Time-shifting component carriers via a virtual carrier resolves latency caused by unavailable subframes in TDD systems.
Dynamic sub-band allocation adjusts RTS channel division based on load evaluation, reducing collision probability while maintaining optimal bitrate performance.
A base station generates unique channel state information reference signal sequences using dynamic scrambling identifiers and modulo operations.
A transmission device determines flexible OFDM symbol arrangement for reference signals to improve system throughput.
A user equipment constructs artificial power headroom reports to disable carrier aggregation when data exchange drops.
Signaling the OFDM start symbol via higher layers prevents HARQ buffer corruption during cross-carrier scheduling.
A null data packet transmission scheme divides tones into subsets to convey feedback bits using simple value assignments.
A communication device maps data across unit time domain resources using chronological ordering and preset rules.
A modified subframe structure inserts blank symbols to monitor neighboring network nodes, preventing interference during dynamic TDD switching.
Segmenting downlink control information reduces signaling overhead while supporting up to 16 simultaneous users.
An OFDMA frame structure segments resource units to adjust pilot sub-carrier density relative to data sub-carriers.
A wireless communication method multiplexes short and long transmission time interval subframes using frequency division.
Dividing control data into separate transmission intervals reduces latency while maintaining legacy compatibility and search space efficiency.
Segmenting control channel candidates into non-consecutive groups reduces UE monitoring complexity while maintaining flexible resource allocation efficiency.
Early measurement signaling reduces activation delay by allowing user equipment to report cell availability during connection setup.
Group distributed phase tracking reference signal structure estimates and compensates common phase error in orthogonal frequency-division multiplexing systems.
An access point allocates wireless resources via single resource units to increase throughput while managing interference in dense environments.
A communication terminal determines rank indication by calculating a power ratio of equalized pilot signals.
Selective transmission of phase tracking reference signals minimizes signal overhead while maintaining communication performance in high-frequency bands.
A base station notifies terminals of wireless resources on a first component carrier to transmit system information stopped on a second carrier.
Merging demodulation and sounding signals reduces pilot overhead while maintaining channel state information reliability.
Assigning unique indexes to dual connectivity band combinations reduces coordination overhead while ensuring reliable frequency management.
Tracking transceiver uses pseudorandom noise coded signal pairs to measure time delay for precise Remote Transceiver identification.
Segmenting the PUCCH resource into independent sub-resources allows simultaneous transmission of eMBB and URLLC data without discarding information.
Applies digital gain adjustment to OFDM symbols before weighted overlap-and-add processing to reduce out-of-band emissions.
A base station broadcasts paired carrier component information to enable mobile stations to determine correct random access resources.
Segmenting mid-amble settings by user Doppler metrics avoids unnecessary overhead on stable channels while maintaining reliability.
Direct terminal coordination eliminates network reporting delays and reduces signaling overhead for B5G sensing operations.
A DTX indicator multiplexed with CQI feedback in an uplink control channel subframe enables base station detection of discontinuous transmission states.
Relative slot offsets align PUCCH transmissions with reference cell timing to resolve HARQ-ACK latency and reliability trade-offs.
Access node switches user equipment connections from TDD to FDD carriers when detecting extensive uplink data communication needs.
Base station multiplexes low latency and latency tolerant data using indication signaling to reduce user equipment monitoring overhead.
Segmented antennas and dynamic mode selection enable a WLAN device to achieve high data throughput while maintaining compatibility with legacy devices.
Dynamic slot offset indication resolves inflexible fixed RRC configurations, enabling diverse time-domain location selection for wireless communication systems.
Network device sends resource configuration indicating first transmission resources with duration under 1 ms to reduce round trip time from 8 ms in LTE systems.
Placing a network cache server on an aerostat reduces feeder link throughput demand by serving content locally, avoiding complex satellite infrastructure.
Simultaneous transmission from a transmitter and repeater leverages channel reciprocity for predistortion, reducing destructive interference.
A user equipment determines a scheduled slot index based on the last physical downlink control channel repetition instance.
A PSFCH resource selection procedure assigns unique feedback channels to multiple sidelink transmissions sharing a single PSSCH resource.
A terminal determines transmission modes and obtains multi-carrier parameters for data communication.
Mapping UL transmission ports to transmit chains allows dynamic switching across three or four bands, resolving throughput limits of two-band configurations.
An adaptive frame design allocates wireless resource elements based on channel estimate validity.
Time division duplex switches cable plant direction via DOCSIS MAP messages to resolve bandwidth waste in shared spectrum.
A user equipment allocates uplink data across discrete resource groups to increase transmit power limits.
A PUCCH transmission method divides modulation symbols across slots and applies distinct spreading codes to optimize resource usage.
A reference signal generation method using Zadoff-Chu sequences with optimized lengths and linear phase rotation.
Allocating resource blocks to data streams on an enhanced physical downlink control channel using spatial-multiplexing techniques.
Downlink Control Information format 2_0 carries channel occupancy time data to adjust user equipment monitoring periodicity.
A HE-SIG B field transmits per-station control information for multi-user data transmission.
A user equipment merges beam failure information from multiple component carriers into a single report structure.