WO2020078248A1 - Wireless communication method and device - Google Patents

Wireless communication method and device Download PDF

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Publication number
WO2020078248A1
WO2020078248A1 PCT/CN2019/110274 CN2019110274W WO2020078248A1 WO 2020078248 A1 WO2020078248 A1 WO 2020078248A1 CN 2019110274 W CN2019110274 W CN 2019110274W WO 2020078248 A1 WO2020078248 A1 WO 2020078248A1
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WO
WIPO (PCT)
Prior art keywords
communication device
access network
data
server
mac address
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PCT/CN2019/110274
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French (fr)
Chinese (zh)
Inventor
许斌
李秉肇
陈磊
王学龙
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华为技术有限公司
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Publication of WO2020078248A1 publication Critical patent/WO2020078248A1/en

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/16Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W28/00Network traffic management; Network resource management
    • H04W28/16Central resource management; Negotiation of resources or communication parameters, e.g. negotiating bandwidth or QoS [Quality of Service]
    • H04W28/24Negotiating SLA [Service Level Agreement]; Negotiating QoS [Quality of Service]
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/54Allocation or scheduling criteria for wireless resources based on quality criteria
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/54Allocation or scheduling criteria for wireless resources based on quality criteria
    • H04W72/543Allocation or scheduling criteria for wireless resources based on quality criteria based on requested quality, e.g. QoS

Definitions

  • This application relates to the field of communication technology, and in particular, to a wireless communication method and device.
  • the wireless communication network architecture usually includes a communication device (such as a terminal device, etc.), an access network device (such as a base station, etc.), a core network device, and a server.
  • the communication device and the server communicate through the access network device and the core network device.
  • the core network device needs to determine the QoS (Quality of Service, QoS) rule for the communication device according to the service type initiated by the communication device and instruct the access network device to connect
  • QoS Quality of Service
  • the network access device provides communication services between the communication device and the access network device according to the QoS rules determined by the core network device, and helps the communication device to send uplink data or receive downlink data.
  • the access network device and the core network device need to perform multiple interactions before the access network device can obtain the core network device to determine the QoS rules, resulting in a large communication delay between the communication device and the server.
  • This application provides a wireless communication method and device, which reduces communication delay.
  • a first aspect provides a communication method including: an access network device receiving first information, the first information including at least one of service information, an identification of the first communication device, and a media access control MAC address of the first communication device One; the access network device determines the QoS rule according to the first information, and establishes the bearer between the access network device and the first communication device according to the QoS rule.
  • the access network device may acquire the first information, where the first information includes at least one of service information, the identification of the first communication device, and the MAC address of the first communication device.
  • a QoS rule can be determined according to the first information, and a bearer between the access network device and the first communication device can be established according to the QoS rule, so that the first communication device can send uplink data or receive downlink data on the bearer.
  • the access network device since the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule.
  • the The number of interactions between the access network device and the core network device thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
  • the access network device receives the first data transmission request sent by the first communication device, A data sending request includes the first data to be sent to the server; the access network device obtains the MAC address of the server; the access network device sends the first data to the server according to the MAC address of the server.
  • the adaptation layer of the access network device since the adaptation layer of the access network device has the function of processing (resolving, forwarding, etc.) Ethernet data packets, the uplink data in the Ethernet format sent by the first communication device to the server can be sent by the access network Device forwarding, that is, the uplink data sent by the first communication device to the server does not need to be forwarded by the core network device, reducing the data interaction process between the access network device and the core network, thereby reducing the uplink data sent by the first communication device to the server Delay and reduces the consumption of communication resources.
  • the first data sending request includes the MAC address of the server; acquiring the MAC address of the server includes: the access network device acquiring the MAC address of the server in the first data sending request. Since the first data sending request includes the MAC address of the server, the access network device can quickly obtain the MAC address of the server.
  • the first data sending request includes a server identifier
  • the first information includes a correspondence between the server identifier and the server's MAC address
  • obtaining the server's MAC address includes: The server's ID and corresponding relationship to obtain the server's MAC address.
  • the first information further includes the MAC address of the server; acquiring the MAC address of the server includes: the access network device acquiring the MAC address of the server in the first information. Since the first information further includes the MAC address of the server, the first data transmission request does not need to carry the MAC address of the server, thereby reducing signaling overhead.
  • the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
  • the method further includes: the access network device receives the second data sending request sent by the server, and the second data
  • the sending request includes the second data, and the identification of the second communication device and / or the MAC address of the second communication device; when it is determined that the second communication device is connected to the first communication device, the second data is sent to the first communication device through the bearer, And the identifier of the second communication device and / or the MAC address of the second communication device is used to enable the first communication device to send the second communication device the second communication device according to the identifier of the second communication device and / or the MAC address of the second communication device ⁇ Data.
  • the server can directly send the downlink data in the form of Ethernet data packets to the access network device, and the downlink data is forwarded by the access network device and the first communication device to the second communication device without going through the core network relay, reducing the access network
  • the data interaction process between the device and the core network device further reduces the delay of the server sending downlink data to the second communication device, and reduces the communication resources consumed.
  • the method further includes: the access network device receives the indication information sent by the server, and the indication information includes the identifier and / or the first communication device The MAC address of the first communication device; the access network device pages the first communication device according to the identifier of the first communication device and / or the MAC address of the first communication device.
  • the access network device can page the first communication device according to the indication information sent by the server, and the indication information used to indicate the paging of the first communication device does not need to pass through the transfer of the core network device, reducing the access network device and the core network device The data exchange process between them further reduces the delay of the server sending downlink data to the second communication device, and reduces the communication resources consumed.
  • the access network device may also send a broadcast message, where the broadcast message includes a network type supported by the access network device, and the network type includes at least one of a public network type or a non-public network type.
  • the communication device can determine the network type supported by the access network device according to the broadcast message, and determine whether to access the access network device according to the network type supported by the access network device and its service requirements .
  • a second aspect provides a communication method.
  • the communication method includes: a first communication device sends first information to an access network device, where the first information includes service information, an identification of the first communication device, and media access control of the first communication device At least one of the MAC addresses, the first information is used to instruct the access network device to determine the QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule; the first communication device is Send and / or receive data on the bearer.
  • the first communication device may send first information to the access network device, where the first information includes at least one of service information, an identification of the first communication device, and a MAC address of the first communication device ,
  • the access network device may determine the QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule, so that the first communication device may send uplink data on the bearer or Receive downstream data.
  • the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule.
  • the The number of interactions between the access network device and the core network device thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
  • the first communication device sending data on the bearer includes: the first communication device sending a first data sending request to the access network device on the bearer, and the first data sending request includes the first data to be sent.
  • the first data sending request is used to instruct the access network device to send the first data to the server.
  • the adaptation layer of the access network device since the adaptation layer of the access network device has the function of processing (resolving, forwarding, etc.) Ethernet data packets, the uplink data in the Ethernet format sent by the first communication device to the server can be sent by the access network Device forwarding, that is, the uplink data sent by the first communication device to the server does not need to be forwarded by the core network device, which reduces the data interaction process between the access network device and the core network, thereby reducing the uplink data sent by the first communication device to the server Delay and reduces the consumption of communication resources.
  • the first data transmission request includes an identifier of the server and / or a MAC address of the server.
  • the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
  • the first data is sent by any second communication device to the first communication device.
  • the first communication device receiving data on the bearer includes: the first communication device receiving on the bearer the second data and the device identifier sent by the access network device; if the device identifier is the first communication device The identification of the connected at least one second communication device or the MAC address of the second communication device sends second data to the second communication device according to the device identification.
  • the server can directly send the downlink data in the form of Ethernet data packets to the access network device, and the downlink data is forwarded by the access network device and the first communication device to the second communication device without going through the core network relay, reducing the access network
  • the data interaction process between the device and the core network device further reduces the delay of the server sending downlink data to the second communication device, and reduces the communication resources consumed.
  • the first communication device may also receive a broadcast message sent by the access network device, where the broadcast message includes a network type supported by the access network device, and the network type includes a public network type or a non-public network type. At least one; the first communication device determines whether to access the access network device according to the broadcast message and the service requirements of the first communication device.
  • a third aspect provides an access network device that is used to perform the communication method in the first aspect or any possible implementation manner of the first aspect.
  • the access network device may include a module for performing the communication method in the first aspect or any possible implementation manner of the first aspect.
  • a fourth aspect provides an access network device.
  • the access network device includes a memory and a processor.
  • the memory is used to store instructions.
  • the processor is used to execute the instructions stored in the memory. The execution of the stored instructions causes the processor to execute the method in the first aspect or any possible implementation manner of the first aspect.
  • a fifth aspect provides a computer-readable storage medium on which a computer program is stored, which when executed by a processor implements the method of the first aspect or any possible implementation manner of the first aspect.
  • a sixth aspect provides a communication device for performing the communication method in the second aspect or any possible implementation manner of the second aspect.
  • the communication device includes a module for performing the communication method in the second aspect or any possible implementation manner of the second aspect.
  • a seventh aspect provides a communication device.
  • the communication device includes a memory and a processor.
  • the memory is used to store instructions.
  • the processor is used to execute instructions stored in the memory. The execution causes the processor to perform the method in the second aspect or any possible implementation manner of the second aspect.
  • An eighth aspect provides a computer-readable storage medium on which a computer program is stored, which when executed by a processor implements the method of the second aspect or any possible implementation manner of the second aspect.
  • the access network device can obtain the first information, and the first information includes at least one of service information, an identifier of the first communication device, and a MAC address of the first communication device.
  • the network device may determine the QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule, so that the first communication device may send uplink data or receive downlink data on the bearer .
  • the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule.
  • the The number of interactions between the access network device and the core network device thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
  • 1A is a schematic diagram of a protocol stack of a communication device provided by this application.
  • 1B is a schematic diagram of a protocol stack of an access network device provided by this application.
  • FIG. 1C is a system architecture diagram provided by this application.
  • FIG. 3 is a schematic flowchart of a non-public network access method provided by this application.
  • FIG. 4 is a schematic flowchart of another method for accessing a non-public network provided by this application.
  • FIG. 6 is a schematic flowchart of another uplink service process provided by the application.
  • FIG. 8 is a schematic flowchart of another downlink service process provided by this application.
  • FIG. 9 is a schematic block diagram of an access network device provided by this application.
  • FIG. 10 is a schematic block diagram of an access network device provided by this application.
  • FIG. 11 is a schematic block diagram of a communication device provided by this application.
  • FIG. 13 is a schematic block diagram of a communication device provided by an embodiment of this application.
  • FIG. 14 is another schematic block diagram of a communication device provided by an embodiment of this application.
  • FIG. 15 is yet another schematic block diagram of the communication device provided by the embodiment of the present application.
  • the technical solution shown in this application can be applied to the fifth generation mobile communication technology (The 5th Generation, mobile communication technology, 5G for short) system, it can also be applied to the Long Term Evolution (LTE) architecture, and can also be applied to general mobile Communication System (Universal Mobile Telecommunications System, UMTS) Terrestrial Radio Access Network (UMTS Terrestrial Radio Access Network, UTRAN) architecture, or Global Mobile System (Global System) for Mobile Communication (GSM) / Enhanced Data Rate GSM Evolution (Enhanced Data Rate (for GSM Evolution, EDGE) system wireless access network (GSM EDGE Radio Access Network, GERAN) architecture.
  • the function of the mobile management entity (Mobile Management Entity, MME) is performed by the General Packet Radio Service (GPRS) support node (Serving GPRS Support, SGSN), and the service gateway ( The function of Serving Gate Way (S-GW) ⁇ Public Data Network Gateway (PublicDataNetworkWay, P-GW) is completed by the Gateway GPRS Support Node (GGSN).
  • GPRS General Packet Radio Service
  • S-GW Serving Gate Way
  • P-GW Public Data Network Gateway
  • GGSN Gateway GPRS Support Node
  • the technical solutions of the embodiments of the present invention may also be applied to other communication systems, such as a public land mobile network (Public Land Mobile Network, PLMN) system, etc., which is not limited in this application.
  • PLMN Public Land Mobile Network
  • the network type may include a public network type and a non-public network type.
  • the public network may be a communication network for public users, that is, a traditional operator network, which is used for public communication, including but not limited to mobile phone communication.
  • the non-public network may be a communication network used by some private users.
  • the non-public network may include an industrial communication network, an enterprise private network, etc., where a typical industrial communication network service range is usually one or more industrial parks, an enterprise private network The service scope is usually all users within an enterprise.
  • the technical solutions shown in the application can be applied to non-public network type communication scenarios.
  • the technical solutions shown in this application can be applied to industrial communication scenarios and enterprise private network communication scenarios.
  • the technical solution shown in this application can also be applied to other communication scenarios, which is not specifically limited in this application.
  • the communication device may be a device that includes a wireless transceiver function and that can cooperate with a network device to provide a communication service for a user.
  • communication equipment may refer to industrial robots, industrial automation equipment, terminal equipment, user equipment (User Equipment), access terminals, user units, user stations, mobile stations, mobile stations, remote stations, remote terminals, mobile devices , User terminal, terminal, wireless communication device, user agent or user device.
  • the communication device may be a cellular phone, a cordless phone, a Session Initiation Protocol (SIP) phone, a wireless local loop (Wireless Local Loop, WLL) station, a personal digital processing (Personal Digital Assistant (PDA), a wireless Handheld devices, computing devices, or other processing devices connected to a wireless modem, in-vehicle devices, wearable devices, communication devices in a 5G network or a network after 5G, etc. are not limited in this application.
  • SIP Session Initiation Protocol
  • WLL Wireless Local Loop
  • PDA Personal Digital Assistant
  • the communication device involved in this application has at least the function of accessing a non-public network.
  • the communication device may also have the function of accessing the non-public network and the public network.
  • the communication device involved in this application has an information reporting function.
  • the communication device may report the identification of the communication device, the Medium Access Control (MAC) address of the communication device, and the service identification of the communication device to the access network device.
  • MAC Medium Access Control
  • the information reported by the communication device may also include other information, which is not specifically limited in this application.
  • the communication device may report the above information through a message.
  • the communication device may report the above information in a message such as a Radio Resource Control (RRC) connection request message, an RRC connection completion message, a bearer establishment request message, and a registration request message.
  • RRC Radio Resource Control
  • the communication device can also report the above information through other messages, which is not specifically limited in this application.
  • the protocol stack of the communication device shown in this application may be as shown in FIG. 1A.
  • FIG. 1A is a schematic diagram of a protocol stack of a communication device provided by this application.
  • the protocol stack of the communication device includes a service data adaptation protocol (Service data adaptive (SDAP) layer, a packet data aggregation protocol (Packet Data Convergence Protocol (PDCP) layer, a radio link layer control (Radio Link Link Control , RLC) layer, MAC layer, physical (Physical, or PHY) layer and adaptation (Adaptive) layer.
  • SDAP Service data adaptive
  • PDCP Packet Data Convergence Protocol
  • RLC Radio Link Link Control
  • MAC layer Physical (Physical, or PHY) layer
  • adaptation layer may include the physical layer of Ethernet and the MAC layer of Ethernet.
  • the adaptation layer has a function of processing Ethernet data packets.
  • the adaptation layer is used to enable communication devices to perform Ethernet communication, for example, It enables the communication device to recognize the Ethernet data packet, read the MAC address from the Ethernet data packet, and forward the data packet according to the MAC address.
  • the forwarding process may include: the communication device forwards the Ethernet data packet to other communication devices (such as factory equipment).
  • the adaptation layer can also support the analysis and forwarding of other types of data packets (such as IP packets).
  • IP packets such as IP packets
  • the adaptation layer can perform different functions according to the type of data packets. For example, the adaptation layer first determines whether the data packet is an IP packet or an Ethernet data packet, and then reads and parses the corresponding type of packet header, and then performs the subsequent forwarding process according to the content of the packet header.
  • the access network device may be a device for communicating with a communication device, for example, it may be a base station (Base Transceiver Station, BTS) in a GSM system or a CDMA system, or a WCDMA system.
  • BTS Base Transceiver Station
  • the base station can also be an evolutionary base station (Evolutional Node B, eNB or eNodeB) in the LTE system, or a wireless base station (gNode) B, gNB in the 5G system, or the access network
  • the device may be a relay station, an access point, an in-vehicle device, a wearable device, a network-side device in a network after 5G, or a network device in a PLMN network that evolves in the future.
  • the access network equipment involved in this application may also be referred to as a radio access network (Radio Access Network, RAN) equipment.
  • the RAN device is connected to the communication device and used to receive data from the communication device and process the received data (establish QoS rules, forwarding processing, etc.), or send the received data to the core network device.
  • RAN equipment corresponds to different equipment in different communication systems, for example, corresponds to base stations and base station controllers in 2G systems, corresponds to base stations and radio network controllers (Radio Network Controller, RNC) in 3G systems, and evolves in 4G systems.
  • RNC Radio Network Controller
  • Evolutionary Node corresponding to the 5G system in the 5G system, such as the access network equipment in the new radio access system (New Radio Access Technology, NR), such as gNB, Control Unit (CU) , Forwarding Unit (Distribute Unit, DU).
  • New Radio Access Technology, NR such as gNB, Control Unit (CU) , Forwarding Unit (Distribute Unit, DU).
  • the access network equipment involved in this application supports at least non-public network types.
  • the access network device can also support both non-public network types and public network types.
  • the access network equipment involved in this application has at least the function of determining QoS rules.
  • the access network device may determine the QoS rule according to the information reported by the communication device (at least one of the identification of the communication device, the MAC address of the communication device, and the service identification of the communication device).
  • the access network device also has a route forwarding function. For example, the access network device can forward the uplink data sent by the communication device to the server, and / or the downlink data sent by the server to the communication device.
  • the protocol stack of the access network device shown in this application may be as shown in FIG. 1B.
  • FIG. 1B is a schematic diagram of a protocol stack of an access network device provided by this application.
  • the protocol stack of the access network device includes an SDAP layer, a PDCP layer, an RLC layer, a MAC layer, a PHY layer, and an adaptation (Adaptive) layer.
  • the adaptation layer may include the physical layer and the MAC layer of the Ethernet.
  • the adaptation layer is used to enable the access network to communicate with the communication device or the server through Ethernet, for example, to enable the access network device to recognize the Ethernet data packet, and from The MAC address is read from the Ethernet data packet, and the data packet is forwarded according to the MAC address.
  • the forwarding process may include: the access network device forwards the Ethernet data packet to other communication devices (such as PLC or UE).
  • the adaptation layer can also support the analysis and forwarding of other types of data packets (such as IP packets).
  • IP packets such as IP packets
  • the adaptation layer can perform different functions according to the type of data packets. For example, the adaptation layer first determines whether the data packet is an IP packet or an Ethernet data packet, and then reads and parses the corresponding type of packet header, and then performs the subsequent forwarding process according to the content of the packet header.
  • the present application also relates to a server, which may be a device that provides data / control services to a communication device.
  • the server involved in this application may also be a controller, for example, the controller may be a programmable logic controller (Programmable Logic Controller, PLC).
  • the server may be an industrial server in an industrial communication scenario, a server in an enterprise private network, and so on.
  • CN equipment corresponds to different equipment in different communication systems.
  • CN Core Network
  • CN equipment corresponds to different equipment in different communication systems.
  • the 3G system it corresponds to the serving GPRS support node (Serving GPRS Support Node, SGSN) or gateway GPRS support node (Gateway GPRS Support Node, GGSN), in the 4G system.
  • the 5G system corresponds to the core network related equipment (eg NG-Core) of the 5G system.
  • FIG. 1C is a system architecture diagram provided by this application. Referring to FIG. 1C, it includes a communication device 101, an access network device 102, a server 103, and a core network device 104.
  • the communication device 101 has a function of accessing a non-public network, or the communication device 101 has a function of accessing both a non-public network and a public network. If the communication device 101 has the function of accessing both the non-public network and the public network, during the operation of the communication device 101, the communication device 101 may access the public network or the non-public network according to service requirements.
  • the access network device 102 may support a non-public network, or the access network device 102 supports both a non-public network and a public network.
  • the access network device 102 may broadcast the network types it supports (non-public network type and public network type), so that the communication device 101 determines whether to access the access according to its service requirements and the network type supported by the access network device 102 ⁇ ⁇ 102 ⁇ 102 network equipment.
  • the communication device 101 When the communication device 101 needs to communicate with the server 103 through a non-public network, before the communication device 101 needs to access the non-public network, the communication device 101 first reports its related information to the access network device 102, for example, the identification of the communication device 101, The MAC address of the communication device 101, the service identification of the communication device 101, and the like.
  • the access network device 102 may determine the QoS rule according to the information reported by the communication device 101, and establish a bearer between the access network device and the communication device according to the determined QoS rule.
  • the access network device 102 may also perform route forwarding according to the information reported by the communication device 101.
  • the core network device 104 determines the QoS rules, nor for the core network device 104 to perform route forwarding, that is, the communication between the communication device 101 and the server 103 does not need to pass through the core network device Reduce the communication delay between the communication device 101 and the server 103.
  • the communication device 101 When the communication device 101 needs to communicate with the server 103 through the public network, the communication device 101 may not report its related information to the access network device 102.
  • the core network device 104 determines the QoS rules and performs route forwarding.
  • FIG. 1C only illustrates a system architecture in the form of an example, rather than limiting the system architecture.
  • the system architecture may be set according to actual needs, which is not specifically limited in this application.
  • the communication device is a terminal device and the access network device is a base station as an example for description.
  • FIG. 2 is a schematic flowchart of a wireless communication method provided by this application. Please refer to FIG. 2, the method may include:
  • the base station receives the first information.
  • the first information includes at least one of service information, an identifier of the first terminal device, and a MAC address of the first terminal device.
  • the service information may be information of a service to be executed by the first terminal device.
  • the service to be executed by the first terminal device may be an uplink service actively initiated by the first terminal device, or a downlink service initiated by the server to the first terminal device.
  • the service information may include at least one of a service identifier, a service priority, a service's service quality requirement, or a service type.
  • the business information may also include other business information.
  • the identification of the first terminal device may uniquely identify the first terminal device.
  • the identifier of the first terminal device may be allocated by the base station to the terminal device, or may be a hardware identifier of the first terminal device.
  • the first information may further include an identifier of each second terminal device and / or a MAC address of the second terminal device.
  • the second terminal device connected to the first terminal device may be a second terminal device relayed by the first terminal device. That is, the first terminal device is a relay device of the second terminal device, the first terminal device may receive data sent by the second terminal device, and forward the data sent by the second terminal device, or the first terminal device may receive The data sent to the second terminal device, and the data sent to the second terminal device is forwarded to the second terminal device.
  • the first information may also include the MAC address of the server.
  • the server may be the only device that provides non-public network services to the first terminal device.
  • the first information may further include at least one correspondence relationship, and each correspondence relationship includes an identifier of the server and a MAC address of the server.
  • the server may be a device that may provide non-public network services to the first terminal device, or the server may be a device that historically provides non-public network services to the first terminal device.
  • the first information may also include other information.
  • the first information may also include the priority of the first terminal device, the service quality requirements of the first terminal device, and so on.
  • the base station may receive all the content in the first information from the first terminal device, or the base station may receive part of the content in the first information from the first terminal device and receive another part of the content in the first information from the server .
  • the base station may obtain all content in the first information from the first terminal device.
  • the base station may obtain the first terminal device identifier and / or the first terminal device MAC address in the first information from the first terminal device, and the base station may obtain the service information in the first information from the server.
  • the first terminal device may send part or all of the first information to the base station through the first message.
  • the first message may include at least one of an RRC connection request message, an RRC connection completion message, a bearer establishment request message, and a registration request message.
  • the first terminal device may carry the identifier of the first terminal device and the MAC address of the first terminal device in the registration request message sent to the base station, and the first terminal device may complete the RRC connection request message or RRC connection sent to the base station
  • the message carries the identification and service information of the first terminal device.
  • the first terminal device may carry the service information, the identifier of the first terminal device, and the MAC address of the first terminal device in the RRC connection request message or the RRC connection completion message sent to the base station.
  • the base station determines the QoS rule according to the first information.
  • the base station may have a built-in QoS policy generating functional entity, and the QoS policy generating functional entity is used to generate a QoS policy.
  • the QoS policy may be a correspondence between business information and QoS rules.
  • the base station can determine the QoS rules according to the QoS policy and service information.
  • QoS rules refer to the quality of service that business needs to meet. It can be understood that QoS rules can also be characterized by QoS Profile (QoS profile) or QoS parameters, for example, a QoS rule contains multiple QoS parameters and the value or value range of each parameter; or one QoS rule corresponds to one Or multiple QoS profiles.
  • one QoS rule corresponds to one or more packet filters (Packet Filter Set).
  • the base station can determine the mapping relationship between the service and the QoS flow according to the QoS rules.
  • Each optional QoS rule includes a corresponding rule identifier.
  • QoS rules may also include packet detection rules (Packet Detection Rule, PDR), forwarding rules (Forwarding Action Rule, FAR), or QoS execution rules (QoS Execution Rule, QER). This application does not specifically limit the naming of the above rules.
  • the base station establishes a bearer between the base station and the first terminal device according to the QoS rule.
  • the base station can generate the RRC configuration message according to the determined QoS rules; or determine the mapping relationship between the service and the QoS flow according to the QoS rules, and then generate the RRC configuration message according to the QoS requirements of the QoS flow.
  • the RRC configuration message includes configuration information of each protocol layer (SDAP / PDCP / RLC / MAC layer) and / or configuration information of logical channels.
  • the logical channel configuration information may include configurations such as logical channel priority and logical channel restriction relationships.
  • the RRC configuration message can ensure that the QoS requirements of services transmitted on the bearer are met.
  • the first terminal device may send data to the server on the bearer or receive data sent by the server on the bearer.
  • the first terminal device may send uplink data to the server on the bearer, or the first terminal device may receive downlink data sent by the server on the bearer.
  • the base station can obtain the first information, and the first information includes at least one of service information, the identification of the first terminal device, and the MAC address of the first terminal device, and the base station can determine the first information QoS rules, and establishes a bearer between the base station and the first terminal device according to the QoS rules, so that the first terminal device can send uplink data or receive downlink data on the bearer.
  • the base station since the base station can obtain the first information, the base station can determine the QoS rules based on the first information without the core network device determining the QoS rules.
  • the number of base stations and core network devices is reduced. The number of interactions between them further reduces the communication delay between the terminal device and the server, and reduces the communication resources consumed.
  • the terminal device may actively access the non-public network, or the base station may page the terminal device to enable the terminal device to access the non-public network, as shown in FIGS. 3 to 4 below
  • the terminal device may actively access the non-public network, or the base station may page the terminal device to enable the terminal device to access the non-public network, as shown in FIGS. 3 to 4 below
  • two methods for terminal devices to access a non-public network will be described in detail.
  • FIG. 3 is a schematic flowchart of a non-public network access method provided by this application. Please refer to FIG. 3, the method may include:
  • the base station sends a broadcast message to the first terminal device, where the broadcast message includes the network type it supports.
  • the network types include public network types and non-public network types.
  • the base station can broadcast the network types it supports through at least the following two feasible implementation methods:
  • a feasible implementation method all base stations broadcast the network types they support.
  • 0 indicates a public network type
  • “1” indicates a non-public network type
  • the base station broadcasts "1” it means that the base station supports the non-public network type.
  • the base station broadcasts "0” it means that the base station only supports the public network type.
  • the base station broadcasts "10” it means that the base station supports both public network types and non-public network types.
  • the terminal device may determine that the base station does not support a non-public network.
  • 0 indicates that the base station supports only non-public network types
  • “1” indicates that the base station supports both public and non-public network types.
  • the base station broadcasts "0” it means that the base station only supports non-public network types.
  • the base station broadcasts "1” it means that the base station supports both public network types and non-public network types.
  • the base station may broadcast first indication information and second indication information.
  • the first indication information is used to indicate that the base station supports a non-public network
  • the second indication information is used to indicate that the terminal device accesses the base station.
  • all terminal devices can recognize the first indication information, and only terminal devices with the function of accessing the non-public network can recognize the second indication information. Therefore, terminal devices without the function of accessing the non-public network will not access the A base station, a terminal device having a function of accessing a non-public network and having a requirement of accessing a non-public network can access the base station according to the second indication information.
  • the first terminal device determines that the base station supports a non-public network and the first terminal device needs to access the non-public network, the first terminal device sends an RRC connection request message to the base station, and the RRC connection request message includes the first information.
  • the first information includes at least one of service information, an identifier of the first terminal device, and a MAC address of the first terminal device.
  • the first information may further include an identifier of each second terminal device and / or a MAC address of the second terminal device.
  • the first information may be as shown in Table 1:
  • terminal device 2 terminal device 3, and terminal device 4 are devices connected to terminal device 1, that is, terminal device 1 is a relay device of terminal device 2, terminal device 3, and terminal device 4.
  • the base station stores the first information.
  • the base station may store the first information shown in Table 1.
  • the base station sends an RRC connection response message to the first terminal device.
  • the first terminal device sends an RRC connection complete message to the base station.
  • the first information may also be carried in the RRC connection completion message.
  • the first message may be carried in the RRC connection request message, and the first information may not be carried in the RRC connection completion message.
  • the RRC connection completion message may only carry the first message, and the RRC connection request message may not carry the first information.
  • a part of the content in the first message may be carried in the RRC connection request message, and another part of the content in the first message may be carried in the RRC connection completion message.
  • the first terminal device may also carry the identifier of the first terminal device and / or the MAC address of the first terminal device in the registration request message,
  • the first terminal device and the base station perform authentication and encryption processes.
  • the authentication and encryption processes performed by the first terminal device and the base station may refer to the authentication and encryption processes in the prior art, and will not be repeated here.
  • the base station determines QoS rules based on the first information.
  • the base station establishes a bearer between the base station and the first terminal device according to the QoS rules.
  • the base station and the first terminal device may send and / or receive data through the bearer.
  • the first terminal device when the first terminal device needs to access a non-public network, for example, when the first terminal device needs to perform an uplink service through the non-public network, the first terminal device according to the message broadcast by the base station ( The type of network supported by the base station) actively accesses the base station (or non-public network).
  • the base station since the first terminal device can send the first information to the base station, the base station can determine the QoS rule based on the first information without the core network device determining the QoS rule.
  • the number of interactions between core network devices further reduces the communication delay between the terminal device and the server, and reduces the communication resources consumed.
  • FIG. 4 is a schematic flowchart of another method for accessing a non-public network provided by this application. Please refer to FIG. 4, the method may include:
  • the first terminal device sends a registration request message to the base station.
  • the registration request message includes the identifier of the first terminal device and the MAC address of the first terminal device.
  • the registration request message may further include the identifier of each second terminal device and / or the MAC address of the second terminal device, as well as the first terminal device and the second terminal Correspondence of equipment.
  • the correspondence between the first terminal device and the second terminal device may be identified by the correspondence relationship between the identifier and / or MAC address of the first terminal device and the identifier and / or MAC address of the second terminal device.
  • the server When the server needs to send downlink data through a non-public network, the server sends instruction information to the base station.
  • the instruction information is used to indicate that there is downlink data to be sent in the server, and the instruction information may further include at least one of service information, an identifier of the terminal device, or a MAC address of the terminal device.
  • the terminal device may be the first terminal device or the second terminal device.
  • the base station can page the first terminal device, and the base station cannot page the second terminal device.
  • the first terminal device has been registered in the base station, and the second terminal device has not been registered in the base station.
  • the indication information may be carried in a dedicated data packet or signaling, or in the header of downlink data.
  • the base station sends a paging message to the first terminal device according to the instruction information.
  • the base station may determine whether the indication information includes the identifier and / or MAC address of the first terminal device. If so, the base station may The first terminal device sends a paging message. If not, it is determined that the indication information includes the identifier and / or MAC address of the second terminal device, and the base station determines the second terminal device and the first terminal device according to the correspondence between the second terminal device and the first terminal device. Address, when determining the identification and / or MAC address of the first terminal device, and according to the identification and / or MAC address of the first terminal device, sending a paging message to the first terminal device.
  • the first terminal device is a terminal device that can be paged
  • the second terminal device is a terminal device that cannot be paged.
  • the base station may determine whether the identifier and / or MAC address of the terminal device included in the indication information is registered, and if so, determine that the indication information and / or MAC address of the first terminal device are included in the indication information, if not , It is determined that the indication information includes the identifier and / or MAC address of the second terminal device.
  • the corresponding relationship between the second terminal device and the first terminal device is sent by the first terminal device to the base station during the start-up registration.
  • the first terminal device sends an RRC connection request message to the base station according to the paging message.
  • the base station sends an RRC connection response message to the first terminal device.
  • the first terminal device sends an RRC connection complete message to the base station.
  • the first terminal device and the base station perform authentication and encryption processes.
  • the authentication and encryption processes performed by the first terminal device and the base station may refer to the authentication and encryption processes in the prior art, and will not be repeated here.
  • the base station determines QoS rules based on the first information.
  • the base station determines the first information according to the registration request message and the indication information.
  • the first information includes at least one of service information, an identifier of the first terminal device, and a MAC address of the first terminal device.
  • the first information may further include an identifier of each second terminal device and / or a MAC address of the second terminal device.
  • the base station establishes a bearer between the base station and the first terminal device according to the QoS rule.
  • the base station and the first terminal device may send and / or receive data through the bearer.
  • the server when the server needs to perform a downlink service through a non-public network, the server sends indication information to the base station to enable the base station to page the first terminal device, thereby enabling the first terminal device to access the base station (or Non-public network).
  • the base station since the first terminal device can send the first information to the base station, the base station can determine the QoS rule based on the first information without the core network device determining the QoS rule.
  • the The number of interactions between core network devices further reduces the communication delay between the terminal device and the server, and reduces the communication resources consumed.
  • the method shown in the embodiments of FIGS. 5 to 8 may be performed on the basis of the above embodiments, or may be performed separately, that is, the bearer established before the embodiments of FIGS. 5 to 8 may be based on the above
  • the method established in the embodiment may also be established according to other methods.
  • the corresponding QoS policy may be established for the base station or for the core network device.
  • FIG. 5 is a schematic flowchart of an uplink service process provided by this application. Please refer to FIG. 5, the method may include:
  • the first terminal device sends a first data transmission request to the base station.
  • the first data sending request includes the first data to be sent by the first terminal device to the server.
  • the first data sending request may further include at least one of a MAC address of the server and an identifier of the server.
  • the first data transmission request may be an Ethernet data packet.
  • the base station determines the MAC address of the server.
  • the server is a target device of the first data sent by the first terminal device.
  • the base station may determine the MAC address of the server through at least the following three feasible implementation methods:
  • the first data transmission request includes the MAC address of the server.
  • the base station can obtain the MAC address of the server in the first data sending request.
  • the first data sending request includes a server identification
  • the first information includes a correspondence between the server identification and the server's MAC address.
  • the base station may determine the MAC address of the server according to the identifier of the server and the corresponding relationship in the first data transmission request.
  • the first information is sent by the first terminal device to the base station before the embodiment shown in FIG. 5.
  • the first information includes the MAC address of the server.
  • the base station can obtain the MAC address of the server in the first information.
  • the server is the only device that provides a non-public network server to the first terminal device.
  • the base station sends the first data to the server according to the MAC address of the server.
  • the adaptation layer of the base station since the adaptation layer of the base station has the function of processing (analyzing, forwarding, etc.) Ethernet data packets, the uplink data in the Ethernet format sent by the first terminal device to the server can be transmitted by the base station Forwarding, that is, the uplink data sent by the first terminal device to the server does not need to be forwarded by the core network device, which reduces the data interaction process between the base station and the core network, thereby reducing the delay of the first terminal device sending uplink data to the server, And reduce the communication resources consumed.
  • FIG. 6 is a schematic flowchart of another uplink service process provided by this application. Please refer to FIG. 6, the method may include:
  • the second terminal device sends a third data transmission request to the first terminal device.
  • the third data sending request includes the first data to be sent by the second terminal device to the server.
  • the third data sending request may further include at least one of the MAC address of the server and the identifier of the server.
  • the third data transmission request may be an Ethernet data packet.
  • the first terminal device sends a first data transmission request to the base station.
  • the first data transmission request may be an Ethernet data packet.
  • the first data sending request includes the first data to be sent by the second terminal device to the server.
  • the first data sending request may further include at least one of a MAC address of the server and an identifier of the server.
  • the base station determines the MAC address of the server.
  • execution process of S603 may refer to the execution process of S502, and will not be repeated here.
  • the base station sends the first data to the server according to the MAC address of the server.
  • the first terminal device when the first terminal device is a relay device of the second terminal device, since the adaptation layer of the first terminal device has the function of processing (resolving, forwarding, etc.) the Ethernet data packet, Therefore, the first terminal device may forward the uplink data in the Ethernet format sent by the second terminal device. Further, because the adaptation layer of the base station has the function of processing (analyzing, forwarding, etc.) the Ethernet data packet, the uplink data in the Ethernet format sent by the second terminal device can be forwarded by the base station to the server without the core network device forwarding , Reducing the data interaction process between the base station and the core network, thereby reducing the time delay for the second terminal device to send uplink data to the server, and reducing the communication resources consumed.
  • FIG. 7 is a schematic flowchart of a downlink service process provided by this application. Please refer to FIG. 7, the method may include:
  • the server sends a second data transmission request to the base station.
  • the second data sending request includes the second data to be sent by the server to the first terminal device.
  • the second data transmission request may be an Ethernet data packet.
  • the base station determines the MAC address of the first terminal device.
  • the base station may determine the MAC address of the first terminal device in at least the following two feasible implementation manners:
  • the second data transmission request includes the MAC address of the first terminal device.
  • the base station can acquire the MAC address of the first terminal device in the second data transmission request.
  • the second data transmission request includes the identifier of the first terminal device, and the first information includes the correspondence between the identifier of the first terminal device and the MAC address of the first terminal device.
  • the base station may determine the MAC address of the first terminal device according to the identifier of the first terminal device and the corresponding relationship.
  • the first information is sent by the first terminal device to the base station before the embodiment shown in FIG. 7.
  • the base station sends second data to the first terminal device according to the MAC address of the first terminal device.
  • the server when the server sends downlink data to the first terminal device, since the adaptation layer of the base station has the function of processing (analyzing, forwarding, etc.) Ethernet data packets, the server can directly send the data to the base station
  • the downlink data in the form of Ethernet data packets, and the downlink data is forwarded by the base station without going through the core network, which reduces the data interaction process between the base station and the core network equipment, thereby reducing the server to send downlink data to the first terminal device Delay and reduce the consumption of communication resources.
  • FIG. 8 is a schematic flowchart of another downlink service process provided by this application. Please refer to FIG. 8, the method may include:
  • the server sends a second data transmission request to the base station.
  • the second data sending request includes the second data to be sent by the server to the second terminal device.
  • the second data transmission request may further include the identifier of the second terminal device and / or the MAC address of the second terminal device.
  • the second data transmission request may be an Ethernet data packet.
  • the base station determines the MAC address of the first terminal device according to the identifier of the second terminal device and / or the MAC address of the second terminal device.
  • the first information includes the correspondence between the MAC address of the first terminal device and the identifier of the second terminal device, or the correspondence between the MAC address of the first terminal device and the MAC address of the second terminal device.
  • the base station may determine the MAC address of the first terminal device according to the identifier of the second terminal device and / or the MAC address of the second terminal device and the above corresponding relationship.
  • the base station sends second data to the first terminal device according to the MAC address of the first terminal device, and the identifier of the second terminal device and / or the MAC address of the second terminal device.
  • the first terminal device sends second data to the second terminal device according to the identifier of the second terminal device and / or the MAC address of the second terminal device.
  • the server when the server sends downlink data to the second terminal device, since the adaptation layer of the base station and the first communication device has the function of processing (analyzing, forwarding, etc.) the Ethernet data packet, the server The downlink data in the form of Ethernet data packets can be directly sent to the base station, and the base station and the first terminal device forward the downlink data to the second terminal device without going through the core network relay, reducing the data interaction process between the base station and the core network device , Thereby reducing the delay of the server sending downlink data to the second terminal device, and reducing the communication resources consumed.
  • any one of the embodiments shown in FIGS. 2 to 4 and any one of the embodiments shown in FIGS. 5 to 8 may be combined with each other, or may exist alone.
  • the communication method provided by the present application is described above, and the access network device and the communication device provided by the present application will be described below.
  • the access network device 10 includes:
  • the transceiver module 11 is configured to receive first information, where the first information includes at least one of service information, an identification of the first communication device, and a media access control MAC address of the first communication device;
  • the processing module 12 is configured to determine a quality of service QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule.
  • the access network device may acquire the first information, where the first information includes at least one of service information, the identification of the first communication device, and the MAC address of the first communication device.
  • the access network device may A piece of information determines a QoS rule, and establishes a bearer between the base station and the first communication device according to the QoS rule, so that the first communication device can send uplink data or receive downlink data on the bearer.
  • the access network device since the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule.
  • the The number of interactions between the access network device and the core network device thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
  • the transceiver module 11 is further configured to, after the processing module establishes a bearer between the access network device and the first communication device according to the QoS rule, receive The first data sending request sent by the first communication device, where the first data sending request includes the first data to be sent to the server;
  • the processing module 12 is further configured to obtain the MAC address of the server, and send the first data to the server according to the MAC address of the server.
  • the first data sending request includes the MAC address of the server; the processing module 12 is used to obtain the MAC address of the server, including:
  • the processing module 12 is configured to obtain the MAC address of the server in the first data sending request.
  • the first data sending request includes the identifier of the server, and the first information includes the correspondence between the identifier of the server and the MAC address of the server; the processing The module 12 is used to obtain the MAC address of the server, including:
  • the processing module 12 is configured to obtain the MAC address of the server according to the identifier of the server and the corresponding relationship.
  • the first information further includes the MAC address of the server; the processing module 12 is used to obtain the MAC address of the server, including:
  • the processing module 12 is configured to obtain the MAC address of the server in the first information.
  • the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
  • the transceiver module 11 is further specifically configured to receive the server after the processing module 12 establishes a bearer between the access network device and the communication device according to the QoS rule A second data transmission request sent, where the second data transmission request includes second data, and an identifier of the second communication device and / or a MAC address of the second communication device;
  • the transceiver module 11 is further configured to, when determining that the second communication device is connected to the first communication device, send the second data and the second data to the first communication device through the bearer
  • the identification of the communication device and / or the MAC address of the second communication device is used to enable the first communication device to send a message to the user according to the identification of the second communication device and / or the MAC address of the second communication device
  • the second communication device sends the second data.
  • the transceiver module 11 is further configured to receive indication information sent by the server before the processing module 12 determines the quality of service QoS rule according to the first information, the indication information includes all The identification of the first communication device and / or the MAC address of the first communication device;
  • the processing module 11 is further configured to page the first communication device according to the identification of the first communication device and / or the MAC address of the first communication device.
  • the transceiver module 11 is further configured to send a broadcast message, where the broadcast message includes a network type supported by the access network device, and the network type includes a public network type or a non-public At least one of the network types.
  • transceiver module 11 in the embodiment of the present invention may be implemented by a transceiver or a related circuit component of the transceiver, and the processing module 12 may be implemented by a processor or a related circuit component of the processor.
  • FIG. 10 is a schematic block diagram of an access network device provided by this application.
  • the access network device 20 includes a processor 21, a memory 22, and a transceiver 23, where the memory 22 stores instructions or programs, and the processor 21 is used to execute the instructions or programs stored in the memory 22.
  • the processor 21 is used to perform the operation performed by the processing module 12 in the foregoing embodiment
  • the transceiver 23 is used to perform the operation performed by the transceiver module 11 in the foregoing embodiment.
  • the access network device 10 or the access network device 20 may correspond to the access network device (eg, base station) in the communication method of the embodiment of the present application, and the access network device 10 or the access
  • the operations and / or functions of the various modules in the network device 20 are respectively for implementing the corresponding processes of the methods in FIGS. 2 to 8, and for the sake of brevity, they will not be repeated here.
  • FIG. 11 is a schematic block diagram of a communication device provided by this application.
  • the communication device 30 includes:
  • the transceiver module 31 is configured to send first information to an access network device, where the first information includes at least one of service information, an identifier of the first communication device, and a media access control MAC address of the first communication device, The first information is used to instruct the access network device to determine a QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule;
  • the transceiver module 31 is also used for the first communication device to send and / or receive data on the bearer.
  • the communication device 30 may further include a processing module 32, and the processing module 32 may determine the first information before the transceiver module 31 sends the first information to the access network device.
  • the first communication device may send the first information to the access network device, where the first information includes at least one of service information, the identification of the first communication device, and the MAC address of the first communication device.
  • the network device may determine the QoS rule according to the first information, and establish a bearer between the base station and the first communication device according to the QoS rule, so that the first communication device may send uplink data or receive downlink data on the bearer.
  • the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule.
  • the The number of interactions between the access network device and the core network device thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
  • the transceiver module 31 is used to send data on the bearer, including:
  • the transceiver module 31 is configured to send a first data sending request to the access network device on the bearer, the first data sending request includes first data to be sent, and the first data sending request is used for Instructing the access network device to send the first data to the server.
  • the first data sending request includes an identifier of the server and / or a MAC address of the server.
  • the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
  • the first data is sent by any one of the second communication devices to the first communication device.
  • the transceiver module 31 is configured to receive data on the bearer, including:
  • the transceiver module 31 is configured to receive, on the bearer, the second data and the device identifier sent by the access network device; if the device identifier is at least one second communication device connected to the first communication device Or the MAC address of the second communication device, then send the second data to the second communication device according to the device identification.
  • the transceiver module 31 is further configured to receive a broadcast message sent by the access network device, where the broadcast message includes a network type supported by the access network device, and the network type Including at least one of the public network type or the non-public network type;
  • the processing module 32 is configured to determine whether to access the access network device according to the broadcast message and service requirements of the first communication device.
  • transceiver module 31 in the embodiments of the present application may be implemented by a transceiver or a related circuit component of the transceiver, and the processing module 32 may be implemented by a processor or a related circuit component of the processor.
  • FIG. 12 is another schematic block diagram of the communication device provided by the present application.
  • the communication device 40 includes a processor 41, a memory 42 and a transceiver 43, where the memory 42 stores instructions or programs, and the processor 41 is used to execute the instructions or programs stored in the memory 42.
  • the processor 41 is used to perform the operation performed by the processing module 32 in the foregoing embodiment
  • the transceiver 43 is used to perform the operation performed by the transceiver module 31 in the foregoing embodiment.
  • the communication device 30 and the communication device 40 may correspond to the communication device (eg, terminal device) in the communication method of the embodiment of the present application, and the operations of the respective modules in the communication device 30 and the communication device 40 And / or functions are to implement the corresponding processes of the methods in FIG. 2 to FIG. 8, respectively, and for the sake of brevity, they are not repeated here.
  • An embodiment of the present application further provides a computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, a process related to an access network device in the signal communication method provided by the foregoing method embodiment is implemented.
  • An embodiment of the present application further provides a computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, a process related to a communication device in a signal communication method provided by the foregoing method embodiment is implemented.
  • An embodiment of the present application further provides a communication device, which may be a communication device or a circuit.
  • the communication device may be used to perform actions performed by a communication device (for example, a terminal device) in the foregoing method embodiments.
  • FIG. 13 shows a simplified schematic diagram of the structure of the terminal device. It is easy to understand and convenient to illustrate.
  • the terminal device uses a mobile phone as an example.
  • the terminal device includes a processor, a memory, a radio frequency circuit, an antenna, and input and output devices.
  • the processor is mainly used for processing communication protocols and communication data, as well as controlling terminal devices, executing software programs, and processing data of software programs.
  • the memory is mainly used to store software programs and data.
  • the radio frequency circuit is mainly used for the conversion of the baseband signal and the radio frequency signal and the processing of the radio frequency signal.
  • the antenna is mainly used to send and receive radio frequency signals in the form of electromagnetic waves.
  • Input and output devices such as touch screens, display screens, and keyboards, are mainly used to receive data input by users and output data to users. It should be noted that some types of terminal devices may not have input / output devices.
  • the processor When data needs to be sent, the processor performs baseband processing on the data to be sent, and then outputs the baseband signal to the radio frequency circuit.
  • the radio frequency circuit processes the baseband signal after radio frequency processing and sends the radio frequency signal to the outside in the form of electromagnetic waves through the antenna.
  • the radio frequency circuit receives the radio frequency signal through the antenna, converts the radio frequency signal into a baseband signal, and outputs the baseband signal to the processor.
  • the processor converts the baseband signal into data and processes the data.
  • FIG. 13 only one memory and processor are shown in FIG. 13. In actual terminal equipment products, there may be one or more processors and one or more memories.
  • the memory may also be referred to as a storage medium or storage device.
  • the memory may be set independently of the processor, or may be integrated with the processor, which is not limited in the embodiments of the present application.
  • an antenna and a radio frequency circuit with a transceiver function can be regarded as a transceiver unit of a terminal device, and a processor with a processing function can be regarded as a processing unit of the terminal device.
  • the terminal device includes a transceiver unit 51 and a processing unit 52.
  • the transceiver unit may also be called a transceiver, a transceiver, a transceiver device, or the like.
  • the processing unit may also be called a processor, a processing board, a processing module, a processing device, and the like.
  • the device used to implement the receiving function in the transceiver unit 51 can be regarded as a receiving unit, and the device used to implement the sending function in the transceiver unit 51 can be regarded as a sending unit, that is, the transceiver unit 51 includes a receiving unit and a sending unit.
  • the transceiver unit may sometimes be called a transceiver, transceiver, or transceiver circuit.
  • the receiving unit may sometimes be called a receiver, a receiver, or a receiving circuit.
  • the sending unit may sometimes be called a transmitter, a transmitter, or a transmitting circuit.
  • transceiving unit 51 is used to perform the sending operation and the receiving operation on the terminal device side in the above method embodiment
  • processing unit 52 is used to perform other operations on the terminal device other than the transceiving operation in the above method embodiment.
  • the transceiving unit 51 is used to perform the receiving / transmitting operation on the terminal device side in S301, S302, or S304-S306 in FIG. 2, and / or the transceiving unit 51 is also used to perform the implementation of the present application In the example, other sending and receiving steps on the terminal device side.
  • the processing unit 52 is configured to determine the first information before S302 in FIG. 3, and / or the processing unit 510 is further configured to execute other processing steps on the terminal device side in the embodiment of the present application.
  • the transceiving unit 51 is used to perform the receiving / transmitting operation on the terminal device side in S401 and S403-S407 in FIG. 4, and / or the transceiving unit 51 is also used to perform the embodiment of the present application Other sending and receiving steps on the terminal device side.
  • the processing unit 52 is used to determine the identifier and MAC address of the first terminal device before S401 in FIG. 4, and / or the processing unit 52 is also used to execute other processing steps on the terminal device side in the embodiment of the present application.
  • the transceiving unit 51 is used to perform the sending operation on the terminal device side in S501 in FIG. 5, and / or the transceiving unit 51 is also used to perform other transceiving on the terminal device side in the embodiments of the present application.
  • the processing unit 52 is configured to determine the first data transmission request before S501 in FIG. 5, and / or the processing unit 52 is further configured to execute other processing steps on the terminal device side in the embodiment of the present application.
  • the transceiving unit 51 is used to perform the sending / receiving operations on the terminal device side in S601-S602 in FIG. 6, and / or the transceiving unit 51 is also used to perform the terminal device in the embodiments of the present application On the other side.
  • the processing unit 52 is configured to determine the first data transmission request before S601 in FIG. 6, and / or the processing unit 52 is further configured to execute other processing steps on the terminal device side in the embodiment of the present application.
  • the transceiving unit 51 is used to perform the receiving operation on the terminal device side in S703 in FIG. 7, and / or the transceiving unit 51 is also used to perform other transceiving on the terminal device side in the embodiments of the present application. step.
  • the transceiving unit 51 is used to perform the receiving operation on the terminal device side in S803 in FIG. 8, and / or the transceiving unit 51 is also used to perform other transceiving on the terminal device side in the embodiments of the present application.
  • the processing unit 52 is used to determine the second data before S804 in FIG. 8, and / or the processing unit 52 is also used to execute other processing steps on the terminal device side in the embodiment of the present application.
  • the chip When the communication device is a chip, the chip includes a transceiver unit and a processing unit.
  • the transceiver unit may be an input-output circuit and a communication interface;
  • the processing unit is a processor or a microprocessor or an integrated circuit integrated on the chip.
  • the device shown in FIG. 14 can be referred to.
  • the device can perform functions similar to the processor 41 in FIG.
  • the device includes a processor 61, a transmission data processor 62, and a reception data processor 63.
  • the processing module 32 in the above embodiment may be the processor 61 in FIG. 14 and complete the corresponding functions.
  • the transceiver module 31 in the above embodiments may be the sending data processor 62 and / or the receiving data processor 63 in FIG. 14.
  • a channel encoder and a channel decoder are shown in FIG. 14, it can be understood that these modules do not constitute a restrictive description of this embodiment, but are only schematic.
  • FIG. 15 shows another form of this embodiment.
  • the processing device 70 includes modules such as a modulation subsystem, a central processing subsystem, and peripheral subsystems.
  • the communication device in this embodiment can serve as the modulation subsystem therein.
  • the modulation subsystem may include a processor 71 and an interface 72.
  • the processor 71 performs the function of the processing module 32 described above, and the interface 72 performs the function of the transceiver module 31 described above.
  • the modulation subsystem includes a memory 73, a processor 71, and a program stored on the memory 73 and executable on the processor. When the processor 71 executes the program, the terminal device side in the above method embodiment is implemented. Methods.
  • the memory 73 may be non-volatile or volatile, and its location may be inside the modulation subsystem or in the processing device 70, as long as the memory 73 can be connected to the processor 71 is enough.
  • a computer-readable storage medium on which instructions are stored, and when the instructions are executed, the method on the access network device side in the foregoing method embodiment is executed.
  • a computer program product containing instructions is provided, and when the instructions are executed, the method on the communication device side in the above method embodiment is executed.
  • the processor mentioned in the embodiment of the present invention may be a central processing unit (Central Processing Unit, CPU), and may also be other general-purpose processors, digital signal processors (Digital Signal Processors, DSPs), and application specific integrated circuits ( Application Specific Integrated Circuit (ASIC), ready-made programmable gate array (Field Programmable Gate Array, FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc.
  • the general-purpose processor may be a microprocessor or the processor may be any conventional processor or the like.
  • the memory mentioned in the embodiments of the present invention may be a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memory.
  • the non-volatile memory can be read-only memory (Read-Only Memory, ROM), programmable read-only memory (Programmable ROM, PROM), erasable programmable read-only memory (Erasable PROM, EPROM), electronic Erasable programmable read only memory (Electrically EPROM, EEPROM) or flash memory.
  • the volatile memory may be a random access memory (Random Access Memory, RAM), which is used as an external cache.
  • RAM static random access memory
  • DRAM dynamic random access memory
  • DRAM synchronous dynamic random access memory
  • SDRAM double data rate synchronous dynamic random access memory
  • Double Data Rate SDRAM DDR SDRAM
  • enhanced SDRAM ESDRAM
  • Synchlink DRAM SLDRAM
  • Direct Rambus RAM Direct Rambus RAM
  • the processor is a general-purpose processor, DSP, ASIC, FPGA or other programmable logic device, discrete gate or transistor logic device, or discrete hardware component
  • the memory storage module
  • the disclosed system, device, and method may be implemented in other ways.
  • the device embodiments described above are only schematic.
  • the division of the units is only a division of logical functions.
  • there may be other divisions for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored, or not implemented.
  • the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical or other forms.
  • 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, they may be located in one place, or may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit.
  • the function is implemented in the form of a software functional unit and sold or used as an independent product, it may be stored in a computer-readable storage medium.
  • the technical solution of the present application essentially or part of the contribution to the existing technology or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including Several instructions are used to enable a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in the embodiments of the present application.
  • the foregoing storage media include: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disks or optical disks and other media that can store program codes .

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Abstract

Provided in the present application are a wireless communication method and device, the method comprising: an access network device receiving first information, the first information comprising at least one of service information, an identifier of a first communication device, and an media access control (MAC) address of the first communication device; the access network device determining a QoS rule according to the first information and establishing a bearer between the access network device and the first communication device according to the QoS rule. The communication delay is reduced.

Description

无线通信方法及设备Wireless communication method and equipment
本申请要求于2018年10月17日提交中国专利局、申请号为201811208755.5、申请名称为“无线通信方法及设备”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。This application requires the priority of a Chinese patent application filed on October 17, 2018 in the Chinese Patent Office with the application number 201811208755.5 and the application name "Wireless Communication Method and Equipment", the entire contents of which are incorporated by reference in this application.
技术领域Technical field
本申请涉及通信技术领域,尤其涉及一种无线通信方法及设备。This application relates to the field of communication technology, and in particular, to a wireless communication method and device.
背景技术Background technique
目前,无线通信网络架构中通常包括通信设备(例如终端设备等)、接入网设备(例如基站等)、核心网设备和服务器,通信设备与服务器通过接入网设备和核心网设备进行通信。At present, the wireless communication network architecture usually includes a communication device (such as a terminal device, etc.), an access network device (such as a base station, etc.), a core network device, and a server. The communication device and the server communicate through the access network device and the core network device.
在现有技术中,在通信设备和服务器进行通信之前,核心网设备需要先根据通信设备发起的业务类型为通信设备确定QoS(Quality of Service,简称QoS)规则并指示给接入网设备,接入网设备根据核心网设备确定的QoS规则,为通信设备和接入网设备之间提供通信服务,帮助通信设备发送上行数据,或者接收下行数据。In the prior art, before the communication device communicates with the server, the core network device needs to determine the QoS (Quality of Service, QoS) rule for the communication device according to the service type initiated by the communication device and instruct the access network device to connect The network access device provides communication services between the communication device and the access network device according to the QoS rules determined by the core network device, and helps the communication device to send uplink data or receive downlink data.
在上述过程中,接入网设备和核心网设备需要进行多次交互,接入网设备才能获取核心网设备确定QoS规则,导致通信设备和服务器之间通信时延较大。In the above process, the access network device and the core network device need to perform multiple interactions before the access network device can obtain the core network device to determine the QoS rules, resulting in a large communication delay between the communication device and the server.
发明内容Summary of the invention
本申请提供一种无线通信方法及设备,降低了通信时延。This application provides a wireless communication method and device, which reduces communication delay.
第一方面提供一种通信方法,该通信方法包括:接入网设备接收第一信息,第一信息包括业务信息、第一通信设备的标识、第一通信设备的媒体访问控制MAC地址中的至少一种;接入网设备根据第一信息确定QoS规则,并根据QoS规则建立接入网设备与第一通信设备之间的承载。A first aspect provides a communication method including: an access network device receiving first information, the first information including at least one of service information, an identification of the first communication device, and a media access control MAC address of the first communication device One; the access network device determines the QoS rule according to the first information, and establishes the bearer between the access network device and the first communication device according to the QoS rule.
在本申请提供的方案中,接入网设备可以获取第一信息,第一信息中包括业务信息、第一通信设备的标识、第一通信设备的MAC地址中的至少一种,接入网设备可以根据第一信息确定QoS规则,并根据QoS规则建立接入网设备与所述第一通信设备之间的承载,以使第一通信设备可以在该承载上发送上行数据或者接收下行数据。在上述过程中,由于接入网设备可以获取得到第一信息,使得接入网设备可以根据第一信息确定QoS规则,无需核心网设备确定QoS规则,在通信设备与服务器通信过程中,减少了接入网设备与核心网设备之间的交互次数,进而降低了通信设备与服务器之间的通信时延,并减少了消耗的通信资源。In the solution provided by the present application, the access network device may acquire the first information, where the first information includes at least one of service information, the identification of the first communication device, and the MAC address of the first communication device. A QoS rule can be determined according to the first information, and a bearer between the access network device and the first communication device can be established according to the QoS rule, so that the first communication device can send uplink data or receive downlink data on the bearer. In the above process, since the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule. During the communication between the communication device and the server, the The number of interactions between the access network device and the core network device, thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
在一种可能的实现方式中,接入网设备根据QoS规则建立接入网设备与第一通信设备之间的承载之后,接入网设备接收第一通信设备发送的第一数据发送请求,第一数据发送 请求包括待向服务器发送的第一数据;接入网设备获取服务器的MAC地址;接入网设备根据服务器的MAC地址,向服务器发送第一数据。In a possible implementation manner, after the access network device establishes a bearer between the access network device and the first communication device according to the QoS rule, the access network device receives the first data transmission request sent by the first communication device, A data sending request includes the first data to be sent to the server; the access network device obtains the MAC address of the server; the access network device sends the first data to the server according to the MAC address of the server.
在上述过程中,由于接入网设备的适配层具有处理(解析、转发等)以太网数据包的功能,因此,第一通信设备向服务器发送的以太网格式的上行数据可以由接入网设备转发,即,第一通信设备向服务器发送的上行数据无需由核心网设备转发,减少了接入网设备和核心网之间的数据交互过程,进而降低了第一通信设备向服务器发送上行数据的时延,并减少了消耗的通信资源。In the above process, since the adaptation layer of the access network device has the function of processing (resolving, forwarding, etc.) Ethernet data packets, the uplink data in the Ethernet format sent by the first communication device to the server can be sent by the access network Device forwarding, that is, the uplink data sent by the first communication device to the server does not need to be forwarded by the core network device, reducing the data interaction process between the access network device and the core network, thereby reducing the uplink data sent by the first communication device to the server Delay and reduces the consumption of communication resources.
在一种可能的实现方式中,第一数据发送请求中包括服务器的MAC地址;获取服务器的MAC地址,包括:接入网设备在第一数据发送请求中获取服务器的MAC地址。由于第一数据发送请求中包括服务器的MAC地址,可以使得接入网设备快速获取服务器的MAC地址。In a possible implementation manner, the first data sending request includes the MAC address of the server; acquiring the MAC address of the server includes: the access network device acquiring the MAC address of the server in the first data sending request. Since the first data sending request includes the MAC address of the server, the access network device can quickly obtain the MAC address of the server.
在一种可能的实现方式中,第一数据发送请求中包括服务器的标识,第一信息中包括服务器的标识和服务器的MAC地址的对应关系;获取服务器的MAC地址,包括:接入网设备根据服务器的标识和对应关系,获取服务器的MAC地址。In a possible implementation manner, the first data sending request includes a server identifier, and the first information includes a correspondence between the server identifier and the server's MAC address; obtaining the server's MAC address includes: The server's ID and corresponding relationship to obtain the server's MAC address.
在一种可能的实现方式中,第一信息中还包括服务器的MAC地址;获取服务器的MAC地址,包括:接入网设备在第一信息中获取服务器的MAC地址。由于第一信息中还包括服务器的MAC地址,使得第一数据发送请求中无需携带服务器的MAC地址,进而减小了信令开销。In a possible implementation manner, the first information further includes the MAC address of the server; acquiring the MAC address of the server includes: the access network device acquiring the MAC address of the server in the first information. Since the first information further includes the MAC address of the server, the first data transmission request does not need to carry the MAC address of the server, thereby reducing signaling overhead.
在一种可能的实现方式中,第一信息还包括第一通信设备连接的至少一个第二通信设备的标识和/或第二通信设备的MAC地址。In a possible implementation manner, the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
在一种可能的实现方式中,接入网设备根据QoS规则建立接入网设备与通信设备之间的承载之后,还包括:接入网设备接收服务器发送的第二数据发送请求,第二数据发送请求包括第二数据,以及第二通信设备的标识和/或第二通信设备的MAC地址;确定第二通信设备与第一通信设备连接时,通过承载向第一通信设备发送第二数据,以及第二通信设备的标识和/或第二通信设备的MAC地址,用于使得第一通信设备根据第二通信设备的标识和/或第二通信设备的MAC地址,向第二通信设备发送第二数据。In a possible implementation manner, after the access network device establishes the bearer between the access network device and the communication device according to the QoS rule, the method further includes: the access network device receives the second data sending request sent by the server, and the second data The sending request includes the second data, and the identification of the second communication device and / or the MAC address of the second communication device; when it is determined that the second communication device is connected to the first communication device, the second data is sent to the first communication device through the bearer, And the identifier of the second communication device and / or the MAC address of the second communication device is used to enable the first communication device to send the second communication device the second communication device according to the identifier of the second communication device and / or the MAC address of the second communication device二 Data.
在上述过程中,接入网设备向第二通信设备发送下行数据时,由于接入网设备和第一通信设备的适配层具有处理(解析、转发等)以太网数据包的功能,因此,服务器可以直接向接入网设备发送以太网数据包格式的下行数据,并由接入网设备和第一通信设备向第二通信设备转发下行数据,无需经过核心网的中转,减少了接入网设备和核心网设备之间数据交互过程,进而降低了服务器向第二通信设备发送下行数据的时延,并减少了消耗的通信资源。In the above process, when the access network device sends downlink data to the second communication device, since the adaptation layer of the access network device and the first communication device has the function of processing (resolving, forwarding, etc.) the Ethernet data packet, therefore, The server can directly send the downlink data in the form of Ethernet data packets to the access network device, and the downlink data is forwarded by the access network device and the first communication device to the second communication device without going through the core network relay, reducing the access network The data interaction process between the device and the core network device further reduces the delay of the server sending downlink data to the second communication device, and reduces the communication resources consumed.
在一种可能的实现方式中,接入网设备根据第一信息确定服务质量QoS规则之前,还包括:接入网设备接收服务器发送的指示信息,指示信息包括第一通信设备的标识和/或第一通信设备的MAC地址;接入网设备根据第一通信设备的标识和/或第一通信设备的MAC地址,寻呼第一通信设备。接入网设备可以根据服务器发送的指示信息对第一通信设备进行寻呼,用于指示寻呼第一通信设备的指示信息无需经过核心网设备的中转,减少了接入网设备和核心网设备之间数据交互过程,进而降低了服务器向第二通信设备发送下行数据的时延,并减少了消耗的通信资源。In a possible implementation manner, before the access network device determines the quality of service QoS rule according to the first information, the method further includes: the access network device receives the indication information sent by the server, and the indication information includes the identifier and / or the first communication device The MAC address of the first communication device; the access network device pages the first communication device according to the identifier of the first communication device and / or the MAC address of the first communication device. The access network device can page the first communication device according to the indication information sent by the server, and the indication information used to indicate the paging of the first communication device does not need to pass through the transfer of the core network device, reducing the access network device and the core network device The data exchange process between them further reduces the delay of the server sending downlink data to the second communication device, and reduces the communication resources consumed.
在一种可能的实现方式中,接入网设备还可以发送广播消息,广播消息中包括接入网设备支持的网络类型,网络类型包括公共网络类型或非公共网络类型中的至少一种。接入网设备发送广播消息之后,通信设备可以根据广播消息确定接入网设备支持的网络类型,并根据接入网设备支持的网络类型、以及其业务需求,确定是否接入该接入网设备。In a possible implementation manner, the access network device may also send a broadcast message, where the broadcast message includes a network type supported by the access network device, and the network type includes at least one of a public network type or a non-public network type. After the access network device sends a broadcast message, the communication device can determine the network type supported by the access network device according to the broadcast message, and determine whether to access the access network device according to the network type supported by the access network device and its service requirements .
需要说明的是,上述任意一种可行的实现方式可以单独存在,也可以相互结合。It should be noted that any of the above feasible implementation manners may exist alone or may be combined with each other.
第二方面提供一种通信方法,该通信方法包括:第一通信设备向接入网设备发送第一信息,第一信息包括业务信息、第一通信设备的标识、第一通信设备的媒体访问控制MAC地址中的至少一种,第一信息用于指示接入网设备根据第一信息确定QoS规则,并根据QoS规则建立接入网设备与第一通信设备之间的承载;第一通信设备在承载上发送和/或接收数据。A second aspect provides a communication method. The communication method includes: a first communication device sends first information to an access network device, where the first information includes service information, an identification of the first communication device, and media access control of the first communication device At least one of the MAC addresses, the first information is used to instruct the access network device to determine the QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule; the first communication device is Send and / or receive data on the bearer.
在本申请提供的方案中,第一通信设备可以向接入网设备发送第一信息,第一信息中包括业务信息、第一通信设备的标识、第一通信设备的MAC地址中的至少一种,接入网设备可以根据第一信息确定QoS规则,并根据QoS规则建立接入网设备与所述第一通信设备之间的承载,以使第一通信设备可以在该承载上发送上行数据或者接收下行数据。在上述过程中,由于接入网设备可以获取得到第一信息,使得接入网设备可以根据第一信息确定QoS规则,无需核心网设备确定QoS规则,在通信设备与服务器通信过程中,减少了接入网设备与核心网设备之间的交互次数,进而降低了通信设备与服务器之间的通信时延,并减少了消耗的通信资源。In the solution provided in this application, the first communication device may send first information to the access network device, where the first information includes at least one of service information, an identification of the first communication device, and a MAC address of the first communication device , The access network device may determine the QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule, so that the first communication device may send uplink data on the bearer or Receive downstream data. In the above process, since the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule. During the communication between the communication device and the server, the The number of interactions between the access network device and the core network device, thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
在一种可能的实现方式中,第一通信设备在承载上发送数据,包括:第一通信设备在承载上向接入网设备发送第一数据发送请求,第一数据发送请求包括待发送的第一数据,第一数据发送请求用于指示接入网设备向服务器发送第一数据。In a possible implementation manner, the first communication device sending data on the bearer includes: the first communication device sending a first data sending request to the access network device on the bearer, and the first data sending request includes the first data to be sent. One data, the first data sending request is used to instruct the access network device to send the first data to the server.
在上述过程中,由于接入网设备的适配层具有处理(解析、转发等)以太网数据包的功能,因此,第一通信设备向服务器发送的以太网格式的上行数据可以由接入网设备转发,即,第一通信设备向服务器发送的上行数据无需由核心网设备转发,减少了接入网设备和核心网之间的数据交互过程,进而降低了第一通信设备向服务器发送上行数据的时延,并减少了消耗的通信资源。In the above process, since the adaptation layer of the access network device has the function of processing (resolving, forwarding, etc.) Ethernet data packets, the uplink data in the Ethernet format sent by the first communication device to the server can be sent by the access network Device forwarding, that is, the uplink data sent by the first communication device to the server does not need to be forwarded by the core network device, which reduces the data interaction process between the access network device and the core network, thereby reducing the uplink data sent by the first communication device to the server Delay and reduces the consumption of communication resources.
在一种可能的实现方式中,第一数据发送请求包括服务器的标识和/或服务器的MAC地址。In a possible implementation manner, the first data transmission request includes an identifier of the server and / or a MAC address of the server.
在一种可能的实现方式中,第一信息还包括第一通信设备连接的至少一个第二通信设备的标识和/或第二通信设备的MAC地址。In a possible implementation manner, the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
在一种可能的实现方式中,第一数据为任意一个第二通信设备向第一通信设备发送的。In a possible implementation manner, the first data is sent by any second communication device to the first communication device.
在一种可能的实现方式中,第一通信设备在承载上接收数据,包括:第一通信设备在承载上接收接入网设备发送的第二数据和设备标识;若设备标识为第一通信设备连接的至少一个第二通信设备的标识或者第二通信设备的MAC地址,则根据设备标识向第二通信设备发送第二数据。In a possible implementation manner, the first communication device receiving data on the bearer includes: the first communication device receiving on the bearer the second data and the device identifier sent by the access network device; if the device identifier is the first communication device The identification of the connected at least one second communication device or the MAC address of the second communication device sends second data to the second communication device according to the device identification.
在上述过程中,接入网设备向第二通信设备发送下行数据时,由于接入网设备和第一通信设备的适配层具有处理(解析、转发等)以太网数据包的功能,因此,服务器可以直接向接入网设备发送以太网数据包格式的下行数据,并由接入网设备和第一通信设备向第二通信设备转发下行数据,无需经过核心网的中转,减少了接入网设备和核心网设备之间 数据交互过程,进而降低了服务器向第二通信设备发送下行数据的时延,并减少了消耗的通信资源。In the above process, when the access network device sends downlink data to the second communication device, since the adaptation layer of the access network device and the first communication device has the function of processing (resolving, forwarding, etc.) the Ethernet data packet, therefore, The server can directly send the downlink data in the form of Ethernet data packets to the access network device, and the downlink data is forwarded by the access network device and the first communication device to the second communication device without going through the core network relay, reducing the access network The data interaction process between the device and the core network device further reduces the delay of the server sending downlink data to the second communication device, and reduces the communication resources consumed.
在一种可能的实现方式中,第一通信设备还可以接收接入网设备发送的广播消息,广播消息包括接入网设备支持的网络类型,网络类型包括公共网络类型或非公共网络类型中的至少一种;第一通信设备根据广播消息和第一通信设备的业务需求,确定是否接入接入网设备。In a possible implementation manner, the first communication device may also receive a broadcast message sent by the access network device, where the broadcast message includes a network type supported by the access network device, and the network type includes a public network type or a non-public network type. At least one; the first communication device determines whether to access the access network device according to the broadcast message and the service requirements of the first communication device.
需要说明的是,上述任意一种可行的实现方式可以单独存在,也可以相互结合。It should be noted that any of the above feasible implementation manners may exist alone or may be combined with each other.
第三方面提供一种接入网设备,所述接入网设备用于执行上述第一方面或第一方面的任一可能的实现方式中的通信方法。具体地,所述接入网设备可以包括用于执行第一方面或第一方面的任一可能的实现方式中的通信方法的模块。A third aspect provides an access network device that is used to perform the communication method in the first aspect or any possible implementation manner of the first aspect. Specifically, the access network device may include a module for performing the communication method in the first aspect or any possible implementation manner of the first aspect.
第四方面提供一种接入网设备,所述接入网设备包括存储器和处理器,所述存储器用于存储指令,所述处理器用于执行所述存储器存储的指令,并且对所述存储器中存储的指令的执行使得所述处理器执行第一方面或第一方面的任一可能的实现方式中的方法。A fourth aspect provides an access network device. The access network device includes a memory and a processor. The memory is used to store instructions. The processor is used to execute the instructions stored in the memory. The execution of the stored instructions causes the processor to execute the method in the first aspect or any possible implementation manner of the first aspect.
第五方面提供一种计算机可读存储介质,其上存储有计算机程序,所述程序被处理器执行时实现第一方面或第一方面的任一可能的实现方式中的方法。A fifth aspect provides a computer-readable storage medium on which a computer program is stored, which when executed by a processor implements the method of the first aspect or any possible implementation manner of the first aspect.
第六方面提供一种通信设备,所述通信设备用于执行上述第二方面或第二方面的任一可能的实现方式中的通信方法。具体地,所述通信设备包括用于执行第二方面或第二方面的任一可能的实现方式中的通信方法的模块。A sixth aspect provides a communication device for performing the communication method in the second aspect or any possible implementation manner of the second aspect. Specifically, the communication device includes a module for performing the communication method in the second aspect or any possible implementation manner of the second aspect.
第七方面提供一种通信设备,所述通信设备包括存储器和处理器,所述存储器用于存储指令,所述处理器用于执行所述存储器存储的指令,并且对所述存储器中存储的指令的执行使得所述处理器执行第二方面或第二方面的任一可能的实现方式中的方法。A seventh aspect provides a communication device. The communication device includes a memory and a processor. The memory is used to store instructions. The processor is used to execute instructions stored in the memory. The execution causes the processor to perform the method in the second aspect or any possible implementation manner of the second aspect.
第八方面提供一种计算机可读存储介质,其上存储有计算机程序,所述程序被处理器执行时实现第二方面或第二方面的任一可能的实现方式中的方法。An eighth aspect provides a computer-readable storage medium on which a computer program is stored, which when executed by a processor implements the method of the second aspect or any possible implementation manner of the second aspect.
本申请提供的无线通信方法及设备,接入网设备可以获取第一信息,第一信息中包括业务信息、第一通信设备的标识、第一通信设备的MAC地址中的至少一种,接入网设备可以根据第一信息确定QoS规则,并根据QoS规则建立接入网设备与所述第一通信设备之间的承载,以使第一通信设备可以在该承载上发送上行数据或者接收下行数据。在上述过程中,由于接入网设备可以获取得到第一信息,使得接入网设备可以根据第一信息确定QoS规则,无需核心网设备确定QoS规则,在通信设备与服务器通信过程中,减少了接入网设备与核心网设备之间的交互次数,进而降低了通信设备与服务器之间的通信时延,并减少了消耗的通信资源。In the wireless communication method and device provided by the present application, the access network device can obtain the first information, and the first information includes at least one of service information, an identifier of the first communication device, and a MAC address of the first communication device. The network device may determine the QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule, so that the first communication device may send uplink data or receive downlink data on the bearer . In the above process, since the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule. During the communication between the communication device and the server, the The number of interactions between the access network device and the core network device, thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
附图说明BRIEF DESCRIPTION
图1A为本申请提供的通信设备的协议栈的示意图;1A is a schematic diagram of a protocol stack of a communication device provided by this application;
图1B为本申请提供的接入网设备的协议栈的示意图;1B is a schematic diagram of a protocol stack of an access network device provided by this application;
图1C为本申请提供的一种系统架构图;FIG. 1C is a system architecture diagram provided by this application;
图2为本申请提供的无线通信方法的流程示意图;2 is a schematic flowchart of a wireless communication method provided by this application;
图3为本申请提供的一种接入非公共网络方式的流程示意图;FIG. 3 is a schematic flowchart of a non-public network access method provided by this application;
图4为本申请提供的另一种接入非公共网络方式的流程示意图;4 is a schematic flowchart of another method for accessing a non-public network provided by this application;
图5为本申请提供的一种上行业务过程的流程示意图;5 is a schematic flowchart of an upstream service process provided by the application;
图6为本申请提供的另一种上行业务过程的流程示意图;6 is a schematic flowchart of another uplink service process provided by the application;
图7为本申请提供的一种下行业务过程的流程示意图;7 is a schematic flowchart of a downlink service process provided by this application;
图8为本申请提供的另一种下行业务过程的流程示意图;FIG. 8 is a schematic flowchart of another downlink service process provided by this application;
图9为本申请提供的接入网设备的一种示意性框图;9 is a schematic block diagram of an access network device provided by this application;
图10为本申请提供的接入网设备的一种示意性框图;10 is a schematic block diagram of an access network device provided by this application;
图11为本申请提供的通信设备的一种示意性框图;11 is a schematic block diagram of a communication device provided by this application;
图12为本申请提供的通信设备的另一种示意性框图;12 is another schematic block diagram of a communication device provided by this application;
图13为本申请实施例提供的通信装置的示意性框图;13 is a schematic block diagram of a communication device provided by an embodiment of this application;
图14为本申请实施例提供的通信装置的另一示意性框图;14 is another schematic block diagram of a communication device provided by an embodiment of this application;
图15为本申请实施例提供的通信装置的再一示意性框图。FIG. 15 is yet another schematic block diagram of the communication device provided by the embodiment of the present application.
具体实施方式detailed description
下面将结合附图,对本申请中的技术方案进行描述。The technical solutions in this application will be described below with reference to the drawings.
本申请所示的技术方案可以应用于第五代移动通信技术(The 5th Generation mobile communication technology,简称5G)系统,也可以应用于长期演进(Long Term Evolution,LTE)架构,还可以应用于通用移动通信系统(Universal Mobile Telecommunications System,UMTS)陆地无线接入网(UMTS Terrestrial Radio Access Network,UTRAN)架构,或者全球移动通信系统(Global System for Mobile Communication,GSM)/增强型数据速率GSM演进(Enhanced Data Rate for GSM Evolution,EDGE)系统的无线接入网(GSM EDGE Radio Access Network,GERAN)架构。在UTRAN架构或/GERAN架构中,移动性管理实体(Mobile Management Entity,MME)的功能由服务通用分组无线业务(General Packet Radio Service,GPRS)支持节点(Serving GPRS Support,SGSN)完成,服务网关(Serving Gate Way,S-GW)\公用数据网网关(Public Data Network Gate Way,P-GW)的功能由网关GPRS支持节点(Gateway GPRS Support Node,GGSN)完成。本发明实施例的技术方案还可以应用于其他通信系统,例如公共陆地移动网络(Public Land Mobile Network,PLMN)系统等,本申请对此不作限定。The technical solution shown in this application can be applied to the fifth generation mobile communication technology (The 5th Generation, mobile communication technology, 5G for short) system, it can also be applied to the Long Term Evolution (LTE) architecture, and can also be applied to general mobile Communication System (Universal Mobile Telecommunications System, UMTS) Terrestrial Radio Access Network (UMTS Terrestrial Radio Access Network, UTRAN) architecture, or Global Mobile System (Global System) for Mobile Communication (GSM) / Enhanced Data Rate GSM Evolution (Enhanced Data Rate (for GSM Evolution, EDGE) system wireless access network (GSM EDGE Radio Access Network, GERAN) architecture. In the UTRAN architecture or / GERAN architecture, the function of the mobile management entity (Mobile Management Entity, MME) is performed by the General Packet Radio Service (GPRS) support node (Serving GPRS Support, SGSN), and the service gateway ( The function of Serving Gate Way (S-GW) \ Public Data Network Gateway (PublicDataNetworkWay, P-GW) is completed by the Gateway GPRS Support Node (GGSN). The technical solutions of the embodiments of the present invention may also be applied to other communication systems, such as a public land mobile network (Public Land Mobile Network, PLMN) system, etc., which is not limited in this application.
网络类型可以包括公共网络类型和非公共网络类型,公用网络可以为供公共用户使用的通信网络,即传统的运营商网络,供大众通信使用,包括但不限于手机通信。非公共网络可以为供部分私有用户使用的通信网络,例如,非公共网络可以包括工业通信网络、企业私有网络等,其中典型的工业通信网络服务范围通常为一个或者多个工业园区,企业私有网络服务范围通常为一个企业内部的所有用户。申请所示的技术方案可以应用于非公共网络类型的通信场景,例如,本申请所示的技术方案可以应用于工业通信场景、企业私有网络通信场景等。当然,本申请所示的技术方案还可以应用于其它通信场景,本申请对此不作具体限定。The network type may include a public network type and a non-public network type. The public network may be a communication network for public users, that is, a traditional operator network, which is used for public communication, including but not limited to mobile phone communication. The non-public network may be a communication network used by some private users. For example, the non-public network may include an industrial communication network, an enterprise private network, etc., where a typical industrial communication network service range is usually one or more industrial parks, an enterprise private network The service scope is usually all users within an enterprise. The technical solutions shown in the application can be applied to non-public network type communication scenarios. For example, the technical solutions shown in this application can be applied to industrial communication scenarios and enterprise private network communication scenarios. Of course, the technical solution shown in this application can also be applied to other communication scenarios, which is not specifically limited in this application.
本申请涉及通信设备,通信设备可以为包含无线收发功能、且可以与网络设备配合为用户提供通讯服务的设备。具体地,通信设备可以指工业机器人、工业自动化设备、终端设备、用户设备(User Equipment,UE)、接入终端、用户单元、用户站、移动站、移动台、远方站、远程终端、移动设备、用户终端、终端、无线通信设备、用户代理或用户装 置。例如,通信设备可以是蜂窝电话、无绳电话、会话启动协议(Session Initiation Protocol,SIP)电话、无线本地环路(Wireless Local Loop,WLL)站、个人数字处理(Personal Digital Assistant,PDA)、具有无线通信功能的手持设备、计算设备或连接到无线调制解调器的其它处理设备、车载设备、可穿戴设备,5G网络或5G之后的网络中的通信设备等,本申请对此不作限定。This application relates to a communication device. The communication device may be a device that includes a wireless transceiver function and that can cooperate with a network device to provide a communication service for a user. Specifically, communication equipment may refer to industrial robots, industrial automation equipment, terminal equipment, user equipment (User Equipment), access terminals, user units, user stations, mobile stations, mobile stations, remote stations, remote terminals, mobile devices , User terminal, terminal, wireless communication device, user agent or user device. For example, the communication device may be a cellular phone, a cordless phone, a Session Initiation Protocol (SIP) phone, a wireless local loop (Wireless Local Loop, WLL) station, a personal digital processing (Personal Digital Assistant (PDA), a wireless Handheld devices, computing devices, or other processing devices connected to a wireless modem, in-vehicle devices, wearable devices, communication devices in a 5G network or a network after 5G, etc. are not limited in this application.
本申请涉及的通信设备至少具有接入非公共网络的功能。当然,通信设备还可以同时具有接入非公共网络和公共网络的功能。本申请涉及的通信设备具有信息上报功能,通信设备可以向接入网设备上报通信设备的标识、通信设备的媒体访问控制(Medium Access Control,MAC)地址、通信设备的业务标识等。当然,通信设备上报的信息还可以包括其它,本申请对此不作具体限定。通信设备可以通过消息上报上述信息,例如,通信设备可以在无线资源控制(Radio Resource Control,RRC)连接请求消息、RRC连接完成消息、承载建立请求消息、注册请求消息等消息中上报上述信息。当然,通信设备还可以通过其它消息上报上述信息,本申请对此不作具体限定。The communication device involved in this application has at least the function of accessing a non-public network. Of course, the communication device may also have the function of accessing the non-public network and the public network. The communication device involved in this application has an information reporting function. The communication device may report the identification of the communication device, the Medium Access Control (MAC) address of the communication device, and the service identification of the communication device to the access network device. Of course, the information reported by the communication device may also include other information, which is not specifically limited in this application. The communication device may report the above information through a message. For example, the communication device may report the above information in a message such as a Radio Resource Control (RRC) connection request message, an RRC connection completion message, a bearer establishment request message, and a registration request message. Of course, the communication device can also report the above information through other messages, which is not specifically limited in this application.
本申请所示的通信设备的协议栈可以如图1A所示。图1A为本申请提供的通信设备的协议栈的示意图。请参见图1A,通信设备的协议栈中包括业务数据适配协议(Service data adaptive protocol,SDAP)层、分组数据汇聚协议(Packet Data Convergence Protocol,PDCP)层、无线链路层控制(Radio Link Control,RLC)层、MAC层、物理(Physical,或者PHY)层和适配(Adaptive)层。其中,适配层可以包含以太网的物理层和以太网的MAC层,适配层具有处理以太网数据包的功能,具体来说,适配层用于使得通信设备进行以太网络通信,例如,使得通信设备识别以太网数据包、以及从以太网数据包中读取MAC地址,并根据MAC地址对数据包进行转发等。转发过程可以包括:通信设备向其它通信设备(如工厂设备)转发以太网数据包。The protocol stack of the communication device shown in this application may be as shown in FIG. 1A. FIG. 1A is a schematic diagram of a protocol stack of a communication device provided by this application. Please refer to FIG. 1A, the protocol stack of the communication device includes a service data adaptation protocol (Service data adaptive (SDAP) layer, a packet data aggregation protocol (Packet Data Convergence Protocol (PDCP) layer, a radio link layer control (Radio Link Link Control , RLC) layer, MAC layer, physical (Physical, or PHY) layer and adaptation (Adaptive) layer. The adaptation layer may include the physical layer of Ethernet and the MAC layer of Ethernet. The adaptation layer has a function of processing Ethernet data packets. Specifically, the adaptation layer is used to enable communication devices to perform Ethernet communication, for example, It enables the communication device to recognize the Ethernet data packet, read the MAC address from the Ethernet data packet, and forward the data packet according to the MAC address. The forwarding process may include: the communication device forwards the Ethernet data packet to other communication devices (such as factory equipment).
另外,适配层除支持以太网数据包的解析和转发之外,还可以支持其他类型的数据包(例如IP包)的解析和转发,适配层可以根据数据包的类型执行不同的功能,例如适配层首先判断数据包是IP包还是以太网数据包,然后去读取并解析相应类型的包头,根据包头的内容进行后续的转发处理过程。In addition, in addition to the analysis and forwarding of Ethernet data packets, the adaptation layer can also support the analysis and forwarding of other types of data packets (such as IP packets). The adaptation layer can perform different functions according to the type of data packets. For example, the adaptation layer first determines whether the data packet is an IP packet or an Ethernet data packet, and then reads and parses the corresponding type of packet header, and then performs the subsequent forwarding process according to the content of the packet header.
本申请还涉及接入网设备,接入网设备可以为用于与通信设备进行通信的设备,例如,可以是GSM系统或CDMA中的基站(Base Transceiver Station,BTS),也可以是WCDMA系统中的基站(NodeB,NB),还可以是LTE系统中的演进型基站(Evolutional Node B,eNB或eNodeB),还可以是5G系统中的无线基站(g Node B,gNB),或者该接入网设备可以为中继站、接入点、车载设备、可穿戴设备以及5G之后的网络中的网络侧设备或未来演进的PLMN网络中的网络设备等。This application also relates to an access network device. The access network device may be a device for communicating with a communication device, for example, it may be a base station (Base Transceiver Station, BTS) in a GSM system or a CDMA system, or a WCDMA system. The base station (NodeB, NB) can also be an evolutionary base station (Evolutional Node B, eNB or eNodeB) in the LTE system, or a wireless base station (gNode) B, gNB in the 5G system, or the access network The device may be a relay station, an access point, an in-vehicle device, a wearable device, a network-side device in a network after 5G, or a network device in a PLMN network that evolves in the future.
本申请涉及的接入网设备也可称为无线接入网(Radio Access Network,RAN)设备。RAN设备与通信设备连接,用于接收通信设备的数据并对接收到的数据进行处理(建立QoS规则、转发处理等),或者将接收到的数据发送给核心网设备。RAN设备在不同通信系统中对应不同的设备,例如,在2G系统中对应基站与基站控制器,在3G系统中对应基站与无线网络控制器(Radio Network Controller,RNC),在4G系统中对应演进型基站(Evolutional Node B,eNB),在5G系统中对应5G系统,如新无线接入系统(New Radio Access Technology,NR)中的接入网设备,例如gNB,控制单元(Control Unit,CU),转 发单元(Distribute Unit,DU)。The access network equipment involved in this application may also be referred to as a radio access network (Radio Access Network, RAN) equipment. The RAN device is connected to the communication device and used to receive data from the communication device and process the received data (establish QoS rules, forwarding processing, etc.), or send the received data to the core network device. RAN equipment corresponds to different equipment in different communication systems, for example, corresponds to base stations and base station controllers in 2G systems, corresponds to base stations and radio network controllers (Radio Network Controller, RNC) in 3G systems, and evolves in 4G systems. Evolutionary Node (B), corresponding to the 5G system in the 5G system, such as the access network equipment in the new radio access system (New Radio Access Technology, NR), such as gNB, Control Unit (CU) , Forwarding Unit (Distribute Unit, DU).
本申请涉及的接入网设备至少支持非公共网络类型。当然,接入网设备还可以同时支持非公共网络类型和公共网络类型。本申请涉及的接入网设备至少具有确定QoS规则的功能。例如,接入网设备可以根据通信设备上报的信息(通信设备的标识、通信设备的MAC地址、通信设备的业务标识中的至少一种)确定QoS规则。进一步的,接入网设备还具有路由转发功能,例如,接入网设备可以转发通信设备向服务器发送的上行数据,和/或服务器向通信设备发送的下行数据。The access network equipment involved in this application supports at least non-public network types. Of course, the access network device can also support both non-public network types and public network types. The access network equipment involved in this application has at least the function of determining QoS rules. For example, the access network device may determine the QoS rule according to the information reported by the communication device (at least one of the identification of the communication device, the MAC address of the communication device, and the service identification of the communication device). Further, the access network device also has a route forwarding function. For example, the access network device can forward the uplink data sent by the communication device to the server, and / or the downlink data sent by the server to the communication device.
本申请所示的接入网设备的协议栈可以如图1B所示。图1B为本申请提供的接入网设备的协议栈的示意图。请参见图1B,接入网设备的协议栈中包括SDAP层、PDCP层、RLC层、MAC层、PHY层和适配(Adaptive)层。其中,适配层可以包含以太网的物理层和MAC层,适配层用于使得接入网与通信设备或者服务器进行以太网通信,例如,使得接入网设备识别以太网数据包、以及从以太网数据包中读取MAC地址,并根据MAC地址对数据包进行转发等,例如,转发过程可以包括:接入网设备向其它通信设备(如PLC或者UE)转发以太网数据包。The protocol stack of the access network device shown in this application may be as shown in FIG. 1B. FIG. 1B is a schematic diagram of a protocol stack of an access network device provided by this application. Referring to FIG. 1B, the protocol stack of the access network device includes an SDAP layer, a PDCP layer, an RLC layer, a MAC layer, a PHY layer, and an adaptation (Adaptive) layer. The adaptation layer may include the physical layer and the MAC layer of the Ethernet. The adaptation layer is used to enable the access network to communicate with the communication device or the server through Ethernet, for example, to enable the access network device to recognize the Ethernet data packet, and from The MAC address is read from the Ethernet data packet, and the data packet is forwarded according to the MAC address. For example, the forwarding process may include: the access network device forwards the Ethernet data packet to other communication devices (such as PLC or UE).
另外,适配层除支持以太网数据包的解析和转发之外,还可以支持其他类型的数据包(例如IP包)的解析和转发,适配层可以根据数据包的类型执行不同的功能,例如适配层首先判断数据包是IP包还是以太网数据包,然后去读取并解析相应类型的包头,根据包头的内容进行后续的转发处理过程。In addition, in addition to the analysis and forwarding of Ethernet data packets, the adaptation layer can also support the analysis and forwarding of other types of data packets (such as IP packets). The adaptation layer can perform different functions according to the type of data packets. For example, the adaptation layer first determines whether the data packet is an IP packet or an Ethernet data packet, and then reads and parses the corresponding type of packet header, and then performs the subsequent forwarding process according to the content of the packet header.
本申请还涉及服务器,服务器可以为向通信设备提供数据/控制服务的设备。本申请所涉及的服务器还可以为控制器,例如,控制器可以为可编程逻辑控制器(Programmable Logic Controller,PLC)。例如,服务器可以为工业通信场景中的工业服务器、企业私有网络中的服务器等。The present application also relates to a server, which may be a device that provides data / control services to a communication device. The server involved in this application may also be a controller, for example, the controller may be a programmable logic controller (Programmable Logic Controller, PLC). For example, the server may be an industrial server in an industrial communication scenario, a server in an enterprise private network, and so on.
本申请还涉及核心网(Core Network,CN)设备。CN设备在不同的通信系统中对应不同的设备,例如,在3G系统中对应服务GPRS支持节点(Serving GPRS Support Node,SGSN)或网关GPRS支持节点(Gateway GPRS Support Node,GGSN),在4G系统中对应MME或S-GW,在5G系统中对应5G系统的核心网相关设备(例如NG-Core)。This application also relates to Core Network (CN) equipment. CN equipment corresponds to different equipment in different communication systems. For example, in the 3G system, it corresponds to the serving GPRS support node (Serving GPRS Support Node, SGSN) or gateway GPRS support node (Gateway GPRS Support Node, GGSN), in the 4G system. Corresponding to the MME or S-GW, the 5G system corresponds to the core network related equipment (eg NG-Core) of the 5G system.
为了便于对本申请的理解,下面,结合图1C介绍一种可适用于本申请所示技术方案的系统架构图。In order to facilitate understanding of the present application, a system architecture diagram applicable to the technical solution shown in the present application is introduced below with reference to FIG. 1C.
图1C为本申请提供的一种系统架构图。请参见图1C,包括通信设备101、接入网设备102、服务器103和核心网设备104。FIG. 1C is a system architecture diagram provided by this application. Referring to FIG. 1C, it includes a communication device 101, an access network device 102, a server 103, and a core network device 104.
通信设备101具有接入非公共网络的功能,或者通信设备101同时具有接入非公共网络和公共网络的功能。若通信设备101同时具有接入非公共网络和公共网络的功能,则在通信设备101的工作过程中,通信设备101可以根据业务需求接入公共网络或者非公共网络。The communication device 101 has a function of accessing a non-public network, or the communication device 101 has a function of accessing both a non-public network and a public network. If the communication device 101 has the function of accessing both the non-public network and the public network, during the operation of the communication device 101, the communication device 101 may access the public network or the non-public network according to service requirements.
接入网设备102可以支持非公共网络,或者接入网设备102同时支持非公共网络和公共网络。接入网设备102可以广播其支持的网络类型(非公共网络类型和公共网络类型),以使通信设备101根据其业务需求、以及接入网设备102支持的网络类型确定是否接入该接入网设备102。The access network device 102 may support a non-public network, or the access network device 102 supports both a non-public network and a public network. The access network device 102 may broadcast the network types it supports (non-public network type and public network type), so that the communication device 101 determines whether to access the access according to its service requirements and the network type supported by the access network device 102网 设备 102。 102 network equipment.
当通信设备101需要与服务器103通过非公共网络通信时,在通信设备101需要接入 非公共网络之前,通信设备101先向接入网设备102上报其相关信息,例如上报通信设备101的标识、通信设备101的MAC地址、通信设备101的业务标识等。接入网设备102根据通信设备101上报的信息,可以确定QoS规则,并根据确定的QoS规则建立接入网设备和通信设备之间的承载。接入网设备102还可以根据通信设备101上报的信息进行路由转发。在通信设备101和服务器103通信的过程中,无需核心网设备104确定QoS规则,也无需核心网设备104进行路由转发,即,通信设备101和服务器103之间的通信无需经过核心网设备,进而降低通信设备101和服务器103之间的通信时延。When the communication device 101 needs to communicate with the server 103 through a non-public network, before the communication device 101 needs to access the non-public network, the communication device 101 first reports its related information to the access network device 102, for example, the identification of the communication device 101, The MAC address of the communication device 101, the service identification of the communication device 101, and the like. The access network device 102 may determine the QoS rule according to the information reported by the communication device 101, and establish a bearer between the access network device and the communication device according to the determined QoS rule. The access network device 102 may also perform route forwarding according to the information reported by the communication device 101. In the process of communication between the communication device 101 and the server 103, there is no need for the core network device 104 to determine the QoS rules, nor for the core network device 104 to perform route forwarding, that is, the communication between the communication device 101 and the server 103 does not need to pass through the core network device Reduce the communication delay between the communication device 101 and the server 103.
当通信设备101需要与服务器103通过公共网络通信时,则通信设备101可以不向接入网设备102上报其相关信息。相应的,在通信设备101与服务器103进行通信的过程中,由核心网设备104确定QoS规则,并进行路由转发。When the communication device 101 needs to communicate with the server 103 through the public network, the communication device 101 may not report its related information to the access network device 102. Correspondingly, during the communication between the communication device 101 and the server 103, the core network device 104 determines the QoS rules and performs route forwarding.
需要说明的是,图1C只是以示例的形式示意一种系统架构,并非对系统架构的限定,在实际应用过程中,可以根据实际需要设置该系统架构,本申请对此不作具体限定。It should be noted that FIG. 1C only illustrates a system architecture in the form of an example, rather than limiting the system architecture. In actual application, the system architecture may be set according to actual needs, which is not specifically limited in this application.
下面,通过具体实施例对本申请所示的技术方案进行详细说明。需要说明的是,下面几个具体实施例可以单独存在,也可以相互结合,对于相同或相似的内容,在不同的实施例中不再进行重复说明。The technical solutions shown in this application will be described in detail below through specific embodiments. It should be noted that the following specific embodiments may exist alone or may be combined with each other, and the same or similar content will not be repeated in different embodiments.
需要说明的是,在下述实施例中,以通信设备为终端设备、接入网设备为基站为例进行说明。It should be noted that, in the following embodiments, the communication device is a terminal device and the access network device is a base station as an example for description.
图2为本申请提供的无线通信方法的流程示意图。请参见图2,该方法可以包括:FIG. 2 is a schematic flowchart of a wireless communication method provided by this application. Please refer to FIG. 2, the method may include:
S201、基站接收第一信息。S201. The base station receives the first information.
其中,第一信息包括业务信息、第一终端设备的标识、第一终端设备的MAC地址中的至少一种。The first information includes at least one of service information, an identifier of the first terminal device, and a MAC address of the first terminal device.
业务信息可以为第一终端设备待执行的业务的信息,第一终端设备待执行的业务可以为第一终端设备主动发起的上行业务,也可以为服务器向第一终端设备发起的下行业务的。The service information may be information of a service to be executed by the first terminal device. The service to be executed by the first terminal device may be an uplink service actively initiated by the first terminal device, or a downlink service initiated by the server to the first terminal device.
业务信息可以包括业务的标识、业务的优先级、业务对服务质量的要求或业务的类型中的至少一种。当然,业务信息还可以包括业务的其他信息。The service information may include at least one of a service identifier, a service priority, a service's service quality requirement, or a service type. Of course, the business information may also include other business information.
第一终端设备的标识可以唯一标识第一终端设备。例如,第一终端设备的标识可以是基站为终端设备分配的,也可以为第一终端设备的硬件标识等。The identification of the first terminal device may uniquely identify the first terminal device. For example, the identifier of the first terminal device may be allocated by the base station to the terminal device, or may be a hardware identifier of the first terminal device.
若第一终端设备还连接至少一个第二终端设备,则第一信息中还可以包括每个第二终端设备的标识和/或第二终端设备的MAC地址。第一终端设备连接的第二终端设备可以为第一终端设备中继的第二终端设备。即,第一终端设备为第二终端设备的中继设备,第一终端设备可以接收第二终端设备发送的数据,并对第二终端设备发送的数据进行转发,或者,第一终端设备可以接收发送给第二终端设备的数据,并将发送给第二终端设备的数据转发给第二终端设备。If the first terminal device is also connected to at least one second terminal device, the first information may further include an identifier of each second terminal device and / or a MAC address of the second terminal device. The second terminal device connected to the first terminal device may be a second terminal device relayed by the first terminal device. That is, the first terminal device is a relay device of the second terminal device, the first terminal device may receive data sent by the second terminal device, and forward the data sent by the second terminal device, or the first terminal device may receive The data sent to the second terminal device, and the data sent to the second terminal device is forwarded to the second terminal device.
第一信息中还可以包括服务器的MAC地址。该服务器可以为唯一一个向第一终端设备提供非公共网络服务的设备。The first information may also include the MAC address of the server. The server may be the only device that provides non-public network services to the first terminal device.
第一信息中还可以包括至少一个对应关系,每个对应关系中包括一个服务器的标识和服务器的MAC地址。该服务器为可能向第一终端设备提供非公共网络服务的设备,或者,服务器为历史向第一终端设备提供非公共网络服务的设备。The first information may further include at least one correspondence relationship, and each correspondence relationship includes an identifier of the server and a MAC address of the server. The server may be a device that may provide non-public network services to the first terminal device, or the server may be a device that historically provides non-public network services to the first terminal device.
需要说明的是,第一信息还可以包括其它。例如,第一信息还可以包括第一终端设备 的优先级、第一终端设备对服务质量的要求等。It should be noted that the first information may also include other information. For example, the first information may also include the priority of the first terminal device, the service quality requirements of the first terminal device, and so on.
可选的,基站可以从第一终端设备接收第一信息中的所有内容,或者,基站可以从第一终端设备接收第一信息中的部分内容,并从服务器接收第一信息中的另一部分内容。Optionally, the base station may receive all the content in the first information from the first terminal device, or the base station may receive part of the content in the first information from the first terminal device and receive another part of the content in the first information from the server .
例如,在上行过程中,基站可以从第一终端设备获取第一信息中的所有内容。For example, during the uplink process, the base station may obtain all content in the first information from the first terminal device.
例如,在下行过程中,基站可以从第一终端设备获取第一信息中的第一终端设备的标识和/或第一终端设备的MAC地址,基站可以从服务器获取第一信息中的业务信息。For example, in the downlink process, the base station may obtain the first terminal device identifier and / or the first terminal device MAC address in the first information from the first terminal device, and the base station may obtain the service information in the first information from the server.
在实际应用过程中,第一终端设备可以通过第一消息向基站发送第一信息中的部分或全部内容。第一消息可以包括RRC连接请求消息、RRC连接完成消息、承载建立请求消息、注册请求消息中的至少一种。In an actual application process, the first terminal device may send part or all of the first information to the base station through the first message. The first message may include at least one of an RRC connection request message, an RRC connection completion message, a bearer establishment request message, and a registration request message.
例如,第一终端设备可以在向基站发送的注册请求消息中携带第一终端设备的标识和第一终端设备的MAC地址,第一终端设备可以在向基站发送的RRC连接请求消息或RRC连接完成消息中携带第一终端设备的标识和业务信息。或者,第一终端设备可以在向基站发送的RRC连接请求消息或RRC连接完成消息中携带业务信息、第一终端设备的标识和第一终端设备的MAC地址。For example, the first terminal device may carry the identifier of the first terminal device and the MAC address of the first terminal device in the registration request message sent to the base station, and the first terminal device may complete the RRC connection request message or RRC connection sent to the base station The message carries the identification and service information of the first terminal device. Alternatively, the first terminal device may carry the service information, the identifier of the first terminal device, and the MAC address of the first terminal device in the RRC connection request message or the RRC connection completion message sent to the base station.
S202、基站根据第一信息确定QoS规则。S202. The base station determines the QoS rule according to the first information.
基站可以内置QoS策略生成功能实体,QoS策略生成功能实体用于生成QoS策略,QoS策略可以是业务信息与QoS规则的对应关系。相应的,基站可以根据QoS策略和业务信息确定QoS规则。QoS规则是指业务需要满足的服务质量。可以理解的是,QoS规则也可以利用QoS Profile(QoS模板)或者QoS参数来表征,例如一条QoS规则里面包含多个QoS参数以及每个参数的取值或者取值范围;或者一条QoS规则对应一个或者多个QoS配置文件(Profile)。或者一条QoS规则对应一个或者多个包过滤器(Packet Filter Set)。另外基站可以根据QoS规则确定业务到QoS流的映射关系,可选的每个QoS规则包含一个对应的规则标识。QoS规则也可以包括包检测规则(Packet Detection Rule,PDR),转发规则(Forwarding Action Rule,FAR)或者QoS执行规则(QoS Execution Rule,QER),本申请对上述规则的命名不作具体限定。The base station may have a built-in QoS policy generating functional entity, and the QoS policy generating functional entity is used to generate a QoS policy. The QoS policy may be a correspondence between business information and QoS rules. Correspondingly, the base station can determine the QoS rules according to the QoS policy and service information. QoS rules refer to the quality of service that business needs to meet. It can be understood that QoS rules can also be characterized by QoS Profile (QoS profile) or QoS parameters, for example, a QoS rule contains multiple QoS parameters and the value or value range of each parameter; or one QoS rule corresponds to one Or multiple QoS profiles. Or one QoS rule corresponds to one or more packet filters (Packet Filter Set). In addition, the base station can determine the mapping relationship between the service and the QoS flow according to the QoS rules. Each optional QoS rule includes a corresponding rule identifier. QoS rules may also include packet detection rules (Packet Detection Rule, PDR), forwarding rules (Forwarding Action Rule, FAR), or QoS execution rules (QoS Execution Rule, QER). This application does not specifically limit the naming of the above rules.
S203、基站根据QoS规则建立基站与第一终端设备之间的承载。S203. The base station establishes a bearer between the base station and the first terminal device according to the QoS rule.
基站可以根据确定好的QoS规则生成RRC配置消息;或者根据QoS规则确定业务到QoS流的映射关系,然后根据QoS流的QoS需求生成RRC配置消息。RRC配置消息中包含各个协议层(SDAP/PDCP/RLC/MAC层)的配置信息和/或包含逻辑信道的配置信息,其中逻辑信道配置信息可以包含逻辑信道优先级、逻辑信道限制关系等配置。该RRC配置消息可以保证业务在该承载上传输过程中的QoS需求得到满足。The base station can generate the RRC configuration message according to the determined QoS rules; or determine the mapping relationship between the service and the QoS flow according to the QoS rules, and then generate the RRC configuration message according to the QoS requirements of the QoS flow. The RRC configuration message includes configuration information of each protocol layer (SDAP / PDCP / RLC / MAC layer) and / or configuration information of logical channels. The logical channel configuration information may include configurations such as logical channel priority and logical channel restriction relationships. The RRC configuration message can ensure that the QoS requirements of services transmitted on the bearer are met.
在基站与第一终端设备之间的承载建立完成之后,第一终端设备可以在承载上向服务器发送数据,或者在承载上接收服务器发送的数据。After the establishment of the bearer between the base station and the first terminal device is completed, the first terminal device may send data to the server on the bearer or receive data sent by the server on the bearer.
例如,第一终端设备可以在承载上向服务器发送上行数据,或者,第一终端设备可以在承载上接收服务器发送的下行数据。For example, the first terminal device may send uplink data to the server on the bearer, or the first terminal device may receive downlink data sent by the server on the bearer.
本申请提供的无线通信方法,基站可以获取第一信息,第一信息中包括业务信息、第一终端设备的标识、第一终端设备的MAC地址中的至少一种,基站可以根据第一信息确定QoS规则,并根据QoS规则建立基站与所述第一终端设备之间的承载,以使第一终端设备可以在该承载上发送上行数据或者接收下行数据。在上述过程中,由于基站可以获取 得到第一信息,使得基站可以根据第一信息确定QoS规则,无需核心网设备确定QoS规则,在终端设备与服务器通信过程中,减少了基站与核心网设备之间的交互次数,进而降低了终端设备与服务器之间的通信时延,并减少了消耗的通信资源。In the wireless communication method provided by the present application, the base station can obtain the first information, and the first information includes at least one of service information, the identification of the first terminal device, and the MAC address of the first terminal device, and the base station can determine the first information QoS rules, and establishes a bearer between the base station and the first terminal device according to the QoS rules, so that the first terminal device can send uplink data or receive downlink data on the bearer. In the above process, since the base station can obtain the first information, the base station can determine the QoS rules based on the first information without the core network device determining the QoS rules. During the communication between the terminal device and the server, the number of base stations and core network devices is reduced. The number of interactions between them further reduces the communication delay between the terminal device and the server, and reduces the communication resources consumed.
在上述任意一个实施例的基础上,可以由终端设备主动接入非公共网络,也可以由基站寻呼终端设备,以使终端设备接入非公共网络,下面,通过图3-图4所示的实施例,对终端设备接入非公共网络的两种方式进行详细说明。Based on any one of the above embodiments, the terminal device may actively access the non-public network, or the base station may page the terminal device to enable the terminal device to access the non-public network, as shown in FIGS. 3 to 4 below In the embodiment, two methods for terminal devices to access a non-public network will be described in detail.
图3为本申请提供的一种接入非公共网络方式的流程示意图。请参见图3,该方法可以包括:FIG. 3 is a schematic flowchart of a non-public network access method provided by this application. Please refer to FIG. 3, the method may include:
S301、基站向第一终端设备发送广播消息,广播消息中包括其支持的网络类型。S301. The base station sends a broadcast message to the first terminal device, where the broadcast message includes the network type it supports.
其中,网络类型包括公共网络类型和非公共网络类型。Among them, the network types include public network types and non-public network types.
基站可以通过至少如下两种可行的实现方式广播其支持的网络类型:The base station can broadcast the network types it supports through at least the following two feasible implementation methods:
一种可行的实现方式:所有的基站均广播其支持的网络类型。A feasible implementation method: all base stations broadcast the network types they support.
例如,可以通过“0”表示公共网络类型,通过“1”表示非公共网络类型。相应的,当基站广播“1”时,表示基站支持非公共网络类型。当基站广播“0”时,表示该基站仅支持公共网络类型。当基站广播“10”时,表示基站同时支持公共网络类型和非公共网络类型。For example, "0" indicates a public network type, and "1" indicates a non-public network type. Correspondingly, when the base station broadcasts "1", it means that the base station supports the non-public network type. When the base station broadcasts "0", it means that the base station only supports the public network type. When the base station broadcasts "10", it means that the base station supports both public network types and non-public network types.
另一种可行的实现方式:仅支持非公共网络的基站广播其支持的网络类型。Another possible implementation: only base stations that support non-public networks broadcast the types of networks they support.
在该种可行的实现方式中,若终端设备没有接收到一个基站广播的其支持的网络类型的消息,则终端设备可以确定该基站不支持非公共网络。In this feasible implementation manner, if the terminal device does not receive a message of a network type supported by a base station, the terminal device may determine that the base station does not support a non-public network.
例如,可以通过“0”表示基站仅支持非公共网络类型,通过“1”表示基站同时支持公共网络类型和非公共网络类型。相应的,当基站广播“0”时,表示基站仅支持非公共网络类型。当基站广播“1”时,表示基站同时支持公共网络类型和非公共网络类型。For example, "0" indicates that the base station supports only non-public network types, and "1" indicates that the base station supports both public and non-public network types. Correspondingly, when the base station broadcasts "0", it means that the base station only supports non-public network types. When the base station broadcasts "1", it means that the base station supports both public network types and non-public network types.
例如,基站可以广播第一指示信息和第二指示信息,第一指示信息用于指示该基站支持非公共网络,第二指示信息用于指示终端设备接入该基站。其中,所有的终端设备均可以识别第一指示信息,仅具有接入非公共网络功能的终端设备可以识别第二指示信息,因此,不具有接入非公共网络功能的终端设备不会接入该基站,具有接入非公共网络功能、且具有接入非公共网络需求的终端设备可以根据第二指示信息接入基站。For example, the base station may broadcast first indication information and second indication information. The first indication information is used to indicate that the base station supports a non-public network, and the second indication information is used to indicate that the terminal device accesses the base station. Among them, all terminal devices can recognize the first indication information, and only terminal devices with the function of accessing the non-public network can recognize the second indication information. Therefore, terminal devices without the function of accessing the non-public network will not access the A base station, a terminal device having a function of accessing a non-public network and having a requirement of accessing a non-public network can access the base station according to the second indication information.
S302、在第一终端设备确定基站支持非公共网络、且第一终端设备需要接入非公共网络时,第一终端设备向基站发送RRC连接请求消息,RRC连接请求消息包括第一信息。S302. When the first terminal device determines that the base station supports a non-public network and the first terminal device needs to access the non-public network, the first terminal device sends an RRC connection request message to the base station, and the RRC connection request message includes the first information.
其中,第一信息包括业务信息、第一终端设备的标识、第一终端设备的MAC地址中的至少一种。The first information includes at least one of service information, an identifier of the first terminal device, and a MAC address of the first terminal device.
若第一终端设备还连接至少一个第二终端设备,则第一信息中还可以包括每个第二终端设备的标识和/或第二终端设备的MAC地址。If the first terminal device is also connected to at least one second terminal device, the first information may further include an identifier of each second terminal device and / or a MAC address of the second terminal device.
需要说明的是,S302中的第一信息可以参见S201中的第一信息,此处不再进行赘述。It should be noted that, for the first information in S302, reference may be made to the first information in S201, and details are not repeated here.
例如,第一信息可以如表1所示:For example, the first information may be as shown in Table 1:
表1Table 1
Figure PCTCN2019110274-appb-000001
Figure PCTCN2019110274-appb-000001
由表1可知,终端设备2、终端设备3和终端设备4为终端设备1连接的设备,即,终端设备1为终端设备2、终端设备3和终端设备4的中继设备。It can be seen from Table 1 that terminal device 2, terminal device 3, and terminal device 4 are devices connected to terminal device 1, that is, terminal device 1 is a relay device of terminal device 2, terminal device 3, and terminal device 4.
S303、基站存储第一信息。S303. The base station stores the first information.
例如,基站可以存储表1所示的第一信息。For example, the base station may store the first information shown in Table 1.
S304、基站向第一终端设备发送RRC连接响应消息。S304. The base station sends an RRC connection response message to the first terminal device.
S305、第一终端设备向基站发送RRC连接完成消息。S305. The first terminal device sends an RRC connection complete message to the base station.
需要说明的是,还可以在RRC连接完成消息中携带第一信息。It should be noted that the first information may also be carried in the RRC connection completion message.
例如,可以仅在RRC连接请求消息中携带第一消息,RRC连接完成消息中不携带第一信息。或者,可以仅在RRC连接完成消息中携带第一消息,RRC连接请求消息中不携带第一信息。或者,可以在RRC连接请求消息中携带第一消息中的一部分内容,在RRC连接完成消息中携带第一消息中的另一部分内容。For example, only the first message may be carried in the RRC connection request message, and the first information may not be carried in the RRC connection completion message. Or, the RRC connection completion message may only carry the first message, and the RRC connection request message may not carry the first information. Alternatively, a part of the content in the first message may be carried in the RRC connection request message, and another part of the content in the first message may be carried in the RRC connection completion message.
还需要说明的是,第一终端设备还可以在注册请求消息中携带第一终端设备的标识和/或第一终端设备的MAC地址,It should also be noted that the first terminal device may also carry the identifier of the first terminal device and / or the MAC address of the first terminal device in the registration request message,
S306、第一终端设备和基站执行鉴权和加密流程。S306. The first terminal device and the base station perform authentication and encryption processes.
需要说明的是,第一终端设备和基站执行鉴权和加密流程可以参见现有技术中的鉴权和加密流程,此处不再进行重复说明。It should be noted that the authentication and encryption processes performed by the first terminal device and the base station may refer to the authentication and encryption processes in the prior art, and will not be repeated here.
S307、基站根据第一信息,确定QoS规则。S307. The base station determines QoS rules based on the first information.
S308、基站根据QoS规则,建立基站与第一终端设备之间的承载。S308. The base station establishes a bearer between the base station and the first terminal device according to the QoS rules.
需要说明的是,在S308之后,基站和第一终端设备可以通过该承载发送和/或接收数据。It should be noted that after S308, the base station and the first terminal device may send and / or receive data through the bearer.
在图3所示的实施例中,当第一终端设备需要接入非公共网络时,例如,当第一终端设备需要通过非公共网络进行上行业务时,第一终端设备根据基站广播的消息(基站支持的网络类型)主动接入基站(或非公共网络)。在上述过程中,由于第一终端设备可以向基站发送第一信息,使得基站可以根据第一信息确定QoS规则,无需核心网设备确定QoS规则,在终端设备与服务器通信过程中,减少了基站与核心网设备之间的交互次数,进而降低了终端设备与服务器之间的通信时延,并减少了消耗的通信资源。In the embodiment shown in FIG. 3, when the first terminal device needs to access a non-public network, for example, when the first terminal device needs to perform an uplink service through the non-public network, the first terminal device according to the message broadcast by the base station ( The type of network supported by the base station) actively accesses the base station (or non-public network). In the above process, since the first terminal device can send the first information to the base station, the base station can determine the QoS rule based on the first information without the core network device determining the QoS rule. The number of interactions between core network devices further reduces the communication delay between the terminal device and the server, and reduces the communication resources consumed.
图4为本申请提供的另一种接入非公共网络方式的流程示意图。请参见图4,该方法可以包括:FIG. 4 is a schematic flowchart of another method for accessing a non-public network provided by this application. Please refer to FIG. 4, the method may include:
S401、在第一终端设备开机注册过程中,第一终端设备向基站发送注册请求消息。S401. During the startup registration process of the first terminal device, the first terminal device sends a registration request message to the base station.
其中,注册请求消息中包括第一终端设备的标识和第一终端设备的MAC地址。The registration request message includes the identifier of the first terminal device and the MAC address of the first terminal device.
若第一终端设备还连接至少一个第二终端设备,则注册请求消息中还可以包括每个第二终端设备的标识和/或第二终端设备的MAC地址,以及第一终端设备和第二终端设备的对应关系。第一终端设备和第二终端设备的对应关系可以通过第一终端设备的标识和/或MAC地址,与第二终端设备的标识和/或MAC地址的对应关系标识。If the first terminal device is also connected to at least one second terminal device, the registration request message may further include the identifier of each second terminal device and / or the MAC address of the second terminal device, as well as the first terminal device and the second terminal Correspondence of equipment. The correspondence between the first terminal device and the second terminal device may be identified by the correspondence relationship between the identifier and / or MAC address of the first terminal device and the identifier and / or MAC address of the second terminal device.
需要说明的是,第一终端设备和第二终端设备的关系可以参见S201,此处不再进行赘述。It should be noted that, for the relationship between the first terminal device and the second terminal device, reference may be made to S201, and details are not repeated here.
S402、当服务器需要通过非公共网络发送下行数据时,服务器向基站发送指示信息。S402. When the server needs to send downlink data through a non-public network, the server sends instruction information to the base station.
其中,指示信息用于指示服务器中存在要发送的下行数据,指示信息还可以包括业务信息、终端设备的标识或终端设备的MAC地址中的至少一种。该终端设备可以为第一终端设备,也可以为第二终端设备。The instruction information is used to indicate that there is downlink data to be sent in the server, and the instruction information may further include at least one of service information, an identifier of the terminal device, or a MAC address of the terminal device. The terminal device may be the first terminal device or the second terminal device.
需要说明的是,基站可以对第一终端设备进行寻呼,基站无法对第二终端设备进行寻呼。例如,第一终端设备在基站中进行过注册,第二终端设备未在基站中进行过注册。It should be noted that the base station can page the first terminal device, and the base station cannot page the second terminal device. For example, the first terminal device has been registered in the base station, and the second terminal device has not been registered in the base station.
指示信息可以携带在专用的数据包或者信令中,也可以携带在下行数据的包头中。The indication information may be carried in a dedicated data packet or signaling, or in the header of downlink data.
S403、基站根据指示信息,向第一终端设备发送寻呼消息。S403. The base station sends a paging message to the first terminal device according to the instruction information.
可选的,在基站接收到指示信息之后,基站可以判断指示信息中是否包括第一终端设备的标识和/或MAC地址,若是,则基站根据第一终端设备的标识和/或MAC地址,向第一终端设备发送寻呼消息。若否,则确定指示信息中包括的为第二终端设备的标识和/或MAC地址,则基站根据第二终端设备和第一终端设备的对应关系,以及第二终端设备的标识和/或MAC地址,确定第一终端设备的标识和/或MAC地址时,并根据第一终端设备的标识和/或MAC地址,向第一终端设备发送寻呼消息。Optionally, after the base station receives the indication information, the base station may determine whether the indication information includes the identifier and / or MAC address of the first terminal device. If so, the base station may The first terminal device sends a paging message. If not, it is determined that the indication information includes the identifier and / or MAC address of the second terminal device, and the base station determines the second terminal device and the first terminal device according to the correspondence between the second terminal device and the first terminal device. Address, when determining the identification and / or MAC address of the first terminal device, and according to the identification and / or MAC address of the first terminal device, sending a paging message to the first terminal device.
需要说明的是,第一终端设备为可以被寻呼的终端设备,第二终端设备为无法被寻呼的终端设备。It should be noted that the first terminal device is a terminal device that can be paged, and the second terminal device is a terminal device that cannot be paged.
可选的,基站可以判断指示信息中包括的终端设备的标识和/或MAC地址是否被注册过,若是,则确定指示信息中包括的是第一终端设备的标识和/或MAC地址,若否,则确定指示信息中包括的是第二终端设备的标识和/或MAC地址。Optionally, the base station may determine whether the identifier and / or MAC address of the terminal device included in the indication information is registered, and if so, determine that the indication information and / or MAC address of the first terminal device are included in the indication information, if not , It is determined that the indication information includes the identifier and / or MAC address of the second terminal device.
需要说明的是,第二终端设备和第一终端设备的对应关系为第一终端设备在开机注册时向基站发送的。It should be noted that the corresponding relationship between the second terminal device and the first terminal device is sent by the first terminal device to the base station during the start-up registration.
S404、第一终端设备根据寻呼消息向基站发送RRC连接请求消息。S404. The first terminal device sends an RRC connection request message to the base station according to the paging message.
S405、基站向第一终端设备发送RRC连接响应消息。S405. The base station sends an RRC connection response message to the first terminal device.
S406、第一终端设备向基站发送RRC连接完成消息。S406. The first terminal device sends an RRC connection complete message to the base station.
S407、第一终端设备和基站执行鉴权和加密流程。S407. The first terminal device and the base station perform authentication and encryption processes.
需要说明的是,第一终端设备和基站执行鉴权和加密流程可以参见现有技术中的鉴权和加密流程,此处不再进行重复说明。It should be noted that the authentication and encryption processes performed by the first terminal device and the base station may refer to the authentication and encryption processes in the prior art, and will not be repeated here.
S408、基站根据第一信息,确定QoS规则。S408. The base station determines QoS rules based on the first information.
可选的,基站根据注册请求消息和指示信息,确定第一信息。Optionally, the base station determines the first information according to the registration request message and the indication information.
其中,第一信息包括业务信息、第一终端设备的标识、第一终端设备的MAC地址中的至少一种。The first information includes at least one of service information, an identifier of the first terminal device, and a MAC address of the first terminal device.
若第一终端设备还连接至少一个第二终端设备,则第一信息中还可以包括每个第二终端设备的标识和/或第二终端设备的MAC地址。If the first terminal device is also connected to at least one second terminal device, the first information may further include an identifier of each second terminal device and / or a MAC address of the second terminal device.
S409、基站根据QoS规则,建立基站与第一终端设备之间的承载。S409. The base station establishes a bearer between the base station and the first terminal device according to the QoS rule.
需要说明的是,在S307之后,基站和第一终端设备可以通过该承载发送和/或接收数据。It should be noted that after S307, the base station and the first terminal device may send and / or receive data through the bearer.
在图4所示的实施例中,当服务器需要通过非公共网络进行下行业务时,服务器向基站发送指示信息,以使基站寻呼第一终端设备,进而使得第一终端设备接入基站(或者非公共网络)。在上述过程中,由于第一终端设备可以向基站发送第一信息,使得基站可以根据第一信息确定QoS规则,无需核心网设备确定QoS规则,在终端设备与服务器通信过程中,减少了基站与核心网设备之间的交互次数,进而降低了终端设备与服务器之间的通信时延,并减少了消耗的通信资源。In the embodiment shown in FIG. 4, when the server needs to perform a downlink service through a non-public network, the server sends indication information to the base station to enable the base station to page the first terminal device, thereby enabling the first terminal device to access the base station (or Non-public network). In the above process, since the first terminal device can send the first information to the base station, the base station can determine the QoS rule based on the first information without the core network device determining the QoS rule. During the communication between the terminal device and the server, the The number of interactions between core network devices further reduces the communication delay between the terminal device and the server, and reduces the communication resources consumed.
下面,通过图5-图8所示的实施例,对上行业务过程、以及下行业务过程进行详细说明。需要说明的是,图5-图8实施例所示的方法可以在上述实施例的基础上执行,也可以为单独执行,即,在图5-图8实施例之前建立的承载可以为根据上述实施例的方法建立的,也可以为根据其它方式建立的。换句话说,在图5-图8所示的实施例之前,相应的QoS策略可以为基站建立的,也可以为核心网设备建立的。The following describes the uplink service process and the downlink service process in detail through the embodiments shown in FIGS. 5-8. It should be noted that the method shown in the embodiments of FIGS. 5 to 8 may be performed on the basis of the above embodiments, or may be performed separately, that is, the bearer established before the embodiments of FIGS. 5 to 8 may be based on the above The method established in the embodiment may also be established according to other methods. In other words, before the embodiments shown in FIGS. 5-8, the corresponding QoS policy may be established for the base station or for the core network device.
图5为本申请提供的一种上行业务过程的流程示意图。请参见图5,该方法可以包括:FIG. 5 is a schematic flowchart of an uplink service process provided by this application. Please refer to FIG. 5, the method may include:
S501、第一终端设备向基站发送第一数据发送请求。S501. The first terminal device sends a first data transmission request to the base station.
其中,第一数据发送请求中包括第一终端设备待向服务器发送的第一数据。The first data sending request includes the first data to be sent by the first terminal device to the server.
可选的,第一数据发送请求还可以包括服务器的MAC地址、服务器的标识中的至少一种。Optionally, the first data sending request may further include at least one of a MAC address of the server and an identifier of the server.
第一数据发送请求可以为以太网数据包。The first data transmission request may be an Ethernet data packet.
S502、基站确定服务器的MAC地址。S502. The base station determines the MAC address of the server.
其中,服务器为第一终端设备发送的第一数据的目标设备。The server is a target device of the first data sent by the first terminal device.
可选的,基站可以通过至少如下三种可行的实现方式确定服务器的MAC地址:Optionally, the base station may determine the MAC address of the server through at least the following three feasible implementation methods:
一种可行的实现方式:A feasible implementation method:
第一数据发送请求中包括服务器的MAC地址。相应的,基站可以在第一数据发送请求中获取服务器的MAC地址。The first data transmission request includes the MAC address of the server. Correspondingly, the base station can obtain the MAC address of the server in the first data sending request.
另一种可行的实现方式:Another feasible implementation method:
第一数据发送请求包括服务器的标识,第一信息中包括服务器的标识和服务器的MAC地址的对应关系。相应的,基站可以根据第一数据发送请求中服务器的标识和该对应关系,确定服务器的MAC地址。The first data sending request includes a server identification, and the first information includes a correspondence between the server identification and the server's MAC address. Correspondingly, the base station may determine the MAC address of the server according to the identifier of the server and the corresponding relationship in the first data transmission request.
其中,第一信息为第一终端设备在图5所示的实施例之前向基站发送的。The first information is sent by the first terminal device to the base station before the embodiment shown in FIG. 5.
再一种可行的实现方式:Another feasible implementation method:
第一信息中包括服务器的MAC地址。相应的,基站可以在第一信息中获取服务器的MAC地址。The first information includes the MAC address of the server. Correspondingly, the base station can obtain the MAC address of the server in the first information.
在该种可行的实现方式中,服务器为唯一一个向第一终端设备提供非公共网络服务器的设备。In this feasible implementation manner, the server is the only device that provides a non-public network server to the first terminal device.
S503、基站根据服务器的MAC地址,向服务器发送第一数据。S503. The base station sends the first data to the server according to the MAC address of the server.
在图5所示的实施例中,由于基站的适配层具有处理(解析、转发等)以太网数据包的功能,因此,第一终端设备向服务器发送的以太网格式的上行数据可以由基站转发,即, 第一终端设备向服务器发送的上行数据无需由核心网设备转发,减少了基站和核心网之间的数据交互过程,进而降低了第一终端设备向服务器发送上行数据的时延,并减少了消耗的通信资源。In the embodiment shown in FIG. 5, since the adaptation layer of the base station has the function of processing (analyzing, forwarding, etc.) Ethernet data packets, the uplink data in the Ethernet format sent by the first terminal device to the server can be transmitted by the base station Forwarding, that is, the uplink data sent by the first terminal device to the server does not need to be forwarded by the core network device, which reduces the data interaction process between the base station and the core network, thereby reducing the delay of the first terminal device sending uplink data to the server, And reduce the communication resources consumed.
图6为本申请提供的另一种上行业务过程的流程示意图。请参见图6,该方法可以包括:6 is a schematic flowchart of another uplink service process provided by this application. Please refer to FIG. 6, the method may include:
S601、第二终端设备向第一终端设备发送第三数据发送请求。S601. The second terminal device sends a third data transmission request to the first terminal device.
其中,第三数据发送请求包括第二终端设备待向服务器发送的第一数据。The third data sending request includes the first data to be sent by the second terminal device to the server.
可选的,第三数据发送请求还可以包括服务器的MAC地址、服务器的标识中的至少一种。Optionally, the third data sending request may further include at least one of the MAC address of the server and the identifier of the server.
第三数据发送请求可以为以太网数据包。The third data transmission request may be an Ethernet data packet.
S602、第一终端设备向基站发送第一数据发送请求。S602. The first terminal device sends a first data transmission request to the base station.
第一数据发送请求可以为以太网数据包。The first data transmission request may be an Ethernet data packet.
其中,第一数据发送请求中包括第二终端设备待向服务器发送的第一数据。The first data sending request includes the first data to be sent by the second terminal device to the server.
可选的,第一数据发送请求中还可以包括服务器的MAC地址、服务器的标识中的至少一种。Optionally, the first data sending request may further include at least one of a MAC address of the server and an identifier of the server.
S603、基站确定服务器的MAC地址。S603. The base station determines the MAC address of the server.
需要说明的是,S603的执行过程可以参见S502的执行过程,此处不再进行赘述。It should be noted that, the execution process of S603 may refer to the execution process of S502, and will not be repeated here.
S604、基站根据服务器的MAC地址,向服务器发送第一数据。S604. The base station sends the first data to the server according to the MAC address of the server.
在图6所示的实施例中,当第一终端设备为第二终端设备的中继设备时,由于第一终端设备的适配层具有处理(解析、转发等)以太网数据包的功能,因此,第一终端设备可以转发第二终端设备发送的以太网格式的上行数据。进一步的,由于基站的适配层具有处理(解析、转发等)以太网数据包的功能,因此第二终端设备发送的以太网格式的上行数据可以由基站转发给服务器,无需核心网设备进行转发,减少了基站和核心网之间的数据交互过程,进而降低了第二终端设备向服务器发送上行数据的时延,并减少了消耗的通信资源。In the embodiment shown in FIG. 6, when the first terminal device is a relay device of the second terminal device, since the adaptation layer of the first terminal device has the function of processing (resolving, forwarding, etc.) the Ethernet data packet, Therefore, the first terminal device may forward the uplink data in the Ethernet format sent by the second terminal device. Further, because the adaptation layer of the base station has the function of processing (analyzing, forwarding, etc.) the Ethernet data packet, the uplink data in the Ethernet format sent by the second terminal device can be forwarded by the base station to the server without the core network device forwarding , Reducing the data interaction process between the base station and the core network, thereby reducing the time delay for the second terminal device to send uplink data to the server, and reducing the communication resources consumed.
图7为本申请提供的一种下行业务过程的流程示意图。请参见图7,该方法可以包括:7 is a schematic flowchart of a downlink service process provided by this application. Please refer to FIG. 7, the method may include:
S701、服务器向基站发送第二数据发送请求。S701. The server sends a second data transmission request to the base station.
其中,第二数据发送请求中包括服务器待向第一终端设备发送的第二数据。The second data sending request includes the second data to be sent by the server to the first terminal device.
第二数据发送请求可以为以太网数据包。The second data transmission request may be an Ethernet data packet.
S702、基站确定第一终端设备的MAC地址。S702. The base station determines the MAC address of the first terminal device.
可选的,基站可以通过至少如下两种可行的实现方式确定第一终端设备的MAC地址:Optionally, the base station may determine the MAC address of the first terminal device in at least the following two feasible implementation manners:
一种可行的实现方式:A feasible implementation method:
第二数据发送请求中包括第一终端设备的MAC地址。相应的,基站可以在第二数据发送请求中获取第一终端设备的MAC地址。The second data transmission request includes the MAC address of the first terminal device. Correspondingly, the base station can acquire the MAC address of the first terminal device in the second data transmission request.
另一种可行的实现方式:Another feasible implementation method:
第二数据发送请求中包括第一终端设备的标识,第一信息中包括第一终端设备的标识和第一终端设备的MAC地址的对应关系。相应的,基站可以根据第一终端设备的标识和该对应关系确定第一终端设备的MAC地址。The second data transmission request includes the identifier of the first terminal device, and the first information includes the correspondence between the identifier of the first terminal device and the MAC address of the first terminal device. Correspondingly, the base station may determine the MAC address of the first terminal device according to the identifier of the first terminal device and the corresponding relationship.
其中,第一信息为第一终端设备在图7所示的实施例之前向基站发送的。The first information is sent by the first terminal device to the base station before the embodiment shown in FIG. 7.
S703、基站根据第一终端设备的MAC地址,向第一终端设备发送第二数据。S703. The base station sends second data to the first terminal device according to the MAC address of the first terminal device.
在图7所示的实施例中,服务器向第一终端设备发送下行数据时,由于基站的适配层具有处理(解析、转发等)以太网数据包的功能,因此,服务器可以直接向基站发送以太网数据包格式的下行数据,并由基站转发下行数据,无需经过核心网的中转,减少了基站和核心网设备之间的数据交互过程,进而降低了服务器向第一终端设备发送下行数据的时延,并减少了消耗的通信资源。In the embodiment shown in FIG. 7, when the server sends downlink data to the first terminal device, since the adaptation layer of the base station has the function of processing (analyzing, forwarding, etc.) Ethernet data packets, the server can directly send the data to the base station The downlink data in the form of Ethernet data packets, and the downlink data is forwarded by the base station without going through the core network, which reduces the data interaction process between the base station and the core network equipment, thereby reducing the server to send downlink data to the first terminal device Delay and reduce the consumption of communication resources.
图8为本申请提供的另一种下行业务过程的流程示意图。请参见图8,该方法可以包括:FIG. 8 is a schematic flowchart of another downlink service process provided by this application. Please refer to FIG. 8, the method may include:
S801、服务器向基站发送第二数据发送请求。S801. The server sends a second data transmission request to the base station.
其中,第二数据发送请求中包括服务器待向第二终端设备发送的第二数据。The second data sending request includes the second data to be sent by the server to the second terminal device.
第二数据发送请求中还可以包括第二终端设备的标识和/或第二终端设备的MAC地址。The second data transmission request may further include the identifier of the second terminal device and / or the MAC address of the second terminal device.
第二数据发送请求可以为以太网数据包。The second data transmission request may be an Ethernet data packet.
S802、基站根据第二终端设备的标识和/或第二终端设备的MAC地址,确定第一终端设备的MAC地址。S802. The base station determines the MAC address of the first terminal device according to the identifier of the second terminal device and / or the MAC address of the second terminal device.
第一信息中包括第一终端设备的MAC地址与第二终端设备的标识的对应关系,或者第一终端设备的MAC地址与第二终端设备的MAC地址的对应关系。相应的,基站可以根据第二终端设备的标识和/或第二终端设备的MAC地址,与上述对应关系,确定第一终端设备的MAC地址。The first information includes the correspondence between the MAC address of the first terminal device and the identifier of the second terminal device, or the correspondence between the MAC address of the first terminal device and the MAC address of the second terminal device. Correspondingly, the base station may determine the MAC address of the first terminal device according to the identifier of the second terminal device and / or the MAC address of the second terminal device and the above corresponding relationship.
S803、基站根据第一终端设备的MAC地址,向第一终端设备发送第二数据,以及第二终端设备的标识和/或第二终端设备的MAC地址。S803. The base station sends second data to the first terminal device according to the MAC address of the first terminal device, and the identifier of the second terminal device and / or the MAC address of the second terminal device.
S804、第一终端设备根据第二终端设备的标识和/或第二终端设备的MAC地址,向第二终端设备发送第二数据。S804. The first terminal device sends second data to the second terminal device according to the identifier of the second terminal device and / or the MAC address of the second terminal device.
在图8所示的实施例中,服务器向第二终端设备发送下行数据时,由于基站和第一通信设备的适配层具有处理(解析、转发等)以太网数据包的功能,因此,服务器可以直接向基站发送以太网数据包格式的下行数据,并由基站和第一终端设备向第二终端设备转发下行数据,无需经过核心网的中转,减少了基站和核心网设备之间数据交互过程,进而降低了服务器向第二终端设备发送下行数据的时延,并减少了消耗的通信资源。In the embodiment shown in FIG. 8, when the server sends downlink data to the second terminal device, since the adaptation layer of the base station and the first communication device has the function of processing (analyzing, forwarding, etc.) the Ethernet data packet, the server The downlink data in the form of Ethernet data packets can be directly sent to the base station, and the base station and the first terminal device forward the downlink data to the second terminal device without going through the core network relay, reducing the data interaction process between the base station and the core network device , Thereby reducing the delay of the server sending downlink data to the second terminal device, and reducing the communication resources consumed.
需要说明的是,图2-图4所示的任意一个实施例,与图5-图8所示的任意一个实施例可以相互结合,也可以单独存在。It should be noted that any one of the embodiments shown in FIGS. 2 to 4 and any one of the embodiments shown in FIGS. 5 to 8 may be combined with each other, or may exist alone.
上文描述了本申请提供的通信方法,下文将描述本申请提供的接入网设备和通信设备。The communication method provided by the present application is described above, and the access network device and the communication device provided by the present application will be described below.
图9为本申请提供的接入网设备的一种示意性框图。请参见图9,接入网设备10包括:9 is a schematic block diagram of an access network device provided by this application. Referring to FIG. 9, the access network device 10 includes:
收发模块11,用于接收第一信息,所述第一信息包括业务信息、第一通信设备的标识、所述第一通信设备的媒体访问控制MAC地址中的至少一种;The transceiver module 11 is configured to receive first information, where the first information includes at least one of service information, an identification of the first communication device, and a media access control MAC address of the first communication device;
处理模块12,用于根据所述第一信息确定服务质量QoS规则,并根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载。The processing module 12 is configured to determine a quality of service QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule.
在本申请中,接入网设备可以获取第一信息,第一信息中包括业务信息、第一通信设备的标识、第一通信设备的MAC地址中的至少一种,接入网设备可以根据第一信息确定QoS规则,并根据QoS规则建立基站与所述第一通信设备之间的承载,以使第一通信设备可以在该承载上发送上行数据或者接收下行数据。在上述过程中,由于接入网设备可以获 取得到第一信息,使得接入网设备可以根据第一信息确定QoS规则,无需核心网设备确定QoS规则,在通信设备与服务器通信过程中,减少了接入网设备与核心网设备之间的交互次数,进而降低了通信设备与服务器之间的通信时延,并减少了消耗的通信资源。In this application, the access network device may acquire the first information, where the first information includes at least one of service information, the identification of the first communication device, and the MAC address of the first communication device. The access network device may A piece of information determines a QoS rule, and establishes a bearer between the base station and the first communication device according to the QoS rule, so that the first communication device can send uplink data or receive downlink data on the bearer. In the above process, since the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule. During the communication between the communication device and the server, the The number of interactions between the access network device and the core network device, thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
可选的,作为一个实施例,所述收发模块11还用于,在所述处理模块根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载之后,接收所述第一通信设备发送的第一数据发送请求,所述第一数据发送请求包括待向服务器发送的第一数据;Optionally, as an embodiment, the transceiver module 11 is further configured to, after the processing module establishes a bearer between the access network device and the first communication device according to the QoS rule, receive The first data sending request sent by the first communication device, where the first data sending request includes the first data to be sent to the server;
所述处理模块12还用于,获取所述服务器的MAC地址,并根据所述服务器的MAC地址,向所述服务器发送所述第一数据。The processing module 12 is further configured to obtain the MAC address of the server, and send the first data to the server according to the MAC address of the server.
可选的,作为一个实施例,所述第一数据发送请求中包括所述服务器的MAC地址;所述处理模块12用于获取所述服务器的MAC地址,包括:Optionally, as an embodiment, the first data sending request includes the MAC address of the server; the processing module 12 is used to obtain the MAC address of the server, including:
所述处理模块12用于,在所述第一数据发送请求中获取所述服务器的MAC地址。The processing module 12 is configured to obtain the MAC address of the server in the first data sending request.
可选的,作为一个实施例,所述第一数据发送请求中包括所述服务器的标识,所述第一信息中包括所述服务器的标识和所述服务器的MAC地址的对应关系;所述处理模块12用于获取所述服务器的MAC地址,包括:Optionally, as an embodiment, the first data sending request includes the identifier of the server, and the first information includes the correspondence between the identifier of the server and the MAC address of the server; the processing The module 12 is used to obtain the MAC address of the server, including:
所述处理模块12用于,根据所述服务器的标识和所述对应关系,获取所述服务器的MAC地址。The processing module 12 is configured to obtain the MAC address of the server according to the identifier of the server and the corresponding relationship.
可选的,作为一个实施例,所述第一信息中还包括所述服务器的MAC地址;所述处理模块12用于获取所述服务器的MAC地址,包括:Optionally, as an embodiment, the first information further includes the MAC address of the server; the processing module 12 is used to obtain the MAC address of the server, including:
所述处理模块12用于,在所述第一信息中获取所述服务器的MAC地址。The processing module 12 is configured to obtain the MAC address of the server in the first information.
可选的,作为一个实施例,所述第一信息还包括所述第一通信设备连接的至少一个第二通信设备的标识和/或所述第二通信设备的MAC地址。Optionally, as an embodiment, the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
可选的,作为一个实施例,所述收发模块11具体还用于,在所述处理模块12根据所述QoS规则建立所述接入网设备与所述通信设备之间的承载之后,接收服务器发送的第二数据发送请求,所述第二数据发送请求包括第二数据,以及所述第二通信设备的标识和/或所述第二通信设备的MAC地址;Optionally, as an embodiment, the transceiver module 11 is further specifically configured to receive the server after the processing module 12 establishes a bearer between the access network device and the communication device according to the QoS rule A second data transmission request sent, where the second data transmission request includes second data, and an identifier of the second communication device and / or a MAC address of the second communication device;
所述收发模块11还用于,在确定所述第二通信设备与所述第一通信设备连接时,通过所述承载向所述第一通信设备发送所述第二数据,以及所述第二通信设备的标识和/或所述第二通信设备的MAC地址,用于使得所述第一通信设备根据所述第二通信设备的标识和/或所述第二通信设备的MAC地址,向所述第二通信设备发送所述第二数据。The transceiver module 11 is further configured to, when determining that the second communication device is connected to the first communication device, send the second data and the second data to the first communication device through the bearer The identification of the communication device and / or the MAC address of the second communication device is used to enable the first communication device to send a message to the user according to the identification of the second communication device and / or the MAC address of the second communication device The second communication device sends the second data.
可选的,作为一个实施例,所述收发模块11还用于,在所述处理模块12根据所述第一信息确定服务质量QoS规则之前,接收服务器发送的指示信息,所述指示信息包括所述第一通信设备的标识和/或所述第一通信设备的MAC地址;Optionally, as an embodiment, the transceiver module 11 is further configured to receive indication information sent by the server before the processing module 12 determines the quality of service QoS rule according to the first information, the indication information includes all The identification of the first communication device and / or the MAC address of the first communication device;
所述处理模块11还用于,根据所述第一通信设备的标识和/或所述第一通信设备的MAC地址,寻呼所述第一通信设备。The processing module 11 is further configured to page the first communication device according to the identification of the first communication device and / or the MAC address of the first communication device.
可选的,作为一个实施例,所述收发模块11还用于,发送广播消息,所述广播消息中包括所述接入网设备支持的网络类型,所述网络类型包括公共网络类型或非公共网络类型中的至少一种。Optionally, as an embodiment, the transceiver module 11 is further configured to send a broadcast message, where the broadcast message includes a network type supported by the access network device, and the network type includes a public network type or a non-public At least one of the network types.
应理解,本发明实施例中的收发模块11可以由收发器或收发器相关电路组件实现,处理模块12可以由处理器或处理器相关电路组件实现。It should be understood that the transceiver module 11 in the embodiment of the present invention may be implemented by a transceiver or a related circuit component of the transceiver, and the processing module 12 may be implemented by a processor or a related circuit component of the processor.
图10为本申请提供的接入网设备的一种示意性框图。请参见图10,该接入网设备20包括处理器21,存储器22与收发器23,其中,存储器22中存储指令或程序,处理器21用于执行存储器22中存储的指令或程序。存储器22中存储的指令或程序被执行时,该处理器21用于执行上述实施例中处理模块12执行的操作,收发器23用于执行上述实施例中收发模块11执行的操作。FIG. 10 is a schematic block diagram of an access network device provided by this application. Referring to FIG. 10, the access network device 20 includes a processor 21, a memory 22, and a transceiver 23, where the memory 22 stores instructions or programs, and the processor 21 is used to execute the instructions or programs stored in the memory 22. When the instruction or program stored in the memory 22 is executed, the processor 21 is used to perform the operation performed by the processing module 12 in the foregoing embodiment, and the transceiver 23 is used to perform the operation performed by the transceiver module 11 in the foregoing embodiment.
应理解,根据本申请实施例的接入网设备10或接入网设备20可对应于本申请实施例的通信方法中的接入网设备(例如基站),并且接入网设备10或接入网设备20中的各个模块的操作和/或功能分别为了实现图2至图8中的各个方法的相应流程,为了简洁,在此不再赘述。It should be understood that the access network device 10 or the access network device 20 according to an embodiment of the present application may correspond to the access network device (eg, base station) in the communication method of the embodiment of the present application, and the access network device 10 or the access The operations and / or functions of the various modules in the network device 20 are respectively for implementing the corresponding processes of the methods in FIGS. 2 to 8, and for the sake of brevity, they will not be repeated here.
图11为本申请提供的通信设备的一种示意性框图。请参见图11,该通信设备30包括:FIG. 11 is a schematic block diagram of a communication device provided by this application. Referring to FIG. 11, the communication device 30 includes:
收发模块31,用于向接入网设备发送第一信息,所述第一信息包括业务信息、第一通信设备的标识、所述第一通信设备的媒体访问控制MAC地址中的至少一种,所述第一信息用于指示所述接入网设备根据所述第一信息确定QoS规则,并根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载;The transceiver module 31 is configured to send first information to an access network device, where the first information includes at least one of service information, an identifier of the first communication device, and a media access control MAC address of the first communication device, The first information is used to instruct the access network device to determine a QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule;
所述收发模块31还用于,所述第一通信设备在所述承载上发送和/或接收数据。The transceiver module 31 is also used for the first communication device to send and / or receive data on the bearer.
该通信设备30还可以包括处理模块32,处理模块32可以在收发模块31向接入网设备发送第一信息之前确定第一信息。The communication device 30 may further include a processing module 32, and the processing module 32 may determine the first information before the transceiver module 31 sends the first information to the access network device.
在本申请中,第一通信设备可以向接入网设备发送第一信息,第一信息中包括业务信息、第一通信设备的标识、第一通信设备的MAC地址中的至少一种,接入网设备可以根据第一信息确定QoS规则,并根据QoS规则建立基站与所述第一通信设备之间的承载,以使第一通信设备可以在该承载上发送上行数据或者接收下行数据。在上述过程中,由于接入网设备可以获取得到第一信息,使得接入网设备可以根据第一信息确定QoS规则,无需核心网设备确定QoS规则,在通信设备与服务器通信过程中,减少了接入网设备与核心网设备之间的交互次数,进而降低了通信设备与服务器之间的通信时延,并减少了消耗的通信资源。In this application, the first communication device may send the first information to the access network device, where the first information includes at least one of service information, the identification of the first communication device, and the MAC address of the first communication device. The network device may determine the QoS rule according to the first information, and establish a bearer between the base station and the first communication device according to the QoS rule, so that the first communication device may send uplink data or receive downlink data on the bearer. In the above process, since the access network device can obtain the first information, the access network device can determine the QoS rule based on the first information, and the core network device does not need to determine the QoS rule. During the communication between the communication device and the server, the The number of interactions between the access network device and the core network device, thereby reducing the communication delay between the communication device and the server, and reducing the communication resources consumed.
可选的,作为一个实施例,所述收发模块31用于在所述承载上发送数据,包括:Optionally, as an embodiment, the transceiver module 31 is used to send data on the bearer, including:
所述收发模块31用于,在所述承载上向所述接入网设备发送第一数据发送请求,所述第一数据发送请求包括待发送的第一数据,所述第一数据发送请求用于指示所述接入网设备向服务器发送所述第一数据。The transceiver module 31 is configured to send a first data sending request to the access network device on the bearer, the first data sending request includes first data to be sent, and the first data sending request is used for Instructing the access network device to send the first data to the server.
可选的,作为一个实施例,所述第一数据发送请求包括所述服务器的标识和/或所述服务器的MAC地址。Optionally, as an embodiment, the first data sending request includes an identifier of the server and / or a MAC address of the server.
可选的,作为一个实施例,所述第一信息还包括所述第一通信设备连接的至少一个第二通信设备的标识和/或所述第二通信设备的MAC地址。Optionally, as an embodiment, the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
可选的,作为一个实施例,所述第一数据为任意一个所述第二通信设备向所述第一通信设备发送的。Optionally, as an embodiment, the first data is sent by any one of the second communication devices to the first communication device.
可选的,作为一个实施例,所述收发模块31用于在所述承载上接收数据,包括:Optionally, as an embodiment, the transceiver module 31 is configured to receive data on the bearer, including:
所述收发模块31用于,在所述承载上接收所述接入网设备发送的第二数据和设备标识;若所述设备标识为所述第一通信设备连接的至少一个第二通信设备的标识或者所述第二通信设备的MAC地址,则根据所述设备标识向所述第二通信设备发送所述第二数据。The transceiver module 31 is configured to receive, on the bearer, the second data and the device identifier sent by the access network device; if the device identifier is at least one second communication device connected to the first communication device Or the MAC address of the second communication device, then send the second data to the second communication device according to the device identification.
可选的,作为一个实施例,所述收发模块31还用于,接收所述接入网设备发送的广播消息,所述广播消息包括所述接入网设备支持的网络类型,所述网络类型包括公共网络类型或非公共网络类型中的至少一种;Optionally, as an embodiment, the transceiver module 31 is further configured to receive a broadcast message sent by the access network device, where the broadcast message includes a network type supported by the access network device, and the network type Including at least one of the public network type or the non-public network type;
所述处理模块32用于,根据所述广播消息和所述第一通信设备的业务需求,确定是否接入所述接入网设备。The processing module 32 is configured to determine whether to access the access network device according to the broadcast message and service requirements of the first communication device.
应理解,本申请实施例中的收发模块31可以由收发器或收发器相关电路组件实现,处理模块32可以由处理器或处理器相关电路组件实现。It should be understood that the transceiver module 31 in the embodiments of the present application may be implemented by a transceiver or a related circuit component of the transceiver, and the processing module 32 may be implemented by a processor or a related circuit component of the processor.
图12为本申请提供的通信设备的另一种示意性框图。请参见图12,通信设备40包括处理器41,存储器42与收发器43,其中,存储器42中存储指令或程序,处理器41用于执行存储器42中存储的指令或程序。存储器42中存储的指令或程序被执行时,该处理器41用于执行上述实施例中处理模块32执行的操作,收发器43用于执行上述实施例中收发模块31执行的操作。FIG. 12 is another schematic block diagram of the communication device provided by the present application. Referring to FIG. 12, the communication device 40 includes a processor 41, a memory 42 and a transceiver 43, where the memory 42 stores instructions or programs, and the processor 41 is used to execute the instructions or programs stored in the memory 42. When the instruction or program stored in the memory 42 is executed, the processor 41 is used to perform the operation performed by the processing module 32 in the foregoing embodiment, and the transceiver 43 is used to perform the operation performed by the transceiver module 31 in the foregoing embodiment.
应理解,根据本申请实施例的通信设备30和通信设备40可对应于本申请实施例的通信方法中的通信设备(例如终端设备),并且通信设备30和通信设备40中的各个模块的操作和/或功能分别为了实现图2至图8中的各个方法的相应流程,为了简洁,在此不再赘述。It should be understood that the communication device 30 and the communication device 40 according to the embodiments of the present application may correspond to the communication device (eg, terminal device) in the communication method of the embodiment of the present application, and the operations of the respective modules in the communication device 30 and the communication device 40 And / or functions are to implement the corresponding processes of the methods in FIG. 2 to FIG. 8, respectively, and for the sake of brevity, they are not repeated here.
本申请实施例还提供一种计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现上述方法实施例提供的信号的通信方法中与接入网设备相关的流程。An embodiment of the present application further provides a computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, a process related to an access network device in the signal communication method provided by the foregoing method embodiment is implemented.
本申请实施例还提供一种计算机可读存储介质,其上存储有计算机程序,该程序被处理器执行时实现上述方法实施例提供的信号的通信方法中与通信设备相关的流程。An embodiment of the present application further provides a computer-readable storage medium on which a computer program is stored, and when the program is executed by a processor, a process related to a communication device in a signal communication method provided by the foregoing method embodiment is implemented.
本申请实施例还提供一种通信装置,该通信装置可以是通信设备也可以是电路。该通信装置可以用于执行上述方法实施例中由通信设备(例如终端设备)所执行的动作。An embodiment of the present application further provides a communication device, which may be a communication device or a circuit. The communication device may be used to perform actions performed by a communication device (for example, a terminal device) in the foregoing method embodiments.
当该信号的通信装置为终端设备时,图13示出了一种简化的终端设备的结构示意图。便于理解和图示方便,在图13中,终端设备以手机作为例子。如图13所示,终端设备包括处理器、存储器、射频电路、天线以及输入输出装置。处理器主要用于对通信协议以及通信数据进行处理,以及对终端设备进行控制,执行软件程序,处理软件程序的数据等。存储器主要用于存储软件程序和数据。射频电路主要用于基带信号与射频信号的转换以及对射频信号的处理。天线主要用于收发电磁波形式的射频信号。输入输出装置,例如触摸屏、显示屏,键盘等主要用于接收用户输入的数据以及对用户输出数据。需要说明的是,有些种类的终端设备可以不具有输入输出装置。When the communication device of the signal is a terminal device, FIG. 13 shows a simplified schematic diagram of the structure of the terminal device. It is easy to understand and convenient to illustrate. In FIG. 13, the terminal device uses a mobile phone as an example. As shown in FIG. 13, the terminal device includes a processor, a memory, a radio frequency circuit, an antenna, and input and output devices. The processor is mainly used for processing communication protocols and communication data, as well as controlling terminal devices, executing software programs, and processing data of software programs. The memory is mainly used to store software programs and data. The radio frequency circuit is mainly used for the conversion of the baseband signal and the radio frequency signal and the processing of the radio frequency signal. The antenna is mainly used to send and receive radio frequency signals in the form of electromagnetic waves. Input and output devices, such as touch screens, display screens, and keyboards, are mainly used to receive data input by users and output data to users. It should be noted that some types of terminal devices may not have input / output devices.
当需要发送数据时,处理器对待发送的数据进行基带处理后,输出基带信号至射频电路,射频电路将基带信号进行射频处理后将射频信号通过天线以电磁波的形式向外发送。当有数据发送到终端设备时,射频电路通过天线接收到射频信号,将射频信号转换为基带信号,并将基带信号输出至处理器,处理器将基带信号转换为数据并对该数据进行处理。为便于说明,图13中仅示出了一个存储器和处理器。在实际的终端设备产品中,可以存在一个或多个处理器和一个或多个存储器。存储器也可以称为存储介质或者存储设备等。存储器可以是独立于处理器设置,也可以是与处理器集成在一起,本申请实施例对此不做限制。When data needs to be sent, the processor performs baseband processing on the data to be sent, and then outputs the baseband signal to the radio frequency circuit. The radio frequency circuit processes the baseband signal after radio frequency processing and sends the radio frequency signal to the outside in the form of electromagnetic waves through the antenna. When data is sent to the terminal device, the radio frequency circuit receives the radio frequency signal through the antenna, converts the radio frequency signal into a baseband signal, and outputs the baseband signal to the processor. The processor converts the baseband signal into data and processes the data. For ease of explanation, only one memory and processor are shown in FIG. 13. In actual terminal equipment products, there may be one or more processors and one or more memories. The memory may also be referred to as a storage medium or storage device. The memory may be set independently of the processor, or may be integrated with the processor, which is not limited in the embodiments of the present application.
在本申请实施例中,可以将具有收发功能的天线和射频电路视为终端设备的收发单元, 将具有处理功能的处理器视为终端设备的处理单元。如图13所示,终端设备包括收发单元51和处理单元52。收发单元也可以称为收发器、收发机、收发装置等。处理单元也可以称为处理器,处理单板,处理模块、处理装置等。可选的,可以将收发单元51中用于实现接收功能的器件视为接收单元,将收发单元51中用于实现发送功能的器件视为发送单元,即收发单元51包括接收单元和发送单元。收发单元有时也可以称为收发机、收发器、或收发电路等。接收单元有时也可以称为接收机、接收器、或接收电路等。发送单元有时也可以称为发射机、发射器或者发射电路等。In the embodiments of the present application, an antenna and a radio frequency circuit with a transceiver function can be regarded as a transceiver unit of a terminal device, and a processor with a processing function can be regarded as a processing unit of the terminal device. As shown in FIG. 13, the terminal device includes a transceiver unit 51 and a processing unit 52. The transceiver unit may also be called a transceiver, a transceiver, a transceiver device, or the like. The processing unit may also be called a processor, a processing board, a processing module, a processing device, and the like. Optionally, the device used to implement the receiving function in the transceiver unit 51 can be regarded as a receiving unit, and the device used to implement the sending function in the transceiver unit 51 can be regarded as a sending unit, that is, the transceiver unit 51 includes a receiving unit and a sending unit. The transceiver unit may sometimes be called a transceiver, transceiver, or transceiver circuit. The receiving unit may sometimes be called a receiver, a receiver, or a receiving circuit. The sending unit may sometimes be called a transmitter, a transmitter, or a transmitting circuit.
应理解,收发单元51用于执行上述方法实施例中终端设备侧的发送操作和接收操作,处理单元52用于执行上述方法实施例中终端设备上除了收发操作之外的其他操作。It should be understood that the transceiving unit 51 is used to perform the sending operation and the receiving operation on the terminal device side in the above method embodiment, and the processing unit 52 is used to perform other operations on the terminal device other than the transceiving operation in the above method embodiment.
例如,在一种实现方式中,收发单元51用于执行图2中的S301、S302、或S304-S306中终端设备侧的接收/发送操作,和/或收发单元51还用于执行本申请实施例中终端设备侧的其他收发步骤。处理单元52,用于在图3中的S302之前确定第一信息,和/或处理单元510还用于执行本申请实施例中终端设备侧的其他处理步骤。For example, in one implementation, the transceiving unit 51 is used to perform the receiving / transmitting operation on the terminal device side in S301, S302, or S304-S306 in FIG. 2, and / or the transceiving unit 51 is also used to perform the implementation of the present application In the example, other sending and receiving steps on the terminal device side. The processing unit 52 is configured to determine the first information before S302 in FIG. 3, and / or the processing unit 510 is further configured to execute other processing steps on the terminal device side in the embodiment of the present application.
再例如,在另一种实现方式中,收发单元51用于执行图4中S401、S403-S407中终端设备侧的接收/发送操作,和/或收发单元51还用于执行本申请实施例中终端设备侧的其他收发步骤。处理单元52用于在图4中的S401之前确定第一终端设备的标识和MAC地址,和/或处理单元52还用于执行本申请实施例中终端设备侧的其他处理步骤。For another example, in another implementation, the transceiving unit 51 is used to perform the receiving / transmitting operation on the terminal device side in S401 and S403-S407 in FIG. 4, and / or the transceiving unit 51 is also used to perform the embodiment of the present application Other sending and receiving steps on the terminal device side. The processing unit 52 is used to determine the identifier and MAC address of the first terminal device before S401 in FIG. 4, and / or the processing unit 52 is also used to execute other processing steps on the terminal device side in the embodiment of the present application.
又例如,在再一种实现方式中,收发单元51用于执行图5中S501中终端设备侧的发送操作,和/或收发单元51还用于执行本申请实施例中终端设备侧的其他收发步骤。处理单元52,用于在图5中S501之前确定第一数据发送请求,和/或处理单元52还用于执行本申请实施例中终端设备侧的其他处理步骤。For another example, in yet another implementation, the transceiving unit 51 is used to perform the sending operation on the terminal device side in S501 in FIG. 5, and / or the transceiving unit 51 is also used to perform other transceiving on the terminal device side in the embodiments of the present application. step. The processing unit 52 is configured to determine the first data transmission request before S501 in FIG. 5, and / or the processing unit 52 is further configured to execute other processing steps on the terminal device side in the embodiment of the present application.
又例如,在又一种实现方式中,收发单元51用于执行图6中S601-S602中终端设备侧的发送/接收操作,和/或收发单元51还用于执行本申请实施例中终端设备侧的其他收发步骤。处理单元52,用于在图6中S601之前确定第一数据发送请求,和/或处理单元52还用于执行本申请实施例中终端设备侧的其他处理步骤。For another example, in yet another implementation, the transceiving unit 51 is used to perform the sending / receiving operations on the terminal device side in S601-S602 in FIG. 6, and / or the transceiving unit 51 is also used to perform the terminal device in the embodiments of the present application On the other side. The processing unit 52 is configured to determine the first data transmission request before S601 in FIG. 6, and / or the processing unit 52 is further configured to execute other processing steps on the terminal device side in the embodiment of the present application.
再例如,在再一种实现方式中,收发单元51用于执行图7中S703中终端设备侧的接收操作,和/或收发单元51还用于执行本申请实施例中终端设备侧的其他收发步骤。For another example, in yet another implementation, the transceiving unit 51 is used to perform the receiving operation on the terminal device side in S703 in FIG. 7, and / or the transceiving unit 51 is also used to perform other transceiving on the terminal device side in the embodiments of the present application. step.
再例如,在再一种实现方式中,收发单元51用于执行图8中S803中终端设备侧的接收操作,和/或收发单元51还用于执行本申请实施例中终端设备侧的其他收发步骤。处理单元52,用于在图8中S804之前确定第二数据,和/或处理单元52还用于执行本申请实施例中终端设备侧的其他处理步骤。For another example, in yet another implementation, the transceiving unit 51 is used to perform the receiving operation on the terminal device side in S803 in FIG. 8, and / or the transceiving unit 51 is also used to perform other transceiving on the terminal device side in the embodiments of the present application. step. The processing unit 52 is used to determine the second data before S804 in FIG. 8, and / or the processing unit 52 is also used to execute other processing steps on the terminal device side in the embodiment of the present application.
当该通信装置为芯片时,该芯片包括收发单元和处理单元。其中,收发单元可以是输入输出电路、通信接口;处理单元为该芯片上集成的处理器或者微处理器或者集成电路。When the communication device is a chip, the chip includes a transceiver unit and a processing unit. The transceiver unit may be an input-output circuit and a communication interface; the processing unit is a processor or a microprocessor or an integrated circuit integrated on the chip.
本实施例中的通信装置为终端设备时,可以参照图14所示的设备。作为一个例子,该设备可以完成类似于图12中处理器41的功能。在图14中,该设备包括处理器61,发送数据处理器62,接收数据处理器63。上述实施例中的处理模块32可以是图14中的该处理器61,并完成相应的功能。上述实施例中的收发模块31可以是图14中的发送数据处理器62,和/或接收数据处理器63。虽然图14中示出了信道编码器、信道解码器,但是可以理解这些模块并不对本实施例构成限制性说明,仅是示意性的。When the communication device in this embodiment is a terminal device, the device shown in FIG. 14 can be referred to. As an example, the device can perform functions similar to the processor 41 in FIG. In FIG. 14, the device includes a processor 61, a transmission data processor 62, and a reception data processor 63. The processing module 32 in the above embodiment may be the processor 61 in FIG. 14 and complete the corresponding functions. The transceiver module 31 in the above embodiments may be the sending data processor 62 and / or the receiving data processor 63 in FIG. 14. Although a channel encoder and a channel decoder are shown in FIG. 14, it can be understood that these modules do not constitute a restrictive description of this embodiment, but are only schematic.
图15示出本实施例的另一种形式。处理装置70中包括调制子系统、中央处理子系统、周边子系统等模块。本实施例中的通信装置可以作为其中的调制子系统。具体的,该调制子系统可以包括处理器71,接口72。其中处理器71完成上述处理模块32的功能,接口72完成上述收发模块31的功能。作为另一种变形,该调制子系统包括存储器73、处理器71及存储在存储器73上并可在处理器上运行的程序,该处理器71执行该程序时实现上述方法实施例中终端设备侧的方法。需要注意的是,该存储器73可以是非易失性的,也可以是易失性的,其位置可以位于调制子系统内部,也可以位于处理装置70中,只要该存储器73可以连接到该处理器71即可。FIG. 15 shows another form of this embodiment. The processing device 70 includes modules such as a modulation subsystem, a central processing subsystem, and peripheral subsystems. The communication device in this embodiment can serve as the modulation subsystem therein. Specifically, the modulation subsystem may include a processor 71 and an interface 72. The processor 71 performs the function of the processing module 32 described above, and the interface 72 performs the function of the transceiver module 31 described above. As another variation, the modulation subsystem includes a memory 73, a processor 71, and a program stored on the memory 73 and executable on the processor. When the processor 71 executes the program, the terminal device side in the above method embodiment is implemented. Methods. It should be noted that the memory 73 may be non-volatile or volatile, and its location may be inside the modulation subsystem or in the processing device 70, as long as the memory 73 can be connected to the processor 71 is enough.
作为本实施例的另一种形式,提供一种计算机可读存储介质,其上存储有指令,该指令被执行时执行上述方法实施例中接入网设备侧的方法。As another form of this embodiment, a computer-readable storage medium is provided, on which instructions are stored, and when the instructions are executed, the method on the access network device side in the foregoing method embodiment is executed.
作为本实施例的另一种形式,提供一种包含指令的计算机程序产品,该指令被执行时执行上述方法实施例中通信设备侧的方法。As another form of this embodiment, a computer program product containing instructions is provided, and when the instructions are executed, the method on the communication device side in the above method embodiment is executed.
应理解,本发明实施例中提及的处理器可以是中央处理单元(Central Processing Unit,CPU),还可以是其他通用处理器、数字信号处理器(Digital Signal Processor,DSP)、专用集成电路(Application Specific Integrated Circuit,ASIC)、现成可编程门阵列(Field Programmable Gate Array,FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件等。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。It should be understood that the processor mentioned in the embodiment of the present invention may be a central processing unit (Central Processing Unit, CPU), and may also be other general-purpose processors, digital signal processors (Digital Signal Processors, DSPs), and application specific integrated circuits ( Application Specific Integrated Circuit (ASIC), ready-made programmable gate array (Field Programmable Gate Array, FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The general-purpose processor may be a microprocessor or the processor may be any conventional processor or the like.
还应理解,本发明实施例中提及的存储器可以是易失性存储器或非易失性存储器,或可包括易失性和非易失性存储器两者。其中,非易失性存储器可以是只读存储器(Read-Only Memory,ROM)、可编程只读存储器(Programmable ROM,PROM)、可擦除可编程只读存储器(Erasable PROM,EPROM)、电可擦除可编程只读存储器(Electrically EPROM,EEPROM)或闪存。易失性存储器可以是随机存取存储器(Random Access Memory,RAM),其用作外部高速缓存。通过示例性但不是限制性说明,许多形式的RAM可用,例如静态随机存取存储器(Static RAM,SRAM)、动态随机存取存储器(Dynamic RAM,DRAM)、同步动态随机存取存储器(Synchronous DRAM,SDRAM)、双倍数据速率同步动态随机存取存储器(Double Data Rate SDRAM,DDR SDRAM)、增强型同步动态随机存取存储器(Enhanced SDRAM,ESDRAM)、同步连接动态随机存取存储器(Synchlink DRAM,SLDRAM)和直接内存总线随机存取存储器(Direct Rambus RAM,DR RAM)。It should also be understood that the memory mentioned in the embodiments of the present invention may be a volatile memory or a non-volatile memory, or may include both volatile and non-volatile memory. Among them, the non-volatile memory can be read-only memory (Read-Only Memory, ROM), programmable read-only memory (Programmable ROM, PROM), erasable programmable read-only memory (Erasable PROM, EPROM), electronic Erasable programmable read only memory (Electrically EPROM, EEPROM) or flash memory. The volatile memory may be a random access memory (Random Access Memory, RAM), which is used as an external cache. By way of example but not limitation, many forms of RAM are available, such as static random access memory (Static RAM, SRAM), dynamic random access memory (Dynamic RAM, DRAM), synchronous dynamic random access memory (Synchronous DRAM, SDRAM), double data rate synchronous dynamic random access memory (Double Data Rate SDRAM, DDR SDRAM), enhanced synchronous dynamic random access memory (Enhanced SDRAM, ESDRAM), synchronous connection dynamic random access memory (Synchlink DRAM, SLDRAM) ) And direct memory bus random access memory (Direct Rambus RAM, DR RAM).
需要说明的是,当处理器为通用处理器、DSP、ASIC、FPGA或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件时,存储器(存储模块)集成在处理器中。It should be noted that when the processor is a general-purpose processor, DSP, ASIC, FPGA or other programmable logic device, discrete gate or transistor logic device, or discrete hardware component, the memory (storage module) is integrated in the processor.
应注意,本文描述的存储器旨在包括但不限于这些和任意其它适合类型的存储器。It should be noted that the memories described herein are intended to include, but are not limited to these and any other suitable types of memories.
还应理解,本文中涉及的第一、第二、第三、第四以及各种数字编号仅为描述方便进行的区分,并不用来限制本申请的范围。It should also be understood that the first, second, third, fourth, and various numerical numbers referred to herein are only for the convenience of description, and are not intended to limit the scope of the present application.
应理解,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。It should be understood that the term "and / or" in this article is merely an association relationship describing the associated objects, indicating that there may be three types of relationships, for example, A and / or B, which may indicate: A exists alone, and A and B exist simultaneously. , There are three cases of B alone. In addition, the character “/” in this article generally indicates that the related objects before and after are in an “or” relationship.
应理解,在本申请的各种实施例中,上述各过程的序号的大小并不意味着执行顺序的先后,各过程的执行顺序应以其功能和内在逻辑确定,而不应对本发明实施例的实施过程构成任何限定。It should be understood that in various embodiments of the present application, the size of the sequence numbers of the above processes does not mean that the execution order is sequential, and the execution order of each process should be determined by its function and inherent logic, and should not correspond to the embodiments of the present invention The implementation process constitutes no limitation.
本领域普通技术人员可以意识到,结合本文中所公开的实施例描述的各示例的单元及算法步骤,能够以电子硬件、或者计算机软件和电子硬件的结合来实现。这些功能究竟以硬件还是软件方式来执行,取决于技术方案的特定应用和设计约束条件。专业技术人员可以对每个特定的应用来使用不同方法来实现所描述的功能,但是这种实现不应认为超出本申请的范围。Those of ordinary skill in the art may realize that the units and algorithm steps of the examples described in conjunction with the embodiments disclosed herein can be implemented by electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are executed in hardware or software depends on the specific application of the technical solution and design constraints. Professional technicians can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of this application.
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,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。Those skilled in the art can clearly understand that for the convenience and conciseness of the description, the specific working process of the system, device and unit described above can refer to the corresponding process in the foregoing method embodiments, which will not be repeated here.
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。In the several embodiments provided in this application, it should be understood that the disclosed system, device, and method may be implemented in other ways. For example, the device embodiments described above are only schematic. For example, the division of the units is only a division of logical functions. In actual implementation, there may be other divisions, for example, multiple units or components may be combined or Can be integrated into another system, or some features can be ignored, or not implemented. In addition, the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical or other forms.
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。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, they may be located in one place, or may be distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.
另外,在本申请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。In addition, each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit.
所述功能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,本申请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)执行本申请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(Read-Only Memory,ROM)、随机存取存储器(Random Access Memory,RAM)、磁碟或者光盘等各种可以存储程序代码的介质。If the function is implemented in the form of a software functional unit and sold or used as an independent product, it may be stored in a computer-readable storage medium. Based on such an understanding, the technical solution of the present application essentially or part of the contribution to the existing technology or part of the technical solution can be embodied in the form of a software product, and the computer software product is stored in a storage medium, including Several instructions are used to enable a computer device (which may be a personal computer, server, or network device, etc.) to perform all or part of the steps of the methods described in the embodiments of the present application. The foregoing storage media include: U disk, mobile hard disk, read-only memory (Read-Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disks or optical disks and other media that can store program codes .

Claims (31)

  1. 一种无线通信方法,其特征在于,包括:A wireless communication method, characterized in that it includes:
    接入网设备接收第一信息,所述第一信息包括业务信息、第一通信设备的标识、所述第一通信设备的媒体访问控制MAC地址中的至少一种;The access network device receives first information, where the first information includes at least one of service information, an identification of the first communication device, and a media access control MAC address of the first communication device;
    所述接入网设备根据所述第一信息确定服务质量QoS规则,并根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载。The access network device determines a quality of service QoS rule according to the first information, and establishes a bearer between the access network device and the first communication device according to the QoS rule.
  2. 根据权利要求1所述的方法,其特征在于,所述接入网设备根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载之后,还包括:The method according to claim 1, wherein after the access network device establishes a bearer between the access network device and the first communication device according to the QoS rule, the method further comprises:
    所述接入网设备接收所述第一通信设备发送的第一数据发送请求,所述第一数据发送请求包括待向服务器发送的第一数据;The access network device receives a first data transmission request sent by the first communication device, where the first data transmission request includes first data to be sent to a server;
    所述接入网设备获取所述服务器的MAC地址;The access network device obtains the MAC address of the server;
    所述接入网设备根据所述服务器的MAC地址,向所述服务器发送所述第一数据。The access network device sends the first data to the server according to the MAC address of the server.
  3. 根据权利要求2所述的方法,其特征在于,所述第一数据发送请求中包括所述服务器的MAC地址;所述获取所述服务器的MAC地址,包括:The method according to claim 2, wherein the first data sending request includes the MAC address of the server; and the acquiring the MAC address of the server includes:
    所述接入网设备在所述第一数据发送请求中获取所述服务器的MAC地址。The access network device obtains the MAC address of the server in the first data sending request.
  4. 根据权利要求2所述的方法,其特征在于,所述第一数据发送请求中包括所述服务器的标识,所述第一信息中包括所述服务器的标识和所述服务器的MAC地址的对应关系;所述获取所述服务器的MAC地址,包括:The method according to claim 2, wherein the first data transmission request includes an identifier of the server, and the first information includes a correspondence between the identifier of the server and the MAC address of the server ; The MAC address of the server includes:
    所述接入网设备根据所述服务器的标识和所述对应关系,获取所述服务器的MAC地址。The access network device obtains the MAC address of the server according to the identifier of the server and the corresponding relationship.
  5. 根据权利要求2所述的方法,其特征在于,所述第一信息中还包括所述服务器的MAC地址;所述获取所述服务器的MAC地址,包括:The method according to claim 2, wherein the first information further includes a MAC address of the server; and obtaining the MAC address of the server includes:
    所述接入网设备在所述第一信息中获取所述服务器的MAC地址。The access network device obtains the MAC address of the server in the first information.
  6. 根据权利要求1-5任一项所述的方法,其特征在于,所述第一信息还包括所述第一通信设备连接的至少一个第二通信设备的标识和/或所述第二通信设备的MAC地址。The method according to any one of claims 1-5, wherein the first information further includes an identifier of at least one second communication device connected to the first communication device and / or the second communication device MAC address.
  7. 根据权利要求6所述的方法,其特征在于,所述接入网设备根据所述QoS规则建立所述接入网设备与所述通信设备之间的承载之后,还包括:The method according to claim 6, wherein after the access network device establishes a bearer between the access network device and the communication device according to the QoS rule, the method further comprises:
    所述接入网设备接收服务器发送的第二数据发送请求,所述第二数据发送请求包括第二数据,以及所述第二通信设备的标识和/或所述第二通信设备的MAC地址;The access network device receives a second data transmission request sent by a server, where the second data transmission request includes second data, and an identifier of the second communication device and / or a MAC address of the second communication device;
    确定所述第二通信设备与所述第一通信设备连接时,通过所述承载向所述第一通信设备发送所述第二数据,以及所述第二通信设备的标识和/或所述第二通信设备的MAC地址,用于使得所述第一通信设备根据所述第二通信设备的标识和/或所述第二通信设备的MAC地址,向所述第二通信设备发送所述第二数据。When it is determined that the second communication device is connected to the first communication device, send the second data to the first communication device through the bearer, and the identifier of the second communication device and / or the first The MAC address of the second communication device is used to enable the first communication device to send the second to the second communication device according to the identifier of the second communication device and / or the MAC address of the second communication device data.
  8. 根据权利要求1-7任一项所述的方法,其特征在于,所述接入网设备根据所述第一信息确定服务质量QoS规则之前,还包括:The method according to any one of claims 1-7, wherein before the access network device determines the quality of service QoS rule according to the first information, the method further comprises:
    所述接入网设备接收服务器发送的指示信息,所述指示信息包括所述第一通信设备的标识和/或所述第一通信设备的MAC地址;The access network device receives indication information sent by the server, where the indication information includes the identifier of the first communication device and / or the MAC address of the first communication device;
    所述接入网设备根据所述第一通信设备的标识和/或所述第一通信设备的MAC地址,寻呼所述第一通信设备。The access network device pages the first communication device according to the identifier of the first communication device and / or the MAC address of the first communication device.
  9. 根据权利要求1-8任一项所述的方法,其特征在于,所述方法还包括:The method according to any one of claims 1-8, wherein the method further comprises:
    所述接入网设备发送广播消息,所述广播消息中包括所述接入网设备支持的网络类型,所述网络类型包括公共网络类型或非公共网络类型中的至少一种。The access network device sends a broadcast message, where the broadcast message includes a network type supported by the access network device, and the network type includes at least one of a public network type or a non-public network type.
  10. 一种无线通信方法,其特征在于,包括:A wireless communication method, characterized in that it includes:
    向接入网设备发送第一信息,所述第一信息包括业务信息、第一通信设备的标识、第一通信设备的媒体访问控制MAC地址中的至少一种,所述第一信息用于指示所述接入网设备根据所述第一信息确定QoS规则,并根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载;Sending first information to the access network device, where the first information includes at least one of service information, an identification of the first communication device, and a media access control MAC address of the first communication device, the first information is used to indicate The access network device determines a QoS rule according to the first information, and establishes a bearer between the access network device and the first communication device according to the QoS rule;
    在所述承载上发送和/或接收数据。Sending and / or receiving data on the bearer.
  11. 根据权利要求10所述的方法,其特征在于,在所述承载上发送数据,包括:The method of claim 10, wherein sending data on the bearer comprises:
    在所述承载上向所述接入网设备发送第一数据发送请求,所述第一数据发送请求包括待发送的第一数据,所述第一数据发送请求用于指示所述接入网设备向服务器发送所述第一数据。Sending a first data sending request to the access network device on the bearer, where the first data sending request includes first data to be sent, and the first data sending request is used to instruct the access network device Sending the first data to the server.
  12. 根据权利要求11所述的方法,其特征在于,所述第一数据发送请求包括所述服务器的标识和/或所述服务器的MAC地址。The method according to claim 11, wherein the first data transmission request includes an identifier of the server and / or a MAC address of the server.
  13. 根据权利要求11或12所述的方法,其特征在于,所述第一信息还包括所述第一通信设备连接的至少一个第二通信设备的标识和/或所述第二通信设备的MAC地址。The method according to claim 11 or 12, wherein the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device .
  14. 根据权利要求13所述的方法,其特征在于,所述第一数据为任意一个所述第二通信设备向所述第一通信设备发送的。The method according to claim 13, wherein the first data is sent by any one of the second communication devices to the first communication device.
  15. 根据权利要求10所述的方法,其特征在于,在所述承载上接收数据,包括:The method according to claim 10, wherein receiving data on the bearer comprises:
    在所述承载上接收所述接入网设备发送的第二数据和设备标识;Receiving, on the bearer, the second data and the device identifier sent by the access network device;
    若所述设备标识为所述第一通信设备连接的至少一个第二通信设备的标识或者所述第二通信设备的MAC地址,则根据所述设备标识向所述第二通信设备发送所述第二数据。If the device identification is the identification of at least one second communication device connected to the first communication device or the MAC address of the second communication device, then the second communication device is sent the second communication device according to the device identification.二 Data.
  16. 根据权利要求10-15任一项所述的方法,其特征在于,所述方法还包括:The method according to any one of claims 10-15, wherein the method further comprises:
    接收所述接入网设备发送的广播消息,所述广播消息包括所述接入网设备支持的网络类型,所述网络类型包括公共网络类型或非公共网络类型中的至少一种;Receiving a broadcast message sent by the access network device, where the broadcast message includes a network type supported by the access network device, and the network type includes at least one of a public network type or a non-public network type;
    根据所述广播消息和所述第一通信设备的业务需求,确定是否接入所述接入网设备。According to the broadcast message and the service requirements of the first communication device, determine whether to access the access network device.
  17. 一种接入网设备,其特征在于,包括:An access network device, characterized in that it includes:
    收发模块,用于接收第一信息,所述第一信息包括业务信息、第一通信设备的标识、所述第一通信设备的媒体访问控制MAC地址中的至少一种;A transceiver module, configured to receive first information, the first information including at least one of service information, an identification of the first communication device, and a media access control MAC address of the first communication device;
    处理模块,用于根据所述第一信息确定服务质量QoS规则,并根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载。The processing module is configured to determine a quality of service QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule.
  18. 根据权利要求17所述的接入网设备,其特征在于,The access network device according to claim 17, wherein:
    所述收发模块还用于,在所述处理模块根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载之后,接收所述第一通信设备发送的第一数据发送请求,所述第一数据发送请求包括待向服务器发送的第一数据;The transceiver module is further configured to, after the processing module establishes a bearer between the access network device and the first communication device according to the QoS rule, receive the first data sent by the first communication device Sending a request, the first data sending request includes first data to be sent to a server;
    所述处理模块还用于,获取所述服务器的MAC地址,并根据所述服务器的MAC地址,向所述服务器发送所述第一数据。The processing module is further configured to obtain the MAC address of the server, and send the first data to the server according to the MAC address of the server.
  19. 根据权利要求17或18所述的接入网设备,其特征在于,所述第一信息还包括所 述第一通信设备连接的至少一个第二通信设备的标识和/或所述第二通信设备的MAC地址。The access network device according to claim 17 or 18, wherein the first information further includes an identifier of at least one second communication device connected to the first communication device and / or the second communication device MAC address.
  20. 根据权利要求19所述的接入网设备,其特征在于,The access network device according to claim 19, wherein
    所述收发模块具体还用于,在所述处理模块根据所述QoS规则建立所述接入网设备与所述通信设备之间的承载之后,接收服务器发送的第二数据发送请求,所述第二数据发送请求包括第二数据,以及所述第二通信设备的标识和/或所述第二通信设备的MAC地址;The transceiver module is further specifically configured to: after the processing module establishes a bearer between the access network device and the communication device according to the QoS rule, receive a second data transmission request sent by the server, the first The second data transmission request includes the second data, and the identifier of the second communication device and / or the MAC address of the second communication device;
    所述收发模块还用于,在确定所述第二通信设备与所述第一通信设备连接时,通过所述承载向所述第一通信设备发送所述第二数据,以及所述第二通信设备的标识和/或所述第二通信设备的MAC地址,用于使得所述第一通信设备根据所述第二通信设备的标识和/或所述第二通信设备的MAC地址,向所述第二通信设备发送所述第二数据。The transceiver module is further configured to, when determining that the second communication device is connected to the first communication device, send the second data to the first communication device through the bearer and the second communication The identification of the device and / or the MAC address of the second communication device is used to enable the first communication device to send a message to the second communication device according to the identification of the second communication device and / or the MAC address of the second communication device The second communication device sends the second data.
  21. 根据权利要求17-20任一项所述的接入网设备,其特征在于,The access network device according to any one of claims 17-20, characterized in that
    所述收发模块还用于,在所述处理模块根据所述第一信息确定服务质量QoS规则之前,接收服务器发送的指示信息,所述指示信息包括所述第一通信设备的标识和/或所述第一通信设备的MAC地址;The transceiver module is further configured to receive, before the processing module determines the quality of service QoS rule according to the first information, indication information sent by the server, where the indication information includes the identification and / or location of the first communication device Describe the MAC address of the first communication device;
    所述处理模块还用于,根据所述第一通信设备的标识和/或所述第一通信设备的MAC地址,寻呼所述第一通信设备。The processing module is further configured to page the first communication device according to the identification of the first communication device and / or the MAC address of the first communication device.
  22. 一种通信设备,其特征在于,包括:A communication device, characterized in that it includes:
    收发模块,用于向接入网设备发送第一信息,所述第一信息包括业务信息、第一通信设备的标识、所述第一通信设备的媒体访问控制MAC地址中的至少一种,所述第一信息用于指示所述接入网设备根据所述第一信息确定QoS规则,并根据所述QoS规则建立所述接入网设备与所述第一通信设备之间的承载;The transceiver module is configured to send first information to the access network device, where the first information includes at least one of service information, an identification of the first communication device, and a media access control MAC address of the first communication device. The first information is used to instruct the access network device to determine a QoS rule according to the first information, and establish a bearer between the access network device and the first communication device according to the QoS rule;
    所述收发模块还用于,所述第一通信设备在所述承载上发送和/或接收数据。The transceiver module is further used for the first communication device to send and / or receive data on the bearer.
  23. 根据权利要求22所述的通信设备,其特征在于,所述收发模块用于在所述承载上发送数据,包括:The communication device according to claim 22, wherein the transceiver module is configured to send data on the bearer, including:
    所述收发模块用于,在所述承载上向所述接入网设备发送第一数据发送请求,所述第一数据发送请求包括待发送的第一数据,所述第一数据发送请求用于指示所述接入网设备向服务器发送所述第一数据。The transceiver module is used to send a first data sending request to the access network device on the bearer, the first data sending request includes first data to be sent, and the first data sending request is used to Instructing the access network device to send the first data to the server.
  24. 根据权利要求23所述的通信设备,其特征在于,所述第一信息还包括所述第一通信设备连接的至少一个第二通信设备的标识和/或所述第二通信设备的MAC地址。The communication device according to claim 23, wherein the first information further includes an identifier of at least one second communication device connected to the first communication device and / or a MAC address of the second communication device.
  25. 根据权利要求24所述的通信设备,其特征在于,所述第一数据为任意一个所述第二通信设备向所述第一通信设备发送的。The communication device according to claim 24, wherein the first data is sent by any one of the second communication devices to the first communication device.
  26. 根据权利要求22所述的通信设备,其特征在于,所述收发模块用于在所述承载上接收数据,包括:The communication device according to claim 22, wherein the transceiver module is configured to receive data on the bearer, including:
    所述收发模块用于,在所述承载上接收所述接入网设备发送的第二数据和设备标识;若所述设备标识为所述第一通信设备连接的至少一个第二通信设备的标识或者所述第二通信设备的MAC地址,则根据所述设备标识向所述第二通信设备发送所述第二数据。The transceiver module is configured to receive, on the bearer, second data and a device identifier sent by the access network device; if the device identifier is an identifier of at least one second communication device connected to the first communication device Or the MAC address of the second communication device, then send the second data to the second communication device according to the device identifier.
  27. 一种计算机可读存储介质,其上存储有计算机程序,其特征在于,所述程序被处理器执行时实现如权利要求1-9任一项所述的通信方法。A computer-readable storage medium on which a computer program is stored, characterized in that, when the program is executed by a processor, the communication method according to any one of claims 1-9 is implemented.
  28. 一种计算机可读存储介质,其上存储有计算机程序,其特征在于,所述程序被处理器执行时实现如权利要求10-16任一项所述的通信方法。A computer-readable storage medium on which a computer program is stored, characterized in that when the program is executed by a processor, the communication method according to any one of claims 10-16 is implemented.
  29. 一种通信装置,包括存储器、处理器及存储在所述存储器上并可在所述处理器上运行的程序,其特征在于,所述处理器执行所述程序时实现权利要求1-9任一项所述的通信方法。A communication device, including a memory, a processor, and a program stored on the memory and executable on the processor, characterized in that, when the processor executes the program, any one of claims 1-9 is realized Item communication method.
  30. 一种通信装置,包括存储器、处理器及存储在所述存储器上并可在所述处理器上运行的程序,其特征在于,所述处理器执行所述程序时实现权利要求10-16任一项所述的通信方法。A communication device, including a memory, a processor, and a program stored on the memory and executable on the processor, characterized in that, when the processor executes the program, any one of claims 10-16 is realized Item communication method.
  31. 一种通信系统,其特征在于,包括如权利要求17至21中任一项所述的接入网设备,及如权利要求22至26中任一项所述的通信设备。A communication system, characterized by comprising the access network device according to any one of claims 17 to 21, and the communication device according to any one of claims 22 to 26.
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