摘要:
A security key, K_eNB, for protecting RRC/UP traffic between a User Equipment, UE, and a serving eNodeB is established by a method and an arrangement in a Mobility Management Entity, MME, and in said UE, of an Evolved Packet System, EPS. The MME and the UE derives the security key, K_eNB, from at least an NAS uplink sequence number, NAS_U_SEQ, sent from the UE to the MME, and from an Access Security Management Entity-key, K_ASME, shared between the MME and the UE.
摘要:
Techniques for providing additional security for the wireless interface between a relay node and a donor base station are based on a security association established between the relay node and the donor base station. In an example method implemented in a relay node, communications with a donor base station are established and a first cryptographic key is generated according to a radio access protocol. A security association between the relay node and the donor base station is then established, using a credential stored at the relay node, and a second cryptographic key is derived from the first cryptographic key, using the stored credential, or one or more parameters relating to the security association, or information exchanged within the security association. The second key is used to protect user plane data relayed from one or more mobile terminals to the donor base station.
摘要:
A security key, K_eNB, for protecting RRC/UP traffic between a User Equipment, UE, and a serving eNodeB is established by a method and an arrangement in a Mobility Management Entity, MME, and in said UE, of an Evolved Packet System, EPS. The MME and the UE derives the security key, K_eNB, from at least an NAS uplink sequence number, NAS_U_SEQ, sent from the UE to the MME, and from an Access Security Management Entity-key, K_ASME, shared between the MME and the UE.
摘要:
Underlay network node and macro base station and methods therein for enabling avoidance of interference in a cell extension area associated with an uplink/downlink imbalance. The underlay network node is assumed to be associated with a cell area A, and a cell extension area B, where the cell extension area B has an uplink/downlink imbalance in relation to a neighboring base station and the network node. The method in the underlay network node involves serving a UE in both uplink and downlink when the UE is located in cell area A. The method further involves serving a UE only in the uplink when the UE is located in cell extension area B, thus enabling avoidance of interference related to communication of a UE located in said cell extension area B.
摘要:
The present disclosure relates to a method in a mobile station (20) for handling access to different wireless communications networks via a wireless access point (10), the wireless access point supporting different wireless communications networks having different radio access technologies (RATs). The method comprises a first step of receiving (S100), from the wireless access point using a first wireless communications network, a first indication of an available second wireless communications network. The method then comprises receiving (S110) a second indication and determining (S120) whether the received second indication includes information of an address to be used by the mobile station when requesting access to the second wireless communications network. When determined that so is the case the method comprises thus requesting (S130) access to the second wireless communications network. The disclosure also relates to a mobile station (20), to a wireless access point (10) and to a method therein.
摘要:
A method for managing radio access comprises sending of a radio access technology (RAT) resource aggregation request from a first radio access network (RAN) to a second RAN concerning communication with a user equipment connected to a source RAN, and returning a response to the first RAN. The source RAN is the first or second RAN. The first and second RANs use different radio access technologies. Radio resources of a base station in a target RAN, the RAN to which the user equipment is not connected, are reserved. A report of the reserved radio resources is sent to the source RAN. A RAT resource aggregation command is transmitted to the user equipment. The RAT resource aggregation command comprises that a RAT resource aggregation shall be used and the reserved radio resources. The base stations have at least partly overlapping coverage areas.
摘要:
A relay node identified by a unique relay node identifier relays communications between a donor base station and one or more user terminals. The donor base station acquires the relay node identifier during a relay node attach procedure from where the relay node or another node in the core network (e.g., mobile management entity). The donor base station may use the relay node identifier to retrieve configuration information for the relay node. The configuration information may be used to configure the relay node, to perform radio resource management functions, and/or to monitor the performance of the relay node.
摘要:
Underlay network node and macro base station and methods therein for enabling avoidance of interference in a cell extension area associated with an uplink/downlink imbalance. The underlay network node is assumed to be associated with a cell area A, and a cell extension area B, where the cell extension area B has an uplink/downlink imbalance in relation to a neighboring base station and the network node. The method in the underlay network node involves serving a UE in both uplink and downlink when the UE is located in cell area A. The method further involves serving a UE only in the uplink when the UE is located in cell extension area B, thus enabling avoidance of interference related to communication of a UE located in said cell extension area B.
摘要:
The present invention relates to an arrangement and method for content synchronization when broadcasting data from an infrastructure node in a communication network. The arrangement comprises a receiver receiving data sequences and a transmitter for transmitting data sequences. Each data sequence has a data size and comprises a sequence number (SN). The arrangement further comprises a processing arrangement configured to add byte numbered sequence numbers to said data sequences passed between layers in a protocol stack for transmission to a transceiver station.
摘要:
A user equipment, UE, (20) determines a mobility state of a Wi-Fi access point, AP, as one of a moving mobility state and a non-moving mobility state along with control information relating to UE cell (re-)selection and/or handover behavior based on the determined mobility state of the Wi-Fi access point, AP. The UE then controls its cell (re-)selection and/or handover behavior in relation to the Wi-Fi access point, AP based on the determined control information. In a preferred embodiment, the UE can communicate with a cellular base station, BS, and with the Wi-Fi access point, AP. The UE detects the Wi-Fi AP, determines that the Wi-Fi AP is moving based on a moving AP indication, and controls cell (re-Selection and/or handover behavior of the UE based on the determination that the Wi-Fi AP is moving along with other information.