A transceiver adjusts transmitter output power based on estimated path attenuation to reduce energy consumption.
A power management system adjusts saving modes by monitoring current consumption rates and device usage patterns during predefined time segments.
Mobile stations transmit data flows with specific power offsets to base stations.
A wireless receiver skips unnecessary control channel decoding by comparing previous transmission interval data.
A mobile device reconfigures network access parameters to utilize available 5G services.
UE-aided slow congestion control reduces RoT peaks and improves uplink load utilization by letting user equipment adjust transmission power based on signaling.
Dynamic voltage adjustment during reduced power states minimizes energy consumption while maintaining data integrity through self-test verification.
A base station uses a codebook selector to choose composite precoding matrices combining power-sharing and diversity components.
A user equipment determines timing advance values and performs listen before talk procedures to transmit random access preambles.
A wireless communication apparatus generates preamble signals with header information and inter-training signals across multiple frequency channels.
A method adjusts discontinuous reception cycles based on network services and location to optimize user equipment power consumption.
Link state discriminants enable access points to predict station availability, resolving the trade-off between energy efficiency and control loop convergence.
A wearable electronic tag switches between low power and full power modes to conserve battery energy while maintaining location tracking capabilities.
Dynamic TDD slot allocation manages power saving modes during beamforming, resolving conflicts between transfer rates and energy consumption.
Segmented wake-up receivers conserve energy by detecting packets before activating primary radios, resolving response time versus power consumption trade-offs.
Backscatter wireless devices harvest RF energy to eliminate battery recharging needs while maintaining low latency.
A device node transmits field parameter values using type-based multiple access resources to enable distributed inference.
Carrier aggregation messages map downlink carriers to uplink groups, reducing signaling overhead and processing load.
A wireless receiver adjusts ADC sampling rates based on frame types to optimize power consumption in local area networks.
A portable terminal activates detection modules in a determined sequence to minimize energy expenditure.
Wireless repeaters reduce energy waste by monitoring control channels only upon detecting specific triggering signals from base stations.
A modem processing unit autonomously transmits network acknowledgements via its first interface.
Mobile devices exchange location data via ad-hoc networks to resolve accuracy gaps when GPS receivers are absent.
A user equipment transitions to a suspended state to perform uplink transmissions using designated radio resources.
Configures distinct DRX timer values for unlicensed spectrum secondary cells to extend active monitoring periods.
A mobile device location API validates primary coordinates using a secondary source to ensure accuracy without spawning new processing threads.
User equipment autonomously modifies uplink transmission parameters to compensate for pathloss without base station instructions.
A wireless terminal deactivates hardware components during data-less transmission intervals to save power.
Access point sends timestamped data requests to wireless sensors for clock offset calculation.
User equipment selects uplink transmit beams using spatial filters from downlink signals to maximize signal energy and overcome propagation losses.
A communication method adjusts transmit power and transmission rates to maintain user fairness across multiple links.
Continuous weightlessness duration measurement triggers fall data reporting only when damage is likely, reducing unnecessary power consumption.
A mobile terminal calculates scaled uplink transmission power levels for contemporaneous links based on link-specific values.
A network node reduces interfering signal power during mobility procedures to support beam switching.
A method for controlling uplink power in multi-subframe scheduling uses separate adjustment factors.
A user equipment stops receiving secondary node radio resource control messages during cell changes to prevent processing conflicts.
A communication method uses non-orthogonal transmission to recover user equipment signals from overlapping data streams.
A terminal network search method detects serving or adjacent cell changes to initiate targeted reconnection procedures for mobile devices.
A method selects uplink carriers for power headroom computation based on sounding reference signal configurations.
A power management subsystem monitors utilization metrics to configure remote units for low-power operation.
A battery-powered gate monitoring device uses cyclic wake-up signals to minimize energy consumption during idle periods.
A wireless base station calculates transmission rates across candidate bands to allocate resources maximizing throughput.
A mobile communication device employs two distinct transceivers to handle data transmission tasks.
Client devices switch between Standard, Low Power Indoor, and Very Low Power regulation modes to align transmit power with base station association status.
User equipment detects unreliable scheduling grants and adjusts serving grant parameters to maintain uplink stability.
A master unit coordinates multiple slave transceivers to distribute V2X information wirelessly, removing complex Ethernet wiring and reducing system complexity.
A sliding mobile terminal display adjusts position via sensors to optimize screen configuration for specific operational modes.
High altitude platform station calculates interference timing from flight data to coordinate carrier coverage with ground base stations.
Differential rate corrections maintain synchronization accuracy while reducing error probability in uplink signaling.