WO2016150156A1 - 一种网关之间的数据交互方法及装置 - Google Patents

一种网关之间的数据交互方法及装置 Download PDF

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Publication number
WO2016150156A1
WO2016150156A1 PCT/CN2015/092973 CN2015092973W WO2016150156A1 WO 2016150156 A1 WO2016150156 A1 WO 2016150156A1 CN 2015092973 W CN2015092973 W CN 2015092973W WO 2016150156 A1 WO2016150156 A1 WO 2016150156A1
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WO
WIPO (PCT)
Prior art keywords
gateway
information
mobile personal
personal station
human body
Prior art date
Application number
PCT/CN2015/092973
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English (en)
French (fr)
Inventor
薛希俊
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to EP15886078.3A priority Critical patent/EP3267761B1/en
Publication of WO2016150156A1 publication Critical patent/WO2016150156A1/zh
Priority to US15/712,411 priority patent/US10405370B2/en

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W76/00Connection management
    • H04W76/20Manipulation of established connections
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W12/00Security arrangements; Authentication; Protecting privacy or anonymity
    • H04W12/06Authentication
    • 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
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/16Gateway arrangements
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/40Remote control systems using repeaters, converters, gateways
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/90Additional features
    • G08C2201/93Remote control using other portable devices, e.g. mobile phone, PDA, laptop
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/04Terminal devices adapted for relaying to or from another terminal or user

Definitions

  • the present invention relates to the field of communications, and in particular, to a data interaction method and apparatus between gateways.
  • wearable devices such as smart bracelets
  • implantable devices such as cardiac pacemakers
  • human body devices this application collectively refers to wearable devices and implantable devices.
  • the human body device can sense the human body activity and the parameters of the external environment, and the human body device can summarize the obtained data, so that the user can reasonably arrange various matters in life according to the data provided by the human body device.
  • Google glasses' video service requires high-speed and low-latency communication networks
  • smart bracelets are used to sense non-human-safe data (body temperature, pace, etc.).
  • communication rate and delay There is no specific requirement for communication rate and delay.
  • Even low-speed and high-latency communication networks can meet the needs of smart bracelets.
  • the needs of different human body equipment not the same.
  • Embodiments of the present invention provide a data interaction method and apparatus between gateways, which can meet the requirements of a human body device by using an interaction between gateways as an example of a mobile personal station.
  • an embodiment of the present invention provides a data interaction method between gateways, including:
  • the first gateway establishes a network connection with the second gateway, where the first gateway is used to manage the human body device of the first user, and the second gateway is used to manage the human body device of the second user;
  • the first gateway acquires collaboration information of the second gateway by using the network connection, where the collaboration information includes cellular network performance information;
  • the first gateway uses the second gateway as an anchor point for accessing the Internet, so as to facilitate accessing the human body device of the first user to the Internet.
  • the cellular network performance information includes a wireless signal strength of the second gateway and a network uplink and downlink access rate
  • the first gateway uses the second gateway as an anchor for accessing the Internet, including:
  • the first gateway uses the second gateway as an access network. Anchor point.
  • the first gateway uses the second gateway as an anchor point for accessing the Internet, include:
  • the first gateway modifies the uplink and downlink wireless links of the first gateway to the first gateway according to the access response message to the a local wireless link between the second gateways to cause the second
  • the gateway acts as an anchor for the first gateway to access the Internet.
  • the collaboration information further includes The location information of the second gateway,
  • the method further includes:
  • the first gateway determines, according to the location information of the second gateway, whether the distance between the first gateway and the second gateway meets a preset distance threshold, where the distance threshold includes a distance lower threshold and a distance upper threshold. ;
  • the first gateway sends a reduce interference request message to the human body device of the first gateway, so that the first A gateway human body device reduces its own transmit power;
  • the first gateway sends an interference cancellation notification message to the human body device of the first gateway to release the The limitation of the transmission power of the human body device of the first gateway.
  • the method further includes:
  • the first gateway sends a reduced interference coordination indication to the second gateway, so that the second gateway sends a reduce interference request message to the human body device of the second gateway according to the reduced interference coordination indication.
  • the method further includes:
  • the first gateway sends an interference cancellation cooperation indication to the second gateway, so that the second gateway sends an interference cancellation notification message to the human body device of the second gateway according to the interference cancellation cooperation indication.
  • the collaboration information further includes a configuration Request information, the configuration request message including a configuration letter Information, and the identity of the second gateway;
  • the method further includes:
  • the first gateway configures the second gateway according to the configuration information.
  • the collaboration information further includes data Processing request information, the data processing request message including authentication information, a data processing type;
  • the method further includes:
  • the first gateway authenticates the second gateway according to the authentication information
  • the first gateway When the second gateway is authenticated by the first gateway, the first gateway sends an authentication pass message to the second gateway;
  • the first gateway processes the data according to the data type.
  • the first gateway and the second After the gateway establishes a network connection it also includes:
  • the first gateway sends user data of the first gateway and configuration data of the first gateway to the second gateway.
  • an embodiment of the present invention provides a data interaction method between gateways, including:
  • the second gateway establishes a network connection with the first gateway, where the first gateway is used to manage the human body device of the first user, and the second gateway is used to manage the human body device of the second user;
  • the second gateway Transmitting, by the second gateway, the collaboration information to the first gateway by using the network connection, where the collaboration information includes cellular network performance information, so that the first gateway determines, according to the cellular network performance information, whether the first
  • the second gateway acts as an anchor for accessing the Internet.
  • the method further includes:
  • the second gateway When receiving the cellular network access proxy request message sent by the first gateway, the second gateway authenticates the first gateway according to the cellular network access proxy request message;
  • the second gateway When the first gateway is authenticated to pass, the second gateway sends an access response message to the first gateway, so that the first gateway sends the first gateway up and down according to the access response message.
  • the row radio link is modified to be a local wireless link between the first gateway and the second gateway.
  • the collaboration information further includes location information of the second gateway
  • the method further includes:
  • the second gateway receives the reduced interference coordination indication sent by the first gateway
  • the second gateway sends a reduce interference request message to the human body device of the second gateway according to the reduced interference coordination indication.
  • the method further includes:
  • the second gateway sends an interference cancellation notification message to the human body device of the second gateway according to the interference cancellation cooperation indication.
  • the collaboration information further includes data Processing request information, the data processing request message including authentication information, data processing type,
  • the method further includes:
  • the second gateway sends data to the first gateway, so that the first gateway processes the data according to the data processing type.
  • the second gateway and the first After the gateway establishes a network connection also includes:
  • the second gateway receives configuration data of the first gateway sent by the first gateway.
  • an embodiment of the present invention provides a gateway, where the gateway includes:
  • a connecting unit configured to establish a network connection between the first gateway and the second gateway, where the first gateway is used to manage the human body device of the first user, and the second gateway is used to manage the human body device of the second user;
  • An acquiring unit configured to acquire, by using a network connection established by the connection establishing unit, collaboration information of the second gateway, where the collaboration information includes cellular network performance information;
  • a network access unit configured to: if the cellular network performance information in the collaborative information acquiring unit meets a preset performance condition, use the second gateway as an anchor point for accessing the Internet, so as to facilitate the first user Human body equipment is connected to the Internet.
  • the network access unit is configured to determine, according to the performance information of the cellular network, whether the wireless signal strength of the second gateway meets a preset strength threshold, and whether the network uplink and downlink access rate of the second gateway meets a rate threshold; if the wireless signal strength of the second gateway meets a preset strength threshold, and the network uplink and downlink access rate of the second gateway meets the rate threshold, the second gateway is used as an anchor for accessing the Internet ;
  • the cellular network performance information includes a wireless signal strength of the second gateway and a network uplink and downlink access rate.
  • the network access unit is configured to send a cellular network access proxy request message to the second gateway, so that the second gateway determines whether to provide the first gateway according to the cellular network access proxy request message.
  • a cellular network access service if the access response message sent by the second gateway is received, modifying the uplink and downlink wireless link of the first gateway to the first gateway to the location according to the access response message Describe a local wireless link between the second gateways, such that the second gateway acts as an anchor for the first gateway to access the Internet.
  • the collaboration information acquiring unit is Collaboration information further includes location information of the second gateway
  • the gateway further includes a determining unit and a sending unit, where
  • the determining unit is configured to determine, according to location information of the second gateway, whether a distance between the first gateway and the second gateway meets a preset distance threshold, where the distance threshold includes a lower threshold and a distance Upper threshold
  • the sending unit is configured to send a reduce interference request message to the human body device of the first gateway, if the distance between the first gateway and the second gateway is less than a preset lower limit threshold
  • the human body device of the first gateway reduces its own transmit power; if the distance between the first gateway and the second gateway is greater than a preset upper limit threshold, the device sends interference to the human body device of the first gateway.
  • the notification message is released to release the restriction on the transmission power of the human body device of the first gateway.
  • the sending unit is further configured to: if the distance between the first gateway and the second gateway is less than a preset lower threshold, send a reduced interference coordination indication to the second gateway, so that the second The gateway sends a reduce interference request message to the human body device of the second gateway according to the reduced interference coordination indication.
  • the sending unit is further configured to: if the distance between the first gateway and the second gateway is greater than a preset upper threshold, send an interference cancellation cooperation indication to the second gateway, so that the second The gateway sends an interference cancellation notification message to the human body device of the second gateway according to the interference cancellation cooperation indication.
  • the collaboration information acquiring unit is The collaboration information further includes configuration request information, where the configuration request message includes configuration information, and an identifier of the second gateway,
  • the gateway further includes a configuration unit
  • the determining unit is further configured to determine, according to the identifier of the second gateway, whether the second gateway belongs to the first gateway management;
  • the configuration unit is configured to configure the second gateway according to the configuration information, if the second gateway belongs to the first gateway management.
  • the collaboration information acquiring unit is The collaboration information further includes data processing request information, the data processing request message including authentication information, a data processing type,
  • the gateway further includes an authentication unit, a receiving unit, and a data processing unit.
  • the authentication unit is configured to authenticate the second gateway according to the authentication information
  • the sending unit is further configured to: when the second gateway passes the authentication of the first gateway, send an authentication pass message to the second gateway;
  • the receiving unit is configured to receive data sent by the second gateway
  • the data processing unit is configured to process the data in the data in the receiving unit.
  • the sending unit is further configured to send user data of the first gateway and configuration data of the first gateway to the second gateway.
  • an embodiment of the present invention provides a gateway, where the gateway includes:
  • a connecting unit configured to establish a network connection with the first gateway, where the first gateway is used to manage the human body device of the first user, and the second gateway is used to manage the human body device of the second user;
  • a sending unit configured to send, by using the network connection established by the connection establishing unit, collaboration information to the first gateway, where the cooperation information includes cellular network performance information, so that the first gateway determines, according to the cellular network performance information, Whether the second gateway is used as an anchor for accessing the Internet.
  • the gateway further includes an authentication unit, where
  • the authentication unit is configured to: when receiving the cellular network access proxy request message sent by the first gateway, perform authentication on the first gateway according to the cellular network access proxy request message;
  • the sending unit is further configured to: when the first gateway in the authentication unit is authenticated, send an access response message to the first gateway, so that the first gateway is configured according to the access response
  • the message modifies the uplink and downlink wireless links of the first gateway to a local wireless link between the first gateway and the second gateway.
  • the receiving unit is further configured to: if the distance between the first gateway and the second gateway is less than a preset lower threshold, receive the interference reduction cooperation indication sent by the first gateway;
  • the sending unit is further configured to send a reduce interference request message to the human body device of the second gateway according to the reduced interference coordination indication in the receiving unit;
  • the collaboration information further includes location information of the second gateway.
  • the receiving unit is further configured to: if the distance between the first gateway and the second gateway is greater than a preset upper threshold, receive the interference sent by the first gateway Cooperative indication
  • the sending unit is further configured to send an interference cancellation notification message to the human body device of the second gateway according to the interference cancellation cooperation indication in the receiving unit.
  • the receiving unit is further configured to receive an authentication pass message sent by the first gateway;
  • the sending unit is further configured to send data to the first gateway, so that the first gateway processes the data according to the data processing type;
  • the collaboration information further includes data processing request information, where the data processing request message includes authentication information and a data processing type.
  • the receiving unit is further configured to acquire user data of the first gateway from the first gateway, and receive configuration data of the first gateway sent by the first gateway.
  • the first gateway after the first gateway establishes a network connection with the second gateway, the cellular network performance information of the second gateway is obtained through the network connection, where the cellular network performance information includes Describe the wireless signal strength of the second gateway and the uplink and downlink access rate of the network; thus, the first gateway may determine, according to the performance information of the cellular network, the second gateway that meets the preset performance condition, and then access the second gateway.
  • the anchor of the Internet is configured to facilitate accessing the at least one human body device of the first user to the Internet, thereby avoiding the problem that the first gateway in the harsh cellular network environment cannot effectively connect the human body device to the Internet.
  • the second gateway's own collaboration information such as cellular network performance information
  • the second gateway's own collaboration information is sent to the first gateway through the network connection, so that the second A gateway cooperates with the second gateway according to the cellular network performance information in the collaboration information, and uses the second gateway as an anchor point for accessing the Internet, and enhances the capability of the first gateway to access the Internet by the human body device, which can be seen
  • each mobile gateway can better meet the needs of the human body device, so that the human body device can provide a better service for the user. Improve the user experience.
  • FIG. 1 is a schematic diagram of connection between a mobile personal station and a human body device according to an embodiment of the present invention
  • FIG. 2 is a schematic flowchart 1 of a method for data interaction between gateways according to an embodiment of the present invention
  • FIG. 3 is a schematic flowchart 2 of a method for data interaction between gateways according to an embodiment of the present disclosure
  • FIG. 4 is a schematic flowchart 3 of a method for data interaction between gateways according to an embodiment of the present invention.
  • FIG. 5 is a schematic flowchart 4 of a method for data interaction between gateways according to an embodiment of the present disclosure
  • FIG. 6 is a schematic flowchart 5 of a method for data interaction between gateways according to an embodiment of the present disclosure
  • FIG. 7 is a schematic flowchart 6 of a method for data interaction between gateways according to an embodiment of the present disclosure
  • FIG. 8 is a schematic flowchart diagram of a method for data interaction between gateways according to an embodiment of the present disclosure
  • FIG. 9 is a schematic structural diagram 1 of a first gateway according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic structural diagram 2 of a first gateway according to an embodiment of the present disclosure.
  • FIG. 11 is a schematic structural diagram 3 of a first gateway according to an embodiment of the present disclosure.
  • FIG. 12 is a schematic structural diagram 4 of a first gateway according to an embodiment of the present disclosure.
  • FIG. 13 is a schematic structural diagram 1 of a second gateway according to an embodiment of the present disclosure.
  • FIG. 14 is a schematic structural diagram 2 of a second gateway according to an embodiment of the present disclosure.
  • FIG. 15 is a schematic diagram of hardware of a mobile personal station according to an embodiment of the present invention.
  • FIG. 16 is a schematic structural diagram 1 of a data interaction system between gateways according to an embodiment of the present disclosure
  • FIG. 17 is a schematic structural diagram 2 of a data interaction system between gateways according to an embodiment of the present invention.
  • the human body device includes a human body device and a portable device, and a gateway for uniformly managing the human body device is inevitable.
  • This gateway is called a mobile personal station (MPS,
  • the first gateway is the first MPS
  • the second gateway is the second MPS.
  • the MPS is used to assist individuals in performing massive human body devices or related devices.
  • the MPS can automatically determine the communication method between human devices such as implantable devices, wearable devices, and portable devices (such as Bluetooth, Wi-Fi (Wireless Fidelity), ZigBee (Zibee).
  • the MPS can also be responsible for the management of human body equipment (such as: equipment configuration and power management), as well as the perception data collected from the human body and the environment (such as: home, car, etc.) (such as: human heart rate, blood pressure; home environment Temperature, water and electricity coal usage; vehicle operating state) for lightweight data analysis, and data synchronization and coordination with the cloud data server.
  • the MPS can also interact with users through smart devices (such as mobile phones, tablets, smart glasses, etc.) (eg health warnings, calendar suggestions, etc.).
  • the plurality of mobile personal stations in the following embodiments of the present invention may belong to the same user or different members of the same family, so that multiple mobile personal stations may be pre-advanced Mutual authorization for interoperability between multiple mobile personal stations.
  • a data interaction method between gateways is provided in the embodiment of the present invention. As shown in FIG. 2, the method includes:
  • the first gateway establishes a network connection with the second gateway, where the first gateway is used to manage the human body device of the first user, and the second gateway is used to manage the human body device of the second user.
  • the first gateway may be specifically a first mobile personal station of the first user, configured to perform communication, management, data analysis, etc. on one or more human body devices of the first user; similarly, the second gateway may be specific A second mobile personal station that is a second user for communicating, managing, analyzing data, and the like to one or more human body devices of the second user.
  • the first gateway and the second gateway may establish a network connection by using a local direct connection or a wide area network connection, so as to perform data interaction between the first gateway and the second gateway on the established network connection.
  • the first gateway acquires collaboration information of the second gateway by using the network connection, where the collaboration information includes cellular network performance information.
  • the cellular network performance information includes a wireless signal strength of the second gateway, a network uplink and downlink access rate, and the like.
  • cooperation information of the second gateway may further include location information, configuration request information, and data processing request information of the second gateway.
  • the first gateway uses the second gateway as an anchor point for accessing the Internet, so as to facilitate accessing the first user's human body device to the Internet.
  • the determining, by the first gateway, whether the performance information of the cellular network meets the preset performance condition may specifically include: determining that the wireless signal strength of the second gateway meets a preset strength threshold, and the network uplink and downlink access rate of the second gateway The rate threshold is met.
  • the first gateway uses the second gateway as an anchor point for accessing the Internet, and connects the human body device of the first user managed by the first gateway to the Internet, thereby enhancing the first
  • the method for the first gateway to use the second gateway as the anchor for accessing the Internet can be referred to the steps S301-S311 in the following embodiments, and details are not described herein again.
  • the collaboration information of the second gateway acquired by the first gateway may further include the location information, the configuration request information, the data processing request information, and the like of the second gateway, and therefore, in the embodiment of the present invention.
  • the first gateway is the first mobile personal station
  • the second gateway is the second mobile personal station. The method includes:
  • the first mobile personal station establishes a network connection with the second mobile personal station.
  • the first mobile personal station acquires collaboration information of the second mobile personal station, where the collaboration information includes: at least one of cellular network performance information, location information of the second mobile personal station, configuration request information, and data processing request information. .
  • the first mobile personal station performs a corresponding operation according to the collaboration information.
  • the first mobile personal station and the second mobile personal station may be any two mobile personal stations among a plurality of mobile personal stations that have been mutually authorized.
  • the first mobile personal station and the second mobile personal station establish a network connection, such as a local direct connection, or a wide area network connection, and acquire collaboration information of the second mobile personal station, and perform corresponding collaboration according to the collaboration information.
  • the first mobile personal station may cooperate with the second mobile personal station according to the cellular network performance information in step 201, and use the second mobile personal station as an anchor point for accessing the Internet, thereby enhancing the The ability of the mobile personal station to access the Internet may further cooperate with the second mobile personal station according to the location information of the second mobile personal station in step 201 to reduce the first mobile personal station and the second mobile personal station.
  • the interference between the second mobile personal station and the second mobile personal station may be enhanced according to the configuration request information in step 201, and the configuration capability of the second mobile personal station may be enhanced, and the request information may be processed according to the data in step 201.
  • the second mobile personal station cooperates to enhance the data analysis capability of the first mobile personal station.
  • each mobile personal station can better meet the needs of the human body device, so that the human body device can provide better service for the user and enhance the user experience.
  • the network environment of each mobile personal station may be different.
  • the first mobile individual The station acquires the collaboration information of the second mobile personal station, wherein the collaboration information includes cellular network performance information of the second mobile personal station.
  • the first mobile personal station determines, according to the cellular network performance information, that the second mobile personal station meets a preset performance condition, and sends a cellular network access proxy request message to the second mobile personal station, so that the second The mobile personal station determines whether to provide the cellular access service to the first mobile personal station based on the cellular access agent request message.
  • the cellular network performance information includes a wireless signal strength of the second mobile personal station and a network uplink and downlink access rate
  • the first mobile personal station determines, according to the cellular network performance information, that the second mobile personal station meets the pre-
  • the performance condition includes: determining that the wireless signal strength of the second mobile personal station meets a preset strength threshold, and that the network uplink and downlink access rate of the second mobile personal station meets the rate threshold.
  • FIG. 3 is a schematic diagram of interaction between the first mobile personal station and the second mobile personal station, including:
  • the first mobile personal station detects its own cellular network performance, and determines that the cellular network performance of the first mobile personal station does not meet the preset performance condition.
  • the network performance of the first mobile personal station is poor, and the Internet may not be accessible.
  • the performance condition may be preset by the user. For example, the wireless signal strength of the first mobile personal station is less than a preset intensity threshold. Or, the network uplink and downlink access rate of the first mobile personal station is smaller than a rate threshold. At this time, the first mobile personal station performs step S302.
  • the first mobile personal station establishes a network connection with the second mobile personal station.
  • the first mobile personal station sends a network performance detection request to the second mobile personal station.
  • the second mobile personal station detects its own cellular network performance according to the network performance detection request.
  • the second mobile personal station sends the cellular network performance information of the second mobile personal station to the first mobile personal station.
  • the first mobile personal station determines, according to the cellular network performance information, that the second mobile personal station meets a preset performance condition.
  • the first mobile personal station sends a cellular network access proxy request message to the second mobile personal station.
  • the second mobile personal station authenticates the first mobile personal station according to the cellular network access proxy request message.
  • information may be reserved in the mobile personal station, for example, an identity of the authorized mobile personal station, the reservation information is used for information authentication, such that the cellular network access
  • the proxy request message may include an identifier of the first mobile personal station, and the second mobile personal station authenticates the first mobile personal station according to the identifier of the first mobile personal station, if the identifier of the first mobile personal station and the If the reservation information in the second mobile personal station matches, the authentication is passed.
  • the second mobile personal station determines that the number of providing access services does not reach a preset threshold.
  • the mobile personal station that provides the access service by the second mobile personal station may further determine whether the mobile personal station is the first mobile personal station. Provide access services. That is, if the second mobile personal station can provide access services for N other mobile personal stations, and the number of mobile personal stations that the second mobile personal station has provided access services is less than N, at this time, The second mobile personal station can provide access services for the first mobile personal station.
  • the second mobile personal station sends an access response message to the first mobile personal station.
  • the first mobile personal station modifies the uplink and downlink wireless link of the first mobile personal station to a local wireless link between the first mobile personal station and the second mobile personal station according to the access response message.
  • the first mobile personal station and the second mobile personal station are locally connected, and the first mobile personal station uses the second mobile personal station as an anchor for accessing the Internet, thereby avoiding the first mobile individual.
  • the station was unable to access the Internet due to poor wireless environment.
  • the personal station may send a cellular network access proxy request message to other mobile personal stations.
  • the first mobile personal station may first acquire cellular network performance information of the adjacent at least one mobile personal station, and sequence and generate network performance of each mobile personal station.
  • the network performance table sequentially sends a cellular network access proxy request message to the mobile personal station that meets the preset performance condition according to the network performance table until a mobile personal station determines that the first mobile personal station provides the access service.
  • the first gateway can determine the second gateway that meets the preset performance condition according to the cellular network performance information, and then use the second gateway as an anchor for accessing the Internet, so as to facilitate At least one human body device of the first user accesses the Internet, thereby avoiding The first gateway in a harsh cellular network environment cannot effectively connect the human body device to the Internet.
  • the collaboration information of the second mobile personal station acquired by the first mobile personal station includes location information of the second mobile personal station.
  • the first mobile personal station determines, according to the location information, that the distance between the first mobile personal station and the second mobile personal station meets a preset distance threshold, and the distance threshold may specifically include a distance lower threshold and a distance upper limit. a threshold, and in turn, transmitting a reduce interference request message to the human body device of the first mobile personal station, and/or transmitting a reduced interference coordination indication to the second mobile personal station, so that the second mobile personal station is in accordance with the reduced interference coordinated indication, A reduce interference request message is sent to the human body device of the second mobile personal station.
  • the interference reduction request message may be specifically used to indicate that the human body device reduces the transmission power, and/or switches the transmission channel.
  • the signal sent by the human body device managed by the first mobile personal station may be received by the second mobile personal station.
  • the second mobile personal station causes interference.
  • the signal sent by the human body device managed by the second mobile personal station may also cause interference to the first mobile personal station, and if the first mobile personal station manages the human body device
  • the transmission channel is close to the transmission channel of the human body device managed by the second mobile personal station, and may also cause interference.
  • the interference reduction request message may be sent to the The human body device managed by the first mobile personal station instructs the human body device to reduce the transmission power, and/or to switch the transmission channel to avoid interference with the second mobile personal station, and at the same time, the first mobile personal station can also transmit reduced
  • the interference coordination indication is sent to the second mobile personal station, and the two devices cooperate to adjust, further reducing the possibility of interference.
  • the first mobile personal station determines, according to the location information, that the distance between the first mobile personal station and the second mobile personal station meets a preset upper limit threshold, for example, when the distance is 50 meters.
  • the human body device of the first mobile personal station transmits an interference cancellation notification message, and/or transmits an interference cancellation cooperation indication to the second mobile personal station, so that the second mobile personal station cancels the coordinated indication according to the interference, to the second
  • the human body device of the mobile personal station transmits an interference cancellation notification message.
  • FIG. 4 is a schematic diagram of interaction between the first mobile personal station and the second mobile personal station, including:
  • the first mobile personal station establishes a network connection with the second mobile personal station.
  • the first mobile personal station sends a location detection request to the second mobile personal station.
  • the second mobile personal station detects its own location information according to the location detection request, and sends the location information to the first mobile personal station.
  • the first mobile personal station determines, according to the location information, that the distance between the first mobile personal station and the second mobile personal station meets a preset upper limit threshold.
  • the lower limit threshold may be preset according to the average height of the user.
  • the first mobile personal station sends a reduce interference request message to the human body device of the first mobile personal station.
  • the first mobile personal station sends a reduced interference coordination indication to the second mobile personal station.
  • the second mobile personal station sends a reduce interference request message to the human body device of the second mobile personal station according to the reduced interference coordination indication.
  • the second mobile personal station may further send a reduced interference coordination indication to enable the second mobile individual to The station transmits a reduce interference request message to the human body device of the second mobile personal station according to the reduced interference coordination indication.
  • the interference reduction request message is used to indicate that the human body device reduces the transmission power, and/or switches the transmission channel.
  • the first mobile personal station acquires location information of the second mobile personal station again.
  • the first mobile personal station may acquire location information of the second mobile personal station according to a certain period, and the period may be preset by the user.
  • the first mobile personal station determines, according to the second mobile personal station location information, that the distance between the first mobile personal station and the second mobile personal station meets a preset upper limit threshold.
  • the first mobile personal station sends an interference cancellation notification message to the human body device of the first mobile personal station.
  • the human body device of the first mobile personal station can restore its own transmit power to a preset power according to the interference cancellation notification message, for example, restore its own transmit power to the transmit power used before step 407.
  • the first mobile personal station sends an interference cancellation cooperation indication to the second mobile personal station.
  • the second mobile personal station transmits an interference cancellation notification message to the human body device of the second mobile personal station according to the interference cancellation cooperation instruction.
  • the human body device of the second mobile personal station can restore its own transmit power to a preset power according to the interference cancellation notification message, for example, restore its own transmit power to the transmit power used before step 407. .
  • the human body device reduces the transmission power, and/or, after switching the transmission channel, if the distance between the two mobile personal stations increases, for example, the user preset distance limit is reached. At the threshold, the transmission power before the human body device can be restored, and/or the transmission channel does not affect the optimal running performance of the human body device. Improve the user experience.
  • the adult may need to perform configuration management on the mobile personal station carried by the elderly and the child.
  • the first mobile personal station The acquired collaboration information of the second mobile personal station includes configuration request information of the second mobile personal station.
  • the configuration request information may include configuration information, and an identifier of the second mobile personal station, where the first mobile personal station determines, according to the identifier of the second mobile personal station, the second mobile personal station as the first mobile
  • the configuration management station of the personal station determines that the second mobile personal station belongs to the first mobile personal station management, and configures the first mobile personal station according to the configuration information.
  • the user may set the second mobile personal station as a configuration management station of the first mobile personal station in advance, and the first mobile personal station records the identifier of the second mobile personal station, such that if the first mobile personal station If the mobile personal station identifier in the received configuration request information matches the recorded identifier, the authentication is passed, and the configuration is further configured according to the configuration information in the configuration request information.
  • FIG. 5 is a schematic diagram of interaction between the first mobile personal station and the second mobile personal station, including:
  • the first mobile personal station establishes a network connection with the second mobile personal station.
  • the first mobile personal station may be far away from the second mobile personal station, and therefore, the network connection established between the two mobile personal stations may be a wide area network connection.
  • the second mobile personal station sends a configuration request letter to the first mobile personal station. interest.
  • the configuration request information may include configuration information of the second mobile personal station and an identifier of the second mobile personal station.
  • the configuration information of the second mobile personal station may include various parameters of the second mobile personal station during operation, such as a boot time of the second mobile personal station.
  • the first mobile personal station authenticates the second mobile personal station according to the authentication information in the configuration request information.
  • the configuration is performed according to the configuration information in the configuration request information.
  • the first mobile personal station may modify, in the configuration information, the parameters of the second mobile personal station during operation. For example, modifying the network standard of the second mobile personal station, or modifying the time when the second mobile personal station accesses the Internet.
  • the first mobile personal station sends a configuration response message to the second mobile personal station.
  • the second mobile personal station can remotely configure and manage the first mobile personal station, thereby improving the user experience.
  • the collaboration information of the second mobile personal station acquired by the first mobile personal station includes data processing request information of the second mobile personal station.
  • the data processing request message includes authentication information and a data processing type.
  • the first mobile personal station authenticates the second mobile personal station according to the authentication information, and after the authentication is passed, to the second mobile individual.
  • the station sends an authentication pass message; receives the data sent by the second mobile personal station, and processes the received data according to the data type, wherein the data sent by the second mobile personal station may specifically be connected to the second mobile personal station.
  • FIG. 6 is a schematic diagram of interaction between the first mobile personal station and the second mobile personal station, including:
  • the first mobile personal station establishes a network connection with the second mobile personal station.
  • the first mobile personal station may be far away from the second mobile personal station, and therefore, the network connection established between the two mobile personal stations may be a wide area network connection.
  • the second mobile personal station sends data processing request information to the first mobile personal station.
  • the data processing request message includes authentication information and a data processing type, so that the first mobile personal station authenticates the second mobile personal station according to the authentication information, and further performs corresponding data processing on the data processing type.
  • the first mobile personal station authenticates the second mobile personal station according to the authentication information in the data processing request information.
  • the second mobile personal station sends the analysis result of the sensing data or the sensing data to the first mobile personal station.
  • the second mobile personal station may collect sensory data collected from the human body and the environment (eg, family, automobile, etc.) (eg, heart rate, blood pressure of the human body; temperature of the home environment, use of water, electricity, coal, and running state of the vehicle) Send directly to the first mobile personal station Requesting data processing, the second mobile personal station may also perform data analysis on the collected sensing data, and then send the analysis result of the sensing data to the first mobile personal station for further data processing.
  • the environment eg, family, automobile, etc.
  • the second mobile personal station may also perform data analysis on the collected sensing data, and then send the analysis result of the sensing data to the first mobile personal station for further data processing.
  • the first mobile personal station processes the sensing data or the data analysis result according to the data processing type in the data processing request information.
  • the analysis result of the sentiment data sent by the second mobile personal station to the first mobile personal station is: the user of the second mobile personal station falls at home, and the data processing type of the analysis result is an emergency event.
  • the first mobile personal station can provide an emergency strategy for the analysis result according to the data processing type of the emergency event, for example, the first mobile personal station alarms the user of the first mobile personal station, and provides the second mobile
  • the list of recent hospitals of the user of the personal station is such that the user of the first mobile personal station quickly handles the emergency event.
  • the first mobile personal station may pre-store a data decision model library, where the data analysis model library may include a plurality of data processing type data decision models, for example, data of blood pressure values and blood glucose values.
  • the decision model such as the relative value of the blood pressure value and the blood glucose value, is normal, and the range of the blood pressure value and the blood glucose value is very different.
  • the analysis result of the posture change data and the heart rate value is The data decision model, such as the analysis result of the posture change data, shows that the user is in a state of intense exercise. Then, if the analysis result of the heart rate value shows that the heart rate of the user increases, it is a normal phenomenon. In this way, the first mobile personal station can process the sensing data or the data analysis result according to the data processing model in the data processing request information according to the data decision model in the data analysis model library.
  • the first mobile personal station can remotely perform data analysis processing on the second mobile personal station, thereby improving the user experience.
  • the method includes:
  • the first mobile personal station establishes a network connection with the second mobile personal station.
  • a user has multiple mobile personal stations, there is a need for function migration between the mobile personal stations.
  • the method may be used.
  • the configuration data and user data of a mobile personal station are migrated to the second mobile personal station to complete the function migration, thereby improving the user experience.
  • the first mobile personal station may directly send user data and configuration data to the second mobile personal station through a direct connection network.
  • the first mobile personal station after the first mobile personal station establishes a connection with the second mobile personal station, determining that the user data of the first mobile personal station is saved in the cloud server, and Sending a push request message to the cloud server, so that the cloud server sends the user data of the first mobile personal station to the second mobile personal station according to the push request message. After receiving the push response message sent by the cloud server, the first mobile personal station sends configuration data of the first mobile personal station to the second mobile personal station.
  • the cloud server provided by the embodiment of the present invention may be one or more cloud platforms, such as multiple cloud server components.
  • the cloud platform may store information about each user and historical data, and the cloud platform performs cloud computing. In-depth and accurate calculations can be performed by invoking each user's information and historical data.
  • the cloud platform can be used to store the sensing data generated by each human body device; and perform data analysis on the sensing data collected from each human body device, and extract the changing characteristics and laws of the data, for example, the cloud platform can be calculated within one year.
  • the cloud platform can also make correlation analysis based on the results of data analysis, giving decision and suggestion information, for example: if the cloud platform finds an increase in blood pressure Caused by drinking, the MPS will send alarm information and action suggestions to the owner, such as stopping drinking, or limiting the amount of alcohol consumption at a certain value; of course, the cloud platform can also communicate with the MPS, that is, configure and manage the parameters of the MPS. For example, an adult can log in to the cloud platform to remotely configure and manage the child's MPS, and the present invention does not impose any limitation.
  • the first mobile personal station establishes a network connection with the second mobile personal station.
  • the first mobile personal station sends a data check request to the cloud server.
  • the cloud server checks whether user data of the first mobile personal station is saved, and sends a data check response to the first mobile personal station.
  • the first mobile personal station determines, according to the data check response, that the cloud server stores user data of the first mobile personal station, and sends a rate detection request to the second mobile personal station.
  • the first mobile personal station may determine that the WAN access rate of the second mobile personal station meets the transmission condition before instructing the cloud server to push data. .
  • the second mobile personal station detects its own WAN access rate and sends a rate detection response to the first mobile personal station.
  • the first mobile personal station sends a push request message to the cloud server.
  • the cloud server pushes user data of the first mobile personal station to the second mobile personal station.
  • the cloud server sends a push response message to the first mobile personal station.
  • the first mobile personal station sends the configuration data of the first mobile personal station to the second mobile personal station.
  • the configuration data is much smaller than the user data, and the first mobile personal station can directly send the configuration data to the second mobile personal station.
  • the first mobile personal station can instruct the cloud server to send user data to the second mobile personal station, the transmission rate is faster, and the user operation is more convenient.
  • FIG. 9 is a schematic structural diagram of a gateway according to an embodiment of the present invention.
  • the gateway provided by the embodiment of the present invention may be used to implement the method implemented by the embodiments of the present invention shown in FIG. 1 to FIG. 8 . Portions related to the embodiments of the present invention are shown. Without specific details, please refer to the embodiments of the present invention shown in FIGS. Exemplarily, the gateway may be a first gateway, where the first gateway is used to manage a human body device of the first user, and the first gateway specifically includes:
  • the connecting unit 11 is configured to establish a network connection with the second gateway, where the second gateway is configured to manage the human body device of the second user;
  • the obtaining unit 12 is configured to acquire collaboration information of the second gateway by using a network connection established in the connection establishing unit 11, where the collaboration information includes cellular network performance information;
  • the network access unit 13 is configured to: if the cellular network performance information in the collaboration information acquiring unit 12 meets a preset performance condition, use the second gateway as an anchor point for accessing the Internet, so as to facilitate the first The user's body device is connected to the Internet.
  • the network access unit 13 is specifically configured to determine, according to the cellular network performance information, whether a wireless signal strength of the second gateway meets a preset strength threshold, and a network connection of the second gateway Whether the incoming rate meets the rate threshold; if the wireless signal strength of the second gateway meets a preset strength threshold, and the second The network uplink and downlink access rate of the gateway meets the rate threshold, and the second gateway is used as an anchor point for accessing the Internet;
  • the cellular network performance information includes a wireless signal strength of the second gateway and a network uplink and downlink access rate.
  • the network access unit 13 is specifically configured to send a cellular network access proxy request message to the second gateway, so that the second gateway determines, according to the cellular network access proxy request message, whether to The first gateway provides a cellular network access service; if the access response message sent by the second gateway is received, the uplink and downlink wireless links of the first gateway are modified according to the access response message to the first a local wireless link between the gateway and the second gateway, such that the second gateway acts as an anchor for the first gateway to access the Internet.
  • the collaboration information in the collaboration information acquisition unit further includes location information of the second gateway.
  • the first gateway further includes a determining unit 14 and a sending unit 15, where
  • the determining unit 14 is configured to determine, according to location information of the second gateway, whether a distance between the first gateway and the second gateway meets a preset distance threshold, where the distance threshold includes a lower threshold and Upper limit threshold
  • the sending unit 15 is configured to send a reduce interference request message to the human body device of the first gateway, if the distance between the first gateway and the second gateway is less than a preset lower limit threshold
  • the human body device of the first gateway reduces its own transmit power; if the distance between the first gateway and the second gateway is greater than a preset upper limit threshold, the device sends the device to the human body device of the first gateway.
  • the interference cancellation notification message is used to release the limitation on the transmission power of the human body device of the first gateway.
  • the sending unit 15 is further configured to: if the distance between the first gateway and the second gateway is less than a preset lower threshold, send a interference reduction coordination indication to the second gateway, so that The second gateway sends a reduce interference request message to the human body device of the second gateway according to the reduced interference coordination indication.
  • the sending unit 15 is further configured to send, to the second gateway, a distance between the first gateway and the second gateway that is greater than a preset upper threshold value. Sending an interference cancellation coordination indication, so that the second gateway sends an interference cancellation notification message to the human body device of the second gateway according to the interference cancellation cooperation indication.
  • collaboration information in the collaboration information acquisition unit further includes configuration request information, where the configuration request message includes configuration information, and an identifier of the second gateway, where, as shown in FIG. A configuration unit 16 is also included,
  • the determining unit 14 is further configured to determine, according to the identifier of the second gateway, whether the second gateway belongs to the first gateway management;
  • the configuration unit 16 is configured to configure the second gateway according to the configuration information, if the second gateway belongs to the first gateway management.
  • collaboration information in the collaboration information acquisition unit further includes data processing request information, where the data processing request message includes authentication information and a data processing type, wherein, as shown in FIG. 12, the first gateway further includes authentication.
  • the collaboration information in the collaboration information acquisition unit further includes data processing request information, where the data processing request message includes authentication information and a data processing type, wherein, as shown in FIG. 12, the first gateway further includes authentication.
  • the authentication unit 17 is configured to authenticate the second gateway according to the authentication information.
  • the sending unit 15 is further configured to: when the second gateway passes the authentication of the first gateway, send an authentication pass message to the second gateway;
  • the receiving unit 18 is configured to receive data sent by the second gateway
  • the data processing unit 19 is configured to process data in the receiving unit 18.
  • the sending unit 15 is further configured to send user data of the first gateway to the second gateway, and send configuration data of the first gateway to the second gateway.
  • the determining unit 14 is further configured to determine, in the cloud server, the user data that is saved by the first gateway;
  • the sending unit 15 is further configured to send a push request message to the cloud server, so that the cloud server sends user data of the first gateway to the second gateway according to the push request message.
  • FIG. 13 is a schematic structural diagram of a gateway according to an embodiment of the present invention.
  • the gateway provided by the embodiment of the present invention may be used to implement the method implemented by the embodiments of the present invention shown in FIG. 1 to FIG. 8 . Portions related to the embodiments of the present invention are shown. Without specific details, please refer to the embodiments of the present invention shown in FIGS. Exemplarily, the gateway may be a second gateway, where the second gateway is used to manage the human body device of the second user, and the second gateway specifically includes:
  • the connecting unit 21 is configured to establish a network connection with the first gateway, where the first gateway is used to manage the human body device of the first user, and the second gateway is used to manage the human body device of the second user;
  • the sending unit 22 is configured to send, by using the network connection established in the connection establishing unit 21, the collaboration information, where the collaboration information includes cellular network performance information, so that the first gateway is configured according to the cellular network.
  • the performance information determines whether the second gateway is used as an anchor for accessing the Internet.
  • the second gateway further includes the gateway further including a receiving unit 23 and an authentication unit 24, where
  • the receiving unit 23 is configured to receive a cellular network access proxy request message sent by the first gateway;
  • the authentication unit 24 is configured to: when receiving the cellular network access proxy request message sent by the first gateway, perform authentication on the first gateway according to the cellular network access proxy request message;
  • the sending unit 22 is further configured to: when the first gateway in the authentication unit 23 is authenticated, send an access response message to the first gateway, so that the first gateway is configured according to the The incoming response message modifies the uplink and downlink wireless links of the first gateway to a local wireless link between the first gateway and the second gateway.
  • the receiving unit 23 is further configured to: if the distance between the first gateway and the second gateway is less than a preset lower threshold, receive the interference reduction cooperation indication sent by the first gateway;
  • the sending unit 22 is further configured to send a reduce interference request message to the human body device of the second gateway according to the reduced interference coordination indication in the receiving unit 23;
  • the collaboration information further includes location information of the second gateway.
  • the receiving unit 23 is further configured to: if the distance between the first gateway and the second gateway is greater than a preset upper threshold, receive an interference cancellation cooperation indication sent by the first gateway;
  • the sending unit 22 is further configured to send an interference cancellation notification message to the human body device of the second gateway according to the interference cancellation cooperation indication in the receiving unit 23.
  • the receiving unit 23 is further configured to receive an authentication pass message sent by the first gateway;
  • the sending unit 22 is further configured to send data to the first gateway, so that the first gateway processes the data according to the data processing type;
  • the collaboration information further includes data processing request information, where the data processing request message includes authentication information and a data processing type.
  • the receiving unit 23 is further configured to acquire user data of the first gateway from the first gateway, and receive configuration data of the first gateway sent by the first gateway.
  • the receiving unit 23 is further configured to: when the first gateway determines that the user data of the first gateway is saved in the cloud server, receive user data of the first gateway sent by the cloud server.
  • the first gateway or the second gateway provided by the embodiment of the present invention may be specifically a mobile personal station (MPS), where the mobile personal station is used to assist an individual to perform personal device to which the individual belongs.
  • MPS mobile personal station
  • MPS can automatically determine the communication method between implanted devices, wearable devices, portable devices and other human body devices (such as: Bluetooth, wifi, ZigBee, etc. for separate networking or hybrid networking) and maintain and optimize network operation, acting as a human body device
  • the communication gateway of the Internet MPS can also be responsible for the sensing data collected from the human body and the environment (such as: family, car, etc.) (such as: the heart rate, blood pressure of the human body; the temperature of the home environment, the use of water and electricity coal; the running state of the car)
  • MPS can be integrated into a smart device or exist as a physical device, the hair Ming Ming does not impose any restrictions on this.
  • the first gateway may cooperate with the second gateway according to the cellular network performance information in the collaboration information
  • the second gateway serves as an anchor for accessing the Internet, thereby enhancing the capability of the first gateway to access the Internet, and further collaborating with the second gateway according to the location information of the second gateway in the collaboration information to reduce the first
  • the interference between the gateway and the second gateway may further cooperate with the second gateway according to the configuration request information in the collaboration information, enhance the configuration capability of the second gateway, and further process the request according to the data in the collaboration information.
  • the information cooperates with the second gateway to enhance the data analysis capability of the first gateway. It can be seen that by moving the interaction between the personal stations, each mobile personal station can better meet the needs of the human body equipment, so that the human body equipment can provide better services for the user and enhance the user experience.
  • FIG. 15 is a schematic diagram of a hardware of a mobile personal station (MPS) according to an embodiment of the present invention.
  • the mobile personal station may be the first gateway or the second gateway in the foregoing embodiment, and the mobile personal station provided by the embodiment of the present invention may be used for
  • the method implemented in the embodiments of the present invention shown in FIG. 1 to FIG. 8 is implemented.
  • FIG. 1-8 For details not disclosed, please refer to FIG. 1-8.
  • the various embodiments of the invention are shown.
  • the mobile personal station includes a processor 31, a communication interface 32, a memory 33, and a bus 34.
  • the processor 31, the communication interface 32, and the memory 33 communicate via the bus 34.
  • the processor 31 is a control center of the mobile personal station, and the processor 31 executes each of the mobile personal stations by running or executing a software program and/or module stored in the memory 33 and calling data stored in the memory 333. Functions and processing data.
  • the communication interface 32 can be implemented by an optical communication interface, an electrical communication interface, a wireless communication interface, or any combination thereof.
  • the optical communication interface can be a small package pluggable (English: small form-factor pluggable transceiver, abbreviation: SFP) communication interface Port (English: transceiver), enhanced small form-factor pluggable (English: enhanced small form-factor pluggable, abbreviation: SFP+) communication interface or 10 Gigabit small package pluggable (English: 10 Gigabit small form-factor pluggable, abbreviation :XFP) communication interface.
  • the electrical communication interface can be an Ethernet (English: Ethernet) network interface controller (English: network interface controller, abbreviation: NIC).
  • the wireless communication interface can be a wireless network interface controller (English: wireless network interface controller, abbreviation: WNIC). There may be multiple communication interfaces 32 in the receiving end.
  • the memory 33 can be used to store software programs or data, and the processor 31 executes various functional applications and data processing of the mobile personal station by running software programs or data stored in the memory 33.
  • the processor 31 of the first mobile personal station establishes a network connection with the second mobile personal station through the communication interface 32, and the first mobile personal station is used to manage the first user.
  • the human body device, the second mobile personal station is configured to manage the human body device of the second user;
  • the communication interface 32 acquires the cooperation information of the second mobile personal station through the network connection, and sends the cooperation information to the memory 33, the collaboration
  • the information includes cellular network performance information; if the cellular network performance information meets a preset performance condition, the processor 31 uses the second mobile personal station as an anchor for accessing the Internet, so as to facilitate the first user Human body equipment is connected to the Internet.
  • the cellular network performance information includes a wireless signal strength of the second mobile personal station and a network uplink and downlink access rate.
  • the processor 31 uses the second mobile personal station as an anchor point for accessing the Internet.
  • the method may include the following steps: the processor 31 determines, according to the cellular network performance information, whether the wireless signal strength of the second mobile personal station meets a preset strength threshold, and the network uplink and downlink access rate of the second mobile personal station Whether the rate threshold is met; if the wireless signal strength of the second mobile personal station meets the preset strength threshold, and the network uplink and downlink access rate of the second mobile personal station meets the rate threshold, the processor 31 Second, the mobile personal station serves as an anchor for accessing the Internet.
  • the processor 31 uses the second mobile personal station as an access to the Internet.
  • the anchor point may specifically include the step of the processor 31 invoking the communication interface 32 to send a cellular network access proxy request message to the second mobile personal station, so that the second mobile personal station requests the message according to the cellular network access proxy. Determining whether to provide a cellular network access service to the first mobile personal station; if the communication interface 32 receives an access response message sent by the second mobile personal station, the processor 31 according to the access response message Uplink and downlink wireless links of the first mobile personal station are modified to be local wireless links between the first mobile personal station and the second mobile personal station, such that the second mobile personal station serves as the first The anchor point of the mobile personal station to access the Internet.
  • the collaboration information further includes location information of the second mobile personal station.
  • the method may further include the following steps: The device 31 determines, according to the location information of the second mobile personal station in the memory 33, whether the distance between the first mobile personal station and the second mobile personal station satisfies a preset distance threshold, the distance threshold includes a distance a lower threshold and a distance upper threshold; if the distance between the first mobile personal station and the second mobile personal station is less than a preset lower limit threshold, the processor 31 invokes the communication interface 32 to the first mobile individual
  • the human body device of the station transmits a reduce interference request message to cause the human body device of the first mobile personal station to reduce its own transmit power; if the distance between the first mobile personal station and the second mobile personal station is greater than The preset distance upper threshold, the processor 31 calls the communication interface 32 to send an interference cancellation notification message to the human body device of the first mobile personal station, In addition to limiting the transmission power of the apparatus body of
  • the processor 31 calls the communication interface 32 to send the reduced interference to the second mobile personal station. Synchronizing the indication, so that the second mobile personal station transmits a reduce interference request message to the human body device of the second mobile personal station according to the reduced interference coordination indication.
  • the processor 31 invokes the communication interface 32 to send interference cancellation to the second mobile personal station. Cooperative indication so that the second mobile The human station transmits an interference cancellation notification message to the human body device of the second mobile personal station according to the interference cancellation cooperation indication.
  • the collaboration information further includes configuration request information, where the configuration request message includes configuration information, and an identifier of the second mobile personal station; at this time, the communication interface 32 acquires the second mobile by using the network connection.
  • the method may further include: the processor 31 determining, according to the identifier of the second mobile personal station in the memory 33, whether the second mobile personal station belongs to the first mobile personal station management; The second mobile personal station is attributed to the first mobile personal station management, and the processor 31 configures the second mobile personal station according to the configuration information.
  • the collaboration information further includes data processing request information, where the data processing request message includes authentication information and a data processing type.
  • the communication interface 32 acquires the cooperation information of the second mobile personal station by using the network connection.
  • the method may further include the step of: the processor 31 authenticating the second mobile personal station according to the authentication information in the memory 33; when the second mobile personal station passes the authentication of the first mobile personal station, The processor 31 calls the communication interface 32 to send an authentication pass message to the second mobile personal station; and receives the data sent by the second mobile personal station to the memory 33; the processor 31 pairs the data according to the data type in the memory 33. The data is processed.
  • the method may further include the step of: the processor 31 passing the user data of the first mobile personal station through the communication interface 32 transmitting to the second mobile personal station; and transmitting configuration data of the first mobile personal station to the second mobile personal station via the communication interface 32.
  • the processor 31 sends the user data of the first mobile personal station to the second mobile personal station through the communication interface 32, and may specifically include the following steps: the processor 31 determines that the first mobile phone is saved in the cloud server. The user data of the personal station; when the user data of the first mobile personal station is saved in the cloud server, the processor 31 invokes the communication interface 32 to send a push request message to the cloud server, so that the cloud server User data of the first mobile personal station according to the push request message Send to the second mobile personal station.
  • the processor 31 of the second mobile personal station establishes a network connection with the first mobile personal station through the communication interface 32, and the first mobile personal station is used to manage the first a human body device of the user, the second mobile personal station is configured to manage a human body device of the second user; the processor 31 transmits the collaboration information to the first mobile personal station via the network connection call communication interface 32, the collaborative information
  • the cellular network performance information is included to cause the first mobile personal station to determine whether to use the second mobile personal station as an anchor for accessing the Internet based on the cellular network performance information.
  • the communication interface 32 may further include the step of: receiving, by the communication interface 32, the cellular network sent by the first mobile personal station.
  • the processor 31 authenticates the first mobile personal station according to the cellular network access proxy request message; when the first mobile personal station is authenticated, the processing The device 31 invokes the communication interface 32 to send an access response message to the first mobile personal station, such that the first mobile personal station transmits the uplink and downlink wireless links of the first mobile personal station according to the access response message. Modified to a local wireless link between the first mobile personal station and the second mobile personal station.
  • the collaboration information further includes location information of the second mobile personal station, and after the processor 31 sends the collaboration information to the first mobile personal station through the network connection call communication interface 32,
  • the method may include the step of: if the distance between the first mobile personal station and the second mobile personal station is less than a preset lower limit threshold, the communication interface 32 receives the reduced interference coordination indication sent by the first mobile personal station and Transmitted to the processor 31; the processor 31 transmits a reduce interference request message to the human body device of the second mobile personal station via the communication interface 32 according to the reduced interference coordination indication.
  • the communication interface 32 receives the interference cancellation coordinated indication sent by the first mobile personal station and sends To processor 31; processor 31 is rooted According to the interference cancellation cooperation instruction, an interference cancellation notification message is transmitted to the human body device of the second mobile personal station through the communication interface 32.
  • the collaboration information further includes data processing request information, where the data processing request message includes authentication information and a data processing type.
  • the processor 31 calls the communication interface 32 to the first mobile through the network connection.
  • the method may further include the steps: the communication interface 32 receives the authentication pass message sent by the first mobile personal station and sends the message to the processor 31; the processor 31 sends the first mobile personal station to the first mobile station through the communication interface 32.
  • the data is transmitted such that the first mobile personal station processes the data in accordance with the data processing type.
  • the method may further include the step of: the processor 31 acquiring the first mobile from the first mobile personal station User data of the personal station; and invoking the communication interface 32 to receive configuration data of the first mobile personal station transmitted by the first mobile personal station.
  • the method may specifically include: when the first mobile personal station determines that the first mobile phone is saved in the cloud server When the user data of the personal station is received, the processor 31 receives the user data of the first mobile personal station transmitted by the cloud server through the communication interface 32.
  • the first mobile personal station obtains the cooperative information of the second mobile personal station, and then performs corresponding cooperative operations according to the collaborative information.
  • the first mobile personal station may according to the cellular network performance information in the collaborative information.
  • the second mobile personal station cooperates to use the second mobile personal station as an anchor point for accessing the Internet, thereby enhancing the capability of the first mobile personal station to access the Internet, and may also be based on the second mobile individual in the collaborative information.
  • the location information of the station cooperates with the second mobile personal station to reduce interference between the first mobile personal station and the second mobile personal station, and may further request the information and the second mobile individual according to the configuration information in the collaboration information.
  • the station cooperates to enhance the configuration capability of the second mobile personal station, and may further cooperate with the second mobile personal station according to the data processing request information in the collaboration information to enhance the number of the first mobile personal station. According to analytical capabilities. It can be seen that by moving the interaction between the personal stations, each mobile personal station can better meet the needs of the human body equipment, so that the human body equipment can provide better services for the user and enhance the user experience.
  • FIG. 16 is a data interaction system between gateways according to an embodiment of the present invention, including a first gateway 41, and a second gateway 42 connected to the first gateway 41.
  • the first gateway 41 and the second gateway 42 can be any mobile personal station.
  • the data interaction system between the gateways provided by the embodiments of the present invention can be used to implement the implementations of the present invention shown in FIG. 1-8.
  • FIG. 1-8 For the convenience of the description, only the parts related to the embodiments of the present invention are shown.
  • FIG. 1 to FIG. 8 For the details of the specific technical details, please refer to the embodiments of the present invention shown in FIG. 1 to FIG. 8 , and details are not described herein again. .
  • the data interaction system between the gateways may further include a cloud server 43 connected to both the first gateway 41 and the second gateway 42.
  • the cloud server 43 involved in the embodiment of the present invention may be a cloud platform composed of one or more, for example, a plurality of cloud servers 43.
  • the cloud platform may store information about each user and historical data, and the cloud platform is in the cloud. When calculating, depth and exact calculations can be performed by calling each user's information and historical data.
  • the cloud platform can be used to store the sensing data generated by each human body device; and perform data analysis on the sensing data collected from each human body device, and extract the changing characteristics and laws of the data, for example, the cloud platform can be calculated within one year.
  • the cloud platform can also make correlation analysis based on the results of data analysis, giving decision and suggestion information, for example: if the cloud platform finds an increase in blood pressure Caused by drinking, the MPS will send alarm information and action suggestions to the owner, such as stopping drinking, or limiting the amount of alcohol consumption at a certain value; of course, the cloud platform can also communicate with the MPS, that is, configure and manage the parameters of the MPS. For example, an adult can log in to the cloud platform to remotely configure and manage the child's MPS, and the present invention does not impose any limitation.
  • the first mobile personal station and the second mobile personal station may perform data migration by performing data interaction with the cloud server 43 to migrate configuration data and user data of the first mobile personal station to the second mobile personal station, where the first mobile personal station and the second mobile personal station are completed.
  • steps S801 to S804 for details, and details are not described herein again.
  • the first mobile personal station obtains the coordinated information of the second mobile personal station, and then performs corresponding cooperative operations according to the collaborative information.
  • the first mobile personal station may perform the cellular network performance according to the coordinated information.
  • the information is coordinated with the second mobile personal station, and the second mobile personal station is used as an anchor point for accessing the Internet, thereby enhancing the capability of the first mobile personal station to access the Internet, and may also be based on the second in the collaborative information.
  • the location information of the mobile personal station cooperates with the second mobile personal station to reduce interference between the first mobile personal station and the second mobile personal station, and may further request the information and the second according to the configuration information in the collaboration information.
  • the mobile personal station cooperates to enhance the configuration capability of the second mobile personal station, and may further cooperate with the second mobile personal station according to the data processing request information in the collaboration information to enhance data analysis capability of the first mobile personal station. . It can be seen that by moving the interaction between the personal stations, each mobile personal station can better meet the needs of the human body equipment, so that the human body equipment can provide better services for the user and enhance the user experience.
  • the disclosed system, apparatus, and method may be implemented in other manners.
  • the device embodiments described above are merely illustrative.
  • the division of the modules or units is only a logical function division.
  • there may be another division manner for example, multiple units or components may be used. Combinations can be integrated into another system, or some features can be ignored or not executed.
  • Another point, the mutual coupling or direct coupling shown or discussed The or communication connection may be an indirect coupling or communication connection through some interface, device or unit, and may be in electrical, mechanical or other form.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
  • each functional unit in each embodiment of the present invention may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
  • the above integrated unit can be implemented in the form of hardware or in the form of a software functional unit.
  • the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • the technical solution of the present invention which is essential or contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product stored in a storage medium.
  • a number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) or a processor to perform all or part of the steps of the methods described in various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

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Abstract

本发明的实施例提供一种网关之间的数据交互方法及装置,涉及通信领域,能够通过以移动个人站为例的网关之间的交互满足人体设备的需求。该方案包括:第一网关与第二网关建立网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;所述第一网关通过所述网络连接获取所述第二网关的协同信息,所述协同信息包括蜂窝网络性能信息;若所述蜂窝网络性能信息满足预设的性能条件,所述第一网关将所述第二网关作为接入互联网的锚点,以便于将所述第一用户的人体设备接入互联网。

Description

一种网关之间的数据交互方法及装置
本申请要求于2015年03月34日提交中国专利局、申请号为201510131639.8、发明名称为“一种网关之间的数据交互方法及装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本发明涉及通信领域,尤其涉及一种网关之间的数据交互方法及装置。
背景技术
目前,大量可穿戴设备(例如智能手环)和可植入设备(例如心脏起搏器)已经广泛应用于用户的日常生活,这些人体设备(本申请将可穿戴设备和可植入设备统称为人体设备)可以感知人体活动以及外界环境的参数,人体设备可以将获得的数据进行汇总,以便用户可以根据人体设备提供的数据合理安排生活中各项事宜。
不同类型的人体设备的对通信的需求各不相同,例如,谷歌眼镜的视频业务要求高速率和低时延的通信网络,智能手环用于感知非人体安全的数据(体温,步速等),对于通信速率以及时延没有具体要求,即便是低速率和高时延的通信网络也可以满足智能手环的需求,另外,对于感知数据的处理,人体设备配置等方面,不同人体设备的需求也不相同。
随着用户拥有的人体设备的增多,如何通过不同的网关对这些人体设备进行统一管理,以满足人体设备的需求,现有技术还没有提出一种解决方案。
发明内容
本发明的实施例提供一种网关之间的数据交互方法及装置,能够通过以移动个人站为例的网关之间的交互满足人体设备的需求。
为达到上述目的,本发明的实施例采用如下技术方案:
第一方面,本发明的实施例提供一种网关之间的数据交互方法,包括:
第一网关与第二网关建立网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
所述第一网关通过所述网络连接获取所述第二网关的协同信息,所述协同信息包括蜂窝网络性能信息;
若所述蜂窝网络性能信息满足预设的性能条件,所述第一网关将所述第二网关作为接入互联网的锚点,以便于将所述第一用户的人体设备接入互联网。
结合第一方面,在第一方面的第一种可能的实现方式中,所述蜂窝网络性能信息包括所述第二网关的无线信号强度和网络上下行接入速率;
所述若所述蜂窝网络性能信息满足预设的性能条件,所述第一网关则将所述第二网关作为接入互联网的锚点,包括:
所述第一网关根据所述蜂窝网络性能信息,确定所述第二网关的无线信号强度是否满足预设强度阈值,以及所述第二网关的网络上下行接入速率是否满足速率阈值;
若所述第二网关的无线信号强度满足预设强度阈值,以及所述第二网关的网络上下行接入速率满足速率阈值,所述第一网关则将所述第二网关作为接入互联网的锚点。
结合第一方面或第一方面的第一种可能的实现方式,在第一方面的第二种可能的实现方式中,所述第一网关将所述第二网关作为接入互联网的锚点,包括:
所述第一网关向所述第二网关发送蜂窝网络接入代理请求消息,以便所述第二网关根据所述蜂窝网络接入代理请求消息确定是否向所述第一网关提供蜂窝网络接入服务;
若接收到所述第二网关发送的接入响应消息,所述第一网关则根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路,以使得所述第二 网关作为所述第一网关接入互联网的锚点。
结合第一方面以及第一方面的第一至第二种可能的实现方式中的任一种可能的实现方式,在第一方面的第三种可能的实现方式中,所述协同信息还包括所述第二网关的位置信息,
所述获取所述第二网关的协同信息之后,还包括:
所述第一网关根据所述第二网关的位置信息确定所述第一网关和所述第二网关之间的距离是否满足预设的距离阈值,所述距离阈值包括距离下限阈值和距离上限阈值;
若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,所述第一网关则向所述第一网关的人体设备发送减少干扰请求消息,以使得所述第一网关的人体设备减小自身的发射功率;
若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,所述第一网关则向所述第一网关的人体设备发送干扰解除通知消息,以解除对所述第一网关的人体设备的发射功率的限制。
结合第一方面的第三种可能的实现方式,在第一方面的第四种可能的实现方式中,若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则所述方法还包括:
所述第一网关向所述第二网关发送减少干扰协同指示,以便所述第二网关根据所述减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息。
结合第一方面的第三种可能的实现方式,在第一方面的第五种可能的实现方式中,若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则所述方法还包括:
所述第一网关向所述第二网关发送干扰解除协同指示,以便所述第二网关根据所述干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
结合第一方面以及第一方面的第一至第五种可能的实现方式中的任一种可能的实现方式,在第一方面的第六种可能的实现方式中,所述协同信息还包括配置请求信息,所述配置请求消息包括配置信 息,以及所述第二网关的标识;
所述获取所述第二网关的协同信息之后,还包括:
所述第一网关根据所述第二网关的标识确定所述第二网关是否归属于所述第一网关管理;
若所述第二网关归属于所述第一网关管理,所述第一网关根据所述配置信息对所述第二网关进行配置。
结合第一方面以及第一方面的第一至第六种可能的实现方式中的任一种可能的实现方式,在第一方面的第七种可能的实现方式中,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型;
所述获取所述第二网关的协同信息之后,还包括:
所述第一网关根据所述认证信息对所述第二网关进行认证;
当所述第二网关通过所述第一网关的认证时,所述第一网关向所述第二网关发送认证通过消息;
所述第一网关接收所述第二网关发送的数据;
所述第一网关根据所述数据类型对所述数据进行处理。
结合第一方面以及第一方面的第一至第七种可能的实现方式中的任一种可能的实现方式,在第一方面的第八种可能的实现方式中,在第一网关与第二网关建立网络连接之后,还包括:
所述第一网关向所述第二网关发送所述第一网关的用户数据和所述第一网关的配置数据。
第二方面,本发明的实施例提供一种网关之间的数据交互方法,包括:
第二网关与第一网关建立网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
所述第二网关通过所述网络连接向所述第一网关发送协同信息,所述协同信息包括蜂窝网络性能信息,以使得所述第一网关根据所述蜂窝网络性能信息确定是否将所述第二网关作为接入互联网的锚点。
结合第二方面,在第二方面的第一种可能的实现方式中,在所述第二网关向所述第一网关发送协同信息之后,还包括:
当接收到所述第一网关发送的蜂窝网络接入代理请求消息时,所述第二网关根据所述蜂窝网络接入代理请求消息对所述第一网关进行认证;
当所述第一网关被认证通过时,所述第二网关向所述第一网关发送接入响应消息,以使得所述第一网关根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路。
结合第二方面或第二方面的第一种可能的实现方式,在第二方面的第二种可能的实现方式中,所述协同信息还包括所述第二网关的位置信息,
所述第二网关向所述第一网关发送协同信息之后,还包括:
若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,所述第二网关则接收所述第一网关发送的减少干扰协同指示;
所述第二网关根据所述减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息。
结合第二方面的第二种可能的实现方式,在第二方面的第三种可能的实现方式中,若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则所述方法还包括:
所述第二网关接收所述第一网关发送的干扰解除协同指示;
所述第二网关根据所述干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
结合第二方面以及第二方面的第一至第三种可能的实现方式中的任一种可能的实现方式,在第二方面的第四种可能的实现方式中,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型,
所述第二网关向所述第一网关发送协同信息之后,还包括:
所述第二网关接收所述第一网关发送的认证通过消息;
所述第二网关向所述第一网关发送数据,以便所述第一网关根据所述数据处理类型对所述数据进行处理。
结合第二方面以及第二方面的第一至第四种可能的实现方式中的任一种可能的实现方式,在第二方面的第五种可能的实现方式中,在第二网关与第一网关建立网络连接之后,还包括:
所述第二网关从所述第一网关获取所述第一网关的用户数据;
所述第二网关接收所述第一网关发送的所述第一网关的配置数据。
第三方面,本发明的实施例提供一种网关,所述网关包括:
连接单元,用于建立第一网关与第二网关的网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
获取单元,用于通过所述连接建立单元建立的网络连接获取所述第二网关的协同信息,所述协同信息包括蜂窝网络性能信息;
网络接入单元,用于若所述协同信息获取单元中的蜂窝网络性能信息满足预设的性能条件,将所述第二网关作为接入互联网的锚点,以便于将所述第一用户的人体设备接入互联网。
结合第三方面,在第三方面的第一种可能的实现方式中,
所述网络接入单元,具体用于根据所述蜂窝网络性能信息,确定所述第二网关的无线信号强度是否满足预设强度阈值,以及所述第二网关的网络上下行接入速率是否满足速率阈值;若所述第二网关的无线信号强度满足预设强度阈值,以及所述第二网关的网络上下行接入速率满足速率阈值,则将所述第二网关作为接入互联网的锚点;
其中,所述蜂窝网络性能信息包括所述第二网关的无线信号强度和网络上下行接入速率。
结合第三方面或第三方面的第一种可能的实现方式,在第三方面的第二种可能的实现方式中,
所述网络接入单元,具体用于向所述第二网关发送蜂窝网络接入代理请求消息,以便所述第二网关根据所述蜂窝网络接入代理请求消息确定是否向所述第一网关提供蜂窝网络接入服务;若接收到所述第二网关发送的接入响应消息,则根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路,以使得所述第二网关作为所述第一网关接入互联网的锚点。
结合第三方面以及第三方面的第一至第二种可能的实现方式中的任一种可能的实现方式,在第三方面的第三种可能的实现方式中,所述协同信息获取单元中的协同信息还包括所述第二网关的位置信息,
所述网关还包括确定单元和发送单元,其中,
所述确定单元,用于根据所述第二网关的位置信息确定所述第一网关和所述第二网关之间的距离是否满足预设的距离阈值,所述距离阈值包括距离下限阈值和距离上限阈值;
所述发送单元,用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则向所述第一网关的人体设备发送减少干扰请求消息,以使得所述第一网关的人体设备减小自身的发射功率;若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则向所述第一网关的人体设备发送干扰解除通知消息,以解除对所述第一网关的人体设备的发射功率的限制。
结合第三方面的第三种可能的实现方式,在第三方面的第四种可能的实现方式中,
所述发送单元,还用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则向所述第二网关发送减少干扰协同指示,以便所述第二网关根据所述减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息。
结合第三方面的第三种可能的实现方式,在第三方面的第五种可能的实现方式中,
所述发送单元,还用于若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则向所述第二网关发送干扰解除协同指示,以便所述第二网关根据所述干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
结合第三方面以及第三方面的第一至第五种可能的实现方式中的任一种可能的实现方式,在第三方面的第六种可能的实现方式中,所述协同信息获取单元中的协同信息还包括配置请求信息,所述配置请求消息包括配置信息,以及所述第二网关的标识,
其中,所述网关还包括配置单元,
所述确定单元,还用于根据所述第二网关的标识确定所述第二网关是否归属于所述第一网关管理;
所述配置单元,用于若所述第二网关归属于所述第一网关管理,则根据所述配置信息对所述第二网关进行配置。
结合第三方面以及第三方面的第一至第六种可能的实现方式中的任一种可能的实现方式,在第三方面的第七种可能的实现方式中,所述协同信息获取单元中的协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型,
其中,所述网关还包括认证单元、接收单元和数据处理单元,
所述认证单元,用于根据所述认证信息对所述第二网关进行认证;
所述发送单元,还用于当所述第二网关通过所述第一网关的认证时,向所述第二网关发送认证通过消息;
所述接收单元,用于接收所述第二网关发送的数据;
所述数据处理单元,用于对所述接收单元中的数据对所述数据进行处理。
结合第三方面以及第三方面的第一至第七种可能的实现方式中的任一种可能的实现方式,在第三方面的第八种可能的实现方式中,
所述发送单元,还用于向所述第二网关发送所述第一网关的用户数据以及将所述第一网关的配置数据。
第四方面,本发明的实施例提供一种网关,所述网关包括:
连接单元,用于第二网关与第一网关建立网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
发送单元,用于通过所述连接建立单元建立的网络连接向所述第一网关发送协同信息,所述协同信息包括蜂窝网络性能信息,以使得所述第一网关根据所述蜂窝网络性能信息确定是否将所述第二网关作为接入互联网的锚点。
结合第四方方面,在第四方面的第一种可能实现的方式中,所述网关还包括认证单元,其中,
所述认证单元,用于当接收到所述第一网关发送的蜂窝网络接入代理请求消息时,根据所述蜂窝网络接入代理请求消息对所述第一网关进行认证;
所述发送单元,还用于当所述认证单元中的所述第一网关被认证通过时,向所述第一网关发送接入响应消息,以使得所述第一网关根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路。
结合第四方面或第五方面的第一种可能实现的方式,在第四方面的第二种可能实现的方式中,
所述接收单元,还用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则接收所述第一网关发送的减少干扰协同指示;
所述发送单元,还用于根据所述接收单元中的减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息;
其中,所述协同信息中还包括所述第二网关的位置信息。
结合第四方面的第二种可能实现的方,在第四方面的第三种可能实现的方式中,
所述接收单元,还用于若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,接收所述第一网关发送的干扰解除 协同指示;
所述发送单元,还用于根据所述接收单元中的干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
结合第四方面以及第四方面的第一至第三种可能的实现方式中的任一种可能的实现方式,在第四方面的第四种可能实现的方式中,
所述接收单元,还用于接收所述第一网关发送的认证通过消息;
所述发送单元,还用于向所述第一网关发送数据,以便所述第一网关根据所述数据处理类型对所述数据进行处理;
其中,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型。
结合第四方面以及第四方面的第一至第四种可能的实现方式中的任一种可能的实现方式,在第四方面的第五种可能实现的方式中,
所述接收单元,还用于从所述第一网关获取所述第一网关的用户数据;以及接收所述第一网关发送的所述第一网关的配置数据。
根据第一方面和第三方面的内容可知,第一网关与第二网关建立网络连接后;通过该网络连接获取所述第二网关的蜂窝网络性能信息,其中,所述蜂窝网络性能信息包括所述第二网关的无线信号强度和网络上下行接入速率;这样,第一网关便可以根据所述蜂窝网络性能信息确定满足预设的性能条件的第二网关,进而将第二网关作为接入互联网的锚点,以便于将所述第一用户的至少一个人体设备接入互联网,从而避免处于恶劣蜂窝网络环境下的第一网关无法有效将人体设备接入互联网的问题。
根据第二方面和第四方面的内容可知,第二网关与第一网关建立网络连接后,通过该网络连接向第一网关发送第二网关自身的协同信息,例如蜂窝网络性能信息,以使得第一网关根据协同信息中的该蜂窝网络性能信息与该第二网关进行协同,将该第二网关作为接入互联网的锚点,增强该第一网关的人体设备接入互联网的能力,可以看出,通过第二网关与第一网关之间的交互,各移网关可以更好的满足人体设备的需求,使得人体设备能够为用户提供更好的服 务,提升了用户体验。
附图说明
为了更清楚地说明本发明实施例的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本发明实施例提供的移动个人站与人体设备的连接示意图;
图2为本发明实施例提供的一种网关之间的数据交互方法的流程示意图一;
图3为本发明实施例提供的一种网关之间的数据交互方法的流程示意图二;
图4为本发明实施例提供的一种网关之间的数据交互方法的流程示意图三;
图5为本发明实施例提供的一种网关之间的数据交互方法的流程示意图四;
图6为本发明实施例提供的一种网关之间的数据交互方法的流程示意图五;
图7为本发明实施例提供的一种网关之间的数据交互方法的流程示意图六;
图8为本发明实施例提供的一种网关之间的数据交互方法的流程示意图七;
图9为本发明实施例提供的第一网关的结构示意图一;
图10为本发明实施例提供的第一网关的结构示意图二;
图11为本发明实施例提供的第一网关的结构示意图三;
图12为本发明实施例提供的第一网关的结构示意图四;
图13为本发明实施例提供的第二网关的结构示意图一;
图14为本发明实施例提供的第二网关的结构示意图二;
图15为本发明实施例提供的一种移动个人站的硬件示意图;
图16为本发明实施例提供的一种网关之间的数据交互系统的结构示意图一;
图17为本发明实施例提供的一种网关之间的数据交互系统的结构示意图二。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
随着每个用户使用的人体设备的增加,所述人体设备包括人体设备和便携式设备,必然会出现一种用于统一管理人体设备的网关,本文将此种网关称为移动个人站(MPS,Mobile Personal Station,本发明的实施例中,以第一网关为第一MPS,第二网关为第二MPS为例进行说明),该MPS是一种用于辅助个人对海量人体设备或相关设备进行通信、管理、数据分析的逻辑设备单元。如图1所示,该MPS可以自动确定可植入设备、穿戴式设备、便携设备等人体设备间的通信方式(如:蓝牙、Wi-Fi(Wireless Fidelity,无线保真)、ZigBee(紫蜂协议,一种基于IEEE802.15.4标准的低功耗局域网协议)等单独组网或混合组网)并维护和优化网络运行,还可以充当人体设备到互联网的通信网关。该MPS还可以负责对人体设备的管理(如:设备配置和电源管理),还可以对采集自人体和环境(如:家庭、汽车等)的感知数据(如:人体的心率、血压;家庭环境的温度、水电煤使用情况;汽车运行状态)进行轻量级数据分析,并与云端数据服务器进行数据同步和协同。该MPS还可以通过智能设备(如:手机、平板电脑、智能眼镜等)与用户进行友好的信息交互(如:健康警告、日历建议等数据综合分析建议)。
本发明以下实施例中的多个移动个人站可以属于同一用户,或者,同一家庭的不同成员,这样,多个移动个人站之间可以预先进 行相互授权,以便多个移动个人站之间进行协同操作。
本文中术语“和/或”,仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。
本发明实施例提供的一种网关之间的数据交互方法,如图2所示,该方法包括:
S101、第一网关与第二网关建立网络连接,该第一网关用于管理第一用户的人体设备,该第二网关用于管理第二用户的人体设备。
其中,该第一网关可以具体为第一用户的第一移动个人站,用于对第一用户的一个或多个人体设备进行通信、管理、数据分析等;类似的,该第二网关可以具体为第二用户的第二移动个人站,用于对第二用户的一个或多个人体设备进行通信、管理、数据分析等。
具体的,该第一网关与第二网关可通过本地直连,或者,广域网连接建立网络连接,以便于后续第一网关与第二网关之间在建立好的网络连接上进行数据交互。
S102、第一网关通过该网络连接获取第二网关的协同信息,该协同信息包括蜂窝网络性能信息。
可选地,该蜂窝网络性能信息包括该第二网关的无线信号强度和网络上下行接入速率等。
进一步地,第二网关的协同信息中还可以包括第二网关的位置信息、配置请求信息以及数据处理请求信息等,本申请将在后续实施例中进行详细阐述,故此处不在赘述。
S103、若该蜂窝网络性能信息满足预设的性能条件,第一网关将第二网关作为接入互联网的锚点,以便于将第一用户的人体设备接入互联网。
其中,第一网关确定该蜂窝网络性能信息是否满足预设的性能条件,可以具体包括:确定该第二网关的无线信号强度满足预设强度阈值、以及该第二网关的网络上下行接入速率满足速率阈值。
若该蜂窝网络性能信息满足预设的性能条件,第一网关将第二网关作为接入互联网的锚点,将第一网关所管理的第一用户的人体设备接入互联网,进而增强该第一移动个人站接入互联网的能力,其中,第一网关将第二网关作为接入互联网的锚点的方法可参见下述实施例中步骤S301-S311,故此处不再赘述。
进一步地,如步骤S102中所述,第一网关获取到的第二网关的协同信息中,还可以包括二网关的位置信息、配置请求信息以及数据处理请求信息等,因此,在本发明实施例的另一种可能的实现方式中,以第一网关为第一移动个人站,第二网关为第二移动个人站为例,该方法包括:
S201、第一移动个人站与第二移动个人站建立网络连接。
S202、该第一移动个人站获取该第二移动个人站的协同信息,该协同信息包括:蜂窝网络性能信息、第二移动个人站的位置信息、配置请求信息、数据处理请求信息中的至少一个。
S203、该第一移动个人站根据该协同信息进行相应的操作。
其中,该第一移动个人站与该第二移动个人站可以是已经相互授权的多个移动个人站之中的任意两个移动个人站。
具体地,该第一移动个人站与第二移动个人站通过建立网络连接,如本地直连,或者,广域网连接,并获取该第二移动个人站的协同信息,根据该协同信息进行相应的协同操作,例如,该第一移动个人站可以根据步骤201中的该蜂窝网络性能信息与该第二移动个人站进行协同,将该第二移动个人站作为接入互联网的锚点,进而增强该第一移动个人站接入互联网的能力,还可以根据步骤201中的该第二移动个人站的位置信息与该第二移动个人站进行协同,减少该第一移动个人站与该第二移动个人站之间的干扰,还可以根据步骤201中的该配置请求信息与该第二移动个人站进行协同,增强该第二移动个人站的配置能力,还可以根据步骤201中的该数据处理请求信息与该第二移动个人站进行协同,增强该第一移动个人站的数据分析能力。
这样,采用上述方法,通过移动个人站之间的交互,各移动个人站可以更好的满足人体设备的需求,使得人体设备能够为用户提供更好的服务,提升了用户体验。
下面通过具体的示例对本发明实施例进行详细的描述:
对于多个移动个人站,各移动个人站的网络环境可能不同,为了避免无线环境较差的移动个人站无法接入互联网,在本发明实施例一种可能的实现方式中,该第一移动个人站获取该第二移动个人站的协同信息,其中,该协同信息包括该第二移动个人站的蜂窝网络性能信息。
进一步地,该第一移动个人站根据该蜂窝网络性能信息确定该第二移动个人站满足预设的性能条件,并向该第二移动个人站发送蜂窝网接入代理请求消息,以便该第二移动个人站根据该蜂窝网接入代理请求消息确定是否向该第一移动个人站提供蜂窝网接入服务。
可选地,该蜂窝网络性能信息包括该第二移动个人站的无线信号强度和网络上下行接入速率,则该第一移动个人站根据该蜂窝网络性能信息确定该第二移动个人站满足预设的性能条件具体包括:确定该第二移动个人站的无线信号强度满足预设强度阈值、以及该第二移动个人站的网络上下行接入速率满足速率阈值。
示例地,图3为该第一移动个人站与该第二移动个人站之间的交互示意图,包括:
S301、第一移动个人站检测自身的蜂窝网络性能,确定该第一移动个人站的蜂窝网络性能不满足预设性能条件。
也就是说,该第一移动个人站的网络性能较差,可能无法接入互联网,其中,该性能条件可由用户预先设置,例如,该第一移动个人站的无线信号强度小于预设的强度阈值,或者,该第一移动个人站的网络上下行接入速率小于速率阈值,此时,该第一移动个人站执行步骤S302。
S302、该第一移动个人站与第二移动个人站建立网络连接。
S303、该第一移动个人站向该第二移动个人站发送网络性能检测请求。
S304、该第二移动个人站根据该网络性能检测请求,检测自身的蜂窝网络性能。
S305、该第二移动个人站向该第一移动个人站发送该第二移动个人站的蜂窝网络性能信息。
S306、该第一移动个人站根据该蜂窝网络性能信息确定该第二移动个人站满足预设的性能条件。
S307、该第一移动个人站向该第二移动个人站发送蜂窝网络接入代理请求消息。
S308、该第二移动个人站根据该蜂窝网络接入代理请求消息对该第一移动个人站进行认证。
示例地,多个移动个人站在进行相互授权时,可以在移动个人站中预留信息,例如,已授权移动个人站的标识,该预留信息用于信息认证,这样,该蜂窝网接入代理请求消息可以包括该第一移动个人站的标识,该第二移动个人站根据该第一移动个人站的标识对该第一移动个人站进行认证,若该第一移动个人站的标识与该第二移动个人站中的预留信息相符,则认证通过。
S309、该第二移动个人站确定提供接入服务的数量未达到预设阈值。
具体地,该第二移动个人站对该第一移动个人站的认证通过后,可以进一步根据该第二移动个人站提供接入服务的移动个人站的数量,确定是否为该第一移动个人站提供接入服务。也就是说,若该第二移动个人站可以为N个其他的移动个人站提供接入服务,且该第二移动个人站已经提供接入服务的移动个人站的数量少于N,此时,该第二移动个人站可以为该第一移动个人站提供接入服务。
S310、该第二移动个人站向该第一移动个人站发送接入响应消息。
S311、该第一移动个人站根据该接入响应消息将该第一移动个人站的上下行无线链路修改为该第一移动个人站到该第二移动个人站之间的本地无线链路。
这样,该第一移动个人站与该第二移动个人站之间进行本地连接,该第一移动个人站将该第二移动个人站作为接入互联网的锚点,从而避免了该第一移动个人站由于无线环境较差,导致无法接入互联网。
需要说明的是,若该第一移动个人站没通过该第二移动个人站的认证,或者,该第二移动个人站提供接入服务的数量已经到达上限值,此时,该第一移动个人站在接收到该第二移动个人站发送的拒绝接入消息后,可以向其他移动个人站发送蜂窝网接入代理请求消息。
在本发明实施例的一种可能的实现方式中,该第一移动个人站可以先获取相邻的至少一个移动个人站的蜂窝网络性能信息,并对各移动个人站的网络性能进行排序,生成网络性能表,根据该网络性能表依次向满足预设性能条件的移动个人站发送蜂窝网接入代理请求消息,直到存在某一移动个人站确定为该第一移动个人站提供接入服务。
另外,图3所示步骤只是举例说明,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作并不一定是本发明实施例所必须的。
可以看出,第一网关与第二网关建立网络连接后,通过该网络连接获取所述第二网关的蜂窝网络性能信息,其中,所述蜂窝网络性能信息包括所述第二网关的无线信号强度和网络上下行接入速率;这样,第一网关便可以根据所述蜂窝网络性能信息确定满足预设的性能条件的第二网关,进而将第二网关作为接入互联网的锚点,以便于将所述第一用户的至少一个人体设备接入互联网,从而避免 处于恶劣蜂窝网络环境下的第一网关无法有效将人体设备接入互联网的问题。
对于多个移动个人站,各移动个人站之间由于距离较近,可能存在干扰,例如同一用户随身携带的多个移动个人站之间,为了避免多个移动个人站之间的干扰,在本发明实施例的另一种可能的实现方式中,该第一移动个人站获取到的该第二移动个人站的协同信息,包括该第二移动个人站的位置信息。
进一步地,该第一移动个人站根据该位置信息确定该第一移动个人站和该第二移动个人站之间的距离满足预设的距离阈值,该距离阈值可以具体包括距离下限阈值和距离上限阈值,进而向该第一移动个人站的人体设备发送减少干扰请求消息,和/或,向该第二移动个人站发送减少干扰协同指示,以便该第二移动个人站根据该减少干扰协同指示,向该第二移动个人站的人体设备发送减少干扰请求消息。
其中,该减少干扰请求消息可具体用于指示该人体设备减小发射功率,和/或,切换传输信道。
需要说明的是,在第一移动个人站与第二移动个人站之间的距离较近时,该第一移动个人站管理的人体设备发出的信号,可能被第二移动个人站接收,对该第二移动个人站造成干扰,同理,该第二移动个人站管理的人体设备发出的信号,也可能对该第一移动个人站造成干扰,另外,若该第一移动个人站管理的人体设备的传输信道,与该第二移动个人站管理的人体设备的传输信道相接近,也可能造成干扰。
在本发明实施例中,第一移动个人站在检测到与该第二移动个人站的距离达到预设的距离下限阈值时,例如,在距离20米以内时,可以发送减少干扰请求消息至该第一移动个人站管理的人体设备,指示该人体设备减小发射功率,和/或,切换传输信道,避免与该第二移动个人站产生干扰,同时,该第一移动个人站还可以发送减少 干扰协同指示至该第二移动个人站,双方设备协同调整,进一步降低了产生干扰的可能性。
另外,若该第一移动个人站根据该位置信息确定该第一移动个人站和该第二移动个人站之间的距离满足预设的距离上限阈值,例如,在距离50米以外时,可以向该第一移动个人站的人体设备发送干扰解除通知消息,和/或,向该第二移动个人站发送干扰解除协同指示,以便该第二移动个人站根据该干扰解除协同指示,向该第二移动个人站的人体设备发送干扰解除通知消息。
示例地,图4为该第一移动个人站与该第二移动个人站之间的交互示意图,包括:
S401、该第一移动个人站与该第二移动个人站建立网络连接。
S402、该第一移动个人站向该第二移动个人站发送位置检测请求。
S403、该第二移动个人站根据位置检测请求检测自身的位置信息,并将该位置信息发送至该第一移动个人站。
S404、该第一移动个人站根据该位置信息确定该第一移动个人站和该第二移动个人站之间的距离满足预设的距离上限阈值。
可选的,该距离下限阈值可以根据用户的平均身高预先进行设定。
S405、该第一移动个人站向该第一移动个人站的人体设备发送减少干扰请求消息。
当第一移动个人站与该第二移动个人站的距离,达到预设的距离上限阈值时,发送减少干扰请求消息至该第一移动个人站管理的人体设备,指示该第一移动个人站的人体设备减小发射功率,和/或,切换传输信道,以避免与该第二移动个人站产生干扰。
S406、该第一移动个人站向该第二移动个人站发送减少干扰协同指示。
S407、该第二移动个人站根据该减少干扰协同指示,向该第二移动个人站的人体设备发送减少干扰请求消息。
同时,当第一移动个人站与该第二移动个人站的距离,达到预设的距离上限阈值时,还可以向该第二移动个人站发送减少干扰协同指示,以使得向该第二移动个人站根据该减少干扰协同指示,向该第二移动个人站的人体设备发送减少干扰请求消息。
类似的,该减少干扰请求消息用于指示该人体设备减小发射功率,和/或,切换传输信道。
S408、该第一移动个人站再次获取该第二移动个人站的位置信息。
需要说明的是,该第一移动个人站可以按照一定的周期获取该第二移动个人站的位置信息,该周期可以由用户预先设置。
S409、该第一移动个人站根据该第二移动个人站位置信息确定该第一移动个人站和该第二移动个人站之间的距离满足预设的距离上限阈值。
S410、该第一移动个人站向该第一移动个人站的人体设备发送干扰解除通知消息。
具体的,第一移动个人站的人体设备根据该干扰解除通知消息,可以将自身的发射功率恢复至预设的功率,例如,将自身的发射功率恢复至步骤407之前使用的发射功率。
S411、该第一移动个人站向该第二移动个人站发送干扰解除协同指示。
S412、该第二移动个人站根据该干扰解除协同指示,向该第二移动个人站的人体设备发送干扰解除通知消息。
与步骤S410类似的,第二移动个人站的人体设备根据该干扰解除通知消息,可以将自身的发射功率恢复至预设的功率,例如,将自身的发射功率恢复至步骤407之前使用的发射功率。
具体地,由上述步骤S408至步骤S412,人体设备在减小发射功率,和/或,切换传输信道后,若两个移动个人站之间的距离增大,例如,达到用户预设的距离上限阈值时,可以恢复该人体设备之前的发射功率,和/或,传输信道,不影响该人体设备的最佳运行性能, 提高了用户体验。
图4所示步骤只是举例说明,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作并不一定是本发明实施例所必须的。
在同一家庭中,成年人可能需要对老人和儿童所携带的移动个人站进行配置管理,为了满足这样的需求,在本发明实施例的又一种可能的实现方式中,该第一移动个人站获取到的该第二移动个人站的协同信息,包括该第二移动个人站的配置请求信息。
具体地,该配置请求信息可以包括配置信息,以及该第二移动个人站的标识,则该第一移动个人站根据该第二移动个人站的标识确定该第二移动个人站为该第一移动个人站的配置管理站,即确定第二移动个人站归属于第一移动个人站管理,并根据该配置信息对该第一移动个人站进行配置。
其中,用户可以预先将该第二移动个人站设置为该第一移动个人站的配置管理站,该第一移动个人站记录该第二移动个人站的标识,这样,若该第一移动个人站接收到的配置请求信息中的移动个人站标识与记录的标识相符,则认证通过,并进一步根据该配置请求信息中的配置信息进行配置。
示例地,图5为该第一移动个人站与该第二移动个人站之间的交互示意图,包括:
S501、设置第二移动个人站为第一移动个人站的配置管理站。
S502、第一移动个人站与第二移动个人站建立网络连接。
需要说明的是,该第一移动个人站与该第二移动个人站可能距离较远,因此,两个移动个人站之间建立的网络连接可以为广域网连接。
S503、该第二移动个人站向该第一移动个人站发送配置请求信 息。
其中,该配置请求信息可以包括第二移动个人站的配置信息,以及该第二移动个人站的标识。具体的,第二移动个人站的配置信息可以包括第二移动个人站在运行时的各项参数,例如第二移动个人站的开机时间等。
S504、该第一移动个人站根据该配置请求信息中的认证信息对该第二移动个人站进行认证。
S505、该第一移动个人站在对该第二移动个人站的认证通过后,根据该配置请求信息中的配置信息进行配置。
具体的,该第一移动个人站在对该第二移动个人站的认证通过后,第一移动个人站可以对配置信息中,第二移动个人站在运行时的各项参数进行修改。例如,修改第二移动个人站的网络制式,或者修改第二移动个人站接入互联网的时间等。
S506、该第一移动个人站向该第二移动个人站发送配置响应消息。
至此,通过图5所示的方法步骤,该第二移动个人站可以远程对第一移动个人站进行配置和管理,提升了用户体验。
图5所示步骤只是举例说明,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作并不一定是本发明实施例所必须的。
在同一家庭中,成年人还可能需要对老人和儿童所携带的移动个人站的数据进行分析和监控,例如,网络信息过滤等,为了满足这样的需求,在本发明实施例的又一种可能的实现方式中,该第一移动个人站获取到的该第二移动个人站的协同信息,包括该第二移动个人站的数据处理请求信息。
其中,该数据处理请求消息包括认证信息、数据处理类型,当 第一移动个人站获取到的协同信息中包含有该认证信息时,该第一移动个人站根据该认证信息对该第二移动个人站进行认证,并在认证通过后,向该第二移动个人站发送认证通过消息;接收该第二移动个人站发送的数据,并根据该数据类型对接收到的数据进行处理,其中,第二移动个人站发送的数据具体可以是与第二移动个人站相连的人体设备生成的感知数据,或第二移动个人站对感知数据的分析结果。
示例地,图6为该第一移动个人站与该第二移动个人站之间的交互示意图,包括:
S601、设置第一移动个人站为第二移动个人站的数据分析决策站。
S602、第一移动个人站与第二移动个人站建立网络连接。
需要说明的是,该第一移动个人站与该第二移动个人站可能距离较远,因此,两个移动个人站之间建立的网络连接可以为广域网连接。
S603、该第二移动个人站向该第一移动个人站发送数据处理请求信息。
其中,该数据处理请求消息包括认证信息、数据处理类型,以便于该第一移动个人站根据该认证信息对该第二移动个人站进行认证,进而针对该数据处理类型进行相应的数据处理
S604、该第一移动个人站根据该数据处理请求信息中的认证信息对该第二移动个人站进行认证。
S605、该第一移动个人站在对该第二移动个人站的认证通过后,向该第二移动个人站发送认证通过消息。
S606、该第二移动个人站向该第一移动个人站发送感知数据或感知数据的分析结果。
具体地,该第二移动个人站可以将采集自人体和环境(如:家庭、汽车等)的感知数据(如:人体的心率、血压;家庭环境的温度、水电煤使用情况;汽车运行状态)直接发送至第一移动个人站 请求数据处理,该第二移动个人站也可以对采集的感知数据进行数据分析后,将感知数据的分析结果发送至该第一移动个人站请求进一步的数据处理。
S607、该第一移动个人站按照该数据处理请求信息中的数据处理类型,对该感知数据或该数据分析结果进行处理。
例如,该第二移动个人站向该第一移动个人站发送的感知数据的分析结果为:该第二移动个人站的使用者在家里摔倒,而该分析结果的数据处理类型为应急事件,那么,该第一移动个人站便可以按照应急事件的数据处理类型,对该分析结果提供应急策略,例如,第一移动个人站向第一移动个人站的使用者报警,并提供与第二移动个人站的使用者最近的医院列表,以使得第一移动个人站的使用者快速处理该应急事件。
具体的,该第一移动个人站中可以预先存储有数据决策模型库,该数据分析模型库中可以包括多种数据处理类型的数据决策模型,例如,对血压值与血糖值的分析结果的数据决策模型,比如血压值与血糖值的相对值在什么范围变化是正常的,血压值与血糖值的相对值在什么范围变化是非常的,再例如,对姿势变化数据与心率值的分析结果的数据决策模型,比如姿势变化数据的分析结果显示用户处于剧烈运动状态,那么,如果心率值的分析结果显示用户心率增快,则属于正常现象。这样,该第一移动个人站便可以根据该数据分析模型库中的数据决策模型,按照该数据处理请求信息中的数据处理类型,对该感知数据或该数据分析结果进行处理。
至此,通过图6所示的方法步骤,该第一移动个人站可以远程对第二移动个人站进行数据分析处理,提升了用户体验。
图6所示步骤只是举例说明,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作并不一定是本发明实施例所必须的。
当一个用户有多个移动个人站,移动个人站之间存在功能迁移的需求,也就是说,移动个人站之间可以共享同一个用户的用户数据和配置数据,为了满足这样的需求,如图7所示,在本发明实施例的又一种可能的实现方式中,该方法包括:
S701、第一移动个人站与第二移动个人站建立网络连接。
S702、将该第一移动个人站的用户数据发送至该第二移动个人站。
S703、将该第一移动个人站的配置数据发送至该第二移动个人站。
具体的,如果一个用户有多个移动个人站,移动个人站之间存在功能迁移的需求,例如,第一移动个人站缺乏电力需要更换为第二移动个人站,采用上述方法,可以将该第一移动个人站的配置数据和用户数据迁移到第二移动个人站中,完成功能迁移,提升了用户体验。
在本发明实施例的一种可能的实现方式中,该第一移动个人站可以通过直连网络直接将用户数据和配置数据发送至该第二移动个人站。
在本发明实施例的另一种可能的实现方式中,该第一移动个人站在与该第二移动个人站建立连接后,确定云服务器中保存有该第一移动个人站的用户数据,并向该云服务器发送推送请求消息,以便该云服务器根据该推送请求消息将该第一移动个人站的用户数据发送至第二移动个人站。该第一移动个人站在接收到该云服务器发送的推送响应消息后,向该第二移动个人站发送该第一移动个人站的配置数据。
需要说明的是,本发明实施例提供的云服务器可以为一个或多个,例如多个云服务器组件的云平台,云平台中可以存储有各个用户的信息以及历史数据,云平台在进行云计算时,可以通过调用每个用户的信息和历史数据进行深度和精确计算。
具体的,云平台可以用于存储各个人体设备生成的感知数据;以及对采集自各个人体设备的感知数据进行数据分析,并提取这些数据的变化特征与规律,例如:云平台可以计算一年内,人体血压的变化规律;一年内,人体酒精的含量变化规律等等;另外,云平台还可以根据数据分析的结果做关联分析,给出决策及建议信息,例如:若果云平台发现血压的增高由饮酒引起,则通过MPS向主人发出告警信息及行动建议,比如停止饮酒,或者限制饮酒量在某一个值;当然,云平台还可以与MPS进行通信,即对MPS的参数进行配置和管理,例如:成人可以登录到云平台对小孩的MPS进行远程配置与管理等,本发明对此不作任何限制。
此处,以图8举例说明,包括:
S801、第一移动个人站与第二移动个人站建立网络连接。
S802、该第一移动个人站向云服务器发送数据检查请求。
S803、该云服务器检查是否保存有该第一移动个人站的用户数据,并向该第一移动个人站发送数据检查响应。
S804、该第一移动个人站根据该数据检查响应确定该云服务器保存有该第一移动个人站的用户数据,并向该第二移动个人站发送速率检测请求。
需要说明的是,为了保证云服务器能够向该第二移动个人站推送数据,该第一移动个人站在指示云服务器推送数据之前,可以确定该第二移动个人站的广域网接入速率满足传输条件。
S805、该第二移动个人站检测自身的广域网接入速率,并向第一移动个人站发送速率检测响应。
S806、该第一移动个人站向该云服务器发送推送请求消息。
S807、该云服务器向该第二移动个人站推送该第一移动个人站的用户数据。
S808、该云服务器向该第一移动个人站发送推送响应消息。
S809、该第一移动个人站该第二移动个人站发送该第一移动个人站的配置数据。
需要说明的是,配置数据相较用户数据小很多,该第一移动个人站可以将配置数据直接发送至该第二移动个人站。
采用图8所示方法步骤,该第一移动个人站可以指示云服务器向该第二移动个人站发送用户数据,传输速率更快,用户操作更方便。
另外,图8所示步骤只是举例说明,为了简单描述,故将其都表述为一系列的动作组合,但是本领域技术人员应该知悉,本发明并不受所描述的动作顺序的限制,其次,本领域技术人员也应该知悉,说明书中所描述的实施例均属于优选实施例,所涉及的动作并不一定是本发明实施例所必须的。
图9为本发明实施例提供的一种网关的结构示意图,本发明实施例提供的网关可以用于实施上述图1-图8所示的本发明各实施例实现的方法,为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照图1-图8所示的本发明各实施例。示例性的,所述网关可以为第一网关,所述第一网关用于管理第一用户的人体设备,所述第一网关具体包括:
连接单元11,用于建立与第二网关的网络连接,所述第二网关用于管理第二用户的人体设备;
获取单元12,用于通过所述连接建立单元11中建立的网络连接获取所述第二网关的协同信息,所述协同信息包括蜂窝网络性能信息;
网络接入单元13,用于若所述协同信息获取单元12中的蜂窝网络性能信息满足预设的性能条件,将所述第二网关作为接入互联网的锚点,以便于将所述第一用户的人体设备接入互联网。
进一步地,所述网络接入单元13,具体用于根据所述蜂窝网络性能信息,确定所述第二网关的无线信号强度是否满足预设强度阈值,以及所述第二网关的网络上下行接入速率是否满足速率阈值;若所述第二网关的无线信号强度满足预设强度阈值,以及所述第二 网关的网络上下行接入速率满足速率阈值,则将所述第二网关作为接入互联网的锚点;
其中,所述蜂窝网络性能信息包括所述第二网关的无线信号强度和网络上下行接入速率
进一步地,所述网络接入单元13,具体用于向所述第二网关发送蜂窝网络接入代理请求消息,以便所述第二网关根据所述蜂窝网络接入代理请求消息确定是否向所述第一网关提供蜂窝网络接入服务;若接收到所述第二网关发送的接入响应消息,则根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路,以使得所述第二网关作为所述第一网关接入互联网的锚点。
进一步地,所述协同信息获取单元中的协同信息还包括所述第二网关的位置信息,如图10所示,所述第一网关还包括确定单元14和发送单元15,其中,
所述确定单元14,用于根据所述第二网关的位置信息确定所述第一网关和所述第二网关之间的距离是否满足预设的距离阈值,所述距离阈值包括距离下限阈值和距离上限阈值;
所述发送单元15,用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则向所述第一网关的人体设备发送减少干扰请求消息,以使得所述第一网关的人体设备减小自身的发射功率;若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则向所述第一网关的人体设备发送干扰解除通知消息,以解除对所述第一网关的人体设备的发射功率的限制。
进一步地,所述发送单元15,还用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则向所述第二网关发送减少干扰协同指示,以便所述第二网关根据所述减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息。
进一步地,所述发送单元15,还用于若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则向所述第二网关发 送干扰解除协同指示,以便所述第二网关根据所述干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
进一步地,所述协同信息获取单元中的协同信息还包括配置请求信息,所述配置请求消息包括配置信息,以及所述第二网关的标识,其中,如图11所示,所述第一网关还包括配置单元16,
所述确定单元14,还用于根据所述第二网关的标识确定所述第二网关是否归属于所述第一网关管理;
所述配置单元16,用于若所述第二网关归属于所述第一网关管理,则根据所述配置信息对所述第二网关进行配置。
进一步地,所述协同信息获取单元中的协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型,其中,如图12所示,所述第一网关还包括认证单元17、接收单元18和数据处理单元19,
所述认证单元17,用于根据所述认证信息对所述第二网关进行认证;
所述发送单元15,还用于当所述第二网关通过所述第一网关的认证时,向所述第二网关发送认证通过消息;
所述接收单元18,用于接收所述第二网关发送的数据;
所述数据处理单元19,用于对所述接收单元18中的数据进行处理。
进一步地,所述发送单元15,还用于将所述第一网关的用户数据发送至所述第二网关;以及将所述第一网关的配置数据发送至所述第二网关。
进一步地,所述确定单元14,还用于确定云服务器中保存有所述第一网关的所述用户数据;
所述发送单元15,还用于向所述云服务器发送推送请求消息,以便所述云服务器根据所述推送请求消息将所述第一网关的用户数据发送至所述第二网关。
图13为本发明实施例提供的一种网关的结构示意图,本发明实施例提供的网关可以用于实施上述图1-图8所示的本发明各实施例实现的方法,为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照图1-图8所示的本发明各实施例。示例性的,所述网关可以为第二网关,所述第二网关用于管理第二用户的人体设备,所述第二网关具体包括:
连接单元21,用于与第一网关建立网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
发送单元22,用于通过所述连接建立单元21中建立的网络连接向所述第一网关发送协同信息,所述协同信息包括蜂窝网络性能信息,以使得所述第一网关根据所述蜂窝网络性能信息确定是否将所述第二网关作为接入互联网的锚点。
进一步地,如图14所示,所述第二网关还包括所述网关还包括接收单元23和认证单元24,其中,
所述接收单元23,用于接收所述第一网关发送的蜂窝网络接入代理请求消息;
所述认证单元24,用于当接收到所述第一网关发送的蜂窝网络接入代理请求消息时,根据所述蜂窝网络接入代理请求消息对所述第一网关进行认证;
所述发送单元22,还用于当所述认证单元23中的所述第一网关被认证通过时,向所述第一网关发送接入响应消息,以使得所述第一网关根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路。
进一步地,所述接收单元23,还用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则接收所述第一网关发送的减少干扰协同指示;
所述发送单元22,还用于根据所述接收单元23中的减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息;
其中,所述协同信息中还包括所述第二网关的位置信息。
进一步地,所述接收单元23,还用于若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,接收所述第一网关发送的干扰解除协同指示;
所述发送单元22,还用于根据所述接收单元23中的干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
进一步地,所述接收单元23,还用于接收所述第一网关发送的认证通过消息;
所述发送单元22,还用于向所述第一网关发送数据,以便所述第一网关根据所述数据处理类型对所述数据进行处理;
其中,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型。
进一步地,所述接收单元23,还用于从所述第一网关获取所述第一网关的用户数据;以及接收所述第一网关发送的所述第一网关的配置数据。
进一步地,所述接收单元23,还用于当所述第一网关确定云服务器中保存有所述第一网关的所述用户数据时,接收云服务器发送的所述第一网关的用户数据。
另外,需要说明的是,本发明实施例提供的第一网关或第二网关,具体可以是移动个人站(MPS),其中,移动个人站是一种用于辅助个人对个人所属的人体设备进行通信、管理、数据分析的逻辑设备单元。
MPS可以自动确定植入设备、穿戴式设备、便携设备等人体设备间的通信方式(如:蓝牙、wifi、ZigBee等进行单独组网或混合组网)并维护和优化网络运行,充当人体设备到互联网的通信网关;MPS还可以负责对采集自人体和环境(如:家庭、汽车等)的感知数据(如:人体的心率、血压;家庭环境的温度、水电煤使用情况;汽车运行状态)进行一定程度的数据分析,并与云服务器进行数据交互;MPS可以集成到一个智能设备或者作为实体设备存在,本发 明名对此不作任何限制。
可以看出,通过获取第二网关的协同信息,进而根据该协同信息进行相应的协同操作,例如,该第一网关可以根据协同信息中的该蜂窝网络性能信息与该第二网关进行协同,将该第二网关作为接入互联网的锚点,进而增强该第一网关接入互联网的能力,还可以根据协同信息中的该第二网关的位置信息与该第二网关进行协同,减少该第一网关与该第二网关之间的干扰,还可以根据协同信息中的该配置请求信息与该第二网关进行协同,增强该第二网关的配置能力,还可以根据协同信息中的该数据处理请求信息与该第二网关进行协同,增强该第一网关的数据分析能力。可以看出,通过移动个人站之间的交互,各移动个人站可以更好的满足人体设备的需求,使得人体设备能够为用户提供更好的服务,提升了用户体验。
图15为本发明实施例提供的移动个人站(MPS)的硬件示意图,该移动个人站可以为上述实施例中的第一网关或第二网关,本发明实施例提供的移动个人站可以用于实施上述图1-图8所示的本发明各实施例实现的方法,为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照图1-图8所示的本发明各实施例。
如图15,所述移动个人站包括处理器31、通信接口32、存储器33以及总线34。
其中,处理器31、通信接口32以及存储器33通过总线34进行通信。
处理器31,是所述移动个人站的控制中心,处理器31通过运行或执行存储在存储器33内的软件程序和/或模块,以及调用存储在存储器333内的数据,执行移动个人站的各种功能和处理数据。
通信接口32,可以由光通讯接口,电通讯接口,无线通讯接口或其任意组合实现。例如,光通讯接口可以是小封装可插拔(英文:small form-factor pluggable transceiver,缩写:SFP)通讯接 口(英文:transceiver),增强小封装可插拔(英文:enhanced small form-factor pluggable,缩写:SFP+)通讯接口或10吉比特小封装可插拔(英文:10 Gigabit small form-factor pluggable,缩写:XFP)通讯接口。电通讯接口可以是以太网(英文:Ethernet)网络接口控制器(英文:network interface controller,缩写:NIC)。无线通讯接口可以是无线网络接口控制器(英文:wireless network interface controller,缩写:WNIC)。接收端中可以有多个通信接口32。
存储器33,可用于存储软件程序或数据,处理器31通过运行存储在存储器33的软件程序或数据,从而执行所述移动个人站的各种功能应用以及数据处理。
在本发明实施例的一种可能的实现方式中,第一移动个人站的处理器31通过通信接口32与第二移动个人站建立网络连接,所述第一移动个人站用于管理第一用户的人体设备,所述第二移动个人站用于管理第二用户的人体设备;通信接口32通过所述网络连接获取所述第二移动个人站的协同信息,并发送至存储器33,所述协同信息包括蜂窝网络性能信息;若所述蜂窝网络性能信息满足预设的性能条件,处理器31则将所述第二移动个人站作为接入互联网的锚点,以便于将所述第一用户的人体设备接入互联网。
其中,所述蜂窝网络性能信息包括所述第二移动个人站的无线信号强度和网络上下行接入速率;此时,处理器31将所述第二移动个人站作为接入互联网的锚点,可以具体包括步骤:处理器31根据所述蜂窝网络性能信息,确定所述第二移动个人站的无线信号强度是否满足预设强度阈值,以及所述第二移动个人站的网络上下行接入速率是否满足速率阈值;若所述第二移动个人站的无线信号强度满足预设强度阈值,以及所述第二移动个人站的网络上下行接入速率满足速率阈值,处理器31则将所述第二移动个人站作为接入互联网的锚点。
进一步地,处理器31将所述第二移动个人站作为接入互联网的 锚点,可以具体包括步骤:处理器31调用通信接口32向所述第二移动个人站发送蜂窝网络接入代理请求消息,以便所述第二移动个人站根据所述蜂窝网络接入代理请求消息确定是否向所述第一移动个人站提供蜂窝网络接入服务;若通信接口32接收到所述第二移动个人站发送的接入响应消息,处理器31根据所述接入响应消息将所述第一移动个人站的上下行无线链路修改为所述第一移动个人站到所述第二移动个人站之间的本地无线链路,以使得所述第二移动个人站作为所述第一移动个人站接入互联网的锚点。
进一步地,所述协同信息还包括所述第二移动个人站的位置信息,此时,通信接口32通过所述网络连接获取所述第二移动个人站的协同信息之后,还可以包括步骤:处理器31根据存储器33中所述第二移动个人站的位置信息确定所述第一移动个人站和所述第二移动个人站之间的距离是否满足预设的距离阈值,所述距离阈值包括距离下限阈值和距离上限阈值;若所述第一移动个人站和所述第二移动个人站之间的距离小于预设的距离下限阈值,处理器31则调用通信接口32向所述第一移动个人站的人体设备发送减少干扰请求消息,以使得所述第一移动个人站的人体设备减小自身的发射功率;若所述第一移动个人站和所述第二移动个人站之间的距离大于预设的距离上限阈值,处理器31则调用通信接口32向所述第一移动个人站的人体设备发送干扰解除通知消息,以解除对所述第一移动个人站的人体设备的发射功率的限制。
进一步地,若所述第一移动个人站和所述第二移动个人站之间的距离小于预设的距离下限阈值,处理器31则调用通信接口32向所述第二移动个人站发送减少干扰协同指示,以便所述第二移动个人站根据所述减少干扰协同指示,向所述第二移动个人站的人体设备发送减少干扰请求消息。
进一步地,若所述第一移动个人站和所述第二移动个人站之间的距离大于预设的距离上限阈值,处理器31则调用通信接口32向所述第二移动个人站发送干扰解除协同指示,以便所述第二移动个 人站根据所述干扰解除协同指示,向所述第二移动个人站的人体设备发送干扰解除通知消息。
进一步地,所述协同信息还包括配置请求信息,所述配置请求消息包括配置信息,以及所述第二移动个人站的标识;此时,通信接口32通过所述网络连接获取所述第二移动个人站的协同信息之后,还可以包括步骤:处理器31根据存储器33中所述第二移动个人站的标识确定所述第二移动个人站是否归属于所述第一移动个人站管理;若所述第二移动个人站归属于所述第一移动个人站管理,处理器31根据所述配置信息对所述第二移动个人站进行配置。
进一步地,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型;此时,通信接口32通过所述网络连接获取所述第二移动个人站的协同信息之后,还可以包括步骤:处理器31根据存储器33中的所述认证信息对所述第二移动个人站进行认证;当所述第二移动个人站通过所述第一移动个人站的认证时,处理器31调用通信接口32向所述第二移动个人站发送认证通过消息;并接收所述第二移动个人站发送的数据发送至存储器33;处理器31根据存储器33中所述数据类型对所述数据进行处理。
进一步地,在第一移动个人站的处理器31通过通信接口32与第二移动个人站建立网络连接之后,还可以包括步骤:处理器31将所述第一移动个人站的用户数据通过通信接口32发送至所述第二移动个人站;并将所述第一移动个人站的配置数据通过通信接口32发送至所述第二移动个人站。
进一步地,处理器31将所述第一移动个人站的用户数据通过通信接口32发送至所述第二移动个人站,可以具体包括步骤:处理器31确定云服务器中保存有所述第一移动个人站的所述用户数据;当云服务器中保存有所述第一移动个人站的所述用户数据时,处理器31调用通信接口32向所述云服务器发送推送请求消息,以便所述云服务器根据所述推送请求消息将所述第一移动个人站的用户数据 发送至所述第二移动个人站。
在本发明实施例的另一种可能的实现方式中,第二移动个人站的处理器31通过通信接口32与第一移动个人站建立网络连接,所述第一移动个人站用于管理第一用户的人体设备,所述第二移动个人站用于管理第二用户的人体设备;处理器31通过所述网络连接调用通信接口32向所述第一移动个人站发送协同信息,所述协同信息包括蜂窝网络性能信息,以使得所述第一移动个人站根据所述蜂窝网络性能信息确定是否将所述第二移动个人站作为接入互联网的锚点。
进一步地,处理器31通过所述网络连接调用通信接口32向所述第一移动个人站发送协同信息之后,还可以包括步骤:当通信接口32接收到所述第一移动个人站发送的蜂窝网络接入代理请求消息时发送至处理器31,处理器31根据所述蜂窝网络接入代理请求消息对所述第一移动个人站进行认证;当所述第一移动个人站被认证通过时,处理器31调用通信接口32向所述第一移动个人站发送接入响应消息,以使得所述第一移动个人站根据所述接入响应消息将所述第一移动个人站的上下行无线链路修改为所述第一移动个人站到所述第二移动个人站之间的本地无线链路。
进一步地,所述协同信息还包括所述第二移动个人站的位置信息,此时,在处理器31通过所述网络连接调用通信接口32向所述第一移动个人站发送协同信息之后,还可以包括步骤:若所述第一移动个人站和所述第二移动个人站之间的距离小于预设的距离下限阈值,通信接口32接收所述第一移动个人站发送的减少干扰协同指示并发送至处理器31;处理器31根据所述减少干扰协同指示,通过通信接口32向所述第二移动个人站的人体设备发送减少干扰请求消息。
进一步地,若所述第一移动个人站和所述第二移动个人站之间的距离大于预设的距离上限阈值,通信接口32接收所述第一移动个人站发送的干扰解除协同指示并发送至处理器31;处理器31关根 据所述干扰解除协同指示,通过通信接口32向所述第二移动个人站的人体设备发送干扰解除通知消息。
进一步地,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型,此时,在处理器31通过所述网络连接调用通信接口32向所述第一移动个人站发送协同信息之后,还可以包括步骤:通信接口32接收所述第一移动个人站发送的认证通过消息并发送至处理器31;处理器31通过通信接口32向所述第一移动个人站发送数据,以便所述第一移动个人站根据所述数据处理类型对所述数据进行处理。
进一步地,在第二移动个人站的处理器31通过通信接口32与第一移动个人站建立网络连接之后,还可以包括步骤:处理器31从所述第一移动个人站获取所述第一移动个人站的用户数据;并调用通信接口32接收所述第一移动个人站发送的所述第一移动个人站的配置数据。
进一步地,处理器31从所述第一移动个人站获取所述第一移动个人站的用户数据时,可以具体包括:当所述第一移动个人站确定云服务器中保存有所述第一移动个人站的所述用户数据时,处理器31通过通信接口32接收云服务器发送的所述第一移动个人站的用户数据。
至此,该第一移动个人站通过获取第二移动个人站的协同信息,进而根据该协同信息进行相应的协同操作,例如,该第一移动个人站可以根据协同信息中的该蜂窝网络性能信息与该第二移动个人站进行协同,将该第二移动个人站作为接入互联网的锚点,进而增强该第一移动个人站接入互联网的能力,还可以根据协同信息中的该第二移动个人站的位置信息与该第二移动个人站进行协同,减少该第一移动个人站与该第二移动个人站之间的干扰,还可以根据协同信息中的该配置请求信息与该第二移动个人站进行协同,增强该第二移动个人站的配置能力,还可以根据协同信息中的该数据处理请求信息与该第二移动个人站进行协同,增强该第一移动个人站的数 据分析能力。可以看出,通过移动个人站之间的交互,各移动个人站可以更好的满足人体设备的需求,使得人体设备能够为用户提供更好的服务,提升了用户体验。
图16为本发明实施例提供的一种网关之间的数据交互系统,包括第一网关41,以及与所述第一网关41相连的第二网关42。
具体的,第一网关41和第二网关42均可以为任意移动个人站,本发明实施例提供的网关之间的数据交互系统可以用于实施上述图1-图8所示的本发明各实施例实现的方法,为了便于说明,仅示出了与本发明实施例相关的部分,具体技术细节未揭示的,请参照图1-图8所示的本发明各实施例,此处不再赘述。
进一步地,如图17所示,所述网关之间的数据交互系统中还可以包括与第一网关41和第二网关42均相连的云服务器43。
其中,本发明实施例中涉及的云服务器43可以为一个或多个,例如多个云服务器43组成的云平台,该云平台中可以存储有各个用户的信息以及历史数据,云平台在进行云计算时,可以通过调用每个用户的信息和历史数据进行深度和精确计算。
具体的,云平台可以用于存储各个人体设备生成的感知数据;以及对采集自各个人体设备的感知数据进行数据分析,并提取这些数据的变化特征与规律,例如:云平台可以计算一年内,人体血压的变化规律;一年内,人体酒精的含量变化规律等等;另外,云平台还可以根据数据分析的结果做关联分析,给出决策及建议信息,例如:若果云平台发现血压的增高由饮酒引起,则通过MPS向主人发出告警信息及行动建议,比如停止饮酒,或者限制饮酒量在某一个值;当然,云平台还可以与MPS进行通信,即对MPS的参数进行配置和管理,例如:成人可以登录到云平台对小孩的MPS进行远程配置与管理等,本发明对此不作任何限制。
在本发明的实施例中,由于第一移动个人站与第二移动个人站之间存在功能迁移的需求,因此,第一移动个人站和第二移动个人 站可以通过与云服务器43进行数据交互,将该第一移动个人站的配置数据和用户数据迁移到第二移动个人站中,完成功能迁移,其中,第一移动个人站和第二移动个人站与云服务器43进行数据交互的方法,可具体参见步骤S801至S804,此处不再赘述。
采用上述方案,该第一移动个人站通过获取第二移动个人站的协同信息,进而根据该协同信息进行相应的协同操作,例如,该第一移动个人站可以根据协同信息中的该蜂窝网络性能信息与该第二移动个人站进行协同,将该第二移动个人站作为接入互联网的锚点,进而增强该第一移动个人站接入互联网的能力,还可以根据协同信息中的该第二移动个人站的位置信息与该第二移动个人站进行协同,减少该第一移动个人站与该第二移动个人站之间的干扰,还可以根据协同信息中的该配置请求信息与该第二移动个人站进行协同,增强该第二移动个人站的配置能力,还可以根据协同信息中的该数据处理请求信息与该第二移动个人站进行协同,增强该第一移动个人站的数据分析能力。可以看出,通过移动个人站之间的交互,各移动个人站可以更好的满足人体设备的需求,使得人体设备能够为用户提供更好的服务,提升了用户体验。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,仅以上述各功能模块的划分进行举例说明,实际应用中,可以根据需要而将上述功能分配由不同的功能模块完成,即将装置的内部结构划分成不同的功能模块,以完成以上描述的全部或者部分功能。上述描述的系统,装置和单元的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,应该理解到,所揭露的系统,装置和方法,可以通过其它的方式实现。例如,以上所描述的装置实施例仅仅是示意性的,例如,所述模块或单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦 合或通信连接可以是通过一些接口,装置或单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施例方案的目的。
另外,在本发明各个实施例中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
所述集成的单元如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述,仅为本发明的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,可轻易想到变化或替换,都应涵盖在本发明的保护范围之内。因此,本发明的保护范围应以所述权利要求的保护范围为准。

Claims (30)

  1. 一种网关之间的数据交互的方法,其特征在于,包括:
    第一网关与第二网关建立网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
    所述第一网关通过所述网络连接获取所述第二网关的协同信息,所述协同信息包括蜂窝网络性能信息;
    若所述蜂窝网络性能信息满足预设的性能条件,所述第一网关将所述第二网关作为接入互联网的锚点,以便于将所述第一用户的人体设备接入互联网。
  2. 根据权利要求1所述的方法,其特征在于,所述蜂窝网络性能信息包括所述第二网关的无线信号强度和网络上下行接入速率;
    所述若所述蜂窝网络性能信息满足预设的性能条件,所述第一网关则将所述第二网关作为接入互联网的锚点,包括:
    所述第一网关根据所述蜂窝网络性能信息,确定所述第二网关的无线信号强度是否满足预设强度阈值,以及所述第二网关的网络上下行接入速率是否满足速率阈值;
    若所述第二网关的无线信号强度满足预设强度阈值,以及所述第二网关的网络上下行接入速率满足速率阈值,所述第一网关则将所述第二网关作为接入互联网的锚点。
  3. 根据权利要求1或2所述的方法,其特征在于,所述第一网关将所述第二网关作为接入互联网的锚点,包括:
    所述第一网关向所述第二网关发送蜂窝网络接入代理请求消息,以便所述第二网关根据所述蜂窝网络接入代理请求消息确定是否向所述第一网关提供蜂窝网络接入服务;
    若接收到所述第二网关发送的接入响应消息,所述第一网关则根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路,以使得所述第二网关作为所述第一网关接入互联网的锚点。
  4. 根据权利要求1至3中任一项所述的方法,其特征在于,所 述协同信息还包括所述第二网关的位置信息,
    所述获取所述第二网关的协同信息之后,还包括:
    所述第一网关根据所述第二网关的位置信息确定所述第一网关和所述第二网关之间的距离是否满足预设的距离阈值,所述距离阈值包括距离下限阈值和距离上限阈值;
    若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,所述第一网关则向所述第一网关的人体设备发送减少干扰请求消息,以使得所述第一网关的人体设备减小自身的发射功率;
    若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,所述第一网关则向所述第一网关的人体设备发送干扰解除通知消息,以解除对所述第一网关的人体设备的发射功率的限制。
  5. 根据权利要求4所述的方法,其特征在于,若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则所述方法还包括:
    所述第一网关向所述第二网关发送减少干扰协同指示,以便所述第二网关根据所述减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息。
  6. 根据权利要求4所述的方法,其特征在于,若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则所述方法还包括:
    所述第一网关向所述第二网关发送干扰解除协同指示,以便所述第二网关根据所述干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
  7. 根据权利要求1至6中任一项所述的方法,其特征在于,所述协同信息还包括配置请求信息,所述配置请求消息包括配置信息,以及所述第二网关的标识;
    所述获取所述第二网关的协同信息之后,还包括:
    所述第一网关根据所述第二网关的标识确定所述第二网关是否归属于所述第一网关管理;
    若所述第二网关归属于所述第一网关管理,所述第一网关根据所述配置信息对所述第二网关进行配置。
  8. 根据权利要求1至7中任一项所述的方法,其特征在于,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型;
    所述获取所述第二网关的协同信息之后,还包括:
    所述第一网关根据所述认证信息对所述第二网关进行认证;
    当所述第二网关通过所述第一网关的认证时,所述第一网关向所述第二网关发送认证通过消息;
    所述第一网关接收所述第二网关发送的数据;
    所述第一网关根据所述数据类型对所述数据进行处理。
  9. 根据权利要求1至8中任一项所述的方法,其特征在于,所述第一网关与第二网关建立网络连接之后,还包括:
    所述第一网关向所述第二网关发送所述第一网关的用户数据和所述第一网关的配置数据。
  10. 一种网关之间的数据交互的方法,其特征在于,包括:
    第二网关与第一网关建立网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
    所述第二网关通过所述网络连接向所述第一网关发送协同信息,所述协同信息包括蜂窝网络性能信息,以使得所述第一网关根据所述蜂窝网络性能信息确定是否将所述第二网关作为接入互联网的锚点。
  11. 根据权利要求10所述的方法,其特征在于,所述第二网关向所述第一网关发送协同信息之后,还包括:
    当接收到所述第一网关发送的蜂窝网络接入代理请求消息时,所述第二网关根据所述蜂窝网络接入代理请求消息对所述第一网关进行认证;
    当所述第一网关被认证通过时,所述第二网关向所述第一网关发送接入响应消息,以使得所述第一网关根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之 间的本地无线链路。
  12. 根据权利要求10或11所述的方法,其特征在于,所述协同信息还包括所述第二网关的位置信息,
    所述第二网关向所述第一网关发送协同信息之后,还包括:
    若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,所述第二网关则接收所述第一网关发送的减少干扰协同指示;
    所述第二网关根据所述减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息。
  13. 根据权利要求12所述的方法,其特征在于,若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则所述方法还包括:
    所述第二网关接收所述第一网关发送的干扰解除协同指示;
    所述第二网关根据所述干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
  14. 根据权利要求10至13中任一项所述的方法,其特征在于,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型,
    所述第二网关向所述第一网关发送协同信息之后,还包括:
    所述第二网关接收所述第一网关发送的认证通过消息;
    所述第二网关向所述第一网关发送数据,以便所述第一网关根据所述数据处理类型对所述数据进行处理。
  15. 根据权利要求10至14中任一项所述的方法,其特征在于,在第二网关与第一网关建立网络连接之后,还包括:
    所述第二网关从所述第一网关获取所述第一网关的用户数据;
    所述第二网关接收所述第一网关发送的所述第一网关的配置数据。
  16. 一种网关,其特征在于,所述网关包括:
    连接单元,用于建立第一网关与第二网关的网络连接,所述第一 网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
    获取单元,用于通过所述连接单元建立的网络连接获取所述第二网关的协同信息,所述协同信息包括蜂窝网络性能信息;
    网络接入单元,用于若所述协同信息获取单元中的蜂窝网络性能信息满足预设的性能条件,将所述第二网关作为接入互联网的锚点,以便于将所述第一用户的人体设备接入互联网。
  17. 根据权利要求16所述的网关,其特征在于,
    所述网络接入单元,具体用于根据所述蜂窝网络性能信息,确定所述第二网关的无线信号强度是否满足预设强度阈值,以及所述第二网关的网络上下行接入速率是否满足速率阈值;若所述第二网关的无线信号强度满足预设强度阈值,以及所述第二网关的网络上下行接入速率满足速率阈值,则将所述第二网关作为接入互联网的锚点;
    其中,所述蜂窝网络性能信息包括所述第二网关的无线信号强度和网络上下行接入速率。
  18. 根据权利要求16或17所述的网关,其特征在于,
    所述网络接入单元,具体用于向所述第二网关发送蜂窝网络接入代理请求消息,以便所述第二网关根据所述蜂窝网络接入代理请求消息确定是否向所述第一网关提供蜂窝网络接入服务;若接收到所述第二网关发送的接入响应消息,则根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路,以使得所述第二网关作为所述第一网关接入互联网的锚点。
  19. 根据权利要求16至18中任一项所述的网关,其特征在于,所述协同信息获取单元中的协同信息还包括所述第二网关的位置信息,
    所述网关还包括确定单元和发送单元,其中,
    所述确定单元,用于根据所述第二网关的位置信息确定所述第一网关和所述第二网关之间的距离是否满足预设的距离阈值,所述距离 阈值包括距离下限阈值和距离上限阈值;
    所述发送单元,用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则向所述第一网关的人体设备发送减少干扰请求消息,以使得所述第一网关的人体设备减小自身的发射功率;若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则向所述第一网关的人体设备发送干扰解除通知消息,以解除对所述第一网关的人体设备的发射功率的限制。
  20. 根据权利要求19所述的网关,其特征在于,
    所述发送单元,还用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则向所述第二网关发送减少干扰协同指示,以便所述第二网关根据所述减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息。
  21. 根据权利要求20所述的网关,其特征在于,
    所述发送单元,还用于若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,则向所述第二网关发送干扰解除协同指示,以便所述第二网关根据所述干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
  22. 根据权利要求16至21中任一项所述的网关,其特征在于,所述协同信息获取单元中的协同信息还包括配置请求信息,所述配置请求消息包括配置信息,以及所述第二网关的标识,
    其中,所述网关还包括配置单元,
    所述确定单元,还用于根据所述第二网关的标识确定所述第二网关是否归属于所述第一网关管理;
    所述配置单元,用于若所述第二网关归属于所述第一网关管理,则根据所述配置信息对所述第二网关进行配置。
  23. 根据权利要求16至22中任一项所述的网关,其特征在于,所述协同信息获取单元中的协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型,
    其中,所述网关还包括认证单元、接收单元和数据处理单元,
    所述认证单元,用于根据所述认证信息对所述第二网关进行认证;
    所述发送单元,还用于当所述第二网关通过所述第一网关的认证时,向所述第二网关发送认证通过消息;
    所述接收单元,用于接收所述第二网关发送的数据;
    所述数据处理单元,用于对所述接收单元中的数据进行处理。
  24. 根据权利要求16至23中任一项所述的网关,其特征在于,
    所述发送单元,还用于向所述第二网关发送所述第一网关的用户数据以及将所述第一网关的配置数据。
  25. 一种网关,其特征在于,所述网关包括:
    连接单元,用于与第一网关建立网络连接,所述第一网关用于管理第一用户的人体设备,所述第二网关用于管理第二用户的人体设备;
    发送单元,用于通过所述连接建立单元建立的网络连接向所述第一网关发送协同信息,所述协同信息包括蜂窝网络性能信息,以使得所述第一网关根据所述蜂窝网络性能信息确定是否将所述第二网关作为接入互联网的锚点。
  26. 根据权利要求25所述的网关,其特征在于,所述网关还包括接收单元和认证单元,其中,
    所述接收单元,用于接收所述第一网关发送的蜂窝网络接入代理请求消息;
    所述认证单元,用于当接收到所述第一网关发送的蜂窝网络接入代理请求消息时,根据所述蜂窝网络接入代理请求消息对所述第一网关进行认证;
    所述发送单元,还用于当所述认证单元中的所述第一网关被认证通过时,向所述第一网关发送接入响应消息,以使得所述第一网关根据所述接入响应消息将所述第一网关的上下行无线链路修改为所述第一网关到所述第二网关之间的本地无线链路。
  27. 根据权利要求25或26所述的网关,其特征在于,
    所述接收单元,还用于若所述第一网关和所述第二网关之间的距离小于预设的距离下限阈值,则接收所述第一网关发送的减少干扰协同指示;
    所述发送单元,还用于根据所述接收单元中的减少干扰协同指示,向所述第二网关的人体设备发送减少干扰请求消息;
    其中,所述协同信息中还包括所述第二网关的位置信息。
  28. 根据权利要求27所述的网关,其特征在于,
    所述接收单元,还用于若所述第一网关和所述第二网关之间的距离大于预设的距离上限阈值,接收所述第一网关发送的干扰解除协同指示;
    所述发送单元,还用于根据所述接收单元中的干扰解除协同指示,向所述第二网关的人体设备发送干扰解除通知消息。
  29. 根据权利要求25至28中任一项所述的网关,其特征在于,
    所述接收单元,还用于接收所述第一网关发送的认证通过消息;
    所述发送单元,还用于向所述第一网关发送数据,以便所述第一网关根据所述数据处理类型对所述数据进行处理;
    其中,所述协同信息还包括数据处理请求信息,所述数据处理请求消息包括认证信息、数据处理类型。
  30. 根据权利要求25至29中任一项所述的网关,其特征在于,
    所述接收单元,还用于从所述第一网关获取所述第一网关的用户数据;以及接收所述第一网关发送的所述第一网关的配置数据。
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KR20180088272A (ko) * 2017-01-26 2018-08-03 한국전자통신연구원 무선 통신 네트워크에서 스케줄링 및 간섭 제어를 위한 통신 노드 및 그의 동작 방법
KR102410158B1 (ko) * 2017-01-26 2022-06-17 한국전자통신연구원 무선 통신 네트워크에서 스케줄링 및 간섭 제어를 위한 통신 노드 및 그의 동작 방법

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