Patent classifications
H04W36/0064
COMMUNICATION DEVICE, COMMUNICATION SYSTEM, AND CONTROL METHOD OF COMMUNICATION DEVICE
There is provided a communication device as a first communication device of a plurality of communication devices, including a memory, and a processor coupled to the memory and the processor configured to execute a first process of holding a state of a terminal, based on information acquired from the terminal, execute a second process by communicating with the first process, and migrate the first process to a second communication device of the plurality of communication devices when it is detected that the terminal whose state is held by the processor is migrated from a first area managed by the first communication device to a second area managed by the second communication device and when a completion of an indivisible operation in communication between the first process and the second process is detected, based on a predetermined communication protocol.
COMMUNICATION METHOD AND APPARATUS IN WIRELESS COMMUNICATION SYSTEM
A method of UE includes receiving a radio resource control (RRC) message for configuring bandwidth parts (BWPs) of a serving cell, receiving a physical downlink control channel (PDCCH) indicating activation of a first BWP, performing a BWP switching to the first BWP indicated by the PDCCH, and starting a first downlink BWP timer associated with the first BWP. A UE includes a transceiver, and at least one controller coupled with the transceiver, the at least one controller configured to receive an RRC message for configuring BWPs of a serving cell, receive a PDCCH indicating activation of a first BWP, perform a BWP switching to the first BWP indicated by the PDCCH, and start a first downlink BWP timer associated with the first BWP.
Network configuration method and apparatus and system
A network configuration method and apparatus and a system, the network configuration method includes: receiving, by a target primary eNB of user equipment, a handover request message transmitted by a source primary eNB of the user equipment, the handover request message containing identification indication information or service indication information of the user equipment in a serving eNB before handover; and transmitting, by the target primary eNB of the user equipment, the identification indication information or the service indication information to a target secondary eNB of the user equipment, so that the target secondary eNB performs resource configuration for services of the user equipment according to the identification indication information or the service indication information. With the method, apparatus and system of the embodiments of the present disclosure, waste of resources resulted from repeated reservation of the resources may be avoided.
Self-optimizing method for the UE group
The present application discloses a self-optimizing method for a UE group, which includes: a. a base station of a cell in the system adjusts mobility parameters of a specified UE group from the cell to another cell, and notifies the base station that the another cell belongs to of a relative value of mobility parameter change of the specified UE group in the cell; or, the base station of the cell requests base station of the another cell to adjust the mobility parameters of the specified UE group to the cell, and carry the relative value of mobility parameter change; b. the base station of the another cell determines which manner to take to adjust the mobility parameters of the specified UE group according to the relative value of the mobility parameter change received.
FLOATING LINKS
An access point including a memory; at least one network interface configured to interface over a network with one or more of a other access point and a user equipment (UE); and a processor configured to, establish, via the at least one interface, a virtual link with the UE based on the respective one of the at least one virtual address, and transfer the virtual link to the other access by transmitting a command to the other AP to set, after a time period, at least one network interface associated therewith to be addressable via the respective one of the at least one virtual address, and disassociating the at least one network interface and the respective one of at least one virtual address after the time period.
Method of Distributing Security Key Context, Mobility Management Entity, and Base Station
A method of distributing a security key context, where the method includes receiving, by a mobility management entity, a first indication from a primary base station, where the first indication is used for requesting a path switch from the mobility management entity and indicating that the path switch is triggered by carrier aggregation between base stations, processing the path switch according to the first indication, keeping, according to the first indication, the security key context for the path switch unchanged, and sending a second indication to the primary base station to indicate the primary base station to keep the security key context unchanged, or sending a third indication to the primary base station to indicate the primary base station to acquire a quantity of times of reversal of a next hop chaining counter in the security key context.
Floating links
An access point including a memory; at least one network interface configured to interface over a network with one or more of a other access point and a user equipment (UE); and a processor configured to, establish, via the at least one interface, a virtual link with the UE based on the respective one of the at least one virtual address, and transfer the virtual link to the other access by transmitting a command to the other AP to set, after a time period, at least one network interface associated therewith to be addressable via the respective one of the at least one virtual address, and disassociating the at least one network interface and the respective one of at least one virtual address after the time period.
Gateway change method
A correspondence information storage 32 acquires correspondence information in which an eNB 20, an SGW-C 60, and an SGW-U 70 are associated with each other in advance, and a connection controller 31 receives a handover request from the eNB 20 and identifies a target eNB 20 and a source eNB 20. A connection changer 33 identifies the SGW-C 60 and the SGW-U 70 associated with the target eNB 20 and identifies the SGW-C 60 and the SGW-U 70 associated with the source eNB 20, with reference to the correspondence information. The connection changer 33 determines whether or not the SGW-C 60 and the SGW-U 70 are to be changed on the basis of the identified result, and controls change requests for at least one of the SGW-C 60 and the SGW-U 70 on the basis of a result of the determination.
Method and apparatus for performing inter-MeNB handover without SeNB change in wireless communication system
A method and apparatus for performing an inter-master eNodeB (MeNB) handover procedure without secondary eNB (SeNB) change in a wireless communication system is provided. A target MeNB decides to keep bearers of a SeNB, and transmits a handover request acknowledge message including a first indication of keeping the bearers of the SeNB to a source MeNB. The first indication may indicate that a user equipment (UE) context in the SeNB is kept. Upon receiving the handover request acknowledge message including the first indication, the source MeNB transmits a SeNB release request message including a second indication of keeping the bearers of the SeNB to the SeNB. The second indication may indicate that a UE context in the SeNB is kept.
System and Method for Wireless Link Configuration
A method for operating a relay node during a handoff from a first controller to a second controller includes receiving a first instruction from the first controller to discontinue using a first set of wireless backhaul link resources allocated to the relay node by the first controller and to temporarily use a second set of wireless backhaul link resources dedicated by the second controller. The method also includes receiving a second instruction from the second controller to discontinue using the second set of wireless backhaul link resources and to begin using a third set of wireless backhaul link resources allocated to the relay node by the second controller.