A terminal determines optimal beams using a pre-configured mapping between parameter sets and time periods.
A transmitter performs independent inverse fast Fourier transforms per antenna to generate SC-FDMA symbols.
A terminal performs rate matching on uplink data based on downlink control information scheduling.
A terminal device determines downlink resource areas to configure control channels in wireless communication systems.
Aggregating sidelink channel state reports into one uplink control message reduces interference and improves resource allocation accuracy.
Segmenting reference signals by antenna configuration resolves ambiguity in quasi co-location parameter derivation during sub-band full duplex operations.
Adaptive frequency hopping signaling enhances control channel reliability while managing device complexity in mobile networks.
Segmenting wideband transmission into multiple narrower RF carriers reduces peak-to-average power ratio while maintaining required capacity.
A wireless device manages uplink grants for licensed assisted access cells using listen before talk type fields.
A terminal determines two power control parameter values using CORESET pool indices or TCI states for PUCCH transmission.
Combining buffers store periodic decision metrics to reduce storage requirements and speed up decoder configuration identification.
Configures a nominal time domain window to bundle demodulation reference signals in wireless uplink transmissions.
A user equipment estimates channel spread using pre-determined mapping from acquired channel estimates.
A user equipment adapts physical downlink control channel monitoring based on feedback modes to handle multicast scheduling signals.
Differentiating collision handling by transmission point identity resolves timing conflicts between dynamic and semi-persistent scheduling channels.
A dynamic control channel resource signaling mechanism adapts user equipment monitoring behavior based on network indications.
Interest messages carry alternate path costs to enable global retransmission decisions that reduce congestion and minimize message counts.
A base station transmits configuration information and change indicators to user equipment for dynamic uplink-downlink switching.
A user terminal control section manages predetermined sequences applied to demodulation reference signals and uplink control channels.
A terminal device consolidates multiple feedback bits into a single sidelink feedback channel to improve transmission reliability.
A channel state indication method transmits absolute or offset values to adjust modulation schemes.
A user equipment drops channel state information during inactive discontinuous reception durations to conserve power.
A user equipment identifies downlink control information from combined physical downlink control channel candidates using specific indicators.
A base station allocates alternative resources to downlink control information after detecting collisions between URLLC and eMBB transmissions.
A network entity adjusts control channel monitoring frequency based on service data stream characteristics to optimize bandwidth part activation.
A terminal device processes segmented transmission resources by starting a configuration authorization timer upon detecting split resource allocation.
A redefined control channel adapts its size dynamically to improve resource utilization in communication systems.
Base station signals candidate resource element parameters to resolve transport block size determination issues in New Radio networks.
Multiplexing uplink control information with data in the Physical Uplink Shared Channel reduces peak-to-average power ratio and improves resource efficiency.
An enhanced physical downlink control channel allocates resource blocks dynamically to support common search space operations.
Wireless device measures decoding margin via punctured transport blocks to resolve reliability versus throughput trade-off.
Bit inversion differentiates PDCCH messages at distinct aggregation levels, resolving decoding ambiguity and improving resource utilization efficiency.
Terminal device determines link qualities of reference signals from multiple transmission reception points to trigger independent beam failure recovery procedures.
Base station apparatus configures multiple CSI processes to enable terminal selection of optimal reference signal configurations.
Grouping uplink grants by listen-before-talk class manages radio resources across licensed and unlicensed spectrums.
Terminal device determines second time-domain resource using parameter K derived from first information processing time.
A user equipment multiplexes uplink control information onto physical uplink shared channel or configured grant resources based on network configuration.
Downlink control information toggles a single bit to guide user equipment in generating accurate acknowledgment feedback, reducing unnecessary retransmissions.
Segments long NR-PUCCH into multiple slots to resolve the lack of standard solutions for multi-slot uplink coverage improvement.
A User Equipment monitors uplink radio link failures to terminate and reestablish connections on the same or different frequencies.
Segmenting encrypted data at the NIC enables selective re-transmission of missing packets, preserving CPU resources and bandwidth during network congestion.
Segmenting downlink bands into subbands enables frequency hopping that improves machine type communication reliability in poor radio channels.
A terminal device receives control information indicating a transmission configuration state to determine applicable channels and signals.
A mobile terminal defense module validates TCP connections using forged SYN+ACK packets to filter malicious traffic.
A base station transmits common and UE-specific downlink control information on separate physical channels to optimize resource allocation.
Configuring downlink control information to indicate channel state for M uplink channels reduces determination complexity in multi-TRP systems.
Dynamic aggregation levels adapt resource allocation based on link quality, resolving the trade-off between transmission reliability and device complexity.
A base station evaluates uplink decoding performance to switch user terminals from grant-free to grant mode.
Subscriber station derives seed position from overhead messages to reduce processing demands and time-to-fix.
A user equipment selects between physical downlink shared channel scheduling assignments sharing a hybrid automatic repeat request process identifier.