Abstract:
In a first aspect of the disclosure, a method performed by an AAA server (103) of authenticating a non-SIM mobile terminal (111) with a wireless network (100) is provided. The method comprises receiving (S201) a request for service of the non-SIM mobile terminal (111), authenticating (S202) the non-SIM mobile terminal (111), submitting (S203) a request for subscriber profile data associated with the non-SIM mobile terminal (111) to an HSS (105), the subscriber profile data request comprising an indication that the non-SIM mobile terminal (111) has been authenticated by the AAA server (103), and to receiving (S204) from the HSS (105), in response to the indication that the non-SIM mobile terminal (111) has been authenticated, the requested subscription profile data.
Abstract:
An example method is provided and may include retrieving by a user equipment (UE) an access point (AP) Media Access Control (MAC) address for an AP to which the UE is connected; reporting location information for the UE to an evolved Packet Data Gateway over an SWu interface using Internet Key Exchange version 2 (IKEv2) protocol, wherein the location information includes, at least in part, a UE location in GPS coordinates, a service set identifier, the retrieved AP MAC address and cell identity information for the UE; and populating a location database with the location information. The method can include embedding the location information in an identity initiator (Idi) of an IKE Authentication Request (IKE_AUTH_REQ) message using a Network Access Identifier (NAI) and communicating the location information from the ePDG to a PGW over an S2b interface using a private extension information element of GPRS Tunneling Protocol version 2 (GTPv2).
Abstract:
A method includes receiving, at a mobile device during a first association with a first access point (AP), a first internet protocol (IP) address assigned by a dynamic host configuration protocol (DHCP) server. The method also includes, based on handoff of the mobile device from the first AP to a second AP, sending an association request from the mobile device to the second AP. The association request includes the first IP address. The method further includes receiving the first IP address at the mobile device during a second association with the second AP, the first IP address reassigned to the mobile device by the second AP.
Abstract:
The present invention is applicable to the field of communications, and provides an HQoS control method, an RSG and an HQoS control system, where the RSG is connected to multiple CSGs, and each CSG of the CSGs is connected to multiple base stations. The RSG separately configures a bandwidth limitation parameter for each CSG of the CSGs; the RSG creates different AAA domains for different IP address network segments, and configures a QoS scheduling parameter in each AAA domain; and the RSG determines, according to a configuration parameter of a first base station, a bandwidth limitation parameter of the CSG connected to the first base station, and determines a QoS scheduling parameter of the first base station, where the configuration parameter is used to indicate the CSG connected to the first base station, and is used to indicate an AAA domain corresponding to the first base station. The present invention greatly migrates a risk from excessively concentrated base station gateways, and effectively ensures that a service packet securely traverses a layer 2 tunnel of a fixed network operator.
Abstract:
Embodiments of the present invention relate to a charging method and device. The method includes: obtaining, by a radio access device located in an access network, first information, where the first information includes or is used to indicate a type of service data borne on a radio interface of the radio access device and a type of the radio interface; and sending, by the radio access device, the first information to a charging network element located in a core network, so that the charging network element performs charging by using the first information. The method provided in the embodiments of the present invention can implement service data charging without requiring a wireless local area network access gateway, thereby simplifying a communication process between network elements and reducing management costs of a network.
Abstract:
Provided are a method and system for distributing service data, wherein the method includes that a user terminal is authenticated and accesses a core network, a service data message sent by the user terminal is received, target address information contained in the service data message is acquired, and the service data message is distributed according to the acquired target address information.
Abstract:
The present invention provides an IPv6 address tracing method, apparatus, and system, where the method includes: receiving a destination IPv6 address in need of tracing; selecting, in a longest match manner, IPv6 address information that matches the destination IPv6 address, where the IPv6 address information includes an IPv6 address or IPv6 prefix information; and acquiring a user identifier corresponding to the IPv6 address information. The present invention implements IPv6 address tracing.
Abstract:
A method and device for informing user address are disclosed. The method comprises: a defined network allocating, according to a user address prefix provided by a mobile network, a user address to a mobile network user accessing the mobile network from the defined network; and the defined network informing the mobile network of the allocated user address. The present invention address the problems of complex flow for allocating user address and low allocation efficiency, and how to inform a mobile network of an allocated user address existing in the related art, thus achieving the allocation of an user address and improving informing efficiency.