Abstract:
A method, apparatus and computer program product are therefore in order to enable efficient management of multiple communication channels. In this regard, the method, apparatus, and computer program product may utilize a user equipment (UE) (208), such as a mobile terminal, to communicate a plurality of networks. The UE (208) may identify that multiple communication networks are available or in use, and notify a network node (204, 206) associated with one of the networks of the communication status. In response to receiving a notification that UE (208) is communicating across an alternate channel, the network node (204, 206) may reconfigure the channel with which the network node (204, 206) communicates with the UE (208), or instruct the UE (208) to do the same.
Abstract:
A method and apparatus may include receiving a time-alignment value for a time-alignment timer. The method may also include starting the time-alignment timer. The method may also include transmitting one or more uplink transmissions. The uplink transmission is transmitted while the time-alignment timer is running. The method may also include receiving an updated time-alignment while the time-alignment timer is running, if the timing of the uplink transmission is determined to be correct. The method may also include applying the updated time-alignment, if the updated time-alignment is received. The method may also include stopping uplink transmissions, if no updated time alignment is received.
Abstract:
A method, apparatus and computer program product are therefore in order to enable efficient management of multiple communication channels. In this regard, the method, apparatus, and computer program product may utilize a user equipment (UE) (208), such as a mobile terminal, to communicate a plurality of networks. The UE (208) may identify that multiple communication networks are available or in use, and notify a network node (204, 206) associated with one of the networks of the communication status. In response to receiving a notification that UE (208) is communicating across an alternate channel, the network node (204, 206) may reconfigure the channel with which the network node (204, 206) communicates with the UE (208), or instruct the UE (208) to do the same.
Abstract:
Embodiments of the present disclosure provide methods, devices and computer readable media for communication. In an aspect, a method for communication comprises receiving, at a terminal device, from a network device an indication for the terminal device to establish a connection with a target cell. The method also comprises determining a condition as to whether the target cell and a transmit beam of the target cell for the terminal device are known to the terminal device. The method also comprises determining, based on the condition, a delay for the terminal device to establish the connection. The method further comprises establishing the connection within the delay. The embodiments of the present disclosure can improve communication performance of a terminal device.
Abstract:
Embodiments of the disclosure provide a method, device and computer readable medium for detecting cells in scenarios of carrier aggregations. According to embodiments of the present disclosure, if the terminal device receives information indicating to connect to a different cell from the currently connecting cell, the terminal device detects the different cell in a spatial direction of the beam on which the information is received. In this way, a significant reduction in terminal device search and measurement effort is achieve, which leads to significant reduction in the latency.
Abstract:
A technique of accounting for the difference in required output power reduction or required duty cycle when selecting the RO in addition to the DL RS. Both output power reduction and duty cycle are independently determined by UE itself (i.e., UE needs to be able to determine itself required power backoff and/or duty cycle in order to meet RF exposure requirements). Advantageously, a RACH procedure in which the UE determines both output power reduction and duty cycle independently enables better choices of output power reduction and duty cycle, enhancing data activity and coverage.
Abstract:
A method includes: receiving, at a user equipment, a first information of a first gap for a first reference signal to be measured and a second information of a second gap for a second reference signal to be measured, wherein the first gap and the second gap overlap at least partially; and, determining at least one of: a first duration of a gap length based on a union of the first gap and the second gap, and a second duration of a gap length based on a selection of the first gap or the second gap corresponding to one of the first reference signal and the second reference signal.
Abstract:
A method, device and computer readable medium for performing measurements in telecommunication systems are disclosed. The method comprises: includes receiving, from a first network device, a first configuration of a first measurement object for a carrier frequency; receiving, from a second network device, a second configuration of a second measurement object for the carrier frequency; determining an absolute time difference between a first measurement timing in the first configuration and a second measurement timing in the second configuration; and in response to determining that the absolute time difference is below a predetermined threshold, performing a single measurement for the carrier frequency based on the first measurement timing in the first configuration or the second measurement timing in the second configuration.
Abstract:
Method, apparatus, and computer program product for a user equipment in a wireless communications system to receive configuration information that has one or more TCI-states. With this configuration information, the user equipment can then determine inactivity on TCI-states. Based on that determination, the user equipment enables either a discontinuous monitoring or a cessation of monitoring on those TCI-states. Each TCI-state corresponds to a radio beam and also corresponds to an antenna panel. By reducing such monitoring, the use equipment can deactivate antenna panels corresponding to the TCI-states. The determination can be done through the use of a timer with various time thresholds based on the TCI-state. The activity being transmitted on those beam can be scheduling received by the user equipment from a network element such as a base station. The TCI-states can also be grouped and the functionality of the invention dealt with on a group basis.
Abstract:
Measurement mode determination for narrowband internet of things devices There are provided measures for measurement mode determination for NB-IoT devices. Such measures exemplarily comprise receiving, by a NB-IoT device and from a serving network node (30), configuration information indicative of a measurement mode (e.g., Inband/Guard-band/Standalone) in relation to a neighbor cell, deriving said measurement mode of said neighbor cell from said configuration information, and measuring a reference signal of said neighbor cell based on said measurement mode.