The terminal reports monitoring capabilities and uses configured spans for PDCCH blind detection with lower power use and delay.
This case varies resource elements per CCE to configure E-PDCCH candidates and stabilize control-signal reception.
This case prioritizes linked search spaces and CORESETs to reduce processing load and latency in 5G downlink control reception.
This case configures serving and non-serving cell TCI states in advance so UE beams activate before handover completes.
This case identifies uplink F-symbols from grant information, reducing interference while adapting OFDM resources for URLLC traffic.
Phase-rotated PPDU units use unpunctured subchannels to meet PSD limits.
This case combines cell-specific BWP switching into one DCI to reduce signaling complexity and improve multi-cell resource allocation.
Network activation and deactivation indications suspend secondary links while retained configuration speeds dual-connectivity recovery.
This case configures a carrier supported by both UEs, reducing signaling overhead and latency during sidelink communication.
This case uses DAI-based feedback positions to distinguish repeated DCI scheduling the same PDSCH and reduce HARQ-ACK ambiguity.
A CQI request flag and bitmap select component carriers for feedback, reducing downlink signaling overhead and unnecessary uplink use.
This case uses sub-carrier spacing to set PDCCH candidate and CCE limits across aggregated carriers, reducing allocation overhead.
This case partitions shared LTE and NR V2X resources to limit AGC impact, subcarrier-spacing conflicts, and cross-technology interference.
Frequency-translated CORESETs and dynamic search space switching support wideband NR-U monitoring while reducing UE power consumption.
This case uses terminal capability reporting and multiple carrier frequencies to address integer ambiguity in positioning measurements.
This case configures unrestricted UL and DL BWPs for flexible switching and SDT without CORESET #0 or CD-SSB, improving power use.
Multi-band capability reporting expands uplink switching beyond two bands.
This case uses sub-band LBT, Composite Carrier Indicators, and BWP controls to improve detection and spectrum use in NR.
DVB-S2 satellite delivery bypasses inconvenient fiber routes while tailoring ATSC 3.0 channels for mobile and fixed devices.
Configuration-guided sidelink resource selection helps prevent data loss and waste.
Secondary nodes report available processing capacity, enabling coordinated NOMA assignments that balance data rates and user fairness.
Linking PDCCH candidates in Multi-TRP networks reduces blocking and monitoring complexity.
This case uses segmented uplink bandwidth parts, localized oscillators, and narrow filters to limit leakage in small-gap FDD bands.
This communication case aligns multi-cell DCI formats after single-cell sizing to limit PDCCH blind detection complexity.
A unified CSI trigger scheme adapts to single- and multi-cell DCI scheduling, reducing signaling overhead and hardware complexity.
Time-domain and priority configurations help a UE resolve opposite-direction Uu and sidelink collisions within one frequency band.
Authenticate wireless nodes with short CSI preambles to reduce industrial communication latency.
This case uses dynamic SCC addition and removal while retaining the PCC, supporting flexible HetNet resources without UE handover.
Sub-band PRB allocation helps RedCap UEs balance scheduling load and energy use.
This case combines connection setup with secondary-cell selection to establish carrier aggregation sooner for faster data transmission.
This wireless case adapts DCI fields to cell count and RRC settings, reducing overhead for multi-cell PUSCH scheduling.