Flight Telemetry and Environmental Sensor Data for Phoenix 13 CANSAT Atmospheric Probe
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This dataset contains the primary atmospheric and telemetry data captured during the flight of the Phoenix 13 CANSAT, an atmospheric probe designed to profile the troposphere during a controlled 1,000-meter ascent and descent. The data was collected using a custom-integrated sensor suite and transmitted via a real-time telemetry link to a ground station. The mission's objective was to validate the accuracy of low-cost barometric and inertial sensors in high-dynamic flight environments, specifically for use in future planetary analog missions. Dataset Contents: Raw Telemetry Logs: The original, unedited data stream as received by the ground station, preserving the integrity of the transmission artifacts for verification. Processed & Tabulated Data: A refined dataset where telemetry strings have been parsed into discrete variables, units have been standardized, and initial calculations for comparative altitude have been performed. Captured Parameters: Tri-axial Orientation: Real-time X, Y, and Z-axis orientation data for flight stability analysis. Atmospheric Profiling: High-resolution recordings of ambient temperature, humidity, and barometric pressure. Geospatial Tracking: GPS-coordinated latitude and longitude for flight path mapping. Derived Metrics: Calculated altitude and pressure corrections based on ground-station reference points. This dataset serves as the empirical foundation for the accompanying preprint, "Phoenix 13: Technical Architecture and Flight Data Analysis of a 1,000m Atmospheric Probe". It is provided here under open-access principles to ensure the reproducibility of the mission’s findings and to support further research in sub-orbital atmospheric modeling.



