A one-time code generation apparatus acquires peripheral vehicle and roadside unit information to produce unique security codes.
Road Side Unit integrates or splits vehicle groups to resolve resource allocation difficulty in high-density V2X areas.
Ground-based remote sensing systems provide hazard detection data to vehicles lacking on-board radar, reducing weight and energy consumption.
A V2X communication apparatus calculates vehicle position using roadside unit messages and surrounding vehicle timing data.
On-board unit stores basic safety messages for predesignated periods before transmitting them to servers upon detecting collisions.
A dual-interface sensor system transmits primary and redundant data via separate channels to enable precise control.
Mobile devices transmit alert messages to short-range wireless transceivers, determining precise locations to resolve chaotic emergency response bottlenecks.
Static field division on block units identifies CAN frame boundaries without disclosed message formats, enabling accurate anomaly detection.
A notification mediator transmits event data between mobile devices and in-vehicle head units to display application GUIs.
Intermediary tracking system extracts IMSI and TMSI from base station messages to resolve location identification precision issues.
A music playback system identifies users in a selected area to build playlists from their listening data.
A server adjusts sensor gain and offset values using a proxy reference derived from multiple data sources.
Assigning tasks to stable vehicles resolves reliability issues caused by mobility-induced resource variability in connected vehicle networks.
A vehicular communication device uses periphery vehicle data to establish a dynamic reference value for accurate wide area communicator monitoring.
Wireless devices monitor aggregated carriers and trigger reselection when congestion exceeds thresholds, resolving capacity versus congestion trade-offs.
First UE receives device characteristics from a network node to determine the second UE position, improving accuracy without adding measurement complexity.
A network tap divides captured traffic into signed blocks to ensure data authenticity and integrity.
A UAS beacon broadcasts identification codes and telemetry to handheld receivers.
A visual assistance system integrates distance sensors and GPS modules into footwear to detect obstacles and safe zone boundaries.
Autonomous IoT gateways monitor token schedules to identify malicious code interference, then isolate compromised nodes via in-band re-imaging.
Multi-node location systems use antenna arrays to filter noise and multipath interference, improving indoor positioning accuracy.
A vehicle control device generates maneuver requests with static and dynamic headers to coordinate actions between nearby vehicles.
An alive monitor determines a mobile body's current state using stored past monitoring data.
A recommendation system processes environmental data to generate personalized user suggestions based on identified behavioral models.
A sidelink communication device configures multiple candidate relay nodes with a unified radio bearer to enable seamless switching between links.
Service provision system routes member registration requests based on user location to optimize processing efficiency.
Detects location service errors, determines causes, and corrects information to prevent navigation inaccuracies.
SDMM eliminates hidden node interference and throughput bottlenecks by adapting MAC protocols to local network state.
Segmented computing environments isolate legacy systems from malware contamination while ensuring high-quality data authentication.
A wireless mesh network connects field devices to distributed control systems via a rooftop gateway.
Smart key control device recognizes position via wireless communication and activates vehicle functions in a stepwise manner based on proximity zones.
A V2X interface connects the eNodeB to a dedicated function for direct message transmission.
An embedded eUICC module executes mutual authentication with an SM-DP+ server to download encrypted profiles, resolving UICC size constraints for M2M devices.
Highlighting map features guides users to specific entrance locations, resolving navigation precision issues caused by inaccurate address data.
A registration server mediates authentication between mobile terminals and vehicles, verifying identification information to eliminate manual dealer checks.
A communication unit determines synchronization accuracy using a time request and response exchange.
Embedded sensors monitor container levels to trigger automated reorders, eliminating manual shopping complexity.
A terminal-based method measures time difference of arrival using distributed antennas to determine absolute position.
Terminal device prioritizes air interface parameters to select a compatible cell.
Automated wireless network optimization aligns access point and client device benchmarks in an n-dimensional space to identify performance outliers.
A transport layer proxy intercepts over-the-air traffic to apply low priority protocols for efficient delivery.
A computer system predicts items near users and displays local retailers on a single page.
Matches local or remote behavior patterns against known attack signatures to reduce false positives in connected vehicle security.
Mobile data collection device uses AI engine to filter irrelevant footage, reducing false positives and review time.
User equipment transmits V2X scheduling information using reference signal index values mapped to repetition counts and timing.
UFPA parses heterogeneous IoT logs by generating pattern signatures, resolving the trade-off between parsing speed and memory consumption.
Scanner filters signal data to determine relative positions, eliminating manual entry errors during device pairing.
Dynamic superframe mode shifting merges alarm data into periodic broadcasts, reducing network traffic and interference while maintaining privacy.
Wireless devices use full frequency domain resources in protected zones to maintain high transmit power levels.