You Only Crash Once: Improved Object Detection for Real-Time, Sim-to-Real Hazardous Terrain Detection and Classification for Autonomous Planetary Landings
Timothy Chase Jr, Chris Gnam, John Crassidis, Karthik Dantu

TL;DR
This paper introduces YOCO, a deep learning method for real-time hazardous terrain detection during planetary landings, utilizing simulation training and domain adaptation to improve accuracy and transferability from simulation to real-world space missions.
Contribution
The paper presents YOCO, a novel deep learning approach that leverages unsupervised domain adaptation and visual similarity clustering for effective simulation-to-real transfer in planetary hazard detection.
Findings
YOCO improves hazard detection accuracy in terrestrial simulations.
YOCO demonstrates successful transfer from simulation to extraterrestrial terrain.
YOCO outperforms traditional template-based hazard detection methods.
Abstract
The detection of hazardous terrain during the planetary landing of spacecraft plays a critical role in assuring vehicle safety and mission success. A cheap and effective way of detecting hazardous terrain is through the use of visual cameras, which ensure operational ability from atmospheric entry through touchdown. Plagued by resource constraints and limited computational power, traditional techniques for visual hazardous terrain detection focus on template matching and registration to pre-built hazard maps. Although successful on previous missions, this approach is restricted to the specificity of the templates and limited by the fidelity of the underlying hazard map, which both require extensive pre-flight cost and effort to obtain and develop. Terrestrial systems that perform a similar task in applications such as autonomous driving utilize state-of-the-art deep learning techniques…
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Taxonomy
TopicsSpace Satellite Systems and Control · Astro and Planetary Science · Spacecraft Design and Technology
