Segmenting antenna ports across time units improves channel estimation accuracy for multi-port terminals.
Batch positioning reporting reduces latency and energy consumption by scheduling consistent PRS measurements based on device capability.
Segmenting random access resources via cell-specific parameters reduces inter-cell interference while maintaining fast two-step access speeds.
A new radio frame structure segments acquisition intervals and transmission opportunities to enable non-overlapping access for multiple operators.
Target user equipment encodes positioning reference signals with session keys to prevent unauthorized signal replication in wireless networks.
User equipment switches modulation parameters to maintain uplink transmission during maximum permissible exposure events.
A target terminal requests PRS configuration from a network side device to enable accurate Sidelink positioning.
A communication device selects full-duplex or half-duplex modes based on time domain overlap detection.
A network node configures scheduling restrictions for multi-Rx chain downlink reception using multiple receive beams.
Shifting CSI-RS patterns avoids DM-RS collisions and keeps signals within the downlink portion of special subframes.