Explicit congestion marking adjusts sender rates based on packet fractions to reduce queuing delays and prevent losses in data center networks.
A computer system adjusts message send delays using processor instructions that analyze user profiles and recipient data.
A networking device monitors primary link utilization to adjust synthetic packet transmission rates on a secondary backup link.
Virtual interface aggregates FCoE traffic across Ethernet links, eliminating expensive FC switch chips and inefficient handshaking.
Parallel comparators monitor different window positions to detect every burst error condition without missing reports from arbitrary check windows.
A switching device extracts bit fields using prefix indices to match generic flow entries without repeated extraction.
Pre-moving input data and adaptively allocating compute steps reduces network communication usage while minimizing data exchange duration.
Sampling time series data into smaller intervals generates reference bands for real-time anomaly detection across network entities.
An edge machine offloads operational modules to preprocess raw sensor data before transmission.
Persistent memory images restore functional blocks, eliminating slow database loads during startup.
Emergency devices activate pre-configured backup routes to ensure ultra-low packet loss without complex real-time calculations.
Time division multiplexing merges multiple control signals into a single stream, reducing pin count and routing complexity on backplane interfaces.
Data plane nodes execute local control logic to determine functional split placements, reducing centralized controller delays and overloads.
Buffering IPv4 fragments in IPv6 packets avoids processor and memory resource consumption caused by full packet reassembly.
A risk manager system dynamically maps customizable security rules to connected devices for centralized monitoring.
Virtual flows determine which network nodes can power down while maintaining throughput demands through integer programming optimization.
Hash-based flow registration assigns network monitoring computers to specific traffic segments, eliminating duplicate data processing across the cluster.
Virtual switch segments traffic using dedicated signature information to detect leakage from insecure sources into secure connections.
Server-assigned time-to-live values resolve legacy client compatibility issues while maintaining automatic deletion efficiency.
Toggling a configurable switch isolates leakage signals to estimate interference filters, resolving full duplex receiver performance degradation.
Correlates network packets with kernel events to identify origin processes, enabling forensic analysis of DNS requests without proprietary drivers.
A self-adapting SDWAN performance analyzer monitors operational characteristics to generate configuration commands.
A big data processing system combines multiple prediction algorithms with dynamic weights to rectify antenna azimuths.
Non-master nodes transmit failure state protocol messages to master nodes, enabling rapid protection switching when Ethernet dual-homed links fail.
A path trace system determines Layer 2 default gateways by querying switch forwarding tables without endpoint probing.
Segmenting MAC address tables into chunks with order-independent checksums prevents race conditions during distributed updates.
Wireless inter-base-station links eliminate core network transmission lines, reducing construction costs while maintaining high data processing capability.
A packet switching apparatus sets egress information rates based on committed service parameters to manage network traffic flow.
A software-defined network controller derives implicit relations from relation data items to generate configuration data for network elements.
Lookup tables determine packet fragmentation actions to maintain network integrity without slowing transmission speed.
A load balancer uses TCP timestamp bits as a side-channel to select servers without maintaining per-flow state.
Wireless station logs downlink radio access technology types and marks uplink packets with indicators to enable differentiated quality of service policies.
Segmentation of variable-sized cells into fixed-width parts reduces administrative overhead and latency in high-throughput network switches.
Logical routers use non-preemptive standby components to prevent switching overhead and service disruption during failure recovery.
Logging system embeds product identifiers into network traffic packets for precise usage tracking.
A gateway scaler dynamically expands VPN instances to distribute network traffic across multiple channels.
A video processing system divides a scene into regions using a virtual plane to generate separate output streams.
A network management entity assigns dynamic weights to next-hop nodes for optimal traffic distribution across multiple paths.
Integer linear programming calculates energy-efficient routes by aggregating traffic to disable unused links, reducing network energy consumption.
A TCP traffic control method using random early detection to calculate packet dropping probabilities for window size adjustments.
A customer premises equipment derives quality of service level data from a distributed hierarchical naming system to mark traffic locally.
Dynamic multi-level thresholds adapt to real-time metrics, reducing oscillation between satisfaction and violation states while optimizing resource allocation.
A logical router migrates between software and hardware instances on a single node to adapt routing configurations dynamically.
Replicated message queues distribute reply messages across multiple front-end systems to ensure requester access.
A method determines an intermediate routing node by verifying a channel dependency graph for loops, enabling data transfer through a single node.
A custom messaging system applies message rules to user profiles for tailored electronic communication.
Logical Scalable Units replicate minimal session subsets between nodes to prevent call failures and resource leakage during scaling operations.
A secure stop event confirms termination, resolving stale state issues that cause unnecessary user blocking during new connection attempts.
A switching element dynamically generates flow entries with wildcard fields to cache and process subsequent packets efficiently.