Resource request polls carry delay and access criteria, expanding STA participation and improving low-latency uplink allocation.
A common RF receive circuit integrates satellite and wireless basebands on one chip, reducing cabling and board-level cost.
Rule-based spatial-filter multiplexing resolves ambiguity in overlapping random access occasions.
Resource fields allocate multiple frequency units to one STA, improving WLAN throughput and latency.
This IAB allocation approach classifies service data and dynamically assigns separate resources to limit backhaul interference.
An Access Point counts failed re-associations and prompts a fresh association request for automatic recovery without manual intervention.
Dynamic MCS scheduling aligns satellite forward and return links with voice data needs.
This case uses reachability feedback to enable or disable multi-link paths, aligning configured states with actual communication.
An LLM scheduler interprets user requests and device feedback to improve Wi-Fi bandwidth fairness, throughput, and resource use.
Preselected UWB-enabled access points guide handover, helping mobile devices maintain accurate ranging despite limited signal range.
This case uses a vMAC and two-link bridging configuration to relay MLD traffic across WLANs and improve weak-zone connectivity.
Dual radio interfaces route data across secure and nonsecure links for steadier communication.
Packet and beacon links enable dynamic satellite path selection without network updates.
A cellular UE acts as a wireless gateway, extending calls and data to non-cellular devices while managing connections and power.
This case scores AP, switch, and site redundancy from RSSI neighbor data to target resilient connectivity without excess infrastructure.
Data packets build routing state in mesh networks, reducing control traffic.