RF circuitry executes independent calibration and state restoration using a crystal oscillator, reducing power consumption during wake-up.
A data processing apparatus manages intermittent signal processing to minimize power consumption during non-operating periods.
User equipment determines uplink transmission power using serving and adjacent cell interference data.
A wake-up receiver assesses signal quality to determine its proximity to an access point.
A terminal default paging DRX setup method determines distinct configuration policies for LTE and eMTC terminals to resolve protocol conflicts.
A TFRC selection method maximizes the product of leftover channelisation codes and transmission power for mobile terminals.
A wireless terminal transmits trigger-based PPDU with spatial reuse parameters to optimize data speed in overlapping basic service sets.
Predicting LTE coverage entry allows a dual-mode radio to set RRC parameters early, eliminating audio truncation during mission-critical talkgroup fallback.
Segmenting control information into common and dedicated fields reduces overhead in M2M WLAN systems, improving throughput efficiency.
A base station adjusts overlapping factors and transmit power to optimize quasi-orthogonal communication performance.
A terminal maps V2X data to a resource area excluding error symbols reserved for automatic gain control settling.
A mobile device controller delays low power entry using magnetic field sensing to verify NFC transaction status.
Terminal device transmits uplink reference signals on carriers without data to enable network channel assessment.
User equipment obtains occasion configuration parameters to monitor or skip energy-saving signaling based on network device indications.
Centralized controller manages access point power states using network activity data to balance energy consumption and performance.
A communication data format transmits current and previous inertial sensor samples to maintain movement accuracy.
Controllers exchange proxy updates to coordinate actuator state, resolving reliability and complexity trade-offs.
A mobile terminal generates a grouped update message containing identifiers for multiple Home Agents to reduce signaling volume.
A transmission apparatus detects camera movement to control wireless communication modes.
Multi-path receivers detect synchronization states to selectively gate clocks or power, reducing energy consumption in sensor networks.
User equipment selects specific on durations within a discontinuous reception cycle to reduce energy consumption.
A remote notification system detects medical device power anomalies through wireless networks, reducing communication errors during home therapy.
Location-based transmission power adjustment optimizes signal quality and battery life by dynamically adapting output levels to specific coverage conditions.
A V2X receiver activates only during short interframe spaces to conserve battery energy in mobile devices.