A robust peer-to-peer connection setup using Neighbor Awareness Network discovery frames for direct device communication.
Segmenting subchannels isolates closed subscriber data from macrocell interference, resolving the trade-off between service reliability and network coverage.
A vehicle establishes a second short range wireless communication link by disconnecting an existing first link to support multiple mobile devices.
An RTA interface between MAC and APP layers manages real-time sessions in wireless networks.
User equipment estimates reference signal rate of change to initiate proactive handovers before signal degradation occurs.
Dual radio control entities route measurement reports to specific cell group layers, resolving communication inefficiency in multi-cell group scenarios.
A location estimation controller generates probability maps from relative signal strength indicators across mesh listener nodes.
A wireless device uses a jammer to transmit interference signals on active channels, enabling an interference canceller to generate reconstruction signals.
First relay apparatus detects backhaul link failures via dual connectivity, initiating RRC reestablishment to maintain service continuity.
Segmented PPDU structures allow legacy stations to perform virtual carrier sensing, resolving media access inefficiency and reducing control frame overhead.
A method transfers user equipment context between access and mobility management functions using distinct identifiers for radio access network coordination.
Allocating demodulation reference signals within symmetric time-axis resource sets to support multiple user equipment connections.
A wireless access node sends location data via satellite to enable remote configuration in areas lacking direct ground network connectivity.
A station performs uplink transmission using trigger frame parameters to skip channel checks.
A concentrator multiplexes femtocell connections to a mobility management entity, resolving transport layer capacity limits through identifier swapping.
Layer three signaling notifies access routers of intended handovers, enabling bidirectional edge tunnel establishment before mobile node connection.
A unified software platform virtualizes radio access networks to deliver advanced features across legacy mobile generations.
A terminal device selects the optimal network for initial TCP connection establishment using historical transmission delay statistics.
Dynamic mobile base stations restore communication when stationary infrastructure fails during disasters.
An access node generates and transmits unique identifiers to relay nodes using existing X2AP message structures.
Segmenting native and augmented nodes with distinct uplink frequencies reduces interference between ground users and aircraft.
Control plane function nodes redirect user traffic between network slices, reducing service interruption time during dynamic resource redistribution.
Nodes compute connectivity probability from broadcast observations to reduce bandwidth consumption.
A peer-to-peer Wi-Fi client switches channels using radar detection data relayed by an enterprise access point.
A controller verifies network device configuration status against intended settings to ensure correct implementation.
A user equipment transmits an indication to a network before switching systems, enabling seamless connection management.
A unified mobility gateway shares a common session across protocols to maintain terminal connectivity during access switching.
Evaluating packet preambles for deferral parameters reduces network latency while maintaining collision avoidance in shared media.
A trusted HSACD generates cryptographic keys for Intelligent Electronic Devices to enable secure network enrollment.
Radio frame indication information specifies trigger-based or non-trigger-based sensing measurement types to resolve configuration accuracy issues.
A communication apparatus broadcasts a Bluetooth trigger signal to initiate a Wi-Fi connection request for forming a wireless network.
Fine Timing Measurement enables precise indoor device positioning for 6GHz client-to-client links.
Dynamic handover between Bluetooth and WLAN channels mitigates Wi-Fi interference while maintaining data throughput.
A terminal detects Wi-Fi signal sources and calculates their combined radiation strength using RSSI values.
A device configuration system detects candidate access points using reference devices to obtain and apply automatic configuration parameters.
Trigger frames with resource block IDs coordinate uplink access in dense Wi-Fi networks, resolving spectral efficiency bottlenecks.
Cell status-aware measurement configuration resolves data rate prediction inaccuracies in LTE relay networks, improving throughput.
A wireless near field communication connection exchanges configuration data between computing devices to establish a tethered network link.
Electronic device detects resource conflicts between access points and releases affected connections to maintain network speed.
Coordinator unit compiles expectation lists to prepare base stations, minimizing radio-link failures during fast-moving handovers.
An intermediary mobile terminal relays ProSe data to a base station, restoring uplink channels lost to interference with cellular communications.
A relay station notifies a destination base station of neighboring base stations to enable connectivity verification.
Segmenting beacon frames into hybrid and standard signals reduces network overhead by transmitting frequent updates at shorter intervals.
A femtocell base station sets unique Information Block value tags to distinguish itself from neighbors sharing the same scrambling code.
Asymmetric bond pad layout on identical baseband integrated circuits enables direct connections between radio-frequency and baseband chips.
A wireless network coordinator handover mechanism transmits beacon signals to transfer control functions between devices.
A phase rotation value applied to the legacy preamble reduces peak-to-average power ratio of L-SIG signals.
Multicast topology messages propagate through wireless mesh networks to build complete node maps, resolving data collision issues in noisy environments.
Network nodes calculate transmission opportunities for IoT devices to adjust power saving mode duration.