A base station sends a request message to an IAB-node to setup or modify context for a child node served by another logical IAB-DU.
Dynamic selection of an exceptional resource pool maintains positioning reliability during radio link failures or high-priority emergency conditions.
A wireless network method compresses signalling messages using a dictionary of collected reference messages to reduce bandwidth usage.
Dynamic selection among multiple redundancy retransmission modes balances throughput and reliability in split bearer dual connectivity networks.
Dynamic resource allocation and variable frame length adapt to diverse data services, reducing queuing delay and improving throughput.
A vehicle communication system assigns access points to data packets using quality-of-service identifiers.
Segmenting MBS interest data reduces signaling complexity while maintaining reliability through dynamic cast mode adaptation.
A relay UE forwards sidelink MAC control elements to a base station, enabling remote user equipment to communicate desired bit rates.
Dynamic allocation of radio link resources from pre-configured pools reduces set-up latency and signaling overhead in wireless networks carrying packet traffic.
Control logic segments transaction queues by virtual channel to prevent lower priority transactions from blocking real-time data in the communications fabric.
User equipment determines uplink bearer parameters from downlink data to reduce signaling overhead and delay.
Redistributes idle terminals from overloaded base stations to low-loaded neighboring cells for dynamic network balancing.
A receiving device detects a final protocol data unit indication to release radio link control resources and maintain synchronization state.
Session border controller modifies service rate using base station feedback to match actual transmission capability and reduce packet loss.
A session layer protocol generates communication frames with payload and control fields to enable interoperability between packet-switched apparatus.
Excess long training fields align OFDMA frames, resolving suboptimal channel estimation caused by fixed IEEE 802.11ac stream limits.
A vehicle communication module adjusts transmission rates by comparing available access point counts across periods.
Social networking system preemptively throttles client upstream traffic to prevent network overload and maintain connection stability.
A multipath combining gateway actively steers traffic between mobile and WLAN paths using real-time bandwidth measurements.
Network terminal informs user equipment about resource allocation via a UL grant message to indicate specific radio unit clusters for uplink transmission.
A terminal receives a key parameter from a new serving radio access device to encrypt uplink data.
User equipment routes non-access stratum messages through a single base station to access multiple radio access technologies, reducing signaling complexity.
A flow-based QoS control architecture maps data flows to radio bearers using a dedicated Flow ID field within the MAC protocol data unit sub header.
A base station randomizes Channel Quality Indicator reports to decouple bandwidth allocation from static channel conditions.
Serving Node Selection Function pauses service messages to ensure connection resource release between Base Station Controller and Mobile Switch Center.
User equipment switches to a secondary network upon receiving an unable-to-serve indication, resolving service continuity and battery drain contradictions.
An adaptive file delivery system segments large data files and schedules transmission during low-traffic periods to optimize throughput.
A user terminal selects puncturing or rate matching for uplink control information mapping.
A base station estimates terminal buffer states to allocate uplink radio resources without explicit requests.
Access network device allocates transmission resources based on offloading inclination indications to manage service data delivery.
A QoS/QoE target definition module dynamically maps application context to service parameters.
Dynamic packet flow distribution across cellular and WLAN transceivers optimizes uplink scheduling flexibility.
A network coded wireless relay divides data packets and transmits them via cooperative protocols to reduce transmission errors.
User equipment measures uplink interference signals and reports data to the network device, enabling interference-aware transmission configuration.
A user apparatus determines soft buffer size using Rel-10 UE category parameters when configured with TM3 or TM4 transmission modes.
Segmenting PDU and ADU layers resolves application-level differentiation bottlenecks while maintaining standard compatibility.
A mobility management entity bundles downlink paging messages to conserve network resources.
A control apparatus determines required segment performances based on end-to-end targets and enforces them across path segments.
A network management server establishes lateral bands of nodes to route traffic directly, bypassing root node chokepoints in mesh networks.
A relay-based header compression method manages wireless packet routing by determining the compression manner based on the number of required relay transfers.
A communication system uses shared and dedicated component carriers to support conventional terminals alongside carrier aggregation devices.
Segmented buffer status reports reduce latency and improve throughput for extended reality applications.
A data gateway marks downlink user data as 5GNR or non-5GNR streams.
A central device adjusts packet transmission rates based on real-time buffer status feedback from client devices.
Associating distributed units with a secondary central unit reduces handover latency during inter-DU mobility in disaggregated architectures.
System analyzes actual sector usage over time periods to correct capacity calculations and prevent congestion.
A dynamic quality-of-service adjustment system modifies bandwidth provisioned based on subscriber location and time of day.
User equipment reports remaining packet delay budget to base station, reducing packet loss in delay-constrained services.
A dynamic pricing model allocates edge computing resources using a double auction mechanism.
Dimensionality reduction generates compact model inputs from subcarrier signals to enable real-time AI-based modulation and coding scheme selection.