A low-frequency oscillator and microsequencer keep packet timing precise while letting the processor and high-speed clock stay inactive longer.
Using Bluetooth Low Energy as an intermediary, the system exchanges Wi-Fi Direct credentials to reduce power consumption during device discovery.
A telemetry aggregator collects data frames from multiple low-power devices and forwards the combined stream to an eNodeB.
Lighting devices form small-scale cellular networks to reduce burden on large-scale public infrastructure by handling local data traffic.
VPP controller server adjusts energy loads and production using an objective algorithm to resolve renewable integration inefficiencies.
A control unit switches packet detection thresholds to reduce standby power consumption in wireless devices.
Adjusts intent values based on device power attributes to prevent battery-powered terminals from becoming Group Owners, extending operational time.
Wireless devices detect low-power beacon signals to automatically retrieve stored credentials for immediate Wi-Fi network access.
Electronic devices dynamically adjust discovery window intervals based on power states to reduce unnecessary wake-ups while maintaining signal reliability.
Allocating signal power levels to carriers based on terminal gain within satellite spot beam regions.
A mobile processor duty-cycling mechanism transitions between sleep and active states based on movement detection.
Segmenting location logging into a low-power sensor hub reduces main CPU power consumption while maintaining notification responsiveness.
Selective discovery window synchronization reduces latency and power consumption by coordinating active states during optimized time slots.
Mesh nodes alternate between active transmission and skip cycles while cycling new IDs to reduce power consumption and prevent spoofing attacks.
Information processing terminal detects printer proximity using wireless signals to initiate automatic print data transfer.
A wireless communication system uses variable beamwidths across frequency bands to manage signal transmission and reception.
Wireless devices relay signals via intermediary nodes to extend cellular network coverage beyond direct base station range.
Centralized beacon scheduling reduces power consumption and operational complexity by preventing collisions during mesh network expansion.