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Proof-of-concept modular robot platform for cauliflower harvesting

Frederico Belmonte Klein, Alfred Wilmot, Virginia F. Tejada, B.L. Rodriguez, I. Gonzalez Requena, Stephan Busch, A. Rondepierre, Taha Auzeeri, T. Sauerwald, W.F.P. Andrews, Hail Z. Rihan, Michael P. Fuller, Martin F. Stoelen

Year
2019
Citations
10

Abstract

This paper presents a proof-of-concept platform for demonstrating robotic harvesting of summer-varieties of cauliflower, and early tests performed under laboratory conditions. The platform is designed to be modular and has two dexterous robotic arms with variable-stiffness technology. The bi-manual configuration enables the separation of grasping and cutting behaviours into separate robot manipulators. By exploiting the passive compliance of the variable-stiffness arms, the system can operate with both grasping and cutting tool close to the ground. Multiple 3D vision cameras are used to track the cauliflowers in real-time, and to attempt to assess the maturity. Early experiments with the platform in the laboratory highlight the potential and challenges of the platform.

Keywords

Modular designRobotProof of conceptStiffnessControl engineeringVariable (mathematics)EngineeringArtificial intelligenceComputer scienceSimulation

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