Network manager devices update node weights to determine optimal communication paths in industrial wireless sensor networks.
Region-specific codebook learning adapts beam management to user equipment position using digital twin modeling.
User equipment reconfigures shared radio resources between WWAN and WLAN based on real-time performance metrics.
A base station detects radio communication anomalies via channel quality indicators and switches mobile stations to shared or open channels.
MAC CE commands activate CSI-RS configurations before handover completion, reducing delay in accessing narrow beams.
A non-orthogonal transmission method uses algebraic network coding to combine relay messages for simultaneous source and relay signaling.
A high-dimensional signal transmission method generates M-dimensional signals across multiple subchannels to distribute deep fading impacts.
A pairing method uses light receiving units to detect time series data of light intensity changes between electronic devices.
Beam-group steering weights direct spatially non-overlapping beams in a common direction to expand signal coverage.
Segmenting femto cells into groups reduces broadcast data volume and terminal search time during macro-to-femto handovers.
First sidelink UE transmits Rx beam schedule via SCI to second UE, eliminating unicast connection setup overhead.
A unifying message configures beam management parameters to optimize signal transmission, resolving complexity in managing multiple groups of paired links.
A distributed low-altitude radar system uses cellular antennas to detect and track unmanned aerial vehicles.
A dual transceiver architecture processes distinct frequency ranges through a switching mechanism that connects antenna elements to the appropriate receiver.
A first transmission point determines a reference signal sequence using slot-based pseudo-random initialization parameters to support coordinated multi-point operations.
A satellite transmission system splits MPEG-TS streams across distinct channels using synchronized counters to maintain constant bit rates.
Differential phase shifts cancel leakage signals, improving isolation without increasing insertion losses.
Pre-configured association information enables user equipment to select candidate beams during beam failure, ensuring single frequency network continuity.
Segmenting air interface resources allows each Transmitter Receiver Point to select optimal precoding, reducing blind detection complexity in the UE.
Terminal device determines uplink spatial relation using secondary cell resources, reducing RRC reconfiguration signaling overhead.