Abstract:
There is provided a method including determining, from a plurality of groups of access points, a group of a detected access point, each group having at least one property different from another group and using threshold information associated with the determined group to determine whether to connect to a network using said detected access point.
Abstract:
There is provided a method comprising receiving first network connection information for at least one user equipment in a cell of a second network and using said connection information to determine whether to adjust at least one threshold value, said threshold value used to control user equipment communication with the first network.
Abstract:
A technique including deciding at a communication device between different types of signalling procedure for a data transmission to a network, based on one or more rules outside the control of the communication device; wherein said different types of signalling procedure have different signalling overhead profiles.
Abstract:
A method and apparatus are provided. A user equipment is supported at a first access node. The first access node receives an indication of an offload status from a second access node and makes a determination relating to the handover of the user equipment from the first access node to the second access in dependence on the received indication.
Abstract:
A method for transmission control in a communications system is disclosed, the method including transmitting, from a network apparatus to a user terminal, an indication to tell the user terminal to refrain from sending a resource scheduling request until a predefined event is detected in the user terminal. The transmitted indication may include e.g. a request to carry out an enforced periodical global cell identity CGI measurement.
Abstract:
A method includes causing a user equipment to use one or more wireless local area networks based on cellular network information for a wireless cellular network indicating that a user equipment has restricted access to said wireless cellular network.
Abstract:
Methods and devices for improvements in handover between different access networks which enable seamless services to be experienced by a terminal. An aspect encompasses a device, comprising a processor configured to provide control in a control plane for a terminal for access to a first access network and to a second access network, wherein a coverage of the second access network at least partly overlaps the coverage of the first access network, the terminal is capable of having access to the first access network with a first service and to the second access network with a second service in parallel, and access for the terminal to a respective access network is routed in a user plane via a respective distinct access network entity.
Abstract:
Systems, methods, apparatuses, and computer program products for user equipment (UE) capability signaling for dual connectivity (DC) are provided. One method may include transmitting to at least one UE, by a network node, a message comprising a flag indicating that the apparatus supports dual connectivity and/or wants to receive UE capability indications of DC support. The method further includes, based on the presence of the flag, receiving, from the at least one UE, the dual connectivity capabilities of the at least one UE.
Abstract:
Systems, methods, apparatuses, and computer program products for obtaining additional supported bands of neighbor cell(s) are provided. One method includes reading, by a user equipment, a frequency band list broadcast by at least one neighbor cell, and reporting the frequency band list to a cell serving the user equipment.
Abstract:
There are provided measures for improvements in dual connectivity for different access networks. Such measures exemplarily comprise providing control in a control plane for a terminal (UE) for access to a first access network (5G), wherein a coverage of the first access network (5G) at least partly overlaps a coverage of a second access network (4G), the terminal is capable of having access to the first access network (5G) and to the second access network (4G) in parallel, and access for the terminal to a respective access network (4G, 5G) is routed in a user plane via a respective distinct access network entity (eNB, SGAP) and to a respective (compatible) gateway (S-GW, uGW).