by Forbes, Eric / Radar 5G Interference Experiments·Updated 19d ago
Available on 1 platform
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Description
A dataset from an experiment investigating interference between a radar system and a 5G network. The description includes detailed radar parameters (e.g., PRF=100 Hz, gain=80, center frequency=3.4171 GHz) and a configuration log for a 5G gNodeB (gnb_id: 411). The dataset was authored by Eric Forbes for the Radar 5G Interference Experiments and last updated on May 25, 2026.
Use Cases
Modeling radar signal characteristics based on parameters like pulse width (PW=0.0001) and bandwidth (bw=2000000.0).
Analyzing 5G network configuration and handover behavior based on the detailed gNodeB (gnb) configuration log.
Simulating bidirectional UDP traffic patterns for network stress testing, as suggested by the iperf3 commands.
Investigating time-synchronized events between radar transmission (RadarTxStart/End) and network activity.
Strengths
Contains specific, quantitative radar system parameters (e.g., center frequency 3.4171 GHz, sample rate 20 MHz).
Includes a detailed, timestamped configuration log for a 5G network base station (gNodeB).
Documents precise timestamps for radar transmission events (RadarTxStart, RadarTxEnd).
Limitations
Column-level documentation is absent; field semantics must be inferred after download.
Row count and file formats are unknown, which may limit suitability assessment.
The description is highly technical and mixes configuration logs with experiment commands, requiring domain expertise to parse.
Provenance
Source
Radar 5G Interference Experiments, authored by Eric Forbes.
Collection Method
Likely gathered from a controlled experiment involving a radar system and a configured 5G gNodeB, with network traffic generated via iperf3.
Time Range
Experiment timestamps from April 12, 2026.
Freshness
Last updated 2026-05-25 19:20:05; freshness should be verified.
Geography
null
License is unknown; users must verify terms before use. The data likely requires specialized tools for signal processing and network analysis.