A wireless device manages buffers for soft combining in device-to-device communication by selecting between instantaneous and HARQ storage.
Terminal device generates N acknowledgment codebooks to carry multi-bit feedback, reducing signaling overhead for URLLC services.
A wireless access point allocates unused secondary channels to stations using orthogonal frequency-division multiple access.
User equipment transmits capability information to configure maximum transport block size and parallel hybrid automatic repeat request processes.
Local quality rules define distinct PHICH timing for TDD and FDD carriers, resolving ambiguity in cross-carrier scheduling.
A gNB dynamically configures physical downlink shared channel repetition levels via DCI signaling to optimize transmission modes.
A communication control apparatus obtains upstream and downstream data loss frequencies to manage retransmission requests.
Distinct encoding and retransmission units manage variable data lengths, enabling error-free block combination despite incorrect length recognition.
Media terminals detect lost TS-format packets using continuity counters and sequence numbers to request retransmission.
Configuring a separate MPDCCH search space enables BL/CE terminals to receive multicasting control channel scheduling information.
A terminal device determines a hybrid automatic repeat request process using a transmission time unit and parameter Q to schedule repeated data transmissions.
Signaling restricted system parameters from base stations to user equipment reduces interference on reference signals while lowering coordination complexity.
Donor UE detects RNTI scrambling codes to forward coded data packets without full decoding, reducing round-trip time and improving communication reliability.
Periodic scheduling reduces monitoring overhead and power consumption while maintaining reliable downlink control information reception.
User equipment selects a category from reported options to determine soft channel bits, resolving buffer management complexity.
A channel encoding method allocates bits for periodic CSI and HARQ-ACK/SR information using configured offset values.
Decoupling uplink control information from listening outcomes ensures reliable communication in LTE-LAA systems despite unpredictable interference timing.
A user equipment adjusts turbo decode operations based on connectivity parameters.
A wireless device replaces a received packet header with an expected header when the cyclic redundancy check difference falls within a defined threshold.
Communication apparatus acquires statistical information from radio terminals and base stations to identify faults.
Cooperating user equipment retransmits selected code block groups via sidelink, reducing resource usage and improving throughput in V2X networks.
A terminal adjusts data sending rates by analyzing feedback timeout causes to differentiate between wireless and wired packet losses.
A terminal device determines discontinuous reception behavior based on the specific mode of a hybrid automatic repeat request process.
Bitmap segmentation within NDPA frames reduces feedback overhead while maintaining precise channel sounding performance across 320 MHz bands.
A user equipment selects a PUCCH format supporting multiple periodic channel state information reports to transmit data efficiently.
This approach coordinates feedback timing across multiple slots by merging transmissions into a single resource, reducing system complexity while maintaining precision.
Divides information bits into two sets for independent block encoding and rate matching to generate interleaved coded bits.
V2X terminals transmit acknowledgment messages for unicast and multicast data, reducing payload size and resource wastage.
A User Equipment manages RLC retransmissions using contention-based grants and ACK/NACK monitoring.
Multi-antenna RFID systems decode RN16 sequences by partitioning the reading environment into distinct spatial zones.
User equipment detects energy thresholds in broadcast regions and selects alternative shared resources for feedback transmission.
A mobile station manages UE assistance information retransmissions using a network-configured prohibit timer mechanism.
A base station compares retransmission serial numbers with acknowledgement serial numbers to determine whether to disable unnecessary second layer retransmissions.
Segmenting EPS bearers into multiple radio bearers enables independent parallel processing of data packets across wireless communication links.
A relay node extends coverage by forwarding signals via a secondary interface to infrastructure equipment.
A wireless local area network device decodes packets using a new packet indicator bit within the signal portion to identify intended transmissions before full data decryption.
Multi-rate multi-response aggregation segments transmission bursts to enable immediate receiver acknowledgments.
A sender adjusts video bitstream encoding parameters using receiver-side bandwidth metrics to optimize transmission.
Distinct search space configuration across downlink component bands enables flexible control channel element allocation without uplink resource inefficiency.
Excluding sidelink SS/PSBCH slots from resource pools prevents collisions with HARQ feedback, ensuring signal quality.
A dynamic HARQ codebook uses counter and total DAIs to track multi-TRP transmissions.
Terminal device allocates transmission power to uplink channels based on HARQ-ACK priority and sub-slot timing.
A base station configuration enables multilink retransmission by splitting data packets across multiple links.
Variable-length bitmaps in HARQ-ACK feedback signal specific code block groups needing retransmission, reducing resource waste from fixed-size messages.
A mobile terminal RLC layer reassembles service data units during handover to maintain data integrity without loss.
A file transmission manager coordinates packet-level retransmissions to meet file-level error rate and delay budget targets.