A base station assigns usable channels to mobile radios by receiving lists of unusable frequencies from the devices.
A mobile system infers user intent from broadcast signals to generate personalized spatial representations.
A wireless device sets a common waiting time for multiple destinations using acknowledgement information.
Adaptive subframe scheduling allocates time resources for traffic and radar detection in unlicensed spectrum bands.
A mobile content aggregation system organizes user data through group-based filtering and centralized transmission.
A selective communication system filters recipients by geographic proximity to an incident area before dispatching adverse action alerts.
A base station determines access modes based on user equipment subscription data to support closed subscriber group services.
A user equipment receives an MCPTT group pseudonym to identify intended multimedia broadcast multicast services subchannel control messages.
Converged communication devices execute selective processor resets via external triggers to enable on-site reconfiguration without manufacturer intervention.
A leader user equipment aggregates safety messages from group members and broadcasts them on behalf of the collective.
Information processing apparatus groups wireless devices using signal data from an alternative communication system.
Short-range wireless communication relays event notifications between adjacent computing devices without wired network connections.
User equipment validates PLMN identities against registered values to prevent erroneous resource allocation during inter-network handovers.
A PTT interface module uses attenuators to reduce crosstalk between dual-channel radio signals.
A group call channel allocation method assigns a single traffic channel to mobile stations via a control channel.
Multimedia Broadcast Multicast Service Gateway selects control plane devices using dynamic Domain Name System queries.
Access points broadcast beam identifiers to coordinate stations, resolving interference in uplink processing.
Grouping machine type communication devices into anycast sets reduces signaling overhead and latency by eliminating constant core network status checks.
A processing unit manages community sites using terminal data to store and delete content based on predetermined conditions.
Source base station forwards group identity to terminal, resolving handover interruption delays in dynamic MBMS configurations.
A service control mechanism segments communication networks into preference and residual areas to enable customized usage profiles for mobile terminals.
A user equipment determines MBMS transport block transmission start timing using a temporal offset from system information.
A network switch logs client positions to route address allocation messages via directed unicast.
Group communication service embeds FRS channel configuration into user nodes to enable automatic channel switching when wireless network coverage is lost.
A unified authentication token consolidates user identity and application access, reducing separate credential storage risks in trunking networks.
A virtual group controller manages trusted service profiles in information centric networks.
Local scheduling at eNBs manages variable bitrates and content synchronization without centralized signaling overhead.
A location share window automatically deletes after a set time lapse to manage signal sharing duration.
A radio network node sends restart status to a core network node for warning broadcast recovery.
A base station generates and transmits scheduling information for Global Trunking Channel resources to user equipment via LTE control channels.
A mobile communication terminal estimates missed paging message likelihood to selectively decode downlink messages for base station parameter changes.
A shopping party locator system captures group photos and assigns unique member labels for instant identification.
Lower-level network elements report local audience data to a statistical analysis element for centralized counting.
Sensors detect mobile device locations within a facility, enabling the computing system to transmit alerts about nearby physical objects of interest.
A Cloud Management system creates location-based virtual groups to enable real-time user interactions via mobile devices.
Differentiates high delay spread MBSFN profiles from non-MBSFN types through SNR estimation, enabling accurate channel decoding in LTE systems.
Base stations transmit unicast and multicast signals multiplexed in time on a shared carrier frequency to resolve inefficient spectrum utilization.
Server associates terminal identifiers to estimate proximity, eliminating base station registration burdens.
A serving cell selects a target LTE handover cell by determining virtual channels supported by neighboring cells.
A control plane manages clustered subscriptions to group radio frequency devices.
A location-based messaging system identifies wireless device subsets by positional characteristics and sends unified group-specific messages.
N3IWF extracts triggers to merge CBS and AEA signals, cutting delay while delivering rich multimedia alerts.
Modulation-based MBS systems segment user equipment into groups using distinct radio links and varying modulation schemes to maintain data transmission.
Automated push-to-talk transmitter keying switch eliminates firmware latency and stuck transmitters by using dedicated hardware circuitry.
Network node monitors group members and sends notifications with detailed criterion fulfillment data.
Front end device executes MIMO detection to lower interface traffic and ease fiber constraints.
Segmented positioning combines GPS, Wi-Fi, and Bluetooth beacons to resolve indoor location precision trade-offs.
A requesting user equipment sends an encrypted credential to verify authorization before receiving location data from a peer device.