Relocating packet classification to a separate processor reduces physical layer complexity and power consumption while maintaining timestamp accuracy.
Parallel overlay networks route live video flows across distributed transit routers, resolving scalability bottlenecks in global content delivery.
Forking transmission routes SMS from CS domains to multiple user terminals, resolving delivery limitations in IMS networks.
Packet-based timing transmits phase information to resolve oscillator drift, ensuring accurate synchronization across distributed CPU nodes.
A client signal mapping apparatus uses a single data path to map diverse signals via dynamic parameter adjustment.
A cross-connect board maintains a synchronized second clock using a local crystal oscillator to support service boards during control board removal.
Intelligent packet slicing parses headers to isolate relevant data, reducing storage and bandwidth burdens during network diagnosis.
Data handling nodes process multiple streams to remove redundancy and order units, reducing latency from three hours to near real-time.
A central access point uses UDP for synchronization messages to calculate relative clock offsets across wireless devices.
A single channel MIMO system uses rotation waveforms to achieve channel orthogonality for concurrent baseband processing.
A computer method evaluates mesh network rings to determine service provisioning feasibility.
Terminals process network link state information alongside local wireless conditions to select optimal routes, reducing signaling overhead during handovers.
A control unit selects WiFi channels using throughput and access point data to minimize protocol interference.
A software operating layer manages appliance function calls across physical and virtual interfaces to enable component interoperability.
Auto code generation produces packet header libraries from descriptions, reducing firmware size and development time for switch diagnostics.
A packet compression device caches data payloads and replaces identical content with shorter references to reduce network traffic load.
Centralized administrator manages short code leasing to enable cross-carrier message routing, resolving provider-specific access limits.
Segmenting a virtual concatenated group preserves stable bandwidth for high-priority data during link failures without additional protection circuits.
A scheduler manages forward data bursts using permanent virtual pipes to allocate contiguous Walsh codes and ASIC real estate for mobile terminals.
A prediction engine energizes PON transmitter components before upstream timeslots to optimize power states.
A method adjusts jitter buffer parameters based on predicted handovers to minimize radio quality degradation and prevent buffer under-run in LTE networks.
LDP label map messages carry service identifiers that direct traffic engineering flexibility through RSVP LSPs without EXP bit reliance.
Pre-configuring input time-slot space-division cross paths reduces service instant-interrupt time below 50ms during multi-time-division module switching.
Timing markers carry synchronization over asynchronous Ethernet and OTN streams, enabling deterministic bandwidth allocation.
A switching unit with independent processing paths modifies time-interval correction fields in synchronization messages.
Queries DNS servers for synthesized address records to identify usage and reduce unnecessary NAT loading during protocol transitions.
Central gateway monitors CAN and clock messages to broadcast synchronized time signals, preventing TSN stack failure crashes.
A gateway synchronizes time of day by transmitting delay-compensated data to terminals via lower OSI layers.
A network policy manager combines base and atomic policy templates to automate subscriber service provisioning.
Signaling method for cellular networks manages interference canceling activation and data rate allocation to prevent sum-rate reduction.
An integrated router and switch fabric architecture automatically creates IEEE 802.1Q virtual local area network trunks through software control.
A layered virtual private network model uses configuration non-specific objects to represent physical and logical components across functional layers.
Packet timestamping encodes phase information into CBR carriers, recovering signal integrity without common clock synchronization infrastructure.
Multicast timestamp exchange synchronizes audio devices relative to a master unit, reducing timing inaccuracies from access point transmission delays.