User equipment initiates handover during connected discontinuous reception cycles to conserve power while avoiding radio link failures.
PDCCH decode indicators embedded in PDSCH payloads guide user equipment to selectively process control channels, reducing blind decoding power consumption.
Application server transmits early media service to notify users of terminal power saving mode.
Segmenting the receiver into a dedicated low-power unit and a main radio reduces idle power consumption while maintaining device reachability.
Transmitting uplink reference signals only during active periods reduces battery consumption while maintaining uplink synchronization reliability.
Remote UEs measure sidelink reference signal received power to select relay nodes, resolving device complexity trade-offs in public safety networks.
Telematic control unit monitors modem communication environment to cut standby power before preconfigured time expires.
User equipment detects proximity to trigger detach or power saving mode, reducing battery consumption while maintaining service availability.
Dynamic uplink timing adjustment synchronizes data channels, extending idle periods and reducing power consumption during voice calls.
Dynamic timer control reduces power consumption while maintaining reliable multicast reception in NB-IoT terminals.
A base station schedules downlink control signals at predetermined intervals to manage machine-to-machine communication.
A method configures maximum coverage enhancement levels for machine type communication user equipment to determine repetitive uplink signal transmission counts.