Abstract:
An electronic device is provided. The electronic device includes memory storing one or more computer programs, and one or more processors communicatively coupled to the memory, wherein the one or more computer programs include computer-executable instructions that, when executed by the one or more processors, cause the electronic device to identify expiration of a first timer having an expiration time shorter than a radio resource control (RRC) inactivity timer set by a network in an RRC_CONNECTED state, identify an accumulated count of expiration of the RRC inactivity timer during a past first period from a time of expiration of the first timer, based on the accumulated count of expiration of the RRC inactivity timer expiration of the first timer, identify whether a UEAssistanceInformation message including a preferredRRC-State information element is transmittable, when the UEAssistanceInformation message including the preferredRRC-State information element is not transmittable, identify whether the RRC inactivity timer starting simultaneously with the first timer expires, based on expiration of the RRC inactivity timer, change an RRC state from the RRC_CONNECTED state to an RRC_INACTIVE state or an RRC_IDLE state, and when the UEAssistanceInformation message including the preferredRRC-State information element is transmittable, transmit, to the network, the UEAssistanceInformation message including the preferredRRC-State information element for causing the change of the RRC state from the RRC_CONNECTED state to the RRC_INACTIVE state or the RRC_IDLE state.
Abstract:
According to various embodiments, an electronic device comprises at least one processor. The at least one processor may be configured to: receive, from a network, a radio resource control (RRC) reconfiguration message including information about at least one bandwidth part (BWP) available to the electronic device, perform communication with the network using a first BWP among the at least one BWP, control the electronic device to transmit, to the network, a message requesting to change a BWP being used by the electronic device, based on identifying an event set for a change in BWP, receive, from the network, a downlink control indicator (DCI) indicating a change from the first BWP to a second BWP included in the at least one BWP, and perform communication with the network using the second BWP, based on the reception of the DCI.
Abstract:
According to various embodiments, an electronic device may comprise: a memory, at least one antenna module comprising at least one antenna, and at least one communication processor. The at least one communication processor may be configured to: control the electronic device to perform a call by voice communication connection through a second communication network, in response to receiving a first call request, based on identifying that the call is disconnected, identify information related to a call disconnected cause, based on identifying that the identified information related to the call disconnected cause corresponds to a designated condition, start a timer for deferring connection to a first communication network, and in response to receiving a second call request before the timer expires, control the electronic device to perform a voice communication connection through the second communication network currently connected the electronic device.
Abstract:
An apparatus and a method of managing a data flow in an electronic device is provided. The method includes monitoring a tethering including monitoring a tethering state using a first data flow connected to a first backhaul in a tethering group, determining whether a new data flow is added according to the monitored tethering state, selecting an auxiliary terminal including a second backhaul from among one or more terminals in the tethering group and generating a second data flow connected to the second backhaul, and configuring one of the first data flow and the second data flow according to the tethering state and a state of data that is to be transmitted through one of the first data flow and the second data flow.
Abstract:
This disclosure relates to a 5G or pre-5G communication system supporting a higher data rate than a 4G communication system such as LIE. More specifically, a method for performing, by a terminal, communication in a wireless communication system of the present invention comprises: a step of performing a connection procedure for a first wireless network; a step of performing a connection procedure for a second wireless network; and a step of performing communication for the same service through the first wireless network or the second wireless network according to wireless link states of the first wireless network and the second wireless network.
Abstract:
A method and an apparatus for transmitting multimedia data during call origination in a communication terminal are provided. The method includes determining whether origination of a call is requested together with alerting media, when the origination of the call is requested, and transmitting a call origination message and data of the alerting media when the origination of the call is requested together with the alerting media.