A terminal acquires V2X resource allocation data from a neighbor cell and reports it to the serving cell for effective scheduling.
A LoRa receiver estimates spread code timing using cross-correlation between up and down chirps.
Segmenting mesh nodes into specialized roles reduces power consumption while maintaining reliability through time-based and path diversity techniques.
Modified Wi-Fi Aware protocol enables drone cluster formation and merging, reducing power consumption by distributing management across devices.
Apparatus manages NAN cluster roles through dynamic power mode switching to resolve trade-offs between energy consumption and role determination reliability.
A portable device connects to a connectivity service mediator to retrieve a centralized service list for efficient network communication.
Adjusting channel quality indicators creates LTE communication gaps that mitigate interference with Bluetooth and WLAN signals during multi-radio operation.
A femtocell base station switches between active and standby states based on detected wireless device counts.
Access points transmit BSS color disable information so stations avoid entering doze state during color collisions, reducing power consumption.
Centralized units estimate uplink degradation using power control parameters and user equipment MPE event reports to improve handover efficiency.
A wireless switch unit reduces power consumption by rearranging multiplexed signals before and after switching operations.
An integrated power detector calculates cable loss across frequencies to prevent amplifier saturation at the outdoor unit during installation.
Vehicles dynamically adjust transmit power and rate to achieve target cooperative awareness while keeping channel load within predefined intervals.
A repeater apparatus regulates transmission power using a sink signal detector and amplification controller to maintain consistent coverage.
A wireless communication device adjusts transmission parameters when a selected sidelink resource is preempted by another terminal.
Grouping client devices by pathloss similarity and traffic compatibility enables efficient uplink multi-user transmission in wireless networks.
A controller calculates dwell time within a reference range to establish stable connections between electronic devices.
A wireless sensor device maintains network connectivity while cycling between active and low power states to extend operational life.
Segmented pre-wake up and full wake up stages eliminate unnecessary PDCCH monitoring, reducing energy drain while maintaining data reception readiness.
A wearable device detects mobile phone separation from a vehicle using signal strength indicators to trigger immediate owner notifications.
A gain corrector circuit adjusts wireless transmitter output power levels using a delay mechanism to align signals for precise calibration.
Dynamic beam adjustment resolves random access failures by modifying beam width and direction based on gain history, improving communication reliability.
Calculating downlink signal-to-noise ratio to adjust uplink transmit power using reliability weights for multiple TPC commands.
A radio terminal monitors paging signals during extended DRX Off durations to enable rapid incoming-call processing.
Decoupling sounding reference signal and data power control loops in user equipment for heterogeneous networks.
Segmenting the reminder function from the full operating system reduces time consumption and energy usage while preventing radio frequency radiation.
A terminal uses transmission power control information to dynamically reset a closed loop correction value.
Allocating distinct resource units with separate modulation and coding schemes improves wireless communication throughput.
Infrastructure networking devices apply station-specific filters to buffer packets, resolving power consumption versus data delivery efficiency trade-offs.
A dual modem system reduces power consumption by placing a cellular modem into a sleep state when a second modem connects to an alternative network.
Base station control signals configure user equipment beam cycling schemes, improving uplink robustness against link degradation.
Relocating the pulse generation unit to a separate substrate reduces signal lines and lowers power consumption during LED flickering operations.
A communication device adjusts DSC transmission output power based on calculated distance to target vessels.
A wireless device evaluates Signal to Interference plus Noise Ratio thresholds to decide on concurrent resource reuse.
A MIMO system segments data packets across independent antenna paths to manage transmission parameters.
A method determines carrier priority to allocate transmission power across multiple bandwidth parts for sidelink communication.
A power control method coordinates uplink signal transmission across multiple terminal identifications.
A base station estimates neighbor cell interference to compute noise rise for accurate load measurement.
A radio wake-up system adjusts operational modes to minimize power consumption and latency.
Periodic downlink signaling reduces energy consumption and radiation exposure while maintaining network coverage for mobile devices.
Reporting auxiliary scheduling information via Msg1, Msg3, and MsgA reduces initial BWP load capacity constraints for mass-connected IoT devices.
A transceiver device adjusts transmission power based on acknowledgement messages to optimize energy usage in wireless position measuring systems.
Distinct WCDMA slot formats separate TPC commands from pre-coding weights, reducing signaling overhead while maintaining UE performance.
First device sends TWT resource configuration information to a second device in an overlapping basic service set scenario.
A user equipment transmits power headroom reports instead of buffer status reports when uplink resources are constrained.
Segmenting UWB receiver paths allows powering down non-essential components during signal acquisition to lower power consumption and extend battery life.
A network broker module monitors traffic patterns to selectively wake applications and transition the interface device to low power modes.
UE-specific wake-up signals minimize unnecessary PDCCH decoding operations, reducing power consumption and signaling overhead.