The present invention relates to mobile communication network, particularly to a method of communication under network condition converging cellular network and WLAN.
With the development of the mobile network, more and more smart terminals access mobile data traffic via the mobile communication network, which results in the growing load of the mobile access network and the core network. The capacity of mobile access network and the core network can not follow the exploding user data traffic, which results in congestion or crashing of the network, particular in the area where many subscribers frequently access data traffic. Thus the operators are looking forward for offloading solutions which can efficiently offload the mobile access network and the mobile core network.
Meanwhile, Wi-Fi technique has been rapidly developed. Due to the fact that Wi-Fi has the advantage of a wide bandwidth and low cost, more and more subscribers access mobile data traffic using the resource of WLAN (Wireless Local Area Network) according to Wi-Fi technique. Thus it is desired to offload the mobile communication network via WLAN using Wi-Fi technique.
3rd Generation Partnership Project (3GPP) standard is specifying architectures for the interworking of Wi-Fi and 3GPP networks, which is named as I-WLAN (interworking WLAN), as shown in
a) WLAN access: providing the subscribers with access to the WLAN and the locally connected IP network, so as to be authenticated and authorized through the 3GPP System.
b) WLAN 3GPP Access, allowing WLAN user equipments (UEs) to establish connectivity with External IP networks, such as 3G operator networks. Then, the subscribers could access 3G packet services (PS) via WLAN. Wherein, the Packet Data Network (PDN) to which the UE is to be connected is selected based on the type of the 3G PS-based service requested by the UE. The requested 3G PS-based service is identified by the UE through a WLAN-Access Point Name (W-APN).
While the UE accesses Internet services (direct IP access) and 3GPP services (3GPP IP access) concurrently, it needs to obtain two IP addresses from WLAN network and PDN, since these two kinds of services are provided by two networks with different mechanisms. The IP address obtained from WLAN network is used to connect with the local transport network, so that the data packages sent from UE can be routed to Internet. The IP address allocated by the PDN is used to establish end-to-end tunnel between the UE and the PDN, so that UE can access 3GPP services. The UE is required to have the capability of obtaining two or more IP addresses as well as establishing IPSec tunnel in this solution. These bring additional requirements to the UE and have a bad compatibility concerning the existing UEs in the network.
The purpose of the invention is to provide a method in an access control apparatus in Wireless Local Area Network of routing data package according to the data package address. It is advantageous that requirement of the UE can be thereby simplified and reduced load of the mobile core network and the cellular access network can be achieved.
According to a first aspect of the invention, a method of communication for an access control apparatus under network condition converging cellular network and WLAN is proposed. The method comprises the following steps: receiving an uplink data package from an user equipment; retrieving a destination address of the uplink data package from the received uplink data package; determining the attribution of the destination address, if the destination address is attributed to the fixed network segment, then routing the uplink data package to the fixed access network through Network Address Translation function; if the destination address is attributed to the mobile core network segment, then routing the uplink data package to the mobile core network through Network Address Translation function.
Furthermore, the method comprises a step in which the access control apparatus performs Authentication, Authorization and Accounting (AAA) of the user equipment as an agent.
According to a second aspect of the invention, a method of downlink data communication for an access control apparatus under network condition converging cellular network and WLAN is proposed. The method comprises the following steps: receiving a downlink data package; performing Network Address Translation function, and forwarding the downlink data package to the user equipment corresponding to the downlink data package.
Thus using the above technical solution, WLAN and mobile core network can be simply converged together, and the cellular access network and the mobile core network are offloaded. Furthermore, the above technical solution simplified the requirements of the UE. UE only needs to keep one IP address, thus it is not necessary for the UE to distinguish traffic types, choose or establish complicated transport tunnel. Meanwhile the method would not influence the other network apparatus, and thus the compatibility to the existing UEs and network apparatus is enhanced.
According to a third aspect of the invention, a method of uplink data communication for an user equipment under network condition converging cellular network and WLAN is proposed. The method comprises the following steps: determining an Access Point Name corresponding to the desired data traffic; if the desired data traffic is corresponding to a first type of Access Point Name, encapsulating a data package using a first address as source address; if it is determined that the desired data traffic is corresponding to a second type of Access Point Name, encapsulating a data package using a second address as source address.
According to a fourth aspect of the invention, a method of communication for an access control apparatus under network condition converging cellular network and WLAN is proposed. The method comprises the following steps: receiving an uplink data package from an user equipment; retrieving a source address of the uplink data package from the received uplink data package; determining whether the source address is a first address allocated to the user equipment by the mobile core network or a second address allocated to the user equipment by the fixed network, if the source address is the second address, then forwarding the uplink data package via the fixed network; if the source address is the first address, then forwarding the uplink data package to the mobile core network after adding a head with the source address being the second address and the destination address being the mobile core network gateway address to the uplink data package.
According to a fifth aspect of the invention, a method of downlink data communication for an access control apparatus under network condition converging cellular network and WLAN is correspondingly proposed, wherein, the method comprises the following steps: receiving a downlink data package; determining whether the source address of the downlink data package is attributed to the mobile core network segment or the fixed network segment, if the source address is attributed to the fixed network segment, then forwarding the downlink data package directly to the user equipment corresponding to the downlink data package; if the source address is attributed to the mobile core network segment, then decapsulating the downlink data package, and retrieving an original data package with the destination address being the address allocated to the user equipment by the mobile core network, and then forwarding the original data package to the user equipment.
Consequently, using the above technical solution, the UE can be simplified even if one UE keeps two IP addresses, since it is not necessary for the UE to establish tunnel or support complicated tunnel protocol. Besides, the above technical solution brings anchor in WLAN, ensuring the mobility of the service. When UE enters or leaves WLAN, the continuity of conversation can be maintained without establishing the conversation again.
According to a sixth aspect of the invention, a method of communication based on DSMIP for an access control apparatus under network condition converging cellular network and WLAN is proposed. The method comprises the following steps: receiving an uplink data package encapsulated according to DSMIP protocol from an user equipment; detecting a destination address of an original data package in the uplink data package encapsulated according to DSMIP protocol, and determining its attribution; if the destination address is attributed to the fixed network segment, then discarding the head of DSMIP protocol encapsulation, and routing the original data package directly to the fixed access network; if the destination address is attributed to the mobile core network segment, then routing the tunnel encapsulated uplink data package to the mobile core network.
Consequently, the above technical solution can offload the cellular access network and the mobile core network in DSMIP based network.
According to the solutions in the invention, in the access control apparatus in WLAN, it can be determined to route data package via different path according to the destination address or source address of the data package. WLAN and mobile core network are simply converged together, and the cellular access network and the mobile core network are offloaded. Furthermore, the advantageous of the invention also includes: it is easy to perform uniform accounting. It can help the operators to manage the usage of WLAN, by performing authentication at the first place that the operators can manage and control.
Same or similar reference numerals in the figures refer to the same or similar means.
In
Typically, UE 250 could access 3GPP service, such as Short Message Service (SMS) or Voice over IP (VoIP), etc., through UTRAN 210, via S-GW/SGSN/MME 231 and GGSN/PGW/PDG 233, as well as HA 234.
Furthermore, a function entity of Wireless Access Broker (WAB) 240 is introduced in the embodiment, for performing the method according to the invention, so as to converge WLAN and operators' network together, extend the coverage of the network and offload the mobile access network and the mobile core network. In the following, the Wireless Access Broker is also called access control apparatus.
The method of communication for an access control apparatus under network condition converging cellular network and WLAN shown in
As shown in
Those skilled in the art could appreciate that step S23 and step S24 are optional for the implementation of the invention.
Correspondingly,
In
Typically, UE 550 could access 3GPP service, such as SMS or VoIP, etc., through UTRAN 510, via S-GW/SGSN/MME 531 and GGSN/PGW/PDG 533, as well as HA 534.
Furthermore, a function entity of WAB 540 is also introduced in the embodiment, for performing the method according to the invention, so as to converge WLAN and operators' network together, extend the coverage of the network and offload the mobile access network and the mobile core network. What differs from the embodiment in
After the WAB 540 receives an uplink data package from the UE, it retrieves the source address of the uplink data package from the received uplink data package, and determines whether the source address is Addr. 1 or Addr. 2. If the source address is determined as Addr. 1 in step S53, a head with the source address being the second address and the destination address being the mobile core network gateway address, as shown in
Correspondingly,
Furthermore, 3GPP Rel 8 provides a Dual Stack Mobile IP (DSMIP) mechanism which supports mobility between cellular network and WLAN. However, all the data traffic (including 3GPP service and Internet service) needs to be aggregated in the mobile core network (HA router) while implementing this mechanism. According to the taught of the invention,
In
Typically, UE 950 could access 3GPP service, such as SMS or VoIP, etc., through UTRAN 910, via S-GW/SGSN/MME 931 and GGSN/PGW/PDG 933, as well as HA 934.
Furthermore, a function entity of WAB 940 is also introduced in the embodiment, for performing the method according to the invention, so as to converge WLAN and operators' network together, extend the coverage of the network and offload the mobile access network and the mobile core network. In this embodiment, UE 950 has the Home Address (HoA) of 166.111.4.222 allocated by the mobile core network. When the UE is switched to the WLAN, the WLAN allocates a Care of Address (CoA) of 172.24.149.166 to it. The destination address that the UE tries to access is 162.105.203.16. The UE 950 encapsulates data packages according to DSMIP protocol, establishes tunnel to the HA, and transmits data packages.
Wherein, the WAB 940 according to the invention perform the following steps: in step S91, receiving an uplink data package encapsulated according to DSMIP protocol from the UE 950; in step S92, detecting the destination address of the original data package in the uplink data package encapsulated according to DSMIP protocol, and determining its attribution; if the destination address is attributed to the mobile core network segment, then routing the tunnel encapsulated uplink data package to the mobile core network in step S93; if the destination address is attributed to the fixed network segment, then discarding the head of DSMIP protocol encapsulation in step S94, and routing the original data package directly to the fixed access network in step S95.
In the embodiment shown in
Those skilled in the art could readily appreciate that, the present invention is not limited to the details of the exemplary embodiments above. Other embodiments could be used to implement the present invention without departing from the spirit or basic features of the invention. Thus, the embodiments should be considered as exemplary and non-limiting. Furthermore, the term of “comprise” does not exclude the existence of other element(s) or step(s); and indefinite article “a/an” does not exclude the “multiple” case. Terms of “a first”, “a second” are just used for give a name rather than for representing some particular order.
Number | Date | Country | Kind |
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20110141890.4 | May 2011 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/IB12/00903 | 3/30/2012 | WO | 00 | 10/16/2013 |