policy to the network server; the network server, configured to receive the selected transmission by the terminal a Bluetooth networking policy; forwarding the Bluetooth networking policy to the primary physical device; and the primary physical device, configured to receive a Bluetooth networking policy delivered by the network server; and according to the Bluetooth networking policy, Adjust the Bluetooth networking relationship with the slave physical device.
  • the terminal is specifically configured to obtain, respectively, a device identifier of a physical device to be Bluetooth-enabled network and a corresponding identity identifier thereof; and, according to the obtained device identifier of the physical device to be Bluetooth-enabled, and corresponding
  • the identity identifier establishes a correspondence between the master physical device and the slave physical device; and sends a correspondence between the established master physical device and the slave physical device to the network server.
  • the network server is further configured to store a correspondence between the primary physical device and the secondary physical device sent by the terminal.
  • the terminal is specifically configured to obtain a device identifier of the physical device by scanning an authentication graphic code of the physical device for any physical device to be Bluetooth-enabled, or for any physical device to be Bluetooth-enabled. And obtaining the device identifier of the physical device by receiving a device code of the physical device input by the user.
  • the authentication graphic code is generated according to a media access control MAC address of the physical device, and the authentication graphic code includes a two-dimensional code or a barcode.
  • the Bluetooth networking policy includes a device identifier of all slave physical devices that need to adjust a Bluetooth networking relationship.
  • the primary physical device is specifically configured to adjust a device identifier of all the slave physical devices according to requirements, determine a first device identifier set, search for all secondary physical devices within the coverage of the signal, and determine the discovered secondary physical device.
  • the device identifier of the device constitutes a second device identifier set; selecting, from the second device identifier set, the same device identifier as any one of the device identifiers included in the first device identifier set, and establishing the slave device corresponding to the selected device identifier Communication connection.
  • the Bluetooth networking policy further includes a Bluetooth networking mode, where the Bluetooth networking mode includes automatic connection, or manual connection, or time connection.
  • the primary physical device is specifically configured to: if the Bluetooth networking mode is a manual connection, select, from the second device identity set, a device that is the same as any device identifier included in the first device identity set. Identifying, before establishing a communication connection from the physical device corresponding to the selected device identifier, sending a communication connection establishment query request to the network server; and receiving the communication connection establishment response message forwarded by the network server; and determining the response message To agree to establish a communication connection.
  • the network server is specifically configured to send the communication connection establishment query request to the terminal, and receive a communication connection establishment response message sent by the terminal, and forward the communication connection establishment response message to the primary physical device.
  • the terminal is specifically configured to receive the communication connection establishment query request sent by the network server, and send the communication connection establishment response message to the network server.
  • the primary physical device is specifically configured to: if the Bluetooth networking mode is connected by time, the Bluetooth networking policy further includes a networking time period; and according to the networking time period, When the network start time arrives, the device identifier that is the same as any device identifier included in the first device identifier set is selected from the second device identifier set, and the slave device establishes a communication connection corresponding to the selected device identifier; It is further configured to release, according to the networking time period, a communication connection between the slave physical devices that have established a communication connection when the network end time arrives.
  • the present disclosure provides a control device for a Bluetooth networking between physical devices, including: a processor; a memory for storing programs and data; and a bus interface, wherein the processor and the memory pass the The bus interfaces are in communication with one another, wherein the processor is operative to read the programs and data stored in the memory to perform the method according to the first aspect.
  • the present disclosure provides a control device for a Bluetooth networking between physical devices, including: a processor; a memory for storing programs and data; and a bus interface, wherein the processor and the memory pass the The bus interfaces are in communication with each other, wherein the processor is operative to read the program and data stored in the memory to perform the method according to the second aspect.
  • the present disclosure provides a nonvolatile storage medium comprising: a program and data stored on the nonvolatile storage medium, wherein when the program and data are executed by a processor, The processor implements the method according to the first aspect.
  • the present disclosure provides a nonvolatile storage medium comprising: a program and data stored on the nonvolatile storage medium, wherein when the program and data are executed by a processor, The processor implements the method according to the second aspect.
  • the Bluetooth networking policy list includes at least one Bluetooth networking policy
  • the primary physical device is configured according to the Bluetooth group.
  • the network policy is used to flexibly adjust the Bluetooth networking relationship between the physical device and the physical device, and the primary physical device receives the Bluetooth networking policy delivered by the network server to remotely control the Bluetooth networking between the primary physical device and the secondary physical device.
  • the relationship changes the process of controlling the Bluetooth networking relationship between the primary physical device and the secondary physical device by directly operating the primary physical device, and simplifies the pairing process between the primary and secondary physical devices, thereby improving the user experience.
  • FIG. 1 is a schematic diagram of a deployment structure of a master-slave device in the related art
  • 2a is a schematic flowchart of a method for controlling a Bluetooth networking between physical devices according to the present disclosure
  • 2b is a schematic flowchart of establishing a correspondence between a primary physical device and a secondary physical device in a method for controlling a Bluetooth networking between physical devices according to the present disclosure
  • 3a is a schematic flowchart of a method for controlling a Bluetooth networking between physical devices according to the present disclosure
  • FIG. 3b is a schematic flowchart of adjusting a relationship between a Bluetooth networking and a physical device in a method for controlling a Bluetooth networking between physical devices according to the present disclosure
  • FIG. 4 is a schematic flowchart of a method for controlling a Bluetooth networking between physical devices in a Bluetooth networking mode provided by the present disclosure
  • 4b is a schematic flowchart of a method for controlling a Bluetooth networking between physical devices connected in time according to a Bluetooth networking mode provided by the present disclosure
  • FIG. 5 is a schematic structural diagram of a device for controlling a Bluetooth networking between physical devices according to the present disclosure
  • FIG. 6 is a schematic structural diagram of a device for controlling a Bluetooth networking between physical devices according to the present disclosure
  • FIG. 7 is a schematic structural diagram of a control system of a Bluetooth networking between physical devices according to the present disclosure.
  • FIG. 8 is a schematic structural diagram of a Bluetooth networking control device between physical devices according to the present disclosure.
  • FIG. 9 is a schematic structural diagram of a Bluetooth networking control device between physical devices according to the present disclosure.
  • the present disclosure provides a method, a device, and a system for controlling a Bluetooth network between physical devices, which are used to solve the problems in the related art that the pairing process of the master-slave device is complicated, the pairing operation of the remote control master-slave device, and the configuration are not flexible enough.
  • the control method of the Bluetooth networking between physical devices provided by the present disclosure can be applied to the control flow of networking between Bluetooth devices. Based on the method provided by the present disclosure, the Bluetooth networking relationship between the master and slave Bluetooth devices is flexibly adjusted, and the pairing process between the master and slave Bluetooth devices is simplified, and the user experience is improved.
  • the execution body of the control scheme of the Bluetooth inter-network between physical devices may be a terminal such as a smart phone and a tablet.
  • FIG. 2a is a schematic flowchart diagram of a method for controlling a Bluetooth networking between physical devices according to the present disclosure.
  • the method for controlling the Bluetooth networking between the physical devices may include the following steps S11-S13.
  • Bluetooth networking policy list includes at least one Bluetooth networking policy, where the Bluetooth networking policy is based on a correspondence between a pre-registered primary physical device and a secondary physical device. Enter or select.
  • the primary physical device 1 corresponds to the secondary physical device 11, the secondary physical device 12, and the secondary physical device 13.
  • the terminal displays the corresponding relationship to the user, and the user can use the corresponding relationship from the Bluetooth networking policy list. Select or enter a Bluetooth networking policy.
  • the Bluetooth networking policy is selected according to the Bluetooth networking relationship between the primary physical device and the secondary physical device, which effectively ensures that the primary physical device flexibly configures the Bluetooth networking relationship with the secondary physical device according to the Bluetooth networking policy.
  • a switching policy button is set on the interaction interface between the terminal and the user, and the button user triggers a key switching policy operation, and the user may periodically periodically after pressing the button.
  • the Bluetooth networking policy is switched, and the switched Bluetooth networking policy is sent to the network server, and the network server forwards the data to the primary physical device.
  • the correspondence between the primary physical device and the secondary physical device may be established according to the method shown in FIG. 2b, and the method shown in FIG. 2b may include the following steps S111-S112.
  • the identifier of the physical device is used to indicate whether the physical device is a primary physical device or a secondary physical device. For example, when registering the physical device, the user may determine the primary device according to the relative positional relationship between the physical devices. The physical device or the slave physical device, and then the user clicks the main physical device button or the slave physical device button in the interface on the terminal interface, and then pops up a corresponding interface, which is used to instruct the user to obtain the device identifier of the master physical device or the slave physical device. .
  • some embodiments of the present disclosure provide two ways to obtain the device identifier of the physical device, which are respectively described in detail below:
  • Manner 1 For any physical device to be Bluetooth, the device ID of the physical device is obtained by scanning the authentication code of the physical device.
  • the terminal when the user clicks the primary physical device or the secondary physical device button in the terminal interface, the terminal generates a corresponding scanning interface, and instructs the user to align the scanning interface with the authentication graphic code of the primary physical device or the secondary physical device, thereby After obtaining the authentication graphic code of the primary physical device or the secondary physical device, the terminal may identify the primary physical device or the device identifier of the secondary physical device in the authentication graphic code.
  • the authentication graphic code is generated according to a media access control MAC address of the physical device, and the authentication graphic code includes a two-dimensional code or a barcode.
  • Manner 2 The physical device of any physical device to be Bluetooth is obtained by receiving the device code of the physical device input by the user.
  • the terminal when the user clicks the primary physical device or the physical physical device button in the terminal interface, the terminal generates a corresponding dialog box for instructing the terminal user to obtain the primary physical device or the physical device from the primary physical device or the physical device body.
  • the device code of the device is input into the corresponding dialog box.
  • the terminal obtains the device identifier of the primary physical device or the secondary physical device and its corresponding identity.
  • mapping between the primary physical device and the secondary physical device For details, refer to Table 1 for the mapping between the primary physical device and the secondary physical device.
  • the mapping between the primary physical device and the three physical devices is used as an example:
  • the Bluetooth networking policy can be determined according to the correspondence.
  • the terminal After receiving the Bluetooth networking policy selection command, the terminal sends the selected Bluetooth networking policy to the network server, thereby remotely controlling the Bluetooth networking relationship between the primary physical device and the secondary physical device, and the network server will be The selected Bluetooth networking policy is sent to the primary physical device.
  • the method further includes: transmitting, to the network server, the correspondence between the established primary physical device and the secondary physical device.
  • the network server can store and back up the correspondence between the primary physical device and the secondary physical device.
  • the terminal pre-establishes a Bluetooth networking policy list, where the Bluetooth networking policy list includes at least one Bluetooth networking policy, and the Bluetooth networking policy is based on the user in advance.
  • the registered primary physical device and the corresponding relationship between the physical device are input or selected; after the Bluetooth networking policy list is established, the Bluetooth networking policy selection instruction is received; and then the Bluetooth networking policy selection command is selected according to the Bluetooth networking policy selection command.
  • the Bluetooth networking policy is sent to the network server, and is forwarded by the network server to the primary physical device, where the Bluetooth networking policy is used to trigger the primary physical device to adjust the Bluetooth networking relationship between the Bluetooth physical device and the secondary physical device.
  • the Bluetooth networking relationship between the primary physical device and the secondary physical device can be remotely controlled, and the pairing between the primary and secondary physical devices can be realized through remote operation; in addition, the primary physical medium can be flexibly configured due to different Bluetooth networking policies. Improve the user experience by the Bluetooth networking relationship between the device and the slave physical device.
  • FIG. 3a is another schematic flowchart of a method for controlling a Bluetooth networking between physical devices according to the disclosure, which may include the following steps S21-S22.
  • the Bluetooth networking policy is selected by the user from a list of Bluetooth networking policies pre-established by the terminal and sent to the network server, where the Bluetooth networking policy list includes at least one Bluetooth networking policy.
  • the Bluetooth networking policy included in the Bluetooth networking policy list is input or selected by the user according to the correspondence between the pre-registered primary physical device and the secondary physical device.
  • the Bluetooth networking policy is input or selected by the user according to the correspondence between the primary physical device and the secondary physical device.
  • the primary physical device 1 and the three secondary physical devices have corresponding relationships, and the secondary physical devices are respectively The slave physical device 11, the slave physical device 12, and the slave physical device 13.
  • the Bluetooth networking policy received by the primary physical device 1 is to establish a communication connection relationship with the secondary physical device 12, and may be established according to the Bluetooth networking policy and the correspondence between the primary physical device 1 and the three secondary physical devices.
  • the communication connection from the physical device 12 is disconnected, and the communication connection with the slave physical device 11 and the slave physical device 13 is disconnected. Therefore, the master physical device can automatically connect or disconnect the Bluetooth networking relationship between the slave and the slave physical device according to the Bluetooth networking policy, and the user does not need to manually operate the master physical device to implement the Bluetooth networking relationship with the slave physical device. Easy to operate and improve user experience.
  • the Bluetooth networking policy includes device identifiers of all slave physical devices that need to adjust a Bluetooth networking relationship.
  • the Bluetooth networking relationship with the slave physical device may be adjusted according to the method shown in FIG. 3b, and the following steps S221-S223 may be included.
  • the device identifiers of all the slave devices that need to adjust the Bluetooth networking relationship included in the Bluetooth networking policy are MAC1, MAC2, and MAC3, respectively, and the three device identifiers are combined into the first device identifier set, that is, [ MAC1, MAC2, MAC3].
  • the primary physical device can scan the device identifiers of all the slave physical devices in the coverage of the signal.
  • the device identifiers of the slave physical devices scanned by the master physical device are MAC1, MAC3, MAC4, and MAC5, and the four device identifiers are combined.
  • the set of two device identifiers is [MAC1, MAC3, MAC4, MAC5].
  • the first device may be determined.
  • the same device identifiers included in the identifier set and the second device identifier set are MAC1 and MAC3, and the master physical device establishes a communication connection with the slave physical device corresponding to the device identifiers MAC1 and MAC3, respectively, and disconnects them from MAC4 and MAC5. The communication connection from the physical device.
  • the secondary physical device corresponding to the MAC2 is not found. The possible reason is that the secondary physical device corresponding to the MAC2 is faulty or corresponds to the MAC2. A change in the location of the physical device results in it not being within the signal coverage of the primary physical device.
  • the primary physical device adjusts the Bluetooth networking between the physical device and the secondary device according to the Bluetooth networking policy after receiving the Bluetooth networking policy delivered by the network server.
  • a relationship wherein the Bluetooth networking policy is selected by the user from a list of Bluetooth networking policies pre-established by the terminal and sent to the network server, where the Bluetooth networking policy list includes at least one Bluetooth networking policy.
  • the Bluetooth networking policy included in the Bluetooth networking policy list is input or selected by the user according to the correspondence between the pre-registered primary physical device and the secondary physical device, thereby implementing the primary physical device according to the Bluetooth networking policy. Flexibly adjust the Bluetooth networking relationship between it and the physical device, and simplify the pairing process with the slave physical device to improve the user experience.
  • the Bluetooth networking policy is further based on the embodiment shown in FIG. 3a.
  • the Bluetooth networking mode includes automatic connection, or manual connection, or connection by time.
  • the present disclosure also introduces an implementation process of adjusting the Bluetooth networking relationship with the slave physical device according to different Bluetooth networking policies, which are respectively described in detail below:
  • FIG. 4a is a schematic flowchart of adjusting the Bluetooth networking relationship between the slave and the slave device in the Bluetooth networking mode, which may include the following steps S31-S37.
  • the Bluetooth networking policy includes a device identifier and a Bluetooth networking mode of all the slave physical devices that need to adjust the Bluetooth networking relationship, and the Bluetooth networking mode is a manual connection mode.
  • the device identifiers of all the slave physical devices that need to adjust the Bluetooth networking relationship included in the Bluetooth networking policy are MAC1, MAC2, and MAC3, respectively.
  • the device identifiers of the three slave physical devices included in the Bluetooth networking policy in step S31 are combined into a first device identifier set, that is, [MAC1, MAC2, MAC3].
  • the primary physical device scans the device identifiers of all the slave physical devices in the coverage of the signal.
  • the device identifiers of the slave physical devices scanned by the master physical device are MAC1, MAC3, MAC4, and MAC5, and form a second device identifier set, that is, [ MAC1, MAC3, MAC4, MAC5].
  • the primary physical device After determining, by the Bluetooth networking policy, the Bluetooth networking mode is manually connected, the primary physical device needs to send a communication connection establishment inquiry request to the network server, and the network server sends a communication connection establishment inquiry request to the terminal.
  • the terminal After receiving the communication connection establishment inquiry request sent by the primary physical device, the terminal displays to the user, and the user selects whether to establish a communication connection. After the user selects, the terminal detects the user's click operation to generate a corresponding communication connection establishment response message, and then The communication connection setup response message forwards the network server to the primary physical device.
  • step S36 Determine whether the response message is to agree to establish a communication connection, and if yes, perform step S37; otherwise, perform step S38.
  • the master physical device receives the communication connection establishment response message sent by the network server, determines whether the response message is to agree to establish a communication connection, and if yes, performs step S37; otherwise, performs step S38.
  • the same device identifiers included in the two device identifier sets are respectively: MAC1 and MAC3, when the result of the determination in step S36 is YES, the primary physical device establishes a communication connection with the slave physical device corresponding to the device identifiers MAC1 and MAC3, respectively, and disconnects the slave physical devices corresponding to MAC4 and MAC5, respectively. Communication connection.
  • step S36 When the result of the determination in step S36 is NO, the communication connection with the slave physical device corresponding to the device identifiers MAC1 and MAC3 is refused to be established, and the current connection state between the master physical device and the slave physical device is maintained.
  • FIG. 4b is a schematic diagram of a method for controlling a Bluetooth networking between physical devices provided in a Bluetooth networking mode according to a time connection, and may include the following steps S41-S46.
  • the Bluetooth networking policy in the method for controlling the Bluetooth networking between the physical devices further includes the networking time period.
  • the networking time period may be any time period of [0, 24] hours, or may be any time period of [1, 30] or [1, 31] days, or may be two actual segments The combination.
  • the networking time period is [13, 16] hours or [1, 10] days, or [13, 16] hours in [1, 10] days.
  • the embodiment shown in Fig. 4b is described by taking the networking time period as [13, 16] hours as an example.
  • step S31 For specific implementation, refer to the description of step S31, and the repeated points are not described again.
  • the first device identifier set determined by the primary physical device is [MAC1, MAC2, MAC3].
  • the determined second device identifier set is [MAC1, MAC3, MAC4, MAC5].
  • step S44 Determine, according to the networking time period, whether the networking start time arrives. If yes, execute step S45; otherwise, perform step S46.
  • step S45 Since the networking time period is [13, 16] hours, the primary physical device needs to determine whether the current time is 13 points. If yes, step S45 is performed. Otherwise, step S46 is performed.
  • step S45 is also performed.
  • step 37 when the result of the determination in step S44 is YES, the communication connection with the slave physical device corresponding to the device identifiers MAC1 and MAC3 is established, and the communication of the slave physical device corresponding to MAC4 and MAC5 is respectively disconnected. connection.
  • step S44 When the result of the determination in step S44 is negative, the communication connection with the slave physical device corresponding to the device identifiers MAC1 and MAC3 is refused, and the current connection state of the master physical device with the slave physical device is maintained.
  • the method further comprises S47-S49.
  • step S47 Determine, according to the networking time period, whether the networking end time is reached. If yes, go to step S48; otherwise, go to step S49.
  • step S48 it is determined whether the current time is 16 points according to the networking time period [13, 16] hours. If yes, that is, the networking end time arrives, step S48 is performed, otherwise step S49 is performed.
  • the primary physical device adjusts the Bluetooth networking relationship between the physical device and the secondary device according to the Bluetooth networking policy, if the Bluetooth networking mode is manual.
  • the primary physical device sends a communication connection establishment inquiry request to the terminal through the network server when adjusting the Bluetooth networking relationship between the physical device and the slave physical device, and establishes a communication connection by establishing a response message of the communication connection fed back by the terminal through the network server.
  • Adjusting the Bluetooth networking relationship with the slave network device if the Bluetooth networking mode is time-based, the master physical device adjusts the Bluetooth networking relationship between the slave and the slave device according to the networking time. The segment determines whether the network start time is reached or whether the network end time is reached. If yes, adjust the Bluetooth networking relationship between the network and the slave device. Therefore, the flexible configuration is implemented according to the Bluetooth networking policy. It has a Bluetooth networking relationship with the slave physical device.
  • the present disclosure further provides a control device for a Bluetooth networking between physical devices. Since the principle of solving the problem is similar to the Bluetooth networking method between physical devices, the implementation of the foregoing device may refer to the implementation of the method. The repetitions are not repeated here.
  • FIG. 5 is a schematic structural diagram of a device for controlling a Bluetooth networking between physical devices according to the present disclosure.
  • the control device includes an establishing unit 51, a receiving unit 52, and a transmitting unit 53.
  • the establishing unit 51 is configured to pre-establish a Bluetooth networking policy list, where the Bluetooth networking policy list includes at least one Bluetooth networking policy, where the Bluetooth networking policy is based on a pre-registered primary physical device and a secondary physical device. The correspondence between the inputs is entered or selected.
  • the receiving unit 52 is configured to receive a Bluetooth networking policy selection instruction.
  • the sending unit 53 is configured to send, according to the Bluetooth networking policy selection instruction received by the receiving unit 52, the selected Bluetooth networking policy to the network server, and forward, by the network server, to the primary physical device, The Bluetooth networking policy is used to trigger the primary physical device to adjust a Bluetooth networking relationship between the primary physical device and the secondary physical device.
  • the establishing unit 51 includes: an obtaining subunit, a establishing subunit, and a sending subunit, where: the obtaining subunit is configured to respectively acquire a device identifier of each physical device to be Bluetooth configured and a corresponding identity identifier, configured to establish, between the master physical device and the slave physical device, according to the device identifier of the physical device to be Bluetooth configured and the corresponding identity identifier acquired by the acquiring subunit Corresponding relationship; and the sending subunit, configured to send the established correspondence between the primary physical device and the secondary physical device to the network server for storage.
  • the obtaining sub-unit is specifically configured to obtain, by using the authentication graphic code of the physical device, the device identifier of the physical device for the physical device to be Bluetooth-enabled, or for any Bluetooth-to-Bluetooth network.
  • the physical device obtains the device identifier of the physical device by receiving the device code of the physical device input by the user.
  • the authentication graphic code is generated according to a media access control MAC address of the physical device, and the authentication graphic code includes a two-dimensional code or a barcode.
  • the above parts are respectively divided into modules or units according to functions.
  • the functions of the various modules or units may be implemented in one or more software or hardware when implementing the present disclosure.
  • the control device of the Bluetooth inter-network between physical devices provided by the present disclosure may be disposed in the terminal, and the terminal determines the Bluetooth networking relationship between the physical devices.
  • FIG. 6 is a schematic structural diagram of another apparatus for controlling a Bluetooth networking between physical devices according to the present disclosure.
  • the device may include a receiving unit 61 and an adjusting unit 62.
  • the receiving unit 61 is configured to receive a Bluetooth networking policy that is sent by the network server, where the Bluetooth networking policy is selected by the user from a list of Bluetooth networking policies pre-established by the terminal and sent to the network server, where the Bluetooth group
  • the network policy list includes at least one Bluetooth networking policy, and the Bluetooth networking policy included in the Bluetooth networking policy list is input or selected by the user according to a correspondence between the pre-registered primary physical device and the secondary physical device;
  • the adjusting unit 62 is configured to adjust a Bluetooth networking relationship with the slave physical device according to the Bluetooth networking policy received by the receiving unit.
  • the Bluetooth networking policy includes a device identifier of all the slave physical devices that need to adjust the Bluetooth networking relationship.
  • the adjusting unit 62 specifically includes a determining subunit, a searching subunit, and a selecting subunit, where: the determining subunit is configured to adjust a device identifier of all the slave physical devices of the Bluetooth networking relationship as needed, and determine the first device.
  • the device identifier set is the same as any device identifier included in the first device identifier set, and the slave device corresponding to the selected device identifier establishes a communication connection.
  • the Bluetooth networking policy further includes a Bluetooth networking mode, where the Bluetooth networking mode includes automatic connection, or manual connection, or time connection.
  • the device further includes a sending unit and a determining unit, where the sending unit is configured to select, in the second device identifier set, the selecting subunit, if the Bluetooth networking mode is a manual connection Before the first device identifier set includes any device identifier that is the same device identifier, and before establishing a communication connection with the slave device corresponding to the selected device identifier, the network server sends a communication connection establishment query request to the terminal, and the receiving unit And the receiving unit is further configured to: receive, by the network server, a communication connection establishment response message; and the determining unit, configured to determine that the response message is to agree to establish a communication connection.
  • the Bluetooth networking policy further includes a networking time period, where the selecting subunit is specifically configured to be in the group according to the networking time period.
  • the device identifier that is the same as any device identifier included in the first device identifier set is selected from the second device identifier set, and the slave device corresponding to the selected device identifier establishes a communication connection.
  • the device further includes a release unit, wherein the release unit is configured to release a communication connection between the slave physical devices that have established a communication connection when the network end time arrives according to the networking time period.
  • the above parts are respectively divided into modules or units according to functions.
  • the functions of the various modules or units may be implemented in one or more software or hardware when implementing the present disclosure.
  • the inter-physical device Bluetooth networking control device provided by the embodiment shown in FIG. 6 of the present disclosure may be disposed in the primary physical device, and the primary physical device modulates the Bluetooth group between the physical device and the secondary device according to the Bluetooth networking policy determined by the terminal. Network relationship.
  • FIG. 7 is a schematic structural diagram of a control system of a Bluetooth networking between physical devices according to the present disclosure.
  • the control system includes a terminal 71, a network server 72, and at least one primary physical device 73, each primary physical device being coupled to at least one secondary physical device.
  • the terminal 71 is configured to pre-establish a Bluetooth networking policy list, where the Bluetooth networking policy list includes at least one Bluetooth networking policy, where the Bluetooth networking policy is based on a pre-registered primary physical device 73 and And inputting or selecting from a correspondence between the physical devices; receiving a Bluetooth networking policy selection instruction; and sending the selected Bluetooth networking policy to the network server 72 according to the Bluetooth networking policy selection instruction.
  • the terminal 71 includes a user equipment registration module, a user equipment management module, a scene switching module, and the like.
  • the device is configured to provide a visualized operation page for the user to interact with the user.
  • the user device registration module is used to indicate the registration of the physical device, and the correspondence between the primary physical device 73 and the secondary physical device is established after the registration.
  • the user equipment management module is used to manage each physical device. If the terminal 71 receives the primary physical device 73 and forwards it through the network server 72, and adds a number of secondary physical devices within the signal coverage range, the user in the terminal 71
  • the device registration module registers the plurality of slave physical devices, and then the user device management module updates the correspondence between the master physical device 73 and the slave network device.
  • the scenario switching module is configured to manage a Bluetooth networking policy.
  • the terminal 71 also needs to send the correspondence between the primary physical device and the secondary physical device and the Bluetooth networking policy list set in the terminal 71 to the network server 72, and the network server 72 performs backup and delivery to the primary physical device 73.
  • the network server 72 is configured to receive the selected Bluetooth networking policy sent by the terminal, and forward the Bluetooth networking policy to the primary physical device 73.
  • the network server 72 includes a device management module, a user management module, a service setting module, and a data transceiving conversion module.
  • the data transceiving and converting module is configured to receive the data information sent by the at least one main physical device 73, or receive the control information sent by the terminal 71, or send the specific data information to the terminal 71, or send the specific information to the corresponding main physical device 73. Data information or control information or downlink orientation information, and the like.
  • the master physical device 73 is configured to receive a Bluetooth networking policy delivered by the network server 72, and adjust a Bluetooth networking relationship with the slave physical device according to the Bluetooth networking policy.
  • the primary physical device 73 includes a digital signal transceiver module, a network communication module, a control module, and a power module.
  • the digital signal transceiver module is configured to exchange data information with the network server 72 or interact with data information from the physical device; the control module is used to control the admission of the physical device; the power module is used as the primary physics.
  • the device is powered; the network communication module is used to communicate with a remote network server to receive or transmit network signals.
  • the terminal 71 sends a new Bluetooth networking policy to the network server 72 for updating and storage, and then the network server 72 sends the new Bluetooth networking policy to the primary physical device 73.
  • the physical device refreshes its built-in control module to obtain a new Bluetooth networking policy, and then adjusts the Bluetooth networking relationship with the slave physical device according to the new Bluetooth networking policy.
  • the slave physical device includes a network communication module, a power module, and a control module, and the network communication module is configured to send the device identifier of the device to the master physical device 73, or send the uplink orientation information to the master physical device 73 or the receiver.
  • the power module is used to power the physical device.
  • the primary physical device may be a primary Bluetooth device (primary device), the secondary physical device may be a secondary Bluetooth device (slave device), and the primary device further includes a Bluetooth module, and the Bluetooth module is configured to scan the signal coverage range thereof.
  • the slave device is also used to pair with the slave device.
  • the master device may also be configured to download the pairing relationship of the current master-slave device from the network server 72 or send the pairing relationship between the master-slave device to the network server 72; the master device is also used to control the admission of the slave device, and the slave device The device performs Bluetooth information interaction and data signal interaction with the web server 72.
  • the terminal 71 is specifically configured to separately acquire a device identifier of a physical device to be Bluetooth-enabled network and a corresponding identity identifier thereof; and obtain, according to the obtained device identifier of the physical device to be Bluetooth-enabled network A corresponding identity identifies a correspondence between the primary physical device 73 and the secondary physical device.
  • the terminal 71 is further configured to send a correspondence between the established primary physical device 73 and the secondary physical device to the network server 72;
  • the network server 72 is further configured to store a correspondence between the primary physical device 73 and the secondary physical device that are sent by the terminal.
  • the terminal 71 is specifically configured to obtain, by using a physical device that is to be configured in the Bluetooth network, a device identifier of the physical device by scanning an authentication graphic code of the physical device, or for any physical network to be Bluetooth.
  • the device obtains the device identifier of the physical device by receiving a device code of the physical device input by the user.
  • the authentication graphic code is generated according to a media access control MAC address of the physical device, and the authentication graphic code includes a two-dimensional code or a barcode.
  • the Bluetooth networking policy includes a device identifier of all slave physical devices that need to adjust a Bluetooth networking relationship.
  • the primary physical device 73 is specifically configured to adjust, according to requirements, the device identifiers of all the slave physical devices of the Bluetooth networking relationship, determine the first device identifier set, search for all the slave physical devices within the coverage of the signal, and determine the found slaves.
  • the device identifier of the physical device constitutes a second device identifier set; and selects, from the second device identifier set, the same device identifier as any one of the device identifiers included in the first device identifier set, and the slave physical device corresponding to the selected device identifier
  • the device establishes a communication connection.
  • the Bluetooth networking policy further includes a Bluetooth networking mode, where the Bluetooth networking mode includes automatic connection, or manual connection, or time connection.
  • the primary physical device 73 is specifically configured to: if the Bluetooth networking mode is a manual connection, select, from the second device identity set, a device that is the same as any device identifier included in the first device identity set. Identifying, before establishing a communication connection from the physical device corresponding to the selected device identifier, transmitting a communication connection establishment inquiry request to the network server 72; and receiving the communication connection establishment response message forwarded by the network server 72; The response message is to agree to establish a communication connection.
  • the master physical device 73 receives the downlink control command sent by the network server 72, and responds according to the control command, where the control command includes a device connection push notification, a device disconnection push notification, a policy change notification, and device management. Notice.
  • the network server 72 is specifically configured to send the communication connection establishment query request to the terminal 71, and receive the communication connection establishment response message sent by the terminal 71, and forward the communication connection establishment response message to the primary physical device. 73.
  • the terminal 71 is specifically configured to receive the communication connection establishment query request sent by the network server 72, and send the communication connection establishment response message to the network server 72.
  • the primary physical device 73 is specifically configured to: if the Bluetooth networking mode is connected by time, the Bluetooth networking policy further includes a networking time period; and according to the networking time period, When the network start time arrives, the device identifier that is the same as any device identifier included in the first device identifier set is selected from the second device identifier set, and the slave device establishes a communication connection corresponding to the selected device identifier. And being further configured to release, according to the networking time period, a communication connection between the slave physical devices that have established a communication connection when the network end time arrives.
  • the terminal pre-establishes a Bluetooth networking policy list, where the Bluetooth networking policy list includes at least one Bluetooth networking policy, the Bluetooth group
  • the network policy is input or selected by the user according to the correspondence between the pre-registered primary physical device and the secondary physical device; after the Bluetooth networking policy list is established, the Bluetooth networking policy selection instruction is received; and according to the Bluetooth networking policy Selecting an instruction to send the selected Bluetooth networking policy to the network server, and forwarding, by the network server, the primary physical device, after receiving the Bluetooth networking policy delivered by the network server, the primary physical device according to the Bluetooth
  • the networking policy adjusts the Bluetooth networking relationship between the physical device and the slave device.
  • the Bluetooth networking relationship between the primary physical device and the secondary physical device can be remotely controlled.
  • the pairing between the primary and secondary physical devices can also be implemented through remote operations.
  • FIG. 8 is a schematic structural diagram of a Bluetooth networking control device between physical devices according to the present disclosure.
  • the apparatus includes a first processor 800, a first memory 810, a first user interface 820, and a bus interface, wherein the first processor 800, the first memory 810, and the first user interface 820 communicate with each other through the bus interface,
  • the first processor 800 is configured to read a program in the first memory 810 to control the device to perform the following process: pre-establishing a Bluetooth networking policy list, where the Bluetooth networking policy list includes at least one Bluetooth networking policy The Bluetooth networking policy is input or selected by the user according to a correspondence between the pre-registered primary physical device and the secondary physical device; receiving a Bluetooth networking policy selection instruction; and selecting an instruction according to the Bluetooth networking policy
  • the selected Bluetooth networking policy is sent to the network server, and is forwarded by the network server to the primary physical device, where the Bluetooth networking policy is used to trigger the primary physical device to adjust the Bluetooth group between the primary physical device and the secondary physical device. Network relationship.
  • the bus structure may include any number of interconnected buses and bridges, specifically linked by one or more processors represented by the first processor 800 and various circuits of the memory represented by the first memory 810.
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • the first user interface 820 may also be an interface capable of externally connecting to a required device, including but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
  • the first processor 800 is responsible for managing the bus architecture and the usual processing, and the first memory 810 can store data used by the first processor 800 when performing operations.
  • the Bluetooth networking control device After receiving the Bluetooth networking policy selection command, the Bluetooth networking control device between the physical devices shown in FIG. 8 sends the selected Bluetooth networking policy to the network server, thereby realizing remote control of the primary physical device and the secondary physical device. In the Bluetooth networking relationship, the network server sends the selected Bluetooth networking policy to the primary physical device.
  • the first processor 800 is further configured to read a program in the first memory 810 to control the device to perform the following process: sending a correspondence between the established primary physical device and the secondary physical device to the Network server storage. Thereby, the network server can store and back up the correspondence between the primary physical device and the secondary physical device.
  • the control device of the Bluetooth networking between physical devices may be a device, such as a terminal, that performs the method for controlling the Bluetooth networking between physical devices shown in FIG. 1 above.
  • the control device can remotely control the Bluetooth networking relationship between the primary physical device and the secondary physical device, and can also perform pairing between the primary and secondary physical devices through remote operations.
  • the primary physics can be flexibly configured due to different Bluetooth networking policies. Improve the user experience by the Bluetooth networking relationship between the device and the slave physical device.
  • FIG. 9 is a schematic structural diagram of a Bluetooth networking control device between physical devices according to the present disclosure.
  • the apparatus includes a second processor 900, a second memory 910, a second user interface 920, and a bus interface, wherein the second processor 900, the second memory 910, and the second user interface 920 can pass through the bus
  • the interfaces are in communication with each other, and the second processor 900 is configured to read a program in the first memory 910 to control the device to perform the following process: receiving a Bluetooth networking policy delivered by the network server, where the Bluetooth networking policy And selecting, by the user, the Bluetooth networking policy list that is pre-established by the terminal, the Bluetooth networking policy list includes at least one Bluetooth networking policy, and the Bluetooth network policy list includes Bluetooth.
  • the networking policy is input or selected by the user according to the correspondence between the pre-registered primary physical device and the secondary physical device. According to the Bluetooth networking policy, the Bluetooth networking relationship with the secondary physical device is adjusted.
  • the bus structure may include any number of interconnected buses and bridges, specifically linked by one or more processors represented by the second processor 900 and various circuits of the memory represented by the second memory 910.
  • the bus architecture can also link various other circuits such as peripherals, voltage regulators, and power management circuits, which are well known in the art and, therefore, will not be further described herein.
  • the bus interface provides an interface.
  • the second user interface 920 may also be an interface capable of externally connecting the required devices, including but not limited to a keypad, a display, a speaker, a microphone, a joystick, and the like.
  • the second processor 900 is responsible for managing the bus architecture and general processing, and the second memory 910 can store data used by the second processor 900 when performing operations.
  • the physical device-to-intermediate Bluetooth networking control device may be a device, such as a primary physical device, that performs the physical device-to-physical Bluetooth networking control method shown in FIG. 3 above. Therefore, the primary physical device can flexibly adjust the Bluetooth networking relationship between the primary physical device and the secondary physical device according to the Bluetooth networking policy, and simplify the pairing process between the primary physical device and the secondary physical device to improve the user experience.
  • the inter-physical device Bluetooth networking control apparatus and system provided by the embodiments of the present application can be implemented by a computer program.
  • Those skilled in the art should be able to understand that the foregoing module division manner is only one of a plurality of module division manners. If the division into other modules or no division modules, as long as the Bluetooth networking control device and system between the physical devices have the above functions, It should be within the scope of this application.
  • embodiments of the present disclosure can be provided as a method, system, or computer program product. Accordingly, the present disclosure may take the form of an entirely hardware embodiment, an entirely software embodiment, or a combination of software and hardware aspects. Moreover, the present disclosure may take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) including computer usable program code.
  • computer-usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • the computer readable memory referred to in this disclosure may be any of volatile memory, nonvolatile memory, transient memory, or non-transitory memory.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.

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Abstract

本公开公开了一种物理设备间蓝牙组网控制方法、装置和系统。该方法包括:预先建立蓝牙组网策略列表,蓝牙组网策略列表中包含至少一个蓝牙组网策略,蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;接收蓝牙组网策略选择指令;以及,根据蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由网络服务器转发给主物理设备,蓝牙组网策略用于触发主物理设备调整其与从物理设备之间的蓝牙组网关系。

Description

物理设备间蓝牙组网的控制方法、装置和系统
相关申请的交叉引用
本申请主张在2017年3月7日在中国提交的中国专利申请号No.201710131562.3的优先权,其全部内容通过引用包含于此。
技术领域
本公开涉及物联网技术领域,尤其涉及一种物理设备间蓝牙组网的控制方法、装置和系统。
背景技术
蓝牙无线技术具有发射功率低、成本低和短距离通信的特点,可用于取代电子设备之间的电缆,并可通过短距离的无线链路构建临时网络连接,不需要固定网络基础设施的支持。多个蓝牙设备组网连接成一个皮网(Piconet),参考图1所示的皮网结构图。在皮网中的蓝牙设备,只有一个主设备(Master,如图1中的设备10)和至少一个从设备(Slave,如图1中的设备11),其中,主设备是组网连接主动发起连接请求的蓝牙设备。相关的蓝牙组网中,针对每一从设备,主设备与该从设备的交互过程为:
步骤1:用户操作主设备,由主设备发起呼叫,并查找主设备信号覆盖范围内的从设备;
步骤2:主设备在查找到从设备后,选择预接入的从设备,输入PIN(个人识别码)码;以及
步骤3:待对从设备校验通过并实现配对后,成功建立双向链路,且从设备可以记录主设备的信任信息;至此,主从设备可以开始进行双向通信。
但上述技术方案中存在如下缺点:(1)无法远程操作主从设备间的组网关系;(2)主从设备进行配对时均需要在主设备上进行操作,这需要主设备上有操作页面或需要借助其他应用实现主从设备配对,灵活性较低;以及无法脱离主从设备实现对主从设备间的组网变更;(3)无法实现多种灵活的组网策略和无法根据不同的日期和时间自动切换不同的组网策略;(4)无法实 现对主从设备间组网关系的备份、编辑或恢复。
综上所述,如何简化主从设备配对操作流程、脱离主设备完成主从设备间配对操作、远程实现对主从设备蓝牙组网关系的编辑备份等操作、灵活配置主从设备蓝牙组网策略以及根据时间的不同灵活切换蓝牙组网策略是亟待解决的技术问题之一。
发明内容
本公开提供一种物理设备间蓝牙组网控制方法、装置和系统,用于解决相关技术中存在的配置不够灵活问题。
第一方面,本公开提供一种物理设备间蓝牙组网控制方法,包括:预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;接收蓝牙组网策略选择指令;以及根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,所述蓝牙组网策略用于触发所述主物理设备调整其与从物理设备之间的蓝牙组网关系。
可选地,按照以下方法建立主物理设备和从物理设备之间的对应关系:分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识;根据获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备和从物理设备之间的对应关系;以及将建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器存储。
可选地,按照以下方法获得物理设备的设备标识:针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识;或者针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
可选地,所述认证图形码是根据物理设备的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
在第二方面,本公开提供一种物理设备间蓝牙组网控制方法,包括:接收网络服务器下发的蓝牙组网策略,所述蓝牙组网策略为用户从终端预先建 立的蓝牙组网策略列表中选择并发送给所述网络服务器的,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略列表中包含的蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;以及,根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
可选地,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识。根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系,具体包括:根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合;查找信号覆盖范围内的所有从物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合;以及从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
可选地,所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。
可选地,如果所述蓝牙组网方式为手动连接,则从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,还包括:经网络服务器向终端发送通信连接建立询问请求;接收终端经网络服务器转发的通信连接建立响应消息;以及确定所述响应消息为同意建立通信连接。
可选地,如果所述蓝牙组网方式为按时间连接,则所述蓝牙组网策略中还包括组网时间段。从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,具体包括:根据所述组网时间段,在组网开始时间到达时,从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。所述方法还包括:根据所述组网时间段,在组网结束时间到达时,释放与已建立通信连接的从物理设备之间的通信连接。
在第三方面,本公开提供一种物理设备间蓝牙组网控制装置,包括:建立单元,用于预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至 少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;接收单元,用于接收蓝牙组网策略选择指令;以及发送单元,用于根据所述接收单元接收到的所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,所述蓝牙组网策略用于触发所述主物理设备调整其与从物理设备之间的蓝牙组网关系。
可选地,所述建立单元具体包括获取子单元、建立子单元和发送子单元,其中:所述获取子单元,用于分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识;所述建立子单元,用于根据所述获取子单元获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备和从物理设备之间的对应关系;所述发送子单元,用于将建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器存储。
可选地,所述获取子单元,具体用于针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识;或者针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
可选地,所述认证图形码是根据物理设备的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
在第四方面,本公开提供一种物理设备间蓝牙组网的控制装置,包括:接收单元,用于接收网络服务器下发的蓝牙组网策略,所述蓝牙组网策略为用户从终端预先建立的蓝牙组网策略列表中选择并发送给所述网络服务器的,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略列表中包含的蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;以及调整单元,用于根据所述接收单元接收到的所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
可选地,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识;所述调整单元,具体包括确定子单元、查找子单元和选择子单元,其中:所述确定子单元,用于根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合;所述查找子单元,用于查找信 号覆盖范围内的所有从物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合;并且所述选择子单元,用于从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
可选地,所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。
可选地,所述装置还包括发送单元和确定单元,其中所述发送单元,用于如果所述蓝牙组网方式为手动连接,则在所述选择子单元从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,经网络服务器向终端发送通信连接建立询问请求;所述接收单元,还用于接收终端经网络服务器转发的通信连接建立响应消息;所述确定单元,用于确定所述响应消息为同意建立通信连接。
可选地,如果所述蓝牙组网方式为按时间连接,则所述蓝牙组网策略中还包括组网时间段。所述选择子单元具体用于根据所述组网时间段,在组网开始时间到达时,从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接;所述装置,还包括释放单元,其中所述释放单元用于根据所述组网时间段,在组网结束时间到达时,释放与已建立通信连接的从物理设备之间的通信连接。
在第五方面,本公开提供一种物理设备间蓝牙组网的控制系统,包括:终端、网络服务器以及至少一个主物理设备,每一主物理设备与至少一个从物理设备连接,其中所述终端,用于预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;接收蓝牙组网策略选择指令;根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器;所述网络服务器,用于接收终端发送的被选择的蓝牙组网策略;将所述蓝牙组网策略转发给所述主物理设备;以及所述主物理设备,用于接收网络服务器下发的蓝牙组网策略;以及根据所述蓝牙组网 策略,调整与从物理设备之间的蓝牙组网关系。
可选地,所述终端,具体用于分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识;根据获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备和从物理设备之间的对应关系;以及将建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器。以及所述网络服务器,还用于存储所述终端发送的主物理设备和从物理设备之间的对应关系。
可选地,所述终端,具体用于针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识;或者针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
可选地,所述认证图形码是根据物理设备的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
可选地,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识。所述主物理设备,具体用于根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合;查找信号覆盖范围内的所有从物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合;从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
可选地,所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。
可选地,所述主物理设备,具体用于如果所述蓝牙组网方式为手动连接,则从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,向所述网络服务器发送通信连接建立询问请求;以及接收网络服务器转发的所述通信连接建立响应消息;并确定所述响应消息为同意建立通信连接。所述网络服务器,具体用于将所述通信连接建立询问请求发送给终端;以及接收终端发送的通信连接建立响应消息,并将所述通信连接建立响应消息转发给所述主物理设备。所述终端,具体用于接收所述网络服务器发送的所述通 信连接建立询问请求,并将所述通信连接建立响应消息发送给所述网络服务器。
可选地,所述主物理设备,具体用于如果所述蓝牙组网方式为按时间连接,则所述蓝牙组网策略中还包括组网时间段;以及根据所述组网时间段,在组网开始时间到达时,从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接;以及还用于根据所述组网时间段,在组网结束时间到达时,释放与已建立通信连接的从物理设备之间的通信连接。
在第六方面,本公开提供了一种物理设备间蓝牙组网的控制装置,包括:处理器;存储器,用于存储程序和数据;以及总线接口,所述处理器和所述存储器通过所述总线接口彼此通信,其中所述处理器用于读取在所述存储器中存储的所述程序和数据,以执行根据第一方面所述的方法。
在第七方面,本公开提供了一种物理设备间蓝牙组网的控制装置,包括:处理器;存储器,用于存储程序和数据;以及总线接口,所述处理器和所述存储器通过所述总线接口彼此通信,其中所述处理器用于读取在所述存储器中存储的所述程序和数据,以执行根据第二方面所述的方法。
在第八方面,本公开提供了一种非易失性存储介质,包括:在所述非易失性存储介质上存储的程序和数据,其中,当所述程序和数据由处理器执行时,所述处理器实现根据第一方面所述的方法。
在第九方面,本公开提供了一种非易失性存储介质,包括:在所述非易失性存储介质上存储的程序和数据,其中,当所述程序和数据由处理器执行时,所述处理器实现根据第二方面所述的方法。
本公开提供的物理设备间蓝牙组网控制方法、装置和系统,通过预先建立的蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,使得主物理设备根据蓝牙组网策略,灵活调整其与从物理设备之间的蓝牙组网关系,以及主物理设备接收网络服务器下发的蓝牙组网策略,实现了远程控制主物理设备与从物理设备之间的蓝牙组网关系,改变了相关技术中通过直接操作主物理设备控制其与从物理设备之间的蓝牙组网关系流程,而且简化了主从物理设备间配对流程,提高了用户体验。
本公开的其它特征和优点将在随后的说明书中阐述,并且,部分地从说明书中变得显而易见,或者通过实施本公开而了解。本公开的目的和其他优点可通过在所写的说明书、权利要求书、以及附图中所特别指出的结构来实现和获得。
附图说明
此处所说明的附图用来提供对本公开的进一步理解,构成本公开的一部分,本公开的示意性实施例及其说明用于解释本公开,并不构成对本公开的不当限定。在附图中:
图1为相关技术中主从设备的部署结构示意图;
图2a为本公开提供的物理设备间蓝牙组网的控制方法的流程示意图;
图2b为本公开提供的物理设备间蓝牙组网的控制方法中建立主物理设备和从物理设备之间的对应关系的流程示意图;
图3a为本公开提供的物理设备间蓝牙组网的控制方法的流程示意图;
图3b为本公开提供的物理设备间蓝牙组网的控制方法中调整与从物理设备的蓝牙组网关系的流程示意图;
图4a为本公开提供的蓝牙组网方式为手动连接下的物理设备间蓝牙组网的控制方法的流程示意图;
图4b为本公开提供的蓝牙组网方式为按时间连接下的物理设备间蓝牙组网的控制方法的流程示意图;
图5为本公开提供的物理设备间蓝牙组网的控制装置的结构示意图;
图6为本公开提供的物理设备间蓝牙组网的控制装置的结构示意图;
图7为本公开提供的物理设备间蓝牙组网的控制系统的结构示意图;
图8为本公开提供的物理设备间蓝牙组网控制装置的结构示意图;以及
图9为本公开提供的物理设备间蓝牙组网控制装置的结构示意图。
具体实施方式
本公开提供物理设备间蓝牙组网的控制方法、装置和系统,用于解决相关技术中存在的主从设备配对流程复杂、无法实现远程控制主从设备的配对 操作以及配置不够灵活等问题。
本公开提供的物理设备间蓝牙组网的控制方法可应用于蓝牙设备间组网的控制流程。基于本公开提供的方法,灵活调整主从蓝牙设备间的蓝牙组网关系,且简化了主从蓝牙设备间的配对流程,提高了用户体验。
需要说明的是,以下结合说明书附图对本公开的可选实施例进行说明,应当理解,此处所描述的可选实施例仅用于说明和解释本公开,并不用于限定本公开,并且在不冲突的情况下,本公开中的实施例及实施例中的特征可以相互组合。
本公开的一些实施例提供的物理设备间蓝牙组网的控制方案的执行主体可以是终端,如智能手机和平板电脑等。
参考图2a,图2a为本公开提供的物理设备间蓝牙组网的控制方法的流程示意图。该物理设备间蓝牙组网的控制方法可以包括以下步骤S11-S13。
S11、预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的。
具体实施时,例如,主物理设备1与从物理设备11、从物理设备12和从物理设备13对应,终端将该对应关系显示给用户,用户可以根据该对应关系,从蓝牙组网策略列表中选择或输入蓝牙组网策略。根据主物理设备与从物理设备间蓝牙组网关系选择蓝牙组网策略,有效保证了主物理设备根据蓝牙组网策略灵活配置其与从物理设备间的蓝牙组网关系。
可选地,为了提高用户体验,本公开的一些实施例中提出终端与用户的交互界面上设置切换策略按键,该按键用户触发一键切换策略操作,用户在按下该按钮后,可以周期性的切换蓝牙组网策略,并将切换后的蓝牙组网策略发送给网络服务器,由网络服务器转发给主物理设备。
可选地,可以按照图2b所示的方法建立主物理设备和从物理设备之间的对应关系,图2b所示的方法可以包括以下步骤S111-S112。
S111、分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识。
具体实施时,所述物理设备的身份标识用于指示该物理设备是主物理设 备还是从物理设备,例如,在对物理设备进行注册时,用户根据物理设备间的相对位置关系,可以确定出主物理设备或从物理设备,然后用户在终端界面上点击界面中的主物理设备按钮或从物理设备按钮,然后弹出相应的界面,该界面用于指示用户获取主物理设备或从物理设备的设备标识。
具体实施时,本公开的一些实施例提供了两种方式获得物理设备的设备标识,以下分别详细介绍之:
方式一:针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识。
具体实施时,在用户点击终端界面中的主物理设备或从物理设备按钮时,终端生成相应的扫描界面,指示用户将该扫描界面对准主物理设备或从物理设备的认证图形码,由此终端在获取主物理设备或从物理设备的认证图形码后,可以识别出该认证图形码中的主物理设备或从物理设备的设备标识。
可选地,所述认证图形码是根据物理设备的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
方式二:针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
具体实施时,在用户点击终端界面中的主物理设备或从物理设备按钮时,终端生成相应的对话框,用于指示终端用户从主物理设备或从物理设备本体上获取主物理设备或从物理设备的设备编码,然后将获取的设备编码输入到相应对话框中,至此,终端获取了主物理设备或从物理设备的设备标识及其对应的身份标识。
S112、根据获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备和从物理设备之间的对应关系。
具体实施时,建立的主物理设备和从物理设备之间的对应关系可以参考表1所示,以主物理设备和3个从物理设备建立对应关系为例进行说明:
表1
Figure PCTCN2018078012-appb-000001
Figure PCTCN2018078012-appb-000002
基于预先建立的主物理设备和从物理设备之间的对应关系,即可根据该对应关系确定蓝牙组网策略。
S12、接收蓝牙组网策略选择指令。
S13、根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,所述蓝牙组网策略用于触发所述主物理设备调整其与从物理设备之间的蓝牙组网关系。
终端在接收到蓝牙组网策略选择指令后,将被选择的蓝牙组网策略发送给网络服务器,由此可以实现远程控制主物理设备与从物理设备间的蓝牙组网关系,由网络服务器将被选择的蓝牙组网策略发送给主物理设备。
进一步地,所述方法还包括:将建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器存储。由此,网络服务器可以将所述主物理设备与从物理设备之间的对应关系进行存储备份。
本公开提供的物理设备间蓝牙组网的控制方法中,终端预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;在建立蓝牙组网策略列表之后,接收蓝牙组网策略选择指令;再根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,所述蓝牙组网策略用于触发所述主物理设备调整其与从物理设备之间的蓝牙组网关系,由此可以远程控制主物理设备与从物理设备之间的蓝牙组网关系,还可以通过远程操作实现主从物理设备间的配对;此外,由于蓝牙组网策略的不同,可以灵活配置主物理设备与从物理设备之间的蓝牙组网关系,提高用户体验。
如图3a所示,图3a为本公开提供的物理设备间蓝牙组网的控制方法的另一流程示意图,可以包括以下步骤S21-S22。
S21、接收网络服务器下发的蓝牙组网策略。
具体实施时,所述蓝牙组网策略为用户从终端预先建立的蓝牙组网策略列表中选择并发送给所述网络服务器的,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略列表中包含的蓝牙组网策略为用户根 据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的。
S22、根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
具体实施时,由于蓝牙组网策略是用户根据主物理设备与从物理设备之间的对应关系输入或选择的,例如,主物理设备1和3个从物理设备存在对应关系,从物理设备分别为从物理设备11、从物理设备12和从物理设备13。主物理设备1接收到的蓝牙组网策略为建立与从物理设备12的通信连接关系,则可以根据该蓝牙组网策略和主物理设备1和3个从物理设备之间的对应关系,建立与从物理设备12间的通信连接,并断开与从物理设备11和从物理设备13的通信连接。由此,主物理设备可以根据蓝牙组网策略,自动连接或断开其与从物理设备之间的蓝牙组网关系,无需用户手动操作主物理设备以实现其与从物理设备的蓝牙组网关系,操作简便,提高了用户体验。
可选地,为了进一步的理解本公开,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识。在执行步骤S22时,可以按照图3b所示的方法调整与从物理设备的蓝牙组网关系,可以包括以下步骤S221-S223。
S221、根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合。
具体实施时,例如蓝牙组网策略中包含的需要调整蓝牙组网关系的所有从物理设备的设备标识分别为MAC1、MAC2和MAC3,将这三个设备标识组成第一设备标识集合,即为[MAC1,MAC2,MAC3]。
S222、查找信号覆盖范围内的所有物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合。
主物理设备可以扫描其信号覆盖范围内的所有从物理设备的设备标识,如主物理设备自身扫描出的从物理设备的设备标识为MAC1、MAC3、MAC4和MAC5,将这四个设备标识组成第二设备标识集合,即为[MAC1,MAC3,MAC4,MAC5]。
S223、从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
具体实施时,根据步骤S221和步骤S222中分别确定的第一设备标识集合:[MAC1,MAC2,MAC3]和第二设备标识集合:[MAC1,MAC3,MAC4,MAC5],可以确定出第一设备标识集合与第二设备标识集合中包含的相同设备标识为MAC1和MAC3,则主物理设备将分别与设备标识为MAC1和MAC3对应的从物理设备建立通信连接,并断开其与MAC4和MAC5对应的从物理设备的通信连接。
需要说明的是,主物理设备在扫描其信号覆盖范围内的所有从物理设备时,MAC2对应的从物理设备没有被查找到,可能存在的原因是MAC2对应的从物理设备存在故障或MAC2对应的从物理设备的位置发生改变导致其不在主物理设备的信号覆盖范围内等。
本公开提供的物理设备间蓝牙组网控制方法中,主物理设备在接收到网络服务器下发的蓝牙组网策略后,根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系,其中,所述蓝牙组网策略为用户从终端预先建立的蓝牙组网策略列表中选择并发送给所述网络服务器的,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略列表中包含的蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的,由此,可以实现主物理设备根据蓝牙组网策略,灵活调整其与从物理设备之间的蓝牙组网关系,并简化了其与从物理设备之间的配对流程,提高用户体验。
为了更好的根据用户选择或输入的蓝牙组网策略,实现远程控制物理设备间的蓝牙组网关系,本公开在图3a所示的实施例的基础上,提出所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。此外,本公开还分别介绍了根据不同的蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系的实施过程,以下分别详细介绍之:
(1)蓝牙组网方式为手动连接
如图4a所示,图4a为本公开在蓝牙组网方式为手动连接下调整与从物理设备之间的蓝牙组网关系的流程示意图,可以包括以下步骤S31-S37。
S31、接收网络服务器下发的蓝牙组网策略。
具体实施时,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识和蓝牙组网方式,以及所述蓝牙组网方式为手动连接方式。例如,本次蓝牙组网策略中包含的需要调整蓝牙组网关系的所有从物理设备的设备标识分别为MAC1、MAC2和MAC3。
S32、根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合。
具体地,将步骤S31中蓝牙组网策略中包含的3个从物理设备的设备标识组成第一设备标识集合,即为:[MAC1,MAC2,MAC3]。
S33、查找信号覆盖范围内的所有物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合。
主物理设备扫描其信号覆盖范围内的所有从物理设备的设备标识,如主物理设备扫描出的从物理设备的设备标识为MAC1、MAC3、MAC4和MAC5,组成第二设备标识集合,即为[MAC1,MAC3,MAC4,MAC5]。
S34、经网络服务器向终端发送通信连接建立询问请求。
主物理设备在从蓝牙组网策略中确定出蓝牙组网方式为手动连接后,需要向网络服务器发送通信连接建立询问请求,网络服务器再将通信连接建立询问请求发送给终端。
S35、接收终端经网络服务器转发的通信连接建立响应消息。
终端在接收到主物理设备发送的通信连接建立询问请求后,显示给用户,由用户选择是否建立通信连接,待用户选择后,终端检测到用户的点击操作生成相应的通信连接建立响应消息,然后将该通信连接建立响应消息将网络服务器转发给主物理设备。
S36、判断所述响应消息是否为同意建立通信连接,如果是,则执行步骤S37;否则执行步骤S38。
主物理设备接收到网络服务器下发的通信连接建立响应消息,判断该响应消息是否为同意建立通信连接,如果是,则执行步骤S37;否则执行步骤S38。
S37、从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连 接。
具体实施时,如果根据第一设备标识集合[MAC1,MAC2,MAC3]和第二设备标识集合[MAC1,MAC3,MAC4,MAC5],确定出这两个设备标识集合包含的相同设备标识分别为:MAC1和MAC3,则在步骤S36判断结果为是时,主物理设备分别建立与设备标识为MAC1和MAC3对应的从物理设备的通信连接,并分别断开其与MAC4和MAC5对应的从物理设备的通信连接。
S38、从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,拒绝与被选择的设备标识对应的从物理设备建立通信连接。
在步骤S36判断结果为否时,拒绝建立与设备标识为MAC1和MAC3对应的从物理设备的通信连接,并保持主物理设备当前与从物理设备的连接状态不变。
(2)蓝牙组网方式为按时间连接
如图4b所示,图4b为本公开在蓝牙组网方式为按时间连接下提供的物理设备间蓝牙组网的控制方法的示意图,可以包括以下步骤S41-S46。
在蓝牙组网方式为按时间连接下,本公开的该实施例提供的物理设备间蓝牙组网的控制方法中的蓝牙组网策略还包括组网时间段。所述组网时间段可以为[0,24]小时中的任一时间段,也可以为[1,30]或[1,31]天中的任意时间段,还可以是这两个实际段的组合。例如,组网时间段为[13,16]小时或者[1,10]天,或者[1,10]天中的[13,16]小时。图4b所示的实施例以组网时间段为[13,16]小时为例进行说明。
S41、接收网络服务器下发的蓝牙组网策略。
具体实施时,参考步骤S31的描述,重复之处不再赘述。
S42、根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合。
具体实施时,参考步骤S32,主物理设备确定出的第一设备标识集合为[MAC1,MAC2,MAC3]。
S43、查找信号覆盖范围内的所有物理设备,并确定查找到的从物理设备 的设备标识组成第二设备标识集合。
参考步骤S33,确定出的第二设备标识集合为[MAC1,MAC3,MAC4,MAC5]。
S44、根据所述组网时间段,判断组网开始时间是否到达,如果是,则执行步骤S45;否则执行步骤S46。
由于所述组网时间段为[13,16]小时,主物理设备需判断当前时间是否为13点,如果是,则执行步骤S45。否则,执行步骤S46。
可选地,如果判断出当前时间为15点,在所述组网时间段内,则也执行步骤S45。
S45、从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
具体实施时,参考步骤37,在步骤S44判断结果为是时,建立与设备标识为MAC1和MAC3对应的从物理设备的通信连接,并分别断开其与MAC4和MAC5对应的从物理设备的通信连接。
S46、从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,拒绝与被选择的设备标识对应的从物理设备建立通信连接。
在步骤S44判断结果为否时,则拒绝建立与设备标识为MAC1和MAC3对应的从物理设备的通信连接,并保持主物理设备当前与从物理设备的连接状态不变。
可选地,所述方法还包括S47-S49。
S47、根据所述组网时间段,判断组网结束时间是否到达,如果是,则执行步骤S48;否则执行步骤S49。
具体实施时,根据所述组网时间段[13,16]小时,判断当前时间是否为16点,如果是,即组网结束时间到达,则执行步骤S48,否则执行步骤S49。
S48、释放与已建立通信连接的从物理设备之间的通信连接。
S49、从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,保持与被选择的设备标识对应的从物理设备建立通 信连接。
本公开的图4b提供的物理设备间蓝牙组网的控制方法中,主物理设备根据蓝牙组网策略的不同,分别调整其与从物理设备间的蓝牙组网关系,如果蓝牙组网方式为手动连接,则主物理设备在调整其与从物理设备间的蓝牙组网关系时,经网络服务器向终端发送通信连接建立询问请求,在终端经网络服务器反馈的通信连接建立响应消息为同意建立通信连接时,调整其与从网络设备的蓝牙组网关系;如果蓝牙组网方式为按时间连接,则主物理设备在调整其与从物理设备间的蓝牙组网关系时,需根据所述组网时间段,判断组网开始时间是否达到或者组网结束时间是否到达,如果是,则分别调整其与从物理设备间的蓝牙组网关系,由此,实现了根据蓝牙组网策略的不同,灵活配置其与从物理设备间的蓝牙组网关系。
基于同一发明构思,本公开还提供了一种物理设备间蓝牙组网的控制装置,由于上述装置解决问题的原理与物理设备间蓝牙组网方法相似,因此上述装置的实施可以参见方法的实施,重复之处不再赘述。
如图5所示,图5为本公开提供的物理设备间蓝牙组网的控制装置的结构示意图。该控制装置包括建立单元51、接收单元52和发送单元53。
建立单元51,用于预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的。接收单元52,用于接收蓝牙组网策略选择指令。发送单元53,用于根据所述接收单元52接收到的所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,所述蓝牙组网策略用于触发所述主物理设备调整其与从物理设备之间的蓝牙组网关系。
具体实施时,所述建立单元51,具体包括获取子单元、建立子单元和发送子单元,其中:所述获取子单元,用于分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识;所述建立子单元,用于根据所述获取子单元获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备和从物理设备之间的对应关系;以及所述发送子单元,用于将建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器存储。
可选地,所述获取子单元,具体用于针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识;或者针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
可选地,所述认证图形码是根据物理设备的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
为了描述的方便,以上各部分按照功能划分为各模块或单元分别描述。当然,在实施本公开时可以把各模块或单元的功能在同一个或多个软件或硬件中实现。例如,本公开提供的物理设备间蓝牙组网的控制装置可以设置于终端中,由终端确定物理设备间蓝牙组网关系。
如图6所示,图6为本公开提供的另一种物理设备间蓝牙组网的控制装置的结构示意图。该装置可以包括接收单元61和调整单元62。
接收单元61,用于接收网络服务器下发的蓝牙组网策略,所述蓝牙组网策略为用户从终端预先建立的蓝牙组网策略列表中选择并发送给所述网络服务器的,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略列表中包含的蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;以及调整单元62,用于根据所述接收单元接收到的所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
具体实施时,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识。所述调整单元62,具体包括确定子单元、查找子单元和选择子单元,其中:所述确定子单元,用于根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合;所述查找子单元,用于查找信号覆盖范围内的所有物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合;以及所示选择子单元,用于从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
可选地,所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。
进一步地,所述装置还包括发送单元和确定单元,其中所述发送单元, 用于如果所述蓝牙组网方式为手动连接,则在所述选择子单元从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,经网络服务器向终端发送通信连接建立询问请求,并且所述接收单元,还用于接收终端经网络服务器转发的通信连接建立响应消息;以及所述确定单元,用于确定所述响应消息为同意建立通信连接。
进一步地,如果所述蓝牙组网方式为按时间连接,则所述蓝牙组网策略中还包括组网时间段,其中所述选择子单元,具体用于根据所述组网时间段,在组网开始时间到达时,从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。所述装置还包括释放单元,其中所述释放单元,用于根据所述组网时间段,在组网结束时间到达时,释放与已建立通信连接的从物理设备之间的通信连接。
为了描述的方便,以上各部分按照功能划分为各模块或单元分别描述。当然,在实施本公开时可以把各模块或单元的功能在同一个或多个软件或硬件中实现。例如,本公开的图6所示的实施例提供的物理设备间蓝牙组网控制装置可以设置于主物理设备中,由主物理设备根据终端确定的蓝牙组网策略调制与从物理设备间蓝牙组网关系。
如图7所示,图7为本公开提供的物理设备间蓝牙组网的控制系统的结构示意图。该控制系统包括终端71、网络服务器72和至少一个主物理设备73,每一主物理设备与至少一个从物理设备连接。其中:所述终端71,用于预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备73和从物理设备之间的对应关系输入或选择的;接收蓝牙组网策略选择指令;根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器72。
具体实施时,终端71中包含用户设备注册模块、用户设备管理模块和场景切换模块等。经配置给用户提供可视化的操作页面实现与用户的交互,用户设备注册模块用于指示物理设备的注册,在注册后建立主物理设备73与从物理设备之间的对应关系。此外,用户设备管理模块用于管理各个物理设备, 如果终端71接收到主物理设备73经网络服务器72转发的、其信号覆盖范围内新增了若干个从物理设备,则由终端71中的用户设备注册模块对该若干个从物理设备进行注册,然后由用户设备管理模块更新主物理设备73与从网络设备之间的对应关系。所述场景切换模块用于管理蓝牙组网策略。终端71还需将主物理设备和从物理设备之间的对应关系以及终端71中设置的蓝牙组网策略列表发送给网络服务器72,由网络服务器72进行备份和下发给主物理设备73。
所述网络服务器72,用于接收所述终端发送的被选择的蓝牙组网策略,并且将所述蓝牙组网策略转发给所述主物理设备73。
具体实施时,网络服务器72包含设备管理模块、用户管理模块、业务设置模块和数据收发转换模块。其中,数据收发转换模块用于接收至少一个主物理设备73发送的数据信息,或者接收终端71发送的控制信息,或者向终端71发送特定的数据信息,或者向相应的主物理设备73发送特定的数据信息或者控制信息或下行定向信息等。
所述主物理设备73,用于接收网络服务器72下发的蓝牙组网策略;以及根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
具体实施时,所述主物理设备73包含数字信号收发模块、网络通讯模块、控制模块和电源模块。其中,数字信号收发模块用于与网络服务器72进行数据信息交互或者与从物理设备进行数据信息的交互;所述控制模块用于控制从物理设备的准入准出;电源模块用于为主物理设备供电;网络通讯模块用于与远程的网络服务器进行通讯,接收或发送网络信号。
此外,在蓝牙组网策略发生变化时,终端71将新的蓝牙组网策略发送给网络服务器72进行更新并存储,然后网络服务器72将该新的蓝牙组网策略发送给主物理设备73,主物理设备刷新其内置的控制模块获得新的蓝牙组网策略,然后根据新的蓝牙组网策略调整与从物理设备的蓝牙组网关系。
具体地,所述从物理设备包含网络通讯模块、电源模块和控制模块,网络通讯模块用于将自身的设备标识发送给主物理设备73,或者将上行定向信息发送给主物理设备73或接收主物理设备73发送的数据信息。电源模块用于为从物理设备供电。
可选地,所述主物理设备可以为主蓝牙设备(主设备),从物理设备可以为从蓝牙设备(从设备),则主设备还包括蓝牙模块,蓝牙模块用于扫描其信号覆盖范围内的从设备,以及用于与从设备进行配对。主设备还可以用于从网络服务器72下载当前主从设备的配对关系或者将主从设备之间的配对关系发送给网络服务器72;主设备还用于控制从设备的准入准出,与从设备进行蓝牙信息交互以及与网络服务器72进行数据信号交互。
可选地,所述终端71,具体用于分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识;根据获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备73和从物理设备之间的对应关系。
具体实施时,所述终端71,还用于将建立的主物理设备73和从物理设备之间的对应关系发送给所述网络服务器72;以及
所述网络服务器72,还用于存储所述终端发送的主物理设备73和从物理设备之间的对应关系。
可选地,所述终端71,具体用于针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识;或者针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
具体实施时,所述认证图形码是根据物理设备的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
可选地,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识。所述主物理设备73,具体用于根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合;查找信号覆盖范围内的所有从物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合;以及从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
可选地,所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。
具体实施时,所述主物理设备73具体用于如果所述蓝牙组网方式为手动连接,则从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,向所述网络服务器72发送通信连接建立询问请求;以及接收网络服务器72转发的所述通信连接建立响应消息;并确定所述响应消息为同意建立通信连接。
具体实施时,主物理设备73接收网络服务器72下发的下行控制指令,根据该控制指令做出响应,所述控制指令包括设备连接推送通知、设备断开连接推送通知、策略变更通知和设备管理通知。
所述网络服务器72,具体用于将所述通信连接建立询问请求发送给终端71,以及接收终端71发送的通信连接建立响应消息,并将所述通信连接建立响应消息转发给所述主物理设备73。
所述终端71,具体用于接收所述网络服务器72发送的所述通信连接建立询问请求,并将所述通信连接建立响应消息发送给所述网络服务器72。
具体实施时,所述主物理设备73,具体用于如果所述蓝牙组网方式为按时间连接,则所述蓝牙组网策略中还包括组网时间段;以及根据所述组网时间段,在组网开始时间到达时,从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接;以及还用于根据所述组网时间段,在组网结束时间到达时,释放与已建立通信连接的从物理设备之间的通信连接。
本公开的图7所示的实施例提供的物理设备间蓝牙组网控制系统,终端预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;在建立蓝牙组网策略列表之后,接收蓝牙组网策略选择指令;再根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,主物理设备在接收到网络服务器下发的蓝牙组网策略后,根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系,由此可以远程控制主物理设备与从物理设备之间的蓝牙组网关系,还可以通过远程操作实现主从物理设备间的 配对;此外,由于蓝牙组网策略的不同,可以灵活配置主物理设备与从物理设备之间的蓝牙组网关系,提高用户体验。
请参考图8,图8为本公开提供的物理设备间蓝牙组网控制装置的结构示意图。该装置包括:第一处理器800、第一存储器810、第一用户接口820和总线接口,其中第一处理器800、第一存储器810和第一用户接口820通过所述总线接口彼此通信,所述第一处理器800用于读取第一存储器810中的程序,以控制所述装置执行下列过程:预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;接收蓝牙组网策略选择指令;以及根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,所述蓝牙组网策略用于触发所述主物理设备调整其与从物理设备之间的蓝牙组网关系。
在图8中,总线结构可以包括任意数量的互联的总线和桥,具体由第一处理器800代表的一个或多个处理器和第一存储器810代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。第一用户接口820还可以是能够外接内接需要设备的接口,连接的设备包括但不限于小键盘、显示器、扬声器、麦克风、操纵杆等。
第一处理器800负责管理总线架构和通常的处理,第一存储器810可以存储第一处理器800在执行操作时所使用的数据。
图8所示的物理设备间蓝牙组网控制装置在接收到蓝牙组网策略选择指令后,将被选择的蓝牙组网策略发送给网络服务器,由此可以实现远程控制主物理设备与从物理设备间的蓝牙组网关系,由网络服务器将被选择的蓝牙组网策略发送给主物理设备。
其中,所示第一处理器800进一步用于读取第一存储器810中的程序,以控制所述装置执行下列过程:将建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器存储。由此,网络服务器可以将所述主物理设 备与从物理设备之间的对应关系进行存储备份。
本公开提供的物理设备间蓝牙组网的控制装置可以是执行上面的图1所示的物理设备间蓝牙组网控制方法的装置,例如终端。该控制装置可以远程控制主物理设备与从物理设备之间的蓝牙组网关系,还可以通过远程操作实现主从物理设备间的配对;此外,由于蓝牙组网策略的不同,可以灵活配置主物理设备与从物理设备之间的蓝牙组网关系,提高用户体验。
请参考图9,图9为本公开提供的物理设备间蓝牙组网控制装置的结构示意图。该装置包括:第二处理器900、第二存储器910、第二用户接口920和总线接口,其中第二处理器900、所述第二存储器910、所述第二用户接口920可以通过所述总线接口彼此通信,所述第二处理器900用于读取第一存储器910中的程序,以控制所述装置执行下列过程:接收网络服务器下发的蓝牙组网策略,其中所述蓝牙组网策略为用户从终端预先建立的蓝牙组网策略列表中选择并发送给所述网络服务器的,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略列表中包含的蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
在图9中,总线结构可以包括任意数量的互联的总线和桥,具体由第二处理器900代表的一个或多个处理器和第二存储器910代表的存储器的各种电路链接在一起。总线架构还可以将诸如外围设备、稳压器和功率管理电路等之类的各种其他电路链接在一起,这些都是本领域所公知的,因此,本文不再对其进行进一步描述。总线接口提供接口。第二用户接口920还可以是能够外接内接需要设备的接口,连接的设备包括但不限于小键盘、显示器、扬声器、麦克风、操纵杆等。
第二处理器900负责管理总线架构和通常的处理,第二存储器910可以存储第二处理器900在执行操作时所使用的数据。
本公开的该实施例提供的物理设备间蓝牙组网控制装置可以是执行上面的图3所示的物理设备间蓝牙组网控制方法的设备,如主物理设备。由此,可以实现主物理设备根据蓝牙组网策略,灵活调整其与从物理设备之间的蓝牙组网关系,并简化了其与从物理设备之间的配对流程,提高用户体验。
本申请的实施例所提供的物理设备间蓝牙组网控制装置和系统可通过计算机程序实现。本领域技术人员应该能够理解,上述的模块划分方式仅是众多模块划分方式中的一种,如果划分为其他模块或不划分模块,只要物理设备间蓝牙组网控制装置和系统具有上述功能,都应该在本申请的保护范围之内。
本领域内的技术人员应明白,本公开的实施例可提供为方法、系统、或计算机程序产品。因此,本公开可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本公开可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的形式。
本公开是参照根据本公开实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。本公开提到的计算机可读存储器可以是易失性存储器、非易失性存储器、瞬态存储器或者非瞬态存储器中的任一种。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
尽管已描述了本公开的可选实施例,但本领域内的技术人员一旦得知了 基本创造性概念,则可对这些实施例做出另外的变更和修改。所以,所附权利要求意欲解释为包括可选实施例以及落入本公开范围的所有变更和修改。
显然,本领域的技术人员可以对本公开进行各种改动和变型而不脱离本公开的精神和范围。这样,倘若本公开的这些修改和变型属于本公开权利要求及其等同技术的范围之内,则本公开也意图包含这些改动和变型在内。

Claims (30)

  1. 一种物理设备间蓝牙组网的控制方法,包括:
    预先建立蓝牙组网策略列表,其中所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;
    接收蓝牙组网策略选择指令;以及
    根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,所述蓝牙组网策略用于触发所述主物理设备调整其与从物理设备之间的蓝牙组网关系。
  2. 如权利要求1所述的方法,其中,按照以下方法建立主物理设备和从物理设备之间的对应关系:
    分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识;
    根据获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备和从物理设备之间的对应关系;以及
    将建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器存储。
  3. 如权利要求2所述的方法,其中,按照以下方法获得物理设备的设备标识:
    针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识;或者
    针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
  4. 如权利要求3所述的方法,其中,所述认证图形码是根据物理设备的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
  5. 一种物理设备间蓝牙组网的控制方法,包括:
    接收网络服务器下发的蓝牙组网策略,其中所述蓝牙组网策略为用户从终端预先建立的蓝牙组网策略列表中选择并发送给所述网络服务器的,所述 蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略列表中包含的蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;以及
    根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
  6. 如权利要求5所述的方法,其中,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识;以及
    根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系,具体包括:
    根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合;
    查找信号覆盖范围内的所有从物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合;以及
    从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
  7. 如权利要求5或6所述的方法,其中,所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。
  8. 如权利要求7所述的方法,其中,如果所述蓝牙组网方式为手动连接,则从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,还包括:
    经网络服务器向终端发送通信连接建立询问请求;
    接收终端经网络服务器转发的通信连接建立响应消息;以及
    确定所述响应消息为同意建立通信连接。
  9. 如权利要求7所述的方法,其中,如果所述蓝牙组网方式为按时间连接,则所述蓝牙组网策略中还包括组网时间段;
    从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之 前,具体包括:根据所述组网时间段,在组网开始时间到达时,从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接;以及
    所述方法,还包括:根据所述组网时间段,在组网结束时间到达时,释放与已建立通信连接的从物理设备之间的通信连接。
  10. 一种物理设备间蓝牙组网的控制装置,包括:
    建立单元,用于预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;
    接收单元,用于接收蓝牙组网策略选择指令;以及
    发送单元,用于根据所述接收单元接收到的所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器,由所述网络服务器转发给所述主物理设备,所述蓝牙组网策略用于触发所述主物理设备调整其与从物理设备之间的蓝牙组网关系。
  11. 如权利要求10所述的装置,其中,所述建立单元具体包括获取子单元、建立子单元和发送子单元,其中:
    所述获取子单元,用于分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识;
    所述建立子单元,用于根据所述获取子单元获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备和从物理设备之间的对应关系;以及
    所述发送子单元,用于将所述建立子单元建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器存储。
  12. 如权利要求10所述的装置,其中,所述获取子单元,具体用于针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识;或者
    针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
  13. 如权利要求12所述的装置,其中,所述认证图形码是根据物理设备 的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
  14. 一种物理设备间蓝牙组网的控制装置,包括:
    接收单元,用于接收网络服务器下发的蓝牙组网策略,其中所述蓝牙组网策略为用户从终端预先建立的蓝牙组网策略列表中选择并发送给所述网络服务器的,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略列表中包含的蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;以及
    调整单元,用于根据所述接收单元接收到的所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
  15. 如权利要求14所述的装置,其中,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识;以及
    所述调整单元,具体包括确定子单元、查找子单元和选择子单元,其中:
    所述确定子单元,用于根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合;
    所述查找子单元,用于查找信号覆盖范围内的所有从物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合;以及
    所示选择子单元,用于从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
  16. 如权利要求14或15所述的装置,其中,所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。
  17. 如权利要求16所述的装置,还包括发送单元和确定单元,其中:
    所述发送单元,用于如果所述蓝牙组网方式为手动连接,则在所述选择子单元从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,经网络服务器向终端发送通信连接建立询问请求;
    所述接收单元,还用于接收终端经网络服务器转发的通信连接建立响应 消息;以及
    所述确定单元,用于确定所述响应消息为同意建立通信连接。
  18. 如权利要求16所述的装置,其中,如果所述蓝牙组网方式为按时间连接,则所述蓝牙组网策略中还包括组网时间段;以及
    所述选择子单元,具体用于根据所述组网时间段,在组网开始时间到达时,从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接;以及
    所述装置,还包括释放单元,所述释放单元用于根据所述组网时间段,在组网结束时间到达时,释放与已建立通信连接的从物理设备之间的通信连接。
  19. 一种物理设备间蓝牙组网的控制系统,包括:终端、网络服务器以及至少一个主物理设备,每一主物理设备与至少一个从物理设备连接,其中:
    所述终端,用于预先建立蓝牙组网策略列表,所述蓝牙组网策略列表中包含至少一个蓝牙组网策略,所述蓝牙组网策略为用户根据预先注册的主物理设备和从物理设备之间的对应关系输入或选择的;接收蓝牙组网策略选择指令;根据所述蓝牙组网策略选择指令,将被选择的蓝牙组网策略发送给网络服务器;
    所述网络服务器,用于接收所述终端发送的被选择的蓝牙组网策略;将所述蓝牙组网策略转发给所述主物理设备;
    所述主物理设备,用于接收网络服务器下发的蓝牙组网策略;以及根据所述蓝牙组网策略,调整与从物理设备之间的蓝牙组网关系。
  20. 如权利要求19所述的系统,其中,
    所述终端,具体用于分别获取每一待蓝牙组网的物理设备的设备标识及其对应的身份标识;根据获取的每一待蓝牙组网的物理设备的设备标识及其对应的身份标识,建立主物理设备和从物理设备之间的对应关系;并将建立的主物理设备和从物理设备之间的对应关系发送给所述网络服务器;以及
    所述网络服务器,还用于存储所述终端发送的主物理设备和从物理设备之间的对应关系。
  21. 如权利要求20所述的系统,其中,
    所述终端,具体用于针对任一待蓝牙组网的物理设备,通过扫描该物理设备的认证图形码获得该物理设备的设备标识;或者针对任一待蓝牙组网的物理设备,通过接收用户输入的该物理设备的设备编码获得该物理设备的设备标识。
  22. 如权利要求21所述的系统,其中,所述认证图形码是根据物理设备的媒体访问控制MAC地址生成的,以及所述认证图形码包括二维码或者条形码。
  23. 如权利要求19所述的系统,其中,所述蓝牙组网策略包括需要调整蓝牙组网关系的所有从物理设备的设备标识;以及
    所述主物理设备,具体用于根据需要调整蓝牙组网关系的所有从物理设备的设备标识,确定第一设备标识集合;查找信号覆盖范围内的所有从物理设备,并确定查找到的从物理设备的设备标识组成第二设备标识集合;以及从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接。
  24. 如权利要求19或23所述的系统,其中,所述蓝牙组网策略中还包括蓝牙组网方式,所述蓝牙组网方式包括自动连接,或者手动连接,或者按时间连接。
  25. 如权利要求24所述的系统,其中,
    所述主物理设备,具体用于如果所述蓝牙组网方式为手动连接,则从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接之前,向所述网络服务器发送通信连接建立询问请求;以及接收网络服务器转发的所述通信连接建立响应消息;并确定所述响应消息为同意建立通信连接;
    所述网络服务器,具体用于将所述通信连接建立询问请求发送给终端;以及接收终端发送的通信连接建立响应消息,并将所述通信连接建立响应消息转发给所述主物理设备;并且
    所述终端,具体用于接收所述网络服务器发送的所述通信连接建立询问请求,并将所述通信连接建立响应消息发送给所述网络服务器。
  26. 如权利要求24所述的系统,其中,
    所述主物理设备,具体用于如果所述蓝牙组网方式为按时间连接,则所述蓝牙组网策略中还包括组网时间段;以及根据所述组网时间段,在组网开始时间到达时,从第二设备标识集合中选择与所述第一设备标识集合包含的任一设备标识相同的设备标识,与被选择的设备标识对应的从物理设备建立通信连接;以及还用于根据所述组网时间段,在组网结束时间到达时,释放与已建立通信连接的从物理设备之间的通信连接。
  27. 一种物理设备间蓝牙组网的控制装置,包括:
    处理器,
    存储器,用于存储程序和数据;以及
    总线接口,所述处理器和所述存储器通过所述总线接口彼此通信;
    其中,所述处理器用于读取在所述存储器中存储的所述程序和数据,以控制所述装置执行根据权利要求1-4中任一项所述的方法。
  28. 一种物理设备间蓝牙组网的控制装置,包括:
    处理器;
    存储器,用于存储程序和数据;以及
    总线接口,所述处理器和所述存储器通过所述总线接口彼此通信;
    其中所述处理器用于读取在所述存储器中存储的所述程序和数据,以控制所述装置执行根据权利要求5-9中任一项所述的方法。
  29. 一种非易失性存储介质,包括:
    在所述非易失性存储介质上存储的程序和数据,
    其中,当所述程序和数据由处理器执行时,所述处理器实现根据权利要求1-4中任一项所述的方法。
  30. 一种非易失性存储介质,包括:
    在所述非易失性存储介质上存储的程序和数据,
    其中,当所述程序和数据由处理器执行时,所述处理器实现根据权利要求5-9中任一项所述的方法。
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