[go: up one dir, main page]

CN101730151A - Method, system and access service network gateway for realizing DHCP mode negotiation - Google Patents

Method, system and access service network gateway for realizing DHCP mode negotiation Download PDF

Info

Publication number
CN101730151A
CN101730151A CN200910150605A CN200910150605A CN101730151A CN 101730151 A CN101730151 A CN 101730151A CN 200910150605 A CN200910150605 A CN 200910150605A CN 200910150605 A CN200910150605 A CN 200910150605A CN 101730151 A CN101730151 A CN 101730151A
Authority
CN
China
Prior art keywords
message
dhcp
pdn
asn
pattern
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN200910150605A
Other languages
Chinese (zh)
Other versions
CN101730151B (en
Inventor
楚俊生
霍玉臻
涂杨巍
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Global Innovation Polymerization LLC
Original Assignee
ZTE Corp
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 ZTE Corp filed Critical ZTE Corp
Priority to CN2009101506058A priority Critical patent/CN101730151B/en
Publication of CN101730151A publication Critical patent/CN101730151A/en
Application granted granted Critical
Publication of CN101730151B publication Critical patent/CN101730151B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Mobile Radio Communication Systems (AREA)

Abstract

The invention discloses a method for realizing DHCP mode negotiation, comprising the following steps: after an IPv4 and IPv6 initial service flow between an ASN-GW and a UE of a WiMAX network is established, the ASN-GW transmits a PBU message to a PDN-GW; if applying a DHCP Relay mode, carries a delay IPv4 address application preference indication is carried; otherwise, the delay IPv4 address application preference indication is not carried; the PDN-GW receives the PBU message and transmits a PBA message to the ASN-GW; if the ASN-GW is allowed to utilize the DHCP Relay mode, the PBA message carries the delay IPv4 address application preference indication; otherwise, the PBA message does not carry the IPv4 address application preference indication; after the ASN-GW receives the PBA message, the DHCP mode is set; if the IPv4 address is carried therein to apply for a preference indication, the DHCP mode is configured to be a DHCP Relay mode; otherwise, a DHCP Proxy mode is configured, and the DHCP mode negotiation is finished. In the invention, the method, the system and the access service network gateway can realize the DHCP mode negotiation.

Description

Realize method, system and the access service network gateway of DHCP mode negotiation
Technical field
The present invention relates to the WiMAX technology, relate in particular to a kind of method, system and access service network gateway of the DHCP of realization mode negotiation.
Background technology
WiMAX (World Interoperability for Microwave Access, WiMax, World Interoperability for MicrowaveAccess) network is based on the wireless access wide band technology of IEEE 802.16 standards, can effectively utilize the limited wireless frequency spectrum resource and bigger bandwidth of air-interface (data transmission capabilities of the highest 70Mbps) is provided.But the WiMAX network only provides the connection of IP layer to the user, do not define service control function, and controlled telecommunication service can't be provided, and therefore needs with the other system intercommunication so that amalgamation and coexistence, for operator provides more effective operation.The 3GPP network is the business network of current comparative maturity, also is the architecture of future network development.In order to keep the strong competitiveness of 3-G (Generation Three mobile communication system), must improve its network performance and reduce networking and operation cost at moving communicating field.Therefore, 3GPP (3rd Generation Partnership Project, third generation partner program) standardization effort group is just endeavouring to study core network system evolution---EPC (Evolved PacketCore of future generation at present, the packet-based core networks of evolution), purpose is can be for the user provides higher transmission rate, shorter transmission delay.The intercommunication of WiMAX and two kinds of networks of 3GPP will help two network advantages complementations, and expand the coverage area, allow the mobile subscriber in different Radio Access Network environment, can utilize two characteristics that network is different separately widely in the geographic range, can obtain consistent Operational Visit again.
Fig. 1 is subscriber equipment (User Equipment, be called for short UE) be under the non-roaming situation by WiMAX wireless access network and universal land radio access web (the Evolved UniversalTerrestrial Radio Access Network by evolution, E-UTRAN) access belonging public land mobile network (Home PLMN, abbreviate HPLMN as) structured flowchart, comprise following network element:
Packet data network gateway (Packet Data Network Gateway, abbreviate PDN-GW as): be positioned at the 3GPP network, be used for being responsible for terminal/user equipment (Terminal/User Equipment, be called for short UE, all be same notion in the literary composition) accessing group data net (Packet DataNetwork abbreviates PDN as);
Home subscriber device server (Home Subscriber Server abbreviates HSS as): be positioned at the 3GPP network, be used for forever preserving the subscription data and the secure data of subscriber equipment.
Also comprise among the figure mobile management unit (Mobility Management Entity, MME), gateway (Serving Gateway, S-GW).In order to support the access of non-3GPP connecting system, the EPC system also comprises authentication and authorization charging server (3GPP Authentication, Authorisation andAccounting abbreviate 3GPP AAA Server as) and authentication and authorization charging agency (AAA Proxy).
There is trusting relationship in WiMAX Access Network for trusting between 3GPP network and this WiMAX connecting system, and the WiMAX connecting system can directly insert PDN-GW by the S2a interface.
When 3GPP inserts, UE send Attach Request message to MME to initiate the initial network access attempts and to carry out default PDN establishment of connection.Because the IPv4 address is more rare, exist UE after PDN connection foundation is finished, to pass through the situation of its protocol stack of DHCP (DHCP, Dynamic HostConfiguration Protocol) process application IPv4 address configuration again.Protocol configuration option in the Attach Request message (Protocol Configuration Option, be called for short PCO) be used between UE and PDN-GW, transmitting and the exchange agreement configuration data, " DHCPv4 carries out IPv4 application IP addresses (000BH) " sign wherein is to PDN-GW indication lag IPv4 application IP addresses preference.
The 3GPP network is to postponing specifically being treated to of IPv4 application IP addresses: if when the PDN type that PDN connects is IPv4, PDN-GW carries in returning to the PBA message of S-GW to be the IPv4 address distributed of UE and to postpone the indication of IPv4 application IP addresses preference.In this case, in returning to the response message of UE, will not offer UE, but after default bearer foundation was finished, the follow-up initiation of UE DHCPv4 returned to UE with the address during process again for the IPv4 address that UE distributes.When if the PDN type that PDN connects is IPv4v6, PDN-GW only carries the IPv6 network prefix of distributing into UE and postpones the indication of IPv4 application IP addresses preference in returning to the PBA message of S-GW.In this case, only will offer UE by advertising of route (Router Advertisement is called for short RA) message for the IPv6 network prefix that UE distributes.After default bearer foundation was finished, the follow-up initiation of UE DHCPv4 process was obtained the IPv4 address of distribution again from PDN-GW.
Fig. 2 is default bearer in the 3GPP technology and sets up and finish the flow chart that back UE passes through DHCPv4 process request IPv4 address, may further comprise the steps:
Step 201, UE initiates initial attach request procedure and sets up default PDN to connect;
If the PDN type that PDN connects in initial attaching process is IPv4 or IPv4v6, then UE may will postpone IPv4 application IP addresses indications by the PCO of initial Attach Request message and carry to PDN-GW, will postpone IPv4 application IP addresses preference by PDN-GW in PBA message again and indicate and return to S-GW.
After step 202, default bearer were set up and finished, UE sent DHCPv4 and finds that message application IPv4 address is to carry out protocol configuration;
Step 203~204, if in initial attaching process, the PDN type is under the situation that not have to apply for of IPv4v6 and IPv4 address, then execution in step 203-204 is with the IPv4 address that please look for novelty and upgrade current registration.The IPv4 address parameter of the UE address information field in the PBU message is set to 0.0.0.0, and HNP (Home Network Prefix is called for short home network prefix) is set to the HNP of IP CAN session in the attaching process;
Step 205, S-GW is as DHCP Relay, then will find that by DHCPv4 forwards is to the PDN-GW that takes on the DHCPv4 server for the IPv4 address of UE application;
Step 206, PDN-GW carries out address validation and carries out the Binding Update of UE, and the DHCPv4 that will contain UE IPv4 address after prolongation IP address lease provides gives information and sends to S-GW;
Step 207, S-GW transmits DHCPv4 and gives information to UE;
Step 208, UE sends the DHCPv4 request message to S-GW, wherein carries the IPv4 address of having applied for;
Step 209, S-GW transmits the DHCPv4 request message to PDN-GW, wherein comprises the IPv4 address of asking;
Step 210, PDN-GW returns the DHCPv4 acknowledge message to S-GW, wherein comprises IP address lease time and other configuration informations;
Step 211, S-GW transmits the DHCPv4 acknowledge message to UE;
Step 212, under the situation of having distributed new IPv4 address, PCEF initiates IP-CAN session modification process to the PCRF of home network, if change has taken place the PCC rule, then PCRF will provide the PCC rule of renewal to PDN-GW in this process;
Step 213, if change has taken place the PCC rule, PCRF will be provided by the process that provides of gateway control and QoS rule;
Step 214, S-GW initiates the bearing modification process.
In the WiMAX network design, access service network gateway (Access Service NetworkGateway, be called for short ASN-GW) may be DHCP Relay or DHCP Proxy pattern, and in the WiMAX network, do not ask this class Non-Access Stratum (Non AccessStratum as adhering to of 3GPP network, being called for short NAS) signaling is to transmit PCO information to network, and prior art does not also reach how to realize that the IPv4 address delayed filing of UE proposes solution effectively at the DHCP mode negotiation problem of ASN-GW.
Summary of the invention
The technical problem to be solved in the present invention provides a kind of method, system and access service network gateway of realizing consulting the DHCP pattern, to realize the DHCP mode negotiation.
In order to solve the problems of the technologies described above, the invention provides a kind of method that realizes consulting the DHCP pattern, this method comprises:
After finishing IPv4 and IPv6 initial service flow between the access service network gateway ASN-GW of World Interoperability for Microwave Access, WiMax WiMAX network and the user equipment (UE) and setting up, described ASN-GW sends agent binding update PBU message to core network packet data network gateway PDN-GW, if then carrying, application dynamic host configuration protocol relay DHCP Relay pattern postpones the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference;
Described PDN-GW receives described PBU message and sends agent binding to described ASN-GW and confirms PBA message, if allow described ASN-GW to adopt DHCP Relay pattern, then described PBA message is carried and is postponed the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference;
Described ASN-GW is provided with the DHCP pattern after receiving described PBA message, if wherein carry described delay IPv4 application IP addresses preference indication, it is DHCP Relay pattern that the DHCP pattern then is set, otherwise is set to DHCP Proxy pattern, finishes the DHCP mode negotiation.
Further, carry grouped data network PDN type in the described PBU message, to be said ASN-GW according to user's initial service flow set up described PDN type that situation determines, is IPv4v6.
Further, after finishing the foundation of IPv4 and IPv6 initial service flow between ASN-GW and the described UE, described ASN-GW triggers timer, and dhcp discover message and route RS message have received all or timer expiry that described ASN-GW sends described PBU message to described PDN-GW.
Further, during described timer expiry, described ASN-GW only receives route requests RS message, also carries IPv6 network prefix solicited message in the PBU message that described ASN-GW sends, and also carrying PDN-GW in the described PBA message is the IPv6 network prefix of UE application.
For solving the problems of the technologies described above, the present invention also provides a kind of system that realizes the DHCP mode negotiation, described system comprises the access service network gateway ASN-GW of the World Interoperability for Microwave Access, WiMax WiMAX Access Network that connects by network and the packet data network gateway PDN-GW of 3GPP core net, wherein
Described ASN-GW is used for after IPv4 and the foundation of IPv6 initial service flow, send agent binding update PBU message to described PDN-GW, if then carrying, application DHCP Relay pattern postpones the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference; Also be used to receive the agent binding affirmation PBA message that described PDN-GW sends, and the DHCP pattern is set, if wherein carry described delay IPv4 application IP addresses preference indication, it is DHCP Relay pattern that the DHCP pattern then is set, otherwise is set to DHCP Proxy pattern;
Described PDN-GW, be used to receive described PBU message and send PBA message to described ASN-GW, if allow ASN-GW to adopt DHCP Relay pattern, then described PBA message is carried and is postponed the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference.
Further, PDN-GW is a particular content of determining so described PBA message: postpone the indication of IPv4 application IP addresses preference if carry in the PBU message, then in the PBA message of returning, carry IPv4 address and/or IPv6 network prefix, do not return the indication of delay IPv4 application IP addresses preference into the UE application; Postpone the indication of IPv4 application IP addresses preference if carry in the PBU message, then whether decision allows ASN-GW to take DHCP Relay pattern according to collocation strategy, if allow, then only apply for the IPv6 network prefix for UE and return postponing the indication of IPv4 application IP addresses preference in the PBA message of returning, follow-up ASN-GW will be as DHCP relay; If do not allow, then carry the IPv4 address and/or the IPv6 network prefix of applying for into UE in the PBA message of returning, do not return the indication of delay IPv4 application IP addresses preference, follow-up ASN-GW will be as Dynamic Host Configuration Protocol server.
For solving the problems of the technologies described above, the present invention also provides a kind of access service network gateway of WiMAX Access Network, described access service network gateway consults to determine the DHCP pattern by the packet data network gateway PDN-GW with the 3GPP core net, described access service network gateway comprises that DHCP pattern determination module, the message processing module, the DHCP pattern that are connected with described DHCP pattern determination module are provided with module and with described message processing module and DHCP pattern the transceiver module that module links to each other are set, wherein
Described DHCP pattern determination module is used for determining the DHCP pattern of application and notifying described message processing module;
Described message processing module, be used to generate the agent binding update PBU message that sends to described PDN-GW, in the PDN type is under the situation of IPv4v6, carry the indication of delay IPv4 application IP addresses preference if determine the then described PBU message of application DHCP Relay pattern, otherwise described PBU message is not carried and is postponed the indication of IPv4 application IP addresses preference;
Described DHCP pattern is provided with module, be used for determining the DHCP pattern and being provided with according to the PBA message that PDN-GW sends, postpone the indication of IPv4 application IP addresses preference if carry in the described PBA message, then be set to DHCP Relay pattern, otherwise be set to DHCP Proxy pattern;
Described transceiver module is used for the PBU message that described message processing module generates is sent to described PDN-GW, also is used to receive the PBA message of described PDN-GW transmission and notify described DHCP pattern that module is set.
Further, described access service network gateway also comprises the PDN type determination module that is connected with described message processing module, be used to detect the situation of setting up of initial service flow, and determine the PDN type and notify described message processing module according to the initial service flow of setting up, if judging IPv4 and IPv6 initial service flow sets up, determine that then the PDN type is IPv4v6, carries described PDN type in the described PBU message.
Further, described PDN type determination module detects notifies described transceiver module after initial service flow is set up, timer is set and triggered to described transceiver module, when timer expiry or dhcp discover message and RS message had all been received, described transceiver module was notified described message processing module and is sent described PBU message to described PDN-GW.
Further, during described timer expiry, described transceiver module is only received RS message, also carries IPv6 network prefix solicited message in the PBU message that described transceiver module sends, and also carrying PDN-GW in the PBA message that described transceiver module receives is the IPv6 network prefix of UE application.
When the user inserts the 3GPP core net by the WiMAX Access Network, the inventive method, system and access service network gateway postpone the indication of IPv4 application IP addresses preference is provided with judgement as the DHCP pattern foundation by carrying, satisfying under the condition that postpones the IPv4 application IP addresses, ASN-GW acts on behalf of between UE and the PDN-GW and to consult the DHCP pattern, has solved the problem of the IPv4 address delayed filing of the mode negotiation of DHCP and UE well.
Description of drawings
Fig. 1 is the intercommunication Organization Chart that WiMAX inserts the 3GPP network.
Fig. 2 is the flow chart that UE passed through DHCPv4 process request IPv4 address after default bearer foundation was finished in the existing 3GPP technology.
Fig. 3 is a flow chart of realizing the method for DHCP mode negotiation according to the present invention.
Fig. 4 is the flow chart of application example one of the present invention, and wherein ASN-GW and PDN-GW consult to determine that the DHCP pattern is DHCP Relay in initial attaching process.
Fig. 5 is the flow chart of application example two of the present invention, and wherein ASN-GW and PDN-GW consult to determine that the DHCP pattern is DHCP Proxy and finishes IPv4 and/or the application of IPv6 network prefix in initial attaching process.
Fig. 6 is the flow chart of application example three of the present invention, and wherein ASN-GW and PDN-GW consult to determine that the DHCP pattern is DHCP Proxy and finishes the application of IPv6 network prefix in initial attaching process.
Fig. 7 is the schematic diagram that the present invention realizes the system of DHCP mode negotiation.
Concrete Implementation Modes
When the user inserted the 3GPP core net by the WiMAX Access Network, ASN-GW can set up situation according to user's initial service flow and determine PDN type in the PBU message.When UE supports the PDN type is IPv4v6 and when initiating dhcp process and coming the configuration protocol stack, ASN-GW in this process with PDN-GW by the PBU/PBA interacting message to consult to determine the DHCP pattern of ASN-GW.
Satisfying under the condition that postpones the IPv4 application IP addresses, as shown in Figure 3, ASN-GW acts on behalf of the method that realizes the DHCP mode negotiation between UE and the PDN-GW, may further comprise the steps:
S301, after finishing the foundation of IPv4 and IPv6 initial service flow between ASN-GW and the UE, ASN-GW sends agent binding update PBU message to described PDN-GW, if then carrying, application DHCP Relay pattern postpones the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference;
After having set up IPv4 and IPv6 initial service flow between ASN-GW and the UE, a short timer is set, short timer expiry or dhcp discover message and RS message are all received, then sending agent binding update (Proxy Binding Update is called for short PBU) message to PDN-GW immediately is UE request IP address.
Short timer expiry comprises three kinds of situations, and ASN-GW only receives route requests (Router Solicitation the abbreviates RS as) message (idiographic flow is seen Fig. 4 and Fig. 6) that UE sends; ASN only receives that dhcp discover message (idiographic flow is seen Fig. 5), ASN-GW that UE sends receive dhcp discover message and the RS message (idiographic flow is seen Fig. 5) that UE sends.
The DHCP pattern that ASN-GW determines to wish employing according to system configuration, if the ASN-GW application adopts DHCP Relay pattern to postpone the IPv4 application IP addresses, then insertion postpones the indication of IPv4 application IP addresses preference in the PCO field of the PBU message that sends to PDN-GW; If DHCP Proxy pattern or other situations are adopted in the ASN-GW application, then do not insert this preference indication.
PDN type in the PBU message is that ASN-GW is provided with according to the initial service flow situation that UE sets up, and under the situation of IPv4 and the foundation of IPv6 initial service flow, determines that the PDN type is IPv4v6.
If the PDN type that UE supports is IPv4, then set up the IPv4 initial service flow, if the PDN type that UE supports is IPv6, then set up the IPv6 initial service flow, if the PDN type that UE supports is IPv4v6, then set up two initial service flow of IPv4 and IPv6.The initial service flow situation that the ASN-GW basis is set up for UE is provided with the PDN type field of PBU message, as IPv4, and IPv6 or IPv4v6.
S302, after PDN-GW receives PBU message, send agent binding to described ASN-GW and confirm (Proxy Binding Acknowledge, be called for short PBA) message, if allow ASN-GW to adopt the DHCPRelay pattern, then described PBA message is carried and is postponed the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference;
PDN-GW checks whether carried the indication of delay IPv4 application IP addresses preference in the PCO field.If do not carry, then in the PBA message of returning, carry IPv4 address and/or IPv6 network prefix into the UE application, do not return the indication of delay IPv4 application IP addresses preference.If carried the preference indication, then whether decision allows ASN-GW to take DHCP Relay pattern according to information such as collocation strategies, if allow, then only carry in the PBA message of returning to UE applies for the IPv6 network prefix and return postponing the indication of IPv4 application IP addresses preference, follow-up ASN-GW will be as DHCP relay.If do not allow, then carry the IPv4 address and/or the IPv6 network prefix of applying for into UE in the PBA message of returning, do not return the indication of delay IPv4 application IP addresses preference, follow-up ASN-GW will be as Dynamic Host Configuration Protocol server.
S303, ASN-GW are provided with the DHCP pattern after receiving described PBA message, if wherein carry described delay IPv4 application IP addresses preference indication, it is the Relay pattern that the DHCP pattern then is set, otherwise is set to the Proxy pattern, finishes the DHCP mode negotiation.
ASN-GW is after receiving the PBA message of PDN-GW, postpone the indication of IPv4 application IP addresses preference and indicated the indication of delay IPv4 application IP addresses preference to PDN-GW in PBU message before this if find not to be provided with in PBA message, this moment, ASN-GW need its current DHCP pattern be set to DHCP Proxy pattern.
S304, if the ASN-GW after consulting is a DHCP Relay pattern, then follow-up receive the dhcp message of UE after, directly be transmitted to PDN-GW; If the ASN-GW after consulting is a DHCP Proxy pattern, then ASN-GW can not transmit dhcp message and give PDN-GW, the dhcp process that the UE that promptly terminates initiates as Dynamic Host Configuration Protocol server.
Application example below in conjunction with Fig. 4, Fig. 5 and Fig. 6 description is elaborated to the inventive method:
Application example one
Fig. 4 is that the PDN type that UE supports is under the situation of IPv4v6, and ASN-GW only receives the RS message that UE sends during timer expiry, and the flow chart of ASN-GW and the definite DHCP pattern DHCP Relay of PDN-GW negotiation, may further comprise the steps:
Step 401, terminal are carried out initial WiMAX network insertion process;
EAP access authentication, mandate and cipher key delivery flow process are initiated and carried out to step 402;
Step 403, after successful authentication and the mandate, the PDN type that UE supports is IPv4v6, then sets up two initial service flow of IPv4 and IPv6;
ASN-GW is IPv4v6 according to the PDN type field that the initial service flow situation of setting up for UE is provided with PBU message, agent binding update messages is set simultaneously triggers timer wait UE transmission dhcp discover message request IPv4 address and/or RS message request IPv6 network prefix.
Step 404 when ASN-GW triggers timer expiry at agent binding update messages, only receives that the RS message of UE transmission is carried out address configuration with request IPv6 network prefix;
Step 405, it is that terminal is obtained the PDN address that DHCP Relay pattern is adopted in the ASN-GW application, then inserts to postpone the indication of IPv4 application IP addresses preference in the PCO of PBU message field;
Step 406 sends PBU message to PDN-GW among the ASN GW, wherein carries IPv6 network prefix solicited message, and postpones the indication of IPv4 application IP addresses preference;
Step 407, PDN-GW is checked through in the PCO of PBU message field and postpones the indication of IPv4 application IP addresses preference, and, then in PBA message, only carry to UE application IPv6 network prefix and delay IPv4 application IP addresses preference is set and indicate according to the definite DHCP Relay pattern that allows the ASN-GW indication of system configuration;
Step 408, PDN-GW sends to 3GPP AAA and upgrades the PDN-GW address message;
Step 409, PDN-GW returns PBA message to ASN-GW, wherein carries IPv6 network prefix and the indication of delay IPv4 application IP addresses preference into the UE application;
Step 410 is set up the PMIPv6 passage between ASN-GW and the PDN-GW;
Step 411, ASN-GW has indicated the indication of delay IPv4 application IP addresses preference to PDN-GW in PBU, and when PBA message, be checked through and postpone the indication of IPv4 application IP addresses preference, expression is DHCP Relay with the DHCP pattern that PDN-GW consults, and it is DHCP Relay pattern that ASN-GW is provided with current pattern;
Step 412, ASN-GW sends advertising of route message to UE, carries the IPv6 network prefix into the UE application;
Step 413, UE sends DHCPv4 to ASN-GW and finds message, request IPv4 address;
Step 414~415, ASN-GW and PDN-GW are UE application IPv4 address alternately;
Step 416, the DHCP role that ASN-GW determines in step 411 be Relay, then ASN-GW transmits DHCPv4 to PDN-GW and finds message, and setting by step 414~415 from IPv4 address that PDN-GW obtains;
Step 417, PDN-GW sends DHCPv4 to ASN-GW and gives information, and carries the IPv4 address of distributing into UE;
Step 418, ASN-GW transmits DHCPv4 to UE and gives information;
Step 419, UE sends the DHCPv4 request message to ASN-GW, wherein carries the IPv4 address of having applied for;
Step 420, ASN-GW transmits the DHCPv4 request message and gives PDN-GW;
Step 421, PDN-GW returns the DHCPv4 acknowledge message to ASN-GW;
Step 422, ASN-GW transmits the DHCPv4 acknowledge message to UE;
Step 423 is finished the attaching process of L3 at WiMAX ASN.
IP connection foundation is finished between UE and the PDN GW at this moment, and terminal can be carried out IP operation.
Application example two
Fig. 5 is that the PDN type that UE supports is under the situation of IPv4v6, ASN-GW receives that the DHCPv4 that UE sends finds message or receives that DHCPv4 finds message and RS message during timer expiry, and ASN-GW and PDN-GW consult to determine that the DHCP pattern is the flow chart of DHCP Proxy, and this flow process comprises:
Step 501~503 are with step 401~403;
Step 504 when ASN-GW triggers timer expiry at agent binding update messages, receives that the DHCPv4 that UE sends finds message request IPv4 address or receives that DHCPv4 finds that message request and RS message request IPv6 network prefix are to carry out address configuration;
Step 505 if DHCP Relay pattern is adopted in the ASN-GW application, then is provided with the indication of delay IPv4 application IP addresses preference in the PCO of PBU message field; If DHCP Proxy pattern is adopted in the ASN-GW application, the indication of delay IPv4 application IP addresses preference is not set in the PCO of PBU message field then;
Step 506, ASN GW sends PBU message to PDN-GW;
Step 507, if being checked through, PDN-GW do not postpone the indication of IPv4 application IP addresses preference in the PCO of PBU message field, perhaps detect and postpone the indication of IPv4 application IP addresses preference but the definite DHCP Relay pattern that does not allow the ASN-GW indication of system configuration, then in PBA message, be returned as IPv4 address or the IPv4 address and the IPv6 network prefix of UE application, the indication of delay IPv4 application IP addresses preference is not set;
Step 508, PDN-GW sends to 3GPP AAA and upgrades the PDN-GW address message;
Step 509, PDN-GW returns PBA message to ASN-GW, wherein carries IPv4 address or IPv4 address and IPv6 network prefix;
Step 510 is set up the PMIPv6 passage between ASN-GW and the PDN-GW;
Step 511, ASN-GW is not checked through when PBA message and postpones the indication of IPv4 application IP addresses preference, and expression is DHCP Proxy with the DHCP pattern that PDN-GW consults, and then current pattern is set is DHCP Proxy pattern to ASN-GW;
Step 512, if UE has sent route request information in step 504, and ASN-GW gets access to the IPv6 network prefix of distributing into UE from PDN-GW, then sends advertising of route message to UE, wherein carries the IPv6 network prefix into the UE application; If UE has sent DHCPv4 in step 504 and given information, and ASN-GW gets access to the IPv4 address of distributing into UE from PDN-GW, and then execution in step 513~515;
Step 513, ASN-GW sends DHCPv4 to UE and gives information, and wherein carries the IPv4 address into the UE application;
Step 514, UE sends the DHCPv4 request message to ASN-GW, wherein carries the IPv4 address of having applied for;
Step 515, ASN-GW sends the DHCPv4 acknowledge message to UE;
Step 516 is finished the attaching process of L3 at WiMAX ASN.
IP connection foundation is finished between UE and the PDN GW at this moment, and terminal can be carried out IP operation.
Application example three
Fig. 6 is that the PDN type that UE supports is under the situation of IPv4v6, and ASN-GW only receives the RS message that UE sends during timer expiry, and ASN-GW to consult definite DHCP pattern with PDN-GW be the flow chart of DHCP Proxy, this flow process comprises:
Step 601~603 are with step 501~503;
Step 604, when ASN-GW triggered timer expiry at agent binding update messages, the RS message request IPv6 network prefix of receiving the UE transmission was to carry out address configuration;
Step 605~611 are with step 505~511;
Different with Fig. 5 is, among Fig. 6 among PBU and the PBA application and return have only the IPv6 network prefix.
Step 612, the IPv6 network prefix of distributing for UE that ASN-GW will get access to from PDN-GW sends to UE by advertising of route message;
Step 613, after ASN-GW and PDN-GW have consulted DHCP role, UE send DHCPv4 find broadcast to network with request IPv4 address;
Step 614~615, ASN-GW and PDN-GW are UE application IPv4 address alternately;
Step 616, ASN-GW sends DHCPv4 to UE and gives information, and wherein carries the IPv4 address into the UE application;
Step 617, UE sends the DHCPv4 request message to ASN-GW, wherein carries the IPv4 address of having applied for;
Step 618, ASN-GW sends the DHCPv4 acknowledge message to UE;
Step 619 is finished the attaching process of L3 at WiMAX ASN.
IP connection foundation is finished between UE and the PDN GW at this moment, and terminal can be carried out IP operation.
In order to realize above method, the present invention also provides a kind of system of the DHCP of realization mode negotiation, and as shown in Figure 7, described system comprises the access service network gateway ASN-GW of the WiMAX Access Network that connects by network and the PDN-GW of 3GPP core net, wherein,
Described ASN-GW is used for after IPv4 and the foundation of IPv6 initial service flow, send agent binding update PBU message to described PDN-GW, if then carrying, application DHCP Relay pattern postpones the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference; Also be used to receive the PBA message that described PDN-GW sends, and the DHCP pattern is set, if wherein carry described delay IPv4 application IP addresses preference indication, it is DHCP Relay pattern that the DHCP pattern then is set, otherwise is set to DHCP Proxy pattern;
Described PDN-GW, be used to receive described PBU message and send PBA message to described ASN-GW, if allow ASN-GW to adopt DHCP Relay pattern, then described PBA message is carried and is postponed the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference.
After described PDN-GW receives described PBU message, determine whether to allow the DHCP pattern of described ASN-GW application according to system configuration.
PDN-GW is a particular content of determining so described PBA message: postpone the indication of IPv4 application IP addresses preference if carry in the PBU message, then in the PBA message of returning, carry IPv4 address and/or IPv6 network prefix, do not return the indication of delay IPv4 application IP addresses preference into the UE application; Postpone the indication of IPv4 application IP addresses preference if carry in the PBU message, then whether decision allows ASN-GW to take DHCP Relay pattern according to collocation strategy, if allow, then only apply for the IPv6 network prefix for UE and return postponing the indication of IPv4 application IP addresses preference in the PBA message of returning, follow-up ASN-GW will be as DHCP relay; If do not allow, then carry the IPv4 address and/or the IPv6 network prefix of applying for into UE in the PBA message of returning, do not return the indication of delay IPv4 application IP addresses preference, follow-up ASN-GW will be as Dynamic Host Configuration Protocol server.
Particularly, access service network gateway ASN-GW of the present invention consults to determine the DHCP pattern by the packet data network gateway PDN-GW with the 3GPP core net, comprise that DHCP pattern determination module, the message processing module, the DHCP pattern that are connected with described DHCP pattern determination module are provided with module and with described message processing module and DHCP pattern the transceiver module that module links to each other are set, wherein
Described DHCP pattern determination module is used for determining the DHCP pattern of application and notifying described message processing module;
Described message processing module, be used to generate the agent binding update PBU message that sends to described PDN-GW, in the PDN type is under the situation of IPv4v6, carry the indication of delay IPv4 application IP addresses preference if determine the then described PBU message of application DHCP Relay pattern, otherwise described PBU message is not carried and is postponed the indication of IPv4 application IP addresses preference;
Described DHCP pattern is provided with module, be used for determining the DHCP pattern and being provided with according to the PBA message that PDN-GW sends, postpone the indication of IPv4 application IP addresses preference if carry in the described PBA message, then be set to DHCP Relay pattern, otherwise be set to DHCP Proxy pattern.
Described transceiver module is used for the PBU message that message processing module generates is sent to described PDN-GW, also is used to receive the PBA message of described PDN-GW transmission and notify the DHCP pattern that module is set.
Described access service network gateway also comprises the PDN type determination module that is connected with described message processing module, be used to detect the situation of setting up of initial service flow, and determine the PDN type and notify described message processing module according to the initial service flow of setting up, set up if judge IPv4 and IPv6 initial service flow, determine that then the PDN type is IPv4v6.
Described PDN type determination module detects notifies described transceiver module after initial service flow is set up, timer is set and triggered to described transceiver module, when timer expiry or dhcp discover message and RS message had all been received, described transceiver module was notified described message processing module and is sent described PBU message to described PDN-GW.
If during described timer expiry, described transceiver module is only received RS message, also carry IPv6 network prefix solicited message in the PBU message that described transceiver module sends, also carrying PDN-GW in the PBA message that described transceiver module receives is the IPv6 network prefix of UE application.
The above-mentioned just embodiment of the invention.The present invention also can have other various embodiments; under the situation that does not deviate from spirit of the present invention and essence thereof; those of ordinary skill in the art are when making various corresponding changes and distortion according to the present invention, and these change and be out of shape the protection range that all should belong to the appended claim of the present invention accordingly.
When the user inserts the 3GPP core net by the WiMAX Access Network, the inventive method, system and access service network gateway postpone the indication of IPv4 application IP addresses preference is provided with judgement as the DHCP pattern foundation by carrying, satisfying under the condition that postpones the IPv4 application IP addresses, ASN-GW acts on behalf of between UE and the PDN-GW and to consult the DHCP pattern, has solved the problem of the IPv4 address delayed filing of the mode negotiation of DHCP and UE well.

Claims (10)

1. a method that realizes consulting the DHCP pattern is characterized in that, this method comprises:
After finishing IPv4 and IPv6 initial service flow between the access service network gateway ASN-GW of World Interoperability for Microwave Access, WiMax WiMAX network and the user equipment (UE) and setting up, described ASN-GW sends agent binding update PBU message to core network packet data network gateway PDN-GW, if then carrying, application dynamic host configuration protocol relay DHCP Relay pattern postpones the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference;
Described PDN-GW receives described PBU message and sends agent binding to described ASN-GW and confirms PBA message, if allow described ASN-GW to adopt DHCP Relay pattern, then described PBA message is carried and is postponed the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference;
Described ASN-GW is provided with the DHCP pattern after receiving described PBA message, if wherein carry described delay IPv4 application IP addresses preference indication, it is DHCP Relay pattern that the DHCP pattern then is set, otherwise is set to DHCP Proxy pattern, finishes the DHCP mode negotiation.
2. the method for claim 1 is characterized in that: carry grouped data network PDN type in the described PBU message, described PDN type is that said ASN-GW sets up situation according to user's initial service flow and determines, is IPv4v6.
3. the method for claim 1, it is characterized in that: after finishing the foundation of IPv4 and IPv6 initial service flow between ASN-GW and the described UE, described ASN-GW triggers timer, dhcp discover message and route RS message have received all or timer expiry that described ASN-GW sends described PBU message to described PDN-GW.
4. method as claimed in claim 3, it is characterized in that: during described timer expiry, described ASN-GW only receives route requests RS message, also carry IPv6 network prefix solicited message in the PBU message that described ASN-GW sends, also carrying PDN-GW in the described PBA message is the IPv6 network prefix of UE application.
5. system that realizes the DHCP mode negotiation, it is characterized in that: described system comprises the access service network gateway ASN-GW of the World Interoperability for Microwave Access, WiMax WiMAX Access Network that connects by network and the packet data network gateway PDN-GW of 3GPP core net, wherein
Described ASN-GW is used for after IPv4 and the foundation of IPv6 initial service flow, send agent binding update PBU message to described PDN-GW, if then carrying, application DHCP Relay pattern postpones the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference; Also be used to receive the agent binding affirmation PBA message that described PDN-GW sends, and the DHCP pattern is set, if wherein carry described delay IPv4 application IP addresses preference indication, it is DHCP Relay pattern that the DHCP pattern then is set, otherwise is set to DHCP Proxy pattern;
Described PDN-GW, be used to receive described PBU message and send PBA message to described ASN-GW, if allow ASN-GW to adopt DHCP Relay pattern, then described PBA message is carried and is postponed the indication of IPv4 application IP addresses preference, otherwise, do not carry the indication of delay IPv4 application IP addresses preference.
6. system as claimed in claim 5, it is characterized in that: PDN-GW is a particular content of determining so described PBA message: postpone the indication of IPv4 application IP addresses preference if carry in the PBU message, then in the PBA message of returning, carry IPv4 address and/or IPv6 network prefix, do not return the indication of delay IPv4 application IP addresses preference into the UE application; Postpone the indication of IPv4 application IP addresses preference if carry in the PBU message, then whether decision allows ASN-GW to take DHCP Relay pattern according to collocation strategy, if allow, then only apply for the IPv6 network prefix for UE and return postponing the indication of IPv4 application IP addresses preference in the PBA message of returning, follow-up ASN-GW will be as DHCP relay; If do not allow, then carry the IPv4 address and/or the IPv6 network prefix of applying for into UE in the PBA message of returning, do not return the indication of delay IPv4 application IP addresses preference, follow-up ASN-GW will be as Dynamic Host Configuration Protocol server.
7. the access service network gateway of a WiMAX Access Network, it is characterized in that: described access service network gateway consults to determine the DHCP pattern by the packet data network gateway PDN-GW with the 3GPP core net, described access service network gateway comprises that DHCP pattern determination module, the message processing module, the DHCP pattern that are connected with described DHCP pattern determination module are provided with module and with described message processing module and DHCP pattern the transceiver module that module links to each other are set, wherein
Described DHCP pattern determination module is used for determining the DHCP pattern of application and notifying described message processing module;
Described message processing module, be used to generate the agent binding update PBU message that sends to described PDN-GW, in the PDN type is under the situation of IPv4v6, carry the indication of delay IPv4 application IP addresses preference if determine the then described PBU message of application DHCP Relay pattern, otherwise described PBU message is not carried and is postponed the indication of IPv4 application IP addresses preference;
Described DHCP pattern is provided with module, be used for determining the DHCP pattern and being provided with according to the PBA message that PDN-GW sends, postpone the indication of IPv4 application IP addresses preference if carry in the described PBA message, then be set to DHCP Relay pattern, otherwise be set to DHCP Proxy pattern;
Described transceiver module is used for the PBU message that described message processing module generates is sent to described PDN-GW, also is used to receive the PBA message of described PDN-GW transmission and notify described DHCP pattern that module is set.
8. access service network gateway as claimed in claim 7, it is characterized in that: described access service network gateway also comprises the PDN type determination module that is connected with described message processing module, be used to detect the situation of setting up of initial service flow, and determine the PDN type and notify described message processing module according to the initial service flow of setting up, if judging IPv4 and IPv6 initial service flow sets up, determine that then the PDN type is IPv4v6, carries described PDN type in the described PBU message.
9. access service network gateway as claimed in claim 8, it is characterized in that: described PDN type determination module detects notifies described transceiver module after initial service flow is set up, timer is set and triggered to described transceiver module, when timer expiry or dhcp discover message and RS message had all been received, described transceiver module was notified described message processing module and is sent described PBU message to described PDN-GW.
10. access service network gateway as claimed in claim 9, it is characterized in that: during described timer expiry, described transceiver module is only received RS message, also carry IPv6 network prefix solicited message in the PBU message that described transceiver module sends, also carrying PDN-GW in the PBA message that described transceiver module receives is the IPv6 network prefix of UE application.
CN2009101506058A 2009-06-19 2009-06-19 Method, system and access service network gateway for realizing DHCP mode negotiation Expired - Fee Related CN101730151B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2009101506058A CN101730151B (en) 2009-06-19 2009-06-19 Method, system and access service network gateway for realizing DHCP mode negotiation

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2009101506058A CN101730151B (en) 2009-06-19 2009-06-19 Method, system and access service network gateway for realizing DHCP mode negotiation

Publications (2)

Publication Number Publication Date
CN101730151A true CN101730151A (en) 2010-06-09
CN101730151B CN101730151B (en) 2012-05-09

Family

ID=42450166

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2009101506058A Expired - Fee Related CN101730151B (en) 2009-06-19 2009-06-19 Method, system and access service network gateway for realizing DHCP mode negotiation

Country Status (1)

Country Link
CN (1) CN101730151B (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013041063A1 (en) * 2011-09-23 2013-03-28 中兴通讯股份有限公司 Method and system for accessing core network and for network side to initiate detachment
CN103024737A (en) * 2011-09-23 2013-04-03 中兴通讯股份有限公司 Trusted non-3GPP (3rd-Generation Partnership Project) access network element, method for accessing mobile network and detaching method
CN103167461A (en) * 2011-12-15 2013-06-19 中兴通讯股份有限公司 Method and device of conversation processing
CN103796281A (en) * 2012-11-05 2014-05-14 中兴通讯股份有限公司 Management method, device and system for packet-data network type

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6618757B1 (en) * 2000-05-17 2003-09-09 Nortel Networks Limited System and method for dynamic IP address management
CN100563221C (en) * 2006-05-26 2009-11-25 华为技术有限公司 A method and system for acquiring terminal address-related information
CN100596231C (en) * 2006-07-14 2010-03-24 华为技术有限公司 Implementation method, system and device for allocating target care-of address for user equipment

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2013041063A1 (en) * 2011-09-23 2013-03-28 中兴通讯股份有限公司 Method and system for accessing core network and for network side to initiate detachment
CN103024865A (en) * 2011-09-23 2013-04-03 中兴通讯股份有限公司 Method and system for accessing core network and triggering detachment from network side
CN103024737A (en) * 2011-09-23 2013-04-03 中兴通讯股份有限公司 Trusted non-3GPP (3rd-Generation Partnership Project) access network element, method for accessing mobile network and detaching method
EP2760231A4 (en) * 2011-09-23 2015-03-11 Zte Corp RELIABLE ACCESS NETWORK ELEMENT OTHER THAN 3GPP, AND METHOD OF ACCESSING AND DETACHING A MOBILE NETWORK THEREFOR
US9467962B2 (en) 2011-09-23 2016-10-11 Zte Corporation Trusted non-3GPP access network element, and method for accessing mobile network and de-attachment
CN103024737B (en) * 2011-09-23 2017-08-11 中兴通讯股份有限公司 Trusted non-3 GPP access network element, access to mobile network and de-adherence method
CN103167461A (en) * 2011-12-15 2013-06-19 中兴通讯股份有限公司 Method and device of conversation processing
CN103796281A (en) * 2012-11-05 2014-05-14 中兴通讯股份有限公司 Management method, device and system for packet-data network type

Also Published As

Publication number Publication date
CN101730151B (en) 2012-05-09

Similar Documents

Publication Publication Date Title
EP2952056B1 (en) Mobile gateway selection using a direct connection between a pcrf node and a mobility management node
US9717019B2 (en) Data flow control method, and related device and communications system
CN101296504B (en) Method, system and device for implementing IP multimedia subsystem service in roaming network
CN101931946B (en) Multi-access method of terminal in evolved packet system and system thereof
CN110495214A (en) For handling the method and AMF node of PDU session establishment process
CN105813153B (en) Inter-network switch method, network element and system
CN101448248B (en) Method for processing different user attach types by core network of evolved packet system
CN104170330B (en) Method and apparatus for communication
CN102695236B (en) A kind of data routing method and system
CN102904856B (en) A kind of control method and device of shared session
EP2916592A1 (en) Packet data network type management method, device, and system
EP3340691A1 (en) Method for initiating wi-fi voice service, lte communication device, terminal, and communication system
CN103200628A (en) Method and system for accessing core network through non-third generation partnership project (non-3GPP)
CN101730151B (en) Method, system and access service network gateway for realizing DHCP mode negotiation
CN101267656A (en) Method and system for transmitting PCC rules and QoS information
CN106470397B (en) Method for acquiring terminal position in WiFi network, terminal, LTE communication equipment and system
CN102076113B (en) Optimization method and system for to-adhering of terminal from network side, and access gateway
CN101369939A (en) Access network type information transmission method, system and related equipment
CN101730175A (en) Network switching method and system of WiMAX and 3GPP Pre-R8 double-mode terminal
KR20130015602A (en) Method for providing selective call procedure in mobile communication service system, packet data network gateway and online charging system for selective call procedure
CN101959313B (en) Strategy and charging control system and method
CN102781093B (en) The Notification Method and system of a kind of user profile
CN101616470A (en) Service processing method, network system and equipment of multi-mode multi-standby terminal
CN102238756A (en) Network connection establishing method, device and system
EP2312893A1 (en) IP flow removal method for untrusted non-3GPP access points

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20180427

Address after: California, USA

Patentee after: Global innovation polymerization LLC

Address before: 518057 Department of law, Zhongxing building, South hi tech Industrial Park, Nanshan District hi tech Industrial Park, Guangdong, Shenzhen

Patentee before: ZTE Corp.

CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120509