Collision Avoidance Considering Iterative Bézier Based Approach for Steep Slope Terrains

The Agri-Food production requirements needs a more efficient and autonomous processes, and robotics will play a significant role in this process. Deploying agricultural robots on the farm is still a challenging task. Particularly in slope terrains, where it is crucial to avoid obstacles and dangerou...

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Veröffentlicht in:IEEE access 2022, Vol.10, p.25005-25015
Hauptverfasser: Santos, Luis C., Santos, Filipe N., Valente, Antonio, Sobreira, Heber, Sarmento, Jose, Petry, Marcelo
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Sprache:eng
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Zusammenfassung:The Agri-Food production requirements needs a more efficient and autonomous processes, and robotics will play a significant role in this process. Deploying agricultural robots on the farm is still a challenging task. Particularly in slope terrains, where it is crucial to avoid obstacles and dangerous steep slope zones. Path planning solutions may fail under several circumstances, as the appearance of a new obstacle. This work proposes a novel open-source solution called AgRobPP-CA to autonomously perform obstacle avoidance during robot navigation. AgRobPP-CA works in real-time for local obstacle avoidance, allowing small deviations, avoiding unexpected obstacles or dangerous steep slope zones, which could impose a fall of the robot. Our results demonstrated that AgRobPP-CA is capable of avoiding obstacles and high slopes in different vineyard scenarios, with low computation requirements. For example, in the last trial, AgRobPP-CA avoided a steep ramp that could impose a fall to the robot.
ISSN:2169-3536
2169-3536
DOI:10.1109/ACCESS.2022.3153496