WO2012065293A1 - 业务的接入控制方法、装置及用户设备 - Google Patents

业务的接入控制方法、装置及用户设备 Download PDF

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Publication number
WO2012065293A1
WO2012065293A1 PCT/CN2010/078737 CN2010078737W WO2012065293A1 WO 2012065293 A1 WO2012065293 A1 WO 2012065293A1 CN 2010078737 W CN2010078737 W CN 2010078737W WO 2012065293 A1 WO2012065293 A1 WO 2012065293A1
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WO
WIPO (PCT)
Prior art keywords
access network
service data
user equipment
data flow
access
Prior art date
Application number
PCT/CN2010/078737
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English (en)
French (fr)
Inventor
袁立平
李欢
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to CN2010800036836A priority Critical patent/CN102714843A/zh
Priority to PCT/CN2010/078737 priority patent/WO2012065293A1/zh
Publication of WO2012065293A1 publication Critical patent/WO2012065293A1/zh

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W48/00Access restriction; Network selection; Access point selection
    • H04W48/02Access restriction performed under specific conditions

Definitions

  • the present invention relates to the field of communications technologies, and in particular, to a service access control method, apparatus, and user equipment. Background of the invention
  • An object of the present invention is to provide a service access control method, apparatus, and user equipment, so as to implement a service data flow when an access network of a user equipment transmission service data stream does not conform to an access network selection policy. Access is controlled.
  • an embodiment of the present invention provides a method for controlling access of a service, where the method includes:
  • the access control node obtains an access network selection policy of the service data flow
  • the access control node sends the access network selection policy to the user equipment
  • the access control node determines that the access network that the user equipment transmits the service data flow does not meet the access network of the access network selection policy, the access control node performs access to the service data flow. control.
  • the embodiment of the present invention provides an access control device for a service, where the device includes:
  • a first sending unit configured to send the access network selection policy to the user equipment
  • a first control unit configured to determine, when the access network that the user equipment transmits the service data stream meets the access network of the access network selection policy, to control access of the service data flow.
  • an embodiment of the present invention provides a service access control method, where the method includes:
  • the embodiment of the present invention provides a user equipment, where the user equipment includes:
  • the access control node of the network side obtains an access network selection policy of the service data flow, and is transmitted by the user equipment according to the access network selection policy.
  • the access control node may determine whether the access network selected by the user equipment complies with the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, Controlling the selection of an access network that conforms to the access network selection policy.
  • FIG. 3 is a schematic structural diagram of an access control apparatus for a service according to another embodiment of the present invention.
  • FIG. 4 is a schematic flowchart of a method for access control of a service according to another embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a user equipment according to an embodiment of the present invention.
  • FIG. 6 is a schematic flowchart 1 of an access control method according to another embodiment of the present invention.
  • FIG. 7 is a second schematic flowchart of a method for access control of a service according to another embodiment of the present invention.
  • FIG. 9 is a schematic flowchart 4 of a method for access control of a service according to another embodiment of the present invention.
  • FIG. 10 is a schematic flowchart 5 of an access control method for a service according to another embodiment of the present invention.
  • FIG. 11 is a schematic flowchart of a method for access control of a service according to another embodiment of the present invention.
  • FIG. 12 is a flow chart 7 of an access control method for a service according to another embodiment of the present invention. Mode for carrying out the invention
  • an embodiment of the present invention provides a service access control method, where the method includes:
  • Step 11 The access control node obtains an access network selection policy of the service data flow.
  • Step 12 The access control node sends the access network selection policy to the user equipment.
  • Step 13 When the access control node determines that the access network of the user equipment transmitting the service data flow does not conform to the access network of the access network selection policy, the access control node controls the access of the service data flow.
  • the access control node in the access control method of the service of the embodiment of the present invention may be a P-GW packet data network gateway, and the UE (using The user equipment can be connected to the same PDN (Packet Data Network) through the access network of the 3GPP system and the access network of the non-3GPP system via the same P-GW packet data network service gateway, that is, the service in the same PDN connection.
  • Data streams can be distributed across two different access networks.
  • the access network of the 3GPP system may include: UTRAN (UMTS Terrestrial Radio Access Network, UMTS Terrestrial Radio Access Network), or E-UTRAN (Evolved-UMTS Terrestrial Radio Access Network), or GERAN (GSM) EDGE Radio Access Network, GSM EDGE Radio Access Network, and more.
  • UTRAN UMTS Terrestrial Radio Access Network
  • E-UTRAN Evolved-UMTS Terrestrial Radio Access Network
  • GSM GERAN
  • the access control node on the network side obtains the access network selection policy of the service data flow, and after the user equipment selects the access network for the service data stream transmitted by the user equipment, the access control node may Determining whether the access network selected by the user equipment meets the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, the access control node controls the selection to comply with the access network selection policy. Network access.
  • the access control node obtains an access network selection policy of the service data flow, where the access network selection policy may include: service data flow information, access network type information, and binding policy information, where, the service The data flow information may include a traffic flow template (TFT);
  • TFT traffic flow template
  • Binding policy information can include:
  • Priority binding policy The service data flow indicated by the service data flow information is preferentially bound to the access network indicated by the access network type information;
  • the binding policy is allowed: the service data flow indicated by the service data flow information is allowed to be bound to the access network indicated by the access network type information.
  • the service data flow template TFT may be extended to access the network type information and the binding policy information, and the access network selection policy may be implemented by using the service data flow template TFT extension.
  • the service data flow can be bound to the access network through the access network selection policy.
  • the binding relationship between the service data stream and the access network can be stored in the binding cache of the access control node and/or the user equipment.
  • the access control node obtains the access network selection policy of the service data flow in the following manner:
  • the access control node obtains the PCC from the PCRF (Policy Charging Rule Function) entity ( Policy Control and Charging, the PCC rule carries the access network selection policy.
  • PCRF Policy Charging Rule Function
  • Policy Control and Charging Policy Control and Charging
  • the PCC rule carries the access network selection policy.
  • the user equipment accesses the current access network, and the user equipment initiates a certain service on the current access network.
  • the GW requests the PCRF entity to obtain an access network selection policy corresponding to the service data flow of the service, and the PCRF entity carries the access network selection policy corresponding to the service data flow in the PCC rule and sends the access network selection policy to the P-GW, so that the P-GW obtains An access network selection policy; or, the PGW may obtain an access network selection policy corresponding to each service data flow in the process of interacting with the PCC rule of the PCRF entity, and send the access network selection policy corresponding to the current initiating service to the P. -GVV, whereby the P-GW obtains an access network selection policy.
  • the access control node obtains an access network selection policy of the service data flow by locally pre-configuring.
  • the access control node when the current access network initiated by the user equipment is the access network indicated by the access network type information, the access control node binds the service data flow to the current access network; When the user equipment uses the access network that the current access network does not indicate the access network type information, the access control node prohibits binding the service data flow to the current access network.
  • the access control node may store the binding relationship between the service data flow and the access network in a flow binding list of the access control node. Based on the flow binding list, the access control node can determine an access network that transmits data to the user equipment.
  • the step 12 access control node sends the access network selection policy to the user equipment, which can be implemented in the following manner, but is not limited to the following manner: using GTP (GPRS Tunneling Protocol GPRS, Tunneling Protocol) in the 3GPP system
  • the ingress control node may send an access network selection policy to the user equipment by using a Create Session Response message during the establishment of the PDN connection;
  • the PMIP Proxy Mobile IP
  • the access control node can be sent through the Proxy Binding Acknowledgement in the process of establishing the PDN connection. Enter the network selection policy to the user equipment.
  • the user equipment initiates a service data flow. Even if the service data flow has a corresponding access network binding, the user equipment may not transmit the service data flow according to the access network bound by the access network.
  • the access control node needs to be able to control access to the service data flow. Specifically, the access control node determines that the current access network of the user equipment to transmit the service data flow conforms to the access network selection policy. The case where the service data stream is allowed to be transmitted on the current access network;
  • the access control node determines that the current access network in which the user equipment transmits the service data flow does not comply with the access network of the access network selection policy, and controls the access of the service data flow. That is, the case of the above step 13.
  • the access control node determines that the current access network of the user equipment to transmit the service data flow conforms to the access network of the access network selection policy, and allows the service data stream to be transmitted in the current access network, and may include:
  • the access control node binds the service data flow sent by the user equipment to the current access network, and the access control node binds the service data flow sent by the user equipment to the current access network according to the priority binding policy.
  • the service data stream is transmitted on the current access network; or, according to the forbidden binding policy, when the current access network of the user equipment transmission service data stream is not the access network indicated by the access network type information, the access control node will be the user equipment.
  • the transmitted service data stream is bound to the current access network, allowing the service data stream to be transmitted on the current access network;
  • the access control node binds the service data flow transmitted by the user equipment to the current access.
  • Network which allows traffic to be transmitted on the current access network.
  • the access control node blocks the service data flow transmitted by the user equipment, and sends an indication to notify the user. Device service data flow is blocked;
  • the access control node blocks the service data flow transmitted by the user equipment, and sends an indication notification. User equipment service data flow is blocked.
  • the user equipment after the user equipment receives the indication notification sent by the access control node, the user equipment includes:
  • the user equipment cancels the binding of the service data flow to the current access network
  • the first obtaining unit 21 is configured to obtain an access network selection policy of the service data stream.
  • the first sending unit 22 is configured to send an access network selection policy to the user equipment.
  • the first control unit 23 is configured to control access of the service data stream when the access network for transmitting the service data stream by the user equipment does not conform to the access network of the access network selection policy.
  • the access control device of the service in the embodiment of the present invention may be an access control node, such as a P-GW packet data network gateway.
  • the UE can access the same PDN through the access network of the 3GPP system and the access network of the non-3GPP system via the same P-GW packet data network service gateway.
  • the access control device of the service obtains the access network selection policy of the service data flow, and after the user equipment root selects the access service network for the service data flow transmitted by the user equipment, the access control node may determine the user equipment selection. Whether the access network complies with the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, controls to select an access network that conforms to the access network selection policy.
  • the access network selection policy can be understood by referring to the same content of the above embodiment.
  • the first obtaining unit 21 may include:
  • the first obtaining sub-unit 31 is configured to obtain, from the PCRF policy charging rule function entity, a PCC policy control and charging rule, where the PCC rule carries an access network selection policy of the service data flow.
  • the second obtaining sub-unit 32 is configured to obtain an access network selection policy of the service data flow by local pre-configuration.
  • the second binding unit 35 is configured to: according to the forbidden binding policy, when the current access network initiated by the user equipment is the access network indicated by the access network type information, the user equipment prohibits binding the service data flow to The current access network; conversely, when the current access network initiating the service by the user equipment is not the access network indicated by the access network type information, the service data flow is bound to the current access network.
  • the third binding unit 36 is configured to: when the user equipment initiates a service, the current access network is an access network according to the permission binding policy.
  • the access network indicated by the type information is bound to the current access network, the user equipment is prohibited from being used by the user equipment when the current access network is not the access network indicated by the access network type information.
  • the service data stream is bound to the current access network.
  • the foregoing access control node may store the binding relationship between the service data flow and the access network in the flow binding list.
  • the first sending unit 22 may include:
  • the access control node passes the Proxy Binding Acknowledgement in the process of establishing the PDN connection.
  • the message is sent to the user equipment by the access network selection policy.
  • the user equipment initiates a service data flow. Even if the service data flow has a corresponding access network binding, the user equipment may not transmit the service data flow according to the access network bound by the access network.
  • the access control node needs to be able to control access to the service data flow. Specifically, as shown in FIG. 3, the access control node determines that the current access network used by the user equipment to transmit the service data flow does not meet the access network selection.
  • the first control unit 23 may include:
  • the first control sub-unit 310 is configured to detect, according to the preferential binding policy, that the user equipment accesses the access network indicated by the access network type information, but the current access network that the user equipment transmits the service data flow is not the access network.
  • the type information indicates the access network
  • the service data flow switch is bound to the access network indicated by the access network type information.
  • the access control node binds the service data flow switch to the access network.
  • the access network indicated by the network access type information may be understood as an IP flow mobility initiated by the access control node, and the user equipment and the access control node re-implement the binding of the service data flow to the access network.
  • the third control sub-unit 312 is configured to block the service data transmitted by the user equipment when the current access network that the user equipment transmits the service data flow is not the access network indicated by the access network type information according to the permission binding policy. Stream, and send an indication to inform the user that the device service data flow is blocked.
  • the fourth control sub-unit 313 is configured to bind the service data flow sent by the user equipment to the current access network, according to the priority binding policy, when the current access network that the user equipment transmits the service data flow conforms to the access network selection policy, The service data stream is allowed to be transmitted on the current access network.
  • the sixth control sub-unit 315 is configured to: when the current access network that the user equipment transmits the service data flow is the access network indicated by the access network type information according to the permission binding policy, the service data transmitted by the user equipment The flow is bound to the current access network, allowing traffic data flows to be transmitted on the current access network.
  • the access control node on the network side obtains the access network selection policy of the service data flow, and after the user equipment selects the access network for the service data stream transmitted by the user equipment, the access control node may Determining whether the access network selected by the user equipment meets the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, the access control node controls the selection to comply with the access network selection policy.
  • Network access As shown in FIG. 4, an embodiment of the present invention provides a service access control method, including:
  • Step 42 When the access network that the user equipment transmits the service data flow does not meet the access network of the access network selection policy, the user equipment receives the indication notification sent by the access control node, and selects the access network selection policy for the service data flow. Access network.
  • the access control node in the access control method of the service of the embodiment of the present invention may be a P-GW packet data network gateway, and the UE may be grouped by the same P-GW through the access network of the 3GPP system and the access network of the non-3GPP system.
  • the data network service gateway receives the same PDN.
  • the access control method for the service of the embodiment of the present invention obtains an access network selection policy of the service data flow by using the access control node, and the user equipment selects an access network for the service data flow transmitted by the user equipment according to the access network selection policy.
  • the access control node may determine whether the access network selected by the user equipment complies with the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, the control selection conforms to the access network selection policy. Access network.
  • the access network selection policy can be understood by referring to the same content in the foregoing embodiment.
  • For the binding relationship between the service data flow and the access network refer to the flow binding list shown in Table 1 of the foregoing embodiment.
  • the access network that determines that the access network of the user equipment to transmit the service data stream does not comply with the access network selection policy can be understood by referring to the same content in the foregoing embodiment, and details are not described herein again.
  • the access network selection policy in step 41 may include:
  • the GTP GPRS Tunneling Protocol GPRS, Tunneling Protocol
  • the GTP is used in the 3GPP system, and the user equipment can receive the access network selection policy delivered by the access control node through the Create Session Response message during the establishment of the PDN connection. ;
  • the DSMIPv6 (Dual Stack Mobile Internet Protocol Version 6) protocol is used, and the user equipment can receive the response message by binding (Binding Acknowledgement) in the process of establishing the PDN connection.
  • the PMIP Proxy Mobile IP
  • the user equipment point can be During the establishment of the PDN connection, the access network selection policy delivered by the access control node is received through the Proxy Binding Acknowledgement.
  • the access control method for the service of the embodiment of the present invention may further include:
  • the user equipment obtains an access network selection policy from the ANDSF access network discovery and selection function entity;
  • the user equipment sends an access network selection policy to the access control node, so that the access network selection policy updates the locally set access network selection policy.
  • Step 41 The user equipment determines, according to the access network selection policy, a binding relationship between the service data flow and the current access network, which may include:
  • the user equipment when the current access network initiating the service by the user equipment is the access network indicated by the access network type information, the user equipment binds the service data flow to the current access network; or, the user equipment initiates the service.
  • the current access network is not the access network indicated by the access network type information, and the user equipment binds the service data flow to the current access network, and when the user equipment detects that the other access network that is simultaneously accessed is the access network
  • the access network indicated by the type information the user equipment binds the service data flow to the access network indicated by the access network type information, or when the user equipment detects that the access network indicated by the access network type information can access,
  • the user equipment accesses the access network indicated by the access network type information, and binds the service data flow to the access network indicated by the access network type information, that is, the user equipment initiates an IP flow mobility process;
  • the user equipment may access the access network indicated by the access network type information due to the change of the access network, etc., and the user equipment initiates the IP
  • the user equipment when the current access network initiated by the user equipment is the access network indicated by the access network type information, the user equipment binds the service data flow to the current access network.
  • the current access network of the user equipment is not the access network indicated by the access network type information, the user equipment does not bind the service data flow, and the user equipment initiates reselection access.
  • the user equipment initiates a reselection of the access, which can be understood as a process in which the user equipment reselects other access network access according to the current access network environment to initiate a service.
  • the user equipment may store the binding of the service data flow and the access network in a flow binding list of the user equipment.
  • the user equipment initiates a service data flow. If the service data flow does not have a corresponding access network binding (the access network binding can be referred to the flow binding list of the user equipment), the user equipment discards the service data, and may initiate a new Alternatively, optionally, the user device can indicate the type of error the application should discard the data. If the service data flow has a corresponding access network binding, the user equipment binds the service data flow to the access network according to the access network binding.
  • the user equipment initiates a service data flow, and even if the service data flow has a corresponding access network binding, the user equipment may not transmit the service data flow according to the access network bound by the access network, corresponding to,
  • the access control node determines that the access network used by the user equipment to send the service data flow does not comply with the access network selection policy, the access control node blocks the service data flow transmitted by the user equipment, and sends an indication to notify the user equipment service data.
  • the indication that is sent by the system node to select the access network that meets the access network selection policy for the service data flow may include: the user equipment receiving the indication notification sent by the access control node, indicating that the notification indicates that the service data stream sent by the user equipment is blocked; The user equipment cancels the binding of the service data flow to the current access network;
  • the user equipment cancels the binding of the service data flow to the current access network, and according to the access network selection policy, if there is an access network that conforms to the access network selection policy, the user equipment accesses the service data flow and the access The access network is bound by the network selection policy. If there is no access network that meets the access network selection policy, the user equipment discards the service data flow.
  • the access control node in the access control method of the service of the embodiment of the present invention may be a P-GW packet data network gateway, and the UE may be grouped by the same P-GW through the access network of the 3GPP system and the access network of the non-3GPP system.
  • the data network service gateway receives the same PDN.
  • the access network selection policy can be understood by referring to the same content in the foregoing embodiment.
  • For the binding relationship between the service data flow and the access network refer to the flow binding list shown in Table 1 of the foregoing embodiment.
  • the access network that determines that the access network of the user equipment to transmit the service data stream does not comply with the access network selection policy can be understood by referring to the same content in the foregoing embodiment, and details are not described herein again.
  • the fourth binding unit 51 may include:
  • the first receiving subunit is configured to use GTP (GPRS Tunneling Protocol GPRS) in the 3GPP system, and the user equipment can receive the access control node by using a Create Session Response message during the establishment of the PDN connection.
  • GTP GPRS Tunneling Protocol GPRS
  • a second receiving subunit configured to use a DSMIPv6 (Dual Stack Mobile Internet Protocol Version 6, Protocol) protocol in a non-3GPP system, where the user equipment can pass the BDN connection establishment process (Binding)
  • the Acknowledgement message receives the access network selection policy delivered by the access control node.
  • a third receiving subunit configured to use a PMIP (Proxy Mobile IP) protocol in a non-3GPP system, where the user equipment point can pass the Proxy Binding Acknowledgement during the PDN connection establishment process. Receiving an access network selection policy delivered by the access control node.
  • PMIP Proxy Mobile IP
  • the user equipment of the embodiment of the present invention may further include: when the access network selection policy is sent by the access network discovery and selection function ANDSF entity,
  • a second obtaining unit configured to obtain an access network selection policy from the ANDSF entity.
  • a second sending unit configured to send the access network selection policy to the access control node, so that the access network selection policy updates the locally set access network selection policy.
  • the fourth binding unit 51 may include:
  • the first binding sub-unit is configured to bind the service data flow to the current access when the current access network initiated by the user equipment is the access network indicated by the access network type information, according to the priority binding policy.
  • the current access network in which the user equipment initiates the service is not the access network indicated by the access network type information, and the user equipment binds the service data flow to the current access network, and when the user equipment detects that the access network is simultaneously accessed,
  • the other access network is the access network indicated by the access network type information, and the user equipment binds the service data flow to the access network indicated by the access network type information, or when the user equipment detects the access network
  • the access network indicated by the type information can be accessed, and the user equipment accesses the access network indicated by the access network type information, and binds the service data flow to the access network indicated by the access network type information, that is, the user equipment initiates the IP address.
  • the second binding sub-unit is configured to: according to the forbidden binding policy, when the current access network initiated by the user equipment is the access network indicated by the access network type information, the user equipment prohibits binding the service data flow to In the current access network, the user equipment initiates reselection of the access; conversely, when the current access network initiating the service by the user equipment is not the access network indicated by the access network type information, the user equipment binds the service data stream to the current connection. Network access.
  • the third binding sub-unit is configured to bind the service data flow to the current service network when the current access network initiated by the user equipment is the access network indicated by the access network type information, according to the permission binding policy.
  • the user equipment uses the access network indicated by the access network type information, the user equipment is prohibited from binding the service data stream to the current access network, and the user equipment initiates reselection.
  • the second control unit 52 may include an indication notification receiving unit, configured to receive an indication notification sent by the access control node, and indicate that the notification indicates that the service data stream sent by the user equipment is blocked.
  • the undo subunit is used to cancel the binding of the service data flow to the current access network.
  • the access control sub-unit is configured to select an access network for the service data flow according to the access network selection policy.
  • the user equipment cancels the binding of the service data flow to the current access network, and according to the access network selection policy, if there is an access network that conforms to the access network selection policy, the user equipment accesses the service data flow and the access The access network is bound by the network selection policy. If there is no access network that meets the access network selection policy, the user equipment discards the service data flow.
  • the access control party of the service of the foregoing embodiment may be correspondingly referred to.
  • the corresponding content of the law will not be repeated here.
  • the access control node on the network side obtains the access network selection policy of the service data flow, and after the user equipment selects the access network for the service data stream transmitted by the user equipment, the access control node may determine the user equipment selection. Whether the access network complies with the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, the access control node controls to select an access network that conforms to the access network selection policy.
  • the UE User Equipment
  • the P-GW are combined to describe the access control method of the service according to the embodiment of the present invention, including:
  • the UE establishes a PDN connection through the current access network, and the P-GW obtains an access network selection policy to the service data flow, and the P-GW determines a binding relationship between the service data flow and the access network according to the access network selection policy, for example,
  • the service data flow is bound to the current access network, or the service data flow is not bound to the current access network, or the service data flow is bound to the current access network, and the priority access network exists.
  • traffic data flow switching is required.
  • the P-GW sends the access network selection policy of the service data flow to the UE, and the UE determines the binding relationship between the service data flow and the access network according to the access network selection policy, for example, the service data flow is bound to the current access network. Or, the service data flow is not bound to the current access network, or the service data flow is bound to the current access network. When there is a priority access network, the service data flow needs to be switched.
  • the UE initiates a service data flow. If the service data flow does not have a corresponding access network binding, the UE discards the service data.
  • the UE may initiate a reselection access; if the service data flow has a corresponding access network binding, the UE binds the service data flow to the access network according to the access network binding; if the UE detects that the priority access network still exists Then, the UE accesses the priority access network, and binds the service data flow to the priority access network.
  • the P-GW detects whether the current access network of the UE transmission service data flow conforms to the access network selection policy, and if the current access network of the UE is an access network that is not prohibited or allowed to be used by the access network selection policy, P- The GW binds the service data stream to the current access network, that is, allows the service data stream to be transmitted in the current access network; if the P-GW detects that the UE also accesses the priority access network, the P-GW will stream the service data.
  • the UE receives the blocking indication, and selects another access network access according to the access network selection policy. If no other access network is available, the service data flow is discarded.
  • the access control node on the network side obtains the access network selection policy of the service data flow, and after the user equipment selects the access network for the service data stream transmitted by the user equipment, the access control node may Determining whether the access network selected by the user equipment meets the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, the access control node controls the selection to comply with the access network selection policy. Network access. As shown in FIG.
  • an embodiment of the present invention takes a UE (user equipment) to connect to a PDN through an access network of a 3GPP system as an example, indicating that a UE establishes a PDN connection, and the P-GW obtains a PCC rule carrying an access network selection policy. And transmitting to the UE, the UE and the P-GW perform a process of binding the service data flow to the access network according to the access network selection policy.
  • the UE sends a PDN Connectivity Request message to the MME (Mobility Management).
  • Entity mobility management network element, including APN (Access Point Name), PDN Type (PDN Type), PCO (Protocol Configuration Options).
  • APN Access Point Name
  • PDN Type PDN Type
  • PCO Protocol Configuration Options
  • the MME sends a Create Session Request message to the S-GW (Serving Gateway), which includes the identifier of the UE, the P-GW address, the PDN address, the PDN Type, the PCO, and the APN-AMBR (APN- Aggregate Maximum Bit Rate, the default QoS (Quality of Service) and other information.
  • S-GW Serving Gateway
  • APN-AMBR APN- Aggregate Maximum Bit Rate, the default QoS (Quality of Service) and other information.
  • the S-GW creates an entry in the EPS (Evolved Packet System) bearer table, and sends a Create Session Request message to the P-GW, including the identifier of the UE, the address of the S-GW, and the TEID ( Tuunel Endpoint Identifier, tunnel endpoint identifier, APN and other information.
  • EPS Evolved Packet System
  • P-GW sends Indication of IP-CAN Session Establishment
  • the PCRF interacts with the ANDSF, and the PCRF obtains an access network selection policy.
  • the PCRF sends an Acknowledge IP-CAN Session Establishment message to the P-GW, which includes a PCC rule carrying an access network selection policy.
  • the P-GW creates a new entry in the EPS bearer context table, and according to the received PCC rule carrying the access network selection policy, the service data flow is bound to the access network according to the access network selection policy. And, the P-GW sends a Create Session Response message to the S-GW, which includes a PCC rule carrying an access network selection policy.
  • the PCC rule including the access network selection policy may be statically configured on the P-GW.
  • the MME sends a PDN Connectivity Accept message, which includes the service data flow template TFT carrying the access network selection policy, and is forwarded to the UE by the eNodeB (Evolved Node B).
  • the UE binds the service data flow to the access network according to the relevant access network selection policy in the service data flow template TFT.
  • the UE sends the service data stream. If the service data stream does not have the corresponding access network binding, the UE discards the service data. Optionally, the UE may instruct the application to discard the error type of the data. If the service data flow has a corresponding access network binding, the UE binds the service data to the access network according to the access network binding.
  • the access control node on the network side obtains the access network selection policy of the service data flow, After the user equipment selects the access network for the service data stream transmitted by the user equipment, the access control node may determine whether the access network selected by the user equipment complies with the access network of the access network selection policy, and the user equipment does not follow the access network. When the policy is selected to perform access, the access control node controls to select an access network that conforms to the access network selection policy. As shown in FIG. 8 , in the embodiment of the present invention, the UE has accessed the 3GPP system and accesses the non-3GPP system as an example.
  • the network side In the process of establishing a PDN connection, the network side detects data transmission of a certain service, but The UE does not bind the service data flow to the corresponding access network according to the access network selection policy, that is, the service data flow is transmitted from the non-priority access network to the network side, and the network side initiates IP flow mobility (IP flow mobility).
  • IP flow mobility IP flow mobility
  • the UE accesses both a 3GPP system and a non-3GPP system, and simultaneously uses one PDN connection in the two systems. There are multiple flow bindings between the UE and the HA (Home Agent).
  • the HA detects or receives a non-priority access network indicating that the service data flow selects an access network selection policy indication, and the access network selection policy indicates that the service priority access network is a non-3GPP access network, but The UE is currently using the 3GPP access network to perform the service, and the HA sends a Flow Binding Indication message to the UE, and updates the routing rule to indicate that the service is performed by the non-3GPP access network.
  • the UE sends a Flow Binding Acknowledgement message to the HA, indicating that the updated routing rule is accepted.
  • the PCRF Based on the Indication of IP-CAN Session Modification message, the PCRF sends the relevant QoS rule to the BBERF (Bearing Binding and Event Report Function) entity of the non-3GPP system, and provides GW control session and QoS rules. Provision (gateway control session and QoS rules) provides the process.
  • BBERF Bearing Binding and Event Report Function
  • the 3GPP system initiates a resource release or modification process.
  • the access control node on the network side obtains the access network selection policy of the service data flow, and after the user equipment selects the access network for the service data stream transmitted by the user equipment, the access control node may Determining whether the access network selected by the user equipment meets the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, the access control node controls the selection to comply with the access network selection policy.
  • Network access As shown in FIG. 9, in the embodiment of the present invention, the UE initiates a resource request process in the 3GPP access network according to the access network selection policy obtained from the ANDSF, and the UE indicates that the service data flow and required access are required to be modified.
  • the access network determines whether to accept the request of the UE according to the access network selection policy in the received or locally saved PCC rule, performs the corresponding resource modification process, and receives the received access in the process.
  • the network selection policy is sent to the UE.
  • the UE initiates a resource request process in the 3GPP system, where the requested operation includes adding, modifying, or deleting. If the UE sends The Request Bearer Resource Modification message, including the description of the service data stream to be modified and the access network to be accessed.
  • the information received by the Bearer Resource Command is sent to 93, and the S-GW sends a Bearer Resource Command to the P-GW.
  • the P-GW will initiate the IP-CAN Session Modification process, requesting new
  • PCC rules including access network selection policies for traffic data flows.
  • the P-GW initiates a bearer activation process, or a bearer modification process, or a bearer deletion process according to the operation of the request in the message sent by the UE. In this process, the PGW sends the received access network selection policy to the UE.
  • step 94 If the P-GW interacts with the PCRF in step 94, then the P-GW notifies the PCRF whether the new PCC rule is executed, and completes the IP-CAN session modification process.
  • the access control node on the network side obtains the access network selection policy of the service data flow, and after the user equipment selects the access network for the service data stream transmitted by the user equipment, the access control node may Determining whether the access network selected by the user equipment meets the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, the access control node controls the selection to comply with the access network selection policy.
  • Network access As shown in FIG. 10, in the embodiment of the present invention, the UE initiates the DSMIPv6 process according to the access network selection policy obtained from the ANDSF, and the UE indicates the network side access network selection policy, and the network side updates the locally saved access network selection. The process of strategy.
  • the UE accesses a non-3GPP system. There are multiple flow bindings between the user device and the HA.
  • the UE sends a Binding Update message to the HA, and updates the routing rule.
  • the message includes an access network selection policy, a HoA, a BID, and an FID, where the FID identifies the existing service data flow, and the BID identifies the service data flow.
  • Priority access system Priority access system.
  • the P-GW sends an Indication of IP-CAN Session Modification message to the PCRF, providing an updated routing rule to the PCRF, and the PCRF stores the updated routing address and The mapping relationship between access systems.
  • the PCRF sends an Acknowledge IP-CAN Session Modification message to the P-GW, which may include updated PCC rules.
  • the HA sends a Binding Acknowledgement message to the UE, indicating that the updated routing rule is accepted.
  • the PCRF Based on the IP-CAN Session Modification message, the PCRF sends the relevant QoS rule to the BBERF of the target non-3GPP system, and provides the process through the GW control session and QoS rules provision. .
  • the access control node on the network side obtains the access network selection policy of the service data flow, and after the user equipment selects the access network for the service data stream transmitted by the user equipment, the access control node may Determining whether the access network selected by the user equipment complies with the access network of the access network selection policy, and when the user equipment does not perform access according to the access network selection policy, access control The node control selects an access network that conforms to the access network selection policy.
  • the network side dynamically detects that the binding of the service data to the access network by the UE does not comply with the access network selection policy. As an example, the network side blocks the service data and modifies the binding of the service data to the access network.
  • the UE establishes a PDN connection, and the P-GW obtains an access network selection policy to the service data flow.
  • the P-GW performs the detection of the access network selection policy, and determines whether the service data flow is bound to the access network that does not comply with the access network selection policy. If present, the P-GW blocks the data of this traffic data stream from being transmitted in this access network. For example, a certain service data stream is bound to the E-UTRAN system of the 3GPP, but according to the access network selection policy, the E-UTRAN system is a forbidden access type of the service data flow, and the P-GW blocks the data of the service data flow. Transfer in the E-UTRAN system.
  • the UE uploads uplink data.
  • the P-GW sends the blocked indication to the UE, and the UE is notified that the data of the service data flow is not allowed to be transmitted in the E-UTRAN system, and the binding of the service data flow to the access network is modified according to the access network selection policy.
  • the P-GW may use the bearer update procedure to notify the UE that the data of the service data flow is not allowed to be transmitted in the E-UTRAN system, for example, the P-GW sends an Update Bearer Request message to the S-GW, and the message is sent. This includes a block indication for the UE.
  • the S-GW forwards the Update Bearer Request message to the MME.
  • the MME sends a Downlink NAS Transport (Non-Access-Stratume, Non-Access Layer) message to the eNodeB, where the MME includes an indication of modifying the binding of the service data flow to the access network and blocking the UE.
  • NAS Transport Non-Access-Stratume, Non-Access Layer
  • the eNodeB sends a Direct Transfer message to the UE, where the indication includes modifying the binding of the service data flow to the access network and blocking the UE.
  • the UE updates the service data flow and the access network binding, and sends a Direct Transfer message to the eNodeB.
  • the eNodeB sends a NAS (downlink NAS transmission) response message to the MME, where the bearer identifier is included.
  • NAS downlink NAS transmission
  • the MME sends an Update Bearer Response message to the S-GW.
  • step of carrying the update procedure may be in parallel with step 114, and the P-GW may also send a blocking indication to the UE through other messages.
  • the network side dynamically detects that the binding of the service data to the access network by the UE does not conform to the access network selection.
  • the policy indicates that the network side blocks the service data and modifies the binding of the service data to the access network.
  • the UE establishes a PDN connection, and the P-GW obtains an access network selection policy.
  • the P-GW performs the detection of the access network selection policy, and determines whether the service data flow is bound to an access network that does not comply with the access network selection policy. If present, the P-GW blocks the data of this traffic data stream from being transmitted in this access network. If there is a business data stream Binding to a non-3GPP WLAN system, but the WLAN system is a forbidden access type of the service data stream, and the P-GW blocks the data of the service data stream from being transmitted in the WLAN system.
  • UE oh transmits uplink data.
  • the P-GW sends a blocking indication to the UE, and informs the UE that the data of the service data flow is not allowed to be transmitted in the WLAN system.
  • the P-GW may notify the UE by using a binding update process, for example, the P-GW sends a Flow Binding Indication message to the UE, where the service data flow identifier FID, the access technology indication BID, and the block indication are carried.
  • the UE receives the block indication, and sends a Flow Binding Acknowledgement message to the P-GW. After that, the UE transmits the service data stream again in the access network, and the UE receives the blocking indication sent by the P-GW, so the UE selects other access network access according to the access network selection policy, if there is no other connection currently If the network access is optional, the service data is discarded and the upper application is notified.
  • step of binding the update process may be in parallel with step 124, and the P-GW may also send a blocking indication to the UE through other messages.

Description

业务的接入控制方法、 装置及用户设备
技术领域
本发明涉及通信技术领域, 尤其涉及一种业务的接入控制方法、 装置及用户设备。 发明背景
目前, 3GPP (The 3rd Generation Partnership Project, 第三代合作伙伴计划) 协议支持 UE ( User Equipment, 用户设备) 同时接入一个 3GPP系统和一个非 3GPP系统, 即 UE可以通过 3GPP系统的接入网和非 3GPP系统的接入网经同一个 P-GW ( Packet Data Network Gateway, PDN Gateway, 分组数据网服务网关) 接到同一个 PDN ( Packet Data Network, 分组数据网) 连 接。这样, 同一个 PDN连接中的不同业务数据流可以分布在 3GPP系统和非 3GPP系统中, UE可 以根据一定策略选择业务数据流通过哪个网络进行传输, 充分利用不同接入网的带宽、 资费等优势。 例如 3GPP协议中提出的 ANDSF (Access Network Discovery and Selection Function, 接入网发 现和选择功能)方案: 通过 ANDSF实体将业务数据流的接入网选择策略下发给 UE, UE根据接入 网选择策略来执行接入网选择。
但是 ANDSF方案中,业务数据流的接入选择控制权在 UE处, 网络侧无法检验 UE是否是按照 接入网选择策略执行接入, 以及在 UE没有按照接入网选择策略执行接入时, 网络侧无法对接入选 择实施控制。 发明内容
本发明的目的是提供一种业务的接入控制方法、 装置及用户设备, 以实现用户设备传输业务数 据流的接入网不符合接入网选择策略的接入网时, 对业务数据流的接入进行控制。
一方面, 本发明实施例提供一种业务的接入控制方法, 所述方法包括:
接入控制节点获得业务数据流的接入网选择策略;
所述接入控制节点将所述接入网选择策略发送给用户设备;
所述接入控制节点确定所述用户设备传输业务数据流的接入网不符合所述接入网选择策略的接 入网时, 所述接入控制节点对所述业务数据流的接入进行控制。
对应的, 本发明实施例提供一种业务的接入控制装置, 所述装置包括:
第一获取单元, 用于获得业务数据流的接入网选择策略;
第一发送单元, 用于将所述接入网选择策略发送给用户设备;
第一控制单元, 用于确定所述用户设备传输业务数据流的接入网是否符合所述接入网选择策略 的接入网时, 对所述业务数据流的接入进行控制。
另一方面, 本发明实施例提供一种业务的接入控制方法, 所述方法包括:
用户设备根据接入网选择策略, 确定业务数据流与当前接入网的绑定关系, 所述接入网选择策 略由控制节点发送, 或由接入网发现和选择功能 ANDSF发送, 或预先配置在所述用户设备上; 当所述用户设备传输业务数据流的接入网不符合接入网选择策略的接入网时, 所述用户设备接 收所述接入控制节点发送的指示通知, 为业务数据流选择符合接入网选择策略的接入网。
对应的, 本发明实施例提供一种用户设备, 所述用户设备包括:
第四绑定单元, 用于根据所述接入网选择策略, 确定业务数据流与当前接入网的绑定关系, 所 述接入网选择策略由控制节点发送, 或由接入网发现和选择功能 ANDSF发送, 或预先配置在所述 用户设备上;
第二控制单元, 用于所述接入控制节点确定所述用户设备传输业务数据流的接入网不符合接入 网选择策略的接入网时, 接收所述接入控制节点发送的指示通知, 为业务数据流选择符合接入网选 择策略的接入网。
本发明实施例的业务的接入控制方法、 装置及用户设备, 网络侧的接入控制节点获得业务数据 流的接入网选择策略, 在用户设备根据所述接入网选择策略为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是否符合接入网选择策略的接入网, 以及在用户设备 没有按照接入网选择策略执行接入时, 控制选择符合所述接入网选择策略的接入网。 附图简要说明
图 Ί为本发明一实施例业务的接入控制方法流程示意图;
图 2为本发明一实施例业务的接入控制装置构成示意图;
图 3为本发明另一实施例业务的接入控制装置构成示意图;
图 4为本发明另一实施例业务的接入控制方法流程示意图;
图 5为本发明一实施例用户设备构成示意图;
图 6为本发明另一实施例接入控制方法流程示意一;
图 7为本发明另一实施例业务的接入控制方法流程示意图二;
图 8为本发明另一实施例业务的接入控制方法流程示意图三;
图 9为本发明另一实施例业务的接入控制方法流程示意图四;
图 10为本发明另一实施例业务的接入控制方法流程示意图五;
图 11为本发明另一实施例业务的接入控制方法流程示意图六 ·,
图 12为本发明另一实施例业务的接入控制方法流程意图七。 实施本发明的方式
如图 1所示, 本发明实施例提供一种业务的接入控制方法, 所述方法包括:
步骤 11、 接入控制节点获得业务数据流的接入网选择策略。
步骤 12、 接入控制节点将接入网选择策略发送给用户设备。
步骤 13、接入控制节点确定用户设备传输业务数据流的接入网不符合接入网选择策略的接入网 时, 所接入控制节点对业务数据流的接入进行控制。
本发明实施例业务的接入控制方法中的接入控制节点可以为 P-GW分组数据网网关, UE (用 户设备)可以通过 3GPP系统的接入网和非 3GPP系统的接入网经同一个 P-GW分组数据网服务网 关接到同一个 PDN (分组数据网) 连接, 即同一个 PDN连接中的业务数据流可以分布在两个不同 的接入网络中。
3GPP系统的接入网可以包括: UTRAN ( UMTS Terrestrial Radio Access Network, UMTS 陆 地无线接入网), 或者 E-UTRAN ( Evolved -UMTS Terrestrial Radio Access Network, 演进陆地无 线接入网), 或者 GERAN (GSM EDGE Radio Access Network, GSM EDGE无线接入网), 等等。
非 3GPP系统的接入网可以包括: WLAN (Wireless Local Area Networks,无线局域网), HRPD ( High Rate Packet Data, 高速分组数据) 接入网, 等等。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。
具体而言, 步骤 11接入控制节点获得业务数据流的接入网选择策略, 其中, 接入网选择策略可 以包括: 业务数据流信息、 接入网类型信息以及绑定策略信息, 其中, 业务数据流信息可以包括业 务数据流模板 (Traffic Flow Template, TFT);
绑定策略信息可以包括:
优先绑定策略: 业务数据流信息指示的业务数据流优先与接入网类型信息指示的接入网进行绑 定;
或者, 禁止绑定策略: 禁止业务数据流信息指示的业务数据流与接入网类型信息指示的接入网 进行绑定;
或者, 允许绑定策略: 允许业务数据流信息指示的业务数据流与接入网类型信息指示的接入网 进行绑定。
可选的, 可以对业务数据流模板 TFT扩展接入网类型信息以及绑定策略信息, 通过业务数据流 模板 TFT扩展实现接入网选择策略。
通过接入网选择策略可以实现将业务数据流与接入网绑定。 业务数据流与接入网的绑定关系可 以存储在的接入控制节点和 /或用户设备的绑定缓存中。
示例性的, 根据上述接入网选择策略可以得到下表 1所示的流绑定列表, 其中, 每一个业务数 据流(由 Flow ID流标识表示)具有描述其业务数据流信息的 TFT (Traffic Flow Template, 业务数 据流模板), 并指向一种接入网 (由 Binding ID绑定标识表示)。
表 1
Figure imgf000005_0001
可选的, 步骤 11接入控制节点获得业务数据流的接入网选择策略, 可以通过以下方式实现: 接入控制节点从 PCRF ( Policy Charging Rule Function, 策略计费规则功能)实体处获得 PCC ( Policy Control and Charging , 策略控制和计费) 规则, 所述 PCC规则携带接入网选择策略; 具体的, 用户设备接入了当前接入网, 用户设备在当前接入网发起某种业务, P-GW向 PCRF 实体请求获得该业务的业务数据流对应的接入网选择策略, PCRF实体在 PCC规则中携带业务数据 流对应的接入网选择策略下发给 P-GW, 从而 P-GW获得接入网选择策略; 或者, PGW可以在与 PCRF实体的一次 PCC规则交互过程中,获得各业务数据流对应的接入网选择策略,将当前发起业 务对应的接入网选择策略下发给 P-GVV, 从而 P-GW获得接入网选择策略。
或者, 接入控制节点通过本地预先配置获得业务数据流的接入网选择策略。
本发明实施例业务的接入控制方法, 在步骤 11之后, 步骤 12之前, 还可以包括: 根据优先绑定策略, 当用户设备发起业务的当前接入网为接入网类型信息指示的接入网时, 接 入控制节点将业务数据流绑定到当前接入网; 或者, 用户设备发起业务的当前接入网不为接入网类 型信息指示的接入网, 接入控制节点将业务数据流绑定到当前接入网, 进一步地, 当接入控制节点 检测到用户设备同时接入的另一个接入网为接入网类型信息指示的接入网时, 接入控制节点将业务 数据流绑定到接入网类型信息指示的接入网, 即接入控制节点发起 IP flow mobility ( IP流移动) 过 程;
或者, 根据禁止绑定策略, 当用户设备发起业务的当前接入网为接入网类型信息指示的接入网 时, 接入控制节点禁止将业务数据流绑定到当前接入网; 反之, 当用户设备发起业务的当前接入网 不为接入网类型信息指示的接入网时, 接入控制节点将业务数据流绑定到当前接入网;
或者, 根据允许绑定策略, 当用户设备发起业务的当前接入网为接入网类型信息指示的接入网 时, 接入控制节点将业务数据流绑定到当前接入网; 反之, 当用户设备的用当前接入网不为接入网 类型信息指示的接入网时, 接入控制节点禁止将业务数据流绑定到当前接入网。
可选的, 接入控制节点可以将业务数据流与接入网的绑定关系存储在接入控制节点的流绑定列 表内。 根据流绑定列表, 接入控制节点可以确定向用户设备传输数据的接入网。
具体而言, 步骤 12接入控制节点将接入网选择策略发送给用户设备, 可以通过以下方式实现, 但不仅限于以下方式- 在 3GPP系统中使用 GTP ( GPRS Tunneling protocol GPRS, 隧道协议), 接入控制节点可 以在 PDN连接建立的过程中, 通过 Create Session Response (建立会话响应)消息下发接入网选 择策略给用户设备;
或者, 在非 3GPP系统中使用 DSMIPv6 ( Dual Stack Mobile Internet Protocol Version 6, 双 栈移动互联网协议版本 6 ) 协议, 接入控制节点可以在 PDN 连接建立的过程中, 通过 (Binding Acknowledgement) 绑定响应消息下发接入网选择策略给用户设备;
或者, 在非 3GPP系统中使用 PMIP ( Proxy Mobile IP, 代理移动 IP )协议, 接入控制节点可 以在 PDN连接建立的过程中, 通过 Proxy Binding Acknowledgement (代理绑定响应消息)下发接 入网选择策略给用户设备。
另外, 存在某些情况下, 用户设备发起业务数据流, 即使业务数据流有对应的接入网绑定, 但 是用户设备也可能没有按照接入网绑定的接入网传输业务数据流, 因此, 接入控制节点需要可以对 业务数据流的接入进行控制, 具体而言, 包括- 接入控制节点确定用户设备传输业务数据流的当前接入网符合接入网选择策略的接入网, 允许 业务数据流在当前接入网传输的情形;
或者, 接入控制节点确定用户设备传输业务数据流的当前接入网不符合接入网选择策略的接入 网, 对业务数据流的接入进行控制的情形。 即上述步骤 13的情形。
具体的, 接入控制节点确定用户设备传输业务数据流的当前接入网符合接入网选择策略的接入 网, 允许所述业务数据流在当前接入网传输, 可以包括:
根据优先绑定策略, 用户设备传输业务数据流的当前接入网符合接入网选择策略的接入网时, 接入控制节点将用户设备发送的业务数据流绑定到当前接入网,允许业务数据流在当前接入网传输; 或者, 根据禁止绑定策略, 用户设备传输业务数据流的当前接入网不为接入网类型信息指示的 接入网时, 接入控制节点将用户设备传输的业务数据流绑定到当前接入网, 允许业务数据流在当前 接入网传输;
或者, 根据允许绑定策略, 用户设备传输业务数据流的当前接入网为接入网类型信息指示的接 入网时, 接入控制节点将用户设备传输的业务数据流绑定到当前接入网, 允许业务数据流在当前接 入网传输。
具体的,步骤 13接入控制节点确定用户设备传输业务数据流使用的当前接入网不符合接入网选 择策略的接入网时, 接入控制节点对业务数据流的接入进行控制, 可以包括:
根据优先绑定策略, 接入控制节点检测到用户设备接入了接入网类型信息指示的接入网, 但用 户设备传输业务数据流的当前接入网不为接入网类型信息指示的接入网时, 接入控制节点将业务数 据流切换绑定到接入网类型信息指示的接入网; 具体的, 接入控制节点将业务数据流切换绑定到接 入网类型信息指示的接入网, 可以理解为接入控制节点发起的 IP flow mobility ( IP流移动) 过程, 用户设备和接入控制节点重新执行业务数据流与接入网的绑定, 参见后文描述;
或者, 根据禁止绑定策略, 用户设备传输业务数据流的当前接入网为接入网类型信息指示的接 入网时, 接入控制节点阻止用户设备传输的业务数据流, 并发送指示通知用户设备业务数据流被阻 止;
或者, 根据允许绑定策略, 用户设备传输业务数据流的当前接入网不为接入网类型信息指示的 接入网时, 接入控制节点阻止用户设备传输的业务数据流, 并发送指示通知用户设备业务数据流被 阻止。
此时, 为了便于理解本发明, 从用户设备角度进一步说明, 用户设备接收接入控制节点发送的 指示通知之后, 包括:
用户设备取消业务数据流与当前接入网的绑定;
用户设备根据接入网选择策略, 为所述业务数据流选择接入网, 若当前没有符合接入网选择策 略的接入网, 则用户设备丢弃所述业务数据流。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 如图 2所示, 对应于上述实施例业务的接入控制方法, 本发明实施例提供一种业务的接入控制 装置, 所述装置包括:
第一获取单元 21, 用于获得业务数据流的接入网选择策略。
第一发送单元 22, 用于将接入网选择策略发送给用户设备。
第一控制单元 23, 用于确定用户设备传输业务数据流的接入网不符合接入网选择策略的接入网 时, 对业务数据流的接入进行控制。
本发明实施例业务的接入控制装置可以为接入控制节点, 如 P-GW分组数据网网关。 UE可以 通过 3GPP系统的接入网和非 3GPP系统的接入网经同一个 P-GW分组数据网服务网关接到同一个 PDN。
本发明实施例的业务的接入控制装置, 通过获得业务数据流的接入网选择策略, 在用户设备根 为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是否符合接入 网选择策略, 以及在用户设备没有按照接入网选择策略执行接入时, 控制选择符合接入网选择策略 的接入网。
具体而言, 接入网选择策略可以参见上述实施例的相同内容得以理解。 业务数据流与接入网的 绑定关系可以上述实施例的参见表 1所示的流绑定列表, 在此不再赘述。
如图 3所示, 具体而言, 第一获取单元 21, 可以包括:
第一获取子单元 31 , 用于从 PCRF策略计费规则功能实体处获得 PCC策略控制和计费规则, 所述 PCC规则携带业务数据流的接入网选择策略。
或者, 第二获取子单元 32, 用于通过本地预先配置获得业务数据流的接入网选择策略。
如图 3所示, 本发明实施例业务的接入控制装置, 还可以包括:
第一绑定单元 34, 用于根据优先绑定策略, 当用户设备发起业务的当前接入网为接入网类型信 息指示的接入网时, 将业务数据流绑定到所述当前接入网; 或者, 用户设备发起业务的当前接入网 不为接入网类型信息指示的接入网, 将业务数据流绑定到当前接入网, 当检测到用户设备同时接入 的另一个接入网为接入网类型信息指示的接入网时, 将业务数据流绑定到接入网类型信息指示的接 入网, 即接入控制节点发起 IP flow mobility ( IP流移动) 过程。
或者, 第二绑定单元 35, 用于根据禁止绑定策略, 当用户设备发起业务的当前接入网为接入网 类型信息指示的接入网时, 用户设备禁止将业务数据流绑定到当前接入网; 反之, 当用户设备发起 业务的当前接入网不为接入网类型信息指示的接入网时, 将业务数据流绑定到当前接入网。
或者, 第三绑定单元 36, 用于根据允许绑定策略, 当用户设备发起业务的当前接入网为接入网 类型信息指示的接入网时, 将业务数据流绑定到当前接入网; 反之, 当用户设备的用当前接入网不 为接入网类型信息指示的接入网时, 用户设备禁止将业务数据流绑定到当前接入网。
可选的, 上述接入控制节点可以将业务数据流与接入网的绑定关系存储在流绑定列表内。 如图 3所示, 具体而言, 第一发送单元 22, 可以包括:
第一发送子单元 37, 用于在使用 GTP ( GPRS Tunneling protocol GPRS, 隧道协议)的系统 中,接入控制节点在 PDN连接建立的过程中,通过会话建立响应消息下发接入网选择策略给用户设 备。
或者,第二发送子单元 38,用于在使用 DSMIPv6 ( Dual Stack Mobile Internet Protocol Version
6,双栈移动互联网协议版本 6 )协议的系统中,接入控制节点在 PDN连接建立的过程中,通过 Binding Acknowledgement (绑定响应) 消息下发接入网选择策略给用户设备。
或者, 第三发送子单元 39, 用于在使用 PMIP ( Proxy Mobile IP, 代理移动 IP) 协议的系统 中, 接入控制节点在 PDN连接建立的过程中, 通过 Proxy Binding Acknowledgement (代理绑定响 应消息) 消息下发接入网选择策略给用户设备。
另外, 存在某些情况下, 用户设备发起业务数据流, 即使业务数据流有对应的接入网绑定, 但 是用户设备也可能没有按照接入网绑定的接入网传输业务数据流, 因此, 接入控制节点需要可以对 业务数据流的接入进行控制, 具体而言, 如图 3所示, 接入控制节点确定用户设备传输业务数据流 使用的当前接入网不符合接入网选择策略的接入网时, 第一控制单元 23, 可以包括:
第一控制子单元 310, 用于根据优先绑定策略, 检测到用户设备接入了接入网类型信息指示的 接入网, 但用户设备传输业务数据流的当前接入网不为接入网类型信息指示的接入网时, 将业务数 据流切换绑定到所述接入网类型信息指示的接入网; 具体的, 接入控制节点将所述业务数据流切换 绑定到所述接入网类型信息指示的接入网, 可以理解为接入控制节点发起的 IP flow mobility ( IP流 移动) 过程, 用户设备和接入控制节点重新执行业务数据流与接入网的绑定。
或者, 第二控制子单元 311 , 用于根据禁止绑定策略, 用户设备传输业务数据流的当前接入网 为接入网类型信息指示的接入网时, 阻止用户设备传输的业务数据流, 并发送指示通知用户设备业 务数据流被阻止。
或者, 第三控制子单元 312, 用于根据允许绑定策略, 用户设备传输业务数据流的当前接入网 不为接入网类型信息指示的接入网时, 点阻止用户设备传输的业务数据流, 并发送指示通知用户设 备业务数据流被阻止。
所述接入控制节点确定用户设备传输业务数据流使用的当前接入网符合接入网选择策略的接入 网时, 本发明实施例业务的接入控制装置, 还可以包括:
第四控制子单元 313, 用于根据优先绑定策略, 用户设备传输业务数据流的当前接入网符合接 入网选择策略时, 将用户设备发送的业务数据流绑定到当前接入网, 允许业务数据流在当前接入网 传输。
或者, 第五控制子单元 314, 用于根据禁止绑定策略, 用户设备传输业务数据流的当前接入网 不为接入网类型信息指示的接入网时, 将用户设备传输的业务数据流绑定到当前接入网, 允许业务 数据流在当前接入网传输。
或者, 第六控制子单元 315, 用于根据允许绑定策略, 用户设备传输业务数据流的当前接入网 为所述接入网类型信息指示的接入网时, 将用户设备传输的业务数据流绑定到当前接入网, 允许业 务数据流在当前接入网传输。
为了更好的理解本发明实施例业务的接入控制装置及其构成, 可以对应参考上述实施例业务的 接入控制方法的相应内容, 在此不再展开赘述。
本发明实施例业务的接入控制装置,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 如图 4所示, 本发明实施例提供一种业务的接入控制方法, 包括:
步骤 41、 用户设备根据接入网选择策略, 确定业务数据流与当前接入网的绑定关系, 接入网选 择策略由控制节点发送, 或由接入网发现和选择功能 ANDSF发送, 或预先配置在用户设备上。
步骤 42、 当用户设备传输业务数据流的接入网不符合接入网选择策略的接入网时, 用户设备接 收接入控制节点发送的指示通知, 为业务数据流选择符合接入网选择策略的接入网。
本发明实施例业务的接入控制方法中的接入控制节点可以为 P-GW分组数据网网关, UE可以 通过 3GPP系统的接入网和非 3GPP系统的接入网经同一个 P-GW分组数据网服务网关接到同一个 PDN。
本发明实施例的业务的接入控制方法, 通过接入控制节点获得业务数据流的接入网选择策略, 用户设备根据所述接入网选择策略为其传输的业务数据流选择接入网, 进而接入控制节点可以确定 用户设备选择的接入网是否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策 略执行接入时, 控制选择符合接入网选择策略的接入网。
具体而言, 所述接入网选择策略可以参考上述实施例的相同内容得以理解, 业务数据流与接入 网的绑定关系可以参见上述实施例的表 1所示的流绑定列表, 接入控制节点确定用户设备传输业务 数据流的接入网不符合接入网选择策略的接入网可以参考上述实施例的相同内容得以理解, 在此不 再赘述。
具体而言, 步骤 41中接入网选择策略, 可以包括:
在 3GPP系统中使用 GTP ( GPRS Tunneling protocol GPRS , 隧道协议), 用户设备可以在 PDN连接建立的过程中, 通过 Create Session Response (建立会话响应) 消息接收接入控制节点 下发的接入网选择策略;
或者, 在非 3GPP系统中使用 DSMIPv6 ( Dual Stack Mobile Internet Protocol Version 6, 双 栈移动互联网协议版本 6 ) 协议, 用户设备可以在 PDN 连接建立的过程中, 通过 (Binding Acknowledgement) 绑定响应消息接收接入控制节点下发的接入网选择策略;
或者, 在非 3GPP系统中使用 PMIP ( Proxy Mobile IP, 代理移动 IP )协议, 用户设备点可以 在 PDN连接建立的过程中, 通过 Proxy Binding Acknowledgement (代理绑定响应消息)接收接入 控制节点下发的接入网选择策略。
可选的, 本发明实施例业务的接入控制方法, 还可以包括:
用户设备从 ANDSF接入网发现和选择功能实体处得到接入网选择策略;
用户设备向接入控制节点发送接入网选择策略, 以使接入网选择策略更新本地设置的接入网选 择策略。
步骤 41用户设备根据所述接入网选择策略,确定业务数据流与当前接入网的绑定关系,可以包 括:
根据优先绑定策略, 当用户设备发起业务的当前接入网为接入网类型信息指示的接入网时, 用 户设备将业务数据流绑定到当前接入网; 或者, 用户设备发起业务的当前接入网不为接入网类型信 息指示的接入网, 用户设备将业务数据流绑定到当前接入网, 当用户设备检测到其同时接入的另一 个接入网为接入网类型信息指示的接入网, 则用户设备将业务数据流绑定到接入网类型信息指示的 接入网, 或者, 当用户设备检测到接入网类型信息指示的接入网可以接入, 则用户设备接入接入网 类型信息指示的接入网,将业务数据流绑定到接入网类型信息指示的接入网,即用户设备发起 IP flow mobility ( IP流移动)过程; 具体的, 由于接入网变化等原因, 用户设备可能可以接入接入网类型信 息指示的接入网, 则用户设备发起 IP流移动过程, 用户设备和接入控制节点重新执行业务数据流与 接入网的绑定;
或者, 根据禁止绑定策略, 当用户设备发起业务的当前接入网不为所述接入网类型信息指示的 接入网时, 用户设备将所述业务数据流绑定到所述当前接入网; 当用户设备发起业务的当前接入网 为所述接入网类型信息指示的接入网时, 用户设备不绑定所述业务数据流, 用户设备发起重新选择 接入;
或者, 根据允许绑定策略, 当用户设备发起业务的当前接入网为所述接入网类型信息指示的接 入网时, 所述用户设备将所述业务数据流绑定到当前接入网; 当用户设备的用当前接入网不为所述 接入网类型信息指示的接入网时, 用户设备不绑定所述业务数据流, 用户设备发起重新选择接入。
其中, 用户设备发起重新选择接入, 可以理解为, 用户设备根据当前的接入网环境重新选择其 它接入网接入, 发起业务的过程。
可选的, 用户设备可以将业务数据流与接入网的绑定存储在用户设备的流绑定列表内。
后续的, 用户设备发起业务数据流, 如果业务数据流没有对应的接入网绑定 (接入网绑定可以 参见用户设备的流绑定列表), 则用户设备丢弃该业务数据, 可以发起重新选择接, 可选的, 用户设 备可以指示应用程序该丢弃数据的错误类型。 如果业务数据流有对应的接入网绑定, 则用户设备按 照接入网绑定将该业务数据流绑定到接入网。
存在某些情况下, 用户设备发起业务数据流, 即使业务数据流有对应的接入网绑定, 但是用户 设备也可能没有按照接入网绑定的接入网传输业务数据流, 对应于, 上述实施例中接入控制节点确 定用户设备发送业务数据流使用的接入网不符合接入网选择策略时, 接入控制节点阻止用户设备传 输的业务数据流, 并发送指示通知用户设备业务数据流被阻止; 此时, 步骤 42用户设备接收接入控 制节点发送的指示通知, 为业务数据流选择符合接入网选择策略的接入网, 可以包括: 用户设备接收接入控制节点发送的指示通知, 指示通知指示阻止用户设备发送的业务数据流; 用户设备取消业务数据流与当前接入网的绑定;
用户设备根据接入网选择策略, 为业务数据流选择接入网。
具体的, 用户设备取消业务数据流与当前接入网的绑定, 根据接入网选择策略, 如果当前有符 合接入网选择策略的接入网, 则用户设备将业务数据流与符合接入网选择策略的接入网绑定, 如果 当前没有符合接入网选择策略的接入网, 则用户设备丢弃业务数据流。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 如图 5所示, 对应于上述实施例业务的接入控制方法, 本发明实施例提供一种用户设备, 包括: 第四绑定单元 51, 用于根据接入网选择策略, 确定业务数据流与当前接入网的绑定关系, 接入 网选择策略由控制节点发送, 或由接入网发现和选择功能 ANDSF发送, 或预先配置在用户设备上。
第二控制单元 52, 用于确定用户设备传输业务数据流的接入网不符合接入网选择策略的接入网 时, 接收接入控制节点发送的指示通知, 为业务数据流选择符合接入网选择策略的接入网。
本发明实施例业务的接入控制方法中的接入控制节点可以为 P-GW分组数据网网关, UE可以 通过 3GPP系统的接入网和非 3GPP系统的接入网经同一个 P-GW分组数据网服务网关接到同一个 PDN。
本发明实施例的业务的接入控制方法, 通过接入控制节点获得业务数据流的接入网选择策略, 用户设备根据所述接入网选择策略为其传输的业务数据流选择接入网, 进而接入控制节点可以确定 用户设备选择的接入网是否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策 略执行接入时, 控制选择符合所述接入网选择策略的接入网。
具体而言, 所述接入网选择策略可以参考上述实施例的相同内容得以理解, 业务数据流与接入 网的绑定关系可以参见上述实施例的表 1所示的流绑定列表, 接入控制节点确定用户设备传输业务 数据流的接入网不符合接入网选择策略的接入网可以参考上述实施例的相同内容得以理解,'在此不 再赘述。
具体的, 第四绑定单元 51, 可以包括:
第一接收子单元, 用于在 3GPP系统中使用 GTP (GPRS Tunneling protocol GPRS, 隧道协 议), 用户设备可以在 PDN连接建立的过程中, 通过 Create Session Response (建立会话响应) 消息接收接入控制节点下发的接入网选择策略。
或者, 第二接收子单元, 用于在非 3GPP系统中使用 DSMIPv6 ( Dual Stack Mobile Internet Protocol Version 6, 双栈移动互联网协议版本 6) 协议, 用户设备可以在 PDN连接建立的过程中, 通过 (Binding Acknowledgement) 绑定响应消息接收接入控制节点下发的接入网选择策略。 或者, 第三接收子单元, 用于在非 3GPP系统中使用 PMIP ( Proxy Mobile IP, 代理移动 IP ) 协议, 用户设备点可以在 PDN连接建立的过程中, 通过 Proxy Binding Acknowledgement (代理绑 定响应消息) 接收接入控制节点下发的接入网选择策略。
可选的, 本发明实施例用户设备, 当接入网选择策略由接入网发现和选择功能 ANDSF实体发 送时, 还可以包括:
第二获取单元, 用于从 ANDSF实体处得到接入网选择策略。
第二发送单元, 用于向所述接入控制节点发送所述接入网选择策略, 以使接入网选择策略更新 本地设置的接入网选择策略。
具体的, 第四绑定单元 51, 可以包括:
第一绑定子单元, 用于根据优先绑定策略, 当用户设备发起业务的当前接入网为接入网类型信 息指示的接入网时, 用户设备将业务数据流绑定到当前接入网; 或者, 用户设备发起业务的当前接 入网不为接入网类型信息指示的接入网, 用户设备将业务数据流绑定到当前接入网, 当用户设备检 测到其同时接入的另一个接入网为接入网类型信息指示的接入网, 则用户设备将业务数据流绑定到 所述接入网类型信息指示的接入网, 或者, 当用户设备检测到接入网类型信息指示的接入网可以接 入, 则用户设备接入接入网类型信息指示的接入网, 将业务数据流绑定到接入网类型信息指示的接 入网, 即用户设备发起 IP flow mobility ( IP流移动) 过程; 具体的, 由于接入网变化等原因, 用户 设备可能可以接入所述接入网类型信息指示的接入网, 则所述用户设备发起 IP流移动过程, 用户设 备和接入控制节点重新执行业务数据流与接入网的绑定。
或者, 第二绑定子单元, 用于根据禁止绑定策略, 当用户设备发起业务的当前接入网为接入网 类型信息指示的接入网时, 用户设备禁止将业务数据流绑定到当前接入网, 用户设备发起重新选择 接入; 反之, 当用户设备发起业务的当前接入网不为接入网类型信息指示的接入网时, 用户设备将 业务数据流绑定到当前接入网。
或者, 第三绑定子单元, 用于根据允许绑定策略, 当用户设备发起业务的当前接入网为接入网 类型信息指示的接入网时, 用户设备将业务数据流绑定到当前接入网; 反之, 当用户设备的用当前 接入网不为接入网类型信息指示的接入网时, 用户设备禁止将业务数据流绑定到当前接入网, 用户 设备发起重新选择接入。
具体而言, 第二控制单元 52, 可以包括- 指示通知接收子单元, 用于接收接入控制节点发送的指示通知, 指示通知指示阻止用户设备发 送的业务数据流。
取消子单元, 用于取消业务数据流与当前接入网的绑定。
接入控制子单元, 用于根据接入网选择策略, 为业务数据流选择接入网。
具体的, 用户设备取消业务数据流与当前接入网的绑定, 根据接入网选择策略, 如果当前有符 合接入网选择策略的接入网, 则用户设备将业务数据流与符合接入网选择策略的接入网绑定, 如果 当前没有符合接入网选择策略的接入网, 则用户设备丢弃业务数据流。
为了更好的理解本发明实施例用户设备及其构成, 可以对应参考上述实施例业务的接入控制方 法的相应内容, 在此不再展开赘述。
本发明实施例用户设备, 网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设 备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是否符合接 入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制节点控制 选择符合接入网选择策略的接入网。 如图 6所示, 以 UE (用户设备)和 P-GW结合说明本发明实施例业务的接入控制方法, 包括:
61、 UE通过当前接入网建立 PDN连接, P-GW获得到业务数据流的接入网选择策略, P-GW 根据接入网选择策略确定业务数据流与接入网的绑定关系, 如业务数据流与当前接入网绑定, 或者, 业务数据流不与当前接入网绑定, 或者, 业务数据流与当前接入网绑定, 存在优先接入网 (指优先 绑定策略指示的接入网) 时, 需进行业务数据流切换。
62、 P-GW将业务数据流的接入网选择策略发送给 UE, UE根据接入网选择策略确定业务数据 流与接入网的绑定关系, 如业务数据流与当前接入网绑定, 或者, 业务数据流不与当前接入网绑定, 或者, 业务数据流与当前接入网绑定, 存在优先接入网时, 需进行业务数据流切换。
63、 UE发起业务数据流, 如果业务数据流没有对应的接入网绑定, 则 UE丢弃该业务数据,
UE可以发起重新选择接入; 如果业务数据流有对应的接入网绑定, 则 UE按照接入网绑定将业务数 据流绑定到接入网; 如果 UE检测到还存在优先接入网, 则 UE接入优先接入网, 并将业务数据流 绑定到优先接入网。
64、 P-GW检测 UE传输业务数据流的当前接入网是否符合接入网选择策略, 如果 UE的当前 接入网是接入网选择策略非禁止使用或允许使用的接入网, P-GW将业务数据流绑定到当前接入网, 即允许在当前接入网中传输此业务数据流; 如果 P-GW检测到 UE还接入了优先接入网, P-GW将 业务数据流切换到优先接入网; 如果 P-GW检测到 UE的当前接入网为接入网选择策略禁止使用或 非允许使用的接入网, P-GW发送阻止的指示给 UE, 告知 UE不允许在当前接入网中传输此业务数 据流。
65、 UE 接收到阻止指示, 根据接入网选择策略选择其他接入网接入, 如果当前无其他接入网 可选, 则丢弃该业务数据流。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 如图 7所示,本发明实施例以 UE (用户设备)通过 3GPP系统的接入网连接到 PDN过程为例, 说明 UE建立 PDN连接, P-GW得到携带有接入网选择策略的 PCC规则, 并下发给 UE, UE和 P-GW根据接入网选择策略进行业务数据流与接入网绑定的过程。
71、 UE发送 PDN Connectivity Request ( PD 连接请求)消息给 MME ( Mobility Management Entity, 移动性管理网元), 其中包括 APN (Access Point Name, 接入点名称), PDN Type ( PDN 类型), PCO ( Protocol Configuration Options, 协议配置项) 等信息。
72、 MME发送 Create Session Request (建立会话请求) 消息给 S-GW (Serving Gateway, 服务网关), 其中包括 UE 的标识, P-GW 地址, PDN 地址, PDN Type, PCO , APN-AMBR (APN-Aggregate Maximum Bit Rate, 聚合最大比特速率), 默认承载 QoS ( Quality of Service, 服务质量) 等信息。
73、 S-GW在其 EPS ( Evolved Packet System, 演进的分组系统) 承载表中新建一个条目, 并发送 Create Session Request消息给 P-GW,其中包括 UE的标识, S-GW的地址和 TEID(Tuunel Endpoint Identifier, 隧道端点标识), APN等信息。
74、 如果有动态 PCC规则的配置, P-GW发送 Indication of IP-CAN Session Establishment
( IP Connectivity Access Network session Establishment, IP连接接入网络会话建立指示) 消息, 其中包括 UE的标识, APN , IP-CAN ( IP Connectivity Access Network session , IP连接接入网 络) 类型等信息, 也包括为 UE分配的 IP地址。
75、 可选地, PCRF与 ANDSF进行交互, PCRF获得接入网选择策略。
76、 PCRF发送 Acknowledge IP-CAN Session Establishment ( IP连接接入网络会话建立响应) 消息到 P-GW, 其中包括携带接入网选择策略的 PCC规则。
77、 P-GW在其 EPS承载上下文表中创建新的条目,根据接收到的携带接入网选择策略的 PCC 规则, 按照接入网选择策略进行业务数据流与接入网绑定。 并且, P- GW 发送 Create Session Response (建立会话响应) 消息给 S-GW, 其中包括携带接入网选择策略的 PCC规则。
可选的, 包含接入网选择策略的 PCC规则可以是在 P-GW上静态配置的。
78、 S-GW发送 Create Session Response消息给 MME , 其中包括携带接入网选择策略的业 务数据流模板 TFT。
79、 MME发送 PDN Connectivity Accept ( PDN 连接确认)消息, 其中包括携带接入网选择策 略的业务数据流模板 TFT, 经 eNodeB ( Evolved Node B , 演进型 Node B ) 转发给 UE。 UE根据 业务数据流模板 TFT中相关的接入网选择策略进行业务数据流与接入网绑定。
后续的, UE发送业务数据流,如果业务数据流没有对应的接入网绑定,则 UE丢弃该业务数据, 可选的, UE 可以指示应用程序该丢弃数据的错误类型。 如果业务数据流有对应的接入网绑定, 则 UE按照接入网绑定将该业务数据与接入网绑定。
后续的, 如果接入网的连接情况发生变化, 如图 7所示实施例中, WLAN系统可连接, 则 UE 检查到有业务数据流需要优先接入 WLAN系统, 则 UE发起 IP flow mobility ( IP流移动)过程, UE 和 P-GW重新执行 IP业务数据流和接入网之间的绑定。 之后, UE发送此业务数据流的数据, 将从 WLAN转发给 P-GW。 后面, 当接入网的连接情况发生变化, 如 WLAN系统不再可用, 则 UE检査 接入网选择策略, 发起 IP flow mobility过程, UE和 P-GW重新执行 IP业务数据流和接入网之间的 绑定, UE发送此业务数据流的数据, 将从 3GPP系统的接入网转发给 P-GW。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 如图 8所示, 本发明实施例以 UE已经同时接入 3GPP系统以及接入非 3GPP系统为例, 在建 立某个 PDN连接的过程中, 网络侧检测到有某种业务的数据传输, 但是 UE没有依据接入网选择策 略将业务数据流与相应的接入网进行绑定, 即业务数据流从非优先的接入网传输到网络侧, 则网络 侧发起 IP flow mobility ( IP流移动) 过程, 通知 UE重新执行业务数据流与接入网绑定的过程。
81、 UE同时接入了一个 3GPP系统和一个非 3GPP系统,并在这两个系统中同时使用一个 PDN 连接。 UE和 HA ( Home Agent, 家乡代理) 之间有多个流绑定。
82、 HA检测或收到指示有业务数据流选择了接入网选择策略指示的非优先的接入网, 如接入 网选择策略指示业务的优先接入网为非 3GPP接入网, 但是, UE当前正使用 3GPP接入网进行该 业务,则 HA发送 Flow Binding Indication (流绑定指示)消息到 UE,更新路由规则,指示由非 3GPP 接入网进行该业务。 Flow Binding Indication消息包括接入网选择策略, HoA ( Home Address, 家 乡地址), BID ( Binding ID, 绑定标识)和 FID ( Flow ID, 流标识), 其中 FID标识现有的业务数据 流, BID标识了此业务数据流所需接入的接入网, 即优先的接入网。
83、 如果 HA功能实现在 P-GW上, 则 P-GW发送 Indication of IP-CAN Session Modification ( IP Connectivity Access Network session , IP连接接入网络会话修改指示) 消息给 PCRF, 提供 更新的路由规则给 PCRF, PC F存储更新的路由地址和接入网之间的映射关系。
84、 UE发送 Flow Binding Acknowledgement (流绑定确认) 消息给 HA, 指示更新的路由规 则被接受。
85、 基于 Indication of IP-CAN Session Modification消息, PCRF发送相关的 QoS规则到非 3GPP系统的 BBERF ( Bearing Binding and Event Report Function, 承载绑定及事件报告功能) 实体中,提供 GW control session and QoS rules provision (网关控制会话及 QoS规则)提供过程。
86、 对于切换到非 3GPP系统的业务数据流, 3GPP系统发起资源释放或修改过程。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 如图 9所示, 本发明实施例以 UE根据从 ANDSF得到的接入网选择策略, 在 3GPP接入网络 发起资源请求流程为例, 说明 UE指示所需修改的业务数据流及所需接入的接入网, 网络侧根据接 收到的或者本地保存的 PCC 规则中的接入网选择策略, 决定是否接受 UE的请求, 进行相应的资 源修改过程, 并在此过程中把接收到的接入网选择策略下发给 UE。
91、 UE在 3GPP系统中发起资源请求过程, 请求的操作包括增加, 修改或删除。 如 UE发送 Request Bearer Resource Modification (承载资源修改请求) 消息给 ΜΜΕ, 其中包括对所需修改 的业务数据流的描述以及所需接入的接入网。
92、 ΜΜΕ将接收到的信息通过 Bearer Resource Command (承载资源命令) 消息, 发送给 93、 S-GW发送 Bearer Resource Command给 P-GW。
94、 如果配置了动态 PCC规则, P-GW将发起 IP-CAN Session Modification过程, 请求新的
PCC规则, 其中包括业务数据流的接入网选择策略。
95、如果资源请求被接受, 则 P-GW根据 UE发送的消息中的请求的操作, 发起承载激活过程, 或承载修改过程, 或承载删除过程。 在此过程中, PGW将接收到的接入网选择策略下发给 UE。
96、 如果步骤 94中 P-GW与 PCRF交互了, 则此时 P-GW通知 PCRF新的 PCC规则是否被 执行, 完成 IP-CAN会话修改过程。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 如图 10所示, 本发明实施例以 UE根据从 ANDSF得到的接入网选择策略, 发起 DSMIPv6过 程为例, 说明 UE指示网络侧接入网选择策略, 网络侧更新本地保存的接入网选择策略的过程。
101、 UE接入了一个非 3GPP系统。 用户设备和 HA之间有多个流绑定。
102、 UE发送 Binding Update (绑定更新) 消息到 HA, 更新路由规则, 消息包括接入网选择 策略, HoA, BID和 FID, 其中 FID标识现有的业务数据流, BID标识了此业务数据流优先的接入 系统。
103、 如果 HA功能实现在 P-GW上, P-GW发送 Indication of IP-CAN Session Modification ( IP-CAN会话修改指示)消息给 PCRF, 提供更新的路由规则给 PCRF, PCRF存储更新的路由地 址和接入系统之间的映射关系。
104、 PCRF发送 Acknowledge IP-CAN Session Modification ( IP-CAN会话修改响应) 消息 给 P-GW, 其中可能包括更新的 PCC规则。
105、 HA发送 Binding Acknowledgement (绑定确认) 消息给 UE, 指示更新的路由规则被接 受。
106、 基于 IP-CAN Session Modification ( IP-CAN会话修改)消息, PCRF发送相关的 QoS 规则到目标非 3GPP系统的 BBERF中, 通过 GW control session and QoS rules provision (网关 控制会话及 QoS规则) 提供过程。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 如图 11所示, 本发明实施例以 UE接入 3GPP系统, 网络侧获得接入网选择策略之后, 网络侧 动态检测到 UE对业务数据与接入网的绑定不符合接入网选择策略为例, 说明网络侧阻止该业务数 据, 并在修改业务数据与接入网的绑定。
111、 UE建立 PDN连接, P-GW获得到业务数据流的接入网选择策略。
112、 P-GW进行接入网选择策略的检测, 确定业务数据流是否绑定了不符合接入网选择策略的 接入网。 如果存在, 则 P-GW阻止此业务数据流的数据在此接入网中传输。 比如某个业务数据流与 3GPP的 E-UTRAN系统绑定, 但是根据接入网选择策略 E-UTRAN系统是此业务数据流的禁止接 入类型, 那么 P-GW就阻止此业务数据流的数据在 E-UTRAN系统中传输。
113、 UE上传上行数据。
114、 P-GW发送阻止的指示给 UE, 告知 UE不允许在 E-UTRAN系统中传输此业务数据流的 数据, 以及依据接入网选择策略修改业务数据流与接入网的绑定。 可选的, P-GW可以利用承载更 新过程通知 UE不允许在 E-UTRAN系统中传输此业务数据流的数据,如 P-GW发送 Update Bearer Request (承载更新请求) 消息给 S- GW, 消息中包括给 UE的 block (阻止) 指示。
115、 S-GW将 Update Bearer Request消息转发给 MME。
116、 MME发送 Downlink NAS Transport (下行 NAS传输, Non-Access-Stratum, 非接入层) 消息给 eNodeB, 其中包括修改业务数据流与接入网绑定以及给 UE的阻止的指示。
117、 eNodeB发送 Direct Transfer (直接传输) 消息给 UE, 其中包括修改业务数据流与接入 网绑定以及给 UE的阻止的指示。
118、 UE更新其上业务数据流与接入网绑定, 发送 Direct Transfer消息给 eNodeB。
119、 eNodeB发送 NAS (下行 NAS传输) 响应消息给 MME, 其中包括承载标识。
1120、 MME发送 Update Bearer Response (承载更新响应) 消息给 S-GW。
1121、 S-GW发送 Update Bearer Response (承载更新响应) 消息给 P-GW。
之后, UE在此接入网再次传输此业务数据流, UE将会收到 P-GW下发的阻止指示, 于是 UE 根据接入网选择策略选择其他接入网接入, 如果当前无其他接入网可选, 则丢弃该业务数据, 并通 知上层应用程序。
需要说明的是: 承载更新过程的步骤可与步骤 114并行, P-GW也可以通过其他消息发送阻止 指示给 UE。
如图 12所示, 本发明实施例以 UE接入非 3GPP系统, 网络侧获得接入网选择策略之后, 网络 侧动态检测到 UE对业务数据与接入网的绑定不符合接入网选择策略为例, 说明网络侧阻止该业务 数据, 并在修改业务数据与接入网的绑定。
121、 UE建立 PDN连接, P-GW获得接入网选择策略。
122、 P-GW进行接入网选择策略的检测,确定业务数据流是否绑定了不符合接入网选择策略的 接入网。 如果存在, 则 P-GW阻止此业务数据流的数据在此接入网中传输。 如存在某个业务数据流 与非 3GPP的 WLAN系统的绑定, 但是 WLAN系统是此业务数据流的禁止接入类型, P-GW就阻 止此业务数据流的数据在 WLAN系统中传输。
123、 UE oh传上行数据。
124、 P-GW发送阻止指示给 UE, 告知 UE不允许在 WLAN系统中传输此业务数据流的数据。
P-GW可以利用绑定更新过程通知 UE, 如 P-GW发送 Flow Binding Indication (流绑定指示)消息 给 UE, 其中携带业务数据流标识 FID, 接入技术指示 BID, 以及 block指示。
125、 UE接收 block指示,发送 Flow Binding Acknowledgement (流绑定确认)消息给 P-GW。 之后, UE在此接入网再次传输此业务数据流, UE将会收到 P-GW下发的阻止指示, 于是 UE 根据接入网选择策略选择其他接入网接入, 如果当前无其他接入网可选, 则丢弃该业务数据, 并通 知上层应用程序。
需要说明的是: 绑定更新过程的步骤可与步骤 124并行, P-GW也可以通过其他消息发送阻止 指示给 UE。
本发明实施例业务的接入控制方法,网络侧的接入控制节点获得业务数据流的接入网选择策略, 在用户设备为其传输的业务数据流选择接入网后, 接入控制节点可以确定用户设备选择的接入网是 否符合接入网选择策略的接入网, 以及在用户设备没有按照接入网选择策略执行接入时, 接入控制 节点控制选择符合接入网选择策略的接入网。 本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程, 是可以通过计算机程 序来指令相关的硬件来完成, 所述的程序可存储亍一计算机可读取存储介质中, 该程序在执行时, 可包括如上述各方法的实施例的流程。 其中, 所述的存储介质可为磁碟、 光盘、 只读存储记忆体 ( Read-Only Memory. ROM ) 或随机存储记忆体 (Random Access Memory, RAM ) 等。

Claims

权利要求
1、 一种业务的接入控制方法, 其特征在于, 所述方法包括:
接入控制节点获得业务数据流的接入网选择策略;
所述接入控制节点将所述接入网选择策略发送给用户设备;
所述接入控制节点确定所述用户设备传输业务数据流的接入网不符合所述接入网选择策略的接 入网时, 所述接入控制节点对所述业务数据流的接入进行控制。
2、根据权利要求 1所述的业务的接入控制方法, 其特征在于, 所述接入控制节点获得业务数据 流的接入网选择策略, 包括:
所述接入控制节点从 PCRF策略计费规则功能实体处获得 PCC策略控制和计费规则,所述 PCC 规则携带所述业务数据流的接入网选择策略;
或者, 所述接入控制节点通过本地预先配置获得所述业务数据流的接入网选择策略; 其中, 所述接入控制节点包括 P-GW分组数据网网关。
3、 根据权利要求 1所述的业务的接入控制方法, 其特征在于, 所述接入网选择策略包括: 业务 数据流信息、 接入网类型信息以及绑定策略信息, 其中, 所述业务数据流信息包括业务数据流模板, 所述绑定策略信息包括:
优先绑定策略: 所述业务数据流信息指示的业务数据流优先与所述接入网类型信息指示的接入 网进行绑定;
或者, 禁止绑定策略: 禁止所述业务数据流信息指示的业务数据流与所述接入网类型信息指示 的接入网进行绑定;
或者, 允许绑定策略: 允许所述业务数据流信息指示的业务数据流与所述接入网类型信息指示 的接入网进行绑定。
4、根据权利要求 3所述的业务的接入控制方法, 其特征在于, 接入控制节点获得业务数据流的 接入网选择策略之后, 将所述接入网选择策略发送给用户设备之前, 所述方法还包括:
根据所述优先绑定策略, 当所述用户设备发起业务的当前接入网为所述接入网类型信息指示的 接入网时, 所述接入控制节点将所述业务数据流绑定到所述当前接入网; 或者, 所述用户设备发起 业务的当前接入网不为所述接入网类型信息指示的接入网, 所述接入控制节点将所述业务数据流绑 定到所述当前接入网, 当所述接入控制节点检测到用户设备同时接入的另一个接入网为所述接入网 类型信息指示的接入网时, 所述接入控制节点将所述业务数据流绑定到所述接入网类型信息指示的 接入网;
或者, 根据所述禁止绑定策略, 当所述用户设备发起业务的当前接入网为所述接入网类型信息 指示的接入网时, 所述接入控制节点不绑定所述业务数据流; 当所述用户设备发起业务的当前接入 网不为所述接入网类型信息指示的接入网时, 所述接入控制节点将所述业务数据流绑定到当前接入 网;
或者, 根据所述允许绑定策略, 当所述用户设备的用当前接入网不为所述接入网类型信息指示 的接入网时, 所述接入控制节点不绑定所述业务数据流; 当所述用户设备发起业务的当前接入网为 所述接入网类型信息指示的接入网时,所述接入控制节点将所述业务数据流绑定到所述当前接入网。
5、根据权利要求 3所述的业务的接入控制方法, 其特征在于, 所述接入控制节点确定所述用户 设备传输业务数据流的接入网不符合所述接入网选择策略的接入网时, 所述接入控制节点对所述业 务数据流的接入进行控制, 包括:
根据所述优先绑定策略, 所述接入控制节点检测到所述用户设备接入了所述接入网类型信息指 示的接入网, 但所述用户设备传输业务数据流的当前接入网不为所述接入网类型信息指示的接入网 时, 所述接入控制节点将所述业务数据流切换绑定到所述接入网类型信息指示的接入网;
或者, 根据所述禁止绑定策略, 所述用户设备传输业务数据流的当前接入网为所述接入网类型 信息指示的接入网时, 所述接入控制节点阻止所述用户设备传输的业务数据流, 并发送指示通知所 述用户设备业务数据流被阻止;
或者, 根据所述允许绑定策略, 所述用户设备传输业务数据流的当前接入网不为所述接入网类 型信息指示的接入网时, 所述接入控制节点阻止所述用户设备传输的业务数据流, 并发送指示通知 所述用户设备业务数据流被阻止。
6、 一种业务的接入控制装置, 其特征在于, 所述装置包括:
第一获取单元, 用于获得业务数据流的接入网选择策略;
第一发送单元, 用于将所述接入网选择策略发送给用户设备;
第一控制单元, 用于确定所述用户设备传输业务数据流的接入网不符合所述接入网选择策略的 接入网, 对所述业务数据流的接入进行控制。
7、 根据权利要求 6所述的业务的接入控制装置, 其特征在于, 所述第一获取单元, 包括: 第一获取子单元, 用于从 PCRF策略计费规则功能实体处获得 PCC策略控制和计费规则, 所 述 PCC规则携带所述业务数据流的接入网选择策略;
或者, 第二获取子单元, 用于通过本地预先配置获得所述业务数据流的接入网选择策略。
8、 根据权利要求 6所述的业务的接入控制装置, 其特征在丁 ·, 所述接入网选择策略包括: 业务 数据流信息、 接入网类型信息以及绑定策略信息, 其中所述业务数据流信息包括业务数据流模板, 所述绑定策略信息包括:
优先绑定策略: 所述业务数据流信息指示的业务数据流优先与所述接入网类型信息指示的接入 网进行绑定;
或者, 禁止绑定策略: 禁止所述业务数据流信息指示的业务数据流与所述接入网类型信息指示 的接入网进行绑定;
或者, 允许绑定策略: 允许所述业务数据流信息指示的业务数据流与所述接入网类型信息指示 的接入网进行绑定。
9、 根据权利要求 8所述的业务的接入控制装置, 其特征在于, 所述装置还包括:
第一绑定单元, 用于根据所述优先绑定策略, 当所述用户设备发起业务的当前接入网为所述接 入网类型信息指示的接入网时, 所述接入控制节点将所述业务数据流绑定到所述当前接入网; 或者, 所述用户设备发起业务的当前接入网不为所述接入网类型信息指示的接入网, 所述接入控制节点将 所述业务数据流绑定到所述当前接入网, 当所述接入控制节点检测到用户设备同时接入的另一个接 入网为所述接入网类型信息指示的接入网时, 所述接入控制节点将所述业务数据流绑定到所述接入 网类型信息指示的接入网;
或者, 第二绑定单元, 用于根据所述禁止绑定策略, 当所述用户设备发起业务的当前接入网为 所述接入网类型信息指示的接入网时, 所述接入控制节点不绑定所述业务数据流; 当所述用户设备 发起业务的当前接入网不为所述接入网类型信息指示的接入网时, 所述接入控制节点将所述业务数 据流绑定到当前接入网;
或者, 第三绑定单元, 用于根据所述允许绑定策略, 当所述用户设备的用当前接入网不为所述 接入网类型信息指示的接入网时, 所述接入控制节点不绑定所述业务数据流; 当所述用户设备发起 业务的当前接入网为所述接入网类型信息指示的接入网时, 所述接入控制节点将所述业务数据流绑 定到所述当前接入网。
10、 根据权利要求 8所述的业务的接入控制装置, 其特征在于, 所述第一控制单元, 包括: 第一控制子单元, 用于根据所述优先绑定策略, 所述接入控制节点检测到所述用户设备接入了 所述接入网类型信息指示的接入网, 但所述用户设备传输业务数据流的当前接入网不为所述接入网 类型信息指示的接入网时, 所述接入控制节点将所述业务数据流切换绑定到所述接入网类型信息指 示的接入网;
或者, 第二控制子单元, 用于根据所述禁止绑定策略, 所述用户设备传输业务数据流的当前接 入网为所述接入网类型信息指示的接入网时, 所述接入控制节点阻止所述用户设备传输的业务数据 流, 并发送指示通知所述用户设备业务数据流被阻 J h;
或者, 第三控制子单元, 用于根据所述允许绑定策略, 所述用户设备传输业务数据流的当前接 入网不为所述接入网类型信息指示的接入网时, 所述接入控制节点阻止所述用户设备传输的业务数 据流, 并发送指示通知所述用户设备业务数据流被阻止。
11、 根据权利要求 6所述的业务的接入控制装置, 其特征在于, 所述业务的接入控制装置包括 P-GW分组数据网网关。
12、 一种业务的接入控制方法, 其特征在于, 所述方法包括:
用户设备根据接入网选择策略, 确定业务数据流与当前接入网的绑定关系, 所述接入网选择策 略由控制节点发送, 或由接入网发现和选择功能 ANDSF发送, 或预先配置在所述用户设备上; 当所述用户设备传输业务数据流的接入网不符合接入网选择策略的接入网时, 所述用户设备接 收所述接入控制节点发送的指示通知, 为业务数据流选择符合接入网选择策略的接入网。
13、 根据权利要求 12所述的业务的接入控制方法, 其特征在于, 所述接入网选择策略包括: 业务数据流信息、 接入网类型信息以及绑定策略信息, 其中, 所述业务数据流信息包括业务数据流 模板, 所述绑定策略信息包括:
优先绑定策略: 所述业务数据流信息指示的业务数据流优先与所述接入网类型信息指示的接入 网进行绑定;
或者, 禁止绑定策略: 禁止所述业务数据流信息指示的业务数据流与所述接入网类型信息指示 的接入网进行绑定;
或者, 允许绑定策略: 允许所述业务数据流信息指示的业务数据流与所述接入网类型信息指示 的接入网进行绑定。
14、 根据权利要求 13所述的业务的接入控制方法, 其特征在于, 所述用户设备根据接入网选 择策略, 确定业务数据流与当前接入网的绑定关系, 包括:
根据所述优先绑定策略, 当所述用户设备发起业务的当前接入网为所述接入网类型信息指示的 接入网时, 所述用户设备将所述业务数据流绑定到所述当前接入网; 或者, 所述用户设备发起业务 的当前接入网不为所述接入网类型信息指示的接入网, 所述用户设备将所述业务数据流绑定到所述 当前接入网, 当所述用户设备检测到其同时接入的另一个接入网为所述接入网类型信息指示的接入 网, 则所述用户设备将所述业务数据流绑定到所述接入网类型信息指示的接入网, 或者, 当所述用 户设备检测到所述接入网类型信息指示的接入网可以接入, 则所述用户设备接入所述接入网类型信 息指示的接入网, 将所述业务数据流绑定到所述接入网类型信息指示的接入网;
或者, 根据所述禁止绑定策略, 当所述用户设备发起业务的当前接入网不为所述接入网类型信 息指示的接入网时, 所述用户设备将所述业务数据流绑定到所述当前接入网; 当所述用户设备发起 业务的当前接入网为所述接入网类型信息指示的接入网时, 所述用户设备不绑定所述业务数据流, 所述用户设备发起重新选择接入;
或者, 根据所述允许绑定策略, 当所述用户设备发起业务的当前接入网为所述接入网类型信息 指示的接入网时, 所述用户设备将所述业务数据流绑定到当前接入网; 当所述用户设备的用当前接 入网不为所述接入网类型信息指示的接入网时, 所述用户设备不绑定所述业务数据流, 所述用户设 备发起重新选择接入。
15、 根据权利要求 13所述的业务的接入控制方法, 其特征在于, 所述用户设备接收所述接入 控制节点发送的指示通知, 为所述业务数据流选择符合接入网选择策略的接入网, 包括- 所述用户设备接收所述接入控制节点发送的指示通知, 所述指示通知指示阻止所述用户设备发 送的业务数据流;
所述用户设备取消业务数据流与当前接入网的绑定;
所述用户设备根据所述接入网选择策略, 为所述业务数据流选择接入网。
16、 一种用户设备, 其特征在于, 所述用户设备包括:
第四绑定单元, 用于根据所述接入网选择策略, 确定业务数据流与当前接入网的绑定关系, 所 述接入网选择策略由控制节点发送, 或由接入网发现和选择功能 ANDSF发送, 或预先配置在所述 用户设备上;
第二控制单元, 用于所述接入控制节点确定所述用户设备传输业务数据流的接入网不符合接入 网选择策略的接入网时, 接收所述接入控制节点发送的指示通知, 为业务数据流选择符合接入网选 择策略的接入网。
17、 根据权利要求 16所述的用户设备, 其特征在于, 所述接入网选择策略包括: 业务数据流 信息、 接入网类型信息以及绑定策略信息, 其中, 所述业务数据流信息包括业务数据流模板, 所述 绑定策略信息包括:
优先绑定策略: 所述业务数据流信息指示的业务数据流优先与所述接入网类型信息指示的接入 网进行绑定;
或者, 禁止绑定策略: 禁止所述业务数据流信息指示的业务数据流与所述接入网类型信息指示 的接入网进行绑定;
或者, 允许绑定策略: 允许所述业务数据流信息指示的业务数据流与所述接入网类型信息指示 的接入网进行绑定。
18、 根据权利要求 17所述的用户设备, 其特征在于, 第四绑定单元, 可以包括:
第一绑定子单元, 用于根据所述优先绑定策略, 当所述用户设备发起业务的当前接入网为所述 接入网类型信息指示的接入网时, 所述用户设备将所述业务数据流绑定到所述当前接入网; 或者, 所述用户设备发起业务的当前接入网不为所述接入网类型信息指示的接入网, 所述用户设备将所述 业务数据流绑定到所述当前接入网, 当所述用户设备检测到其同时接入的另一个接入网为所述接入 网类型信息指示的接入网, 则所述用户设备将所述业务数据流绑定到所述接入网类型信息指示的接 入网, 或者, 当所述用户设备检测到所述接入网类型信息指示的接入网可以接入, 则所述用户设备 接入所述接入网类型信息指示的接入网, 将所述业务数据流绑定到所述接入网类型信息指示的接入 网;
或者, 第二绑定子单元, 用于根据所述禁止绑定策略, 当所述用户设备发起业务的当前接入网 不为所述接入网类型信息指示的接入网时,所述用户设备将所述业务数据流绑定到所述当前接入网; 当所述用户设备发起业务的当前接入网为所述接入网类型信息指示的接入网时, 所述用户设备不绑 定所述业务数据流, 所述用户设备发起重新选择接入;
或者, 第三绑定子单元, 用于根据所述允许绑定策略, 当所述用户设备发起业务的当前接入网 为所述接入网类型信息指示的接入网时, 所述用户设备将所述业务数据流绑定到当前接入网; 当所 述用户设备的用当前接入网不为所述接入网类型信息指示的接入网时, 所述用户设备不绑定所述业 务数据流, 所述用户设备发起重新选择接入。
19、 根据权利要求 16所述的用户设备, 其特征在于, 所述第二控制单元, 包括:
指示通知接收单元, 用于接收所述接入控制节点发送的指示通知, 所述指示通知指示阻止所述 用户设备发送的业务数据流;
取消单元, 用于取消业务数据流与当前接入网的绑定;
接入控制单元, 用于根据所述接入网选择策略, 为所述业务数据流选择接入网。
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